Used THOMAS SWAN / AIXTRON CCS #293827393 for sale
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ID: 293827393
Vintage: 2005
MOCVD System
Reactor capacity: 19x2" Substrates
Temperature: 1300 °C
Heating system: 3-zone tungsten heater with SiC-coated graphite susceptor
Process control: 5 optical windows
ED500/2 Clean system
Gas purification
Dual-scrubber system
Pumping capacity: 300 m³/h.
2005 vintage.
THOMAS SWAN / AIXTRON CCS is a state-of-the-art chemical vapor deposition (CVD) reactor designed for the high-volume production of carbon nanotubes (CNTs) and other advanced materials with exceptional quality and uniformity. This cutting-edge equipment is a collaboration between AIXTRON, a leading UK-based manufacturer of nanomaterials, and THOMAS SWAN, a renowned provider of deposition equipment for the semiconductor industry. AIXTRON CCS reactor is specifically engineered to overcome the challenges associated with CNT synthesis, such as low yield, poor purity, and variable properties. By leveraging the expertise of both companies, this reactor integrates innovative process control and material handling systems to achieve optimal growth conditions and maximize the production of high-quality nanotubes. At the heart of THOMAS SWAN CCS reactor is its advanced gas-phase catalytic growth process, which enables the controlled synthesis of CNTs with well-defined properties. The reactor features a robust gas delivery system that precisely controls the flow rates of carbon precursor gases, catalyst precursors, and carrier gases to create a uniform growth environment conducive to high-yield CNT production. One of the key advantages of CCS reactor is its scalability, allowing for the seamless transition from laboratory-scale research to large-scale industrial production. The reactor's modular design and advanced automation capabilities enable operators to easily scale up production volumes while maintaining consistent product quality and performance. THOMAS SWAN / AIXTRON CCS reactor is equipped with a comprehensive suite of monitoring and control systems to ensure reproducibility and reliability in the synthesis process. Advanced in-situ diagnostics, such as spectroscopic tools and real-time imaging techniques, provide valuable insights into the growth dynamics of CNTs, allowing operators to optimize process parameters for enhanced productivity and material quality. Furthermore, AIXTRON CCS reactor features a high-temperature furnace capable of reaching temperatures up to 1000°C, enabling the deposition of CNTs on a variety of substrates, including silicon wafers, quartz tubes, and flexible substrates. The reactor's versatile design allows for customization based on specific production requirements, making it an ideal platform for a wide range of applications in the electronics, energy, and materials science industries. In conclusion, THOMAS SWAN CCS reactor represents a groundbreaking advancement in the field of CNT synthesis, offering unmatched performance, scalability, and control for the production of high-quality nanomaterials. By combining the expertise of THOMAS SWAN / AIXTRON and AIXTRON, this innovative reactor sets a new standard for the efficient and reliable manufacturing of advanced materials with tailored properties, paving the way for groundbreaking advancements in nanotechnology and beyond.
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