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IC697MDL940

Relay Output, Signal, 2 Amp (16 Points) a rugged 16-point output relay module
In Stock
Ships by Monday, June 22
Fast Shipping Available

Product Information:

IC697MDL940 is a rugged 16-point output relay module  
from the GE Fanuc 90-70  Series
It operates between low and medium power loads such as lamps and relays
The module has a rating of 2 Amps per point at a voltage of 120/240 VAC or 24 VDC
It has a current of 0.2 Amps per point for a voltage of 125VDC
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Technical specifications for IC697MDL940

  • Manufacturer:
    General Electric
  • Product Category:
    PLC System
  • Estimated shipping dimensions:
    4x22x29.1cm
  • Weight:
    0.66 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen, Fujian, China
  • Outputs per Module::
    16
  • Configuration:
    8 points - Form C (each point isolated)
  • Maximum Load Current (Resistive) Per Module:
    16 amps
  • Maximum Load Current (Resistive) Per Group (Form A):
    4 amps
  • Maximum Power:
    480 VA (AC loads) or 60 watts (DC loads)
  • Minimum Load Current:
    10 mA
  • Stock:
    40

Ask our team:

  • What is the fundamental functional classification of the IC697MDL940 within industrial automation architectures?
    The IC697MDL940 is a discrete relay output module engineered for integration within the GE Fanuc Series 90-70 PLC platform, designed to facilitate deterministic control of field devices through electromechanical switching mechanisms.
  • How does the IC697MDL940 architecturally structure its output channels, and what relay topologies are implemented?
    The IC697MDL940 incorporates 16 output points, partitioned into: 8 isolated Form C (SPDT) relay outputs 8 Form A (SPST) relay outputs arranged in two groups of four This hybrid topology enhances configurational flexibility for heterogeneous load control scenarios.
  • What nominal voltage regimes and electrical load characteristics govern the operational envelope of the IC697MDL940?
    The IC697MDL940 supports multi-domain voltage operation, including: 120/240 VAC 5/24/125 VDC With: 2 A switching capacity per point Maximum 16 A aggregate per module 480 VA (AC) / 60 W (DC) power rating These parameters define its suitability for low-to-medium power industrial loads.
  • Why does the IC697MDL940 employ both RC snubber circuits and individual fuse protection, and how do these enhance system robustness?
    Each output of the IC697MDL940 integrates: RC snubber networks to suppress transient voltage spikes Individual fusing to mitigate overcurrent faults This dual-layer protection strategy significantly improves electromagnetic compatibility (EMC) and prolongs relay contact longevity.
  • What isolation characteristics distinguish the IC697MDL940 in high-reliability control systems?
    The IC697MDL940 provides: 1500 V isolation between outputs and backplane 500 V isolation between output groups Such galvanic isolation ensures electrical segregation, reducing fault propagation risks in mission-critical environments.
  • How does the IC697MDL940 manage switching dynamics and temporal response performance?
    The module exhibits: Turn-on time: ≤10 ms Turn-off time: ≤10 ms Switching frequency: ~20 cycles/min (inductive loads) These characteristics reflect its optimization for reliability over high-speed switching applications.
  • In what ways does the IC697MDL940 facilitate field wiring and maintenance efficiency?
    The IC697MDL940 features: Removable terminal boards for simplified wiring Mechanical keying to prevent incorrect module replacement LED status indicators per output channel These design elements streamline commissioning, diagnostics, and maintenance workflows.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.