Product Description and Application
The 8BAC0123.002-1 (8BAC0123.002-1) is a high-performance incremental encoder interface plug-in module designed for the B&R ACOPOSmulti drive system. Engineered for precision motion control in demanding sectors such as automotive manufacturing, high-speed packaging, and metal processing, this module bridges the gap between field sensors and the drive processor. It accommodates both 24 VDC single-ended and 24 VDC differential signals, ensuring robust feedback processing even in high-interference environments. Integrating this module into your motion control architecture eliminates signal lag, optimizes closed-loop positioning accuracy, and significantly reduces unexpected machine downtime during continuous operations.
Core Technical Architecture
This plug-in module features a hardware-optimized interface that slots directly into ACOPOSmulti inverter units. By using a 15-pin male DSUB connector on the module side, it guarantees a secure, vibration-resistant connection suitable for industrial machinery. The onboard infrastructure includes integrated UP/DN status LEDs, providing maintenance technicians with real-time, at-a-glance visual diagnostics of encoder signal activity. For sensor power management, the module delivers a stabilized output voltage of 24 VDC with a variance limit of plus or minus 10%, outputting a load capacity of up to 300 mA to power connected incremental encoders directly without requiring external auxiliary power supplies.
Technical Performance Metrics
| Parameter |
Specifications |
| Model |
8BAC0123.002-1 |
| Brand |
B&R (Bernecker + Rainer) |
| Module Type |
ACOPOSmulti Plug-in Module |
| Interface Type |
Incremental Encoder Interface |
| Signal Compatibility |
24 V single-ended / 24 V differential |
| ID Code |
0xA37F |
| Connection Hardware |
15-pin male DSUB connector |
| Output Voltage |
24 VDC (plus or minus 10%) |
| Max Current Load |
300 mA |
| Operating Temperature |
5 to 40 deg C nominal (55 deg C maximum) |
| Storage Temperature |
-25 to 55 deg C |
| Transport Temperature |
-25 to 70 deg C |
| Relative Humidity Range |
5 to 85% non-condensing (Operating) |
| Origin |
Austria |
| Dimensions |
Standard ACOPOSmulti slot dimensions |
| Weight |
0.45 kg (Net) / 4.0 kg (Gross Shipping Weight) |
Technical Frequently Asked Questions
Can the 8BAC0123.002-1 handle 5 V differential signals?
No. This module is strictly designed for 24 V single-ended and 24 V differential signals. Connecting a 5 V encoder directly will result in signal detection failure or insufficient voltage thresholds.
What do the onboard UP/DN LEDs indicate during system operation?
The UP/DN LEDs indicate the directional counting state of the encoder interface. They flash or change brightness based on forward (Up) or reverse (Down) rotation signals, allowing rapid physical troubleshooting of the encoder loop.
Is it possible to hot-swap this module while the ACOPOSmulti drive is powered?
No. You must completely isolate the main power and auxiliary 24 VDC supply to the ACOPOSmulti drive before inserting or removing the plug-in module to prevent permanent damage to the internal ASIC chips.
Field Engineering and Installation Protocols
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Shielding and Grounding Standards: To prevent electromagnetic interference (EMI) from disrupting high-frequency encoder signals, you must use double-shielded twisted-pair cabling for all 24 V differential signal runs. Terminate the outer shield completely to the metal housing of the 15-pin DSUB connector to provide a low-impedance path to the system ground.
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Thermal Management Compliance: While the module operates at a maximum threshold of 55 deg C, running it close to this limit reduces the lifespan of internal componentry. Maintain free airflow around the ACOPOSmulti drive cabinet, ensuring that the ambient enclosure temperature remains within the nominal range of 5 to 40 deg C.
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Mechanical Retaining Torque: When inserting the module into the drive slot, ensure it seats flush against the backplane connector. Tighten the module retaining screws to a specified torque of 0.4 Nm to prevent contact resistance variations caused by machine vibrations.