Foxboro|P0924DT| I/O Module
FOXBORO P0924DT I/O Module
Description
The FOXBORO P0924DT is a redundant analog output interface module used in the Foxboro I/A Series distributed control system for precise 4–20 mA signal transmission to field devices.
Features
- Redundant analog output channels with HART support
- High accuracy and reliability for industrial process control
- Hot-swappable design for minimal downtime
- Compatible with standard I/A Series backplanes
Technical Specifications
- Model: P0924DT
- Brand: FOXBORO (Invensys)
- Module Type: Redundant analog output I/O module
- Output Channels: 8 redundant channels
- Output Signal Range: 4–20 mA
- Load Capability: Up to 750 Ω per channel
- Resolution: 16-bit D/A conversion
- Accuracy: ±0.1% of full scale
- Isolation: Channel-to-channel and channel-to-ground isolation
- Operating Voltage: 24 V DC nominal
- Power Consumption: Approximately 2.5 W
- Operating Temperature: 0°C to 60°C
- Dimensions: Approx. 118 mm × 87 mm × 52.5 mm
- Weight: ~400 g
Foxboro|P0924DT| I/O Module
Foxboro|P0924DT| I/O Module
FOXBORO P0924DT I/O Module
Description
The FOXBORO P0924DT is a redundant analog output interface module used in the Foxboro I/A Series distributed control system for precise 4–20 mA signal transmission to field devices.
Features
- Redundant analog output channels with HART support
- High accuracy and reliability for industrial process control
- Hot-swappable design for minimal downtime
- Compatible with standard I/A Series backplanes
Technical Specifications
- Model: P0924DT
- Brand: FOXBORO (Invensys)
- Module Type: Redundant analog output I/O module
- Output Channels: 8 redundant channels
- Output Signal Range: 4–20 mA
- Load Capability: Up to 750 Ω per channel
- Resolution: 16-bit D/A conversion
- Accuracy: ±0.1% of full scale
- Isolation: Channel-to-channel and channel-to-ground isolation
- Operating Voltage: 24 V DC nominal
- Power Consumption: Approximately 2.5 W
- Operating Temperature: 0°C to 60°C
- Dimensions: Approx. 118 mm × 87 mm × 52.5 mm
- Weight: ~400 g
