The document describes a library called "screens_G120" that contains blocks for controlling a SINAMICS G120 drive from a SIMATIC S7-1200/1500/300/400 controller. The library includes a function block for communication between the controller and drive, as well as screens for operating the drive from an HMI panel. The function block handles the process data exchange and the screens provide interfaces for starting, stopping and monitoring the drive status. Instructions are provided for integrating the library blocks into a STEP 7 project.
This document provides guidance on configuring messages and alarms in WinCC (TIA Portal) when used with Siemens S7-1200 and S7-1500 programmable logic controllers (PLCs). It describes configuring user-defined alarms, system-defined alarms including system events and CPU diagnostic alarms, and controller alarms using alarm procedures like Program_Alarm and Get_AlarmState. The document also discusses using alarm classes and groups as well as acknowledgment models for alarms.
The document describes different minimal configuration options for PCS 7 systems with 1-3 PCs, including an ES/OS single-user system, an ES/OS client and OS server configuration, an ES, Master OS and Standby OS configuration, and an ES/Master OS and Standby OS configuration. It provides details on the functionality, required hardware and licensing, and step-by-step configuration instructions for setting up each of these minimal PCS 7 configurations with a reduced number of computers.
The document discusses security strategies and mechanisms for Siemens SIMATIC controllers. It describes Siemens' "defense in depth" security concept, which utilizes multiple layers of security including plant security, network security, and system integrity protection. The document then outlines various security features available on Siemens S7 CPUs, including secure communication, access protection for projects and online access, block protection like know-how protection and copy protection, and integrity protection measures to protect configuration data and firmware.
This document provides information about the CP 1242-7 communications processor module for connecting an S7-1200 programmable logic controller to a GSM network via GPRS. The module allows remote access, monitoring, and control of the S7-1200. It provides LED indicators and connectors for power, Ethernet, and antenna connections. The document describes the module's applications and properties, provides configuration examples, and lists requirements for use, including supported SIM cards, firmware versions, and qualified personnel needed for installation and operation. It also includes sections on diagnostics, technical specifications, approvals, and references for additional information.
This document describes an HTML generator tool that allows simple plant visualization via a standard web browser. The tool periodically generates an HTML file using data from an OPC server connected to a SIMATIC S7 controller. This HTML file can then be viewed in any web browser, providing remote monitoring of process variables without requiring client software on visualization stations. The tool supports S7-200, S7-300 and S7-400 systems connected via industrial Ethernet and requires no programming experience to use once configured.
The document provides instructions for commissioning a SINAMICS S200 PN drive via its integrated web server. It describes accessing the web server, performing a quick setup to configure basic drive parameters, and using the control panel to monitor and operate the drive. Key steps include connecting to the web server at its default IP address, selecting quick setup to configure the motor and I/O, and taking control to operate the drive and monitor its status via the control panel.
The SIMATIC Automation Tool allows users to manage networks of SIMATIC devices through operations like scanning networks, downloading programs and firmware, setting device parameters, and reading diagnostic information. It supports many standard and fail-safe CPUs and I/O modules from Siemens. The tool aims to simplify maintenance of automation networks containing many devices by processing operations across multiple devices in parallel threads.
This document provides information about the web server functionality of SIMATIC S7-1500 and ET 200SP CPUs. It describes how to configure the web server and access various diagnostic and system information pages through a web browser. These pages include the start page, diagnostics, the diagnostics buffer, module information, firmware updates, alarms, communication status, topology, tag status, watch tables, and custom user pages. The document contains instructions, examples and interface screenshots to help users understand and make use of the web server capabilities.
This document provides guidance on configuring messages and alarms in WinCC (TIA Portal) when used with Siemens S7-1200 and S7-1500 programmable logic controllers (PLCs). It describes configuring user-defined alarms, system-defined alarms including system events and CPU diagnostic alarms, and controller alarms using alarm procedures like Program_Alarm and Get_AlarmState. The document also discusses using alarm classes and groups as well as acknowledgment models for alarms.
The document describes different minimal configuration options for PCS 7 systems with 1-3 PCs, including an ES/OS single-user system, an ES/OS client and OS server configuration, an ES, Master OS and Standby OS configuration, and an ES/Master OS and Standby OS configuration. It provides details on the functionality, required hardware and licensing, and step-by-step configuration instructions for setting up each of these minimal PCS 7 configurations with a reduced number of computers.
The document discusses security strategies and mechanisms for Siemens SIMATIC controllers. It describes Siemens' "defense in depth" security concept, which utilizes multiple layers of security including plant security, network security, and system integrity protection. The document then outlines various security features available on Siemens S7 CPUs, including secure communication, access protection for projects and online access, block protection like know-how protection and copy protection, and integrity protection measures to protect configuration data and firmware.
This document provides information about the CP 1242-7 communications processor module for connecting an S7-1200 programmable logic controller to a GSM network via GPRS. The module allows remote access, monitoring, and control of the S7-1200. It provides LED indicators and connectors for power, Ethernet, and antenna connections. The document describes the module's applications and properties, provides configuration examples, and lists requirements for use, including supported SIM cards, firmware versions, and qualified personnel needed for installation and operation. It also includes sections on diagnostics, technical specifications, approvals, and references for additional information.
This document describes an HTML generator tool that allows simple plant visualization via a standard web browser. The tool periodically generates an HTML file using data from an OPC server connected to a SIMATIC S7 controller. This HTML file can then be viewed in any web browser, providing remote monitoring of process variables without requiring client software on visualization stations. The tool supports S7-200, S7-300 and S7-400 systems connected via industrial Ethernet and requires no programming experience to use once configured.
The document provides instructions for commissioning a SINAMICS S200 PN drive via its integrated web server. It describes accessing the web server, performing a quick setup to configure basic drive parameters, and using the control panel to monitor and operate the drive. Key steps include connecting to the web server at its default IP address, selecting quick setup to configure the motor and I/O, and taking control to operate the drive and monitor its status via the control panel.
The SIMATIC Automation Tool allows users to manage networks of SIMATIC devices through operations like scanning networks, downloading programs and firmware, setting device parameters, and reading diagnostic information. It supports many standard and fail-safe CPUs and I/O modules from Siemens. The tool aims to simplify maintenance of automation networks containing many devices by processing operations across multiple devices in parallel threads.
This document provides information about the web server functionality of SIMATIC S7-1500 and ET 200SP CPUs. It describes how to configure the web server and access various diagnostic and system information pages through a web browser. These pages include the start page, diagnostics, the diagnostics buffer, module information, firmware updates, alarms, communication status, topology, tag status, watch tables, and custom user pages. The document contains instructions, examples and interface screenshots to help users understand and make use of the web server capabilities.
