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Popular Silicone Rubber Engine Heater Plate For Car
Flexible silicone rubber heaters are rugged, yet thin, lightweight and flexible. Use of these silicone heater is limited only by the imagination. Heat can be put where it is needed. These silicone heaters improve heat transfer, speed warm ups, and decrease wattage requirements.
Fiberglass-reinforced silicone rubber gives the heater dimensional stability without sacrificing flexibility. Because very little material separates the element from the part, heat transfer is rapid and efficient. The silicone rubber flexible heaters are constructed with a wire-wound element and the heater construction creates a very thin heater allowing it to fit applications where space is limited.
Silicone Engine Heater Features:
Silicone Engine Heater detail :
Temperature Rating | 400°F(204°C) Maximum operating |
Size/Shape Limitations | Maximum width 1200mm, Maximum Length 6000mm |
Thickness | Standard Thickness 1.5mm |
Voltage | 12v DC - 380v AC |
Wattage | Usually maximum 1.2 watts per square cm |
Power Lead Wire | Silicone Rubber, Fiberglass or Teflon insulated stranded wire |
Attachment | Hooks, Lacing Eyelets, Or Velcro closure. Temperature Controller (Thermostat) |
Description | 1). Silicone heater has advantages of thinness, lightness, affix and flexibility. 2). It can improve heat transfer, accelerate warming and decrease power under the process of operation. 3). Silicone heaters are heating fast and thermal conversion efficiency high. |
Features: 1). Heating fast and long time using 2). Flexible and customization 3). Waterproof and non-toxic
Before order, please confirm the size first ( Length * Width * Thickness) |
Flexible Heaters and Thermal Insulation Products are flexible in design and application to fit your specific needs. Chromalox provides dedicated engineering support to customize our Flexible heaters per your requirements. Most size, shape or contour can be used to apply direct and efficient heat without sacrificing dependability.
Various insulating materials are available to suit your application environment. Temperature controlling devices can be molded directly to the elements to provide precise system operation. Power requirements can be minimized and heat-up time optimized by applying heat directly to the part. Cool-down time is shortened and distributed wattages or multiple heater circuit designs are possible with our flexible heating elements.