DCS; Industrial control system
NameDescriptionContent
Argument
Current Location:
PRODUCT SHOW
IS200VVIBH1A
❤ Add to collection

IS200VVIBH1A

IS200VVIBH1A
10055.00
¥4548.00
¥4548.00
¥4548.00
Weight:0.000KG
Description
IS200VVIBH1A

Part Number IS200VVIBH1A Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark VI/VIe Function Module Availability In StockIS200VVIBH1A is an Vibration Monitor Board developed by GE. It is a part of the Mark VI control system. The Mark VI system incorporates Bently Nevada probes for shaft vibration monitoring, with the Vibration Monitor Board playing a central role in processing signals from these probes. This information is obtained from the TVIB terminal board, to which up to 14 probes can connect directly. Two TVIBs can then be cabled to the VVIB processor board. The VVIB digitizes the diverse vibration signals and transmits them over the VME bus to the controller. PROTECTIVE FUNCTIONS IN TURBINE APPLICATIONS Vibration probe inputs are typically utilized for four protective functions in turbine applications: Vibration Monitoring: Proximity probes monitor the peak-to-peak radial displacement of the shaft, capturing the shaft's motion within the journal bearing in two radial directions. The system employs non-contacting probes and Proximitors, providing alarm, trip, and fault detection capabilities. Rotor Axial Position Monitoring: A probe is strategically mounted in a bracket assembly off the thrust bearing casing to observe the motion of the thrust collar on the turbine rotor. Similar to vibration monitoring, this system utilizes non-contacting probes and Proximitors, resulting in thrust bearing wear alarm, trip, and fault detection. Differential Expansion Monitoring: This application employs non-contacting probes and Proximitors to detect excessive expansion differential between the rotor and the turbine casing. It provides alarm, trip, and fault detection for differential expansion issues. Rotor Eccentricity Monitoring: A probe, positioned adjacent to the shaft, continuously senses the surface and updates the turbine control. The calculation of eccentricity is made once per revolution during turning gear operation. The system provides alarm and fault indications for rotor eccentricity. INSTALLATION Power Down the Processor Rack: Before proceeding with the installation, ensure the processor rack is powered down. This precautionary measure prevents any potential electrical interference or disruptions during the installation process. Slide in the Board: Carefully slide VVIB into the designated slot in the rack. Ensure that the board is aligned with the slot and smoothly insert it to establish proper connections. Secure the Board with Levers: Once the board is correctly inserted, use your hands to push the top and bottom levers. These levers play a crucial role in securing the board firmly in place, establishing a reliable connection with the edge connectors within the rack. Tighten Captive Screws: To further secure the board and prevent any unintended movement, tighten the captive screws located at the top and bottom of the front panel. Use an appropriate tool to ensure a snug fit without over-tightening. OPERATION Probe Compatibility: TVIB is designed to support a variety of Bently Nevada probes, including Proximitor, Seismic, Accelerometer, and Velomitor probes. These probes are specialized for monitoring different aspects of turbine performance and mechanical conditions. Power Supply: Power for the vibration probes is supplied by the Vibration Monitor Board. The VVIB boards, operating in either Simplex or Triple Modular Redundant (TMR) mode, ensure a stable and reliable power supply to the connected probes. Probe Signal Processing: The signals from the vibration probes are transmitted, where they undergo processing. TVIB supports Proximitor, Seismic, Accelerometer, and Velomitor