This document provides an installation guide for the RUGGEDCOM RSG2488 device. It includes instructions for mounting the device, connecting power supplies, connecting communication ports, and technical specifications. The guide contains 6 chapters that cover preface information, installing the device, communication ports, and technical specifications. It provides concise instructions and diagrams for properly setting up and configuring the RSG2488.
The document describes the new SIMATIC PCS 7 Controller from Siemens, which is a powerful, robust and flexible automation controller. It can be flexibly scaled to meet different performance needs without replacing hardware by adding expansion cards. The controller offers improved ruggedness and cost optimization over previous controllers.
This document provides information about SinuTrain for SINUMERIK Operate 4.93 software, including an introduction, what's new, system requirements, installation instructions, licensing options, and known limitations. It describes SinuTrain as a PC-based simulation of a SINUMERIK 840D sl controller with the SINUMERIK Operate interface. Various license types are available with unlimited or limited usage periods. The software requires Windows 10 and certain hardware specifications. Installation and uninstallation procedures are outlined.
This document provides information on the hardware interfaces, electrical specifications, mechanical dimensions, and regulatory compliance of Gemalto's Cinterion Java Terminals, including the EHS5T-RS485, EHS6T USB, EHS6T LAN, and BGS5T USB models. It covers topics such as the RS-232, USB, GPIO, Ethernet, power supply, SIM, antenna, and status LED interfaces. Specifications for voltage, temperature range, packaging, and approvals are also included along with diagrams of the terminal circuitry, connectors, and dimensions. The document history notes recent additions of the EHS5T-RS485 model and updated information on regulatory compliance.
This document provides instructions for preparing and commissioning equipment modules using the example of a PCS 7 project. The key steps include:
1. Importing the PCS 7 project file
2. Opening the OS project
3. Configuring the computer name in WinCC Explorer
4. Reopening the WinCC Explorer and variables library
This allows the operator station to be prepared for commissioning the equipment modules.
The document provides information about the SIMATIC S7-1500/ET 200MP Analog Input Module AI 8xU/I HS. It includes sections on properties, functions, wiring, parameters, interrupts, diagnostics, technical specifications, and dimensions. The module allows high-speed analog input measurement for up to 8 channels and supports voltage or current input types. It provides interrupts, diagnostics, and parameter assignment capabilities.
The document introduces the Siemens S7-1200 programmable logic controller (PLC). It describes the S7-1200 as a powerful yet flexible and compact PLC solution. The S7-1200 offers built-in PROFINET connectivity, onboard I/O, and high-speed processing. Engineering software STEP 7 Basic provides helpful tools for easy programming and configuration of the PLC. The document also provides overviews of PLC concepts and programming to help users get started with the S7-1200 system.
The chapter describes how to select, set up, and load a new WinCC project for runtime operation. This involves selecting the project, assigning a computer to run it, configuring screen settings using the Split Screen Wizard, and setting up the message system using the Alarm Logging Wizard. Loading the project activates it for monitoring and control on the runtime system.
The document provides specifications for a temperature control function including:
- A process and instrumentation diagram and configuration of control modules
- Execution behavior describing a cascade temperature control loop using steam and cooling water valves
- Parameter descriptions including setpoints, process values, timers, and control strategies
1. The document describes three switching programs for LOGO! 8 to control access through a door using a CODE input.
2. The basic program uses a 12-key pad with internal coding, while the extended program takes CODE input directly through the LOGO! text display without an external keypad.
3. The advanced program builds on the extended by adding features like status messages, warnings, alarms over SMS, and counting CODE inputs, as well as integrating a user-defined web server for remote access control.
The document is a system manual that provides information about installing, programming, and configuring S7-200 SMART CPUs and expansion modules, including an overview of the products, new features, communication options, and instructions for connecting to a CPU and creating a sample program.
Explanation:
Provides a brief description of the cause of the alarm.
Reaction:
Describes the system reaction to the alarm, e.g. the machine stops.
Help:
Provides references to other documentation containing more detailed information on
evaluating and eliminating the cause of the alarm.
Continue program:
Specifies whether it is possible to continue the part program after the alarm occurs and has
been acknowledged.
The structure of the alarm descriptions is standardized. This ensures that all relevant
information is provided for each alarm.
SINAMICS alarms
The descriptions for the SINAMICS alarms can be found in chapter 5.
The structure of the SINAMICS alarm descriptions
Giới thiệu biến tần Simens Sinamics S120
Biến tần Simens Sinamics S120 là bộ điều khiển có khả năng vận hành cao và ứng dụng điều khiển linh động, được thiết kế nhằm đáp ứng cho các ứng dụng phức tạp, yêu cầu độ chính xác cao.
Biến tần SINAMICS S120 lý tưởng cho các nhu cầu các ứng dụng đơn trục (single axis) và đa trục (multi axis), được sử dụng trong các giải pháp truyền động tùy chỉnh nhờ vào thiết kế dạng mô-đun khi phần chỉnh lưu (Line Module) và phần nghịch lưu (Motor Module) là hai mô-đun riêng biệt tách rời và được điều khiển qua Module điều khiển (Control Unit).
Ngoài ra biến tần Sinamics S120 còn có khả năng trả năng lượng về lưới (Regenerative) thông qua việc sử dụng khối mô-đun chỉnh lưu (Line Module) phù hợp với nhu cầu và mục đích của từng ứng dụng cụ thể
Dải công suất của Biến tần Siemens Sinamics S120
Dãy công suất biến tần theo điện áp:
1AC/3AC 200 – 240V, 0.55 – 4 kW
- 3AC 200 – 240V, 5.5 … 55 kW
- 3AC 380 – 480V, 0.55 – 250 kW
- 3AC 500 – 690V, 11 – 250 kW
Chức năng chính của Biến tần Siemens Sinamics S120
- Chế độ điều khiển: V/f, Vector control, điều khiển servo
- Điều khiển hồi tiếp PID
Loại điều khiển trục đơn: có 2 thiết kế Blocksize (AC/AC) và Chassis (AC/AC)
- Loại điều khiển nhiều trục: có 3 thiết kế Blocksize (DC/AC), Blocksize Compact (DC/AC) và Chassis (DC/AC)
Giao tiếp truyền thông: PROFINET, PROFIBUS DP, EtherNet/IP, USS (kein CU310), CANopen (CU320-2), Modbus TCP
- Có khả năng kết nối với TIA Portal
- Chức năng trả năng lượng thừa về lưới
- Biến tần SINAMICS S120 có thể hỗ trợ nhiều loại loại động cơ: động cơ đồng bộ, động cơ không đồng bộ, động cơ servo…
- Hỗ trợ nhiều chuẩn encoder khác nhau
- Phần mềm cấu hình và giám sát thời gian thực: SIZER, STARTER, DT Configurator
Các tính năng an toàn: STO, SS1, SBC, SOS, SS2, SLS, SSM, SDI, SLP, SP, SBT, SLA, SCA
Cấp bảo vệ: IP20
Tính năng nổi trội của Biến tần Siemens Sinamics S120
- Cấu trúc Module đáp ứng những yêu cầu chuyển động phức tạp, độc lập hoặc là phối hợp nhiều chuyển động.
