搜索
Search
language
中国
韩国
韩国
韩国
韩国
韩国
E-DEN

 

Quartz Radiant Infrared Lamps are for all industrial and scientific heating applications, including paper and textiles curing, paint-curing and rubber drying, leather and adhesive bonding curing, plastic sheets laminating or thermoforming, printed circuit welding, glass cutting and bending and laminating, blow-molding, inkjet drying, woodworking drying, food and environment warming, tableware and bottle sterilization, agriculture studies, aerospace research and other applications which needs fast heating and high temperature in a short time or continuous tunnel heating.

Quartz IR Heaters+SCR Power Controller=Fast Industrial Drying and Precise Temperature Control

Our Quartz infrared lamps can be worked in simply ON/OFF operation way or integrated control by our SCR power controller. The response time of sealing IR lamps is 1-2 seconds, so the temperature-fluctuations is very little by SCR power controller. Not only you can have a precise heating temperature but also reach the ideal heat temperature in a short time.

E-DEN

  

Hot IR Heat Lamp  ——   Widely Used For Paint Drying Machine, Laminating Machine, PET Blowing Machine and Glass Cutting Machine.

For different industrial heating applications, we can design and provide infrared heating lamps and drying solutions to reach your required temperature in different heating area. Quartz infrared heating lamps can be produced with voltage from 12V~800V, output heating power from 10W~20000W, heating length from 10mm~6000mm. Especially if you want to change your high energy consumption traditional conduction heating elements or if you want to improve the productivity by non-contact direct heating infrared emitter lamps, E-DEN lighting maybe a better choice for your heating applications. 

 560V 7400W 2520mm Glass Cutting Twin Tube Infrared Medium Wave Quartz Emitter
560V 7400W 2520mm Glass Cutting Twin Tube Infrared Medium Wave Quartz Emitter
Industrial drying 560V 7400W 2520mm Glass Cutting Twin Tube Infrared Medium Wave Quartz Emitter
 230V 1600W Single Tube IR Lamp Halogen Shortwave Quartz Heater Lamp
230V 1600W Single Tube IR Lamp Halogen Shortwave Quartz Heater Lamp
230V 1600W Single Tube IR Lamp Halogen Shortwave Quartz Heater Lamp
 Medium Wave Infrared Emitter Twin Tube Quartz IR Lamp 5900W 3950mm For MACOTEC Glass Cutting Machine
Medium Wave Infrared Emitter Twin Tube Quartz IR Lamp 5900W 3950mm For MACOTEC Glass Cutting Machine
Medium Wave Infrared Emitter Twin Tube Quartz IR Lamp 5900W 3950mm For MACOTEC Glass Cutting Machine
 600V 7900W Fast Medium Wave Infrared Emitter Twin Tube Quartz IR Emitter For TUROMAS Glass Cutting Table
600V 7900W Fast Medium Wave Infrared Emitter Twin Tube Quartz IR Emitter For TUROMAS Glass Cutting Table
600V 7900W Fast Medium Wave Infrared Emitter Twin Tube Quartz IR Emitter For TUROMAS Glass Cutting Table
 400V 6500W Glass Cutting Quartz IR Emitter Twin Tube IR Lamp For Laminated Glass Table
400V 6500W Glass Cutting Quartz IR Emitter Twin Tube IR Lamp For Laminated Glass Table
400V 6500W Glass Cutting Quartz IR Emitter Twin Tube IR Lamp For Laminated Glass Table
 IR Radiator Twin Tube Gold Reflector 500V 6250W with 3820mm Max Cutting Infrared Heater For Bavelloni Laminated Glass Cutting Tables
IR Radiator Twin Tube Gold Reflector 500V 6250W with 3820mm Max Cutting Infrared Heater For Bavelloni Laminated Glass Cutting Tables
IR Radiator Twin Tube Gold Reflector 500V 6250W with 3820mm Max Cutting Infrared Heater For Bavelloni Laminated Glass Cutting Tables We cannot cut laminated glass directly, otherwise it will be broken easy. But if we heat up the temperature on glass by IR radiator lamp, then we can cut the heated glass easier. 
 240V 1100W 225mm Heating Bulb Halogen Shortwave Infrared Heater Lamp
240V 1100W 225mm Heating Bulb Halogen Shortwave Infrared Heater Lamp
240V 1100W 225mm Heating Bulb Halogen Shortwave Infrared Heater Lamp Single Tube Short Wave Halogen Infrared Lamps are widely used in high-efficient industrial fast heating applications. The halogen IR lamp is made of quartz single tube. The heating filament is tungsten alloy material. We have 10mm, 11mm, 12mm, 14mm, 15mm and 19mm single quartz tube for different customers. The total length of single tube IR lamp can be up to 2.5 meter. In order to better convey and focus on the heated material all the IR radiation emitted from the IR lamp, the special gold reflector or white reflector will be coated and fixed directly on the quartz surface. Halogen short-wave infrared heating lamp has the following advantages
 416V 1KW 355mm Infrared Heater Lamp 440V 1KW For PET Sidel Blowing Machine
416V 1KW 355mm Infrared Heater Lamp 440V 1KW For PET Sidel Blowing Machine
416V 1KW 355mm Infrared Heater Lamp 440V 1KW For Sidel Blowing Machine
 416V 1500W 626mm Infrared Shortwave Heat Lamp For Bottle Blowing Sidel Machine
416V 1500W 626mm Infrared Shortwave Heat Lamp For Bottle Blowing Sidel Machine
416V 1500W 626mm Infrared Shortwave Heat Lamp For Bottle Blowing Sidel Machine
 230V 1500W 400mm Gold Reflector IR Lamp Replacement 33692310 Infrared Heat Lamp
230V 1500W 400mm Gold Reflector IR Lamp Replacement 33692310 Infrared Heat Lamp
230V 1500W 400mm Gold Reflector IR Lamp Replacement 33692310 Infrared Heat Lamp Gold Reflector Twin Tube Infrared Heat Lamp Replacement: Heraeus 33692 310 quartz infrared emitter lamp Voltage: 230V Power: 1500W IR Energy: Short wave Tube diameter: 23×11mm Total length: 400mm * Our twin tube infrared heat lamp are replacement designed for original Heraeus 33692 310 infrared heat emitter, and the heat emitter matches the original specification.
 240V 1600W 450mm Infrared Heat Radiator Replacement Heraeus 33690401 Quartz IR Emitter
240V 1600W 450mm Infrared Heat Radiator Replacement Heraeus 33690401 Quartz IR Emitter
240V 1600W 450mm Infrared Heat Radiator Replacement Heraeus 33690401 Quartz IR Emitter
 400V 3000W 600MM Twin Tube Infrared Heater Lamp Replacement Heraeus 09751340 Fast Response Infrared Emitter
400V 3000W 600MM Twin Tube Infrared Heater Lamp Replacement Heraeus 09751340 Fast Response Infrared Emitter
400V 3000W 600MM Twin Tube IR Lamp Replacement Heraeus 09751340 Fast Response Infrared Emitter
 230V 3000W 650mm Infrared Emitter Replacement Heraeus 09751761 IR Radiator
230V 3000W 650mm Infrared Emitter Replacement Heraeus 09751761 IR Radiator
230V 3000W 650mm Infrared Emitter Replacement Heraeus 09751761 Quartz Infrared (IR) Emitters for all industrial and scientific applications, including offset, flexo, silk-screen, label, graphic arts, and textiles printing, auto-body, paint, paper and rubber drying, leather and adhesive bonding curing, plastic forming, printed circuit welding, glass bending and lamination, blow-molding, inkjet drying, woodworking, food and environment warming, tableware and bottle sterilization, agriculture studies, aerospace researches and other applications. We are always taking responsibility to provide consistent quality and prompt no-hassle service. High efficiency, energy saving, clean heating and long working life for your business, while saving you money. Our quartz heating infrared emitters are designed to provide maximum efficiency and reliability for any industrial heating application. Our infrared lamps are energy efficient and can provide up to 50% more energy savings compared to traditional heating methods. Our lamps are also easy to install and maintain, making them the perfect choice for any industrial heating project. Try our single tube and twin tube quartz infrared lamps today and experience the difference! Give up the low-priced and often headache-causing inferior heating lamps, and choose a high performance-price ratio infrared radiation heating lamps from E-DEN lighting technology. With wise eyes, you will get rid of many troubles and focus more on your business. According to the configuration of different heating filament design and ending cables, twin tube infrared emitter can be produced as the following common filament configuration.  1: Cables can be one side connection or two sides connection 2: Different heating length designed for partial heating purpose 3: Length is up to 6.2 meter long and widely used in industrial heating process, such as glass cutting, plastics forming or lamination, auto painting and etc..   Please contact us for more lamp specifications if you need. 
 600V 8000W 3850MM Twin Tube Fast Response Medium Wave Infrared Emitter For Tempered Glass Cutting
600V 8000W 3850MM Twin Tube Fast Response Medium Wave Infrared Emitter For Tempered Glass Cutting
Twin Tube Gold Reflector Infrared Emitter For Tempered Glass Cutting We cannot cut tempered glass directly, otherwise it will be broken. But if we heat up the temperature on glass by IR heat emitter, then we can cut the heated glass easier. Along the cutting trajectory to install infrared twin tube emitters, the infrared heating will increase the temperature of glass rapidly, and the heat is passed to the surrounding area in the form of thermal conductivity, forming a thermal influence area along the infrared heating trajectory, especially the temperature on the cutting trajectory is going to be the highest. The fast heating raise the temperature and it causes the glass expansion to have compression stress. The upper and lower surface of the glass produces tensile stress, due to the temperature decreasing by air convection. At this time, the expansion and contraction of the glass material are the largest, and glass will be broken easier and this is the glass cutting way through Infrared emitter.       Twin tube fast response medium wave infrared emitters can be controlled and adjusted the output power by PLC or SCR regulator automatically, so we can have accurate(±1 ℃)IR heating temperature in industry process. The heating filaments can be desinged and work in 1200~1800℃ with 1~2 seconds fast response time, so the FMW IR emitter are widely used for fast heating application which needs heating temperature from 50~500℃. Because of needing small installation space and flexible working position, our infrared quartz emitters are popular for industrial customers to repalce air heating and other high energy consumption electric heating elements, or customers prefer a combination heating solutions which includes circle hot air heating with fast efficient IR heatings.   EDEN IR quality customized twin tube infrared lamps can be repalced your original heating lamp, such as Heraeus lamp, LISEC cutting lamp, Bavelloni cutting lamp, Bottero IR lamp, Intermac glass cut lamp, Macotec heating lamp and etc...We have successfully produced long IR lamps with some specifications as below: 400V 6400W 1900mm 400V 6400W 1920mm 400V 9450W 3450mm 600V 8300W 3450mm 600V 7800W 3520mm 600V 8000W 3855mm 500V 5900W 3870mm 700V 10300W 3920mm 600V 7800W 4720mm 700V 9800W 4720mm 600V 16000W 6120mm   Product name: Quartz Infrared Radiator/ Infrared Emitter Part number: EDIRTA60-80-3850/3750-3315G2 Rated voltage: 600V Rated power: 8000W Total length: 3850±2mm Heated length: 3750mm Tube diameter: 33×15mm Reflector: Gold Burning postion: Horizontal and Vertical Replacement: SMAG 8000/3755 G Application: Laminated Glass Cutting Table  
 400V 4200W 1800MM Fast Response Medium Wave IR Radiator Twin Tube Radiation Infrared Lamp For printing Laminating Industry
400V 4200W 1800MM Fast Response Medium Wave IR Radiator Twin Tube Radiation Infrared Lamp For printing Laminating Industry
400V 4200W 1800MM Fast Response Medium Wave IR Radiator Twin Tube Radiation Infrared Lamp
 Twin Tube Infrared Emitter Quartz IR Emitter For Industrial Drying System
Twin Tube Infrared Emitter Quartz IR Emitter For Industrial Drying System
Twin Tube Infrared Emitter Quartz IR Emitter For Industrial Drying System
 240V 3200W Clear Infrared Halogen Heating Lamp Replacement 3200T3/CL Infrared Lamp
240V 3200W Clear Infrared Halogen Heating Lamp Replacement 3200T3/CL Infrared Lamp
240V 3200W Clear Infrared Halogen Heating Lamp Replacement 3200T3/CL
 230V 3000W SK15 IR Lamp Replacement 14107Z/98 Quartz Infrared Heat Lamp
230V 3000W SK15 IR Lamp Replacement 14107Z/98 Quartz Infrared Heat Lamp
230V 3000W SK15 IR Lamp Replacement 14107Z/98 Infrared heating technology is a revolutionary way to heat plastics for different objects' laminating. It is a cost-effective and efficient method for heating plastics that can be used in a variety of laminating applications. Infrared heating technology works by using infrared radiation to heat the plastic material. This radiation is emitted from a IR source, such as an infrared lamp, and is absorbed by the plastic material. The heat is then transferred to the plastic material, which causes it to become malleable and ready for laminating.   The advantages of using infrared heating lamps for plastics laminating include:   1. Faster heating times: Infrared heating lamps can heat plastics faster than traditional methods, the response time is 1-2 seconds to run full power with infrared energy, so the plastic films can be heated faster, 3-4 mm thickness plastic film can be heated to 150-200 ℃ within 40 seconds. The traditional methods cannot achieve this heating temperature in a short time.    2. More uniform heating: Infrared heating lamps can be distributed evenly on the top and under the heated materials, or the two sides of plasics films. The sealed ir lamps can always radiant stable infrared rays without outer affects, EDEN infrared lamps can provide more uniform heating than traditional methods, resulting in more consistent products.   3. Lower energy costs: Infrared heating lamps does not need intermediate medium to transfer heat, so there are not so much energy loss than traditional methods, quartz infrared lamps are more high efficiency for industrial drying.   4. Safer: Infrared heating lamps are safer than traditional methods, as lamps does not produce any hazardous byproducts, especially greenhouse gases such as carbon dioxide.   5. More precise: Infrared heating lamps can be turned on and off frequently than traditional heat methods, the output power can be controlled and adjusted from 0-rated power, so we can set up the stable and precise heating temperature for heated laminating objects.        We are customized IR lamp manufacturer and we have the following laminating infrared lamps for your reference. If you need single tube IR lamps with other specifications, please contact us for free solutions. 1: Total length includes end ceramic caps 2: Tube diameter 3: Lamp voltage 4: Lamp power 5: Reflector   
 400V 1000W Quartz IR Lamp Infrared Drying Lamp For Komori LS29 LS40
400V 1000W Quartz IR Lamp Infrared Drying Lamp For Komori LS29 LS40
400V 1000W Quartz IR Lamp Infrared Drying Lamp For Komori LS29
 2000W Medium Wave Quartz Infrared Heater For Moisture Paint and Ink Drying
2000W Medium Wave Quartz Infrared Heater For Moisture Paint and Ink Drying
2000W Medium Wave Resistance Quartz Infrared Heater For Moisture and Paint Drying Infrared heating can be used for the melting of ice, the drying of moisture in food or spices, the preheating and drying of moisture in wood or board, and the drying of medicinal materials. Water molecules can absorb medium-wave infrared radiation easily, our fast medium-wave, carbon medium-wave and medium-wave infrared radiation heating heater are suitable for replacing various high-energy-consumption hot air drying. The water molecules inside of heated objects can directly absorb infrared radiation, the irradiated water molecules are moving violently and rise the inner temperature of heated objects rapidly. Instead of conducting heat through the air, the heating efficiency with infrared can be greatly improved.   FAST RESPONSE MEDIUM WAVE TWIN TUBE QUARTZ INFRARED HEATER   CARBON MEDIUM WAVE TWIN TUBE QUARTZ INFRARED HEATER   MEDIUM WAVE TWIN TUBE QUARTZ INFRARED HEATER   Advantages of Quartz Infrared Heat Lamps in Moisture Drying Directional Heating: The infrared radiation is focused directly onto the target area, rather than heating the surrounding air. This directional heating improves energy efficiency and reduces unnecessary heat loss. Efficient Drying: Infrared radiation directly acts on water molecules, increasing their kinetic energy and rapidly turning them into vapor. Compared to traditional hot air or steam heating, infrared heating achieves much faster drying times. Applicable to Various Materials: Quartz infrared heat lamps can evenly heat different types of water-based materials. Whether it’s a smooth surface coating or a porous water-absorbing material, precise drying can be achieved.    Main Drying Applications: Industrial Paint and Coating Drying: In the automotive, shipbuilding, and machinery manufacturing industries, rapid curing of coatings and paints is crucial. Quartz infrared heat lamps can quickly evaporate the moisture in the coating, ensuring uniform and durable layers, preventing surface defects caused by moisture residue. Textile and Paper Processing: In textile dyeing and paper production, removing moisture is a key step. Infrared heating can precisely control drying temperatures, avoiding material shrinkage or deformation while speeding up the production process. Food Industry: In food dehydration and drying processes (such as drying fruits or producing powders), infrared heating helps retain nutrients while significantly improving drying efficiency. Construction Material Processing: For concrete, tiles, and other water-containing construction materials, rapid drying ensures stable physical properties during the construction process.
 240V 2000W 355MM Ceramic White Reflector Quartz Infrared Emitter Heat Lamp
240V 2000W 355MM Ceramic White Reflector Quartz Infrared Emitter Heat Lamp
240V 2000W 355MM Ceramic Reflector Quartz Heat Infrared Emitter Lamp 1. Principle of Quartz Infrared emitter lamps Quartz infrared emitter lamps utilize the high temperature generated by current passing through the filament to produce intense infrared radiation. These radiations have strong penetrating power, allowing them to directly heat the molecules inside the material. Infrared rays heat objects without direct contact, making the drying process faster. Compared to traditional heating methods (such as convection heating), infrared radiation directly transfers heat to both the surface and interior of the material, reducing energy loss and heat transfer time.         2. Advantages of Quartz Infrared emitter lamps Fast Heating and Energy Efficiency: Since infrared radiation directly heats the material, the transfer time is significantly shortened, reducing energy loss during the heating process. Additionally, infrared emitter lamps quickly reach the required temperature, eliminating the need for a preheating phase, thus improving production efficiency.   Uniform Heating: Quartz infrared emitter lamps provide even heat distribution across the entire conveyor width, ensuring that all products are exposed to the same level of heat, guaranteeing consistent heating for each product. This is crucial for improving drying quality and reducing product inconsistency. The flexible arrangement and design of the lamps allow operators to precisely control heat intensity and distribution, enabling fine-tuning of the drying process based on specific product needs.   Space Savings and Process Optimization: The compact design of quartz infrared emitter lamps allows for easy integration into various conveyor dryers, resulting in a more compact overall equipment design, which is easier to arrange and operate. Precise control of temperature and heat distribution also provides operators with flexible adjustment options to meet the needs of different products.    
