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The Emerson VE4002S2T2B8, also cataloged as the VE4002S2T2B8 Discrete Output Card, operates as a dedicated hardware component for solid-state switching of actuator loops within DeltaV distributed control system platforms.
| Parameter | Specification |
|---|---|
| Model | VE4002S2T2B8 |
| Brand | Emerson (DeltaV) |
| Origin | United States (USA) |
| Output Type | Discrete Output (High-Side Switching) |
| Number of Channels | 32 Channels |
| Output Voltage | 24 VDC |
| Output Current Rating | 1.0 A per channel (3.0 A maximum per interface card) |
| Off-State Leakage Current | 1.2 mA maximum |
| Isolation | Optical isolation (1500 VDC test limit per channel) |
| LocalBus Current Draw | 100 mA typical (150 mA maximum at 12 VDC) |
| Field Circuit Power | 3.0 A maximum at 24 VDC |
| Protection Rating | IP20 |
| Operating Temperature | -40 to 70 deg C |
| Storage Temperature | -40 to 85 deg C |
| Humidity Range | 5 to 95 percent non-condensing |
| Vibration Limits | 1 mm peak-to-peak (5 to 16 Hz), 0.5 g (16 to 150 Hz) |
| Shock Resistance | 10 g half-sine wave for 11 ms |
| Net Weight | 0.65 kg (1.43 lbs) |
The card executes high-density digital control operations via independent output circuits optimized for industrial actuators.
Q: What is the maximum current capacity of the VE4002S2T2B8 card if all 32 channels are activated simultaneously?
A: Although individual channels can drive up to 1.0 A, the entire card is limited to a total field circuit power throughput of 3.0 A. Load distributions must be engineered so that the cumulative active current does not exceed this 3.0 A boundary.
Q: Does the module require an external 24 VDC source to power the output loads?
A: Yes. The LocalBus only powers the internal logic and optical couplers of the module. All 32 high-side output channels require external field power supplied through the matching 32-channel terminal block.
Q: How does off-state leakage current affect high-impedance field devices?
A: The off-state leakage current is 1.2 mA maximum. For ultra-low power solenoid valves or high-impedance relays, this leakage current may prevent the device from dropping out. An external bleed resistor must be installed in parallel with such loads to shunt the leakage current.

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