
UHP Infrared Heaters: Precision Heat, Built for Semiconductor Tooling
We built the UHP (Ultra High Purity) infrared halogen heater for one specific kind of problem: you need heat to go exactly where you point it—and nowhere else. In semiconductor equipment, stray heat that warms the chamber wall isn’t just wasteful. It can contaminate the process and create safety risks. So we made a lamp that focuses infrared energy on the target, not the whole machine.
Power, Voltage, and Geometry—Designed for Tight Spaces
The specs are all about packing serious heat into a small footprint. We run the lamp on 400V, which lets us deliver higher wattage over a shorter path while keeping current lower. That means less stress on conductors and wiring, and smaller cable runs inside the tool. And the 300mm tube length? It’s short enough to slip into tight zones—narrow process windows, crowded interiors—without forcing you to redesign the chassis. That combination gives you concentrated output in a compact package. You get fast ramp-up and tight thermal control when you’re running controlled cycles. But here’s the catch: the surrounding equipment has to be ready to handle the heat. A 400V, 2500W setup puts out a lot of thermal load, so the host machine needs cooling that’s properly matched—airflow, heat sinking, and thermal isolation all have to be planned from the start.
Materials and Design: Built to Stay Consistent
Inside, the halogen cycle keeps the filament stable at high temperatures, so output stays consistent over thousands of hours. The quartz envelope handles the shock of rapid on/off cycling and stays chemically stable, even when you’re heating and cooling it again and again. We chose an R7s connector because it holds securely and keeps electrical contact solid—no fuss, no wiggle—in industrial mounting hardware. And the lamp body is coated to control surface temperature. That helps prevent accidental burns and keeps unwanted radiant heat from bleeding onto nearby components.
What It Feels Like to Use: Directional Heat, Cleaner Operation
In semiconductor and precision manufacturing tools, the real goal is controllable heat—where you need it—without side effects. With directional heating, the chamber wall stays cooler. That improves operator safety and protects sensitive internals. If you’re retrofitting or building equipment that has to maintain clean zones, this is a drop-in solution. Wire it up, aim it, and run it—without tearing apart the whole thermal architecture. The trade-off is honest: you get high intensity and fast response, but your system has to be built to manage the resulting heat density. If your aim is targeted infrared heating with predictable performance, this UHP heater gives you control and repeatability that generic lamps simply can’t deliver.