 220V 950W Gold Reflector Infrared Heating Lamps For Eliminating Leather Wrinkles
220V 950W Gold Reflector Infrared Heating Lamps For Eliminating Leather Wrinkles
220V 950W Gold Reflector Infrared Heating Lamps For Eliminating Leather Wrinkles Automotive Seat Materials (Whether Genuine Leather or Synthetic Leather) May Develop Wrinkles During Production or Use, and Infrared Heating Lamps Can Be Applied to Eliminate These Wrinkles, Restoring the Material to a Smooth State.       The advantage of infrared heating lies in its rapid and uniform heating capability, which penetrates the material’s surface to ensure even internal heat distribution. For leather or synthetic leather, appropriate heating softens the material, making it easier to stretch or reshape, thereby removing wrinkles. Infrared heating employs specific wavelengths of radiation to penetrate the surface layer of the material, softening internal fibers or molecular structures and reducing rigidity. Once softened, the material can more easily regain a flat shape through mechanical stretching, pressing, or its own weight.     Genuine leather is more temperature-sensitive, requiring lower temperatures and slower heating rates, while synthetic leather can withstand higher temperatures but must avoid melting. Therefore, during the wrinkle-removal process, infrared heating parameters (e.g., wavelength, temperature, duration) must be adjusted based on the material type.       Infrared Heating Lamp -Technical Principles   1. Infrared Lamp -Wavelength Matching    Genuine Leather (Natural Fibers): Use medium-wave infrared heaing lamps (2–4 μm) for gradual heating to avoid protein denaturation and shrinkage caused by high temperatures.   Synthetic Leather (Polymer Materials): Apply fast medium-wave infrared heating lamps (1.4–2 μm) for rapid penetration, softening the PVC/PU layer while preventing surface melting.   2. Infrared Lamp-Temperature Control   Genuine Leather: Maintain temperatures at 60–80°C.   Synthetic Leather: Operate at 80–120°C.   A PID temperature control system dynamically adjusts infrared heating to prevent thermal damage.   3. Uniformity Design By Infrared Heating   Utilize a multi-zone independently controlled infrared lamps matrix combined with gold-reflective-coated heating tubes to enhance radiation uniformity, ensuring temperature variations ≤5°C across the material.     4. Infrared Heating Time Optimization   Genuine Leather: Slow heating over 1–3 minutes to prevent localized overheating.   Synthetic Leather: Short, efficient cycles of 30–60 seconds to avoid insufficient softening.         Single Tube Infrared Lamp  
 Halogen Quartz Infrared Lamp 3000W Quartz Electric IR Lamp Replace For Krones Blow Moulding Machines
Halogen Quartz Infrared Lamp 3000W Quartz Electric IR Lamp Replace For Krones Blow Moulding Machines
Halogen Quartz Infrared Lamp 3000W Quartz Electric IR Lamp Replace For Krones Blow Moulding Machines
 9000W Fast Medium Wave Infrared Quartz Heater Lamp 3300mm Length For Laminated Glass Cutting Replacement Heraeus 81895701 Twin Tube IR Emitter
9000W Fast Medium Wave Infrared Quartz Heater Lamp 3300mm Length For Laminated Glass Cutting Replacement Heraeus 81895701 Twin Tube IR Emitter
9000W Fast Medium Wave Infrared Quartz Lamp 3300mm long For Laminated Glass Cutting Replacement Heraeus 81895701 Twin Tube IR Emitter
 240V 1000W Filter Manufacturing Glue Drying Infrared Lamp High Efficient Infrared Heating Lamp
240V 1000W Filter Manufacturing Glue Drying Infrared Lamp High Efficient Infrared Heating Lamp
240V 1000W Glue Drying Infrared Lamp High Efficient Filter Manufacturing Infrared Heating Lamp
 Twin Tube IR Emitter 400V 6400W Replacement Heraeus 88853301 Infrared Quartz Radiator For Laminated Glass Cutting
Twin Tube IR Emitter 400V 6400W Replacement Heraeus 88853301 Infrared Quartz Radiator For Laminated Glass Cutting
Twin Tube IR Emitter 400V 6400W Replacement Heraeus 88853301 Infrared Quartz Radiator For Laminated Glass Cutting
 460V 8400W Infrared IR Emitter Replacement Heraeus 43144201 Quartz Twin Tube Emitter Infrared Radiator
460V 8400W Infrared IR Emitter Replacement Heraeus 43144201 Quartz Twin Tube Emitter Infrared Radiator
460V 8400W Infrared IR Emitter Replacement Heraeus 43144201 Quartz Twin Tube Emitter Infrared Radiator
 Medium Wave Infrared Heater Lamp 230V 1500W Door Coating Curing Electric Infrared Quartz Lamp
Medium Wave Infrared Heater Lamp 230V 1500W Door Coating Curing Electric Infrared Quartz Lamp
Medium Wave Infrared Heater Lamp 230V 1500W Door Coating Curing Electric Infrared Quartz Lamp
 Double Tube Infrared Emitter 380V 2000W 800MM Infrared Radiator With Ceramic White Reflector
Double Tube Infrared Emitter 380V 2000W 800MM Infrared Radiator With Ceramic White Reflector
Double Tube Infrared Emitter 380V 2000W 800MM Infrared Radiator With Ceramic White Reflector
 415V 3500W 1300mm Infrared Emitter Quartz Tube IR Lamp
415V 3500W 1300mm Infrared Emitter Quartz Tube IR Lamp
415V 3500W 1300mm Infrared Emitter Quartz Tube IR Lamp We are double quartz tube IR Emitter manufacturer and if you need twin tube IR lamps with other specifications, please refer the attached technical drawing and contact us for confirmation. We need the following specifications. 1: Total length 2: Heated length 3: Tube diameter 4: Lamp voltage 5: Lamp power 6: Reflector      Double quartz tube is a better stable design for short wave, fast response medium wave, carbon medium wave and medium wave infrared heating lamps with high radiation density and high power intensity. The double tube IR emitter's sizes can be 23×11mm and 33×15mm. The heating filament of infrared IR emitters can be designed by tungsten, Ni-Cr alloy and carbon fiber. In order to better convey and focus on the heated material all the IR radiation emitted from the lamps, the special gold reflector or ceramic white reflector will be coated and fixed directly on the quartz surface.     According to the configuration of different heating filament design and ending cables, twin tube infrared lamp can be produced as the following common filament configuration.  1: Cables can be one side connection or two sides connection 2: Different heating length designed for partial heating purpose 3: Length is up to 6 meter long and widely used in industrial heating process, such as glass cutting, plastics forming or lamination, auto painting and etc..     Applications of Infrared Heating Technology in Packaging Production for the Food and Medical Industries Food Packaging Material Drying: Used for drying food packaging films or coatings to ensure uniformity and stability. Food Dehydration: Used for rapid dehydration of fruits, vegetables, and meat products, preserving nutrients and extending shelf life. Food Sterilization: Utilizes the high-temperature characteristics of infrared radiation to sterilize food surfaces, improving food safety. Medical Device Packaging Sterilization: Used for the sterile treatment of medical equipment packaging, enhancing hygiene standards for medical products. Pharmaceutical Packaging Drying: Applied to the drying of pharmaceutical capsules and tablet packaging to ensure product stability. Electronics Packaging: Used for drying electronic component packaging films to prevent moisture-related short circuits or damage. Cosmetics Industry: Applied to the drying of packaging materials for skincare products, lipsticks, etc., improving product quality and appearance.  
 230V 1100W Twin Tube Shortwave Infrared Heat Lamp Quartz Industry Drying Tube Lamp
230V 1100W Twin Tube Shortwave Infrared Heat Lamp Quartz Industry Drying Tube Lamp
230V 1100W Twin Tube Shortwave Infrared Heat Lamp Quartz Industry Drying Tube Lamp
 235V 2000W 780mm Quartz Infrared Radiator IR Emitter For Plastic Industry Drying Process
235V 2000W 780mm Quartz Infrared Radiator IR Emitter For Plastic Industry Drying Process
235V 2000W 780mm Quartz Infrared Radiator IR Emitter For Plastic Industry Drying Process
 230V 1500W 480mm Rapido Tungsten Heating Infrared Lamp Quartz Heater Infrared Tube
230V 1500W 480mm Rapido Tungsten Heating Infrared Lamp Quartz Heater Infrared Tube
230V 1500W 480mm Rapido Tungsten Heating Infrared Lamp Quartz Heater Infrared Tube
 400V 2000W 355mm IR Heater Lamp Single Tube Halogen Shortwave Heater Lamp With Ceramic Coated Reflector
400V 2000W 355mm IR Heater Lamp Single Tube Halogen Shortwave Heater Lamp With Ceramic Coated Reflector
400V 2000W 355mm IR Heater Lamp Single Tube With Ceramic Reflector Coating
 400V 5000W 2500MM Medium Wave Infrared Drying Quartz Heater Tube For Textiles Printing Ink Water Curing
400V 5000W 2500MM Medium Wave Infrared Drying Quartz Heater Tube For Textiles Printing Ink Water Curing
400V 5000W 2500MM Medium Wave Infrared Drying Quartz Heater Tube For Textiles Printing Ink Water Curing Quartz infrared radiation heater has proven to be highly effective for drying leather, offering several distinct advantages over traditional methods. Here are the main characteristics and benefits of using high-efficiency infrared heaters for leather drying:   1. Fast Drying Process The use of high-efficiency infrared heaters significantly speeds up the drying process compared to conventional steam hot air convection and heat conduction dryers. Infrared radiation energy is transmitted directly to the leather surface without the need for an intermediate medium. Part of the radiation penetrates into the leather pores, with a penetration depth of up to 0.1 mm to 2.0 mm. The radiation within the capillary pores is almost entirely absorbed after multiple reflections by the pore walls, leading to very high heat transfer efficiency. For the same leather, drying with infrared radiation heaters greatly shortens the drying time.   2. High-Quality Drying The drying quality with quartz infrared radiation is excellent. Since both the surface layer and the inner layers of the leather absorb far-infrared radiation simultaneously, the drying process is uniform. This results in better physical properties of the leather post-drying and improved color quality. For example, in leather goods manufacturing, maintaining uniform drying is critical for ensuring the final product's quality and aesthetic appeal.   3. Energy Efficiency Quartz infrared radiation drying is more energy-efficient compared to other radiation and electric drying methods. It can save more than 50% of the energy typically consumed. Additionally, the infrared radiating elements in these dryers have a simple structure, resulting in smaller equipment size, easier operation, and enhanced safety.   Medium wave quartz infrared heating elements are particularly suitable for the fast heating of surface or thin materials, and the range of IR radiation wave is 2.2-4.0μm. Plastic, water and other solvents absorb well this medium wave radiation. Because of its long working life and economical efficiency, medium wave lamps are popular used in continuous heating processes and long heating machine or drying oven.   We are customized IR heating elements manufacturer and if you need medium wave IR heaters with other specifications, please contact us for confirmation. We need the following specifications. 1: Total length 2: Tube diameter 3: Lamp voltage 4: Lamp power 5: Reflector   
 380V 1500W Twin Tube Medium Wave Infrared Element Quartz Heat Lamp For Water And Ink  Drying
380V 1500W Twin Tube Medium Wave Infrared Element Quartz Heat Lamp For Water And Ink Drying
380V 1500W Twin Tube Medium Wave Infrared Element Quartz Heat Lamp For Water And Ink Drying Infrared heating can be used for the melting of ice, the drying of moisture in food or spices, the preheating and drying of moisture in wood or board, and the drying of medicinal materials. Water molecules can absorb medium-wave infrared radiation easily, our fast medium-wave, carbon medium-wave and medium-wave infrared radiation heating lamps are suitable for replacing various high-energy-consumption hot air drying. The water molecules inside of heated objects can directly absorb infrared radiation, the irradiated water molecules are moving violently and rise the inner temperature of heated objects rapidly. Instead of conducting heat through the air, the heating efficiency with infrared can be greatly improved.   FAST RESPONSE MEDIUM WAVE TWIN TUBE QUARTZ INFRARED HEAT LAMP     CARBON MEDIUM WAVE TWIN TUBE QUARTZ INFRARED HEAT LAMP     MEDIUM WAVE TWIN TUBE QUARTZ INFRARED HEAT LAMP     If we distribute infrared heating into the traditional hot air system, that is, infrared heating with hot air circulation, the moisture drying will be better than traditional air heating or using infrared heating alone. Because the flowing hot air can evenly transfer heat to the heated object or any part of heating area, it will not cause the accumulation of heat energy in the middle part, so that the heating temperature is uniform and at the same time, a large amount of evaporated water can be taken away.     Main Drying Applications: Industrial Paint and Coating Drying: In the automotive, shipbuilding, and machinery manufacturing industries, rapid curing of coatings and paints is crucial. Quartz infrared heat lamps can quickly evaporate the moisture in the coating, ensuring uniform and durable layers, preventing surface defects caused by moisture residue. Textile and Paper Processing: In textile dyeing and paper production, removing moisture is a key step. Infrared heating can precisely control drying temperatures, avoiding material shrinkage or deformation while speeding up the production process. Food Industry: In food dehydration and drying processes (such as drying fruits or producing powders), infrared heating helps retain nutrients while significantly improving drying efficiency. Construction Material Processing: For concrete, tiles, and other water-containing construction materials, rapid drying ensures stable physical properties during the construction process.
 230V 3000W Infrared Heating Lamp For Folding Thermoplastic Films 1200MM Quartz Radiation Infrared Emitter
230V 3000W Infrared Heating Lamp For Folding Thermoplastic Films 1200MM Quartz Radiation Infrared Emitter
230V 3000W Infrared Heating Lamp For Folding Thermoplastic Films 1200MM Quartz Radiation Infrared Emitter Infrared heating lamps are widely used in the processing of thermoplastic materials. Their efficient and precise heating characteristics make them a significant technology in modern industry, serving as an alternative to traditional heating methods such as convection or contact heating.   Infrared Heating Advantages:   High Efficiency: Infrared radiation heat transfer efficiency can reach up to 90%, which is more than 50% higher than that of hot air convection heating (30-40%).   Rapid Heating: Heating speed is 5-10 times faster than traditional methods. For example, in PVC sheet thermoforming, infrared heating reduces the cycle time from 120 seconds to 20 seconds, increasing production capacity sixfold.   Precise Temperature Control: Temperature control accuracy is ±1°C, preventing overheating or insufficient melting. For instance, the defect rate in medical catheter welding decreased from 3% to 0.2%.   Wavelength Matching: Short-wave infrared (0.8-1.4μm) is suitable for dark materials (e.g., carbon fiber-reinforced plastics), while medium to long-wave infrared (2-10μm) is ideal for transparent or light-colored materials (e.g., PC, PMMA).   Customizable Power Density: Power density can be customized up to 300KW/M².   Adjustable Radiation Distance: The distance between the infrared heating tube and the heated object can be adjusted for safety and uniformity, preventing overheating or material melting hazards.       E-DEN Lighting Technology is a professional IR heating solution supplier which was established in 2011. We produce high quality quartz infrared radiator lamps and design different IR heating modules for all industrial and scientific applications, including offset, silk-screen, label, graphic arts and textiles printing, auto-painting, paper and rubber drying, leather and adhesive bonding curing, plastic forming, glass bending and lamination, blow-molding, woodworking, tableware and bottle sterilization, agriculture studies, aerospace researches and other applications. Our technology team can design and produce infrared heating lamps or IR heaters according to your heating requests. We are always taking responsibility to provide consistent quality and prompt no-hassle service. High efficiency, Energy saving, Good quality and Long working life for your business, while saving your money.   Industry Plastic Heating Applications:   Plastic Welding and Bonding: Infrared heating lamps emit infrared radiation with strong penetration, allowing focused heating on weld seams (e.g., automotive tail lights, medical device housings). This enables rapid surface melting for seamless welding, avoiding overall heating-induced thermal deformation.       Injection Molding and Extrusion Processes: Infrared heating lamps can quickly preheat molds before injection, reducing issues like short shots or residual stress. They also efficiently remove trace moisture from hygroscopic materials like PET, preventing injection molding defects.       Thermoforming and Film Processing: In thermoforming, infrared radiation can penetrate ABS sheets up to 5mm thick, achieving synchronous heating of inner and outer layers (temperature difference <5°C), reducing uneven cooling shrinkage. In bi-axial stretching of films, infrared heating lamps can elevate the film to its glass transition temperature (e.g., PET's Tg ≈75°C) before stretching, ensuring consistent molecular orientation.     3D Printing and Composite Materials: In selective laser sintering, infrared heating maintains the powder bed at 170-180°C, reducing laser energy requirements and increasing forming speed by over 30%. Localized infrared heating can activate epoxy resin matrices for rapid curing (e.g., from 120°C to 180°C in just 2 minutes).     The value of infrared heating lamps in thermoplastic processing lies not only in energy savings and cost reduction but also in their precise thermal management, driving the manufacture of high-value-added products such as microfluidic chips and lightweight composite components.
