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GE IS200RCSBG1B IS200RCSBG1BAA Turbine Control Snubber Board

Brand: General Electric
Model Number: IS200RCSBG1B IS200RCSBG1BAA
Type: Turbine Control Snubber Board
Product Origin: USA
Payment: T/T, Western Union, Credit Card
Price: USD 120
Dimensions: 138 mm x 25.4 mm x 120 mm
Weight: 0.25 kg
Warranty: 12 months

  • Product Details

The GE IS200RCSBG1B and GE IS200RCSBG1BAA function as dedicated snubber boards for turbine control systems. These modules belong to the Mark VI series from General Electric. They effectively suppress voltage spikes from inductive loads. For example, these boards protect sensitive I/O circuits from damaging transients. Consequently, the IS200RCSBG1B extends the lifespan of your control components.

Technical Specifications

The table below lists the precise parameters for the GE IS200RCSBG1B and IS200RCSBG1BAA .

Parameter Specification
Manufacturer General Electric (GE)
Full Model Numbers GE IS200RCSBG1B , GE IS200RCSBG1BAA
Product Category Turbine Control Snubber Board NSFP
Dimensions (H x W x D) 2.8 cm x 16.5 cm x 24.0 cm
Weight 0.28 kg (0.62 lbs)
Primary Interface One 32-pin backplane connector
Snubber Channels 16 independent RC snubber circuits
Component Count Approximately 90 resistors and 45 ceramic capacitors
Energy Storage per Channel 0.1 µF capacitor with 47 Ω series resistor
Operating Temperature -30°C to +65°C

Functional Design and Transient Protection

The GE IS200RCSBG1BAA connects directly to the turbine control backplane. It absorbs inductive kickback from relays and solenoids. Each channel uses a resistor-capacitor network for optimal damping. Therefore, this board prevents false triggering of digital input modules. The IS200RCSBG1B also reduces electromagnetic interference within the cabinet.

Installation and Compatibility Notes

You must verify voltage ratings before installing this snubber board. The GE IS200RCSBG1B fits exclusively into Mark VI series turbine cabinets. Always replace faulty units with identical GE board revisions. Additionally, match each channel to the correct inductive load type. This practice ensures proper transient suppression across all outputs.

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