This single-orifice flow restrictor is suitable for working pressure differentials up to 5000 psi. Its robust design is manufactured entirely from stainless steel and incorporates a high strength locking end and drilled HI-BAR® safety screens, enabling the restrictor to handle higher pressures. The 5K Lee Jet® Single-Orifice Restrictor is 100% bidirectionally flow tested to a ± 2% or ± 5% flow tolerance. This flow restrictor is available in a wide range of Lohm rates.
Characteristic | Specification |
---|---|
Lohm Rate Tolerance | ± 2% or ± 5% |
Maximum Working Pressure | 5000 psid |
Nominal Weight | 1.1 grams |
PART | MATERIAL | SPECIFICATION |
---|---|---|
Body | 304L CRES | QQ-S-763 |
Pin | 15-5PH CRES | AMS 5659 |
Screen | 15-5PH CRES | AMS 5659 or 5862 |
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 |
---|---|
CUTA1870904C | Installation / Extraction Tool Set |
JHTA1870003A | Replacement Pin |
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.
Your download has started.
We’re always ready to be your engineering partner. Fill out this form below so we can provide the solution you need.
We have received your inquiry and a member of our team will be in contact shortly to provide more information. Thank you for contacting The Lee Company!
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.