- Tích hợp tất cả các chức năng an toàn
- Tự động cấu hình và tự động điều khiển tối ưu
- Dễ dàng kết nối với các thiết bị điều khiển cấp cao hơn
- Sinamics S120 được thiết kế dùng cho 2 loại motor servo và motor không đồng bộ với công suất thiết kế lên đến 800kW. ------ Ngoài ra còn hỗ trợ kết nối với hầu hết các loại encoder.
Ứng dụng của Biến tần Siemens Sinamics S120
- Sinamics S120 là dòng biến tần được thiết kế hoạt động với độ chính xác và hiệu suất điều khiển cao, đáp ứng nhiều ứng dụng trong các như: Máy đóng gói, nhựa, máy in, dệt, chế biến gỗ, gốm sứ, thuỷ tinh, máy công cụ, công nghiệp sản xuất thép, hệ thống nâng hạ và cẩu trục…
The document describes an automation solution for controlling a rolling shutter gate using a LOGO! logic module. Key elements include:
- Retroreflective sensors and an anti-crushing device for safety and to detect objects.
- A LOGO! logic module directs contactors and a frequency inverter to open and close the gate motor over 5 seconds.
- The LOGO! can activate the gate via a weekly timer or key switch and provides status displays and diagnostic messages.
SIMOCODE pro is a motor management and control system for industrial applications. It consists of modular components including basic units, measuring modules, and expansion modules. The system provides protection, monitoring, control and communication functions. It can be integrated into various fieldbus systems and used in a wide range of industrial applications and areas. The manual provides detailed information on the system components, their mounting and wiring, commissioning processes, and safety guidelines for use in hazardous environments.
This document provides instructions for connecting a Siemens S7 PLC to a Modicon PLC via Modbus TCP. It describes the hardware components used, including S7-300, ET200S, and CP343-1 Lean CPUs. It then explains the programming and configuration of these components to enable Modbus TCP communication between the Siemens and Modicon PLCs. Specific steps are outlined for configuring the connection on each PLC and verifying proper operation when one is the client and the other is the server.
Tự Động Hóa Siemens,
Catalog Thiết Bị Điện Tự Động Hóa Siemens,
Catalog Phụ Kiện Tự Động Hóa Siemens,
Catalog Tự Động Hóa Siemens,
http://dienhathe.com,
Chi tiết các sản phẩm khác của Tự Động Hóa Siemens tại https://dienhathe.com
Xem thêm các Catalog khác của Tự Động Hóa Siemens tại https://dienhathe.info
Để nhận báo giá sản phẩm Tự Động Hóa Siemens vui lòng gọi: 0907.764.966
Tự Động Hóa Siemens,
Catalog Thiết Bị Điện Tự Động Hóa Siemens,
Catalog Phụ Kiện Tự Động Hóa Siemens,
Catalog Tự Động Hóa Siemens,
http://dienhathe.com,
Chi tiết các sản phẩm khác của Tự Động Hóa Siemens tại https://dienhathe.com
Xem thêm các Catalog khác của Tự Động Hóa Siemens tại https://dienhathe.info
Để nhận báo giá sản phẩm Tự Động Hóa Siemens vui lòng gọi: 0907.764.966
Siemens win cc manual pcs 7 wincc basic process controlDien Ha The
Siemens,
Catalog Thiết Bị Tự Động Siemens, Catalog Thiết Bị Tự Động
Catalog Phụ Kiện Siemens, Catalog Phụ Kiện,
Catalog Siemens, Catalog,
https://www.dienhathe.com,
Chi tiết các sản phẩm khác của Siemens tại https://dienhathe.com
Xem thêm các Catalog khác của Siemens tại https://dienhathe.info
Để nhận báo giá sản phẩm Siemens vui lòng gọi: 0907.764.966
This document contains notes and information about programming and operating TIA Portal software versions. It includes notes on TIA Portal, STEP 7, WinCC, libraries, memory cards, virtual environments, Teamcenter Gateway, and compatibility of PLC programs from older versions. It also provides legal information, warnings, and disclaimers. The document has tables of contents to help navigate the various sections and topics.
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This document provides an installation guide for the RUGGEDCOM RSG2488 device. It includes instructions for mounting the device, connecting power supplies, connecting communication ports, and technical specifications. The guide contains 6 chapters that cover preface information, installing the device, communication ports, and technical specifications. It provides concise instructions and diagrams for properly setting up and configuring the RSG2488.
The document describes the new SIMATIC PCS 7 Controller from Siemens, which is a powerful, robust and flexible automation controller. It can be flexibly scaled to meet different performance needs without replacing hardware by adding expansion cards. The controller offers improved ruggedness and cost optimization over previous controllers.
This document provides information about SinuTrain for SINUMERIK Operate 4.93 software, including an introduction, what's new, system requirements, installation instructions, licensing options, and known limitations. It describes SinuTrain as a PC-based simulation of a SINUMERIK 840D sl controller with the SINUMERIK Operate interface. Various license types are available with unlimited or limited usage periods. The software requires Windows 10 and certain hardware specifications. Installation and uninstallation procedures are outlined.
This document provides information on the hardware interfaces, electrical specifications, mechanical dimensions, and regulatory compliance of Gemalto's Cinterion Java Terminals, including the EHS5T-RS485, EHS6T USB, EHS6T LAN, and BGS5T USB models. It covers topics such as the RS-232, USB, GPIO, Ethernet, power supply, SIM, antenna, and status LED interfaces. Specifications for voltage, temperature range, packaging, and approvals are also included along with diagrams of the terminal circuitry, connectors, and dimensions. The document history notes recent additions of the EHS5T-RS485 model and updated information on regulatory compliance.