 Fabric Embossing IR Lamp 4000W 2000mm Length Twin Tube Quartz Infrared Light Lamps
Fabric Embossing IR Lamp 4000W 2000mm Length Twin Tube Quartz Infrared Light Lamps
Fabric Embossing IR Lamp 4000W 2000mm Length Twin Tube Quartz Infrared Light Lamps EDIRTB40-40-2000/1900-2311G2 Lamp voltage=400V Lamp wattage=4000W Total length=2000mm Heated length=1900mm Reflector=Gold coating Twin tube=23×11mm Connection= One side with cables Working position=Horizontal Other specifications can be customized according to your requests.   Quartz infrared heating lamps are applied in embossing machines primarily due to their efficient thermal radiation properties, which allow for rapid and uniform heating of materials or components, optimizing the embossing process. They are particularly useful when processing surfaces that require high temperatures for embossing or texture processing. Embossing machines are often used to imprint patterns or textures onto material surfaces such as paper, leather, plastics, and metals.   Application Methods in Embossing Machines Embossing machines create textures on material surfaces (such as plastic, leather, or paper) using high temperature and pressure. Quartz infrared heating tubes are commonly used in the following stages:   Heating the Embossing Rollers: Quartz infrared tubes are arranged around or inside the embossing rollers to directly radiate heat to the roller surface, uniformly raising its temperature to the material's softening point (e.g., PVC at 120-160°C), ensuring optimal material stretchability during embossing.    Preheating Materials: Infrared tubes preheat the material before it enters the embossing rollers, reducing the heat load on the rollers and improving overall efficiency.     Auxiliary Molding Heat: For complex textures or thick materials, infrared tubes can provide localized heat to the molds, preventing uneven temperatures that could lead to blurry textures.     Application Cases Case 1: Plastic Film Embossing (PVC Decorative Film) Application: For plastic products, particularly high-polymer materials, quartz infrared heating tubes can effectively focus heat on the plastic surface, softening it for optimal embossing. This process not only speeds up production but also prevents deformation or deterioration of the plastic due to over-heating. The infrared tubes are embedded inside the embossing rollers to heat the roller surface to 140°C, replacing traditional electric heating wires. Results: Preheating time is reduced from 20 minutes to 3 minutes. Energy consumption decreases by 35% as infrared radiation directly reaches the roller surface, minimizing heat loss. Texture clarity improves, and defect rates decrease by 12%.   Case 2: Leather Embossing Application: In leather embossing machines, quartz infrared heating tubes quickly heat the leather surface to achieve optimal flexibility. This allows for more precise control when embossing detailed textures with minimal pressure, preventing damage to the leather. Quartz infrared tubes are installed above the embossing mold in adjustable arrays, with radiation intensity dynamically adjusted based on leather thickness. Results: Temperature control is precise, preventing leather from scorching. Production efficiency increases by 25% as heating speed matches the production line’s pace.   Case 3: Paper Embossing Relief Process Application: In paper production, especially for high-quality paper embossing, quartz infrared heating tubes preheat the paper surface, making it easier to form textures during embossing and preventing wrinkles or uneven textures. For artistic paper products requiring localized relief effects, medium-wave infrared tubes (wavelength 2.0-4μm) quickly heat the paper surface to 80°C, softening the fibers before immediate embossing. Results: Prevents paper from becoming too dry and brittle. Texture depth consistency improves, making it suitable for small-batch customized production.
 700V 9800W Twin Tube Medium Wave Fast Response IR Lamp For Laminated Glass Cutting Infrared Radiator
700V 9800W Twin Tube Medium Wave Fast Response IR Lamp For Laminated Glass Cutting Infrared Radiator
700V 9800W Twin Tube Medium Wave Fast Response IR Lamp For Laminated Glass Cutting Infrared Radiator Part nunmber: EDIRTB70-98-4820-3315G2   Twin tube fast response medium wave infrared heating lamp can be controlled and adjusted the output power by PLC or SCR regulator automatically, so we can have accurate(±1 ℃)IR heating temperature in industry process. The heating filaments can be desinged and work in 1200~1800℃ with 1~2 seconds fast response time, so the FMW IR lamp are widely used for fast heating application which needs heating temperature from 50~500℃.   Because of needing small installation space and flexible working position, our infrared quartz heating lamps are popular for industrial customers to repalce air heating and other high energy consumption electric heating elements, or customers prefer a combination heating solutions which includes circle hot air heating with fast efficient IR heatings.   We are infrared radiation lamp manufacturer and our twin tube infrared IR lamp with good quality which can be successfully repalced for Heraeus lamp, LISEC cutting lamp, Bottero cutting lamp, SANKEN cutting lamp and other brands. We have successfully produced long IR lamps with some specifications as below: 400V 6400W 1900mm 400V 5900W 2380mm 400V 9450W 3450mm 600V 8800W 3300mm 600V 8300W 3450mm 600V 7800W 3520mm 600V 8000W 3855mm 500V 5900W 3870mm 700V 10300W 3920mm 600V 7800W 4720mm 700V 9800W 4820mm 600V 16000W 6120mm    
 12000W Twin Tube IR Radiator Lamp For Laminator Preheating and Drying
12000W Twin Tube IR Radiator Lamp For Laminator Preheating and Drying
12000W Twin Tube IR Radiator Lamp For Laminator Preheating and Drying Infrared heating is suitable for sheet plastics prodcuts thermoforming, laminating, cutting, bending, blowing, deburring, softening, plastic material includes sheet type ABS  PP  PS  PVC  EPS  HIPS  PE  HDPE  PC  PMMA  EVA  PETG. Those processed plastics are widely used as electronics blister, food, hardware tools, medical equipment, lamps and lanterns, sanitary ware, luggage, refrigerator liner, automotive interior decoration, container boxes, pallet and other plastic products. We have single tube quartz heat lamp and twin tube heat lamp for matching your heating process, customzied IR heat length, customzied heat power, customized radiant reflectors, and customized infrared heating module. Our infrared heating engineers will help you and provide experienced infrared heating solutions for you.  High Efficency, Fast Heaitng And Energy Saving Infrared Radiant Heat Lamps Maybe Better For Your Heating Process. Compared with traditional heating methods, infrared heating technology can improve heating efficiency, reduce energy loss, and has good environmental adaptability. In the field of laminating machines, infrared heating technology is widely used in the heating and forming processes of various film materials to improve production efficiency and product quality.     At the same heating temperature, the heating time of the laminating machine using infrared heaters is shortened by an average of 30% compared with traditiona heating methods such as conduction. This data shows that infrared radiation can transfer energy into the material more quickly and heat more efficiently. This is mainly due to the fact that infrared radiation can be effectively absorbed by the thin film material and can produce effective heat transfer within the material, thereby achieving a rapid and uniform heating process.     In addition, laminating machines using infrared heating technology improve film thickness uniformity surface flatness of film by 20% compared with traditional heating methods. This due to infrared radiation can effectively stimulate the vibration and rotation of molecules inside the film material, promote heat conduction and interaction between molecules, and make the interior of the material heated more uniformly. This further improves product stability and quality.   Besides infrared heating technology also significantly improves the flatness of the film surface. Physically, this may be related to the fact that infrared radiation can effectively penetrate transparent materials and produce thermal effects on the surface of the materials. Iinfrared radiation can directly act on the surface of the material and stimulate molecular vibration, making the surface of the film more uniformly heated, thus achieving a significant improvement in the flatness of the film surface.  
 400V 12000W Rapid Medium Wave Twin Tube Infrared Emitter IR Radiator Lamp
400V 12000W Rapid Medium Wave Twin Tube Infrared Emitter IR Radiator Lamp
400V 12000W Rapid Medium Wave Twin Tube Infrared Emitter IR Radiator Lamp We are twin tube infrared emitter lamp manufacturer and our twin tube is a better stable design for short wave, fast response medium wave, carbon medium wave and medium wave infrared heating lamps with high radiation density and high power intensity. The twin tube quartz sizes are 23×11mm and 33×15mm. The heating filament of infrared lamps can be designed by tungsten, Ni-Cr alloy and carbon fiber. In order to better convey and focus on the heated material all the IR radiation emitted from the lamps, the special gold reflector or ceramic white reflector will be coated and fixed directly on the quartz surface. Twin tube fast response medium wave infrared heating lamp can be controlled and adjusted the output power by PLC or SCR regulator automatically, so we can have accurate(±1 ℃)IR heating temperature in industry process. The heating filaments can be desinged and work in 1200~1800℃ with 1~2 seconds fast response time, so the FMW IR lamp are widely used for fast heating application which needs heating temperature from 50~500℃.   Because of needing small installation space and flexible working position, our infrared quartz heating lamps are popular for industrial customers to repalce air heating and other high energy consumption electric heating elements, or customers prefer a combination heating solutions which includes circle hot air heating with fast efficient IR heatings.     Applications of infrared heating lamps/quartz emitters Plastics Processing PVB/PVC curing Plastic film stretching Plastic packaging Bottle blowing machine Glass Industry IR preheating for glass Glass bending and lamination Laminated glass cutting Textiles Industry Textile fiber drying Printing Industry offset printing and silk-screen printing label printing and flexo printing Electronic Industry Capacitors plate drying Printed circuit welding wave soldering machine Food and Environment Tableware/Bottle sterilization Roast chicken Chocolate melting Fruit/Vegetable/Herbal medicine dehydrating Melting ice and snow Other industry heating Painting or inks drying/Leather curing/Heat curing adhesive/Rubber drying Mold drying/Acoustic panel hardening/Car bodyshells painting drying      
 400V 5900W 2380MM Quartz Infrared Twin Tube Emitter For Laminated Glass Cutter Replacement Heraeus 89068401 Infrared Emitter
400V 5900W 2380MM Quartz Infrared Twin Tube Emitter For Laminated Glass Cutter Replacement Heraeus 89068401 Infrared Emitter
400V 5900W 2380MM Quartz Infrared Twin Tube Emitter For Laminated Glass Cutter Replacement Heraeus 89068401 Infrared Emitter We are infrared emitter lamp manufacturer and our twin tube infrared IR Emitter in good quality which can be successfully repalced for Heraeus lamp, LISEC cutting lamp, Bottero cutting lamp and other brands. We have successfully produced long IR lamps with some specifications as below: 400V 6400W 1900mm 400V 5900W 2380mm 400V 9450W 3450mm 600V 8800W 3300mm 600V 8300W 3450mm 600V 7800W 3520mm 600V 8000W 3855mm 500V 5900W 3870mm 700V 10300W 3920mm 600V 7800W 4720mm 700V 9800W 4820mm 600V 16000W 6120mm     Twin tube is a better stable design for short wave, fast response medium wave, carbon medium wave and medium wave infrared heating lamps with high radiation density and high power intensity. The twin tube quartz sizes are 23×11mm and 33×15mm. The heating filament of infrared lamps can be designed by tungsten, Ni-Cr alloy and carbon fiber. In order to better convey and focus on the heated material all the IR radiation emitted from the lamps, the special gold reflector or ceramic white reflector will be coated and fixed directly on the quartz surface.   Twin Tube Infrared Emitters are widely used in glass treatment such as: • Molding and tempering • Drying and curing of inks on glass • Screen printing of wind shield glass • Heating PVB film of laminated glass•Glass lamination • Heating of fiber glass reinforced materials    
 Twin Tube Fast Medium Wave IR Quartz Heating Lamp For Bottero Laminated Glass Cutting Machine
Twin Tube Fast Medium Wave IR Quartz Heating Lamp For Bottero Laminated Glass Cutting Machine
Twin Tube Fast Medium Wave IR Quartz Heating Lamp For Bottero Laminated Glass Cutting Machine The glass cutting principle is to activate the infrared heating lamp to heat up the PVB film at the end of the cutting cycle and so carry out the breaking operations during the heating phase for cutting laminated and monolithic glass. We are infrared lamp manufacturer and our EDEN IR quality customized twin tube infrared lamps can be successfully repalced for Heraeus lamp, LISEC cutting lamp, Bottero cutting lamp and other brands. We have successfully produced long IR lamps with some specifications as below: 400V 6400W 1900mm 400V 9450W 3450mm 600V 8300W 3450mm 600V 7800W 3520mm 600V 8000W 3855mm 500V 5900W 3870mm 700V 10300W 3920mm 600V 7800W 4720mm 700V 9800W 4820mm 600V 16000W 6120mm       Welcome to inquiry us for your cutting table.  
 1000W Rapido Tungsten Infrared Lamp Quartz Infrared Tube For Textiles Ink Flasj Curing and Drying
1000W Rapido Tungsten Infrared Lamp Quartz Infrared Tube For Textiles Ink Flasj Curing and Drying
1000W Rapido Tungsten Infrared Lamp Quartz Infrared Tube For Textiles Ink Flasj Curing and Drying Lamp voltage=110V/220V/380V/400V Lamp wattage=500W/1000W/1500W/2000W/2500W Lamp length=300mm~1000mm Tube diameter=10mm Application: Paper Ink Drying, Textiles Ink Drying  
 3000W 6000W Carbon Medium Wave Twin Tube Infrared Emitter Quartz Heating IR Emitter For Industry Drying
3000W 6000W Carbon Medium Wave Twin Tube Infrared Emitter Quartz Heating IR Emitter For Industry Drying
3000W 6000W Carbon Medium Wave Twin Tube Infrared Emitter Quartz Heating IR Emitter For Industry Drying Quartz infrared emitter has proven to be highly effective for drying leather, offering several distinct advantages over traditional methods. Here are the main characteristics and benefits of using high-efficiency infrared heaters for leather drying:   1. Fast Drying Process The use of high-efficiency infrared heaters significantly speeds up the drying process compared to conventional steam hot air convection and heat conduction dryers. Infrared emitter energy is transmitted directly to the leather surface without the need for an intermediate medium. Part of the emitter penetrates into the leather pores, with a penetration depth of up to 0.1 mm to 2.0 mm. The emitter within the capillary pores is almost entirely absorbed after multiple reflections by the pore walls, leading to very high heat transfer efficiency. For the same leather, drying with infrared emitter heaters greatly shortens the drying time. 2. High-Quality Drying The drying quality with quartz infrared emitter is excellent. Since both the surface layer and the inner layers of the leather absorb far-infrared emitter simultaneously, the drying process is uniform. This results in better physical properties of the leather post-drying and improved color quality. For example, in leather goods manufacturing, maintaining uniform drying is critical for ensuring the final product's quality and aesthetic appeal.   3. Energy Efficiency Quartz infrared emitter drying is more energy-efficient compared to other emitter and electric drying methods. It can save more than 50% of the energy typically consumed. Additionally, the infrared radiating elements in these dryers have a simple structure, resulting in smaller equipment size, easier operation, and enhanced safety.   Considerations and Precautions While high-efficiency infrared drying has many advantages, there are important considerations to keep in mind: 1. Leather Area Shrinkage When using infrared emitter to dry leather, significant shrinkage can occur. For grid leather, shrinkage can range from 20% to 30%, and for base leather, from 4% to 6%. Therefore, it is advisable to dry the leather in a constrained or fixed state to minimize shrinkage. This constraint can help maintain the desired dimensions and reduce deformation during the drying process.   2. Heat Distribution Infrared drying supplies much more heat to the leather and its moisture than steam methods, sometimes even dozens of times higher. The strong external heat source creates a large temperature difference between the leather surface and its interior. Consequently, quartz infrared heaters are most suitable for drying thin leather and for drying the leather surface after painting. This focused application ensures that the leather does not overheat or suffer from quality degradation due to uneven heat distribution.
 2000W 3000W 4000W 1000MM Twin Tube Carbon Medium Wave Infrared Heater IR Emitter
2000W 3000W 4000W 1000MM Twin Tube Carbon Medium Wave Infrared Heater IR Emitter
2000W 3000W 4000W 1000MM Twin Tube Carbon Medium Wave Infrared Heater IR Emitter Quartz infrared heat emitters are an efficient heating device that emits infrared radiation to directly heat the surface and interior of objects, without relying on ambient air temperature. The core principle is the use of infrared electromagnetic radiation to transfer energy in the form of light to the target object. This heating method has significant advantages in moisture drying applications, especially in industrial production where rapid and efficient drying is required.   Working Principle of Infrared Heating Quartz infrared heat emitters operate by heating the heating element inside the quartz glass tube, generating infrared radiation. Depending on the wavelength of the infrared radiation, quartz infrared heat emitters are typically divided into short-wave, medium-wave, and long-wave types: Short-wave infrared (0.76-2 µm): Strong penetration, suitable for deep heating. Medium-wave and carbon medium wave infrared (2-4 µm): High absorption rate by water molecules, especially suitable for drying water-containing materials. Long-wave infrared (4-15 µm): Heat concentrated on the surface, suitable for surface drying or low-temperature heating.   In moisture drying, medium-wave and carbon medium wave infrared is particularly effective because its wavelength closely matches the vibration frequency of water molecules, enabling high absorption and rapid conversion of heat, thus accelerating the evaporation process. Carbon medium wave infrared heating emitters are designed with special spiral carbon fiber heating filament, which are suitable for fast heating of surface or drying water and inks, and the range of IR radiation wave is 2.0-4.0μm. Because of its low color temperature and matched medium wave infrared radiation, carbon medium wave infrared emitters are widely used in industry screen printing for textiles, emulsion drying, tea drying, food and vegetables drying, civilian application like infrared heater for warming, heating stove and natural herbal medicine.   Twin tube carbon medium wave infrared heating emitter can be used for application which needs heating temperature from 40-400 ℃, especailly lower visiable lights requested. We have 23×11mm or 33×15mm double quartz tube for producing different length and different power. In order to better convey and focus on the heated material all the IR radiation emitted from the IR emitter, the special gold reflector or white ceramic reflector will be coated and fixed directly on the quartz surface.   We are customized IR emitters manufacturer and we can desing and produce carbon IR emitter for you in different heating types. If you need twin tube carbon medium wave quartz infrared emitter with other specifications, please contact us and we will check the following specifications with you within 4 working hours.   1: Total length 2: Tube diameter 3: Lamp voltage 4: Lamp power 5: Reflector        Applicable to Various Materials: Quartz infrared heat emitters can evenly heat different types of water-based materials. Whether it’s a smooth surface coating or a porous water-absorbing material, precise drying can be achieved. Main Drying Applications: Industrial Paint and Coating Drying: In the automotive, shipbuilding, and machinery manufacturing industries, rapid curing of coatings and paints is crucial. Quartz infrared heat emitters can quickly evaporate the moisture in the coating, ensuring uniform and durable layers, preventing surface defects caused by moisture residue. Textile and Paper Processing: In textile dyeing and paper production, removing moisture is a key step. Infrared heating can precisely control drying temperatures, avoiding material shrinkage or deformation while speeding up the production process. Food Industry: In food dehydration and drying processes (such as drying fruits or producing powders), infrared heating helps retain nutrients while significantly improving drying efficiency. Construction Material Processing: For concrete, tiles, and other water-containing construction materials, rapid drying ensures stable physical properties during the construction process.
