
Introduction
We make infrared heaters that are small, powerful, and built for the real world—specifically for industrial machines where space is at a premium and you can’t afford to wait around for heat. These lamps don’t waste time warming up the air. They deliver focused radiant energy straight to the target. So when your machine needs heat, fast, and needs it again and again, you get it. No lag. Just immediate, repeatable performance.
Getting Under the Hood
We size these heaters to slip right into tight spots. Picture a 300mm tube—compact enough to fit snugly into those cramped heating zones, yet tough enough for the job. They run on 400V, which lets us pack a lot of power—often 2500W—into a small footprint without pushing the current too hard. Higher voltage means lower amperage for the same power, so you end up with less heat in the wiring and can keep the cable runs short and tidy inside the machine. Just keep in mind: 400V means your control circuit and insulation need to be rated for it. This isn’t a plug-and-play swap for a low-voltage lamp.
What They’re Made Of
We use a halogen-filled quartz envelope because it keeps the filament stable when things get seriously hot. That stability translates to a longer, more reliable life compared to basic incandescent designs. The shortwave output is tuned for quick surface heating—exactly what you need when you’re racing the clock to get parts up to temperature. The R7s connector keeps it simple: a two-end linear contact that locks the tube in place and carries the load cleanly, without extra hardware hanging around. And yes, the coating helps manage the output spectrum and protects the quartz from contamination. But it’s not a miracle worker. It won’t fix poor airflow or grimy reflectors.
Where They Shine
These heaters are a natural fit in applications like PET blowing, plastic welding, and packaging machinery—places that demand fast heat-up and steady temperature control. The combo of 400V operation, high wattage, and the compact 300mm form gives you dense radiant heat in a small package. You get strong, dependable performance. But with that kind of heat density, you have to plan for the heat itself. Make sure you’ve got proper cooling or shielding in place, or nearby components will start cooking.