VEGA 2796500 - Compact DIN Rail Resolver to Digital Converter Board
Get the Ruggedness of a Resolver and the Digital Simplicity of an Encoder. Resolver to High Resolution Incremental Encoder Output with Index and Complements with Loss of Resolver Signal Detection for Fail Safe Operation.
APPLICATIONS
- Ideal for Closed Loop Positioning Systems
- CNC and Machine Tool Applications
- PLC Positioning Control
- Index/Rotary Tables
- Tracking/Telescope/Telemetry Systems
- Transfer Lines
- Factory Automation
- Robotic Applications
- Nuclear Applications
SPECIFICATIONS
Excitation: |
2.5, 5.0, or 10.0 kHz |
Resolver Input: |
0.8 to 18.0 vPP |
Power: |
+4.8 to +5.4 vDC @ 250 mA |
Drive Capacity: |
200 mA Peak |
Mechanical: |
4.000 x 0.700 x 4.725 in |
Weight: |
135 grams (with connectors) |
Accuracy: |
+/- 3 arc minutes typical |
ADVANCED FEATURES
- Makes a Synchro/Resolver as Easy to use as an Encoder
- Non-Phase Locked Loop Design for Faster Loop Closure (Less than 50 uSec @ 10 kHz)
- Incremental Encoder Output (Absolute within 1 Resolver Cycle)
- High Resolution and Highly Accurate
- Tuned Filter For Noise Immunity
- Available in both +5 vDC or +24 vDC Supply Operation
- Loss of Signal Detection
- Fault Signal Outputs: Tri-State A-Quad-B, and Relay output
- Status LED's for A, B, Z, Signal HI, Signal MID, and Faul
- Easy to Install
- Compact DIN Rail design only 0.700 inch wide
- Matting connectors included
RESOLVER / ENCODER SPECIFICATIONS
- Works with Harowe/Danaher, Tamagawa, Kerfott, Singer, AMCI, or most any synchro/resolver.
- Works with R11, R25 and Hollow Shaft Resolvers
- Two Pole and Multi-Pole (Multi-Speed) Resolvers
- Transformation ratios from 0.25 to 2.0
- Jumper selectable excitation frequency 2.5, 5 and 10 kHz
- Incremental encoder A-Quad-B with Index and complements
- TTL / Line Driver Outputs for A-Quad-B and Index
- Jumper selectable quadrature count, 1000, 1024, 2000, 2048, 4000, 4096, 8000, and 8192
- Index pulse (Z Channel) occurs once per resolver cycle
HIGH SPEED TRACKING
The tracking rate is a function of the excitation frequency and quadrature counts. With a 2.5 kHz excitation and 4000 quadrature counts the tracking rate would be 9,600 rpm. With a 10.0 kHz excitation and 4000 quadrature counts the tracking rate would be 38,400 rpm. Reducing the counts will increase the tracking rate proportionately.
Part Number
Model | Description |
---|---|
2796500.05 | +5 vDC Resolver to Digital Converter |
2796500.24 | +24 vDC Resolver to Digital Converter |