
The Secret Weapon for Semiconductor Drying: Our Infrared Halogen Lamps
We built our halogen infrared lamps for one reason: to make semiconductor curing and Drying faster, cleaner, and more reliable. The whole idea is to get heat where it needs to go—fast—without bringing any contaminants along for the ride. Infrared energy hits the target directly, skipping the air altogether. No waiting for the room to warm up. Just pure, focused heat. That means you use less energy and keep your workspace cleaner.
Power, Voltage, Size—Designed for the Real World
Here’s the thing: semiconductor tooling is tight. So we engineered these lamps to deliver a ton of heat from a small footprint. Our standard is a 400V, 2500W lamp in a 300mm tube. That size fits right into existing chambers—no redesign needed. High voltage keeps the current lower for the same wattage, which means smaller conductors and fewer connection losses. The 10mm tube diameter focuses the heat exactly where you need it, on small parts and thin films. And because the design ramps up fast, your cycle times shrink. But with that kind of power density, you do need the right cooling path and a stable voltage supply. If your busbar or contactor is undersized, you’ll get voltage drop and uneven curing. So plan accordingly.
The Build: Quartz, Coating, and an R7s Base You Can Trust
We use high-purity quartz for the envelope. It handles rapid thermal shock without blinking and keeps the infrared transmission steady over time. The halogen cycle protects the filament, so output stays stable across the lamp’s life. We also add a specialized reflective coating on the quartz. It pushes more energy forward toward the workpiece and wastes less out the back. And the R7s base? It’s a straight-pin, two-contact design built to handle high temperature and high wattage. It makes replacement simple, and it holds a solid, repeatable connection even in equipment that sees a lot of vibration.
Clean, Fast Curing—Built for Semiconductor Lines
On the line, infrared drying keeps things moving in lead-free processes. No solvents. Less outgassing. You get uniform cure profiles across wafers and substrates, with repeatable temperature control. Because the heat goes straight to the target, you’re not heating the air around it. Energy use drops. We design these lamps as drop-in components for standard heater modules. That means less retooling, faster changeover, and less downtime when it’s time for maintenance. For engineers, the payoff is simple: curing that stays stable, energy use that goes down, and a cleaner process that meets today’s environmental requirements.