Honeywell XC5010C CPU Module
Honeywell XC5010C is listed for Servo Drives RFQ review. Confirm quantity, condition and destination before quotation.
Model: 900U02-0100
Product Overview
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Datasheet Preview
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Commercial Path
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Technical Dossier
The HC900 platform was introduced by Honeywell as a successor to earlier hybrid controller offerings, designed to consolidate analog PID loop control and discrete I/O management within a single, unified backplane. Early revisions of the system used a proprietary peer-to-peer communication bus between the C30, C50, and C70 controller racks. Subsequent firmware generations introduced Ethernet-based supervisory connectivity, enabling integration with Honeywell's Experion PKS and third-party SCADA systems via Modbus TCP and OPC-DA/UA interfaces.
The architecture evolved through three identifiable phases: the initial release supporting up to 4 racks with limited remote I/O; the mid-generation expansion supporting redundant controller configurations (C70R); and the current mature phase, where the platform is maintained for lifecycle support rather than active feature development. Compatibility between module generations is constrained by firmware revision and rack type — mixing early-generation analog input modules with later controller firmware revisions requires validation against Honeywell's compatibility matrix. Engineers maintaining legacy installations must account for these constraints when sourcing replacement modules.
The following SKUs represent verified, commonly deployed modules within the HC900 ecosystem, categorized by functional type:
Controller / CPU Modules
900C30-0243-00: C30 Controller, 30 I/O capacity, single rack configuration, Ethernet port included.
900C50-0243-00: C50 Controller, 50 I/O capacity, supports up to 2 expansion racks.
900C70-0243-00: C70 Controller, 70 I/O capacity, supports up to 4 racks, peer-to-peer networking.
900C70R-0243-00: C70R Redundant Controller, hot-standby redundancy, bumpless transfer on failover.
Analog Input (AI) Modules
900A01-0102: 16-channel Analog Input, 4–20 mA / 0–10 V, 16-bit resolution, HART pass-through.
900A01-0202: 16-channel Analog Input with enhanced HART communication support per channel.
900A01-0302: 8-channel High-Level Analog Input, thermocouple and RTD compatible, cold junction compensation.
Analog Output (AO) Modules
900B01-0102: 8-channel Analog Output, 4–20 mA, 12-bit resolution, loop-powered field devices.
900B01-0202: 8-channel Analog Output with HART revision 5/6/7 support, diagnostic feedback.
Digital Input (DI) Modules
900G01-0102: 32-channel Digital Input, 24 VDC, sink/source configurable, status LED per channel.
900G02-0102: 16-channel Digital Input, 120 VAC, optically isolated, surge protected.
Digital Output (DO) Modules
900H01-0102: 16-channel Digital Output, 24 VDC, 0.5 A per channel, short-circuit protected.
900H02-0102: 8-channel Relay Output, Form C contacts, 2 A at 120 VAC, mechanical relay.
Universal I/O Modules
900U02-0100: 16-channel Universal I/O, field-configurable per channel as AI/DI/AO/DO, software-selectable signal type.
900U01-0100: 8-channel Universal I/O, compact form factor, same per-channel configurability as 900U02-0100.
Communication & Network Modules
900RIO-0001: Remote I/O Scanner, extends HC900 I/O to remote racks over dedicated fiber or copper link.
900MBM-0001: Modbus Master/Slave communication module, RS-485 interface, up to 247 node addresses.
Power Supply Modules
900P01-0001: 24 VDC Power Supply, 5 A output, DIN rail mountable, input range 85–264 VAC.
900P02-0001: Redundant Power Supply module, hot-swap capable, for use with C70/C70R controller racks.
Customers requiring specific firmware revision levels or hardware revision codes for compatibility with existing rack configurations are encouraged to specify these requirements at the time of inquiry. DriveKNMS can cross-reference hardware revision markings against known compatibility data to reduce the risk of incompatible substitutions.
HC900 modules present specific testing challenges due to their backplane-dependent communication architecture. Functional verification of I/O modules requires active communication with a compatible controller over the HC900 internal bus — bench testing with generic power supplies is insufficient to confirm full operational status.
DriveKNMS employs a dedicated HC900 test rack environment for module validation. Each module undergoes the following verification steps: visual inspection for physical damage, corrosion, and component integrity; power-on self-test (POST) confirmation via module status LEDs; backplane communication handshake verification with a reference C70 controller; channel-level signal injection and measurement for all I/O types (4–20 mA loop, discrete contact, thermocouple simulation); and HART communication pass-through validation for HART-capable analog modules. Modules that pass all stages are tagged with a test date and technician reference. Modules with partial channel failures are documented and offered as-is with full disclosure of defective channels.
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