Description
GE DS200TCTGG1AFF Simplex Trip Board Module
The GE DS200TCTGG1AFF Simplex Trip Board Module serves as a critical safety component in industrial automation systems. Engineered for dependable trip protection, this module ensures rapid shutdown of machinery during abnormal conditions like overvoltage, mechanical failure, or process deviations. Its primary role in safeguarding equipment and personnel makes it indispensable for industries requiring strict operational integrity.
| Attribute | Specification |
|---|---|
| Brand | General Electric (GE) |
| Series | Mark V DS200 Series |
| Module Type | Simplex Trip Board |
| Relay Count | 21 Insert-style Relays (K1–K21) |
| Connectors | 3 x 50-pin (JLY/JLX/JLZ), 2 x 12-pin (JN/JM) |
| Processor | Intel Atom® E6600 (if applicable) |
| Mounting | DIN Rail Compatible |
| Certifications | Industrial Standards Compliant |
| Dimensions | Approx. 12″ x 6″ x 2″ (L x W x H) |
| Weight | ~3.5 lbs (1.6 kg) |


Industries like power generation, chemical processing, and pharmaceutical manufacturing rely on this module for its robust performance in harsh environments. For example, in a gas turbine control system, the DS200TCTGG1AFF’s 21 relays (e.g., K5 for emergency shutdown, K10 for valve control) coordinate with GE’s Mark V systems to execute rapid safety protocols. It integrates seamlessly with other GE modules like VMIVME-7807 and IS230SRTDH2A, forming a cohesive control network. Customers in food processing plants have noted its reliability even under frequent washdown conditions, thanks to its vibration-resistant design.

The module’s modular architecture simplifies maintenance—relays snap into place with metal retaining bands, reducing replacement time during unplanned outages. Its DIN rail mounting adapts to standard control cabinets, while the 50-pin connectors enable efficient signal routing for diagnostics. Though simplex (non-redundant), its industrial compliance ensures compatibility with safety-critical systems. For instance, a refinery reported a 40% faster troubleshooting process after upgrading to this module’s high-density connector design. Designed for temperatures -20°C to 70°C, it outperforms competitors in extreme conditions without compromising signal integrity.




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