SIMOTION. SIMOTION SCOUT SIMOTION SCOUT TIA device proxy. Preface. Fundamental safety instructions 1. Overview 2. Create and configure device proxy.

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1 Preface Fundamental safety instructions 1 SIMOTION SIMOTION SCOUT Overview 2 Create and configure device proxy. 3 SIMOTION SCOUT V4.4 with Comfort Panels 4 Configuration Manual 2014

2 Legal information Warning notice system This manual contains notices you have to observe in order to ensure your personal safety, as well as to prevent damage to property. The notices referring to your personal safety are highlighted in the manual by a safety alert symbol, notices referring only to property damage have no safety alert symbol. These notices shown below are graded according to the degree of danger. DANGER indicates that death or severe personal injury will result if proper precautions are not taken. WARNING indicates that death or severe personal injury may result if proper precautions are not taken. CAUTION indicates that minor personal injury can result if proper precautions are not taken. NOTICE indicates that property damage can result if proper precautions are not taken. If more than one degree of danger is present, the warning notice representing the highest degree of danger will be used. A notice warning of injury to persons with a safety alert symbol may also include a warning relating to property damage. Qualified Personnel The product/system described in this documentation may be operated only by personnel qualified for the specific task in accordance with the relevant documentation, in particular its warning notices and safety instructions. Qualified personnel are those who, based on their training and experience, are capable of identifying risks and avoiding potential hazards when working with these products/systems. Proper use of Siemens products Note the following: Trademarks WARNING Siemens products may only be used for the applications described in the catalog and in the relevant technical documentation. If products and components from other manufacturers are used, these must be recommended or approved by Siemens. Proper transport, storage, installation, assembly, commissioning, operation and maintenance are required to ensure that the products operate safely and without any problems. The permissible ambient conditions must be complied with. The information in the relevant documentation must be observed. All names identified by are registered trademarks of Siemens AG. The remaining trademarks in this publication may be trademarks whose use by third parties for their own purposes could violate the rights of the owner. Disclaimer of Liability We have reviewed the contents of this publication to ensure consistency with the hardware and software described. Since variance cannot be precluded entirely, we cannot guarantee full consistency. However, the information in this publication is reviewed regularly and any necessary corrections are included in subsequent editions. Siemens AG Industry Sector Postfach NÜRNBERG GERMANY P 04/2014 Subject to change Copyright Siemens AG All rights reserved

3 Preface SIMOTION Documentation An overview of the SIMOTION documentation can be found in the SIMOTION Documentation Overview document. This documentation is included as electronic documentation in the scope of delivery of SIMOTION SCOUT. It comprises ten documentation packages. The following documentation packages are available for SIMOTION V4.4: SIMOTION Engineering System Handling SIMOTION System and Function Descriptions SIMOTION Service and Diagnostics SIMOTION IT SIMOTION Programming SIMOTION Programming - References SIMOTION C SIMOTION P SIMOTION D SIMOTION Supplementary Documentation Hotline and Internet addresses Additional information Click the following link to find information on the the following topics: Ordering documentation / overview of documentation Additional links to download documents Using documentation online (find and search manuals/information) Please send any questions about the technical documentation (e.g. suggestions for improvement, corrections) to the following address: docu.motioncontrol@siemens.com My Documentation Manager Click the following link for information on how to compile documentation individually on the basis of Siemens content and how to adapt it for the purpose of your own machine documentation: Configuration Manual,

4 Preface Training Click the following link for information on SITRAIN - Siemens training courses for automation products, systems and solutions: FAQs Frequently Asked Questions can be found in SIMOTION Utilities & Applications, which are included in the scope of delivery of SIMOTION SCOUT TIA, and in the Service&Support pages in Product Support: Technical support Country-specific telephone numbers for technical support are provided on the Internet under Contact: 4 Configuration Manual, 2014

