Used AMAT / APPLIED MATERIALS P5000 #9241874 for sale
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AMAT (APPLIED MATERIALS) AMAT / APPLIED MATERIALS P5000 is an innovative processing reactor designed for a wide range of applications in nanotechnology, materials science, chemistry, and electronics. It is especially useful for tackling complex challenges in the development of new materials, such as those encountered in 3D printing, MEMS/NEMS assembly, and microfluidics. AMAT P-5000 has a support frame made of stainless steel, designed to provide long-term stability and safety throughout the course of extended process sequences. It is also equipped with an electrical insulation equipment that insulates the frame from the heating element and any volatile by-products of the reaction. APPLIED MATERIALS P 5000 is capable of producing a temperature range of 30-1200°C (86-2000°F) and a pressure range of -1 to +25 bar. Pressure can be controlled precisely in order to optimize the process conditions for each application. This makes AMAT / APPLIED MATERIALS P-5000 an ideal tool for developing nanostructured materials, as the reaction can be adjusted in order to achieve the desired morphology and size of the material's nanoparticles. APPLIED MATERIALS P-5000 also comes with a range of features designed to meet the stringent standards of specialty applications. It is equipped with a rapid liquid injection delivery system that is capable of handling multiple components. It also has a built-in electrical ground loop, which eliminates current leakage and minimizes arcing. Furthermore, the unit's sensor and control electronics are designed to minimize excess heat and stress on the unit. Lastly, AMAT P5000's design incorporates safety precautions. From the well-insulated support frame to the safety locks on the doors, the unit is designed to reduce the risks associated with dangerous chemical reactions. It also has an integrated temperature control machine which monitors temperature levels and shuts off the unit when necessary. In summary, AMAT / APPLIED MATERIALS P 5000 is an advanced processing reactor which has features allowing it to reliably address a wide range of challenges in nanotechnology and materials science. With its unique combination of precision temperature and pressure control, multimaterial compatibility, and safety features, it provides the perfect tools for researching and developing the next generation of materials.
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