This document provides instructions for preparing and commissioning equipment modules using the example of a PCS 7 project. The key steps include:
1. Importing the PCS 7 project file
2. Opening the OS project
3. Configuring the computer name in WinCC Explorer
4. Reopening the WinCC Explorer and variables library
This allows the operator station to be prepared for commissioning the equipment modules.
The document provides information about the SIMATIC S7-1500/ET 200MP Analog Input Module AI 8xU/I HS. It includes sections on properties, functions, wiring, parameters, interrupts, diagnostics, technical specifications, and dimensions. The module allows high-speed analog input measurement for up to 8 channels and supports voltage or current input types. It provides interrupts, diagnostics, and parameter assignment capabilities.
The document introduces the Siemens S7-1200 programmable logic controller (PLC). It describes the S7-1200 as a powerful yet flexible and compact PLC solution. The S7-1200 offers built-in PROFINET connectivity, onboard I/O, and high-speed processing. Engineering software STEP 7 Basic provides helpful tools for easy programming and configuration of the PLC. The document also provides overviews of PLC concepts and programming to help users get started with the S7-1200 system.
The chapter describes how to select, set up, and load a new WinCC project for runtime operation. This involves selecting the project, assigning a computer to run it, configuring screen settings using the Split Screen Wizard, and setting up the message system using the Alarm Logging Wizard. Loading the project activates it for monitoring and control on the runtime system.
The document provides specifications for a temperature control function including:
- A process and instrumentation diagram and configuration of control modules
- Execution behavior describing a cascade temperature control loop using steam and cooling water valves
- Parameter descriptions including setpoints, process values, timers, and control strategies
1. The document describes three switching programs for LOGO! 8 to control access through a door using a CODE input.
2. The basic program uses a 12-key pad with internal coding, while the extended program takes CODE input directly through the LOGO! text display without an external keypad.
3. The advanced program builds on the extended by adding features like status messages, warnings, alarms over SMS, and counting CODE inputs, as well as integrating a user-defined web server for remote access control.
The document is a system manual that provides information about installing, programming, and configuring S7-200 SMART CPUs and expansion modules, including an overview of the products, new features, communication options, and instructions for connecting to a CPU and creating a sample program.
Explanation:
Provides a brief description of the cause of the alarm.
Reaction:
Describes the system reaction to the alarm, e.g. the machine stops.
Help:
Provides references to other documentation containing more detailed information on
evaluating and eliminating the cause of the alarm.
Continue program:
Specifies whether it is possible to continue the part program after the alarm occurs and has
been acknowledged.
The structure of the alarm descriptions is standardized. This ensures that all relevant
information is provided for each alarm.
SINAMICS alarms
The descriptions for the SINAMICS alarms can be found in chapter 5.
The structure of the SINAMICS alarm descriptions
Giới thiệu biến tần Simens Sinamics S120
Biến tần Simens Sinamics S120 là bộ điều khiển có khả năng vận hành cao và ứng dụng điều khiển linh động, được thiết kế nhằm đáp ứng cho các ứng dụng phức tạp, yêu cầu độ chính xác cao.
Biến tần SINAMICS S120 lý tưởng cho các nhu cầu các ứng dụng đơn trục (single axis) và đa trục (multi axis), được sử dụng trong các giải pháp truyền động tùy chỉnh nhờ vào thiết kế dạng mô-đun khi phần chỉnh lưu (Line Module) và phần nghịch lưu (Motor Module) là hai mô-đun riêng biệt tách rời và được điều khiển qua Module điều khiển (Control Unit).
Ngoài ra biến tần Sinamics S120 còn có khả năng trả năng lượng về lưới (Regenerative) thông qua việc sử dụng khối mô-đun chỉnh lưu (Line Module) phù hợp với nhu cầu và mục đích của từng ứng dụng cụ thể
Dải công suất của Biến tần Siemens Sinamics S120
Dãy công suất biến tần theo điện áp:
1AC/3AC 200 – 240V, 0.55 – 4 kW
- 3AC 200 – 240V, 5.5 … 55 kW
- 3AC 380 – 480V, 0.55 – 250 kW
- 3AC 500 – 690V, 11 – 250 kW
Chức năng chính của Biến tần Siemens Sinamics S120
- Chế độ điều khiển: V/f, Vector control, điều khiển servo
- Điều khiển hồi tiếp PID
Loại điều khiển trục đơn: có 2 thiết kế Blocksize (AC/AC) và Chassis (AC/AC)
- Loại điều khiển nhiều trục: có 3 thiết kế Blocksize (DC/AC), Blocksize Compact (DC/AC) và Chassis (DC/AC)
Giao tiếp truyền thông: PROFINET, PROFIBUS DP, EtherNet/IP, USS (kein CU310), CANopen (CU320-2), Modbus TCP
- Có khả năng kết nối với TIA Portal
- Chức năng trả năng lượng thừa về lưới
- Biến tần SINAMICS S120 có thể hỗ trợ nhiều loại loại động cơ: động cơ đồng bộ, động cơ không đồng bộ, động cơ servo…
- Hỗ trợ nhiều chuẩn encoder khác nhau
- Phần mềm cấu hình và giám sát thời gian thực: SIZER, STARTER, DT Configurator
Các tính năng an toàn: STO, SS1, SBC, SOS, SS2, SLS, SSM, SDI, SLP, SP, SBT, SLA, SCA
Cấp bảo vệ: IP20
Tính năng nổi trội của Biến tần Siemens Sinamics S120
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Ứng dụng của Biến tần Siemens Sinamics S120
- Sinamics S120 là dòng biến tần được thiết kế hoạt động với độ chính xác và hiệu suất điều khiển cao, đáp ứng nhiều ứng dụng trong các như: Máy đóng gói, nhựa, máy in, dệt, chế biến gỗ, gốm sứ, thuỷ tinh, máy công cụ, công nghiệp sản xuất thép, hệ thống nâng hạ và cẩu trục…
The document describes an automation solution for controlling a rolling shutter gate using a LOGO! logic module. Key elements include:
- Retroreflective sensors and an anti-crushing device for safety and to detect objects.
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This document provides instructions for connecting a Siemens S7 PLC to a Modicon PLC via Modbus TCP. It describes the hardware components used, including S7-300, ET200S, and CP343-1 Lean CPUs. It then explains the programming and configuration of these components to enable Modbus TCP communication between the Siemens and Modicon PLCs. Specific steps are outlined for configuring the connection on each PLC and verifying proper operation when one is the client and the other is the server.
