Description
Foxboro P0926MX
Technical Specifications
- Signal Type: Analog or digital.
- Number of Channels: 2 to 16.
- Input/Output Impedance: 100 kΩ to 1 MΩ.
- Maximum Signal Voltage: 30 V DC or 24 V RMS.
- Ingress Protection: IP67.
Functional Features
- Versatile Signal Handling: Capable of managing both analog and digital signals efficiently.
- Loop Isolation: Provides effective loop isolation to prevent ground faults and noise interference.
- Rugged Enclosure: Housed in a compact and rugged enclosure specifically suited for deployment in harsh industrial environments.
- Flexible Mounting: Offers easy installation options for both panel and DIN rail mounting.
Application Scenarios
Widely applied in industrial automation scenarios, including signal distribution from transmitters or sensors to multiple destinations, signal consolidation from different sources for further processing or monitoring, and control network infrastructure.
Performance Parameters
- Operating Temperature Range: -40°C to +85°C.
- Storage Temperature Range: -40°C to 85°C.
- Weight: 0.46 kg.
Material Composition
The kit is constructed from durable plastic materials designed to withstand rigorous industrial conditions while maintaining structural integrity.
Structural Characteristics
- Dimensions: 24 cm x 19.8 cm x 5.5 cm.
- Form Factor: Compact kit containing 2 modules and necessary installation hardware.
Working Principle
As a passive device, the P0926MX utilizes internal impedance matching networks to safely divide or merge electrical signals without altering the fundamental characteristics of the original signal, ensuring data integrity across the network.
Installation Requirements
- Must be installed in accordance with IP67 protection standards if exposed to the elements.
- Requires secure panel or DIN rail mounting to prevent vibration-induced damage.
Precautions for Use
- Never exceed the maximum signal voltage of 30 V DC.
- Ensure the operating environment remains within the -40°C to +85°C range.
- Verify correct polarity during wiring to prevent short circuits.





