Series 35
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The Series 35 are two-stage regulators drop cylinder pressure to working pressure in two stages for consistent and accurate outlet pressure and flow regardless of inlet pressure.
They are recommended where outlet pressure and flow must be maintained without variation. It contain our exclusive Sure Seat™ filtered seat technology for extended seat and regulator life.
Information Chart for Series 35 Two Stage Regulator
Stock Number | Gas | Delivery Pressure | Gauges (2 inch/51 mm) Inlet | Gauges (2 inch/51 mm) Outlet | Inlet Connection | Outlet Connection | Max Inlet Pressure |
---|---|---|---|---|---|---|---|
35-125-540 | Oxygen | 0–125 PSIG 0–9 Bar | 4000 PSIG 276 Bar | 150 PSIG 10 Bar | CGA 540 | 9/16"-18 RH “B” | 3000 PSIG 207 Bar |
35-15-510 | Acetylene | 0–15 PSIG 0–1 Bar | 400 PSIG 28 Bar | 30 PSIG 2 Bar | CGA 510 | 9/16"-18 RH “B” | 400 PSIG 28 Bar |
35-50-580 | Inert | 0–50 PSIG 0–3 Bar | 4000 PSIG 276 Bar | 60 PSIG 4 Bar | CGA 580 | 5/8"-18 RH Internal | 3000 PSIG 207 Bar |
Stock Number 35-125-540 | |
---|---|
Gas | Oxygen |
Delivery Pressure | 0–125 PSIG 0–9 Bar |
Gauges (2 inch/51 mm) Inlet | 4000 PSIG 276 Bar |
Gauges (2 inch/51 mm) Outlet | 150 PSIG 10 Bar |
Inlet Connection | CGA 540 |
Outlet Connection | 9/16"-18 RH “B” |
Max Inlet Pressure | 3000 PSIG 207 Bar |
Stock Number 35-15-510 | |
---|---|
Gas | Acetylene |
Delivery Pressure | 0–15 PSIG 0–1 Bar |
Gauges (2 inch/51 mm) Inlet | 400 PSIG 28 Bar |
Gauges (2 inch/51 mm) Outlet | 30 PSIG 2 Bar |
Inlet Connection | CGA 510 |
Outlet Connection | 9/16"-18 RH “B” |
Max Inlet Pressure | 400 PSIG 28 Bar |
Stock Number 35-50-580 | |
---|---|
Gas | Inert |
Delivery Pressure | 0–50 PSIG 0–3 Bar |
Gauges (2 inch/51 mm) Inlet | 4000 PSIG 276 Bar |
Gauges (2 inch/51 mm) Outlet | 60 PSIG 4 Bar |
Inlet Connection | CGA 580 |
Outlet Connection | 5/8"-18 RH Internal |
Max Inlet Pressure | 3000 PSIG 207 Bar |
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- Two-Stage Regulators
35-50-580 Two-Stage Inert Regulator, 0-50 PSIG
- The 35-50-580 Two-Stage Inert Regulator, 0-50 PSIG is recommended where outlet pressure and flow must be maintained without variation.
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