Used THOMAS SWAN / AIXTRON CCS #293792668 for sale
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ID: 293792668
Vintage: 2021
MOCVD System
(3) Close-coupled showerhead reactors, 2"
3-Zone graphite heater: Maximum 950°C
Gas handling system:
(2) Metalorganic channels air-cooled
(3) Twin standard metalorganic channels air-cooled
(2) Double dilution metalorganic channels air-cooled
(2) Epison 4
(10) Upgrade to water cooled thermo baths
Standard gas channels
Double dilution gas channel
Standard and double dilution gas channel
(3) Carrier gas channels for balancing gas flow switching
(2) Differential run / vent pressures balancing
Process control:
Epi TT
ARGUS
Gas purification:
(2) AsH3, PH3
(2) N2, H2
(4) H2, N2, AsH3, PH3
Extensions:
Hygrometer in glovebox
Oxygen sensor in glovebox
Heat exchanger
External exhaust filter oxidation unit
2021 vintage.
THOMAS SWAN / AIXTRON CCS refers to a chemical vapor deposition (CVD) reactor equipment developed through a collaborative effort between AIXTRON & Co. Ltd. and THOMAS SWAN SE, two prominent entities in the field of advanced materials and equipment manufacturing. This reactor system is specifically designed for the deposition of high-quality carbon nanotubes (CNTs) and other carbon-based materials through the controlled synthesis process aided by chemical vapor deposition techniques. At the core of AIXTRON CCS reactor is its ability to generate a conducive environment for the growth of CNTs on various substrates by facilitating the decomposition of carbon-containing precursors through thermal activation in the presence of a catalyst. The reactor comprises several key components and features that enable precise control over the deposition process, ensuring the production of uniform and high-purity CNTs with specific properties tailored to meet diverse application requirements. One of the distinguishing features of THOMAS SWAN CCS reactor is its versatile design that allows for the deposition of CNTs on substrates of different shapes, sizes, and compositions, providing researchers and industrial users with the flexibility to explore a wide range of applications. The reactor chamber is equipped with a sophisticated gas delivery unit that enables the introduction of precise quantities of carbon source gases, catalyst materials, and other necessary reactants to initiate and sustain the growth of CNTs under controlled conditions. The thermal control machine of CCS reactor plays a crucial role in regulating the temperature distribution within the reactor chamber to create an optimized environment for the growth of CNTs with the desired structural and morphological properties. By carefully modulating the heating and cooling cycles, the reactor can achieve high growth rates, uniformity, and reproducibility in the production of CNTs, making it a preferred choice for researchers and manufacturers seeking reliable and scalable CNT synthesis solutions. Furthermore, THOMAS SWAN / AIXTRON CCS reactor is equipped with advanced monitoring and feedback mechanisms that continuously track and analyze key process parameters such as gas flow rates, temperature profiles, pressure levels, and catalyst activity to ensure optimal growth conditions and product quality. Real-time data acquisition and control capabilities enable users to make rapid adjustments to the deposition parameters, thereby facilitating process optimization and enhancing the efficiency of CNT synthesis. In conclusion, AIXTRON CCS reactor represents a cutting-edge platform for the controlled deposition of carbon nanotubes and other carbon-based materials with exceptional quality and precision. With its innovative design, advanced features, and reliable performance, this reactor tool serves as a valuable tool for advancing research in nanotechnology, electronics, energy storage, and other fields requiring the utilization of functional carbon materials.
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