The High Flow 3-Way Single-Coil Solenoid Valve utilizes a two-stage poppet to allow over six times more flow when compared to the standard piloting configuration. In exchange, the package size, weight, and response time are slightly increased. This design utilizes MultiSeal® technology, eliminating the need for O-rings, simplifying port layout, and offering significant space and weight savings. The innovative coil design provides low power consumption.
CHARACTERISTIC | SPECIFICATION |
---|---|
Operating Pressure | 250 - 3000 psid |
Operating Ambient Temperature | -65°F to 275°F |
Operating Fluid Temperature | -65°F to 275°F |
Internal Leakage | 2 cc / Minute Max at Rated Pressure |
External Leakage | 0 cc |
Lohm Rate | 300 Lohms |
Current Drain | 0.28 amps at 28 VDC at 70°F (7.8 Watts) |
Max Operating Voltage | 32.2 VDC |
Resistance | 92 - 108 Ohms at 70°F |
Pull-In Voltage | 18.0 VDC Max at 275°F and 3000 psi |
Dropout Voltage | 1.5 VDC Min at 70°F and 3000 psi |
Pull-In Response Time (28 VDC at 70°F and Rated Pressure) |
Normally Closed Version: 0.030 Seconds Max Normally Open Version: 0.050 Seconds Max |
Dropout Response Time (28 VDC at 70°F and Rated Pressure) |
Normally Closed Version: 0.030 Seconds Max Normally Open Version: 0.050 Seconds Max |
Nominal Screen Hole Size | 0.004 inches |
Weight | Lead Wire Style: 0.24 lbs Max Connector Style: 0.28 lbs Max |
Wetted Parts | |||
Part | Material | Specification | Finish |
Filter Screen | 17-4 CRES | AMS 5604 or AMS 5643 | Passivated |
MultiSeal | Polyamide-Imide | AMS 3670 | – |
Housing, Pilot, and Ball Seat | 15-5 PH CRES | AMS 5659 | Passivated |
Poppets | 440C CRES | AMS-QQ-S-763 | Passivated |
Ball and Pin | 440C CRES | AMS 5630 | Passivated |
Shaft | 440C CRES | AMS-QQ-S-762 | Passivated |
Springs | 302 CRES | AMS 5688 | Passivated |
Spring Guide | Si Iron BFM | ASTM A867 | Nickel Plate / AMS 2404 |
Plug and Pushrod | 303 CRES | QQ-S-763C | Passivated |
Flanges and Plungers | Si Iron BFM | ASTM A867 | Nickel Plate / AMS 2404 |
Shunt | 22-13-5 CRES | AMS 5764 | Nickel Plate / AMS 2404 |
Shims and Spacers | 302 CRES | ASTM A666 | Passivated |
Seals | Graphite Filled PTFE | – | – |
Seal Keeper | 416 CRES | QQ-S-763C | Passivated |
Braze | Silver Alloy | AMS 4774 | Nickel Plate / AMS 2404 |
Non-Wetted Parts | |||
Part | Material | Specification | Finish |
Cover | Si Iron BFM | ASTM A867 | Nickel Plate / AMS 2404 |
Retainer | 2024 T-351 AL | AMS-QQ-A-225 / 6 | Anodize / MIL-PRF-8625 Type II |
Retaining Ring | 302 CRES | ASTM A313 / A313M | Passivated |
Coil | Copper Magnet Wire | NEMA MW1000 / MW16 | – |
Shrink Tube | PVDF and PTFE | AMS-DTL-23053 / 8 & / 12 | – |
Insulation Tape | Polyimide | ASTM D5213 | – |
Solder | Sb05A | J-STD-006 | – |
Potting Compound | Stycast 2762FT, Catalyst 17 | – | – |
Lead Wire* | 22 AWG | SAE AS22759 / 11 | – |
Connector Shell** | 300 Series CRES | – | Passivated |
Connector Pins** | Gold Plated | – | – |
Connector Seal** | Fluorosilicone Elastomer | – | – |
Connector Sleeve** | 304 CRES | AMS-QQ-S-763 | Passivated |
Connecting Wire** | 26 AWG | SAE AS22759 / 11 | – |
*Applicable to lead wire versions only.
**Applicable to connector versions only.
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 |
---|---|
CUTA4330221B | MultiSeal Extraction Tool |
CUTA4330121B | MultiSeal Removal Tool |
SDBB4330108A | Replacement MultiSeal |
CUTA4330021A | Test Fixture |
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.