5 Table of contents Preface Fundamental safety instructions General safety instructions Safety instructions for electromagnetic fields (EMF) Handling electrostatic sensitive devices (ESD) Industrial security Residual risks of power drive systems Overview Comfort Panels with SIMOTION SCOUT Basics of Inter Project Engineering (IPE)/device proxy Requirements for Inter Project Engineering (IPE) / device proxy Create and configure device proxy Initialize a device proxy via a project file Create a device proxy and initialize via a project file Updating a device proxy via a project file Initialize a device proxy via an IPE file Creating and configuring device proxy data Initialize a device proxy via an IPE file Updating a device proxy via an IPE file SIMOTION SCOUT V4.4 with Comfort Panels SIMOTION SCOUT data Using Comfort Panels with SIMOTION SCOUT Configuring Comfort Panels in a SIMOTION SCOUT project Project with integrated WinCC flexible HMI configuration Using direct keys...38 Index...41 Configuration Manual,

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7 Fundamental safety instructions General safety instructions DANGER Danger to life due to live parts and other energy sources Death or serious injury can result when live parts are touched. Only work on electrical devices when you are qualified for this job. Always observe the country-specific safety rules. Generally, six steps apply when establishing safety: 1. Prepare for shutdown and notify all those who will be affected by the procedure. 2. Disconnect the machine from the supply. Switch off the machine. Wait until the discharge time specified on the warning labels has elapsed. Check that it really is in a no-voltage condition, from phase conductor to phase conductor and phase conductor to protective conductor. Check whether the existing auxiliary supply circuits are de-energized. Ensure that the motors cannot move. 3. Identify all other dangerous energy sources, e.g. compressed air, hydraulic systems, or water. 4. Isolate or neutralize all hazardous energy sources by closing switches, grounding or shortcircuiting or closing valves, for example. 5. Secure the energy sources against switching on again. 6. Ensure that the correct machine is completely interlocked. After you have completed the work, restore the operational readiness in the inverse sequence. WARNING Danger to life from hazardous voltage when connecting an unsuitable power supply Touching live components can result in death or severe injury. Only use power supplies that provide SELV (Safety Extra Low Voltage) or PELV (Protective Extra Low Voltage) output voltages for all connections and terminals of the electronics modules. Configuration Manual,

8 Fundamental safety instructions 1.1 General safety instructions WARNING Danger to life from touching live parts on damaged devices Improper handling of devices can result in damage. For damaged devices, hazardous voltages can be present at the enclosure or at exposed components; if touched, this can result in death or severe injury. Observe the limit values specified in the technical specifications during transport, storage, and operation. Do not use damaged devices. WARNING Danger to life through electric shock due to unconnected cable shields Hazardous touch voltages can occur through capacitive cross-coupling due to unconnected cable shields. As a minimum, connect cable shields and the cores of power cables that are not used (e.g. brake cores) at one end at the grounded housing potential. WARNING Danger to life due to electric shock when not grounded For missing or incorrectly implemented protective conductor connection for devices with protection class I, high voltages can be present at open, exposed parts, which when touched, can result in death or severe injury. Ground the device in compliance with the applicable regulations. WARNING Danger to life due to fire spreading if housing is inadequate Fire and smoke development can cause severe personal injury or material damage. Install devices without a protective housing in a metal control cabinet (or protect the device by another equivalent measure) in such a way that contact with fire inside and outside the device is prevented. Ensure that smoke can only escape via controlled and monitored paths. 8 Configuration Manual, 2014

9 Fundamental safety instructions 1.1 General safety instructions WARNING Danger to life from unexpected movement of machines when using mobile wireless devices or mobile phones Using mobile radios or mobile phones with a transmit power > 1 W closer than approx. 2 m to the components may cause the devices to malfunction, influence the functional safety of machines therefore putting people at risk or causing material damage. Switch off wireless devices or mobile phones in the immediate vicinity of the components. WARNING Danger to life due to fire if overheating occurs because of insufficient ventilation clearances Inadequate ventilation clearances can cause overheating of components followed by fire and smoke development. This can cause death or serious injury. This can also result in increased downtime and reduced service life for devices/systems. Ensure compliance with the specified minimum clearance as ventilation clearance for the respective component. WARNING Danger of an accident occurring due to missing or illegible warning labels Missing or illegible warning labels can result in accidents involving death or serious injury. Check that the warning labels are complete based on the documentation. Attach any missing warning labels to the components, in the national language if necessary. Replace illegible warning labels. Configuration Manual,

