
Gold-Coated Infrared Lamps: The Clean Heat Solution for Your Class 100 Cleanroom
Let’s talk about a problem that keeps semiconductor engineers up at night: how do you get serious heat where you need it, without messing up the cleanroom? We built our gold-coated infrared lamps to solve that headache. For the semiconductor world, a Class 100 cleanroom isn’t just a goal—it’s the rule. These lamps give you precise, powerful heat that doesn’t stir up airborne trouble.
Power in a Compact Package
Here’s what you’re getting. A typical setup runs at 400V and 2500W, packed into a 300mm quartz tube. It’s a lot of heat, focused tight, so you can ramp up temperature fast on small target areas. But, and this is important, that kind of output needs a cooling system that can keep up. Plan for it, and you’re golden.
The Cleanroom-Grade Build
The heart of these lamps is high-purity quartz. It handles repeated heating and cooling cycles without breaking down. It just keeps performing, even under constant stress. Then there’s the gold coating. It’s not just about shine. It creates a sealed, inert barrier that stops outgassing. Why does that matter? Because standard reflectors can leak hydrocarbons into the chamber. This doesn’t. And the R7s bi-pin connector? It keeps things tidy. Low profile, secure, and it helps you wire things up cleanly while minimizing hot spots.
Precision Without Compromise
In semiconductor fabrication, a single micron of contamination can kill a wafer. So we designed these lamps to heat the substrate directly—no air involved. That means no convective air currents to carry around dust and particulates. Just stable, clean heat. The result is a clean thermal profile, with no risk of contaminating the process. And the best part? It’s a true drop-in replacement. No re-engineering of your tooling needed. You get extreme thermal control, sure, but you have to pair it with a cooling system that can keep pace. For engineers running Class 100 lines, that’s the deal. That’s the standard.