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The GE Fanuc IC670ALG310-LA, also cataloged as the IC670 Analog Output Module, operates as a dedicated hardware component for continuous variable voltage signal generation within Field Control I/O stations. The sub-assembly drives 8 single-ended voltage outputs natively at the hardware tier to actuate industrial process control positioning elements, speed regulators, and chart recording instrumentation across modular expansion frameworks.
| Parameter | Specification |
|---|---|
| Model | IC670ALG310-LA |
| Brand | GE Fanuc Emerson |
| Origin | USA |
| Weight | Standard Field Control analog module mass profile |
| Dimensions | Standard Field Control module footprint |
| Operating Temp | 0 to 55 deg C ambient operational tolerance |
| Isolation Threshold | 1500 VAC peak for 1 minute / 250 VAC continuous (to ground and logic) |
| Channel Density | 8 single-ended voltage output channels |
| Digital-to-Analog Resolution | 14 bits |
| Magnitude Data Size | 14 bits |
| Output Range Limits | -10.25 VDC to +10.25 VDC absolute range |
| Maximum Accuracy (at 25 deg C) | 0.15% of full scale |
| Maximum Accuracy (0 to 55 deg C) | 0.25% of full scale |
| Output Load Capacitance | 1 uF maximum |
| User Load Constraint | 5000 Ohms minimum impedance |
| Update Time | 1.5 ms typical per channel |
| External Supply Input | 18 to 30 VDC (24 VDC typical, 5% maximum ripple) |
| BIU Power Consumption | 170 mA maximum current drawn from Bus Interface Unit backplane |
| External Power Consumption | 275 mA maximum drawn from external supply (at 18V, all outputs at -10V into minimum load) |
| Product Type | Analog Output Modules |
Q: What are the installation hazards associated with routing voltage outputs below the 5000 Ohms load minimum?
A: Connecting an external device with an internal impedance below 5000 Ohms pulls current from the module output buffers in excess of their physical thermal design limits. This overload degrades output linearity, drops loop accuracy past the 0.15% specification, and risks burning out the output channel drivers.
Q: How does ripple voltage on the external power supply affect the module output accuracy?
A: Ripple variations exceeding the 5% maximum constraint penetrate the internal regulation filters of the sub-assembly. This injects periodic noise into the reference voltage rails of the DAC, generating high-frequency output signal oscillations that can destabilize high-speed actuator control loops.

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