Tự Động Hóa Siemens,
Catalog Thiết Bị Điện Tự Động Hóa Siemens,
Catalog Phụ Kiện Tự Động Hóa Siemens,
Catalog Tự Động Hóa Siemens,
http://dienhathe.com,
Chi tiết các sản phẩm khác của Tự Động Hóa Siemens tại https://dienhathe.com
Xem thêm các Catalog khác của Tự Động Hóa Siemens tại https://dienhathe.info
Để nhận báo giá sản phẩm Tự Động Hóa Siemens vui lòng gọi: 0907.764.966
Tự Động Hóa Siemens,
Catalog Thiết Bị Điện Tự Động Hóa Siemens,
Catalog Phụ Kiện Tự Động Hóa Siemens,
Catalog Tự Động Hóa Siemens,
http://dienhathe.com,
Chi tiết các sản phẩm khác của Tự Động Hóa Siemens tại https://dienhathe.com
Xem thêm các Catalog khác của Tự Động Hóa Siemens tại https://dienhathe.info
Để nhận báo giá sản phẩm Tự Động Hóa Siemens vui lòng gọi: 0907.764.966
Siemens win cc manual pcs 7 wincc basic process controlDien Ha The
Siemens,
Catalog Thiết Bị Tự Động Siemens, Catalog Thiết Bị Tự Động
Catalog Phụ Kiện Siemens, Catalog Phụ Kiện,
Catalog Siemens, Catalog,
https://www.dienhathe.com,
Chi tiết các sản phẩm khác của Siemens tại https://dienhathe.com
Xem thêm các Catalog khác của Siemens tại https://dienhathe.info
Để nhận báo giá sản phẩm Siemens vui lòng gọi: 0907.764.966
This document contains notes and information about programming and operating TIA Portal software versions. It includes notes on TIA Portal, STEP 7, WinCC, libraries, memory cards, virtual environments, Teamcenter Gateway, and compatibility of PLC programs from older versions. It also provides legal information, warnings, and disclaimers. The document has tables of contents to help navigate the various sections and topics.
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2. Warranty and liability
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Warranty and liability
Note The Application Examples are not binding and do not claim to be complete
regarding the circuits shown, equipping and any eventuality. The Application
Examples do not represent customer-specific solutions. They are only intended
to provide support for typical applications. You are responsible for ensuring that
the described products are used correctly. These application examples do not
relieve you of the responsibility to use safe practices in application, installation,
operation and maintenance. When using these Application Examples, you
recognize that we cannot be made liable for any damage/claims beyond the
liability clause described. We reserve the right to make changes to these
Application Examples at any time without prior notice.
If there are any deviations between the recommendations provided in these
application examples and other Siemens publications – e.g. Catalogs – the
contents of the other documents have priority.
We do not accept any liability for the information contained in this document.
Any claims against us – based on whatever legal reason – resulting from the use of
the examples, information, programs, engineering and performance data etc.,
described in this Application Example shall be excluded. Such an exclusion shall
not apply in the case of mandatory liability, e.g. under the German Product Liability
Act (“Produkthaftungsgesetz”), in case of intent, gross negligence, or injury of life,
body or health, guarantee for the quality of a product, fraudulent concealment of a
deficiency or breach of a condition which goes to the root of the contract
(“wesentliche Vertragspflichten”). The damages for a breach of a substantial
contractual obligation are, however, limited to the foreseeable damage, typical for
the type of contract, except in the event of intent or gross negligence or injury to
life, body or health. The above provisions do not imply a change of the burden of
proof to your detriment.
Any form of duplication or distribution of these Application Examples or excerpts
hereof is prohibited without the expressed consent of Siemens Industry Sector.
Security
informa-
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Siemens provides products and solutions with industrial security functions that
support the secure operation of plants, solutions, machines, equipment and/or
networks. They are important components in a holistic industrial security
concept. With this in mind, Siemens’ products and solutions undergo continuous
development. Siemens recommends strongly that you regularly check for
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For the secure operation of Siemens products and solutions, it is necessary to
take suitable preventive action (e.g. cell protection concept) and integrate each
component into a holistic, state-of-the-art industrial security concept. Third-party
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about industrial security, visit http://www.siemens.com/industrialsecurity.
To stay informed about product updates as they occur, sign up for a product-
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3. Table of contents
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Table of contents
Warranty and liability................................................................................................... 2
1 Library Overview................................................................................................ 4
1.1 User Scenario....................................................................................... 4
1.2 Block diagram....................................................................................... 5
1.3 Hardware and software requirements .................................................. 6
2 Blocks of the Library......................................................................................... 7
2.1 Block list ............................................................................................... 7
2.2 Explanation of the controller block ....................................................... 7
2.2.1 Calling FB “PZD_G120_Tel_352“ ........................................................ 7
2.2.2 Functionality of FB “PZD_G120_Tel_352“......................................... 10
2.3 Explanation of the operator panel blocks........................................... 10
2.3.1 Toolbar ............................................................................................... 10
2.3.2 Screen “screen_G120_start”.............................................................. 11
2.3.3 Screen “screen_G120_CTW1/STW1“................................................ 14
2.3.4 Screen “ screen_G120_data”............................................................. 16
2.3.5 Screen “ screen_G120_safety” .......................................................... 18
2.3.6 HMI tags “screens_G120_variables“.................................................. 18
2.3.7 VB Script “screens_G120_VBFunction”............................................. 19
3 Working with the library.................................................................................. 20
3.1 Preparation......................................................................................... 20
3.2 Integrating the library into STEP 7 ..................................................... 22
3.3 Integrating the library blocks into STEP 7.......................................... 23
4 Related literature ............................................................................................. 26
5 History............................................................................................................... 26
4. 1 Library Overview
1.1 User Scenario
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1 Library Overview
This document describes the “screens_G120” block library. The block library
provides you with tested code with clearly defined interfaces. They can be used as
a basis for your task to be implemented.
A key concern of the document is to describe
all blocks of the block library
the functionality implemented through these blocks
Furthermore, this documentation shows possible fields of application and helps you
integrate the library into your STEP 7 project using step-by-step instructions.
1.1 User Scenario
The blocks included in the TIA Portal V12 library “screens_G120” enable fast and
easy operation of a SINAMICS G120 drive.
Figure 1-1: Overview User Scenario
S7-1200/1500/300/400 TP700 Comfort
SINAMICS G120
Motor
PROFINET
PROFINET
PROFIBUS
Apart from a function block for the SIMATIC Controller used, the library includes a
number of screens for integration into a SIMATIC operator panel (HMI). With these
screens the user is able to influence a drive using easy-to-use and clearly designed
user interfaces.
