Description
Facilitating precise signal transmission within Sysmac automation architectures, the Omron NX-DA3203 provides modular analog current outputs in a compact form factor. This high-density output channel interface mounts directly to the NX-series Bus Coupler, converting internal digital PLC variables into standard analog current signals for real-world field control. Featuring a 4 to 20 mA output range across four independent points, the module achieves highly repeatable loop control with an operational resolution of 1/8000. Built with space-saving 12 mm housing, it integrates seamlessly into decentralized industrial environments, minimizing panel footprint while ensuring stable signal integrity through modern Push-In Plus connection terminals.
Features
- Four high-precision analog output channels supporting industrial standard 4 to 20 mA signals.
- Fast internal conversion time of 250 microseconds per point for responsive control action.
- Stable output accuracy of +/-0.3% of full scale under standard operating conditions (25 degC).
- Free-Run refreshing methodology for continuous, non-synchronous system output updates.
- Push-In Plus terminal block connection for rapid, reliable, and toolless field wiring.
Applications
- Proportional control valve positioning and pneumatic actuator modulation.
- Frequency reference generation and speed profiling for Variable Frequency Drives (VFDs).
- Analog setpoint retransmission to dedicated laboratory recorders and environmental controllers.
- Integration into wastewater treatment systems for chemical dosing pump regulation.
Technical Specifications Table
| Parameter |
Specification Value |
| Manufacturer |
Omron |
| Model Number |
NX-DA3203 |
| Module Type |
Analog Output Unit |
| Number of Outputs |
4 channels |
| Output Range |
4 to 20 mA |
| Output Resolution |
1/8000 (0 to 8000 decimal scaling) |
| Overall Accuracy (25 degC) |
+/-0.3% of full scale |
| Conversion Time |
250 us per point |
| I/O Refreshing Method |
Free-Run refreshing |
| Module Width |
12 mm |
| Unit Weight |
0.07 kg (70 g) |
| Shipping Weight (Calculated) |
0.20 kg |
Empirical Engineering Insights
Alternative Models & Compatibility
The NX-DA3203 is designed strictly for standard 4 to 20 mA analog output loops. If your field equipment demands voltage regulation, specify the NX-DA3103 (0 to 10 V) or NX-DA3105 (-10 to +10 V) variations. Configuration parameters are stored globally in the EtherCAT coupler or master PLC, facilitating fast module replacement without requiring manual field unit recalibration.
Application Pitfalls & Engineering Notes
This module relies on Free-Run I/O refreshing, which processes updates independently of the synchronous bus cycle. It is not suitable for high-speed synchronized motion control or precision multi-axis coordination requiring exact EtherCAT Distributed Clock (DC) synchronization. For synchronous multi-channel synchronization, choose a module designed for synchronous refreshing (such as the NX-DA3205).
Commissioning & Wiring Tips
Always route the 4 to 20 mA output signals through shielded twisted-pair (STP) cables to protect vulnerable analog commands from adjacent high-voltage variable speed drive output lines. Ground the cable shield at the control panel side only to eliminate parasitic ground loops that can cause drifting offsets at your actuators.
Installation Guidelines
CRITICAL WARNING: De-energize all field-side power supply connections and the main bus coupler power before inserting or extracting the NX-DA3203 module. Performing installation under load can cause bus communication crashes, corrupt non-volatile memory, or trigger safety faults on neighboring I/O units.
1
Align the integrated guide rail on the side of the NX-DA3203 with the adjacent module or bus coupler on the DIN rail.
2
Press the module firmly onto the DIN rail until the unit's locking hook clicks audibly and secures the physical connection.
3
Insert pre-insulated ferrules directly into the Push-In Plus terminal points. Gently pull each wire to ensure the internal locking clamp has engaged correctly.