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The 80190-300-01-R PC Board Assembly from Allen Bradley is designed for integration with the PowerFlex 7000 Drive. Rated for 24 VDC and capable of handling a current rating of 2 amps, it provides reliable digital I/O functionality for various applications.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | PC Board Assembly |
| Product Line | PowerFlex |
| Part Number | 80190-300-01-R |
| Weight | 0.50 lbs (0.23 kg) |
| Voltage Rating | 24 VDC |
| Board Type | Digital I/O Board |
| Current Rating | 2 A |
| Channels | Single Channel |
| Mounting Style | Panel/Chassis Mount |
| Contacts | 2 NO/2 NC |
| Application | PowerFlex 7000 Drive |
| Indicators | Status LEDs |
| Communication Type | Digital Signal Interface |
| Housing Material | Industrial PCB |
| Safety Integrity Level | SIL 2/SIL 3 |
The Allen Bradley 80190-300-01-R is a specialized PC Board Assembly that operates at a voltage of 24 VDC. It is designed specifically for use within the PowerFlex 7000 Drive system, delivering essential digital input/output capabilities. The board's current capacity reaches 2 amps, suitable for various control applications. This digital I/O board features a single channel architecture, enabling straightforward integration into existing systems.
For installation convenience, the board can be mounted on either a panel or chassis, facilitating adaptability in various setups. The board incorporates two normally open (NO) contacts and two normally closed (NC) contacts, making it versatile for different electrical configurations. Active status is indicated through onboard LEDs, providing users with immediate feedback on operation.
The communication capabilities of this assembly are focused on digital signal interfaces, allowing seamless data exchange within the system. Designed with industrial PCB housing materials, it is built to endure rigorous conditions commonly found in industrial environments. Significantly, it meets safety integrity levels of SIL 2 and SIL 3, highlighting its commitment to reliability and safety in critical operational scenarios.