Honeywell|51454416-700|HPM Logic Processor Module
Honeywell 51454416-700 HPM Logic Processor Module
Description
Honeywell 51454416-700 is a High-Performance Process Manager (HPM) Logic Processor Module designed for the TDC 3000 Distributed Control System to execute complex control strategies and logic processing.
Honeywell 51454416-700 is a High-Performance Process Manager (HPM) Logic Processor Module designed for the TDC 3000 Distributed Control System to execute complex control strategies and logic processing.
Features
Executes regulatory and sequential control logic with high-speed processing capabilities. Supports redundant configuration for enhanced system reliability and uptime. Interfaces directly with the Universal Control Network (UCN) for seamless data communication.
Executes regulatory and sequential control logic with high-speed processing capabilities. Supports redundant configuration for enhanced system reliability and uptime. Interfaces directly with the Universal Control Network (UCN) for seamless data communication.
Technical Specifications
- Processor Architecture: 32-bit microprocessor optimized for industrial real-time control tasks.
- Memory Capacity: Features substantial RAM and non-volatile memory for storing control databases and event logs.
- Communication Interface: Connects via Universal Control Network (UCN) with data rates up to 5 Mbps.
- Redundancy Support: Hardware and software support for dual-module redundancy with automatic switchover times under 1 second.
- I/O Link Capability: Manages multiple I/O links connecting to analog and digital input/output modules.
- Operating Temperature: Rated for industrial environments ranging from 0°C to 60°C.
- Power Consumption: Typical power draw approximately 15 Watts at 5V DC supply.
- Physical Dimensions: Standard HPM form factor fitting into 19-inch rack mount cabinets.
- System Compatibility: Fully compatible with Honeywell TDC 3000 and TPS system architectures.
Honeywell|51454416-700|HPM Logic Processor Module
Current product
Current
Vendor:
Honeywell
Honeywell|51454416-700|HPM Logic Processor Module
Regular price
$100.00
Sale price
$100.00
Regular price
$300.00
Options
Descriptions
Honeywell 51454416-700 HPM Logic Processor Module
Description
Honeywell 51454416-700 is a High-Performance Process Manager (HPM) Logic Processor Module designed for the TDC 3000 Distributed Control System to execute complex control strategies and logic processing.
Honeywell 51454416-700 is a High-Performance Process Manager (HPM) Logic Processor Module designed for the TDC 3000 Distributed Control System to execute complex control strategies and logic processing.
Features
Executes regulatory and sequential control logic with high-speed processing capabilities. Supports redundant configuration for enhanced system reliability and uptime. Interfaces directly with the Universal Control Network (UCN) for seamless data communication.
Executes regulatory and sequential control logic with high-speed processing capabilities. Supports redundant configuration for enhanced system reliability and uptime. Interfaces directly with the Universal Control Network (UCN) for seamless data communication.
Technical Specifications
- Processor Architecture: 32-bit microprocessor optimized for industrial real-time control tasks.
- Memory Capacity: Features substantial RAM and non-volatile memory for storing control databases and event logs.
- Communication Interface: Connects via Universal Control Network (UCN) with data rates up to 5 Mbps.
- Redundancy Support: Hardware and software support for dual-module redundancy with automatic switchover times under 1 second.
- I/O Link Capability: Manages multiple I/O links connecting to analog and digital input/output modules.
- Operating Temperature: Rated for industrial environments ranging from 0°C to 60°C.
- Power Consumption: Typical power draw approximately 15 Watts at 5V DC supply.
- Physical Dimensions: Standard HPM form factor fitting into 19-inch rack mount cabinets.
- System Compatibility: Fully compatible with Honeywell TDC 3000 and TPS system architectures.
