General Electric UR6EV Multilin Digital I/O Module
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SKU: UR6EV
General Electric UR6EV Multilin Digital I/O Module
The GE Multilin UR6EV is a specialized Digital I/O module featuring 6 isolated inputs and 6 Form C outputs. It operates at 24V DC. This module provides reliable field device interfacing for Universal Relay protection and control systems.
The GE Multilin UR6EV acts as a high-performance interface within the Universal Relay (UR) ecosystem. This module enables precise interaction between the protection relay and various external field devices. It ensures reliable signal processing for critical industrial automation tasks.
Core Operational Functions
This hardware manages discrete signals to coordinate complex protection and control logic. The UR6EV facilitates bidirectional data flow between the primary system and peripheral equipment. Consequently, operators achieve enhanced visibility into real-time field conditions.
Essential Technical Features
Balanced I/O Configuration:Â Contains six isolated digital inputs and six isolated digital outputs.
Signal Isolation:Â Electrical isolation protects the internal relay circuitry from external electrical noise.
Contact Versatility:Â Employs Form C (SPDT) relay outputs for flexible control wiring options.
Standard Voltage:Â Designed specifically for 24V DC control power applications.
Standard Mounting:Â Fits perfectly into horizontal 19-inch rack-mount UR chassis systems.
Diagnostic Feedback:Â Integrated LED indicators provide immediate status verification for each point.
The GE IC694MDL645, also cataloged as the IC694MDL645 Digital Input Module, operates as a dedicated hardware component for signal acquisition within PACSystems RX3i control networks. Incoming field signals are processed through sixteen discrete channels, and the resulting state data is transmitted to the backplane. Electrical compatibility with both positive and negative logic configurations is maintained, and operational states are continuously monitored via integrated LED indicators.
Hardware Specifications
Parameter
Specification
Model
IC694MDL645
Brand
GE
Origin
USA
Weight
0.3 kg
Dimensions
3.5 cm x 13.2 cm x 13.5 cm
Operating Temp
Standard Industrial Range
Power Consumption
Backplane Dependent
Input Channels
16
Rated Voltage
24 VDC
ON-state Voltage
11.5 VDC to 30 VDC
OFF-state Voltage
0 VDC to 5 VDC
Response Time
7 ms (typical)
PLC and Control Network Integration
System communication velocity and deterministic performance are regulated by the PACSystems backplane architecture. Signal integrity is preserved through high-level galvanic isolation, rated at 1500 VAC for one minute, whereby electrical noise interference is mitigated. Furthermore, firmware flash compatibility is ensured during module replacement, provided that the backplane remains energized within the specified voltage tolerances. The module is engineered for integration within both local and remote RX3i I/O racks, while support for RX7i systems is provided exclusively in distributed I/O configurations.
Frequently Asked Questions
Q: Is the module capable of being hot-swapped while the system is powered?A: Yes, the module is designed to be extracted and inserted while the RX3i backplane is energized; however, field wiring must be verified to ensure no short-circuit conditions are created during the removal process.Q: How is the signal response time managed in high-speed applications?A: A typical response time of 7 milliseconds is imposed by the hardware filter circuits. This latency is inherent and should be accounted for when high-speed pulse capture is required.
Field Installation Guidelines
The module is to be mounted onto the designated RX3i backplane slot. A mechanical click is heard when the module is fully seated.
Prior to wiring, the 24 VDC power supply must be verified for voltage stability.
Signal wires are to be connected to the terminal block. A secure, firm connection is required to prevent intermittent signal loss caused by vibration.
Shielding must be grounded at the designated earth terminal to ensure that electromagnetic interference is properly diverted.
Once the module is seated and wired, the status LEDs are to be inspected for illumination corresponding to active field device states.
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