Used AG ASSOCIATES Heatpulse 210 #9359142 for sale
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AG ASSOCIATES Heatpulse 210 is an advanced rapid thermal processor that offers precise, repeatable thermal control for a wide range of processes. Designed to ensure quiet operation and consistent electrical performance, Heatpulse 210 is used in a variety of industrial applications and research settings. AG ASSOCIATES Heatpulse 210 has a robust and reliable power system, featuring a 30 kW max power rating, 20 kW min power rating and 10 kHz maximum switching frequency. These ratings ensure that the processor is able to quickly and consistently reach desired temperatures. It also features high-resolution Digital Signal Processing (DSP) control for precise temperature profiles, and its recessed knobs allow operators to easily make small adjustments quickly and accurately. Heatpulse 210 is available with either two or four thermal zones, allowing it to precisely handle processes requiring applications that require active heating or cooling in multiple locations. It also has a built-in auto-tuning function, which allows for customizable chamber environmental control, and utilizes Smart Control to allow for fast and efficient thermal cycling. AG ASSOCIATES Heatpulse 210 is designed for a wide range of applications, including thin-film processing, rapid thermal annealing, and reflow soldering, as well as wafer processing and curing. It also has a number of safety features, such as an emergency shut-off and a temperature alarm with auto-shut off. Additionally, the processor has an incredibly low footprint, making it ideal for applications that require high performance in smaller spaces. Overall, Heatpulse 210 is an incredibly versatile and reliable processor, offering precise temperature profiles, active cooling and heating, and a range of safety features all in a space-saving design. With its robust power system, DSP control, customizable thermal cycling, and ability to handle multiple thermal zones, AG ASSOCIATES Heatpulse 210 is an ideal solution for many industrial and research processes.
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