ABB

ABB HIEE300931R0001 Converter Control Board: Specs, Compatible Models & Availability

Model: HIEE300931R0001

Brand ABB
Series Pending
Model HIEE300931R0001
RFQ-ready model route Obsolete and surplus sourcing Export follow-up by model list

Product Overview

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Technical Dossier

Product Details And Specifications

ABB HIEE Series Technical Notes

The Evolution of HIEE Architecture

ABB's HIEE-prefix control boards trace their lineage to the late 1990s, when ABB Drives (then ABB Industry Oy, Finland/Sweden) standardized a modular backplane architecture for its medium-voltage and low-voltage converter platforms. Early HIEE boards used parallel bus communication with proprietary DDCS (Distributed Drives Communication System) fiber-optic links. As the ACS600 platform matured into the ACS800 and later ACS880 generations, the HIEE board architecture evolved to support RDCO (DDCS Communication Option) and RPBA (Profibus Adapter) modules, enabling integration with DCS systems from Siemens, Honeywell, and Yokogawa.

Compatibility across generations is a known engineering challenge: HIEE300931R0001 and its contemporaries are firmware-locked to specific drive software versions. Substitution with later-generation boards requires parameter migration and, in some cases, hardware adaptation kits. Many plants operating ACS600/ACS800 fleets continue to maintain HIEE-series spares inventories rather than undertake full drive replacement, making lifecycle parts sourcing a persistent operational requirement.

HIEE Series Full Catalog & Functionalities (SKU List)

Converter & Drive Control Boards

  • HIEE300931R0001: Converter control board for ACS600/ACS800 series; vector control, DDCS interface, fault logging.
  • HIEE300931R0002: Revised hardware revision of R0001; improved EMC filtering on analog input channels.
  • HIEE300931R0003: Third hardware revision; updated EEPROM capacity for extended parameter sets.
  • HIEE300024R0001: Main control board for ACS600 standard drives; handles speed/torque reference processing.
  • HIEE300024R0002: Upgraded revision with enhanced thermal protection logic.
  • HIEE300024R0003: ACS600 control board with extended I/O mapping for multi-drive configurations.
  • HIEE300024R0004: Final production revision; supports RDCO-01/02 DDCS adapter modules.
  • HIEE300581R0001: Pulse encoder interface board; HTL/TTL encoder input, 5V/24V supply output.
  • HIEE300581R0002: Revised encoder board with improved noise immunity on differential inputs.
  • HIEE300769R0001: I/O extension board; 8 DI, 6 DO, 4 AI, 2 AO for expanded process interfacing.
  • HIEE300769R0002: I/O extension board with updated optocoupler isolation rating (2.5 kV).
  • HIEE300769R0003: I/O extension board; adds PT100 RTD input channels for motor temperature monitoring.
  • HIEE300769R0004: Final I/O revision; compatible with ACS800 firmware v7.x and above.
  • HIEE300836R0001: Power supply board for ACS600 control section; 24 VDC regulated output, 10 W.
  • HIEE300836R0002: Revised PSU board with over-voltage protection and soft-start inrush limiting.
  • HIEE300836R0003: PSU board with extended input voltage range (100–240 VAC universal input).
  • HIEE300836R0004: Final PSU revision; UL/CE dual-certified for North American and European installations.
  • HIEE300912R0001: DDCS fiber-optic communication board; connects control board to inverter/rectifier units via optical ring.
  • HIEE300912R0002: Updated DDCS board with dual-channel redundant fiber ports for fault-tolerant topologies.
  • HIEE300912R0003: DDCS board with integrated diagnostics LED array for field troubleshooting.

Quality Control for the HIEE Series Range

HIEE-series boards present specific test challenges due to their multi-layer PCB construction, DDCS fiber-optic transceivers, and EEPROM-stored parameter sets. DriveKNMS applies the following verification protocol to all HIEE boards prior to dispatch:

  • Visual inspection: solder joint integrity, capacitor condition, connector pin alignment, conformal coating assessment.
  • Power-on test: regulated supply rail verification (5 V, 15 V, 24 V) under load.
  • DDCS loopback test: fiber-optic transmitter/receiver pair verified at rated baud rate.
  • Analog I/O calibration check: input offset and gain verified against factory tolerance bands.
  • Digital I/O functional test: all DI/DO channels exercised under optocoupler isolation conditions.
  • EEPROM integrity check: parameter block read-back and checksum validation.
  • Burn-in cycle: 48-hour powered soak at elevated ambient temperature (50°C) prior to final inspection.

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