10 Fundamental safety instructions 1.3 Handling electrostatic sensitive devices (ESD) WARNING Danger to life when safety functions are inactive Safety functions that are inactive or that have not been adjusted accordingly can cause operational faults on machines that could lead to serious injury or death. Observe the information in the appropriate product documentation before commissioning. Carry out a safety inspection for functions relevant to safety on the entire system, including all safety-related components. Ensure that the safety functions used in your drives and automation tasks are adjusted and activated through appropriate parameterizing. Perform a function test. Only put your plant into live operation once you have guaranteed that the functions relevant to safety are running correctly. Note Important safety notices for safety functions If you want to use safety functions, you must observe the safety notices in the safety manuals. 1.2 Safety instructions for electromagnetic fields (EMF) WARNING Danger to life from electromagnetic fields Electromagnetic fields (EMF) are generated by the operation of electrical power equipment such as transformers, converters or motors. People with pacemakers or implants are at a special risk in the immediate vicinity of these devices/systems. Ensure that the persons involved are the necessary distance away (minimum 2 m). 1.3 Handling electrostatic sensitive devices (ESD) Electrostatic sensitive devices (ESD) are individual components, integrated circuits, modules or devices that may be damaged by either electric fields or electrostatic discharge. 10 Configuration Manual, 2014

11 Fundamental safety instructions 1.4 Industrial security NOTICE Damage through electric fields or electrostatic discharge Electric fields or electrostatic discharge can cause malfunctions through damaged individual components, integrated circuits, modules or devices. Only pack, store, transport and send electronic components, modules or devices in their original packaging or in other suitable materials, e.g conductive foam rubber of aluminum foil. Only touch components, modules and devices when you are grounded by one of the following methods: Wearing an ESD wrist strap Wearing ESD shoes or ESD grounding straps in ESD areas with conductive flooring Only place electronic components, modules or devices on conductive surfaces (table with ESD surface, conductive ESD foam, ESD packaging, ESD transport container). 1.4 Industrial security Note Industrial security 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 product updates. 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 products that may be in use should also be considered. For more information about industrial security, visit To stay informed about product updates as they occur, sign up for a product-specific newsletter. For more information, visit Configuration Manual,

12 Fundamental safety instructions 1.5 Residual risks of power drive systems WARNING Danger as a result of unsafe operating states resulting from software manipulation Software manipulation (e.g. by viruses, Trojan horses, malware, worms) can cause unsafe operating states to develop in your installation which can lead to death, severe injuries and/ or material damage. Keep the software up to date. Information and newsletters can be found at: Incorporate the automation and drive components into a state-of-the-art, integrated industrial security concept for the installation or machine. For more detailed information, go to: Make sure that you include all installed products into the integrated industrial security concept. 1.5 Residual risks of power drive systems The control and drive components of a drive system are approved for industrial and commercial use in industrial line supplies. Their use in public line supplies requires a different configuration and/or additional measures. These components may only be operated in closed housings or in higher-level control cabinets with protective covers that are closed, and when all of the protective devices are enabled. These components may only be handled by qualified and trained technical personnel who are knowledgeable and observe all of the safety instructions on the components and in the associated technical user documentation. When assessing the machine's risk in accordance with the respective local regulations (e.g. EC Machinery Directive), the machine manufacturer must take into account the following residual risks emanating from the controller and drive components of a drive system: 12 Configuration Manual, 2014

