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GE IS200TPROH1BBB Mark VI Turbine Protection Board

GE Fanuc

GE IS200TPROH1BBB Mark VI Turbine Protection Board

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  • Manufacturer: GE Fanuc

  • Product No.: IS200TPROH1BBB

  • Product Type: Mark VI Turbine Protection Board

  • Product Origin: USA

  • Payment:T/T, Western Union

  • Weight: 1000g

  • Shipping port: Xiamen

  • Warranty: 12 months

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Product Overview

Configured for emergency trip execution in Mark VI Control System networks, the GE IS200TPROH1BBB (IS200TPRO Turbine Protection Board) provides direct physical/electrical execution. The hardware component terminates vital field inputs linked to turbine overspeed detection, emergency stop buttons, and liftoff sensors, routing clean signals to the triple redundant control core. It hosts mechanical relay pathways capable of interrupting primary breaker power matrix circuits within deterministic sub-millisecond trip evaluation limits.

Hardware Specifications

Parameter Specification
Model IS200TPROH1BBB
Brand GE (General Electric)
Origin USA
Weight 1.45 kg
Dimensions 330 mm x 178 mm x 54 mm
Operating Temp 0 to 60 deg C
Power Consumption 15 W maximum driven via connected I/O processor packs
Relay Configurations Heavy-duty magnetic trip execution relays
Input Terminal Design Barrier terminal blocks facilitating dual wire terminations

Deterministic Routing and Firmware Flash Compatibility

The IS200TPROH1BBB links straight into the control core processors, matching internal backplane communication velocity guidelines to distribute trip status signals synchronously across execution frameworks. The module layout adheres to system architecture checks; hardware configuration matrices and onboard identification logic verify firmware flash compatibility metrics during initialization sequences to confirm proper diagnostic tracking registers remain active without induction delays.

Frequently Asked Questions

Q: How is the hot-swap restriction applied to the IS200TPROH1BBB module?

A: Hot-swapping or replacing the terminal board assembly while the turbine package is online is strictly prohibited. Disconnecting terminal paths drops the continuous holding current to the main protection relays, inducing an immediate unintentional machine shutdown sequence.

Q: What mechanisms protect the inner trip logic against external high-voltage surges?

A: The board design features integrated high-speed metal oxide varistors (MOVs) and optocouplers at the interface layer. This construction isolates internal digital tracking tracks from continuous field noise and voltage anomalies running on protection signal lines.

Field Installation Guidelines

  • Static Discharge Standards: All field operators must wear an approved, grounded anti-static ESD wrist strap tied straight to the cabinet steel infrastructure prior to unpacking or manipulating the hardware.
  • Structural Mechanical Fastening: Secure the terminal board firmly to the interior enclosure mounting frame using standard zinc-plated screws, confirming a low-impedance connection paths directly to the metal panel backplate.
  • Cable Shielding Execution: Strip emergency sensor signal shield lines at the entry junction and attach them cleanly to the master copper ground rail, leaving the remote device end isolated to stop noise circulation loops.
  • Terminal Screws Tightening Specs: Wire all field indicators onto the terminal matrix plates utilizing a calibrated tool set to a tight tolerance spec of 0.56 Nm to maintain stable electrical mechanical bonds under constant machine vibration patterns.
Return policy

​We aim to provide reliable products and a smooth purchasing experience. If there is a problem with your order, please contact us and we will assist according to our Refund Policy.

Shipping

We provide international shipping options to meet different delivery requirements. Please review details regarding methods and timelines in our Shipping Policy.

Warranty

We provide a 12-month warranty for all products, subject to normal use and proper installation.

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