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ABB TB84PH2000112 programmable controller

ABB TB84PH2000112 programmable controller

ABB TB84PH2000112 programmable controller

  • Item NO.:

    TB84PH2000112
  • Payment:

    T/T
  • Price:

    $1000
  • Product Origin:

    Sweden
  • Color:

    NEW
  • Product weight:

    2.8kg
  • Lead Time:

    In stock

We will arrange delivery within 3-5 days after receiving the payment.

Our express delivery: DHL and FedEx.

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Destination country all taxes & duty to be paid by buyer

Only part of the brand and model, if you have other product needs, please contact us.

 

Introduction to ABB TB84PH2000112 Programmable Controller
Product Overview
The ABB TB84PH2000112 Programmable Controller is a high-performance device specifically designed for complex industrial automation control tasks. It integrates advanced microprocessor technology and efficient control algorithms, boasting strong data processing capabilities and stable, reliable operating performance. It can accurately respond to various industrial control commands and is suitable for diverse industrial production environments. With a compact structure, this controller is easy to install and integrate, allowing it to be seamlessly incorporated into existing automated control systems, helping enterprises improve production efficiency and optimize production processes.
Detailed Parameters
  • Processor Type: A high-performance 32-bit microprocessor with high-speed computing capabilities. It can quickly process complex control logic and large-volume data calculations, ensuring timely system response and precise control.
  • Memory Configuration: Equipped with abundant memory resources, including [X]KB of program memory (capable of storing a large number of control programs) and [Y]KB of data memory. This meets the requirements for real-time data storage and processing, ensuring stable reading and writing of data during system operation.
  • I/O Points: Features 84 I/O points, including [X] digital input points, [X] digital output points, [X] analog input points, and [X] analog output points. The flexible I/O configuration can adapt to the monitoring and control needs of equipment input and output signals in different industrial scenarios, such as sensor signal collection and actuator driving.
  • Communication Interfaces: Integrates multiple communication interfaces. It comes with a standard Ethernet interface that supports the Modbus TCP/IP protocol, enabling high-speed and stable data transmission for convenient remote communication and data interaction with upper computers and other intelligent devices. Additionally, it is equipped with an RS485 interface that supports the Modbus RTU protocol, which can connect to fieldbus devices, expanding the communication compatibility and control range of the system.
  • Operating Voltage: Supports a wide range of input voltages, including AC 85-264V for AC power supply and DC 24V for DC power supply. This adapts to different power supply environments, enhances the device's applicability in industrial fields, and reduces the risk of equipment failure caused by voltage fluctuations.
  • Operating Temperature Range: Can operate stably in an ambient temperature range of -25℃ to +70℃, demonstrating excellent environmental adaptability. Whether in cold northern industrial environments or high-temperature tropical industrial areas, it can ensure reliable operation and reduce the impact of ambient temperature changes on device performance.
  • Protection Level: The enclosure has a protection level of IP20, which can effectively prevent dust and protect internal circuits from dust erosion, extending the service life of the device. It is suitable for installation in indoor environments such as control cabinets.
Product Advantages and Features
  1. Powerful Control Capability: Adopts advanced control algorithms and can implement various control tasks such as complex logic control, sequence control, motion control, and process control. In terms of logic control, it can quickly process a large number of logical operations, accurately judge equipment status, and execute corresponding actions. For motion control, it can precisely control the speed, position, and torque of motors, achieving high-precision operation of equipment to meet the strict requirements for equipment operation accuracy in industrial production.
  1. High Flexibility: With abundant I/O points and flexible I/O expansion capabilities, users can conveniently add or modify I/O modules according to actual project requirements to adapt to changes in different production processes. At the same time, it supports multiple programming languages, such as ladder diagram, function block diagram, and instruction list. Engineers can choose the appropriate programming language based on their own programming habits and project characteristics, reducing programming difficulty and improving development efficiency.
  1. Reliable Communication Performance: The integration of multiple communication interfaces enables the controller to achieve seamless communication with different types and brands of equipment. Through the Ethernet interface, high-speed data interaction with upper computers can be realized, including real-time uploading of equipment operation data and receiving of control commands from upper computers, facilitating remote monitoring and management. The RS485 interface facilitates connection with fieldbus devices, constructing a stable industrial communication network and ensuring smooth information transmission in the entire automated system.
  1. High-Reliability Design: Comprehensive reliability optimization has been carried out from hardware to software. In terms of hardware, high-quality electronic components are selected and undergo strict screening and testing, featuring excellent anti-interference capabilities. They can effectively resist interference sources in industrial fields such as electromagnetic interference and power fluctuations, ensuring stable operation of the device. At the software level, multiple fault diagnosis and protection mechanisms are built-in, such as overcurrent protection, overvoltage protection, and undervoltage protection. These mechanisms can real-time monitor the operating status of the device, and once an abnormal situation is detected, corresponding protection measures are immediately taken to prevent equipment damage and improve the reliability and stability of the system.
  1. Easy Maintenance and Debugging: Equipped with intuitive programming software and debugging tools, engineers can perform online programming, debugging, and monitoring of the controller through the software. The programming software has a user-friendly interface, simple operation, rich functions, and a visual programming environment, making it easy for engineers to get started quickly. The debugging tools can real-time monitor the operating parameters and I/O status of the controller, helping engineers quickly locate and resolve equipment faults, reduce equipment maintenance time and costs, and improve the availability of the production system.
Application Fields
  1. Manufacturing Industry: Used for automated control of production lines in industries such as automobile manufacturing and electronic manufacturing. For example, in automobile assembly lines, through precise control of robots, conveying equipment, testing equipment, etc., efficient assembly of automobile parts is realized, improving production efficiency and product quality. In electronic manufacturing workshops, it can control the placement process of SMT equipment and the operation of testing equipment, ensuring stable and reliable production processes of electronic products.
  1. Power Industry: Applied in substation automation systems and power dispatching systems. In substations, it can realize remote monitoring and control of equipment such as circuit breakers, disconnectors, and transformers, and real-time collect operating parameters of the power system, such as voltage, current, and power. Through data analysis and processing, it ensures the safe and stable operation of the power system. In power dispatching systems, it communicates with other intelligent devices to realize optimal allocation and dispatching of power resources.
  1. Chemical Industry: Used for automated control of chemical production processes, such as temperature, pressure, and flow control of reactors, and control of material conveying systems. By precisely controlling various parameters in the reaction process, the smooth progress of chemical reactions is ensured, improving the quality and production efficiency of chemical products. At the same time, precise control of the material conveying system can avoid safety accidents such as material leakage and ensure the safe operation of chemical production.
  1. Transportation Industry: Plays an important role in intelligent transportation systems, such as control of traffic signals and parking lot management systems. Through intelligent control of traffic signals, the duration of signals is adjusted according to real-time traffic flow, optimizing traffic flow and alleviating traffic congestion. In parking lot management systems, it controls vehicle entry and exit, parking space allocation and management, improving the operational efficiency of parking lots.
  1. Building Automation: Realizes centralized control and management of equipment in buildings, such as lighting systems, air conditioning systems, and elevator systems. Through programming settings, it can automatically adjust lighting brightness and air conditioning temperature according to the needs of different time periods and different areas, achieving energy conservation and emission reduction. At the same time, control of the elevator system can ensure the safe operation and efficient dispatching of elevators, improving the intelligent management level of buildings.

 

 

 

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