SUN HYDRAULICS
PSDLLSN4A12V
$564.90 USD
Tags:
- SUN HYDRAULICS
- Material:PSDLLSN4A12V
- Model:PSDL-LSN@4A12V
- Summary:Cartridge
Quantity in stock: 0
The Sun Hydraulics PSDLLSN4A12V (Material Number: PSDLLSN4A12V) is an electroproportional, direct-acting reducer-reliever valve designed to manage hydraulic pressure effectively. It reduces a high primary pressure at inlet port 2 to a constant reduced pressure at port 1 and features a full-flow relief function from port 1 to tank port 3. The valve is initially biased to the relieving mode, and energizing the coil connects port 2 to port 1. Increasing the current proportionally increases the reduced pressure at port 1, while excess pressure at this port is relieved to port 3. The valve\u2019s design includes a draining feature at port 4, making it insensitive to pressure at port 3 for optimal performance. This valve offers excellent pressure control and dynamic response due to its open transition from reducing to relieving states. It supports optional full manual control for emergency adjustments or boosting valve settings during power failures. The maximum operating pressures are specified as follows: up to 3000 psi (210 bar) at port 3 and up to 5000 psi (350 bar) for both inlet and drain ports. This valve is highly reliable even in contaminated systems due to its direct-acting concept, especially under dead-headed conditions. The leakage rate is dependent on various factors such as pressure differential and fluid viscosity. For optimal performance, an amplifier with current sensing and adjustable dither between 100-250 Hz is recommended. Reverse flow from reduced-pressure port 1 back to inlet port 2 may close the main spool; hence, incorporating a separate check valve might be necessary for circuits requiring reverse free flow. The PSDLLSN4A12V incorporates Sun's floating style construction, minimizing internal part binding risks due to excessive installation torque or machining variations of cavity/cartridge interfaces.
This electro-proportional, direct-acting reducer/reliever valve reduces a high primary pressure at the inlet (port 2) to a constant reduced pressure at port 1, with a full flow relief function from port 1 to tank (port 3). The valve is biased to the relieving mode. Energizing the coil connects port 2 to port 1. Increasing the current to the coil will proportionally increase the reduced pressure at port 1. If pressure at port 1 exceeds the setting induced by the coil, pressure at port 1 is relieved to port 3. Draining port 4 makes the valve insensitive to pressure at port 3. This valve is open in the transition from reducing to relieving which provides good pressure control and dynamic response. Optional full manual control is available.
- Maximum pressure at port 3 should be limited to 3000 psi (210 bar).
- All spring ranges are tested for correct operation with 5000 psi (350 bar) inlet pressure.
- Direct acting concept provides highly reliable operation in contaminated systems, especially at dead headed conditions.
- Pressure on the drain (port 4) is directly additive to the valve setting at a 1:1 ratio and should not exceed 5000 psi (350 bar).
- Leakage specified in Technical Data is out of port 3 with a supply pressure of 2000 psi (140 bar) and the valve set at mid range. This leakage is directly proportional to pressure differential and inversely proportional to viscosity expressed in centistokes.
- The transition from reducing to relieving is slightly open. The result is very good pressure control with oil consumption of about 0.1 gpm (0,4 L/min.).
- For optimum performance, an amplifier with current sensing and adjustable dither should be used. Dither should be adjustable between 100 - 250 Hz.
- Full reverse flow from reduced pressure (port 1) to inlet (port 2) may cause the main spool to close. If reverse free flow is required in the circuit, consider adding a separate check valve to the circuit.
- Uses for the 'L' manual screw adjustment include: emergency valve setting during power failure or alternatively boosting the valve setting
- With the 'L' adjustment screw, all ranges are factory set at zero (adjustment screw fully backed out). With the coil de-energized, clockwise adjustment of the screw will increase the spring bias load up to the maximum setting for that range. With the coil energized, any mechanical pressure setting is directly additive to the coil induced value.
- By controlling the pressure at the drain (port 4), the effective setting of the valve can be increased over the nominal valve setting.
- Incorporates the Sun floating style construction to minimize the possibility of internal parts binding due to excessive installation torque and/or cavity/cartridge machining variations.
| Cavity | T-21A |
| Series | 1 |
| Capacity | 5 gpm20 L/min. |
| Maximum Operating Pressure | 5000 psi350 bar |
| Maximum Valve Leakage at 110 SUS (24 cSt) | 20 in³/min.330 cc/min. |
| Adjustment - Number of Clockwise Turns to Increase Setting | 55 |
| Solenoid Tube Diameter | .75 in.19 mm |
| Valve Hex Size | 7/8 in.22,2 mm |
| Valve Installation Torque | 30 - 35 lbf ft41 - 47 Nm |
| Adjustment Screw Internal Hex Size | 5/32 in.4 mm |
| Locknut Hex Size | 9/16 in.15 mm |
| Locknut Torque | 80 - 90 lbf in.9 - 10 Nm |
| Model Weight (with coil) | 1.20 lb0,55 kg |
| Seal kit - Cartridge | Viton: 990-021-006 |
| Seal and nut kit - Coil | Viton: 990-770-006Viton: 990-770-006 |
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- QuickDesign with SmartConnect Offers Drag-and-Drop Schematic Tool
- Electro-Proportional Basics Explained
- Proportional Amplifiers and Ancillary Products
- Manufacturing Sun Cartridge Cavities
- Solenoid Coils for Switching and Proportional Valves
- Reducing and Reducing/Relieving Valves
- Electro-Proportional Cartridge Valves
- Electro-Proportional Terms and Definitions
- Cavity Information (S-171) and Tooling
- Sun's Floating Style Screw-In Cartridge
- Fluid and Temperature Recommendations
- Sun Model Code Explanation; 999-901-334
- Performance Data
- Cartridges: Materials of Construction
- Units of Measure, Settings, and Conversions
Notes:
- Please verify cartridge clearance requirements when choosing a Sun manifold. Different valve controls and coils require different clearances.