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ABB PPC905AE101 | 3BHE014070R0101 | Industrial Automation Controller Module

Product Overview

The PPC905AE101 (3BHE014070R0101) is a high-performance industrial automation controller and axis computer board designed for ABB’s advanced drive systems. It functions as the primary servo control interface, bridging the gap between the main system controller and motor subsystems. Engineered for precision motion applications, this module handles complex task execution including real-time feedback processing and high-speed communication via the backplane bus. With dedicated interfaces for motor power and encoder synchronization, the PPC905AE101 ensures deterministic control in multi-axis motion environments.

Technical Specifications

The PPC905AE101 (3BHE014070R0101) is built with high-density electronics to support complex servo loops and drive logic.

  • Manufacturer: ABB (Origin: Switzerland)

  • Model: PPC905AE101

  • Part Number: 3BHE014070R0101

  • Product ID Revision: 3BHE014071P201

  • Module Type: Industrial Automation Controller / Axis Computer Board

  • System Family: ABB Industrial Drive Systems

  • Control Function: Servo drive management and feedback integration

  • Interfaces: Motor Power Connector (X1), Encoder/Feedback Connector (X2), DC Link Interface, Backplane Bus

  • Power Input: 24 VDC (Nominal via backplane)

  • Dimensions: 250 mm × 105 mm × 30 mm

  • Net Weight: 0.78 kg (1.72 lbs)

  • Operating Temperature: 0°C to +55°C

  • Storage Temperature: -40°C to +70°C

  • Humidity Tolerance: 5% to 95% (Non-condensing)

  • Customs Tariff Code: 85049090

  • Compliance: CE, UL, CSA, RoHS

Core Functional Features

  • Advanced Motion Control: The PPC905AE101 (3BHE014070R0101) utilizes dedicated processing for servo loop closure, reducing the computational load on the main system CPU.

  • Integrated Feedback Processing: The onboard X2 connector supports high-resolution encoder signals, enabling micro-meter precision in positioning tasks.

  • Seamless Backplane Integration: Designed for modular drive racks, the board communicates via a high-speed backplane to synchronize multiple axes across a shared DC bus.

  • Industrial Reliability: Constructed with high-grade components to resist electromagnetic interference (EMI) and thermal stress in heavy manufacturing environments.

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