13 Fundamental safety instructions 1.5 Residual risks of power drive systems 1. Unintentional movements of driven machine components during commissioning, operation, maintenance, and repairs caused by, for example: Hardware defects and/or software errors in the sensors, controllers, actuators, and connection technology Response times of the controller and drive Operating and/or ambient conditions outside of the specification Condensation / conductive contamination Parameterization, programming, cabling, and installation errors Use of radio devices / cellular phones in the immediate vicinity of the controller External influences / damage 2. In the event of a fault, exceptionally high temperatures, including an open fire, as well as emissions of light, noise, particles, gases, etc. can occur inside and outside the inverter, for example: Component malfunctions Software errors Operating and/or ambient conditions outside of the specification External influences / damage Inverters of the Open Type / IP20 degree of protection must be installed in a metal control cabinet (or protected by another equivalent measure) such that the contact with fire inside and outside the inverter is not possible. 3. Hazardous touch voltages caused by, for example: Component malfunctions Influence of electrostatic charging Induction of voltages in moving motors Operating and/or ambient conditions outside of the specification Condensation / conductive contamination External influences / damage 4. Electrical, magnetic and electromagnetic fields generated in operation that can pose a risk to people with a pacemaker, implants or metal replacement joints, etc. if they are too close. 5. Release of environmental pollutants or emissions as a result of improper operation of the system and/or failure to dispose of components safely and correctly. Note The components must be protected against conductive contamination (e.g. by installing them in a control cabinet with degree of protection IP54 according to IEC or NEMA 12). Assuming that conductive contamination at the installation site can definitely be excluded, a lower degree of cabinet protection may be permitted. Configuration Manual,

14 Fundamental safety instructions 1.5 Residual risks of power drive systems For more information about residual risks of the components in a drive system, see the relevant sections in the technical user documentation. 14 Configuration Manual, 2014

15 Overview Comfort Panels with SIMOTION SCOUT Inter Project Engineering (IPE) in the TIA Portal The TIA Portal makes it possible to carry out the technological and HMI configuration in various projects. For example, one processor can carry out the HMI configuration and a second processor can carry out the technological configuration. In the TIA Portal, this working method is called "Inter Project Engineering". Note The "Device Proxy" functionality in the TIA Portal can only be used for SIMOTION when SIMOTION SCOUT TIA V4.4 has been installed. Using Comfort Panels with SIMOTION SCOUT Inter Project Engineering is primarily used with SIMOTION to make flexible HMI panels available for SIMOTION SCOUT, SIMATIC STEP 7 V5 and WinCC,which can only be configured in the TIA Portal. The following application scenarios are relevant to SIMOTION SCOUT: Migration of an existing HMI configuration from a SIMOTION SCOUT project. Use of panels in SIMOTION SCOUT/WinCC flexible that can only be configured via the TIA Portal, e.g. Comfort Panels. For this purpose you configure a device proxy in the TIA Portal with which you connect the Comfort Panel for the HMI visualization. The device proxy is a proxy object in the TIA Portal for devices that are not part of the TIA project. Through initialization of the device proxy, the configuration of the SIMOTION controller is simulated in the TIA Portal. Distributed working with SIMOTION SCOUT TIA It is also possible to carry out the technological and HMI configuration in various projects for SIMOTION SCOUT TIA via a device proxy. Procedure for using Comfort Panels with SIMOTION SCOUT The following steps must be performed in the TIA Portal for the editing: 1. Create a project in the TIA Portal 2. Create a device proxy. Configuration Manual,

