Pacific scientific PC833-001-N-BA communication module
Pacific Science PC 833-001-N-BA communication module is a high-performance communication interface module designed by Danaher Motion/ Pacific Science PC 800 series brushless servo drivers. The module supports a variety of industrial communication protocols, ensuring high-speed and stable data transmission between the servo system and the upper controller (such as PLC, CNC, PC, etc.). ), suitable for high-precision motion control applications.
main feature
Compact packaging saves installation space and is suitable for high-density control cabinet layout.
Support a variety of industrial bus protocols (such as EtherCAT, CANopen, Modbus, etc. Depending on the model).
Low delay communication ensures real-time control and high synchronization accuracy.
With PC 800 series servo drivers, it provides 24-bit position resolution to meet the requirements of high-precision positioning.
The 400 Hz loop bandwidth ensures fast dynamic response and is suitable for high speed and high acceleration and deceleration applications.
Support 0.5Nm-48.5Nm continuous available torque to meet different load requirements.
DRDC algorithm is used to improve the accuracy of position feedback and reduce noise interference.
Application advantages of PC833-001-N-BA communication module in CNC machine tools
1. High-precision motion control
24-bit position resolution: provide ultra-high precision position feedback to ensure the machining accuracy of CNC machine tools (such as micron positioning).
DRDC algorithm: digital resolver to digital conversion technology, which reduces signal noise interference and improves the accuracy of encoder feedback, especially suitable for precision milling, turning and other processes.
2. High-speed dynamic response
400Hz loop bandwidth: realize extremely fast servo response speed, adapt to the dynamic requirements of CNC machine tools such as high-speed cutting and rapid commutation, and reduce processing delay.
Real-time communication: support industrial bus protocols such as EtherCAT/CANopen, ensure low-delay data synchronization (< 1ms) between the controller and the driver, and improve the accuracy of multi-axis linkage.
3. Strong torque adaptability
Wide torque range (0.5~48.5 Nm): covering the requirements from small precision spindle to large feed spindle, suitable for CNC machine tool configuration with different loads.
Continuous torque output: stably support long-term high-load machining (such as hard metal cutting) to avoid overheating and frequency reduction.
4. Compact design and easy integration
Tight packaging: saving the space of electric cabinet, suitable for the compact installation environment of CNC machine tools.
Modular expansion: it can flexibly adapt to Pacific Scientific PC 800 series drivers, simplifying the upgrade and maintenance of CNC system.
5. Reliability and stability
Industrial protection: Anti-electromagnetic interference (EMC) design, to ensure the stable operation of the machine tool in high-voltage environment.
Fault diagnosis function: Real-time monitoring of servo status through supporting software can quickly locate problems (such as overload and communication interruption) and reduce downtime.
6. Multi-axis synergy advantage
Synchronous control: multi-axis interpolation movement is supported to meet the synchronization requirements of complex contour machining (such as five-axis linkage).
Flexible topology: Daisy-Chain connection is supported to simplify the wiring complexity of CNC multi-axis system.
7. Typical CNC application scenarios
High precision machining: mold carving, aerospace parts processing (depending on 24-bit resolution).
High-speed cutting: aluminum/composite processing (depending on 400Hz bandwidth).
Heavy cutting: large gantry milling machine (relying on 48.5Nm torque).
8. Convenient debugging and maintenance
Parameterized configuration: quickly set gain and filter parameters through Pacific Scientific debugging software to optimize the dynamic performance of the machine tool.
Compatibility: Support mainstream CNC systems (such as Siemens 840D and Fanuc 31i) to reduce the integration development time.
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