
Introduction
We make halogen infrared lamps, and honestly, it all comes down to the quartz tube. That tube isn’t just a shell—it’s the beating heart of the whole system. These lamps were built for serious power in a small space, and they fire up almost instantly. When you need heat that hits fast and direct—where air or contact just won’t cut it—this is the way to go.
The How and Why
Here’s the thing: inside every lamp is a high-resistance filament, sealed inside a pressurized quartz envelope. That’s where the magic happens. The wattage and voltage you choose set the tone for your heat output and how the lamp draws power. Go with a higher voltage design, and you pull less current for the same power. That means you can keep your wiring thinner and not worry about voltage drop over distance. And the size? The length and diameter of the lamp shape the heat pattern. So you can match the heat exactly to the spot you need it, without roasting the parts nearby.
What It’s Made Of
Quartz isn’t a random pick. It can take extreme heat without softening, and it lets infrared energy pass right through. It handles the jolt of turning on and off again and again without cracking. Meanwhile, the halogen cycle keeps the filament clean, so the lamp stays bright and strong over its whole life. And the R7s connector? It’s a simple, solid choice. It gives you a reliable connection and makes swapping out a burnt lamp quick and painless. We built it to be a straight-up replacement, so you can stick to one standard lamp length and swap out a dead one without messing with the wiring.
Where It Shines
On the factory floor—think PET blowing, thermoforming, or curing—you need heat that’s focused and fast. The quartz tube keeps things stable, even when the temperature is cranked up, and the halogen chemistry protects the filament. Just keep one thing in mind: with that kind of heat density, the fixture and reflector need to stay cool. If you plan for proper heatsinks and airflow from the start, the lamp will run clean, steady, and exactly as expected.