1 of 3

GE Mark VI IS200TTURH1B Turbine Termination Board

GE Mark VI IS200TTURH1B Turbine Termination Board

Only 3 item(s) left in stock
  • Manufacturer: General Electric

  • Product No.: IS200TTURH1B

  • Country of origin:ایالات متحده آمریکا

  • Product Type: Termination Boards

  • Barcode: 8537101190

  • Payment: T/T, Western Union

  • Weight: 1100g

  • Dimensions: ۳۳ سانتی‌متر × ۱۷.۷ سانتی‌متر × ۵.۵ سانتی‌متر

  • Shipping port: Xiamen

  • Warranty: 12 months

Quantity
View full details

Product Overview

The IS200TTURH1B is a high-integrity, specialized turbine termination board developed by GE Energy for the legacy Mark VI Speedtronic control system series. Operating as the primary hardwired interface for steam and gas turbine electro-hydraulic systems, this card directly lands critical field signals required for synchronization and overspeed protection loops. Heavy continuous-process facilities—including industrial thermal power generation plants, combined-cycle utility grids, and large oil and gas pipeline compressor stations—rely on the IS200TTURH1B to aggregate sensitive telemetry data. The board monitors magnetic speed pickups, matches generator synchronization parameters, and controls hydraulic solenoid valve trip coils. By providing robust passive signal terminal paths and localized surge filtering, this board ensures the main control processor receives stable waveforms. This stability helps prevent hazardous turbine overspeed trips and reduces unprogrammed system downtime.

Circuit Architecture & Processing Functions

The specialized circuit layout, localized signal conditioners, and redundant terminal barriers of the IS200TTURH1B maintain strict real-time control over critical turbine operating parameters.

  • Magnetic Speed Pickup Channels: Outfitted with dedicated passive inputs to capture high-frequency passive pulse signals from speed sensors monitoring shaft rotation (RPM).

  • Generator Synchronization Isolation: Features built-in voltage transformer interface lines to monitor bus voltage, generator line voltage, and phase angles during automatic synchronization routines.

  • Trip Solenoid Drive Paths: Links directly with emergency trip system (ETS) loops to safely distribute heavy actuation currents out to hydraulic fluid dump valves.

  • System Interfacing Connection: Connects to the primary control processor rack via high-density ribbon cables, routing clean analog and discrete signals to the system backplane.

Technical Performance Standards

Parameter Certified Specification Standard
Model Identity IS200TTURH1B
Brand Manufacturer GE Energy (GE Vernova / Turbine Control)
Control System Line Mark VI Speedtronic System Series
Module Classification TTUR - Turbine Termination Board
Hardware Revision H1B Functional Layout Variant
Signal Input Handling Speed Pickups, Synchronization Transformers, Breaker Status
Signal Output Actuations Hydraulic Trip Solenoid Interlocks, Valve Controls
Coating Protection Industrial Grade Protective Conformal Coating Layers
Mounting Configuration Vertical Panel Mount via Standard DIN-Rail Terminal Track
Operating Temperature 0 to 60 deg C Continuous Environmental Range
Storage Temperature -40 to +85 deg C Safe Storage Constraints
Manufacturing Location United States (USA)

Turbine Telemetry & Troubleshooting FAQs

What specific field sensors connect directly to the terminals of the IS200TTURH1B board?

The IS200TTURH1B accepts inputs from turbine speed pickups (such as magnetic reluctance sensors) and potential transformers (PTs) that monitor bus and generator line voltage. It also lands status feedback lines from main generator circuit breakers and auxiliary trip limit switches.

How does the H1B revision code impact backward compatibility during field retrofits?

The H1B designation identifies the specific hardware component layout and trace routing for this version of the TTUR board. When replacing a faulty card in an active Mark VI control panel, engineers must match this functional suffix to ensure the card fits existing terminal layouts and interfaces correctly with the control software.

What are the common indicators of a signal processing failure on this termination board?