 400V 8000W 3450MM Twin Tube Infrared Lamp Medium Wave Quartz Fast Heating IR Lamp For Laminated Glass Cutting
400V 8000W 3450MM Twin Tube Infrared Lamp Medium Wave Quartz Fast Heating IR Lamp For Laminated Glass Cutting
400V 8000W 3450MM Twin Tube Infrared Lamp Medium Wave Quartz Fast Heating IR Lamp For Laminated Glass Cutting Fast response medium wave infrared lamp can be switched on/off the same as short wave lamps in a short time, and the range of IR radiation wave is 1.4-2.0μm. The especial fast medium wave can heat the surface and thin layers quickly. Fast medium wave lamps can be made in all lengths up to 6 meter long. The twin tube designed lamps are stable and its high power density lamp can transfer high energy to the long material.   Along the cutting trajectory to install infrared heating lamps, the infrared heating will increase the temperature of glass rapidly, and the heat is passed to the surrounding area in the form of thermal conductivity, forming a thermal influence area along the infrared heating trajectory, especially the temperature on the cutting trajectory is going to be the highest. The fast heating raise the temperature and it causes the glass expansion to have compression stress. The upper and lower surface of the glass produces tensile stress, due to the temperature decreasing by air convection. At this time, the expansion and contraction of the glass material are the largest, and glass will be broken easier and this is the glass cutting way through IR heating lamp.   Twin tube fast response medium wave infrared heating lamp can dry ink and coatings on the surface of objects in a short time. The heating filaments can be desinged and work in 1200~1800℃, so the FMW IR lamp are widely used for fast heating application which needs heating temperature from 50~500℃.   1. Accurate(±1 ℃)IR heating temperature control 2. 1~2 seconds fast response time to full power IR heating energy 3. Small installation space, flexible in horizontal or vertical working position
 220V 2000W 950MM Infrared Heater Tubes Quartz Heating Elements For Plastic Blow Molding and Thermoforming
220V 2000W 950MM Infrared Heater Tubes Quartz Heating Elements For Plastic Blow Molding and Thermoforming
220V 2000W 950MM Infrared Heater Tubes Quartz Heating Elements For Plastic Blow Molding and Thermoforming With the continuous advancement of manufacturing technologies, various new heating techniques are being widely adopted in the modern plastic processing industry. Infrared heating tubes, as an efficient and energy-saving heating solution, have played an increasingly important role in plastic blow molding and thermoforming processes. By utilizing the principle of infrared radiation heating, infrared heating tubes can efficiently and precisely control the heating process, improving production efficiency, saving energy, and reducing negative environmental impacts. This article explores the application and advantages of infrared heating tubes in plastic blow molding and thermoforming, helping companies in the industry understand their value and promoting the widespread adoption of this technology. 1. Working Principle of Infrared Heating Tubes Infrared heating tubes use the principle of resistive heating, converting electrical energy into infrared radiation heat. Infrared radiation directly acts on the heated object without the need for a medium to conduct heat, resulting in fast and even heating. Infrared radiation is classified into near-infrared, short-wave infrared, and long-wave infrared, with near-infrared being particularly suitable for plastic heating due to its strong penetration ability, allowing it to quickly heat the plastic surface. The main advantages of infrared heating include: Faster heating: Infrared radiation directly heats the surface of the object, greatly shortening the heating time. High energy conversion efficiency: Compared to traditional heating methods, infrared heating results in lower energy loss, ensuring higher energy conversion efficiency. 2. Application in Plastic Blow Molding In the plastic blow molding process, the main task of the infrared heating tube is to heat the plastic preform to the appropriate softening temperature for subsequent blow molding. Infrared heating tubes offer the following advantages over traditional hot air heating: Faster heating speed: Infrared heating tubes directly heat the surface of the plastic, reducing the time required for air conduction in traditional heating methods, significantly improving heating efficiency. Typically, this can save 10-30% of the time compared to conventional methods. Better heat uniformity: Infrared heating tubes provide uniform heat radiation, preventing common issues like localized overheating or uneven heating found in traditional methods. Precise temperature control: Infrared heating tubes can precisely control the radiation heat by adjusting the power density, ensuring the plastic preform reaches the ideal softening state during heating. These advantages make infrared heating tubes widely used in blow molding production lines, especially in environments requiring high production efficiency and high-quality finished products.
 400V 8300W Twin Tube Infrared IR Heat Lamp For Film Laminating
400V 8300W Twin Tube Infrared IR Heat Lamp For Film Laminating
400V 8300W Twin Tube Infrared IR Heat Lamp For Film Laminating Voltage: 400V Power: 8300W Tube diameter: 33×15mm Total length: 1800mm C-Type In the field of laminating machines, infrared heating technology is widely used in the heating and forming processes of various film materials to improve production efficiency and product quality. In addition, laminating machines using infrared heating technology improve film thickness uniformity surface flatness of film by 20% compared with traditional heating methods. This due to infrared radiation can effectively stimulate the vibration and rotation of molecules inside the film material, promote heat conduction and interaction between molecules, and make the interior of the material heated more uniformly. This further improves product stability and quality.     At the same heating temperature, the heating time of the laminating machine using infrared heaters is shortened by an average of 30% compared with traditiona heating methods such as conduction. This data shows that infrared radiation can transfer energy into the material more quickly and heat more efficiently. This is mainly due to the fact that infrared radiation can be effectively absorbed by the thin film material and can produce effective heat transfer within the material, thereby achieving a rapid and uniform heating process.   Twin tube fast response medium wave infrared emitter can be controlled and adjusted the output power by PLC or SCR regulator automatically, so we can have accurate(±1 ℃)IR heating temperature in industry process. The heating filaments can be desinged and work in 1200~1800℃ with 1~2 seconds fast response time, so the fast response IR heater emitter are widely used for fast heating application which needs heating temperature from 50~500℃. Because of needing small installation space and flexible working position, our infrared quartz heating lamps are popular for industrial customers to repalce air heating and other high energy consumption electric heating elements, or customers prefer a combination heating solutions which includes circle hot air heating with fast efficient IR heatings.    
 230V 1200W 750MM Gold Reflector Fast Response IR Heater Lamp For Moisture Drying
230V 1200W 750MM Gold Reflector Fast Response IR Heater Lamp For Moisture Drying
230V 1200W 750MM Gold Reflector Fast Response IR Heater Lamp For Moisture Drying Quartz infrared heat lamps are an efficient heating device that emits infrared radiation to directly heat the surface and interior of objects, without relying on ambient air temperature. The core principle is the use of infrared electromagnetic radiation to transfer energy in the form of light to the target object. This heating method has significant advantages in moisture drying applications, especially in industrial production where rapid and efficient drying is required.   1. Working Principle of Infrared Heating Quartz infrared heat lamps operate by heating the heating element inside the quartz glass tube, generating infrared radiation. Depending on the wavelength of the infrared radiation, quartz infrared heat lamps are typically divided into short-wave, medium-wave, and long-wave types: Short-wave infrared (0.76-2 µm): Strong penetration, suitable for deep heating. Medium-wave infrared (2-4 µm): High absorption rate by water molecules, especially suitable for drying water-containing materials. Long-wave infrared (4-15 µm): Heat concentrated on the surface, suitable for surface drying or low-temperature heating. In moisture drying, medium-wave infrared is particularly effective because its wavelength closely matches the vibration frequency of water molecules, enabling high absorption and rapid conversion of heat, thus accelerating the evaporation process.   2. Advantages of Quartz Infrared Heat Lamps in Moisture Drying Directional Heating: The infrared radiation is focused directly onto the target area, rather than heating the surrounding air. This directional heating improves energy efficiency and reduces unnecessary heat loss. Efficient Drying: Infrared radiation directly acts on water molecules, increasing their kinetic energy and rapidly turning them into vapor. Compared to traditional hot air or steam heating, infrared heating achieves much faster drying times. Applicable to Various Materials: Quartz infrared heat lamps can evenly heat different types of water-based materials. Whether it’s a smooth surface coating or a porous water-absorbing material, precise drying can be achieved.   3. Main Drying Applications: Industrial Paint and Coating Drying: In the automotive, shipbuilding, and machinery manufacturing industries, rapid curing of coatings and paints is crucial. Quartz infrared heat lamps can quickly evaporate the moisture in the coating, ensuring uniform and durable layers, preventing surface defects caused by moisture residue. Textile and Paper Processing: In textile dyeing and paper production, removing moisture is a key step. Infrared heating can precisely control drying temperatures, avoiding material shrinkage or deformation while speeding up the production process. Food Industry: In food dehydration and drying processes (such as drying fruits or producing powders), infrared heating helps retain nutrients while significantly improving drying efficiency. Construction Material Processing: For concrete, tiles, and other water-containing construction materials, rapid drying ensures stable physical properties during the construction process.
 400V 4000W 1400MM Metal Coating Drying IR Lamp Quartz Infrared Heater Lamp Tube
400V 4000W 1400MM Metal Coating Drying IR Lamp Quartz Infrared Heater Lamp Tube
400V 4000W 1400MM Metal Coating Drying IR Lamp Quartz Infrared Heater Lamp Tube In recent years, infrared drying and heating technology has seen remarkable growth and has been widely adopted in industrial sectors such as semiconductors, coatings, and ink drying, especially in the drying process of electrostatic powder coatings. Quartz infrared heating lamps play an indispensable role in these applications. This is mainly because infrared heating tubes offer the following advantages:   Strong Penetrating Power: Quartz infrared heating lamps emit infrared radiation that penetrates coatings, causing water molecules to vibrate and evaporate rapidly. This fast-drying process is particularly effective for electrostatic powder coatings. Infrared drying significantly shortens the overall production cycle, allowing manufacturers to increase output without compromising quality.                                     Even Heating: Quartz infrared heating lamps provide uniform heat distribution, ensuring that the entire surface of the coating dries evenly. This eliminates the risk of uneven drying, which can lead to defects such as bubbling or cracking.   Direct Heat Transfer: Quartz infrared heating requires no intermediary medium for heat transfer. The radiation energy is directly absorbed by the heated object, converting a significant portion of electrical energy into heat. Compared to other heating methods, this leads to higher heating efficiency, minimizing energy waste, reducing operational costs, and lowering carbon emissions.   Versatility: Another major benefit of using quartz infrared heating lamps in the drying process of electrostatic powder coatings is their versatility. These lamps can be flexibly installed and positioned to focus infrared energy on effective heating areas. Integrated quartz infrared heaters can provide both overall and localized heating, saving energy. Additionally, they can easily adjust the energy output to accommodate different coating thicknesses and materials, ensuring that the drying process remains efficient regardless of the specific requirements of the applied coating.   Precise Temperature Control: Infrared heating offers precise temperature control, with infrared temperature sensors working in conjunction with PLC (Programmable Logic Controller) or SCR (Silicon Controlled Rectifier) controllers to adjust heating temperatures in real-time. This system includes over-temperature alarms and automatic shutoff features, offering greater safety compared to gas heating.     Clean Heating Process: Infrared heating provides a clean and pollution-free drying method. Quartz infrared heating lamps contribute to worker safety, particularly in the ink industry. Unlike traditional drying methods that may involve hazardous chemicals or produce harmful fumes, infrared heating lamps operate cleanly and safely. This reduces the risk of workers being exposed to harmful substances, fostering a healthier working environment.   Low Thermal Inertia: Infrared heating lamps have low thermal inertia and can be combined with hot air systems to create a synergistic heating effect, further enhancing drying efficiency.   Fast response medium wave infrared lamp can be switched on/off the same as short wave lamps in a short time, and the range of IR radiation wave is 1.4-2.0μm. The especial fast medium wave can heat the surface and thin layers quickly. Fast medium wave lamps can be made in all lengths up to 6 meter long. The twin tube designed lamps are stable and its high power density lamp can transfer high energy to the long material.   Twin tube fast response medium wave infrared heating lamp can dry ink and coatings on the surface of objects in a short time. The heating filaments can be desinged and work during 1200~1800℃, so the FMW IR lamp are widely used for fast heating application which needs heating temperature from 50~500℃.   Fast medium wave quartz IR lamps have above main advantages and are popular for industrial customers to repalce air heating and other high energy consumption electric heating elements, or customers prefer a combination heating solutions which includes circle hot air heating with fast efficient IR heatings.  
 380V 2500W 790MM Twin Tube Infrared Element IR Lamp for sheet plastics prodcuts thermoforming, laminating, cutting, bending, blowing, deburring, softening
380V 2500W 790MM Twin Tube Infrared Element IR Lamp for sheet plastics prodcuts thermoforming, laminating, cutting, bending, blowing, deburring, softening
380V 2500W 790MM Twin Tube Infrared Element IR Lamp for sheet plastics prodcuts thermoforming, laminating, cutting, bending, blowing, deburring and softening Infrared heating is suitable for sheet plastics prodcuts thermoforming, laminating, cutting, bending, blowing, deburring, softening, plastic material includes sheet type ABS  PP  PS  PVC  EPS  HIPS  PE  HDPE  PC  PMMA  EVA  PETG. Those processed plastics are widely used as electronics blister, food, hardware tools, medical equipment, lamps and lanterns, sanitary ware, luggage, refrigerator liner, automotive interior decoration, container boxes, pallet and other plastic products.   Our twin tube infrared heat lamp for matching your heating process, customzied IR heat length, customzied heat power, customized radiant reflectors, and customized infrared heating module. Our infrared heating engineers will help you and provide experienced infrared heating solutions for you.    High Efficency, Fast Heaitng And Energy Saving Infrared Radiant Heat Lamps Maybe Better For Your Heating Process. Infrared heating technology is a revolutionary way to heat plastics for different objects' laminating. It is a cost-effective and efficient method for heating plastics that can be used in a variety of laminating applications. Infrared heating technology works by using infrared radiation to heat the plastic material. This radiation is emitted from a IR source, such as an infrared lamp, and is absorbed by the plastic material. The heat is then transferred to the plastic material, which causes it to become malleable and ready for laminating. The advantages of using infrared heating lamps for plastics laminating include:   1. Faster heating times: Infrared heating lamps can heat plastics faster than traditional methods, the response time is 1-2 seconds to run full power with infrared energy, so the plastic films can be heated faster, 3-4 mm thickness plastic film can be heated to 150-200 ℃ within 40 seconds. The traditional methods cannot achieve this heating temperature in a short time.    2. More uniform heating: Infrared heating lamps can be distributed evenly on the top and under the heated materials, or the two sides of plasics films. The sealed ir lamps can always radiant stable infrared rays without outer affects, EDEN infrared lamps can provide more uniform heating than traditional methods, resulting in more consistent products.   3. Lower energy costs: Infrared heating lamps does not need intermediate medium to transfer heat, so there are not so much energy loss than traditional methods, quartz infrared lamps are more high efficiency for industrial drying.   4. Safer: Infrared heating lamps are safer than traditional methods, as lamps does not produce any hazardous byproducts, especially greenhouse gases such as carbon dioxide.   5. More precise: Infrared heating lamps can be turned on and off frequently than traditional heat methods, the output power can be controlled and adjusted from 0-rated power, so we can set up the stable and precise heating temperature for heated laminating objects.        We are customized IR lamp manufacturer and we have the following laminating infrared lamps for your reference. If you need single tube IR lamps with other specifications, please contact us for free solutions. 1: Total length includes end ceramic caps 2: Tube diameter 3: Lamp voltage 4: Lamp power 5: Reflector 
 Twin Tube Infrared Lamp 220V 1000W Quartz IR Emitter
Twin Tube Infrared Lamp 220V 1000W Quartz IR Emitter
Twin Tube Infrared Lamp ( IR Emitter) IRTB22-10-279/209-2311G Reflector=Gold Voltage =220V Wattage =1000W Total length =279mm Heat length=209mm Unheated length 1=35mm Unheated length 2=35mm Cable length =1500mm Cross section=23×11mm Burning position =Horizontal Quartz infrared heating lamps are widely used not only in traditional industries such as printing, textiles, and food processing but are increasingly adopted in other sectors, including: Electronics Industry: In PCB (Printed Circuit Board) production, infrared heating quickly removes surface solvents or moisture, avoiding potential damage from prolonged exposure to high temperatures. Automotive Manufacturing: In automotive painting processes, infrared heating is used to accelerate the drying of coatings, ensuring a smooth and uniform surface. Wood Processing: For the drying of coatings on wood surfaces and removal of moisture from the wood itself, quartz infrared heating lamps also provide an efficient solution. Integrated into these systems, quartz infrared heating lamps have revolutionized the drying process, making it faster, more uniform, and more energy-efficient. 1. Principle of Quartz Infrared heating lamps Quartz infrared heating lamps utilize the high temperature generated by current passing through the filament to produce intense infrared radiation. These radiations have strong penetrating power, allowing them to directly heat the molecules inside the material. Infrared rays heat objects without direct contact, making the drying process faster. Compared to traditional heating methods (such as convection heating), infrared radiation directly transfers heat to both the surface and interior of the material, reducing energy loss and heat transfer time. 2. Comparison with Traditional Drying Methods Conduction Heating: Traditional heating methods (such as hot air drying) require heating the air or another medium first, and then transferring the heat to the surface of the object through convection. In contrast, infrared heating directly heats the material, greatly improving energy efficiency. Convection Heating: Conveyor dryers that use convection heating rely on air movement, which can cause uneven heat distribution, especially for thicker or denser items. Quartz infrared heating lamps reduce this issue by directly heating the surface of the material, ensuring more even heat distribution. 3. Advantages of Quartz Infrared heating lamps Fast Heating and Energy Efficiency: Since infrared radiation directly heats the material, the transfer time is significantly shortened, reducing energy loss during the heating process. Additionally, infrared heating lamps quickly reach the required temperature, eliminating the need for a preheating phase, thus improving production efficiency. Uniform Heating: Quartz infrared heating lamps provide even heat distribution across the entire conveyor width, ensuring that all products are exposed to the same level of heat, guaranteeing consistent heating for each product. This is crucial for improving drying quality and reducing product inconsistency. The flexible arrangement and design of the lamps allow operators to precisely control heat intensity and distribution, enabling fine-tuning of the drying process based on specific product needs. Space Savings and Process Optimization: The compact design of quartz infrared heating lamps allows for easy integration into various conveyor dryers, resulting in a more compact overall equipment design, which is easier to arrange and operate. Precise control of temperature and heat distribution also provides operators with flexible adjustment options to meet the needs of different products.   Quartz IR Lamps used in the Drying Process of Electrostatic Powder Coatings   Quartz Infrared Heating Lamps Supporting PCB Soldering and Wave Soldering     Twin Tube IR Heat Lamp For Tempered Glass Cutting    
 220V 230V 1000W Halogen Quartz Glass Infrared Heater Tube Industrial Paint Curing Quartz Element
220V 230V 1000W Halogen Quartz Glass Infrared Heater Tube Industrial Paint Curing Quartz Element
220V 1000W Halogen Quartz Glass Infrared Heater Tube Industrial Paint Curing Quartz Element In industrial drying processes, conveyor belt dryers equipped with quartz infrared heating lamps have been widely used in various industries such as printing, textiles, and food processing to remove moisture and solvents from products as they move along the conveyor belts. Integrated into these systems, quartz infrared heating lamps have revolutionized the drying process, making it faster, more uniform, and more energy-efficient. 1. Principle of Quartz Infrared heater tubes Quartz infrared heater tubes utilize the high temperature generated by current passing through the filament to produce intense infrared radiation. These radiations have strong penetrating power, allowing them to directly heat the molecules inside the material. Infrared rays heat objects without direct contact, making the drying process faster. Compared to traditional heating methods (such as convection heating), infrared radiation directly transfers heat to both the surface and interior of the material, reducing energy loss and heat transfer time. 2. Comparison with Traditional Drying Methods Conduction Heating: Traditional heating methods (such as hot air drying) require heating the air or another medium first, and then transferring the heat to the surface of the object through convection. In contrast, infrared heating directly heats the material, greatly improving energy efficiency. Convection Heating: Conveyor dryers that use convection heating rely on air movement, which can cause uneven heat distribution, especially for thicker or denser items. Quartz infrared heater tubes reduce this issue by directly heating the surface of the material, ensuring more even heat distribution. 3. Advantages of Quartz Infrared heater tubes Fast Heating and Energy Efficiency: Since infrared radiation directly heats the material, the transfer time is significantly shortened, reducing energy loss during the heating process. Additionally, infrared heater tubes quickly reach the required temperature, eliminating the need for a preheating phase, thus improving production efficiency. Uniform Heating: Quartz infrared heater tubes provide even heat distribution across the entire conveyor width, ensuring that all products are exposed to the same level of heat, guaranteeing consistent heating for each product. This is crucial for improving drying quality and reducing product inconsistency. The flexible arrangement and design of the lamps allow operators to precisely control heat intensity and distribution, enabling fine-tuning of the drying process based on specific product needs. Space Savings and Process Optimization: The compact design of quartz infrared heater tubes allows for easy integration into various conveyor dryers, resulting in a more compact overall equipment design, which is easier to arrange and operate. Precise control of temperature and heat distribution also provides operators with flexible adjustment options to meet the needs of different products.
