Product Name: AC80 Processor Module
Brand Name: ABB
Model Number: PM825 3BSE010796R1
Place of Origin: Sweden
Warranty: 12 Months
Whatsapp:+86 18020776782
Email:[email protected]
Tag
| ABB AC800M CPU Module | Ethernet Communication CPU |
| Industrial Automation Controller | Serial Communication Controller Module |
| PLC Processor Module | 24V DC Control Module |
| Real-Time Control CPU | Modular Automation CPU |
| ABB Control System Processor | High-Performance Process Controller |
| Process Automation Controller | Industrial Real-Time Operating System Module |
| 32-bit RISC Industrial CPU | ABB S800 Control System Component |
| Distributed Control System (DCS) Module | Scalable Automation Processor |
| Industrial Communication Controller | Industrial System Central Processing Unit |
| SCADA Integration Processor |
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Minimum Order Quantity |
1 Piece |
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Price |
Contact for Jim |
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Packaging Details |
Original new Factory Sealed |
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Delivery Time |
3–7 Days |
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Payment Terms |
T/T |
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Shipping Method |
DHL / FedEx / UPS / TNT |
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Supply Ability |
In stock |
|
Sales |
|
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Jim Pei |
| Product Name | ABB PM825 3BSE010796R1 AC80 Processor Module |
| Manufacturer | ABB |
| Product Type | AC80 Processor Module |
| Part Number | PM825 3BSE010796R1 |
| Estimated shipping dimensions | 12x17x14.5cm |
| Weight | 0.9kg |
| Place of shipment | Xiamen, China |
| Country of origin | SWEDEN |
| Processor Type | 32-bit RISC Processor |
| Operating System | ABB proprietary real-time operating system |
| Memory | 64 MB RAM (typically) |
| Clock Speed | 500 MHz |
| Digital I/O | Supports integration with I/O modules |
| Communication Ports | Multiple communication ports (Ethernet, serial) |
| Input Voltage | 24V DC |
| Power Consumption | Approx. 8W |
| Processor | 400 MHz |
| Power Supply | 24 VDC ±10% |
| Operating Temperature | -25°C to +70°C |
| I/O Capacity | Up to 1024 I/O points supported |
The ABB PM825 3BSE010796R1 AC80 Processor Module is a high-performance central processing unit designed for ABB AC80 and AC800M automation and control systems. It functions as the core controller responsible for executing real-time control logic, managing data processing, and coordinating communication between field devices, I/O modules, and supervisory systems.
Built on a 32-bit RISC architecture with an industrial real-time operating system, the PM825 provides fast and reliable processing performance for demanding industrial applications. It supports multiple communication interfaces such as Ethernet and serial protocols, enabling seamless integration with SCADA systems, operator stations, and distributed control networks.
This module is widely used in process industries such as power generation, oil and gas, chemical processing, and manufacturing automation. Its modular and scalable design allows flexible system expansion, making it suitable for both small control applications and larg
System-based hardware configuration
The PM825 is configured as a central CPU module within the ABB AC80/AC800M control architecture. Initial setup involves defining hardware structure, assigning the processor role, and integrating it into the overall system topology through engineering tools.
Communication parameter setup
Network interfaces such as Ethernet and serial ports are configured to enable communication with SCADA systems, operator stations, and field devices. This includes defining IP addresses, protocol settings, and data exchange parameters.
I/O mapping and signal assignment
Input and output signals from connected I/O modules are mapped to the control logic structure. This step ensures that field signals are correctly associated with process variables used by the control program.
Control application deployment
Automation logic and control strategies are developed in engineering software and then downloaded to the PM825 module. The processor executes these applications in real time to manage industrial processes.
Real-time execution environment
Once operational, the module continuously runs control tasks in a deterministic real-time environment. It manages scheduling, task prioritization, and system coordination without manual intervention.
System modification and updates
Any changes to control logic, communication setup, or system parameters are performed through controlled engineering updates. Updated configurations are downloaded to the module to ensure safe and consistent system operation.