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Schneider Electric 140DDO35310 Modicon Quantum Discrete Output Module

Schneider Electric 140DDO35310 Modicon Quantum Discrete Output Module

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Schneider Electric 140DDO35310 Modicon Quantum Discrete Output Module Configured for high-density negative logic switching in the Modicon Quantum automation platform,... Read more

SKU: 140DDO35310
Country of origin: France

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    Description

    Schneider Electric 140DDO35310 Modicon Quantum Discrete Output Module

    Configured for high-density negative logic switching in the Modicon Quantum automation platform, the Schneider Electric 140DDO35310, also cataloged as the 140DDO35310 Discrete DC Output Module, provides direct physical execution of 32 sink-type output circuits operating at 24 V DC with deterministic response behavior.

    Suffix Breakdown & Model Matrix

    Code Segment Definition
    140 Modicon Quantum Series Prefix
    DDO Discrete Digital Output
    35 24 V DC Negative Logic (Sink)
    310 32-Point High Density Configuration

    Hardware Specifications

    Parameter Specification
    Brand Schneider Electric
    Origin France
    Weight 0.45 kg
    Dimensions Standard Quantum Module Format
    Operating Temp 0 to 60 degC
    Storage Temp -40 to 85 degC
    Power Consumption 2.0 W + (0.4 V x Total Load Current)
    Bus Current Requirement <= 330 mA
    Output Channels 32 (4 Groups of 8)
    Output Voltage 24 V DC (Limits: 19.2–30 V)
    Absolute Max Voltage 50 V for 1 s decaying pulse
    Voltage Drop 0.4 V @ 0.5 A
    Max Load Current 16 A per module / 4 A per group
    Surge Current <= 5 A for 1 ms
    Response Time <= 1 ms (0->1), <= 1 ms (1->0)
    Leakage Current 0.4 mA @ 30 V
    Isolation (Channel-Bus) 1780 Vrms DC for 1 min
    Isolation (Group-Group) 500 Vrms DC for 1 min
    Protection Internal 5 A fuse per group
    Indicators 1 Green Active LED, 1 Red Fault LED, 32 Green Output Status LEDs
    Certifications UL 508, CSA C22.2 No 142, FM Class 1 Div 2, C-Tick, GOST, RINA, RMRS

    Backplane Bus Communication Velocity Licensing

    This module utilizes the Quantum backplane architecture to execute deterministic output updates synchronized with the PLC scan cycle. The 140DDO35310 requires allocation of 2 output words in the processor memory map. Channel state transitions are executed via direct backplane transactions without protocol translation latency. Firmware flash compatibility is bound to specific Quantum processor generations; mismatched firmware revisions may result in I/O disable states during power-up diagnostics.

    Frequently Asked Questions

    Q: Can this module be hot-swapped while backplane power is applied?

    A: No. The 140DDO35310 must be inserted or removed only when the rack power supply is de-energized to prevent arcing on the backplane connectors and avoid transient overcurrent conditions on the internal fuses.

    Q: What is the maximum permissible cable length for each output circuit?

    A: For 24 V DC negative logic outputs, total conductor length should be limited to 300 meters to minimize voltage drop and inductive ringing effects under high-speed switching loads.

    Q: Does the module support individual channel replacement without disturbing adjacent modules?

    A: No. Removal requires extraction from the Quantum rack; however, adjacent modules remain operational provided their own power budgets are maintained.

    Field Installation Guidelines

    Mount the module on a standard Quantum backplane using the integrated locking mechanism. Ensure all DIN rail or chassis grounds are bonded to a single-point earth ground reference to suppress common-mode noise. Output wiring must use individually shielded twisted pair conductors with the shield terminated at the module end only. Fuse ratings must not exceed 3 A per point or 5 A per group. Verify absence of external field power before performing any terminal block connections.

    Specifications

    • Brand: Schneider Electric

    Advantages

    • High reliability in industrial environments
    • Supports continuous operation
    • Compatible with major PLC/DCS systems

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