Used MODULAR PROCESS TECHNOLOGY / MPTC RTP-3000 #9363907 for sale
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MODULAR PROCESS TECHNOLOGY / MPTC RTP-3000 is a reliable solution for rapid thermal processing. It is a system designed to generate rapid temperature changes via uniform, quick thermal events that are necessary for semiconductor production. MPTC RTP-3000 offers a statistically accurate, flexible, and user-friendly operation in a convenient, small footprint. MODULAR PROCESS TECHNOLOGY RTP-3000 is capable of highly accurate temperature profiles, ensuring uniform results irrespective of product size and complexity. This is due to the advanced PID control algorithm and built-in pressure control features. The temperature of the substrate can be precisely maintained with a resolution of +/- 0.1°C, up to a maximum of 1600°C. An additional thermal buffer zone allows easy monitoring and control of temperatures in critical areas. Furthermore, RTP-3000 offers a range of advanced capabilities, such as the ability to pause programs, set multiple segment programs, hold specific temperatures for specified times, and automatic feedback and power regulation for optimum performance. MODULAR PROCESS TECHNOLOGY / MPTC RTP-3000 is the perfect choice for high-volume production lines. Its robustness and efficient operation can reduce cycle times and minimize production costs. It is compatible with most automation systems, and provides high levels of safety and reliability. Additionally, the system is very easy to install and uses readily available gases for operation, thus allowing significant cost savings. In summary, MPTC RTP-3000 is an ideal solution for rapid thermal processing. Its advanced temperature control algorithms ensure consistent results, and its efficient operation and user-friendly interface provide an ideal fit for high-volume production lines. By offering a variety of features ranging from pressure control and temperature buffering to segment programming, this modular, cost-effective system is the perfect choice for a successful rapid thermal processing application.
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