Emerson 5X00106G01 Programmable Logic Controller Module
Emerson 5X00106G01 programmable logic controller module
Performance Introduction:
Electrical performance
Power supply: 24V DC power supply is adopted, with relatively low power consumption, ≤1W.
Analog input range: It can receive analog signal input from -10 to + 10 VDC, which can meet the signal input requirements of various sensors.
Sampling rate: It has high-speed sampling capability, with a maximum sampling rate of up to 100Hz, enabling rapid collection of analog signals and ensuring real-time monitoring and control.
Communication performance
Communication interface: It integrates 1 CANBUS interface and 2 RS485 interfaces, facilitating communication and connection with other devices or systems, and can meet the requirements of different industrial communication scenarios.
Communication protocol: Supports HART 7.0 communication protocol, capable of superimposing audio digital signals on 4-20mA analog signals to achieve two-way digital communication. It can be seamlessly connected with various field devices that support the HART protocol and is backward compatible, facilitating system upgrades and expansions.
Storage and processing performance
Processing speed: It has a relatively fast processing speed of only 0.07μs, capable of quickly handling various control instructions and data, and can promptly respond to various changes in the industrial site.
Program and data capacity: The program capacity is 12K and the data capacity is 8K. It can store a certain amount of programs and data, meeting the program storage requirements of general industrial control scenarios.
I/O performance
High-speed counter input: It features 2 high-speed counter input IO channels, which can be used for counting high-speed pulse signals. It is suitable for applications that require precise counting, such as motor speed measurement and encoder signal acquisition.
Environmental adaptability
Operating temperature range: The operating temperature range is -40 ℃ to 65℃. Some data indicate that it can operate stably in an environment ranging from -20 ℃ to 70℃, and it can also operate in a non-condensing environment with a humidity of 5% to 95%, making it suitable for various harsh industrial environments.
Physical properties
Structure and Installation: It adopts a modular structure and on-site installation method. The dimensions are 52x114x27mm and the weight is approximately 150g. It is compact in size, saving installation space and facilitating installation and deployment in various industrial sites.
The general working principle of PLC modules
1. Basic architecture and functional positioning
A PLC module is generally composed of a central processing unit (CPU), memory, input/output (I/O) interfaces, communication interfaces, etc. As one of these modules, 5X00106G01 May belong to specific functional modules (such as digital input/output, analog processing, communication modules, etc.). Its core function is to perform logical processing and operational control on industrial field signals through preset programs or user programming, and output instructions to drive the actuator.
2. Workflow (Cyclic Scanning Mechanism)
The operation of the PLC module is based on the "scanning cycle", mainly including the following stages:
Input sampling stage: Read the status of external sensors, switches and other input devices, and store it in the input image register.
Program execution stage: According to the ladder diagram, instruction list and other programs written by the user, data is obtained from the input image register and internal registers, and operations are executed in logical order. The results are stored in the output image register.
Output refresh stage: The data in the output image register is sent to the output interface to drive the actuating elements such as relays, contactors, and solenoid valves.
Communication and self-check stage: Communicate with other modules or the upper computer, and simultaneously conduct hardware self-checks to ensure the normal operation of the modules.
3. Programming and Logic Control
Users perform logical programming on the module through dedicated programming software (such as Emerson's programming tools), and the program is stored in the module's memory. The module executes the program in a loop according to the scanning cycle to achieve real-time control of industrial processes, such as sequential control, timing counting, PID regulation, etc.
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