
The 360mm 1000W Carbon Fiber Far Infrared Heating Tube: Built for the Job
We built this 360mm, 1000W carbon fiber far infrared heating tube for one reason: to give you heat you can actually count on. It’s for those industrial heating jobs where you need predictable performance, a fast response, and a footprint that doesn’t fight for space. This isn’t a “warm it up a little” kind of lamp. It’s a focused thermal tool, designed for engineers who have to specify heating systems for real production equipment.
What makes it tick
The 360mm length and 1000W rating aren’t random numbers. They’re matched so you get serious heat density without needing to redesign the whole chamber. That means more power in a tighter space. The wattage lines up with the tube length so the carbon fiber element runs at the temperature it was designed for. So you get stable resistance and steady, consistent radiant output. No hot ends. No weak spots.
The guts: carbon fiber and quartz
The heart of it is carbon fiber, chosen because it produces far infrared radiation that penetrates better than shortwave IR. It heats the whole target volume, not just the surface. That gives you fewer hot spots and shorter cycle times. The tube sits inside quartz, which handles high temperatures without blinking and stands up to sudden thermal shock. And the R7s base? It’s a tough, proven connector for high-temp lamps. In other words, it’s a straightforward drop-in replacement for what you’re already using.
Where it shines
This tube is at home wherever you need rapid, even heating in a confined spot—plastic processing, curing, coating, drying. The far infrared profile spreads heat evenly, which helps you keep process windows tighter and cut down on scrap. The carbon fiber element reacts quickly when you change the power. So you can dial heat up or down without waiting around. One thing to keep in mind: packing 1000W into 360mm means serious localized heat. Make sure your fixture and machine ventilation are set up to keep component temperatures where they should be.