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IS210DVIBH1B

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General Electric IS210DVIBH1B is a Mark VI simplex vibration terminal board that terminates thirteen vibration, position, and Keyphasor probes for VVIB.
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Technical specifications for IS210DVIBH1B

  • Manufacturer:
    General Electric
  • Part Number:
    IS210DVIBH1B
  • Product Family:
    GE Mark VI Gas Turbine Control
  • Product Type:
    Mark VI Simplex Vibration Terminal Board
  • Stock:
    1
  • Total Probe Inputs:
    13
  • Vibration Inputs:
    8
  • Position Inputs:
    4
  • Keyphasor Inputs:
    1
  • Processor Interface:
    VVIB through one 37-pin cable
  • Probe Supply:
    −24 V dc, 12 mA per transducer
  • Terminal Block:
    42 positions; 41–42 SCOM
  • Recognition:
    UL 1604, 65 °C, Class I Division 2
  • Board Dimensions:
    33.0×17.8 cm
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen,Fujian,China
By purchasing this item, you agree to the Terms & Conditions, ApterPower is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All our products come with ApterPower's 1-year warranty.

More Information

Overview Manuals Probe Input Layout Probe Type Selection VVIB Interface Wiring & Diagnostics

Features:

  • IS210DVIBH1B terminates eight vibration, four position, and one Keyphasor probe.
  • JP1A through JP8A select the supported probe type on the first eight channels.
  • One 37-pin cable transfers the terminal-board signals to VVIB.
Two IS210DVIBH1B boards can connect to one VVIB processor in the simplex vibration architecture.

The field block on IS210DVIBH1B uses 42 positions, shielded three-conductor wiring, and two SCOM terminals.

IS210DVIBH1B supplies negative 24 V dc probe power at 12 mA per transducer and has no buffered outputs.

The General Electric IS210DVIBH1B Mark VI Vibration Terminal Board is listed by Apter Power with product documentation and matching support.
General Electric IS210DVIBH1B Mark VI Vibration Terminal Board Manuals,Datasheets,Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.

Thirteen Field Channels

  • Vibration: Eight channels accept selectable vibration-probe types.
  • Position: Four channels are assigned to position measurement.
  • Keyphasor: One Proximitor input accepts a once-per-revolution signal.
  • Processor capacity: One VVIB accepts two DVIB terminal boards.

JP1A Through JP8A

  • Proximitor: A jumper position selects proximity-probe operation.
  • Accelerometer: The channel can be arranged for accelerometer input.
  • Seismic: Seismic transducers are supported by the defined jumper setting.
  • Velomitor: Velocity-transducer operation is available on the first eight channels.

Signal and Power Path

  • Data cable: A 37-pin connection carries probe signals to VVIB.
  • Identification: An ID device reports the connected terminal-board type.
  • Probe source: The negative 28 V bus supplies a regulated negative 24 V path.
  • Current limit: Each transducer source is rated for 12 mA.

Terminal and Fault Boundaries

  • Field wiring: The 42-position block accepts shielded three-conductor cable.
  • SCOM: Terminals 41 and 42 complete the grounding arrangement.
  • Input checks: High and low hardware/software limits supervise probe signals.
  • Output boundary: The compact DVIB board has no buffered probe outputs.
Description
General Electric IS210DVIBH1B is a compact DIN-rail vibration terminal board for simplex Mark VI monitoring. It terminates thirteen probes—eight vibration channels, four position channels, and one Keyphasor input—and transfers them to a VVIB processor through a 37-pin cable.

A 42-position field block on IS210DVIBH1B accepts shielded three-conductor wiring, with terminals 41 and 42 used for SCOM. Two DVIB boards can connect to one VVIB, creating the complete vibration and position input arrangement without buffered field outputs on the terminal board.

The first eight inputs on IS210DVIBH1B use JP1A through JP8A to select Proximitor, accelerometer, seismic, or Velomitor operation. The Keyphasor channel accepts a Proximitor once-per-revolution signal, while probe power is derived from the negative 28 V bus as a negative 24 V dc source rated at 12 mA per transducer.

Input supervision associated with IS210DVIBH1B includes hardware and software high/low checks, paired-channel fault handling, position monitoring, and terminal-board identification. The board is a simplex-only assembly and carries UL 1604, 65 °C, Class I Division 2 recognition.
Alternative Names
GE IS210DVIBH1B General Electric IS210DVIBH1B IS210-DVIB-H1B IS210 DVIB H1B DVIB H1B Vibration Board GE DVIB H1B Terminal Board Mark VI DVIB Probe Board IS210DVIB H1B
Technical notes
IS210DVIBH1B is the simplex DVIB arrangement with 13 probe inputs and jumper selection on the first eight channels.
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FAQS

The following is a list of questions commonly asked by our customers. Please contact us if you have a question about our process that is not answered below.
How are the thirteen inputs divided on IS210DVIBH1B?
IS210DVIBH1B provides eight vibration channels, four position channels, and one Keyphasor input.
Which probe types can use the first eight IS210DVIBH1B channels?
JP1A through JP8A let IS210DVIBH1B select Proximitor, accelerometer, seismic, or Velomitor operation for channels one through eight.
Can two IS210DVIBH1B boards share one VVIB processor?
Yes. One VVIB can accept the 37-pin cable connection from two IS210DVIBH1B terminal boards.
Why is a probe connected to IS210DVIBH1B not powering up?
Confirm the negative 24 V probe supply path and keep each IS210DVIBH1B transducer load within the specified 12 mA source.
Does IS210DVIBH1B provide buffered probe outputs?
No. IS210DVIBH1B terminates the simplex probe channels but does not include the buffered outputs found on the larger TVIB board.
What wiring belongs on terminals 41 and 42 of IS210DVIBH1B?
Terminals 41 and 42 on IS210DVIBH1B are SCOM connections for the shielded field-wiring arrangement.