Shimadzu FCV-14AH Valve HPLC Controlled Max Pressure Support Tested Used
Shimadzu
Details
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CategoryHPLC / FPLC / GC / CE
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Dimension16.0in x 16.0in x 16.0in
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SerialC20454150517US
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Shipping TypeFedEx Ground
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ManufacturingDoes Not Apply
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Voltage / HertzDoes Not Apply / Does Not Apply
Description
The Shimadzu FCV-14AH is a high-pressure valve, designed for seamless integration and control within the Prominence series column ovens. Its robust construction ensures reliable performance even with some cosmetic wear. When mounted in a column oven, it delivers superior isothermal separation by situating the liquid journey through the system under controlled conditions. This model is an exceptional choice for laboratories demanding efficient high-pressure liquid chromatography (HPLC) operations. Although cosmetic damage is present, functionality is validated, making it a valued component for lab setups requiring precision fluid control. Prominence series ovens can support up to two such valves, highlighting its adaptability in versatile analytical setups. The valve successfully passes functional tests and ensures confidence in usability, evident in applications ranging from routine to advanced experimental work.
Key Features
- High-pressure valve for precise fluid control
- Mountable in Prominence series column ovens
- Supports isothermal separation
- Adaptable for HPLC setups
- Validated functionality with minor cosmetic wear
Specifications
- Optimized for integration with column ovens
- Supports isothermal processes
- Designed for high-pressure chromatography
- Passes all function tests despite cosmetic damage
- Can accommodate up to two valves in Prominence ovens
Weight
Imperial: 30.0 Pounds
Metric: 13.61 Kilograms
Shipping Dimensions
Imperial: 19.2 lb x 19.2 lb x 19.2 lb
Metric: 48.77 cm x 48.77 cm x 48.77 cm
Harmonized Code
8481.80.9050
Harmonized Code Details
8481.80.9050 - Valves, other than parts of heading 8481; determines the specification for valves and parts used in a variety of industrial and laboratory environments. Chosen based on its applicability to systems requiring highly controlled fluid dynamics.
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