 400V 1500W Twin Tube Fast Response IR Heater Lamp Powder Coating Drying Infrared Heater Lamp
400V 1500W Twin Tube Fast Response IR Heater Lamp Powder Coating Drying Infrared Heater Lamp
400V 1500W Twin Tube Fast Response IR Heater Lamp Powder Coating Drying Infrared Heater Lamp In order to have aluminum profiles with good coating and beautiful surface, high efficient infrared heating technology are more and more used for drying process of electrostatic powder coatings with advantages of fast productivity and energy saving. Tungsten quartz infrared heater lamps adopt infrared electromagnetic wave heating, and there is no intermediate medium to transfer heat. When the radiation spectrum of the heating element (tungsten) matches the absorption spectrum of the heated object (workpiece), the thermal efficiency is the highest, thus achieving energy conservation. The difference between tungsten-infrared heaters and far-infrared elements lies in the response time (from power on to constant temperature) of the heating components: tungsten-infrared heater is 1-2 seconds. Far infrared element is 5-15 minutes; Especially the surface power density of tungsten infrared heaters can reach up to 300KW/m2, but far infrared elements can reach only 60KW/m2.     The advantages of tungsten quartz infrared heaters in coating curing process.   1) Faster Curing High efficient infrared heating uses radiation to heat the workpiece, which takes only 60~90 seconds to complete curing process; Far infrared heating, on the other hand, involves convective heat transfer, utilizing the heat of the air to conduct and heat the workpiece, which typically takes 15 minutes or longer curing time with lower efficiency. Quartz infrared heating lamps emit infrared radiation that penetrates coatings, causing water molecules to vibrate and evaporate rapidly. This fast-drying process is particularly effective for electrostatic powder coatings. Infrared drying significantly shortens the overall production cycle, allowing manufacturers to increase output without compromising quality.   2)Energy Saving Quartz infrared heating requires no intermediary medium for heat transfer. The radiation energy is directly absorbed by the heated object, converting a significant portion of electrical energy into heat. Compared to other heating methods, this leads to higher heating efficiency, minimizing energy waste, reducing operational costs, and lowering carbon emissions. More than 80% of the effective radiant energy can be radiated within 1 - 2 seconds after power on, while the far infrared heater takes 5 - 15 minutes to achieve a similar effect. Quartz infrared tungsten heater lamps can be switched on and off quickly, but the far infrared heating needs to be preheated more than half an hour in advance, and sometimes needs to be cooled after the end of production, so the energy consumption utilization efficiency is lower than sealing quartz infrared heaters. 3)Uniform Curing High-efficient tungsten quartz infrared heaters are faster heating, and the coating surface receives the same amount of high-infrared radiation energy, resulting in uniform curing; while the temperature difference between the upper and lower parts of the far-infrared heating furnace is large, resulting in uneven curing of the workpiece. Another major benefit of using quartz infrared heating lamps in the drying process of electrostatic powder coatings is their versatility. These lamps can be flexibly installed and positioned to focus infrared energy on effective heating areas. Integrated quartz infrared heaters can provide both overall and localized heating, saving energy. Additionally, they can easily adjust the energy output to accommodate different coating thicknesses and materials, ensuring that the drying process remains efficient regardless of the specific requirements of the applied coating.  
 Twin Tube Infrared Lamp Quartz IR Emitter For INTERMAC Laminated Glass Cutting Table
Twin Tube Infrared Lamp Quartz IR Emitter For INTERMAC Laminated Glass Cutting Table
Twin Tube Infrared Lamp Quartz IR Emitter For INTERMAC Laminated Glass Cutting Table The glass cutting principle is to activate the infrared heating lamp to heat up the PVB film at the end of the cutting cycle and so carry out the breaking operations during the heating phase for cutting laminated and monolithic glass. 600V 16000W 6160mm Infrared Heat Lamp For Glass Cutting Machine Gold reflector Voltage =600V Wattage =16000W Total length =6160mm Cable length =500mm Quartz cross section=33×15mm Burning position =Horizontal Other specifications as drawing  
 Fast Response Heating Twin Tube Medium Wave  Infrared Lamp
Fast Response Heating Twin Tube Medium Wave Infrared Lamp
Infrared heating is widely used in the automotive manufacturing industry, especially in key processes such as curing, welding, and riveting (usually for plastic parts). Infrared heating is also employed to reduce wrinkles on car seat surfaces and to treat foldable soft tops. Infrared heating for wrinkle removal in car seats is an innovative technology aimed at improving the appearance and comfort of car seats through infrared heating.   Infrared heating can effectively smooth out wrinkles on the surface of car seats. Infrared radiation directly heats the seat material, making the surface soft. This method is highly efficient as it doesn't require a heat transfer medium and has a rapid heating speed, thereby easily removing wrinkles and restoring the original smooth state.     Twin tube is a better stable design for short wave, fast response medium wave, carbon medium wave and medium wave infrared heating lamps with high radiation density and high power intensity. The twin tube quartz sizes are 23×11mm and 33×15mm. The heating filament of infrared lamps can be designed by tungsten, Ni-Cr alloy and carbon fiber. In order to better convey and focus on the heated material all the IR radiation emitted from the lamps, the special gold reflector or ceramic white reflector will be coated and fixed directly on the quartz surface.   According to the configuration of different heating filament design and ending cables, twin tube infrared lamp can be produced as the following common filament configuration.  1: Cables can be one side connection or two sides connection 2: Different heating length designed for partial heating purpose 3: Length is up to 6.2 meter long and widely used in industrial heating process, such as glass cutting, plastics forming or lamination, auto painting and etc..    
 480V 6000W Halogen Shortwave IR Lamp Photovoltaic Industry Soldering Welding Infrared Quartz Lamp
480V 6000W Halogen Shortwave IR Lamp Photovoltaic Industry Soldering Welding Infrared Quartz Lamp
480V 6000W Halogen Shortwave IR Lamp Photovoltaic Industry Soldering Welding Infrared Quartz Lamp We are customized IR lamp manufacturer and we have the following shortwave single tube infrared lamps for your reference. If you need single tube IR lamps with other specifications, please refer the attached technical drawing and contact us for confirmation. We need the following specifications. 1: Total length includes end ceramic caps 2: Tube diameter 3: Lamp voltage 4: Lamp power 5: Reflector   
 480V 6000W Halogen Shortwave IR Lamp Replacement Toshiba JHS 480V 6000W 290TH1
480V 6000W Halogen Shortwave IR Lamp Replacement Toshiba JHS 480V 6000W 290TH1
480V 6000W Halogen Shortwave IR Lamp Replacement Toshiba JHS 480V 6000W 290TH1 Halogen short-wave infrared heating lamp has the following advantages: 1. Fast response time, the heating temperature can rise and fall quickly 2. By combining with the reflection module, IR lamps can work in a small area by concentrating light or parallel irradiation 3. The lamp does not touch the heated object and can be used in a clean environment and no harmful 4. The working lamp is not disturbed by the atmosphere and external environment and can be used in a vacuum oven. 5. Inside of filaments can be designed and heat up to 2200°C, so the objects can be heated up to 1000°C or higher, depending on the material and size being heated.
 400V 4KW Infrared Heater Lamp IR Emitter Replacement Toshiba JHC 400V 4000W 700BfH Infrared Lamp
400V 4KW Infrared Heater Lamp IR Emitter Replacement Toshiba JHC 400V 4000W 700BfH Infrared Lamp
400V 4KW Infrared Heater Lamp IR Emitter Replacement Toshiba JHC 400V 4000W 700BfH Infrared Lamp Single Tube Short Wave Halogen Infrared Lamps are widely used in high-efficient industrial fast heating applications. The halogen IR lamp is made of quartz single tube. The heating filament is tungsten alloy material. We have 10mm, 11mm, 12mm, 14mm, 15mm and 19mm single quartz tube for different customers. The total length of single tube IR lamp can be up to 2.5 meter. In order to better convey and focus on the heated material all the IR radiation emitted from the IR lamp, the special gold reflector or white reflector will be coated and fixed directly on the quartz surface.   Short Wave Single Tube Halogen IR Lamp Peak wavelength 1.0-1.4μm Response time >1 second Diameter (mm) 10 11 12 14 15 19 Max. Length (m) 1.1 1.1 1.5 2.0 2.0 2.5 Reflector White or Gold reflector Burning position Horizontal or Vertical     Halogen short-wave infrared heating lamp has the following advantages: 1. Fast response time, the heating temperature can rise and fall quickly 2. By combining with the reflection module, IR lamps can work in a small area by concentrating light or parallel irradiation 3. The lamp does not touch the heated object and can be used in a clean environment and no harmful 4. The working lamp is not disturbed by the atmosphere and external environment and can be used in a vacuum oven. 5. Inside of filaments can be designed and heat up to 2200°C, so the objects can be heated up to 1000°C or higher, depending on the material and size being heated.   We are customized IR lamp manufacturer. If you need single tube IR lamps with other specifications for industry drying, please feel free to contact us.
 Laminated Glass Cutting Twin Tube IR Heat Lamp 700V 9800W Fast Response Quartz IR Radiator Lamp
Laminated Glass Cutting Twin Tube IR Heat Lamp 700V 9800W Fast Response Quartz IR Radiator Lamp
Laminated Glass Cutting Twin Tube IR Heat Lamp 700V 9800W Fast Response Quartz IR Radiator Lamp We cannot cut laminated glass directly, otherwise it will be broken. But if we heat up the temperature on glass by IR heat lamp, then we can cut the heated glass easier and safety.    700V 9800W 4820mm Quartz Infrared Heat IR Lamp For Laminated Glass Cutting Machine Customzied IR Lamp Manufacturer-E-DEN Lighting Technology Gold reflector Voltage =700V Wattage =9800W Total length =4820mm Heated length=4620mm Cable length =500mm Quartz cross section=33×15mm Burning position =Horizontal Other specifications as drawing EDEN IR quality customized twin tube infrared lamps can be repalced your original heating lamp, such as Heraeus lamp, LISEC cutting lamp, or other brands. We have successfully produced long IR lamps with some specifications as below: 400V 6400W 1900mm 400V 9450W 3450mm 600V 8300W 3450mm 600V 7800W 3520mm 600V 8000W 3855mm 500V 5900W 3870mm 700V 10300W 3920mm 600V 7800W 4720mm 700V 9800W 4820mm 600V 16000W 6120mm    
 380V 5200W Infrared Heat Lamp Semiconductor Equipment Water Drying IR Emitter
380V 5200W Infrared Heat Lamp Semiconductor Equipment Water Drying IR Emitter
380V 5200W Infrared Heat Lamp Semiconductor Equipment Water Drying IR Emitter Infrared drying is a method that utilizes infrared radiation energy to heat and dry objects. Its principle mainly includes the following aspects: Infrared Radiation: Infrared radiation is a type of electromagnetic wave with wavelengths between visible light and microwaves. Infrared rays have penetrative properties and can be absorbed by the surface of objects, converting into thermal energy. Energy Absorption and Heating: When infrared rays hit the surface of an object, the molecules on the surface absorb the energy from the infrared rays and convert it into heat, causing the temperature of the object to rise. Different materials have different absorption capacities for infrared rays. Typically, dark-colored and rough surfaces absorb infrared rays more effectively. Moisture Evaporation: Under the effect of infrared heating, the moisture inside the object is heated and evaporated. Because infrared rays can directly penetrate the object, the internal moisture can quickly turn into steam and diffuse to the surface, achieving efficient drying. Uniform Heating: Compared to traditional hot air drying methods, infrared drying provides more uniform heating because infrared rays can directly irradiate all parts of the object, unaffected by air circulation. Therefore, it can heat the object more uniformly, avoiding issues like local overheating or uneven drying. Energy-Efficient and High-Efficiency: Due to the direct heating characteristic of infrared drying, it reduces heat loss during the transmission process, resulting in higher thermal efficiency. Additionally, infrared drying equipment usually has a quick start and fast heating speed, significantly shortening drying time and saving energy. In summary, infrared drying directly heats objects through infrared radiation, causing internal moisture to evaporate rapidly, thereby achieving efficient and uniform drying. This method is widely used in the drying processes of industries such as food, pharmaceuticals, wood, and coatings.    
 Solar Welding 1800W Twin Tube IR Lamp 1500W Electronic Welding Quartz Infrared Heater Lamp
Solar Welding 1800W Twin Tube IR Lamp 1500W Electronic Welding Quartz Infrared Heater Lamp
1800W Twin Tube IR Lamp Solar Welding Quartz Infrared Heater Lamp Infrared radiation, encompassing electromagnetic waves with wavelengths longer than visible light, typically ranging from 700 nanometers to 1 millimeter, interacts with surfaces by inducing molecular vibration, thereby elevating temperature. This process is highly efficient as it directly heats the target object without significantly affecting the surrounding air, thereby minimizing heat dissipation and maximizing energy transfer. The primary advantage of Quartz Infrared Heat Lamps lies in their ability to provide precise temperature control, facilitating the targeted heating of specific areas on solar cells. This minimizes thermal stress and ensures uniform welding. Additionally, their rapid response time enables swift heating and cooling cycles, thereby reducing production time and enhancing solar cell manufacturing yield. Unlike conventional heating methods such as convection or conduction, infrared radiation heats surfaces directly, resulting in minimal energy wastage. Furthermore, these lamps can be tailored to emit specific wavelengths of infrared radiation, optimizing their effectiveness for various materials and welding applications.     Infrared radiation heating substantially reduces solar cell welding duration compared to traditional methods, thereby enhancing productivity and cost-effectiveness. Moreover, research findings indicate that infrared radiation heating facilitates superior solder joint formation and enhanced conductivity of solar panels, consequently improving energy conversion efficiency and overall performance. Additionally, Quartz Infrared Heat Lamps enable precise control of soldering temperatures, mitigating the occurrence of defects such as voids and cracks in solder joints. This enhances the reliability and durability of solar panels, contributing to their long-term performance and sustainability.   Experimental data and research outcomes underscore the effectiveness of Quartz Infrared Heat Lamps in augmenting productivity, enhancing solder joint quality, and optimizing solar panel performance. As the demand for clean and sustainable energy escalates, the application of infrared radiant heating technology is poised to play a pivotal role in advancing solar cell manufacturing processes, bolstering efficiency and reliability. Shortwave Twin Tube Quartz IR Lamp is made of 23×11mm or 33×15mm quartz double tube. The heating filament is tungsten alloy material. Twin tube shortwave infrared heating lamp can be designed with high heating power, the range of radiation wave is 1.0-1.4μm, it is particularly suited for fast response heating processes. This short wave infrared radiation penetrates more deeply into materials, as they can obtain infrared radiation full-efficiency within seconds. Meanwhile has the following advantages:       1. Fast response time, the heating temperature can rise and fall quickly 2. By combining with the reflection module, IR lamps can work in a small area by concentrating light or parallel irradiation 3. The lamp does not touch the heated object and can be used in a clean environment and no harmful 4. The working lamp is not disturbed by the atmosphere and external environment and can be used in a vacuum oven. 5. Inside of filaments can be designed and heat to 2200°C or higher, so the objects can be heated up to 1000°C or higher, depending on the material and size being heated.      
