GE IS210BPPBH2C Mark VIe Backup Protection Processor Board

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Description

GE IS210BPPBH2C Mark VIe Backup Protection Processor Board (BPPB)

The GE IS210BPPBH2C is a dedicated Backup Protection Processor Board (BPPB) engineered for General Electric’s Speedtronic™ Mark VIe / Mark VIeS distributed control and turbine safety trip architectures. Serving as a critical trip processing interface, the board provides hardwired backup overspeed detection, emergency trip solenoid control, and deterministic logic execution independent of primary supervisory controllers.

Featuring heavy-duty conformal coating, multi-layer circuit isolation, and synchronized high-speed backplane communications, the IS210BPPBH2C delivers emergency turbine shutdown capability within milliseconds during fatal overspeed or emergency governor trip conditions. It integrates seamlessly into modular Mark VIe rack configurations, interfacing directly with redundant I/O packs and power backplanes to maintain continuous plant and marine propulsion safety.

 

Model Details

  • Manufacturer: General Electric
  • Product Line: Speedtronicâ„¢ Mark VIe / Mark VIeS Safety Control Platform
  • Module Description: Backup Protection Processor Board (BPPB)
  • Manufacturer Part Number (MPN): IS210BPPBH2C

 

Technical Specifications

Specification Parameter Rating / Technical Specification
Board Type / Form Factor Printed Circuit Board (PCB), Mark VIe Rack / Chassis Slot Mount
Nominal Input Operating Voltage 24 VDC nominal (tolerance range: 18 VDC to 32 VDC) via system power backplane
Power Consumption Typical: 18 W – 28 W (load-dependent on active trip solenoid loops)
Processor / Core Logic Dedicated real-time micro-controller with FPGA logic engine for overspeed monitoring
Backplane Interface & Pinout High-density multi-pin card edge / Eurocard connector (proprietary Mark VIe backplane bus)
Terminal Allocations & I/O Dedicated channels for Magnetic Speed Pickup (MPU) inputs (Passive/Active),
Hardwired Emergency Stop (E-Stop) dry contact inputs,
Supervisory 24/125 VDC trip coil interlocks, and
Sequence of Events (SOE) timestamp capture outputs
Trip Response Latency < 15 ms from trip threshold breach to output solenoid de-energization
Operating Temperature Range -30°C to +65°C (-22°F to +149°F) ambient operating range
Storage Temperature Range -40°C to +85°C (-40°F to +185°F) non-operating
Relative Humidity 5% to 95% relative humidity, non-condensing
PCB Protection & Coating Type AR / UR Conformal Coating rated for marine and harsh chemical zones
Diagnostic Status Indicators RUN (Green), FAIL (Red), TRIP ACTIVE (Amber), SYNC OK (Green), BUS HEALTH (Green)
Dimensions & Weight Standard Mark VIe Module Slot: 160 mm x 120 mm x 25 mm (approx.); 0.65 kg (1.43 lbs)

Key Features

  1. Independent Hardwired Protection Architecture: Operates an isolated logic processing loop capable of executing independent overspeed and trip logic without dependence on the main controller network.
  2. High-Speed Deterministic Trip Interlock: Features microsecond-level hardware trip relay execution to drive turbine trip solenoids (ETD/MTS) during catastrophic process deviations.
  3. Dual/Triple Modular Redundancy (TMR) Support: Fully compatible with simplex, dual, and triple redundant Mark VIe architectures to ensure uninterrupted availability.
  4. Rugged Conformal Coating: Factory-applied coating protecting surface-mount components, traces, and solder joints against moisture, salt fog, petrochemical fumes, and vibration.
  5. Onboard Diagnostic LED Annunciation: Real-time LED matrix displaying processor health, bus link status, trip status, and terminal fault conditions for rapid troubleshooting.

 

Compatibility

  • Control Platforms: GE Speedtronic Mark VIe, Mark VIeS Functional Safety System
  • Turbine Types Supported: Heavy-Duty Frame Gas Turbines (Frame 6B, 7EA, 7F, 9E, 9F), Aeroderivative Turbines (LM2500, LM6000, LMS100), Industrial & Marine Steam Turbines
  • Associated Power Supply Modules: IS215AEPAH1C, IS210BPPH1A, IS210BPPCH1A
  • Supported Terminal Boards & I/O Packs: TREG (Gas Turbine Emergency Trip Board), TROT (Turbine Overspeed Trip Terminal Board), TRPG (Primary Trip Board), and YPPI / PPDA Safety Core Packs
  • Configuration Software Suite: GE ControlST* (ToolboxST* version 04.05 or higher) and CIMPLICITY HMI

 

Part Number Cross-References

  • IS210BPPBH2C (Primary Current Model)
  • IS210BPPBH2CAA (Extended Hardware Revision)
  • IS210BPPBH2B (Direct Backward Predecessor)
  • IS210BPPBH2BMD (Variant Module Designation)
  • IS210BPPBH1A (Legacy Rev H1 Board)
  • IS210BPPCH1AC (Functional Power/Backplane Variant)

 

Applications

  • Heavy Marine Propulsion: Backup emergency stop and automated overspeed shutdown on LNG carriers, FPSO turbine drivers, and container vessels utilizing aeroderivative gas turbine mechanical drive packages.
  • Offshore Oil & Gas Turbomachinery: Skid-mounted crude oil pumps, water injection skids, and gas compression packages powered by GE Frame and aeroderivative units.
  • Combined-Cycle Power Plants (CCPP): Base-load gas and steam turbine generator governor systems demanding high-availability Triple Modular Redundancy (TMR) architectures.
  • Industrial Cogeneration Units: Paper mills, chemical refineries, and district heating plants operating GE industrial steam extraction turbines.

 

Frequently Asked Questions

Can the IS210BPPBH2C be used to replace an older IS210BPPBH2B board directly?

Yes, in the vast majority of Mark VIe cabinet layouts, the IS210BPPBH2C is directly backward-compatible with the IS210BPPBH2B. The form factor, primary pinout, and terminal terminations remain identical. However, verify your system software (ToolboxST) recognizes the updated hardware revision to ensure complete diagnostic reporting without nuisance alarms.

What is the primary operational difference between the main controller and the IS210BPPB?

The primary controller (e.g., UCSA/UCCC/UCSE) executes broader governor control, temperature regulation, sequencing, and process optimization. The IS210BPPB functions as a dedicated hardware protection interface that guarantees turbine shutdown on hardwired parameters (such as emergency overspeed or manual trip) even if the primary controller experiences communication interruptions or failure.

What tools are required for onsite field replacement?

Replacement requires a grounding ESD wrist strap, a #2 insulated Phillips screwdriver, a small flathead terminal screwdriver (for screw clamp terminal headers), and a calibrated digital multimeter for initial supply voltage verification.

How do I troubleshoot a solid red “FAIL” LED on the front edge?

A solid red FAIL LED indicates either an internal self-test failure (microcontroller watchdog timeout), an out-of-spec power rail (internal rail drop below tolerance), or an incomplete firmware load. De-energize the rack, inspect backplane pins for physical damage, verify 24 VDC bus stability, reseat the board, and check diagnostic logs inside ToolboxST for specific error codes.

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