Siemens PLC sourcing desk · Multi-brand automation spares [email protected] +86 18359268345
ABB In Stock OK

ABB CMRB-11C 3AUA0000054682 Drive Control Board – ACS800 Series

Request verified availability, condition, replacement risk review, packing options and courier lead time for CMRB-11C.

Exact partCMRB-11C RFQ auto-fillPart number attached Export packingDHL / FedEx / UPS Sales replyEmail or WhatsApp
BrandABB Part NumberCMRB-11C ConditionAvailability Check Lead TimeRFQ Confirmation DocumentsDatasheet / photos by RFQ ShippingExport packing available
Auto-filled RFQ CMRB-11C

Click Request Quote and the part number is inserted into the inquiry form automatically.

Procurement Data

Key Product Information

Core fields for model confirmation and RFQ routing. Detailed product narrative remains below.

Brand
ABB
Primary Part Number
CMRB-11C
Product Type
Drive Control Board
Series / Family
S800
Manufacturer
ABB Ltd.
Country of Origin
SE
Catalog Category
Motor Drives
Warranty
12 months from date of shipment
Model confirmed for inquiry CMRB-11C Send quantity, destination and urgency. The RFQ form keeps this part number attached.
Request Quote
Product Overview

ABB CMRB-11C (3AUA0000054682) — Main Control Board for ACS800 Series Variable Frequency Drives

The ABB CMRB-11C, catalogued under ABB part reference 3AUA0000054682, is the dedicated main control circuit board for the ACS800 series of high-performance variable frequency drives. Within the ACS800 drive architecture, this board occupies the critical control layer: it executes ABB’s proprietary Direct Torque Control (DTC) algorithm in real time, manages all I/O interfacing, arbitrates fieldbus communication, and generates the PWM gate-drive signals that ultimately govern IGBT switching in the power stage. Without a fully functional CMRB-11C, the ACS800 drive cannot perform closed-loop motor control, fault diagnostics, or fieldbus-based supervisory communication.

Manufactured in Finland under ABB’s ISO 9001-certified production processes, the CMRB-11C is deployed across demanding industrial sectors including pulp and paper, metals and mining, marine propulsion, oil and gas compression, and municipal water infrastructure. Its design reflects the operational requirements of continuous-duty, high-availability drive systems where unplanned downtime carries measurable production cost.

siemensplc.com maintains verified stock of the CMRB-11C sourced through traceable industrial supply channels. Each unit is inspected and functionally verified prior to dispatch from our Xiamen, China logistics hub, with express international shipping available via DHL and FedEx.

Real-time Stock & RFQ: [email protected] | WhatsApp: +86 18359268345

Technical Parameters

Parameter Specification
Part Number CMRB-11C
ABB Catalog Reference 3AUA0000054682
Manufacturer ABB Ltd.
Country of Origin Finland
Compatible Drive Platform ABB ACS800-01, ACS800-04, ACS800-07, ACS800-11 series
Board Function Main Drive Control Board (DTC execution, I/O, fieldbus, diagnostics)
Control Algorithm ABB Direct Torque Control (DTC)
Digital Inputs 6 × DI, 24 VDC nominal, configurable via parameters
Digital Outputs 3 × relay DO, 250 VAC / 30 VDC, 2 A max
Analog Inputs 2 × AI, ±10 V / 0–20 mA, 12-bit resolution
Analog Outputs 2 × AO, 0–20 mA, 10-bit resolution
Fieldbus Interface Slot 1 × adapter slot (RDCO-02/03/04 DDCS fiber; RPBA, RDNA, RCAN modules)
Panel / PC Tool Interface RS-485 (CDP312R panel); DriveWindow via DDCS
Operating Ambient Temperature -10 °C to +50 °C (drive enclosure ambient)
Storage Temperature -40 °C to +70 °C
Relative Humidity 5–95 % RH, non-condensing
PCB Protection Conformal coating (IEC 60721-3-3 Class 3C2)
Approx. Weight 400 g
Warranty 12 months from date of shipment

Hardware Logical Analysis

The CMRB-11C is built around a 32-bit fixed-point DSP core that executes the DTC motor model at a 40 µs torque control cycle — a cycle time that allows the drive to respond to torque transients without the latency inherent in conventional V/Hz or vector control schemes. The motor flux and torque estimator runs continuously in the background, updating the motor model parameters based on measured stator current and DC bus voltage, which eliminates the need for a shaft encoder in most applications.

EMC and Signal Integrity Design: The board employs a multi-layer PCB stack-up with dedicated ground planes separating the analog signal layer from the digital logic layer. Analog input traces are routed with guard rings and differential pair topology to suppress common-mode noise from the drive’s own PWM switching harmonics, which can reach several hundred volts per microsecond (dV/dt) on the DC bus. Opto-isolators with a minimum 2,500 V RMS isolation rating separate all digital I/O lines from the board’s internal logic, preventing ground-loop interference from field wiring from corrupting control signals.

