Siemens 6DS1723-8BB Analog Module – High Precision Control for Industrial Automation
The Siemens 6DS1723-8BB Analog Module is a high-performance component designed for seamless integration into industrial automation systems, offering precise control and monitoring capabilities across various manufacturing processes.
Detailed content
Frequency Range:0.1~600Hz
Modular & Compact Design:Compact yet robust, designed for easy installation in tight spaces
Built-in PLC Function:Integrated programmable logic controller for flexible automation
Built-in EMI Filter:Reduces interference for cleaner signal transmission
Fieldbus Compatibility:Supports various fieldbus modules including DeviceNet, Profibus, LonWorks, and CANopen
RFI-Switch for Mains:Ensures reliable operation even in noisy environments
DC BUS Sharing:Flexible power sharing options for efficient system management
Complete Protection:Offers comprehensive protection against overloads and short circuits
Nominal Input Voltage:208;240 Volts AC
Amps (CT):4.2 Amps
Max Frequency:600 Hertz
This Analog Input Module from SIEMENS is engineered for high precision and reliability in industrial environments, supporting a broad spectrum of frequencies to cater to diverse automation needs.
Its modular and compact design ensures it can seamlessly integrate into various existing systems without compromising on space or functionality.
Equipped with an integrated PLC function, this module enhances the system’s control capabilities, allowing for real-time monitoring and adjustment of process parameters.
Featuring a built-in EMI filter, it ensures uninterrupted performance even in environments with high levels of electromagnetic interference, guaranteeing dependable operation under challenging conditions.
The option to add Fieldbus Modules (DeviceNet, Profibus, LonWorks, and CANopen) significantly increases the module’s compatibility with a wide array of industrial systems, promoting seamless integration and enhanced system efficiency.
An RFI-switch for mains provides additional protection against electrical fluctuations, safeguarding the module and the overall system from potential damage.