The B&R X67DM1321 is an IP67 digital mixed I/O module for the B&R X67 distributed I/O system. It provides eight digital channels that can be configured by software as inputs or outputs, allowing the same module to support different sensor and actuator combinations.
The digital inputs use sink circuitry, while the digital outputs use source circuitry. Two channels also provide additional counter functions. This makes the module suitable for field-mounted machine I/O, event counting and flexible decentralized automation layouts.
| Parameter | Specification |
| Complete Model | X67DM1321 |
| Module Type | Digital mixed I/O module |
| Digital Channels | 8, software-configurable as inputs or outputs |
| Nominal Voltage | 24 VDC |
| I/O Supply Range | 18 to 30 VDC |
| Input Circuit | Sink |
| Output Circuit | Source, current-sourcing FET |
| Nominal Output Current | 0.5 A per channel |
| Additional Functions | Two event-counter channels |
| X2X Link Connection | M12, B-coded |
| I/O Connections | 8 * M8, 3-pin |
| I/O Supply Connection | M8, 4-pin |
| Internal I/O Consumption | 2.5 W |
| X2X Link Consumption | 0.75 W |
| Protection Class | IP67 |
| Operating Temperature | -25 to 60°C |
The module is intended for B&R X67 stations connected through X2X Link. Typical uses include photoelectric sensors, limit switches, solenoid valves, contactors, counters, conveyor equipment, packaging machinery and modular production lines.
Confirm the complete model, channel configuration, input and output assignment, current load, connector coding, X2X Link address and Automation Studio hardware configuration. Do not substitute the 16-channel X67DM1321.L12 without checking wiring and project changes.
X67DM1321.L12 provides 16 configurable channels with M12 I/O connections. X67DM9321 provides eight configurable channels and includes node-number switches for X2X Link addressing.
Provide the complete nameplate, Automation Studio hardware configuration, channel list, I/O voltage, output loads and photographs of the installed connectors for compatibility verification.