16 Overview 2.2 Basics of Inter Project Engineering (IPE)/device proxy 3. Initialize the device proxy, see also Create a device proxy and initialize via a project file (Page 21) The project file of the source project must be available and suitable. 4. Create an HMI Panel and establish a connection to the device proxy, see also Configuring Comfort Panels in a SIMOTION SCOUT project (Page 32). 5. Interconnect the HMI tags. Procedure for "Distributed working with SIMOTION SCOUT TIA" A controller with the technological configuration is already present. The following steps must be performed in the TIA Portal for the editing: 1. Create the device proxy data in the TIA Portal. 2. Export the settings in the TIA Portal as an IPE file, see also Creating and configuring device proxy data (Page 26). In order to create the HMI visualization in a separate project, the following steps must be carried out: 1. Create a project in the TIA Portal 2. Create a device proxy. 3. Initialize the device proxy with the exported IPE file, see also Initialize a device proxy via an IPE file (Page 27) The IPE file of the source project must be available and suitable. 4. Create the HMI Panel and establish a connection to the device proxy. 5. Interconnect the HMI tags. See also Project with integrated WinCC flexible HMI configuration (Page 34) Basics of Inter Project Engineering (IPE)/device proxy (Page 16) 2.2 Basics of Inter Project Engineering (IPE)/device proxy Introduction to Inter Project Engineering (IPE) The functionality of Inter Project Engineering, hereinafter referred to as IPE, is used to extract the HMI data in a source project to exchange it using a device proxy. You can then transfer this data to other projects, for visualization in HMI, for example, and use it there for further configuration. You can exchange the following PLC data between projects via the device proxy for SIMOTION SCOUT: Variables Messages 16 Configuration Manual, 2014

17 Overview 2.2 Basics of Inter Project Engineering (IPE)/device proxy The following data is automatically included in the exchange: Controller communication interfaces Configured communication processors and communication modules This automatic data exchange ensures that the interfaces and the configured communication are transferred along with the data you selected. This data is required to allow you to continue working consistently and without problems in your target project. Cross-project data exchange The following options are available for cross-project data exchange with Inter Project Engineering: Exchanging PLC data via a project file for data from SIMOTION SCOUT; the project file may contain several controllers. Exchanging PLC data via an IPE file for data from TIA Portal projects V13 or higher; an IPE file must also be generated for each controller. Exchanging PLC data via a project file The figure below shows cross-project data exchange via a project file. The PLC data from the source project is transferred to the PLC in the target project via a SIMOTION project file (*.mcp). You can transfer data from STEP7/SIMOTION SCOUT projects that are not integrated in the TIA Portal relating to the HMI visualization conveniently into your current TIA Portal projects and continue to use it there. Configuration Manual,

18 Overview 2.3 Requirements for Inter Project Engineering (IPE) / device proxy Exchanging PLC data via IPE file The figure below shows cross-project data exchange via an IPE file. Both projects are created in the TIA Portal. The PLC data from the source project is transferred to the PLC in the target project via the object "Device Proxy Data". PLC data that is exchanged via an IPE file must originate from TIA Portal projects of V13 or higher. You must generate an IPE file for each controller. 2.3 Requirements for Inter Project Engineering (IPE) / device proxy Software and hardware requirements The following requirements must be met in order for you to use Comfort Panels in SIMOTION SCOUT: You have installed TIA Portal V13 or higher and the SIMOTION SCOUT TIA V4.4 option package to use Comfort Panels You have installed the SIMOTION SCOUT V4.4 software package or higher and therefore also SIMATIC STEP 7 V5.5 SP4 (but at least SIMATIC STEP 7 V5.5 SP1). You are using a SIMOTION D4xx-2 module or SIMOTION C module version as of V4.3. When Comfort Panels are used, WinCC Comfort, WinCC Advanced or WinCC Professional V13 or higher must be installed. For the migration of an integrated HMI project, SIMATIC WinCC flexible 2008 SP3 Update 3 must also be installed as a minimum. The same firmware version must be installed on all controllers involved. 18 Configuration Manual, 2014

19 Overview 2.3 Requirements for Inter Project Engineering (IPE) / device proxy Functionality of IPE in TIA Portal You have installed TIA Portal V13 or higher and the SIMOTION SCOUT TIA V4.4 option package or higher. Note Operating systems The SIMOTION SCOUT and STEP 7 V5.5 software packages are only approved for Windows XP and Windows 7. The TIA Portal is approved for Windows 7 and Windows 8.x. The device proxy for SIMOTION SCOUT is therefore only available to you for Windows 7. Requirements for IPE and use of Comfort Panels The requirements for accepting PLC data from projects are as follows: You have a project with hardware configuration that is to be transferred to another project. You have ensured that the project is consistent before you transfer the PLC data using the device proxy data. Configuration Manual,