probes, and it is capable of handling signals from these sensors with precision. A/D Conversion: After receiving the probe signals, TVIB facilitates Analog-to-Digital (A/D) conversion. This process digitizes the analog signals from the probes into digital values, making them suitable for further processing and analysis. Communication with Controller: The digitized vibration signals are then sent over the VME bus to the controller. This communication pathway ensures that the processed data is efficiently transmitted to the central control system for real-time monitoring, analysis, and decision-making.VME VIBRATION CARD

  • ABB Triguard SC300E MSR04XI
  • ABB Control product - Soft starter PST/PSTB (Intelligent Type)
  • ABB Automation System ABB Procontic T200
  • ABB PCS6000 medium voltage wind turbine converter
  • SYSTEM DRIVES PCS6000 ABB
  • ABB PP886 Compact Product Suite hardware selector
  • ABB CP450 Installation and Operation Manual
  • ABB ompact 800 5.1 Product Catalog
  • ABB Panel 800 version 6
  • ABB Panel 800 Version 6- Panel Builder Version 6.0-1
  • ABB Panel 800 Version 6- PP885
  • ABB IndustrialIT Panel 800 - PP846 Version 5.1
  • ABB IndustrialIT Panel 800 - PP836 Version 5.1
  • ABB Control Panels CP405 Control Panels CP408
  • ABB PowerUP for medium voltage drives
  • ABB Advant® Master S100 I/O system
  • GE MiCOM P40U Connect MiCOM P40 IEDs to PCs with USB ports
  • GE Reason RT431 GPS Precision-Time Clock
  • GE Reason RT430 GNSS Precision-Time Clocks
  • GE Reason H49 PRP/HSR Redbox Switch
  • GE Reason S20 Managed Ethernet Switches
  • GE Gridcom DIP.net
  • Central Control Station at Jaenschwalde mineLausitzer Braunkohle AG, Germany (2000
  • ABB Ability™ System 800xA Advant® Master S400 I/O to S800 I/O Evolution
  • Advant™Automation with MOD 300™ Software
  • ABB MEASUREMENT & ANALYTICS EasyLine EL3000 / EL3060
  • ABB MEASUREMENT & ANALYTICS PGC5000 Process gas chromatograph
  • ABB AC servo motors BSM Series
  • ABB New BSD Series A complete range
  • ABB Advant Controller 110
  • ABB ASTAT® Crane motion controller Version AST10_054
  • ABB-Crane Control System - ASTAT
  • ABB Open Control System Advant Controller 210
  • ABB Open Control System Advant Controller 250
  • ABB Advant Controller 160
  • ABB DSCA33 High Performance Signal Conditioners
  • ABB Advant Controller 70 – Kompakter und leistungsfähiger
  • ABB Advant Controller 31 Hardware 90 Series
  • ABB Advant Controller 31 Series 40 and 50
  • ABB Procontic CS 31 Intelligent decentralized automation system
  • ABB Digital output module ICSO 08 R1, 8 relay outputs 2 A
  • ABB Analog Input/Output Module 07 AC 91
  • ABB Basic Units 07 KT 97, 07 KT 96, 07 KT 95 Advant Controller 31
  • DCV 700 thyristor panels ABB DC Drives
  • ABB ACV 700 Frequency Converters
  • ACS800-04 and ACS800-04M Drive Modules (45 to 560 kW) ABB
  • ABB ACS850-04-387A-5 Low-pressure AC drive mechanical transmission
  • ABB ACS850-04 drive modules (160 to 560 kW, 200 to 700 hp)
  • ABB ACS800 multi-drive,1.1-5600kw
  • ABB 64691929 DSMB-01C; POWER SUPPLY BOARD
  • ABB T320 System 800xA for Advant Master Configuration
  • ABB A331 Advant Controller 400 Configuration and Operation
  • ABB with Advant Controller 400 series
  • ABB Electro-Pneumatic Positioner TZIDC
  • ABB MNS iS motor control center System guide
  • ABB MNS iS The integrated solution for the WAGP project
  • MNS iS Motor Control Center System Release V6.0
  • MNSiS Motor Control Center Interface Manual MLink HW 1TGE120021
  • ABB for electrical systems - CMES MService Condition Monitoring V7.7
  • ABB Ability™ Condition Monitoring for electrical systems – CMES
  • ABB 2600T Series Pressure Transmitters
  • ABB InstrumentationIT 2600T Pressure Transmitter family
  • ABB MEASUREMENT & ANALYTICS 266DSH Differential pressure transmitters
  • Abaco XVR19 Intel® Xeon® Based VME Single Board