 230V 2000W 660mm IR Lamp photovoltaic industry welding IR Emitter Lamp
230V 2000W 660mm IR Lamp photovoltaic industry welding IR Emitter Lamp
230V 2000W 660mm IR Lamp photovoltaic industry welding IR Emitter Lamp In modern industrial sectors, quartz infrared heating lamps have become a critical component, particularly in the photovoltaic industry. The photovoltaic industry, also known as the solar photovoltaic sector, primarily involves the manufacturing and application of solar cells. Quartz infrared heating lamps provide unique and valuable functionalities that are essential for various processes in the photovoltaic industry, including solar wafer soldering, thin-film curing, and rapid heating in diffusion furnaces.     The photovoltaic industry heavily relies on precise and efficient heating methods. Quartz infrared heating lamps play a vital role in the solar wafer soldering process. Their ability to emit infrared radiation makes them highly suitable for soldering solar wafers. Solar wafers are the core components of photovoltaic cells, requiring multiple soldering steps during their manufacturing. Infrared heating lamps can provide precise and uniform thermal energy, ensuring temperature control during the soldering process, thus guaranteeing the quality and reliability of the solder joints. This not only enhances the efficiency of solar cells but also extends their lifespan. The high temperatures they produce ensure a safe and reliable bond during the soldering process, which is crucial for the integrity of the solar cells. The application of quartz infrared heating lamps is an indispensable part of achieving high-quality photovoltaic products.   Shortwave infrared lamp, twin tube infrared lamp and infrared heating modules are suitable for the diffusion furnace, the vacuum drying equipment, the sintering furnace and the laminating machine for vacuum encapsulating the battery components and other equipment. Advantages of infrared heating lamp:   *Temperature easy to control *Long working life, high thermal efficiency *High temperature resistance, vacuum resistance, high pressure resistance *Good heating uniformity, low failure rate to promise user's efficient production *Efficient and accurate infrared heating to ensure the reliability of laminated solar cells.   Single Tube Short Wave Infrared Lamps are widely used in high-efficient industrial fast heating applications. The  IR lamp is made of quartz single tube. The heating filament is tungsten alloy material. We have 10mm, 11mm, 12mm, 14mm, 15mm and 19mm single quartz tube for different customers. The total length of single tube IR lamp can be up to 2.5 meter. In order to better convey and focus on the heated material all the IR radiation emitted from the IR lamp, the special gold reflector or white reflector will be coated and fixed directly on the quartz surface.
 1000W PET Preheating IR Lamp 1500W PVC Laminating Quartz Heater Lamp 2000W Crystallizer Drying Infrared Lamp
1000W PET Preheating IR Lamp 1500W PVC Laminating Quartz Heater Lamp 2000W Crystallizer Drying Infrared Lamp
1000W PET Preheating IR Lamp 1500W PVC Laminating Quartz Heater Lamp 2000W Crystallizer Drying Infrared Lamp Advanced Crystallization and Drying Technology-Infrared Drying  The PET Plastic Infrared Crystallizer Dryer Machine is engineered to complete the crystallization and drying processes simultaneously, ensuring efficiency and optimal performance. This integrated approach not only speeds up the processing time but also enhances the quality of the final product. This versatility makes it an ideal choice for manufacturers working with different types of plastics, ensuring consistent drying and crystallization quality across various materials. Such as PET (Polyethylene Terephthalate), PLA (Polylactic Acid),PC (Polycarbonate) and other new and recycled materials     Innovative Fast Heating Infrared Technology Direct Radiation: The infrared rays directly radiate the raw material layer, ensuring efficient energy transfer. Internal Heating: The temperature rises from within the raw material, allowing for uniform and thorough heating. Rapid Vaporization: As the water content is quickly heated, it vaporizes almost instantly, moving from the inside of the material to the surface and then being expelled. Optimal Crystallization and Drying: This rapid and efficient process ensures that the raw materials achieve the best possible crystallization and drying results in a short period of time.   Benefits and Applications   Time Efficiency: The infrared drying dramatically reduces the time needed for crystallization and drying, increasing overall production efficiency. Energy Efficiency: The use of short-wave infrared technology ensures energy is used effectively, reducing operational costs. Quality Improvement: The precise control over the drying and crystallization process improves the quality and consistency of the end product. Versatility: Suitable for a wide range of materials, making it a flexible solution for various industrial applications.    
 400V 6400W Twin Tube IR Lamp Glass Cutting Quartz IR Emitter For Macotec Laminated Table
400V 6400W Twin Tube IR Lamp Glass Cutting Quartz IR Emitter For Macotec Laminated Table
400V 6400W Twin Tube IR Lamp Glass Cutting Quartz IR Emitter For Macotec Laminated Table EDEN IR quality customized twin tube infrared lamps can be repalced your original heating lamp, such as Heraeus lamp, LISEC cutting lamp, or other brands. We have successfully produced long IR lamps with some specifications as below: 400V 6400W 1900mm 400V 9450W 3450mm 600V 8300W 3450mm 600V 7800W 3520mm 600V 8000W 3855mm 500V 5900W 3870mm 700V 10300W 3920mm 600V 7800W 4720mm 700V 9800W 4720mm 600V 16000W 6120mm
 PET Extrusion Quartz Halogen IR Lamp 400V 4500W Shortwave Infrared Lamp
PET Extrusion Quartz Halogen IR Lamp 400V 4500W Shortwave Infrared Lamp
PET Extrusion Quartz Halogen IR Lamp 400V 4500W Shortwave Infrared Lamp White reflector Voltage = 400V Wattage =4500W Total length =775mm Heat length =700mm Cable length =300mm Tube diameter =10mm Burning position=Vertical   Single Tube Short Wave Halogen Infrared Lamps are widely used in high-efficient industrial fast heating applications. The halogen IR lamp is made of quartz single tube. The heating filament is tungsten alloy material. We have 10mm, 11mm, 12mm, 14mm, 15mm and 19mm single quartz tube for different customers. The total length of single tube IR lamp can be up to 2.5 meter. In order to better convey and focus on the heated material all the IR radiation emitted from the IR lamp, the special gold reflector or white reflector will be coated and fixed directly on the quartz surface.   We are customized IR lamp manufacturer and we have the following shortwave single tube infrared lamps for your reference. If you need single tube IR lamps with other specifications, please refer the attached technical drawing and contact us for confirmation. We need the following specifications. 1: Total length includes end ceramic caps 2: Tube diameter 3: Lamp voltage 4: Lamp power 5: Reflector     
 235V 2500W Film Laminating IR Lamp Automatic Paint Drying Infrared Lamp
235V 2500W Film Laminating IR Lamp Automatic Paint Drying Infrared Lamp
235V 2500W Film Laminating IR Lamp Automotive Paint Drying Infrared Lamp Infrared heating technology is a revolutionary way to heat plastics for different objects' laminating. It is a cost-effective and efficient method for heating plastics that can be used in a variety of laminating applications. Infrared heating technology works by using infrared radiation to heat the plastic material. This radiation is emitted from a IR source, such as an infrared lamp, and is absorbed by the plastic material. The heat is then transferred to the plastic material, which causes it to become malleable and ready for laminating.   The advantages of using infrared heating lamps for plastics laminating include:   1. Faster heating times: Infrared heating lamps can heat plastics faster than traditional methods, the response time is 1-2 seconds to run full power with infrared energy, so the plastic films can be heated faster, 3-4 mm thickness plastic film can be heated to 150-200 ℃ within 40 seconds. The traditional methods cannot achieve this heating temperature in a short time.    2. More uniform heating: Infrared heating lamps can be distributed evenly on the top and under the heated materials, or the two sides of plasics films. The sealed ir lamps can always radiant stable infrared rays without outer affects, EDEN infrared lamps can provide more uniform heating than traditional methods, resulting in more consistent products.   3. Lower energy costs: Infrared heating lamps does not need intermediate medium to transfer heat, so there are not so much energy loss than traditional methods, quartz infrared lamps are more high efficiency for industrial drying.   4. Safer: Infrared heating lamps are safer than traditional methods, as lamps does not produce any hazardous byproducts, especially greenhouse gases such as carbon dioxide.   5. More precise: Infrared heating lamps can be turned on and off frequently than traditional heat methods, the output power can be controlled and adjusted from 0-rated power, so we can set up the stable and precise heating temperature for heated laminating objects.        We are customized IR lamp manufacturer and we have the following laminating infrared lamps for your reference. If you need single tube IR lamps with other specifications, please contact us for free solutions. 1: Total length includes end ceramic caps 2: Tube diameter 3: Lamp voltage 4: Lamp power 5: Reflector   
 600V 8300W 3450MM Glass Cutting IR Lamp Twin Tube Infrared Emitter
600V 8300W 3450MM Glass Cutting IR Lamp Twin Tube Infrared Emitter
600V 8300W 3450MM Glass Cutting IR Lamp Twin Tube Infrared Emitter EDEN IR quality customized twin tube infrared lamps can be repalced your original heating lamp, such as Heraeus lamp, LISEC lamp, or other brands. We have successfully produced long IR lamps with some specifications as below: 400V 6400W 1900mm 400V 9450W 3450mm 600V 8300W 3450mm 600V 7800W 3520mm 600V 8000W 3855mm 500V 5900W 3870mm 700V 10300W 3920mm  600V 7800W 4720mm 700V 9800W 4720mm 600V 16000W 6120mm     We are quartz infrared heat lamps manufacturer and we can design heating infrared lamps with solutions for you. And if you have other ideas for your heating projects, please feel free to contact with us. We proudce IR heaters to 6.2 meters long and custom heating power for you.
 Quartz Infrared Lamp 400V 3000W IR Lamp Replacement Sidel Blowing Heating Lamp
Quartz Infrared Lamp 400V 3000W IR Lamp Replacement Sidel Blowing Heating Lamp
Quartz Infrared Lamp 400V 3000W IR Lamp Replacement Sidel Blowing Heating Lamp Infrared welding is an important process technology in the production of photovoltaic modules. It is a new non-contact welding technology for photovoltaic cell series welding equipment. In order to further improve welding efficiency while ensuring product quality, a multi-stage heating method has been introduced to increase the starting temperature of welding, shorten the welding cycle, and significantly improve the phenomenon of cell cracking caused by rapid temperature rise, thereby improving the performance and production efficiency of the equipment.     Due to its excellent temperature control with fast response and stability performance, as well as the advantages of stable and reliable quality and high welding efficiency of welded battery string products, infrared welding technology has been rapidly developed in recent years and gradually replaced the old contact welding methods (such as roller pressure welding, hot air welding, electromagnetic induction welding, etc...   Single Tube IR Halogen Quartz Heater Lamp Peak wavelength 1.0-1.4 μm Heating filament Tungsten Filament working temperature 1800℃-2200℃ Response time 1 second Diameter  10mm 11mm 12mm 14mm 15mm 19mm Max. Length 1.1m 1.1m 1.5m 2.0m 2.0m 2.5m Reflector White ceramic or Gold reflector Burning position Horizontal or Vertical According to the different ending caps, single tube infrared quartz heaters can be finished in the following ending cap types. Alternative model
 Carbon Infrared Heater Lamp 380V 2000W Twin Tube Infrared Quartz Emitter
Carbon Infrared Heater Lamp 380V 2000W Twin Tube Infrared Quartz Emitter
Carbon medium wave infrared heating lamps are designed with special spiral carbon fiber heating filament, which are suitable for fast heating of surface or drying water and inks, and the range of IR radiation wave is 2.0-4.0μm. Because of its low color temperature and matched medium wave infrared radiation, carbon medium wave infrared lamps are widely used in industry screen printing for textiles, emulsion drying, tea drying, food and vegetables drying, civilian application like infrared heater for warming, heating stove and natural herbal medicine.   Characteristics: Surface Heating: Medium Wave Far-infrared (MFIR) wavelengths are longer, primarily affecting the surface or shallow layers of materials. Uniform Heating: MFIR heaters provide a more uniform heating effect. Gentle Heating: The heating process is slower, suitable for long-term stable heating. Advantages: High energy efficiency, suitable for continuous stable heating. Minimal surface damage, appropriate for applications needing surface protection. Even heat radiation, suitable for surface heating needs. Disadvantages: Slower heating speed. Shallower penetration depth, not suitable for deep heating of thick materials. Main Applications: Food Processing: Such as baking and drying, utilizing the uniform and gentle heating properties of MFIR. Textile and Paper Drying: Maintaining material surface quality and preventing overheating damage. Indoor Heating: MFIR radiation used in heating equipment, such as infrared heaters, providing comfortable heating.     Twin tube carbon medium wave infrared heating lamp can be used for application which needs heating temperature from 40-400 ℃, especailly lower visiable lights requested. We have 23×11mm or 33×15mm double quartz tube for producing different length and different power. In order to better convey and focus on the heated material all the IR radiation emitted from the IR lamp, the special gold reflector or white ceramic reflector will be coated and fixed directly on the quartz surface.     We are customized IR lamp manufacturer and we can desing and produce carbon IR lamp for you in different heating types. If you need twin tube carbon medium wave quartz infrared lamp with other specifications, please contact us and we will check the following specifications with you within 4 working hours.   1: Total length 2: Tube diameter 3: Lamp voltage 4: Lamp power 5: Reflector     
 400V 2KW Quartz Infrared Heat Lamp Replace For Sidel Bottle Blowing Machine
400V 2KW Quartz Infrared Heat Lamp Replace For Sidel Bottle Blowing Machine
Halogen short-wave infrared heating lamp has the following advantages: 1. Fast response time, the heating temperature can rise and fall quickly 2. By combining with the reflection module, IR lamps can work in a small area by concentrating light or parallel irradiation 3. The lamp does not touch the heated object and can be used in a clean environment and no harmful 4. The working lamp is not disturbed by the atmosphere and external environment and can be used in a vacuum oven. 5. Inside of filaments can be designed and heat up to 2200°C, so the objects can be heated up to 1000°C or higher, depending on the material and size being heated.   We are customized IR lamp manufacturer and we have the following shortwave single tube infrared lamps for your reference. If you need single tube IR lamps with other specifications, please refer the attached technical drawing and contact us for confirmation. We need the following specifications. 1: Total length includes end ceramic caps 2: Tube diameter 3: Lamp voltage 4: Lamp power 5: Reflector     
 380V 4000W Quartz IR Lamp Industrial Heating Element
380V 4000W Quartz IR Lamp Industrial Heating Element
Infrared heating lamps have revolutionized fast heating and energy saving in industrial drying applications. These innovative lamps utilize infrared radiation to generate heat, offering numerous advantages over traditional heating methods. Infrared heating lamps emit infrared radiation, a form of electromagnetic waves that transfer heat directly to objects and people without heating the surrounding air. This focused heating mechanism ensures efficient energy utilization and eliminates the need for noisy fans or blowers. The lamps typically consist of a heating element, reflectors, and quartz tubes. Quartz infrared heating lamps can be made in various lengths, from 100mm to 6 meters, with voltage ranging from 12V to 800V. This allows for thousands of heating power designs, ranging from 50W to 20KW, depending on different heating temperatures, lengths, and voltages: 500W-1500W: Suitable for low-temperature heating needs, such as research and development, health therapy, and indoor heating. 1000W-6000W: Suitable for high-temperature industrial heating, such as film forming above 100 degrees, plastic welding above 200 degrees, plastic plate bending above 300 degrees, and glass hot bending and lamination at 400-500 degrees. Because the infrared heating tube uses high-temperature quartz as the radiation matrix, it can also be designed for scientific research, aerospace heating, and new material applications requiring ultra-high temperatures up to 1300 degrees. Nanjing E-DEN Lighting Technology Co., Ltd. has an experienced design team that can optimize and transform existing heating methods according to different heating temperatures and space sizes to improve production efficiency, save energy, and reduce pollutant emissions, especially greenhouse gas emissions.   Single Tube Infrared Lamps are widely used in high-efficient industrial fast heating applications. The IR lamp is made of quartz single tube. The heating filament is tungsten alloy material. We have 10mm, 11mm, 12mm, 14mm, 15mm and 19mm single quartz tube for different customers. The total length of single tube IR lamp can be up to 2.5 meter. In order to better convey and focus on the heated material all the IR radiation emitted from the IR lamp, the special gold reflector or white reflector will be coated and fixed directly on the quartz surface.   We are customized IR lamp manufacturer and we have the following shortwave single tube infrared lamps for your reference. If you need single tube IR lamps with other specifications, please refer the attached technical drawing and contact us for confirmation. We need the following specifications. 1: Total length includes end ceramic caps 2: Tube diameter 3: Lamp voltage 4: Lamp power 5: Reflector     
 400V 9450W 3450mm Fast Response Twin Tube Infrared Lamp Emitter For Glass Cutting Table
400V 9450W 3450mm Fast Response Twin Tube Infrared Lamp Emitter For Glass Cutting Table
Twin Tube Infrared Lamp (Emitter)-EDIRFTC40-94.5-3450/3300-3315G2 C-Type Gold reflector Voltage =400V Wattage =2×4725W(9450W) Total length =3450mm Heat length =3300mm Cable length=500mm Tube diameter=33×15mm Burning position =Horizontal Other specifications as drawing   Fast response medium wave infrared lamp can be switched on/off the same as short wave lamps in a short time, and the range of IR radiation wave is 1.4-2.0μm. The especial fast medium wave can heat the surface and thin layers quickly, like drying ink and coatings on the surface of objects in a short time. The heating filaments can be desinged and work in 1200~1800℃, so the FMW IR lamp are widely used for fast heating application which needs heating temperature from 50~500℃.   1. Accurate(±1 ℃)IR heating temperature control 2. 1~2 seconds fast response time to full power IR heating energy 3. Small installation space, flexible in horizontal or vertical working position   FMW quartz IR lamps have above main advantages and are popular for industrial customers to repalce air heating and other high energy consumption electric heating elements, or customers prefer a combination heating solutions which includes circle hot air heating with fast efficient IR heatings.   According to the configuration of different heating filament design and ending cables, twin tube infrared lamp can be produced as the following common filament configuration.  1: Cables can be one side connection or two sides connection 2: Different heating length designed for partial heating purpose 3: Length is up to 6 meter long and widely used in industrial heating process, such as glass cutting, plastics forming or lamination, auto painting and etc..  