5. 1 Library Overview
1.2 Block diagram
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1.2 Block diagram
The block diagram of the “screens_G120“ library is shown below.
Figure 1-2: Block diagram
Process data communication
The SINAMICS drive and the SIMATIC controller communicate through the
process data. Process data is transferred cyclically, which means in each bus
cycle. In this process the controller used transmits a control word and a setpoint
value to the SINAMICS drive and receives a status word and several actual values.
Standard frame 352 should be used on the drive side in order to enable maximum
exchange of information between controller and drive.
When using the free frame configuration, make sure that the first six words of the
process data correspond to the structure of standard frame 352.
Note For information on process data communication and structure of the standard
frames, please refer to the documentation of the SINAMICS G120 drive used.
Blocks for controller and operating panel
The function block (FB) and the user interfaces for the operating panel used in the
controller are part of the “screens_G120” library and will be described in detail in
the following chapters.
DB
Process data
screens
FB
HMI
Operation of the
drive
6. 1 Library Overview
1.3 Hardware and software requirements
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1.3 Hardware and software requirements
Requirements for this library
The following hardware and software requirements must be met in order to use the
functionality of the library described in this document:
Hardware
Table 1-1: Required hardware
No. Component Order number Qty. Alternative
1 SIMATIC S7-300 CPU 6ES731… 1 SIMATIC CPU
S7-1200/1500/400
2 SIMATIC TP700
Comfort Panel
6AV2124-0GC01-0AX0 1 Larger Comfort Panels with
image adaptation
3 SINAMICS CU240E-2
PN-F
6SL3244-0BB13-1FA0 1 similar control unit
4 SINAMICS PM240 6SL3224-0BE22-2UA0 1 similar power module
Software
Table 1-2: Required software
No. Component Order number Qty.
1 SIMATIC STEP 7 Professional V12 6ES7882-1A.02-.. 1
2 SIMATIC WinCC Professional V12 6AV210.-….2-0.. 1
7. 2 Blocks of the Library
2.1 Block list
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2 Blocks of the Library
This chapter lists and explains all “screens_G120” library blocks.
2.1 Block list
The following tables list all blocks that are part of the “screens_G120” library.
Table 2-1: List of STEP 7 blocks
Symbol
PZD_G120_Tel_352
Table 2-2: WinCC blocks list
Symbol
screen_G120_start
screen_G120_CTW1 / STW1
screen_G120_data
screen_G120_safety
screens_G120_variables
screens_G120_VBFunction
2.2 Explanation of the controller block
2.2.1 Calling FB “PZD_G120_Tel_352“
Function block “PZD_G120_Tel_352“ sets up the communication to the SINAMICS
G120 (SINAMICS G120D) drive and prepares the data received and the data to
transmit. This block is called at cyclic intervals in organisation block (OB1).
8. 2 Blocks of the Library
2.2 Explanation of the controller block
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Figure 2-1: Call of function block
Input parameters
Table 2-3: Input parameters
Parameter Data type Description
address Int Address of SINAMICS G120
ON_OFF1 Bool Control word 1;Bit 0: Switching the drive on/off
OFF2 Bool Control word 1;Bit 1: Electronic stop of the drive
OFF3 Bool Control word 1;Bit 2: Drive fast stop
enable_operation Bool Control word 1;Bit 3: Enable operation
release_RFG Bool Control word 1;Bit 4: Release ramp-function generator
enable_RFG Bool Control word 1;Bit 5: Continue ramp-function generator
9. 2 Blocks of the Library
2.2 Explanation of the controller block
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Parameter Data type Description
enable_setpoint Bool Control word 1;Bit 6: Enable setpoint speed value
acknowledge Bool Control word 1;Bit 7: Acknowledge malfunction
CTW_bit_08 Bool Control word 1;Bit 8
CTW_bit_09 Bool Control word/ 1;Bit 9
PLC_is_master Bool Control word 1;Bit 10: Master control by PLC
direction_reversal Bool Control word 1;Bit 11: Direction reversal (setpoint)
CTW_bit_12 Bool Control word 1;Bit 12
MOP_up Bool Control word 1;Bit 13: Motor potentiometer higher
MOP_down Bool Control word 1;Bit 14: Motor potentiometer lower
CTW_bit_15 Bool Control word 1;Bit 15
activate_manual_mode Bool Switching the operating mode
speed_setpoint Real Setpoint speed value of the drive
reference_speed_P2000 Real Reference speed / reference frequency
reference_current_P2002 Real Reference current
reference_torque_P2003 Real Reference torque
Output parameters
Table 2-4: Output parameters
Parameter Data type Description
ready_for_switching_on Bool Status word 1;Bit 0: Drive ready for switching on
ready_for_operation Bool Status word 1;Bit 1: Drive is ready for operation
operation_enabled Bool Status word 1;Bit 2: Operation enabled
fault_active Bool Status word 1;Bit 3: Fault is active
OFF2_inactive Bool Status word 1;Bit 4: Coast-down active (OFF2)
OFF3_inactive Bool Status word 1;Bit 5: Fast stop active (OFF3)
closing_lockout_active Bool Status word 1;Bit 6: On inhibit active
alarm_active Bool Status word 1;Bit 7: Alarm active
speed_deviation_in_tol Bool Status word 1;Bit 8: Deviation setpoint / actual speed
PLC_control_requested Bool Status word 1;Bit 9: Control through PLC required
comp_speed_reached Bool Status word 1;Bit 10: Maximum speed reached
limit_reached Bool Status word 1;Bit 11: I, M, P limit reached
holding_brake_open Bool Status word 1;Bit 12: Holding brake open
alarm_motor_overtemp Bool Status word 1;Bit 13: Warning overtemperature motor
rotating_right Bool Status word 1;Bit 14: Motor clockwise rotation
no_thermal_overload Bool Status word 1;Bit 15: Converter overload warning
actual_speed Real Current speed of the motor
actual_current Real Current electrical current
actual_torque Real Current torque
actual_alarm Word Current alarm of the drive
actual_fault Word Current fault of the drive
communication_error Bool Communication error or drive does not exist
10. 2 Blocks of the Library
2.3 Explanation of the operator panel blocks
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2.2.2 Functionality of FB “PZD_G120_Tel_352“
Function block “PZD_G120_Tel_352“ performs two tasks:
Establishing the communication between controller and drive
Processing the received data and preparing data to be sent
Establishing the communication between controller and drive
The process data communication between the SIMATIC S7-1200/1500/300/400
controller and the SINAMICS G120 drive is carried out in the controller with system
functions (SFC). The following system blocks respectively instructions are being
used:
SFC14 “DPRD_DAT“ for receiving the drive data
SFC15 “DPWR_DAT“ for sending data to the drive
Note For more information on the communication with DP standard slaves please
refer to the STEP 7 Online help (TIA Portal) V12.
