1 of 3

GE IS200VSVOH1BEF Mark VI Speedtronic VSVO Servo Control Board

GE IS200VSVOH1BEF Mark VI Speedtronic VSVO Servo Control Board

Only 5 item(s) left in stock
  • Manufacturer: General Electric

  • Product No.: IS200VSVOH1BEF

  • Country of origin:United States

  • Product Type: Servo Control Board

  • Barcode: 8537101190

  • Payment: T/T, Western Union

  • Weight: 320g

  • Dimensions: 28.6cm x 7cm x 3.2cm

  • Shipping port: Xiamen

  • Warranty: 12 months

Quantity
View full details

Description

The IS200VSVOH1BEF functions as a high-performance servo control board developed by General Electric as part of the Mark VI Speedtronic turbine control series. This VME board executes position loop control parameters to drive fuel and steam valves through the precise regulation of up to four electro-hydraulic servo valves. Integrated within gas or steam turbine configurations, the IS200VSVOH1BEF directly acquires pulse rate flow inputs, provides LVDT excitation, and processes real-time LVDT position feedback loop values to maintain structural system equilibrium.

The IS200VSVOH1BEF supports both simplex architectures and fault-tolerant Triple Modular Redundant (TMR) control architectures. Built to interface within a standard VME rack installation assembly, this module transmits serialized tracking metrics and positional diagnostics across multi-channel backplane environments. It delivers responsive closed-loop response profiles necessary for demanding automated heavy-duty industrial turbine drive management.

Features

  • Multi-Valve Servo Drive Capacity: Directs closed-loop position controls for up to four electro-hydraulic servo valves simultaneously.
  • Integrated Feedback Conditioning: Provisions onboard instrumentation processing for high-speed pulse rate flow inputs, LVDT excitation outputs, and active LVDT position feedback tracking.
  • Flexible Dual-Architecture Redundancy: Fully compatible with simplex configurations or fault-tolerant Triple Redundant control networks.
  • Extensive Component Sub-System Layering: Engineered with over seventy integrated circuits, including inductor beads (L1-L10), multiple resistors, capacitors, and four on-board relays (K1-K4).
  • Conformal Insulation Overlay: Protected by a thin, comprehensive conformal coating layer applied over the entire base printed circuit board to shield components from industrial environments.
  • Front Panel Visual Diagnostics: Outfitted with a single-slot front metal plate hosting an external cable connector (J5) alongside green (RUN), red (FAIL), and orange (STATUS) LED indicators.

Applications

  • Mark VI Speedtronic steam and gas turbine electro-hydraulic servo valve regulation
  • Real-time loop positioning for turbine fuel metering and steam extraction valves
  • Multi-channel LVDT feedback monitoring and sensor excitation control

Technical Specifications

Item Description / Value
Manufacturer General Electric / GE Energy
Series Mark VI Speedtronic
Part Number IS200VSVOH1BEF (Base PWA: IS200VSVOH1B)
Functional Description VSVO Servo Control Board
Functionality Position Loop Control
PCB Coating Conformal Coating
Functional Revision 1 B
Instruction Manual Reference GEH-6421V
Controlled Servo Valves Up to 4 electro-hydraulic valves
Feedback Formats Pulse rate flow inputs, LVDT position feedback
Physical Profile Single-slot VME faceplate assembly
Backplane Interfacing Connectors P1 and P2 backplane connectors
Conductive Trace Connectors P3 through P6 trace contacts
Onboard Relays K1, K2, K3, K4

Installation Guidelines

  • VME Rack Alignment: Guide the card smoothly along the chassis mounting tracks until the rear P1 and P2 pins seat securely with the backplane distribution network. Fasten the faceplate completely using the integrated panel screw points.
  • Interface Cable Connections: Route the specialized high-density external interface wiring loops directly through the front J5 faceplate cable connector assembly.
  • ESD Safe Handling: Maintain standard electrostatic grounding protocols using a validated wrist strap during module installation to protect the seventy internal integrated circuits from voltage breakthroughs.
Loading product navigation…

What is the primary function of the device within a turbine system?

The device operates as a position loop control card that drives fuel or steam valves by managing up to four electro-hydraulic servo valves while processing LVDT feedback.

How does the front panel display active alarm conditions?

The single-slot front panel features three visual LED indicators. Under standard conditions, the orange STATUS light remains unpowered, but it turns to a steady orange when an active alarm state occurs.

What type of connection points are used to link this card to the internal and external circuits?

The board features six distinct connectors: two physical backplane connectors (P1/P2) for internal distribution, four trace connectors (P3 through P6), and a front-facing J5 cable plug.

Global Express Shipping

  • Standard Delivery: 4-6 Business Days via DHL, FedEx, and UPS.
  • Express Dispatch: Same-day dispatch for in-stock orders placed before 2:00 PM (GMT+8).
  • Worldwide Coverage: Serving over 150 countries, including rapid delivery to Saudi Arabia and UAE.

Returns & Warranty

  • 30-Day Guarantee: Returns accepted for in-stock products in original, factory-sealed packaging.
  • 12-Month Warranty: Every industrial component is backed by our professional technical warranty.

Orders are processed and delivered Monday-Friday (excluding public holidays).


For full eligibility, restocking fees, and international return details, please view our official Refund & Return Policy .

TECHNICAL SPECIFICATIONS

Color pattern
Green
Country of origin
United States
Power source
DC Power

Recently Viewed Products

Technical knowledge

Electric Actuators Designed to Replace Fluid Power Systems: A Practical Industrial Automation Guide

This article explains how integrated electric actuators, such as SMC’s e-Actuator series, are transforming industrial motion control by replacing traditional pneumatic and hydraulic systems. It...

Math Operations Using OpenPLC for Industrial Automation Applications

This article explains how PLC systems perform core mathematical operations such as addition, subtraction, multiplication, division, modulo, and exponentiation within industrial automation. It shows...

Advanced Boolean Logic with FBD PLC Programming: Practical Industrial Applications Beyond Basic Logic

The article explains several advanced Boolean logic functions used in PLC programming beyond basic AND, OR, and NOT operations. It covers how tools like truth tables, multiplexers, pulse generators,...

Boolean Logic in PLC Programming: Understanding FBD Logic Gates

Boolean logic is the foundation of every PLC program. From simple machine controls to complex industrial automation systems, logic gates determine how controllers respond to changing inputs and...

Deep-Dive Guide to Industrial Firewalls and OT Network Segmentation

Industrial firewalls play a critical role in OT cybersecurity, protecting PLC, DCS, and SCADA networks through segmentation, ingress/egress control, and IDS/IPS integration aligned with IEC 62443...

Guide to Robotic Grippers: From Delicate Handling to Heavy-Duty Automation

Modern robotic grippers are evolving beyond traditional mechanical jaws. From gecko-inspired adhesive systems and soft food-grade grippers to AI-powered warehouse tools, advanced gripping...