 480V 3000W 600mm Industrial Preheating Fast Response IR Heater Lamp Quartz Dual Infrared Tube Lamp
480V 3000W 600mm Industrial Preheating Fast Response IR Heater Lamp Quartz Dual Infrared Tube Lamp
INFRARED HEAT LAMPS Quartz Infrared (IR) Lamps for all industrial and scientific applications, including offset, flexo, silk-screen, label, graphic arts, and textiles printing, auto-body, paint, paper and rubber drying, leather and adhesive bonding curing, plastic forming, printed circuit welding, glass bending and lamination, blow-molding, inkjet drying, woodworking, food and environment warming, tableware and bottle sterilization, agriculture studies, aerospace researches and other applications. We are always taking responsibility to provide consistent quality and prompt no-hassle service. High efficiency, energy saving, clean heating and long working life for your business, while saving you money. Our quartz heating infrared lamps are designed to provide maximum efficiency and reliability for any industrial heating application. Our infrared lamps are energy efficient and can provide up to 50% more energy savings compared to traditional heating methods. Our lamps are also easy to install and maintain, making them the perfect choice for any industrial heating project. Try our single tube and twin tube quartz infrared lamps today and experience the difference! Give up the low-priced and often headache-causing inferior heating lamps, and choose a high performance-price ratio infrared radiation heating lamps from E-DEN lighting technology. With wise eyes, you will get rid of many troubles and focus more on your business. According to the configuration of different heating filament design and ending cables, twin tube infrared lamp can be produced as the following common filament configuration.  1: Cables can be one side connection or two sides connection 2: Different heating length designed for partial heating purpose 3: Length is up to 6.2 meter long and widely used in industrial heating process, such as glass cutting, plastics forming or lamination, auto painting and etc..   Please contact us for more lamp specifications if you need. 
 400V 10000W Replace Heraeus 834094 Infrarotstrahler 2020mm Twin Tube IR Lamp
400V 10000W Replace Heraeus 834094 Infrarotstrahler 2020mm Twin Tube IR Lamp
Infrared Heater Lamps For Automotive Industry Roller Embossing and Film Laminating Machines Infrared heating lamps offers the capability to penetrate transparent materials and apply direct heat to target objects. This method is characterized by its gentle, uniform, and efficient heating properties. In contrast to conventional heating methods, the utilization of infrared heating technology enhances heating efficiency, minimizes energy dissipation, and exhibits favorable environmental adaptability. Within the realm of laminating machines, infrared heating technology finds extensive application in the heating and shaping processes of diverse film materials, thereby enhancing both production efficiency and product quality. Moreover, laminating machines incorporating infrared heating technology demonstrate a 20% enhancement in film thickness uniformity and surface flatness compared to conventional heating methods. This improvement can be attributed to the effective stimulation of molecular vibration and rotation within the film material by infrared radiation, which facilitates enhanced heat conduction and molecular interaction, resulting in more uniform internal heating of the material. Consequently, this contributes to heightened product stability and quality. Furthermore, infrared heating technology significantly enhances the flatness of the film surface. This is attributed to the capacity of infrared radiation to proficiently permeate transparent materials and induce thermal effects on their surfaces. By directly influencing the material surface and stimulating molecular vibration, infrared radiation ensures a more uniform heating of the film surface, thereby leading to a notable improvement in surface flatness. Twin tube fast response medium wave infrared heating lamp can be controlled and adjusted the output power by PLC or SCR regulator automatically, so we can have accurate(±1 ℃)IR heating temperature in industry process. The heating filaments can be desinged and work in 1200~1800℃ with 1~2 seconds fast response time, so the FMW IR lamp are widely used for fast heating application which needs heating temperature from 50~500℃.   Because of needing small installation space and flexible working position, our infrared quartz heating lamps are popular for industrial customers to repalce air heating and other high energy consumption electric heating elements, or customers prefer a combination heating solutions which includes circle hot air heating with fast efficient IR heatings.  
 Infrared Heat Lamp For Laminator Drying or Preheating
Infrared Heat Lamp For Laminator Drying or Preheating
Infrared Heater Lamps For Automotive Industry Film Laminating Machines Infrared radiation can penetrate transparent materials and directly heat target objects. It is gentle, uniform and efficient. Compared with traditional heating methods, infrared heating technology can improve heating efficiency, reduce energy loss, and has good environmental adaptability. In the field of laminating machines, infrared heating technology is widely used in the heating and forming processes of various film materials to improve production efficiency and product quality.     At the same heating temperature, the heating time of the laminating machine using infrared heaters is shortened by an average of 30% compared with traditiona heating methods such as conduction. This data shows that infrared radiation can transfer energy into the material more quickly and heat more efficiently. This is mainly due to the fact that infrared radiation can be effectively absorbed by the thin film material and can produce effective heat transfer within the material, thereby achieving a rapid and uniform heating process.     In addition, laminating machines using infrared heating technology improve film thickness uniformity surface flatness of film by 20% compared with traditional heating methods. This due to infrared radiation can effectively stimulate the vibration and rotation of molecules inside the film material, promote heat conduction and interaction between molecules, and make the interior of the material heated more uniformly. This further improves product stability and quality.   Besides infrared heating technology also significantly improves the flatness of the film surface. Physically, this may be related to the fact that infrared radiation can effectively penetrate transparent materials and produce thermal effects on the surface of the materials. Iinfrared radiation can directly act on the surface of the material and stimulate molecular vibration, making the surface of the film more uniformly heated, thus achieving a significant improvement in the flatness of the film surface.   Twin tube fast response medium wave infrared heating lamp can be controlled and adjusted the output power by PLC or SCR regulator automatically, so we can have accurate(±1 ℃)IR heating temperature in industry process. The heating filaments can be desinged and work in 1200~1800℃ with 1~2 seconds fast response time, so the FMW IR lamp are widely used for fast heating application which needs heating temperature from 50~500℃.   Because of needing small installation space and flexible working position, our infrared quartz heating lamps are popular for industrial customers to repalce air heating and other high energy consumption electric heating elements, or customers prefer a combination heating solutions which includes circle hot air heating with fast efficient IR heatings.    
 Infrared Heaters For Textiles Powder Scattering and Preheating Fast Medium Wave Twin Tube IR Lamp
Infrared Heaters For Textiles Powder Scattering and Preheating Fast Medium Wave Twin Tube IR Lamp
Fast response medium wave infrared lamp can be switched on/off the same as short wave lamps in a short time, and the range of IR radiation wave is 1.4-2.0μm. The especial fast medium wave can heat the surface and thin layers quickly. Fast medium wave lamps can be made in all lengths up to 6 meter long. The twin tube designed lamps are stable and its high power density lamp can transfer high energy to the long material.     Twin tube fast response medium wave infrared heating lamp can dry ink and coatings on the surface of objects in a short time. The heating filaments can be desinged and work in 1200~1800℃, so the FMW IR lamp are widely used for fast heating application which needs heating temperature from 50~500℃.   1. Accurate(±1 ℃)IR heating temperature control 2. 1~2 seconds fast response time to full power IR heating energy 3. Small installation space, flexible in horizontal or vertical working position   FMW quartz IR lamps have above main advantages and are popular for industrial customers to repalce air heating and other high energy consumption electric heating elements, or customers prefer a combination heating solutions which includes circle hot air heating with fast efficient IR heatings.    
 Industrial Drying Infrared Heat Lamp
Industrial Drying Infrared Heat Lamp
Infrared Quartz Lamps For Industrial Drying Our twin tube quartz infrared lamps are highly efficient for industrial heating applications. The lamps provide a direct heat source that is capable of quickly and evenly heating large areas. The lamps are also able to maintain a consistent temperature, making them ideal for industrial processes that require precise temperatures. The lamps also have a long lifespan, making them a cost-effective solution for industrial heating. With our twin tube quartz infrared lamps, you can get the most out of your industrial heating process!   Infrared quartz lamps have special heating advantages compared to traditional heat sources, such as hot air, ceramic heaters, gas heaters or metal heaters. Infrared quartz heating lamps can deliver large amounts of radiation energy directly to heated objects, and the emit wavelength can be precisely matched to materials absorb, and the heating length and shapes are custom design. It has the following advantages:   Infrared radiation does not need to contact the product and does not require the intermediate medium to transfer heat. Under the sunlight, the sunshine side is warm but the sunless side is cold. This is not due to temperature differences, but radiation heating, the heat energy of electromagnetic waves (infrared radiation) from the sun that is transferred to objects. The sun is the source of heating energy, so the infrared quartz lamps are the heating source for industrial heating process.   Infrared quartz lamps can be precisely matched to the heated material, that is, effectively absorbed by the material. Different objects different matched IR radiation wavelength-IR lamp Short wave (0.9~1.4μm), Fast response medium wave (1.4~2.0μm), Carbon medium wave (2.0~4.0μm), Medium wave (2.2~4.0μm).                                                   Fast response time, adjustable output heat power. Short wave and fast medium wave IR heat lamps have 1~2 seconds fast response time to full power IR heating energy. The output heat power can be adjusted in percentages, so we can have accurate(±1 ℃) IR heating temperature in our machine or drying oven. It can heat the material partially or completely, control the heating area, and control the heating time. Compared with hot air or gas heating, this means less energy consumption, faster heating speed and better heating efficiency.  
 230V 600W 125mm Quartz Heating Twin Tube IR Lamp
230V 600W 125mm Quartz Heating Twin Tube IR Lamp
Twin Tube Short Wave Infrared Radiant Heat Lamps are widely used in high-efficient industrial fast heating applications. The IR lamp is made of quartz double tube. The heating filament is tungsten alloy material. We have 23×11mm and 33×15mm quartz twin tube for different customers. The total length of twin tube IR lamp can be up to 6.0 meter. In order to better convey and focus on the heated material all the IR radiation emitted from the IR lamp, the special gold reflector or white reflector will be coated and fixed directly on the quartz surface.     We are twin tube IR lamp manufacturer and we have the following shortwave twin tube infrared lamps for your reference. If you need twin tube IR lamps with other specifications, please refer the attached technical drawing and contact us for confirmation. We need the following specifications. 1: Total length 2: Heated length 3: Tube diameter 4: Lamp voltage 5: Lamp power 6: Reflector   
What are the advantages of infrared heating lamps? How to correctly select infrared heating? How are infrared heating lamps and infrared heating modules designed?
What are the advantages of infrared heating lamps? How to correctly select infrared heating? How are infrared heating lamps and infrared heating modules designed?
查看详情 白箭头 黑箭头
¿Cuáles son las ventajas de las lámparas de calefacción infrarroja? ¿Cómo seleccionar la calefacción infrarroja correcta? ¿Cómo se diseñan las lámparas y los módulos de calefacción infrarroja?
¿Cuáles son las ventajas de las lámparas de calefacción infrarroja? ¿Cómo seleccionar la calefacción infrarroja correcta? ¿Cómo se diseñan las lámparas y los módulos de calefacción infrarroja?
查看详情 白箭头 黑箭头
Why Promote Quartz Radiant Drying IR Lamp?
Our quartz IR lamps are designed to provide maximum efficiency and reliability for all industrial heating application. Our IR lamps are energy efficient and can provide up to 50% more energy savings compared to traditional heating methods. Our IR lamps are also easy to install and maintain, making them the perfect choice for industrial heating projects. Try our quartz tube radiant infrared lamps today and experience the difference!                                                                                        Why should we promote the use of infrared heat lamps? Because infrared quartz drying IR lamps has four excellent characteristics of "efficient, energy-saving, accurate temperature control and environmental protection".    1. Efficient means fast heating, infrared radiation does not need to contact the product and does not require the intermediate medium to transfer heat compared with hot air, ceramic heaters, gas heaters or metal heaters. The radiant energy of infrared lamp is directly absorbed by material molecules, and the energy density of infrared lamp is very large, the surface temperature of the heated materials will increase quickly. This infrared heating speed is much higher and efficient than the speed of conduction and convection. The latter requires molecular collisions, which are transferred step by step through the conversion of kinetic and potential energy.        Infrared heating has certain penetrability. The wavelength of shortwave infrared heater lamp can penetrate the surface of an object to a certain depth, and when the molecules within this depth absorb the shortwave infrared, they heat from the inside to the outside at the same time. This has great advantages over conduction and convection, not only fast heating, but also to a large extent avoids the phenomenon of surface sealing and blistering.         2. Energy saving means saving money, infrared quartz lamps can be precisely matched to the heated material, that is, effectively absorbed by the material. Different objects different matched IR radiation wavelength-IR lamp Short wave (0.9~1.4μm), Fast response medium wave (1.4~2.0μm), Carbon medium wave (2.0~4.0μm), Medium wave (2.2~4.0μm).     when heating the same size and quantity of heating objects, quartz heating infrared lamp can greatly reduce energy consumption. The infrared heating is more surface heating. As mentioned above, medium wave infrared heater lamp heats the surface of an object very rapidly, so there is a large temperature difference between the surface and the interior of the object. This is a great advantage for the purpose of rapidly heating the surface of an object, as this does not cause large changes in the bulk temperature of the material. Energy saving without having a big impact on the humidity, chemical properties, stress, etc. of the object. But it also has the disadvantage, that is uneven heating for objects with irregular shapes, the disadvantage will cause temperature differences. At this time, we can have hot air in to get a uniform heating with infrared heater lamps.         3. Fast response, adjustable heating temperature   Our quartz infrared lamps are resistnace load and can be adjusted the output power by SCR regulator with accurate ±1℃ heating temperature. For example, if we need 120℃ heating temperature, and the real-time temperature is 115℃ from the temperature sensor, then the temp sensor will return the singal to SCR units and SCR will raise up the heating output power. In opposite,  if the real-time temperature is 123℃ from the temperature sensor, then the temp sensor will return the singal to SCR units and SCR will lower the heating output power of quartz infrared lamps. As the following diagrams, ΔT is smaller and more stable heating temperature we have.           In above, SCR regulators can help us save the output energy and control the heating temperature for different heating applications or heating zones with our infrared heating lamps.                                             4. Environmental Protection, in the process of manufacturing, use, and abandoned infrared radiation lamps is relatively small on the environment. Infrared radiation lamps do not use materials that are harmful to the environment: the impact of the environment during the manufacturing process is small. Infrared radiation lamps consume relatively clean electricity in working, and has no harmful emissions in the process of use.   For a successful heating process, it is important to select a suitable infrared lamp with wavelength, shape and heating power match the product being heated. Precise matching ensures that infrared radiation is quickly converted into heat in the product without transferring unnecessary heat to the surroundings, saving time and money.
