PM810V2

¥3,602.00

Applications

Industrial Automation: In manufacturing plants, it can control and monitor production lines, manage the operation of motors, and adjust process parameters in real – time.
Power Generation: In power plants, it can be used to monitor and control generators, turbines, and other power – generating equipment, ensuring stable power output.
Water Treatment: In water treatment facilities, it can control the operation of pumps, valves, and filters, and monitor water quality parameters such as pH, turbidity, and dissolved oxygen.

Weight and Dimensions

Weight: Approximately 1 – 1.5 kg, which is relatively light and easy to install and handle.
Dimensions: It has a compact design, with dimensions of about 200mm (length) x 150mm (width) x 50mm (height), allowing it to be installed in standard control cabinets.
Features
Flexible Configuration: It can be easily configured and programmed according to different application requirements. Users can customize input/output settings, communication protocols, and control logic using programming languages like ladder logic or function block diagram.

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Description

Parameter Specifications

Power Supply: It usually operates on a 24V DC power supply, with a tolerance range of ±20%, ensuring stable operation in various power environments.
Processor: Equipped with a high – performance processor, such as an ARM – based CPU, which offers a clock speed of up to several hundred MHz for efficient data processing.
Memory: It has 128MB of RAM for running programs and 256MB of flash memory for storing system software, configuration files, and historical data.
Communication Interfaces: Multiple communication interfaces are available, including Ethernet (supporting 10/100Mbps), serial ports (RS – 232/RS – 485), and Profibus for seamless integration with other industrial devices and systems.
I/O Channels: It features a certain number of digital and analog input/output channels. For example, there may be 16 digital inputs to receive signals from sensors and 8 analog outputs to control actuators with a signal range of 4 – 20mA or 0 – 10V.

Applications

Industrial Automation: In manufacturing plants, it can control and monitor production lines, manage the operation of motors, and adjust process parameters in real – time.
Power Generation: In power plants, it can be used to monitor and control generators, turbines, and other power – generating equipment, ensuring stable power output.
Water Treatment: In water treatment facilities, it can control the operation of pumps, valves, and filters, and monitor water quality parameters such as pH, turbidity, and dissolved oxygen.

Weight and Dimensions

Weight: Approximately 1 – 1.5 kg, which is relatively light and easy to install and handle.
Dimensions: It has a compact design, with dimensions of about 200mm (length) x 150mm (width) x 50mm (height), allowing it to be installed in standard control cabinets.
Features
Flexible Configuration: It can be easily configured and programmed according to different application requirements. Users can customize input/output settings, communication protocols, and control logic using programming languages like ladder logic or function block diagram.
High – speed Data Processing: With its powerful processor and sufficient memory, it can process large amounts of data in real – time, enabling quick response to changes in the industrial environment.
Remote Monitoring and Control: It supports remote access via Ethernet, allowing operators to monitor and control the device from a central control room or even from a remote location, improving operational efficiency.

Stability and Reliability

Robust Design: Built with high – quality components and a sturdy enclosure, it can withstand harsh industrial environments, including high temperatures, humidity, and vibrations.
Redundancy Options: Some versions may offer redundancy features in power supply and communication, ensuring continuous operation even in the event of a single – point failure.
Long – term Testing: Through extensive long – term testing and quality control, it has been proven to have a high level of stability and reliability over a long service life.

Practical Case

In a chemical plant, the PM810V2 is used to control a chemical reaction process. It monitors the temperature, pressure, and flow rate of reactants through connected sensors. Based on pre – programmed control algorithms, it adjusts the valves and pumps to maintain the optimal reaction conditions. One day, a power surge occurred in the plant. However, due to the redundant power supply feature of the PM810V2, the system continued to operate without interruption. Moreover, the remote monitoring function allowed the maintenance team to quickly diagnose the problem and take appropriate measures. Thanks to the stability and reliability of the PM810V2, the chemical reaction process continued smoothly, preventing potential product quality issues and ensuring the safety of the plant.