DDCS Fiber-Optic Communication: The RDCO adapter slot on the CMRB-11C connects to ABB’s DDCS (Distributed Drive Control System) fiber-optic ring, which operates at 5 Mbit/s. Fiber-optic physical layer eliminates galvanic coupling between drive cabinets entirely, a critical requirement in multi-drive systems where potential differences between cabinet ground references can exceed safe levels for copper-based communication. The DDCS ring supports master-follower torque sharing configurations with deterministic cycle times.

Fault Diagnostics Architecture: The CMRB-11C maintains a 64-event fault log with millisecond-resolution timestamps stored in non-volatile EEPROM. Each fault record captures the drive’s operating state at the moment of fault — including output frequency, DC bus voltage, motor current, and active parameter set — enabling root-cause analysis without external data logging equipment. The board also supports adaptive fault response: parameters 30.01–30.30 allow engineers to configure independent responses (warning, fault, or ignore) for each fault category.

Redundancy Arbitration: In multi-drive cabinet configurations using the ACS800-07 or ACS800-17 topology, the CMRB-11C participates in master-follower arbitration over the DDCS ring. The master board broadcasts torque reference and status words to follower drives at each DDCS cycle. If the master drive faults, the follower drives detect the loss of the DDCS master token within one communication cycle and execute a configurable safe-state response — either coasting to stop or holding last torque reference — preventing uncontrolled mechanical runaway in multi-motor line shaft applications.

System Integration Benefits

  • Zero-encoder torque control: DTC algorithm on the CMRB-11C delivers torque response within 1–2 ms without a shaft encoder, reducing mechanical complexity and eliminating encoder cable failure as a fault mode in harsh environments.
  • Deterministic I/O scan cycle: Digital inputs are sampled every 2 ms synchronously with the DTC cycle, ensuring that external interlock signals (e.g., emergency stop, process permissive) are acted upon within a bounded latency — a requirement for SIL-rated safety functions when combined with an FSO-12 safety option module.
  • Fieldbus protocol flexibility: A single CMRB-11C supports Profibus-DP, DeviceNet, Modbus RTU, CANopen, and Ethernet-based protocols by swapping the adapter module in the fieldbus slot — no board replacement required when migrating between PLC platforms.
  • Parameter backup and restore: All 300+ drive parameters are stored in EEPROM on the CMRB-11C. The CDP312R panel or DriveWindow software can upload a full parameter backup in under 60 seconds, enabling rapid board swap with immediate parameter restore and minimizing mean time to repair (MTTR).
  • Adaptive motor model: The DTC motor model self-identifies stator resistance, rotor time constant, and magnetizing inductance during an ID run of approximately 60 seconds. This eliminates manual motor data entry errors and compensates for motor parameter drift due to temperature changes over the operating cycle.
  • Diagnostic transparency via DriveWindow: The CMRB-11C exposes all internal signal values — including estimated motor flux, torque, and thermal model state — as real-time data points accessible via DriveWindow Live. Engineers can trend these values over time without additional instrumentation, reducing diagnostic time during commissioning and fault investigation.
  • Thermal model integration: The board runs a software-based motor thermal model that tracks winding temperature based on measured current and configured motor thermal time constant. This allows the drive to issue an early warning before the motor reaches its thermal limit, enabling process intervention before a fault trip causes unplanned downtime.
  • Direct OEM replacement compatibility: The CMRB-11C is a plug-in replacement within the ACS800 chassis. No mechanical modification, firmware re-flashing, or hardware jumper changes are required in standard single-drive configurations. The board accepts the existing I/O wiring harness and fieldbus adapter without modification.

Quality Assurance & Global Logistics

Every CMRB-11C unit supplied by siemensplc.com is sourced from verified industrial supply channels with full part traceability. Prior to dispatch, each board undergoes a structured inspection protocol: visual examination of PCB surface, solder joints, and connector integrity; power-on functional test confirming firmware boot and I/O response; and EEPROM verification confirming parameter storage integrity. Units are packaged in ESD-safe anti-static bags with foam cushioning inserts, placed in double-wall corrugated cartons rated for international air freight handling.

Shipments originate from our Xiamen, China logistics facility, with access to DHL Express, FedEx International Priority, and UPS Worldwide Expedited services. Transit times to major industrial hubs: Europe 3–5 business days, North America 4–6 business days, Southeast Asia 2–3 business days. Commercial invoice, packing list, and certificate of conformity are included with every shipment. HS code 8537.10 applies for customs classification. Bulk orders qualify for sea freight consolidation with full export documentation.

All units carry a 12-month warranty from the date of shipment, covering manufacturing defects and functional failure under normal operating conditions. Warranty claims are processed with a target response time of 48 hours.

Contact Information

Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
Location: Xiamen, China
© 2026 siemensplc.com. All rights reserved.

Ready to quote

Send This Part Number to Sales

[email protected]
RFQ workflow

Confirmation Process

Quality workflow ->
01Model confirmation

We check the full part number, brand, series and visible nameplate information before quotation.

02Availability reply

Sales confirms stock path, condition option, quantity and realistic lead time for export dispatch.

03Packing & courier

DHL, FedEx, UPS or buyer courier arrangements can be reviewed with packing requirements.