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21 Create and configure device proxy Initialize a device proxy via a project file Create a device proxy and initialize via a project file Introduction You initialize the device proxy using a project file. A device proxy must be created for every controller that has a connection to an HMI panel. If the project file contains several controllers, you can select the controller via the "Initialize device proxy" dialog and assign to the device proxy. Requirement One of the following projects exists: SIMOTION V4.4 project (*.mcp); you will find the mcp file in the project folder in the "u7" folder. TIA Portal V13 Project (*.ap13) Configuration Manual,

22 Create and configure device proxy. 3.1 Initialize a device proxy via a project file Procedure 1. Double-click "Add new device" in the project tree. 2. Select the device proxy under "Controller". A new device is created in the "Devices & Networks" editor. 3. Select the device proxy in net view. 22 Configuration Manual, 2014

23 Create and configure device proxy. 3.1 Initialize a device proxy via a project file 4. Click "Initialize device proxy" in the shortcut menu. 5. In the "Open device proxy data source" dialog box, select from the following entries: "SIMOTION Classic Project (*.mcp)" for initialization via a SIMOTION project file (for editing Comfort Panels) "TIA Project (*.ap13)" for initialization via a TIA Portal project file (only for SIMOTION SCOUT TIA). 6. Select the project file and click "Open". Configuration Manual,

24 Create and configure device proxy. 3.1 Initialize a device proxy via a project file 7. The "Initialize device proxy" dialog box opens. Figure 3-1 Initializing the device proxy 8. Select the source device if several controllers are configured in your project. You cannot change any other settings. 9. Click "OK". Result Following initialization, the PLC data from the project file in the selected device proxy data object is stored in the device proxy. You can now configure an HMI connection with the device proxy and connect PLC tags from the device proxy with HMI tags, for example. 24 Configuration Manual, 2014

25 Create and configure device proxy. 3.1 Initialize a device proxy via a project file Figure 3-2 Device proxy initialized See also Configuring Comfort Panels in a SIMOTION SCOUT project (Page 32) Updating a device proxy via a project file Introduction If changes have been made to the PLC data or the communications configuration in the source project of the device proxy, you can update the device proxy in your TIA Portal project. Requirement The project file has been generated from the source project of the device proxy. A device proxy that has already been initialized is available in the target project. Configuration Manual,

26 Create and configure device proxy. 3.2 Initialize a device proxy via an IPE file Procedure 1. Select the device proxy in the project tree. 2. Select the "Update device proxy" entry in the shortcut menu. 3. Select the project file. The "Update device proxy" dialog opens. 4. Select a device. 5. Select whether you wish to update the PROFINET or PROFIBUS parameters. 6. Click "OK". 3.2 Initialize a device proxy via an IPE file Creating and configuring device proxy data Creating and editing device proxy data You need device proxy data to generate an IPE file. With this file you can then replace and transfer configurations in the TIA Portal. 26 Configuration Manual, 2014

27 Create and configure device proxy. 3.2 Initialize a device proxy via an IPE file To create device proxy data, follow these steps: 1. Open the "Device Proxy Data" folder below the CPU to which you want to create device proxy data. 2. Double-click the "Add new device proxy data" command. A new entry is created. 3. Double-click the entry. In the working area, the settings for the device proxy data are now displayed. Figure 3-3 Exporting device proxy data 4. Select the content of the data: PLC tags PLC messages 5. Click the "Export proxy data" button to open the "Export device proxy data" dialog box. 6. Enter a meaningful name and click the "Save" button to generate the IPE file Initialize a device proxy via an IPE file Introduction You initialize device proxy data using a dialog on the device proxy in the TIA Portal. The IPE file contains the device proxy data from the source project. Requirement IPE file is available. Configuration Manual,

