View Ports
Description:
Our state-of-the-art vacuum view ports, essential for industries reliant on precise control and visibility within vacuum chambers.
Built to exacting standards, our view ports provide unparalleled clarity into critical processes, ensuring you can monitor operations with confidence and precision.
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Features




- Our Liquid Helium Dewars are engineered for optimal thermal insulation and efficient storage. Whether for scientific research, medical applications, or industrial processes, our LHe Dewars provide the perfect solution for your cryogenic storage needs.
- Designed for versatility and efficiency, our Liquid Nitrogen Dewars cater to a wide range of applications, from laboratory experiments to industrial applications. Our LN2 Dewars are built to deliver superior performance and ease of use.
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Custom Vacuum Chambers
A custom vacuum chamber refers to a specialized enclosure designed to create and maintain a low-pressure environment, typically for industrial processes, scientific research or testing purposes.
Applications:
Custom vacuum chambers are used in a wide range of applications across various industries, including semiconductor manufacturing, materials science research, aerospace testing, and vacuum coating processes. The versatility and customizability of these chambers make them indispensable tools for numerous scientific and industrial endeavours.
Overall, designing and constructing a custom vacuum chamber requires careful consideration of various factors to ensure that the chamber meets the specific requirements of the intended application while maintaining safety and reliability.
Ours great team has vast experience to design, build, and operate custom vacuum chambers effectively.
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CVD/PVD Furnace
At CryoVac solutions, we specialize in providing top-quality and high-performance coating solutions that enhance the durability, functionality, and aesthetic appeal of materials tailored for chemical vapor deposition (CVD) and physical vapor deposition (PVD) processes. With a commitment to excellence and customer satisfaction, we work closely with clients to understand their challenges and provide tailored solutions that drive success.
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Vacuum insulated Custom LHe & LN2 Transfer Lines
Custom vacuum-insulated liquid helium (LHe) and liquid nitrogen (LN2) transfer lines are specialized components designed to transport cryogenic fluids with minimal thermal losses. These transfer lines are essential in various applications, including research laboratories, medical equipment, and industrial processes. We do Customization also such as Length, diameter, and specific connection types can be customized to meet the exact requirements of the application. Custom bends and routing options to fit spatial constraints.
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Vacuum Pumps
1. Rotary Vane Vacuum Pumps
Rotary vane vacuum pumps are designed for a variety of applications requiring robust and reliable performance. These pumps are ideal for laboratory use, industrial processes, and more.
2. Scroll Vacuum Pumps
Our scroll vacuum pumps offer oil-free operation and high efficiency, making them suitable for cleanroom environments, semiconductor manufacturing, and other sensitive applications.
3. Turbo Molecular Vacuum Pumps
Turbo molecular vacuum pumps provide ultra-high vacuum levels essential for advanced scientific research, thin-film deposition, and high-tech manufacturing.
4. Diaphragm Vacuum Pumps
Our diaphragm vacuum pumps are ideal for applications requiring chemical resistance and oil-free operation, such as in laboratories and chemical processing.
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Vacuum Valves
Vacuum valves are essential components in systems that require the control and regulation of vacuum pressure. They are used in a variety of applications, including laboratory research, industrial processes, semiconductor manufacturing, and vacuum packaging.
Selection Criteria
When selecting a vacuum valve, consider the following criteria:
- 1. Vacuum Level: Ensure the valve can operate effectively at the desired vacuum pressure.
- 2. Flow Rate: Choose a valve that can handle the required flow rate.
- 3. Material Compatibility: Ensure the valve materials are compatible with the process gases or liquids.
- 4. Temperature Range: Select a valve that can withstand the operating temperature conditions.
- 5. Actuation Method: Decide between manual, pneumatic, or electric actuation based on the application needs.