Processing the received data and preparing data to be sent
The data received from the drive is supplied to the function block interface. The
interface or an operator panel receives the data to be sent to the drive and
forwards the data to the drive.
2.3 Explanation of the operator panel blocks
2.3.1 Toolbar
The following table lists all the buttons of the HMI operator display toolbar.
Table 2-5: Icons used
Icon Description
Switch to the start screen
Finish runtime of the operator panel
Switch language between:
German (Germany)
English (USA)
Switch to the next image
11. 2 Blocks of the Library
2.3 Explanation of the operator panel blocks
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Icon Description
Switch to the previous image
Switch to the display of the safety control word and the safety status word
Switch mode between:
Manual (input via HMI possible)
Automatic (controlling via block interface)
Display the message text of the current warning
Display the message text of the current fault
2.3.2 Screen “screen_G120_start”
This screen has been defined as the start screen. This means that after the project
has been loaded into the operator panel, this screen will be the first to be
displayed.
Figure 2-2: Start screen with activated safety data exchange
Input parameters
The following parameters must be entered in the start screen:
Number of the instance data block
Offset of the message (telegram) data
I/O address of the inverter
I/O address of the safety message frame (optional)
12. 2 Blocks of the Library
2.3 Explanation of the operator panel blocks
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Number of the instance data block
The number of the instance data block to be entered ist the number of the data
block that contains the data of the “PZD_G120_Tel_352“ function block.
Offset of the message data
The offset of the message data is the number of bytes, after which, in an instance
or multi-instance data block, the interface data of the “PZD_G120_Tel_352” starts.
If a separate instance data block is used for every call of function block
“PZD_G120_Tel_352“, the offset will be zero.
Multi-instance is an option to reduce the number of required instance data blocks in
case several calls of function block “PZD_G120_Tel_352“ are used. In this case
function block “PZD_G120_Tel_352“ is called in a different function block, the
interface of which includes the entire data of the “PZD_G120_Tel_352“ function
blocks called.
Figure 2-3: Calling the “PZD_G120_Tel_352“ als multi-instance
The above figure shows the calling of function block “PZD_G120_Tel_352“ in a
function block with the name “call_PZD_G120_Tel_352”. In its instance data block,
the “PZD_G120_Tel_352“ block data starts from byte 8. In this case the number “8”
must be entered as the offset of the message data in screen “screen_G120_start“.
Note For more information on multi-instance, please refer to the STEP 7 Online help
(TIA Portal) V12.
Inverter address when using a SIMATIC S7-300/400 controller
With using a SIMATIC S7-300/400 controller, for parameter “address” of the
function block “PZD_G120_Tel_325” enter the start of the I/O address range that
was assigned during the configuration of the Siemens message 352 of the
SINAMICS G 120 drive in STEP 7.
In the example shown in the figure below, the value 256 must be entered as the
inverter address.
13. 2 Blocks of the Library
2.3 Explanation of the operator panel blocks
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Figure 2-4: Configuration of SINAMICS G120 for S7-300/400
Inverter address when using a SIMATIC S7-1200/1500 controller
With using a SIMATIC S7-1200/1500 controller, for parameter “address” of the
function block “PZD_G120_Tel_325” enter the hardware identifier of Siemens
message 352. This can be found in the system constants.
In the example shown in the figure below, the value 279 must be entered as the
inverter address.
Figure 2-5: Configuration of SINAMICS G120 for S7-1200/1500
I/O address of the safety message frame (optional, only for S7-300/400))
Enter the start of the I/O address range that was assigned during the configuration
of PROFISafe message 30 of the SINAMICS G 120 drive in STEP 7 as the I/O
address.
In the example shown in figure 2-4, the value 100 must be entered as the I/O
address of the safety message frame.
14. 2 Blocks of the Library
2.3 Explanation of the operator panel blocks
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2.3.3 Screen “screen_G120_CTW1/STW1“
The screen “screen_G120_CTW1/STW1“ shows control word 1 and status word 1
of the SINAMICS G120 drive. A distinction must be made between manual and
automatic mode.
Manual mode
In manual mode the individual parameters of the control word can be switched via
the operator panel. During this process, a control word created internally in function
block “PZD_G120_Tel_352“ will be sent to the drive.
Figure 2-6: Display of the control word and status word in manual mode
15. 2 Blocks of the Library
2.3 Explanation of the operator panel blocks
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Automatic mode
In automatic mode, control word 1 is merely displayed. These are the values that
are applied as input parameters at the interface of function block
“PTD_G120_Tel_352“ as Bool variables. Influencing these values via the operator
panel is not possible in automatic mode.
Figure 2-7: Display of the control word and status word in automatic mode
In both modes, status word 1 is merely displayed and corresponds to the output
parameters in function block “PZD_G120_Tel_352“of the BOOL data type.
CAUTION Switching between manual and automatic mode is done without checking
the operating state of the drive.
16. 2 Blocks of the Library
2.3 Explanation of the operator panel blocks
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2.3.4 Screen “ screen_G120_data”
The screen “screen_G120_data“ shows the following information:
Display or input of the setpoint speed of the drive
Current fault and warning message
Setpoint speed value in [rpm]
Current actual value in [A]
Torque actual value in [Nm]
In addition, the motor can be started and pending faults can be acknowledged from
this screen.
Figure 2-8: Display of setpoint and actual values during fault-free operation
Entering the setpoint speed value is possible in manual mode only. In automatic
mode, only the value of the input parameter “speed_setpoint” of function block
“PZD_G120_Tel_352“ is displayed and transmitted to the drive.
Reference parameters for displaying the actual values
The data received by the drive must be calculated using reference values in order
to be able to display the actual values with the corresponding units. These
reference values are provided by the drive in the form of parameter values.
The values of these reference parameters must be provided to the corresponding
input parameters of function block “PZD_G120_Tel_352“.
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2.3 Explanation of the operator panel blocks
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Table 2-6: Reference parameters
Drive parameters Input parameters at the FB Starting value
P2000 reference frequency reference_speed_P2000 1500.0
P2002 reference current reference_current_P2002 0.0
P2003 reference torque reference_torque_P2003 0.0
Display of fault and warning messages
If a fault or warning is active, the corresponding error code will be displayed.
