This threadless, cartridge-style, one-way valve is made with an elastomeric valve seat for improved checked direction leakage performance. The soft seat makes this check valve ideal for pneumatic applications where zero leakage is required or as a fill valve for gas systems. This valve features The Lee Company’s field-proven locking end that provides retention into metal manifolds without the use of threads, O-rings, or sealants. The valve is 100% performance tested.
Characteristic | Specification |
---|---|
Lohm Rate | 250 Lohms |
Valve Flow Direction | Forward Flow |
Cracking Pressure Definition | Is the uprun pressure at which the valve will flow more than 300 SCCM of air |
Checked Direction Leakage | Zero drops/minute on hydraulic fluid. Verified on air (0.05 SCCM maximum at 150 kPa). |
Maximum Working Pressure, Checked Direction | 400 Bar |
Maximum Working Pressure Differential, Flow Direction | 40 Bar |
Installation Force | Is a function of boss material, installation hole dimensions and boss geometry. See installation procedure for a list of recommened forces per boss material. |
COMPONENT | MATERIAL |
---|---|
Body | 303 Stainless Steel |
Cage | 416 Stainless Steel |
Pin | 416 Stainless Steel |
Spring | 302 Stainless Steel |
Ball | 440C Stainless Steel |
Seal | EPDM or FKM |
This table below contains the part numbers and technical specifications for this product. If you have specific questions, need a quote, or would like to request a handbook or drawing, click the red request button in the column on the far right.
PART NUMBER | DESCRIPTION |
---|---|
CCRT0051078S | 6 mm Installation Tool |
From plugs to solenoid valves, there’s a vast array of products that The Lee Company can offer. If you’d like to discuss the best solution for your specific application or to learn more about our capabilities, use-cases, or quality standards, contact your local Lee sales engineer.
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The Lee Company has developed the Lohm Laws for defining and measuring resistance to fluid flow. The Lohm is defined such that 1 Lohm will flow 100 GPM of water with a pressure drop of 25 psi at a temperature of 80°F.
Always verify flow calculations by experiment.
*There are many parameters to consider when determining V-Factor. Click here for more information.