Faults on this board typically show up as erratic speed readings, synchronization errors, or open-circuit diagnostic warnings on the operator workstation. These issues are often caused by loose wire connections at the terminal block, breakdown of the onboard surge filters, or damaged ribbon cables leading to the central controller.


Field Engineering & Installation Guide

  • Shield Grounding Methods for Speed Pickup Lines:

    To maintain clean pulse tracking on high-frequency speed channels, route all field sensor wires through high-quality twisted, shielded instrumentation cables. Connect the outer cable shield to the dedicated cabinet earth ground bar at the termination board side only, and cut the shield clean at the sensor end. This practice keeps electromagnetic noise from interfering with the pulse streams and causing false speed readings.

  • Anti-Static Handling for Control Board Maintenance:

    The components on this termination board are sensitive to electrostatic discharge (ESD). Field engineers must wear a properly bonded anti-static wrist strap connected to the enclosure chassis before handling the board or changing any wire connections. Hold the module strictly by its fiberglass borders or mechanical edges to avoid touching exposed trace routes.

  • Terminal Torque Limits and Connection Checks:

    Secure all field wires into the terminal blocks using the specified engineering torque values to prevent loose connections. Loose wires can cause high contact resistance, introducing signal errors on analog loops or interrupting emergency trip circuits due to low-frequency panel vibrations.

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
سبز
Country of origin
ایالات متحده آمریکا
Power source
برق DC

Recently Viewed Products

Technical knowledge

راهنمای جامع فایروال‌های صنعتی و تقسیم‌بندی شبکه OT

فایروال‌های صنعتی نقش حیاتی در امنیت سایبری OT ایفا می‌کنند و از شبکه‌های PLC، DCS و SCADA از طریق بخش‌بندی، کنترل ورود/خروج و ادغام IDS/IPS مطابق با اصول IEC 62443 محافظت می‌کنند.

راهنمای گیره‌های رباتیک: از جابجایی ظریف تا اتوماسیون سنگین

گیره‌های رباتیک مدرن فراتر از فک‌های مکانیکی سنتی در حال پیشرفت هستند. از سیستم‌های چسبنده الهام‌گرفته از گکوی، گیره‌های نرم با درجه‌بندی غذایی تا ابزارهای انبار مجهز به هوش مصنوعی، فناوری‌های...

بازگشت به گذشته: چگونه موتورهای الکتریکی اولیه معدن‌کاری زیرزمینی را تغییر دادند

از کمپرسورهای جریان مستقیم با نیروی طناب تا واگن‌های معدنی باتری‌دار، عملیات‌های اولیه معدن‌کاری نقطه عطفی در برق‌رسانی صنعتی بودند. این مقاله بررسی می‌کند که چگونه موتورهای الکتریکی پیش از ورود...

Factory I/O: یک ابزار شبیه‌سازی PLC مدرن برای آموزش اتوماسیون صنعتی

Factory I/O آموزش PLC را با ارائه شبیه‌سازی‌های صنعتی سه‌بعدی فراگیر برای دانشجویان، مهندسان و تیم‌های نگهداری متحول می‌کند. این پلتفرم فاصله بین نظریه و عمل واقعی اتوماسیون را پر می‌کند و در عین حال...

برنامه‌نویسی چرخه‌های حرکت تک‌محور روی درایو سروو CMZ

این آموزش بررسی می‌کند که چگونه عملکرد PLC داخلی درایو سروو CMZ SBD می‌تواند برنامه‌های حرکتی مستقل را اجرا کند، از جمله منطق خانه‌یابی، کنترل موقعیت و حرکت دوره‌ای محور بدون نیاز به PLC خارجی.

راه‌اندازی کنترل حرکت تک‌محور با درایوهای سروو CMZ

این آموزش به راه‌اندازی سیستم حرکت سروو تک‌محوره با استفاده از درایو CMZ SBD می‌پردازد و شامل تنظیمات سخت‌افزاری، مقیاس‌بندی محور، پیکربندی موقعیت‌یابی اولیه و تأیید حرکت ایمن برای محیط‌های اتوماسیون...