查看详情 白箭头 黑箭头
EDEN Quartz Infrared Lamp IR Heaters
Quartz Radiant IR Heaters For Industrial Clean Heating E-DEN Quartz Infrared Lamps For Industrial Energy Saving     E-DEN quartz heating infrared lamps are designed to provide maximum efficiency and reliability for any industrial heating application. Our infrared lamps are working by electricity and 100% no harmful pollution or any carbon emissions.  They are energy efficient and can provide up to 50% more energy savings compared to traditional heating methods. Our IR lamps are also easy to install and maintain, making them the perfect choice for any industrial heating project. Try our twin tube quartz infrared lamps today and experience the difference!     * Divided from structural type:  Vacuum Sealing Infrared Lamps are made by tungsten heating filaments and quartz tubes are sealed on two end parts. We can design and produce single tube sealing type and twin tube sealing type with different heating power and heated length for you. The resposne time of sealing lamps is 1~2 seconds, that means they can run with full rated power in a very short time and can reach high heating temperature than traditional heaters and your products be heated faster.    Non-Vacuum Sealing Infrared Lamps are made by alloy medium heating filaments and quartz tubes are not sealed on two end parts. They are particularly suitable for the fast heating of surface or thin materials, and the range of IR radiation wavelength is 2.2-4.0μm. Plastic, water and other solvents absorb well this medium wave radiation. Because of its long working life and economical efficiency, medium wave type IR lamps are popular used in continuous heating processes and long heating machine or drying oven. The resposne time is longer than sealing type lamps, about 1-4 minutes, but they also can provide uniform heating energy when they are stable running.         * Divided from heating filaments or divided from radiant wavelength:              Shortwave Clear Infrared Lamp & Shortwave Ceramic Reflector Infrared Lamp        Fast Medium Wave IR Lamp With Ceramic White & Fast Medium Wave Gold Reflector Infrared Lamp        Medium Wave IR Lamp With Ceramic White & Medium Wave Gold Reflector IR Lamp        Carbon Medium Wave Infrared Lamp     * Divided from external shape Single Tube Infrared Quartz Lamps     Twin Tube Infrared Quartz Lamps Our twin tube quartz infrared lamps are highly efficient for industrial heating applications. The lamps provide a direct heat source that is capable of quickly and evenly heating large areas. The lamps are also able to maintain a consistent temperature, making them ideal for industrial processes that require precise temperatures. The lamps also have a long lifespan, making them a cost-effective solution for industrial heating. With our twin tube quartz infrared lamps, you can get the most out of your industrial heating process!     Special Quartz Infrared Lamps     Infrared quartz lamps have special heating advantages compared to traditional heat sources, such as hot air, ceramic heaters, gas heaters or metal heaters. Infrared quartz heating lamps can deliver large amounts of radiation energy directly to heated objects, and the emit wavelength can be precisely matched to materials absorb, and the heating length and shapes are custom design. It has the following advantages:   Infrared radiation does not need to contact the product and does not require the intermediate medium to transfer heat. Under the sunlight, the sunshine side is warm but the sunless side is cold. This is not due to temperature differences, but radiation heating, the heat energy of electromagnetic waves (infrared radiation) from the sun that is transferred to objects. The sun is the source of heating energy, so the infrared quartz lamps are the heating source for industrial heating process.   Infrared quartz lamps can be precisely matched to the heated material, that is, effectively absorbed by the material. Different objects different matched IR radiation wavelength-IR lamp Short wave (0.9~1.4μm), Fast response medium wave (1.4~2.0μm), Carbon medium wave (2.0~4.0μm), Medium wave (2.2~4.0μm).                                                   Fast response time, adjustable output heat power. Short wave and fast medium wave IR heat lamps have 1~2 seconds fast response time to full power IR heating energy. The output heat power can be adjusted in percentages, so we can have accurate(±1 ℃) IR heating temperature in our machine or drying oven. It can heat the material partially or completely, control the heating area, and control the heating time. Compared with hot air or gas heating, this means less energy consumption, faster heating speed and better heating efficiency.                                               For a successful heating process, it is important to select a suitable infrared lamp with wavelength, shape and heating power match the product being heated. Precise matchi
查看详情 白箭头 黑箭头
Aplicações e Avanços da Tecnologia de Aquecimento por Infravermelho de Quartzo em Diversas Indústrias
As lâmpadas de aquecimento por infravermelho de quartzo emitem radiação infravermelha, que é uma forma de radiação eletromagnética com um comprimento de onda maior que a luz visível, mas menor que as ondas de rádio. Essa radiação é absorvida pelos objetos e diretamente convertida em energia térmica. O envelope de quartzo que envolve o filamento possui excelente resistência a choques térmicos e pode transmitir efetivamente a radiação infravermelha, permitindo que suporte temperaturas mais altas e prolongue a vida útil da lâmpada. Aplicações na Indústria de Calçados e Relevos em Couro Na indústria de calçados, as lâmpadas de aquecimento por infravermelho de quartzo transformaram o modo como as solas dos sapatos são tratadas. Tradicionalmente, esse processo utilizava métodos de aquecimento convencionais, que muitas vezes resultavam em aquecimento desigual e tempos de secagem prolongados. As lâmpadas de infravermelho de quartzo, no entanto, proporcionam aquecimento uniforme, garantindo que os adesivos e revestimentos curem de maneira rápida e eficiente. Isso não apenas reduz o tempo de produção, como também aumenta a durabilidade e a adesão dos materiais das solas dos sapatos. Durante a secagem por infravermelho, parte da energia penetra no couro, permitindo que tanto a superfície quanto o interior do couro ganhem calor. À medida que a umidade da superfície do couro úmido continua a evaporar e absorver calor, a temperatura da superfície diminui, levando a um gradiente de temperatura onde o interior do couro está mais quente que a superfície. Esse gradiente de temperatura causa a difusão do calor de dentro para fora. Ao mesmo tempo, devido ao gradiente de temperatura dentro do couro, o movimento da umidade é sempre do interior mais úmido em direção ao exterior mais seco. A difusão da umidade no couro, juntamente com a difusão de calor, acelera o movimento da umidade, aumentando assim a eficiência da secagem. Para o mesmo tipo de couro, o uso de radiação infravermelha para secagem pode reduzir significativamente o tempo de secagem. Aplicações na Indústria Alimentícia A tecnologia de aquecimento por infravermelho tem sido amplamente utilizada no processamento de alimentos, especialmente nos processos de cozimento, secagem e esterilização. Métodos tradicionais de secagem frequentemente demoram mais e resultam em aquecimento desigual, enquanto o aquecimento por infravermelho pode penetrar rapidamente a superfície do alimento, fazendo com que o interior também aqueça rapidamente. Por exemplo, ao assar biscoitos, o aquecimento por infravermelho garante não apenas um exterior crocante, mas também mantém o interior macio. Comparado aos métodos tradicionais, o uso de aquecimento por infravermelho no processamento de alimentos reduz significativamente o tempo de produção, mantendo o sabor e a textura dos alimentos. Cura de Revestimentos Industriais Na indústria de revestimentos, o aquecimento por infravermelho é utilizado para curar revestimentos, como tintas ou revestimentos em pó, na fabricação automotiva. O aquecimento por infravermelho garante aquecimento uniforme e cura rápida do revestimento, evitando problemas como bolhas ou descascamento que podem ocorrer com métodos de cozimento convencionais. Especialmente em indústrias de alta precisão, como a aeroespacial e a de fabricação de eletrônicos, o aquecimento por infravermelho oferece controle preciso de temperatura, assegurando que o revestimento atinja a dureza e adesão desejadas. Secagem e Fixação de Têxteis Na indústria têxtil, o aquecimento por infravermelho é amplamente utilizado para secar e fixar os tecidos. Métodos tradicionais de secagem podem causar deformações nos tecidos devido ao aquecimento desigual, enquanto o aquecimento por infravermelho garante que o tecido seja aquecido de forma uniforme, da superfície ao interior, evitando encolhimento ou enrugamento. Por exemplo, na fabricação de roupas, o uso de aquecimento por infravermelho para secar e fixar tecidos melhora a eficiência da produção e garante a qualidade e a aparência do produto final. Devido às suas características de aquecimento eficiente, preciso e uniforme, o aquecimento por infravermelho tem sido amplamente aplicado em diversas indústrias, incluindo o relevo em couro, processamento de alimentos, fabricação industrial e a indústria têxtil. Ao converter diretamente a energia radiante em energia térmica, ele melhora significativamente a eficiência e a eficácia do processo de aquecimento. No futuro, à medida que a tecnologia continua a se desenvolver, espera-se que o aquecimento por infravermelho desempenhe um papel ainda mais importante em uma gama mais ampla de aplicações.
查看详情 白箭头 黑箭头
E-DEN Cuarzo Lámparas Infrarrojas Lamparas IR
E-DEN Cuarzo Lámparas Infrarrojas Lamparas IR Lámparas Infrarrojas de Cuarzo E-DEN para Ahorro de Energía Industrial     Las lámparas infrarrojas de calentamiento de cuarzo E-DEN están diseñadas para ofrecer la máxima eficiencia y fiabilidad en cualquier aplicación de calefacción industrial. Nuestras lámparas infrarrojas funcionan con electricidad y no generan contaminación dañina ni emisiones de carbono. Son energéticamente eficientes y pueden ofrecer hasta un 50% más de ahorro de energía en comparación con los métodos de calefacción tradicionales. Además, nuestras lámparas IR son fáciles de instalar y mantener, lo que las convierte en la elección perfecta para cualquier proyecto de calefacción industrial. ¡Prueba hoy nuestras lámparas infrarrojas de cuarzo de tubo doble y siente la diferencia! Dividido por tipo estructural: Las lámparas infrarrojas de sellado al vacío están fabricadas con filamentos de tungsteno y tubos de cuarzo sellados en ambos extremos. Podemos diseñar y producir lámparas de sellado de tubo único y de tubo doble con diferentes potencias de calefacción y longitudes de calentamiento según tus necesidades. El tiempo de respuesta de las lámparas de sellado es de 1 a 2 segundos, lo que significa que pueden operar a plena potencia nominal en un tiempo muy corto y alcanzar temperaturas de calentamiento más altas que los calentadores tradicionales, permitiendo que tus productos se calienten más rápido.     Las lámparas infrarrojas de no sellado al vacío están fabricadas con filamentos de aleación para calentamiento medio y tubos de cuarzo que no están sellados en ambos extremos. Son especialmente adecuadas para el calentamiento rápido de superficies o materiales delgados, con un rango de longitud de onda de radiación infrarroja de 2.2-4.0 μm. Los plásticos, el agua y otros disolventes absorben bien esta radiación de onda media. Debido a su larga vida útil y eficiencia económica, las lámparas IR de onda media son ampliamente utilizadas en procesos de calentamiento continuo y en máquinas de calefacción largas o hornos de secado. El tiempo de respuesta es más largo que el de las lámparas de tipo sellado, aproximadamente de 1 a 4 minutos, pero también pueden proporcionar energía de calentamiento uniforme cuando están en funcionamiento estable.   Dividido por forma externa Lámparas Infrarrojas de Cuarzo de Tubo Único, Las lámparas infrarrojas de tubo único se utilizan ampliamente en aplicaciones industriales de calentamiento rápido y altamente eficiente. La lámpara IR está hecha de un tubo único de cuarzo, y el filamento de calentamiento es de material de aleación de tungsteno. Ofrecemos tubos de cuarzo de 10 mm, 11 mm, 12 mm, 14 mm, 15 mm y 19 mm para diferentes necesidades de los clientes. La longitud total de la lámpara IR de tubo único puede alcanzar hasta 2,5 metros. Para mejorar la transmisión y el enfoque de toda la radiación infrarroja emitida hacia el material que se desea calentar, se aplica y fija un reflector especial de oro o un reflector blanco directamente en la superficie del cuarzo. Lámparas Infrarrojas de Cuarzo de Tubo Doble Nuestras lámparas infrarrojas de cuarzo de tubo doble son altamente eficientes para aplicaciones de calefacción industrial. Estas lámparas proporcionan una fuente de calor directa que es capaz de calentar rápida y uniformemente grandes áreas. Además, mantienen una temperatura constante, lo que las hace ideales para procesos industriales que requieren temperaturas precisas. Las lámparas también tienen una larga vida útil, lo que las convierte en una solución rentable para la calefacción industrial. ¡Con nuestras lámparas infrarrojas de cuarzo de tubo doble, podrás maximizar la eficiencia de tu proceso de calefacción industrial! Las lámparas de cuarzo infrarrojas tienen ventajas de calentamiento especiales en comparación con las fuentes de calor tradicionales, como el aire caliente, los calentadores de cerámica, los calentadores de gas o los calentadores de metal. Las lámparas de calentamiento de cuarzo infrarrojas pueden entregar grandes cantidades de energía radiante directamente a los objetos que se desean calentar, y la longitud de onda emitida puede coincidir de manera precisa con la capacidad de absorción de los materiales. Además, la longitud de calentamiento y las formas pueden ser diseñadas a medida. Estas son algunas de las ventajas: La radiación infrarroja no necesita contacto directo con el producto y no requiere un medio intermedio para transferir el calor. Bajo la luz solar, el lado soleado está cálido, pero el lado sombrío está frío. Esto no se debe a diferencias de temperatura, sino al calentamiento por radiación: la energía térmica de las ondas electromagnéticas (radiación infrarroja) del sol se transfiere a los objetos. El sol es la fuente de energía calorífica, por lo que las lámparas de cuarzo infrarrojas son la fuente de calor ideal para los procesos de calefacción industrial.
查看详情 白箭头 黑箭头
What is Drying? What is Infrared Heating Drying?
What is Drying? Drying refers to the process of removing moisture or other volatile components from a material through evaporation, sublimation, or other methods. The primary purpose is to reduce the moisture content to prevent spoilage, improve storage stability, extend shelf life, enhance material stability and mechanical properties, facilitate transportation and storage, and meet subsequent processing requirements.   What is Infrared Heating Drying? Infrared heating drying is a drying technology that uses infrared radiation energy to heat objects and promote moisture evaporation. Infrared radiation is an electromagnetic wave with a wavelength range typically between 0.78 and 1000 microns. Infrared heating mainly relies on radiant heat transfer, directly penetrating the surface of objects, allowing water molecules and other volatile components to absorb energy and evaporate, thus achieving rapid drying.   Applications of Infrared Heating Technology in Packaging Production for the Food and Medical Industries Food Packaging Material Drying: Used for drying food packaging films or coatings to ensure uniformity and stability. Food Dehydration: Used for rapid dehydration of fruits, vegetables, and meat products, preserving nutrients and extending shelf life. Food Sterilization: Utilizes the high-temperature characteristics of infrared radiation to sterilize food surfaces, improving food safety. Medical Device Packaging Sterilization: Used for the sterile treatment of medical equipment packaging, enhancing hygiene standards for medical products. Pharmaceutical Packaging Drying: Applied to the drying of pharmaceutical capsules and tablet packaging to ensure product stability. Electronics Packaging: Used for drying electronic component packaging films to prevent moisture-related short circuits or damage. Cosmetics Industry: Applied to the drying of packaging materials for skincare products, lipsticks, etc., improving product quality and appearance.       What is Quartz Infrared Heating Lamp? High Efficiency Infrared Lamps are made by three parts, radiation body、filament and other accessories. The radiation body is transparent quartz glass tube. High temperature resistant heating filaments are tungsten alloy, Ni-Cr alloy and carbon materials. Other accessories include molybdenum electrode、cables、insulating ceramics. When the infrared lamps are connecting power supply, the heating filaments reach high temperature in seconds and the radiation body emitter lots of infrared rays, so the objects will absorb those amounts of infrared and be heated very fast. If we install fast heating IR lamps in your machine or production lines, we can dry our products faster and increase our productivity.    What is the Advantages of Quartz Infrared Hetaing Lamp? 1: Infrared heating lamps can be switched on and off quickly. 2: 1~2 seconds fast response time to full power IR heating energy. 3: Accurate(±1 ℃)IR heating temperature control with regulators or solid state relays.  4: Small installation space requests, flexble distribution to meet evenly drying. 5: Our infrared heating lamps are for all industrial heating applications, the highest working temperature up to 1000 ℃. 6: Special Gold reflector (90% reflective rate) and Ceramic white reflector (70% reflective rate) coated on IR lamp quartz tube surface to reflect infrared radiation energy back on heated objects. 7: Matched IR radiation wavelength for different heated materials, especialy for moisture drying, coating drying, laminating, paper printing, textile dyeing or drying and etc.. 8: Customzied heating power density-The highest surface power output of shortwave IR lamp is 300KW/M2, Fast response medium wave IR lamp is 200KW/M2, Carbon medium wave IR lamp is 150KW/M2, Medium wave IR lamp is 120KW/M2.   
查看详情 白箭头 黑箭头
Energy-Saving and Efficient Infrared Heating Technology in Automotive Manufacturing
Energy-Saving and Efficient Infrared Heating Technology in Automotive Manufacturing
查看详情 白箭头 黑箭头
Ativação de precisão do aquecimento infravermelho na produção de laminados
Na manufatura industrial moderna, os avanços na tecnologia de aquecimento frequentemente impulsionam diretamente a otimização dos processos de produção e a melhoria do desempenho do produto. A tecnologia de aquecimento por radiação infravermelha, conhecida por sua eficiência, precisão e controlabilidade, tornou-se uma escolha essencial para muitas linhas de produção de ponta. Particularmente na fabricação de placas laminadas, a aplicação de lâmpadas de aquecimento infravermelho não apenas melhora a eficiência de ativação da camada adesiva, mas também estabelece uma base sólida para a multifuncionalidade e flexibilidade das linhas de produção.     Tomando como exemplo a lâmpada de aquecimento por radiação infravermelha de quartzo de tubo duplo, seu comprimento efetivo de aquecimento atinge 2.300 mm, permitindo uma cobertura uniforme da superfície laminada e atuando diretamente na camada adesiva interna do material por meio da transferência de calor radiante. A radiação infravermelha possui propriedades de penetração únicas, convertendo energia em energia vibracional molecular sem contato direto com o material, ativando rapidamente os componentes químicos do adesivo. Este método de aquecimento evita problemas comuns, como perda de energia e gradientes de temperatura encontrados na condução de calor tradicional, melhorando significativamente a eficiência do pré-aquecimento. Enquanto isso, a alta transmitância de luz e a resistência a altas temperaturas dos materiais de quartzo garantem a transmissão eficiente de energia radiante, tornando o processo de aquecimento mais eficiente em termos de energia e ecologicamente correto.     Na etapa de pré-aquecimento de placas laminadas, o papel da radiação infravermelha vai além do mero aumento de temperatura. Ao controlar com precisão o comprimento de onda e a intensidade, ela permite que a camada adesiva atinja seu estado ativo ideal em um curto espaço de tempo, proporcionando uma base de ligação uniforme e robusta para os processos de laminação subsequentes. Isso não apenas encurta o ciclo de produção, como também reduz significativamente os defeitos de ligação causados ​​por temperaturas irregulares, melhorando assim o rendimento. Além disso, as vantagens da tecnologia de aquecimento infravermelho são ainda mais demonstradas na linha de produção de placas compostas metálicas multifuncionais de dupla finalidade A2/B1. Graças ao design de uma plataforma móvel, esta linha de produção alterna perfeitamente entre a extrusora e o forno de material de núcleo de grau A2, permitindo a coprodução eficiente de placas compostas de grau PE/B1 e placas compostas resistentes ao fogo de grau A. As lâmpadas de aquecimento infravermelho desempenham um papel fundamental neste sistema: independentemente do material do núcleo, a radiação infravermelha pode ajustar os parâmetros de aquecimento com base em suas propriedades termofísicas, garantindo que a camada adesiva seja totalmente ativada durante o processo de laminação. Por exemplo, materiais de núcleo resistentes ao fogo de grau A são normalmente mais sensíveis à temperatura, e a tecnologia infravermelha pode evitar superaquecimento ou ativação insuficiente por meio de ajustes em tempo real, equilibrando assim a resistência ao fogo e a força de ligação.     Este modelo de produção flexível demonstra plenamente a adaptabilidade e a escalabilidade da tecnologia de aquecimento infravermelho. Os fabricantes não precisam mais configurar sistemas de aquecimento independentes para diferentes produtos; simplesmente ajustando a intensidade e a duração da radiação infravermelha, eles podem atender a diversos requisitos de processo. Isso não apenas reduz o investimento em equipamentos e os custos operacionais, como também reserva espaço para atualizações contínuas da linha de produção.   Quais são as vantagens de usar aquecimento infravermelho para processos de laminação? O aquecimento infravermelho oferece diversas vantagens para processos de laminação, tornando-o a escolha preferida em diversas aplicações de fabricação. Aqui estão alguns dos principais benefícios: Aquecimento Rápido: O aquecimento infravermelho fornece calor imediato e direto ao material. Isso resulta em aumentos de temperatura mais rápidos em comparação aos métodos de aquecimento convencionais, reduzindo significativamente os tempos de pré-aquecimento. Eficiência Energética: Aquecedores infravermelhos convertem energia elétrica em radiação infravermelha de forma eficiente, o que é particularmente vantajoso para aplicações que exigem aquecimento localizado. Isso ajuda a minimizar o consumo de energia e a reduzir os custos operacionais. Aquecimento Uniforme: O aquecimento infravermelho pode alcançar uma distribuição uniforme da temperatura em toda a superfície do material, reduzindo o risco de pontos quentes ou seções subaquecidas, o que é crucial para obter uma adesão consistente em processos de laminação. Risco Reduzido de Deformação do Material:
查看详情 白箭头 黑箭头
We use cookies to improve our site and your shopping experience. By continuing to browse our site you accept our cookie policy. Find out more
Allow All

 Infrared Lamp   Quartz Infrared Emitter    Quartz Infrared Heater   Industrial Drying Infrared Solution    Gold Reflector Twin Tube IR Radiator

Copyright ©  2025 Nanjing E-DEN Lighting Technology Co., Ltd. ALL RIGHTS RESERVEED