  • VMIVME-4150 Isolated 12-Channel 12-bit Analog Output Board with
  • Abaco XVB603 Intel® Xeon® Based VME Single Board
  • Abaco VR12 VP12 6U VME Single Board
  • Mitsubishi MELSERVO-J2-Super series general-purpose AC servo
  • Mitsubishi MELSERVO-J3 servo system
  • Mitsubishi MELSERVO-JE servo system
  • Mitsubishi MELSERVO-J4 AC servo
  • Mitsubishi MELSERVO-JET servo system
  • Mitsubishi MELSERVO-J5 AC servo
  • Mitsubishi Melsec-related network products
  • Mitsubishi MELSEC-QS/WS series
  • Mitsubishi MELSEC-F series
  • Mitsubishi MELSEC-L series
  • ABB UNITROL 1005 Automatic voltage regulator
  • ABB UNITROL 1010 medium synchronous generators and industrial machines
  • ABB UNITROL 1020 Synchronous voltage regulator
  • UNITROL 1000 Automatic voltage regulators (AVR)
  • Bently Nevada 3500/65 145988-02 temperature monitor
  • Mitsubishi MELSEC-Q series
  • Mitsubishi MELSEC iQ-F series
  • Mitsubishi MELSEC iQ-R series
  • ABB IndustrialIT Panel 800 - PP820
  • MENTOR II M25RGB14 Controller
  • N-Tron® NT24K-10FX2-SC-POE Managed 10-Port Industrial Ethernet Switch
  • N-Tron® NT24K-16M12-POE-PT Managed 16-Port IP67 Gigabit Industrial Ethernet Switch
  • N-Tron® NT24K-11GX3-SC-POE Managed 11-Port Gigabit Industrial Ethernet Switch
  • N-Tron® NT24K-12FX4-ST-POE Managed 12-Port Gigabit Industrial Ethernet Switch
  • Sixnet® EB-5ES-PSE-2SC Unmanaged 5-port PoE Industrial Switch
  • NT24k® 10FX2-POE Managed PoE+ Gigabit Ethernet Switch
  • N-Tron® NT24K-16M12-POE-R-PT Managed 16-Port IP67 Gigabit Industrial Ethernet Switch
  • N-Tron® NT24K-8TX-POE-PT Managed 8-Port Gigabit Industrial Ethernet Switch
  • N-Tron® NT24K-14FX6-ST-POE Managed 14-Port Gigabit Industrial Ethernet Switch
  • N-Tron® NT24K-11FX3-ST-POE Managed 11-Port Gigabit Industrial Ethernet Switch
  • N-Tron® 105FXE-ST-40-POE-MDR Unmanaged 5-port PoE Switch
  • Sixnet® EB-5ES Unmanaged 5-port PoE Industrial Switch, ST 60km
  • N-Tron® 100-POE4-MDR Industrial Midspan Injector, Metal DIN Rail
  • N-Tron® 105FX-ST-POE Unmanaged 5-port PoE Switch
  • N-Tron® 100-POE4 Industrial Midspan Injector
  • N-Tron® NT24K-16M12-POE Managed 16-Port IP67 Gigabit Industrial Ethernet Switch
  • N-Tron® 105FX-ST-POE-MDR Unmanaged 5-port PoE Switch
  • N-Tron® 105FXE-ST-15-POE Unmanaged 5-port PoE Switch
  • Sixnet® EB-5ES-PSE-3ST Unmanaged 5-port PoE Industrial Switch
  • N-Tron® 105FX-SC-POE Unmanaged 5-port PoE Switch
  • N-Tron® NT24K-12SFP-DM4-POE Managed 12-Port Gigabit Industrial Ethernet Switch
  • N-Tron® NT24K-12FX4-SC-POE Managed 12-Port Gigabit Industrial Ethernet Switch
  • N-Tron® 105FXE-ST-80-POE-MDR Unmanaged 5-port PoE Switch
  • N-Tron® NT24K-14FX6-SC-POE Managed 14-Port Gigabit Industrial Ethernet Switch
  • Sixnet® EB-5ES-PSE-1 Unmanaged 5-port PoE Industrial Switch
  • N-Tron® NT24K-16M12-POE-R Managed 16-Port IP67 Gigabit Industrial Ethernet Switch
  • N-Tron® NT24K-11FX3-SC-POE Managed 11-Port Gigabit Industrial Ethernet Switch
  • N-Tron® 105FXE-SC-15-POE Unmanaged 5-port PoE Switch
  • N-Tron® NT24K-14GX6-SC-POE Managed 14-Port Gigabit Industrial Ethernet Switch
  • N-Tron® 105FXE-SC-80-POE Unmanaged 5-port PoE Switch
  • N-Tron® 105FXE-SC-40-POE-MDR Unmanaged 5-port PoE Switch
  • N-Tron® NT24K-12GX4-SC-POE Managed 12-Port Gigabit Industrial Ethernet Switch
  • Sixnet® EB-5ES Unmanaged 5-port PoE Industrial Switch, SC 20km
  • N-Tron® 105FXE-ST-15-POE-MDR Unmanaged 5-port PoE Switch
  • N-Tron® NT24K-8TX-POE Managed 8-Port Gigabit Industrial Ethernet Switch
  • N-Tron® 105FX-SC-POE-MDR Unmanaged 5-port PoE Switch
  • N-Tron® 105TX-POE Unmanaged 5-port PoE Switch
  • Sixnet® EB-5ES Unmanaged 5-port PoE Industrial Switch, SC 60km
  • N-Tron® 105FXE-SC-15-POE-MDR Unmanaged 5-port PoE Switch
  • N-Tron® NT24K-10GX2-SC-POE Managed 10-Port Gigabit Industrial Ethernet Switch
  • N-Tron® 105TX-POE-MDR Unmanaged 5-port PoE Switch