Figure 2-9: Display of the current fault and warning message
If the corresponding information button is pressed, an information on the current
warning or fault will be displayed.
18. 2 Blocks of the Library
2.3 Explanation of the operator panel blocks
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2.3.5 Screen “ screen_G120_safety”
The screen “screen_G120_safety” shows safety control word 1 and safety status
word 1 of the SINAMICS G120 drive. This information is transmitted via PROFIsafe
message 30.
Figure 2-10: Display of the safety control and status words
In screen “screen_G120_safety“ it is not possible to influence the tags displayed.
This display is optional and can only be achieved with safety data exchange
available.
2.3.6 HMI tags “screens_G120_variables“
The tag table “screens_G_120_variable” contains all tags required for using the
screens. Tags include both internal tags and tags referring to a controller.
Figure 2-11: Excerpt from the tag table
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For tags the storage location of which is in a used controller, the name of the
connection must be given. It is the name of the HMI connection between controller
and operator panel. In the above tag table “screens_G120_variables“ the name of
the connection was chosen to be “screens_G120_contact“.
2.3.7 VB Script “screens_G120_VBFunction”
The VB Script included in the “screens_G120“ library under the name
“screens_G120_VBFunction“ is used for calculating the addresses of the tags the
storage location of which is on the controller used.
Note For more information on VB scripts, please refer to the STEP 7 Online help (TIA
Portal) V12.
20. 3 Working with the library
3.1 Preparation
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3 Working with the library
This chapter includes instructions for integrating the “screens_G120” library into
your STEP 7 project and instructions for using the library blocks.
3.1 Preparation
The following conditions must be met in order to use the “screens_G120” library:
Error-free configuration of the SIMATIC controller and the SINAMICS G120
drive with the associated communication connection
Identical input and output addresses of the SINAMICS drive
Activation of the German and English language in WinCC TIA V12
Correct name assignment of the HMI connection
Configuration of controller and drive
Fault-free configuration of the SIMATIC Controller with a SINAMICS G120 drive is
the prerequisite for using the “screens_G120” library.
Note The following applications can be taken as examples for creating the required
configuration:
“Connecting a SINAMICS G120 Drive to an S7300/400 CPU in TIA Portal”
(Entry ID 60140921)
“SINAMICS G: Speed Control of a G120 (StartDrive) with S7-1200 (TIA
Portal) via PROFINET/PROFIBUS DP with Safety Integrated (via Terminal)
and HMI” (Entry ID 70155469)
Address assignment of the drive
With the use of a SIMATIC S7-300/400 controller the input and output addresses of
the SINAMICS G120 drive must be identical. This setting is made in the hardware
configuration and is illustrated in Figure 2-4.
Language settings in WinCC TIV V12
The screens of the “screens_G120” library are bilingual. Therefore the following
languages must be set as project languages:
German (Germany)
English (USA)
After the required selection the languages must be activated in the Runtime
settings.
21. 3 Working with the library
3.1 Preparation
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Figure 3-1: Activation of the languages in Runtime
Name assignment of the HMI connection
As described in chapter 2.2.7, the name of the HMI connection has been assigned
to be “screens_G120_contact” in the tag table.
Figure 3-2: Name assignment of the HMI connection
In case a different name is to be used for the HMI connection, it must be corrected
in the “screens_G120_variables” tag table. Otherwise there will be no correct
translation of the HMI project.
22. 3 Working with the library
3.2 Integrating the library into STEP 7
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3.2 Integrating the library into STEP 7
The table below lists the steps for integrating the “screens_G120“ library into your
STEP 7 project.
Table 3-1: Instructions for integrating a global library
No. Action Note
1 In the “Global Libraries” palette, click on “Open
global library” in the toolbar or select “Global
libraries > open library...” in the “Options” menu.
2 The dialog “Open global library” opens.
3 Select the global library that you wish to open.
4 Click “Open”.
The selected global library is opened and
inserted into the palette "Global Libraries”.
Note For more information on working with libraries, please refer to the STEP 7 Online
help (TIA Portal) V12.
23. 3 Working with the library
3.3 Integrating the library blocks into STEP 7
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3.3 Integrating the library blocks into STEP 7
The table below lists the steps for integrating the blocks of the “screens_G120“
library into your STEP 7 program.
Table 3-2: Integrating the library blocks
No. Action Note
1 Open the copy templates in the
library.
2 Drag function block
“PZD_G120_Tel_352“ (1) into
the program blocks folder of
your SIMATIC controller (2).
1
2
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3.3 Integrating the library blocks into STEP 7
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No. Action Note
3 Now the function block
“PZD_G120_Tel_352“ can be
called in organization block 1,
for example.
4 Open the project of the operator
panel and drag the screen
objects from the library (1) into
the screens folder (2).
5 Drag the tag table
“screens_G120_variables“ (1)
into the HMI tags folder (2).
1
2
1
2
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3.3 Integrating the library blocks into STEP 7
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No. Action Note
6 Drag the VB Script
“screens_G120_VBFunction“
(1) into the Scripts folder (2).
7 The project can now be loaded
to the controller and the
operator panel.
1
2
26. 4 Related literature
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4 Related literature
Table 4-1
Topic Title / Link
1 Siemens Industry
Online Support
https://support.industry.siemens.com
2 Download page of
this entry
https://support.industry.siemens.com/cs/ww/de/view/63042779
3 STEP7
SIMATIC S7-
300/400
Automation with STEP7 in STL and SCL
Author: Hans Berger Publisher: Publicis Publishing
ISBN: 978-3-89578-412-5
4 STEP7
SIMATIC S7-300
Automating with SIMATIC S7-300 inside TIA Portal
Author: Hans Berger Publisher: Publicis Publishing
ISBN: 978-3-89578-382-1
5 STEP7
SIMATIC S7-400
Automating with SIMATIC S7-400 inside TIA Portal
Author: Hans Berger Publisher: Publicis Publishing
ISBN: 978-3-89578-383-8
6 STEP7
SIMATIC S7-1200
Automating with SIMATIC S7-1200
Author: Hans Berger Publisher: Publicis Publishing
ISBN: 978-3-89578-385-2
7 STEP7
SIMATIC S7-1500
Automating with SIMATIC S7-1500
Author: Hans Berger Publisher: Publicis Publishing
ISBN: 978-3-89578-404-0
5 History
Table 5-1
Version Date Modifications
V1.0 04/2013 First version
V1.1 03/2014 Communication error message added
V1.2 12/2015 Change oft the name in the library and added this into the
documentation