High integration: Integrating power distribution and protection functions into one.
Modular design: facilitates system expansion and maintenance.
Reliability: Using high-quality components to ensure long-term stable operation.
Fault diagnosis: By analyzing the sequence of events, quickly locate the cause of the fault.
Process analysis: Monitor changes in process parameters and optimize the production process.
Data recording: Record important data during the production process to provide a basis for subsequent analysis.
Serial device interconnection: Connect multiple RS485 serial devices to achieve data exchange.
Remote data collection: Collecting data from remote devices.
Protocol conversion: Converting between different protocols.
System Expansion: Expand the communication capabilities of the automation system.
Modular design: allows users to choose different I/O modules according to their actual needs and flexibly configure the system.
Key control design: prevent module installation errors and improve system reliability.
Safe and reliable: Provides a secure operating environment and protects modules from damage.
Strong scalability: Supports multiple I/O modules to meet different application requirements.
Modular design: allows users to flexibly add or remove I/O modules to meet different application requirements.
Safe and reliable: Provide a secure operating environment to protect modules from damage.
Strong scalability: Supports multiple I/O modules to meet different types of input and output requirements.
Key control design: prevent module installation errors and improve system reliability.
Modular design: allows users to flexibly add or remove I/O modules to meet different application requirements.
High channel density: Compared to other MTUs, TU842 typically has a higher channel density and can carry more I/O modules in limited space.
Safe and reliable: Provide a secure operating environment to protect modules from damage.
Strong scalability: Supports multiple I/O modules to meet different types of input and output requirements.
Key control design: prevent module installation errors and improve system reliability.
High channel density: TU846 is designed to carry a large number of I/O modules, thereby improving system integration and saving space.
Modular design: allows users to flexibly add or remove I/O modules to meet different application requirements.
Safe and reliable: Provide a secure operating environment to protect modules from damage.
Strong scalability: Supports multiple I/O modules to meet different types of input and output requirements.
Key control design: prevent module installation errors and improve system reliability.
Rich communication interfaces: TU846 is typically equipped with multiple communication interfaces, such as PROFIBUS, for communication with other devices.
Redundant configuration: TU847 supports redundant configuration of two CI840/CI840A modules, improving the reliability of the system.
Modular design: allows users to flexibly add or remove I/O modules to meet different application requirements.
Safe and reliable: Provide a secure operating environment to protect modules from damage.
Key control design: prevent module installation errors and improve system reliability.
Rich communication interfaces: Supports communication protocols such as PROFIBUS, facilitating communication with other devices.
Quick response: Detect faults and issue alarm signals as soon as the arc occurs.
High sensitivity: capable of detecting various types of arcs, including surface arcs, internal arcs, etc.
Strong anti-interference ability: not easily affected by environmental factors such as vibration, dust, etc.
Modular design: easy to install and maintain.
Multiple alarm methods: can be triggered through sound and light alarms, relay outputs, and other means.
Support remote monitoring: It can be remotely monitored and managed through the network.