
Introduction
We built this infrared heating lamp to do one thing really well: replace those pricey Lam Research heaters without making you pay for the name on the box. The whole idea? Give you the exact same spectral purity and thermal output, but at a price that actually makes sense. It’s a straight drop-in upgrade, made for engineers who care about performance first—and budget second.
Technical Deep-Dive
Here’s the setup: 400V power, 2500W of output, packed into a 300mm heating tube. Not random numbers—every detail is there for a reason. The high voltage keeps the footprint compact while still delivering the heat density your semiconductor tools demand. And the wattage? It’s tuned to match the original equipment’s thermal profile. That means you get the same ramp-up speed and steady temperature control. No need to re-tune anything. It just works.
Material & Design
Inside, you’ve got a shortwave halogen element inside a quartz tube. Clean, precise, engineered for spectral purity. The coating helps control emissivity and keeps the output spectrum stable—critical when your process can’t tolerate wavelength drift. And the R7s connector? It’s a bi-pin design that snaps in fast, with the right polarity so you don’t second-guess the install. It stays solid even through repeated heating and cooling cycles. That matters when you’re running hard and can’t afford loose connections.
Application & Benefits
In practice, this lamp replaces Lam Research heaters with a unit that fires up fast and holds temperature like it’s on autopilot. The 400V, 2500W power gives you that quick response, but yes—it also means your machine’s cooling needs to be up to the task. High heat density needs proper airflow or coolant capacity to keep ambient temps in check. For the maintenance crew, the R7s connection cuts changeover time and cuts down on wiring mistakes. Less downtime. More uptime. You get the same process capability you’re used to, but without the premium price tag. And honestly? The spectral control is still there. No compromise.