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The AB-2600 is a high-performance, modular programmable automation controller (PAC) designed for complex and demanding industrial applications. It seamlessly integrates logic, motion, process, and safety control into a unified platform.
Technical Parameters
| Model | Power (kW) | Rotating speed (rpm) | Air Delivery (m3/min) | Shaft power (kW) | Specific power (kW/m'/min) | S.F. | Dimension(mm) | Weight(kg) |
| AB-2600 | 250 | 2950 | 40.7 | 260.6 | 6.4 | 1.04 | 1164*748*535 | 975 |
Scalable & Modular Architecture: Features a rugged backplane with multiple slots for flexible I/O, communication, and special function modules (analog, digital, motion, networking).
Powerful Multi-Core Processor: Utilizes a modern multi-core CPU, segregating tasks for deterministic real-time control (e.g., motion) and non-deterministic operations (e.g., HMI, data logging).
Unified Programming Environment: Programmed using a single, integrated software suite (e.g., Studio 5000 Logix Designer), supporting multiple languages: Ladder Logic, Structured Text, Function Block Diagram, and Sequential Function Chart.
Integrated Communications: Native support for major industrial networks (EtherNet/IP, CIP Safety, PROFINET, Modbus TCP) ensures seamless connectivity to drives, HMIs, and other devices.
Advanced Motion Control: Capable of coordinated multi-axis motion control, including robotics, gearing, and cam profiling, with dedicated motion modules.
Enhanced Security: Built-in cybersecurity features include user authentication, role-based access control, and audit trails to protect intellectual property and operational integrity.
High Reliability & Durability: Designed for harsh industrial environments with a wide operating temperature range, high immunity to vibration and electrical noise.
Reduced System Complexity: Replaces the need for multiple standalone devices (PLCs, motion controllers, safety relays), simplifying architecture, wiring, and maintenance.
Superior Performance & Precision: Enables high-speed, synchronized control of complex machines and processes, improving throughput and product quality.
Future-Proof Scalability: Its modular design allows for easy system expansion or modification without a complete overhaul, protecting investment.
Reduced Engineering Time: The unified programming environment and reusable code components accelerate development, commissioning, and troubleshooting.
Lower Total Cost of Ownership (TCO): Consolidation of hardware, reduced panel space, faster diagnostics, and easier maintenance lead to significant cost savings over the system's lifecycle.
Seamless Information Integration: Facilitates the convergence of Operational Technology (OT) and Information Technology (IT) for advanced data collection and analytics (Industry 4.0).
Discrete Manufacturing:
Automotive: Robotic assembly lines, welding cells, precision stamping presses.
Packaging: High-speed form-fill-seal machines, robotic palletizing, labeling systems.
Machinery: Complex CNC machines, printing presses, textile machinery.
Hybrid & Process Industries:
Food & Beverage: Batch processing control, recipe management, filling and blending systems.
Pharmaceutical: Regulated batch processes, clean-in-place (CIP) systems, packaging lines.
Other Critical Applications:
Material Handling: Automated storage and retrieval systems (AS/RS), conveyor synchronization, sortation systems.
Testing & Inspection: High-speed automated test stands, machine vision integration.
The AB-2600 is a high-performance, modular programmable automation controller (PAC) designed for complex and demanding industrial applications. It seamlessly integrates logic, motion, process, and safety control into a unified platform.
Technical Parameters
| Model | Power (kW) | Rotating speed (rpm) | Air Delivery (m3/min) | Shaft power (kW) | Specific power (kW/m'/min) | S.F. | Dimension(mm) | Weight(kg) |
| AB-2600 | 250 | 2950 | 40.7 | 260.6 | 6.4 | 1.04 | 1164*748*535 | 975 |
Scalable & Modular Architecture: Features a rugged backplane with multiple slots for flexible I/O, communication, and special function modules (analog, digital, motion, networking).
Powerful Multi-Core Processor: Utilizes a modern multi-core CPU, segregating tasks for deterministic real-time control (e.g., motion) and non-deterministic operations (e.g., HMI, data logging).
Unified Programming Environment: Programmed using a single, integrated software suite (e.g., Studio 5000 Logix Designer), supporting multiple languages: Ladder Logic, Structured Text, Function Block Diagram, and Sequential Function Chart.
Integrated Communications: Native support for major industrial networks (EtherNet/IP, CIP Safety, PROFINET, Modbus TCP) ensures seamless connectivity to drives, HMIs, and other devices.
Advanced Motion Control: Capable of coordinated multi-axis motion control, including robotics, gearing, and cam profiling, with dedicated motion modules.
Enhanced Security: Built-in cybersecurity features include user authentication, role-based access control, and audit trails to protect intellectual property and operational integrity.
High Reliability & Durability: Designed for harsh industrial environments with a wide operating temperature range, high immunity to vibration and electrical noise.
Reduced System Complexity: Replaces the need for multiple standalone devices (PLCs, motion controllers, safety relays), simplifying architecture, wiring, and maintenance.
Superior Performance & Precision: Enables high-speed, synchronized control of complex machines and processes, improving throughput and product quality.
Future-Proof Scalability: Its modular design allows for easy system expansion or modification without a complete overhaul, protecting investment.
Reduced Engineering Time: The unified programming environment and reusable code components accelerate development, commissioning, and troubleshooting.
Lower Total Cost of Ownership (TCO): Consolidation of hardware, reduced panel space, faster diagnostics, and easier maintenance lead to significant cost savings over the system's lifecycle.
Seamless Information Integration: Facilitates the convergence of Operational Technology (OT) and Information Technology (IT) for advanced data collection and analytics (Industry 4.0).
Discrete Manufacturing:
Automotive: Robotic assembly lines, welding cells, precision stamping presses.
Packaging: High-speed form-fill-seal machines, robotic palletizing, labeling systems.
Machinery: Complex CNC machines, printing presses, textile machinery.
Hybrid & Process Industries:
Food & Beverage: Batch processing control, recipe management, filling and blending systems.
Pharmaceutical: Regulated batch processes, clean-in-place (CIP) systems, packaging lines.
Other Critical Applications:
Material Handling: Automated storage and retrieval systems (AS/RS), conveyor synchronization, sortation systems.
Testing & Inspection: High-speed automated test stands, machine vision integration.