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FRCE  SYS68K CPU-40 B/16  PLC core processor module
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FRCE SYS68K CPU-40 B/16 PLC core processor module

FRCE  SYS68K CPU-40 B/16  PLC core processor module

26444.00
¥61456.00
¥61456.00
¥61456.00
Weight:14.290KG
Description

FRCE  SYS68K CPU-40 B/16  PLC core processor module


FRCE SYS68K CPU-40 B/16

FORCE SYS68K CPU-40B/16 is an industrial programmable logic controller (PLC) core processor module, specially designed for high-reliability industrial control systems.

Its core functions include logic control, data processing and communication management, which is suitable for automatic control scenarios in electric power, chemical industry, machinery manufacturing and other fields.

Technical parameters

Processor and Storage

CPU: 16-bit or 32-bit high-performance processor, supporting the execution of high-speed ladder diagram programs.

Storage capacity

Program storage: Built-in 64.000 steps of RAM (with battery backup), and optional 64.000 steps of flash memory or 16.000 steps of flash memory expansion.

Data storage: Supports real-time data recording and historical event storage.

Communication and Interface

Protocol support: Compatible with ladder diagram language (LAD), structured text (ST), and Function Block Diagram (FBD), and supports industrial standard protocols (such as Modbus, Profinet).

Communication interface: Dual-channel MB300 communication module, Ethernet interface, supporting optical fiber or standardized D-type interface.

Environmental adaptability

Operating temperature: -20°C to 60°C (typical value), and in some scenarios, it can be extended to -40°C to 70°C.

Protection grade: IP30 (suitable for indoor environments).

Safety features

Real-time clock: Built-in leap year correction function, monthly deviation ±45 seconds /25℃.

Redundant design: Supports redundant configuration of power supplies or modules to ensure system stability.

Core functional features

Core capabilities in industrial control

Logic control: Supports switch logic control, sequential control and complex process management.

Process control: PID closed-loop control of parameters such as temperature, pressure and flow is achieved through analog I/O modules.

Motion control: Applicable to linear or circular motion control (such as CNC machine tools, robots).

Anti-interference and reliability

Electromagnetic compatibility: Shielding design is adopted to reduce the impact of electromagnetic interference on signals.

Fault self-check: Built-in hardware self-check function, supporting rapid location of abnormalities.

Modular expansion

I/O expansion: Supports digital and analog input/output modules (such as 600-point input/output expansion).

Communication expansion: Connect to DCS, SCADA systems or third-party devices through the gateway module.

Development and maintenance

Programming language: Supports multi-language programming such as ladder diagrams and structured text.

Debugging tools: Provide simulator and test board verification functions to simplify the development process.

Typical application scenarios

Electric power system

Generator set protection, substation automation control.

Chemical Engineering and Metallurgy

Reactor temperature control, pressure regulation and process monitoring.

Mechanical manufacturing

Logic control of CNC machine tools and robot motion coordination.

Process control

PID closed-loop regulation in the water treatment and pharmaceutical industries.


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