PM511V16 3BSE011181R1 Radio communication module

PM511V16 3BSE011181R1

Product Offerings.
– 12 digital inputs 2 configurable as analogue inputs 2,2 ASTP100/TC,1 configurable as HSC/vibration encoder inputs
– 2 analogue inputs
– 8 relay outputs
– 2 analogue outputs

Category:
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Simon Zhang
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Description

PM511V16 3BSE011181R1 Radio communication module

This module is suitable for DL205 CPU slots * Backplane communication with DL205 I/O * 40 MHz or 100 MHz CPU models * (H2-Wplc3-EN models have 8 MHz/8 MHz memory-intensive memory-intensive applications) * Microsoft Configurable Windows operating system * 10 Mbit Ethernet port and RS232 serial port. Easy to handle complex mathematical algorithms and string or array data. * Convenient serial communications **Built-in Ethernet port *Supports MODBUS radio communication system and MODBUS trade agreements (only) *Standard Windows (WINCE) *Seamless integration with HMI, SCAD and *Enterprise systems *Advanced software development tools. Includes Programmable Logic Controllers (PLCS), AC Drives/Motors, Operator Interface Panels/HMI, Motor Controls, DC Power Supplies, Pushbuttons, Sensors, NeMA Electrical Enclosures, Wire Ducting and more. The company offers high quality automation products at unbelievable prices, with detailed documentation, excellent sales and technical support.

 

The PM511V16 3BSE011181R1 system has 61131-3 functionality and ensures OPC communication security, “SOA (Service Oriented Architecture) PLCs provide efficient, data-consistent, secure and standardised communication for the implementation of “smart factories”, Industry 4.0 and the Internet of Things (iot). The module’s services communicate directly with each other and require product self-control rather than “top-down” communication from the ERP system through the Ministry of Education and Science, the PLC, and ultimately the sensors. Measuring devices, sensors, rfid chips, PLCS and other embedded systems provide important data for production in industrial applications. In traditional control architectures, data requests are either cycle-initiated or event-initiated, always responding to requests “from above”, i.e. from the client. The lower level always acts as a server and responds accordingly. In other words, rfid readers or PLC controllers are not “smart” in terms of communication. In a smart factory, physical, real systems and virtual, digital data are merged into intelligent, self-organising production units. They autonomously acquire the data they need for this purpose. This means that all devices and services must be able to communicate with each other independently, regardless of manufacturer, operating system, hierarchy or topology.

The PM511V16 3BSE011181R1 controller can take an active, leading role or act as an alternative to the traditional role assignment. Thus, the PLC can exchange complex data structures horizontally with other controllers, or it can vertically invoke methods in the MES/ERP system via an OPC Universal Service Server (e.g. OPC). Retrieve new production orders or write data to the cloud. This makes the production line an autonomous activity. In combination with the integration of OPC Universal User Service Security, this is a key step towards Industry 4.0. Data can be transferred to the controller via a single communication: data values are no longer exchanged in multiple transactions, but are processed as a service with input parameters (recipes) and output parameters (confirmed by the PLC).” With OPCUA, we offer remote procedure calls (RPC) directly to the programmed PLC functions.