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.