28 Create and configure device proxy. 3.2 Initialize a device proxy via an IPE file Procedure 1. Double-click "Add new device" in the project tree. 2. Select the device proxy under "Controller". A new device is created in the "Devices & Networks" editor. 3. Select the device proxy in net view. 28 Configuration Manual, 2014

29 Create and configure device proxy. 3.2 Initialize a device proxy via an IPE file 4. Click "Initialize device proxy" in the shortcut menu. 5. Select the IPE file and click the "Open" button. The "Initialize device proxy" dialog opens. Note You cannot select the device proxy data before initialization in the target project. All device proxy data included in the IPE file is transferred. Click "OK". Initialization of the device proxy is started. Result Following initialization, all device proxy data from the IPE file is contained in the device proxy. You can now configure an HMI connection with the device proxy and connect PLC tags from the device proxy with HMI tags, for example. See also Create a device proxy and initialize via a project file (Page 21) Configuration Manual,

30 Create and configure device proxy. 3.2 Initialize a device proxy via an IPE file Updating a device proxy via an IPE file Introduction If changes were made to the device proxy data in the device proxy source project, the device proxy data can be updated in the target project. Requirement The new IPE file contains the device proxy data from the source project. A device proxy has already been initialized using an IPE file in the target project. Procedure 1. Select the device proxy in the project tree. 2. Select the "Update device proxy" entry in the shortcut menu. 3. Select the IPE file. 4. Select whether you wish to update the PROFINET/PROFIBUS parameters. 5. Click "OK". 30 Configuration Manual, 2014

31 SIMOTION SCOUT V4.4 with Comfort Panels SIMOTION SCOUT data Data for the device proxy With the initialization, the device proxy accepts the data set present in the project file: System variables Config data Global variables Message configuration The device proxy accepts the message configuration of the source. When you create a new message, you must update the device proxy accordingly. TO alarms are also synchronized and created in the TIA Portal. Alarm_S messages are created only when they are used in the source project via a message call in a program. If you use the Alarm_S messages only after the initialization, you must update the device proxy. Communication configuration During the initialization, the settings for the communication interfaces are transferred automatically (e.g. IP address, subnet mask). If you change the settings in the source project, you must update the device proxy. 4.2 Using Comfort Panels with SIMOTION SCOUT Using HMI panels The device proxy is intended for applications in which the automation is still to be configured with SIMOTION SCOUT but the HMI connection made via the TIA Portal. This is the case, for example, when functions are used in the project that are not available in the TIA Portal (e.g. SIMOTION Drive Control Chart, DCC) and on the other hand HMI panels are being used that are only available in the TIA Portal. In this case, the automation project remains in SIMOTION SCOUT and only the HMI configuration is carried out in the TIA Portal. Configuration Manual,

32 SIMOTION SCOUT V4.4 with Comfort Panels 4.3 Configuring Comfort Panels in a SIMOTION SCOUT project See Requirements for Inter Project Engineering (IPE) / device proxy (Page 18) for an overview of the software requirements. Note Comfort Panels are available only for WinCC Comfort, WinCC Advanced and WinCC Professional V13 or higher. This may result in the following application scenarios: You are setting up a new project in SIMOTION SCOUT and using the TIA Portal for HMI configuration. You already have a project and would like to reconfigure an HMI in the TIA Portal. You already have a project with an HMI configuration and would like to switch to a Comfort Panel. You generally proceed as follows: Configure the SIMOTION components in SIMOTION SCOUT. Configure the HMI in the TIA Portal. For the SIMOTION part, perform a download from SIMOTION SCOUT. For visualization in HMI, perform the download from the TIA Portal. Figure 4-1 SIMOTION SCOUT with Comfort Panel 4.3 Configuring Comfort Panels in a SIMOTION SCOUT project Integrating a Comfort Panel via a device proxy If you use Comfort Panels, you require a connection between the TIA Portal and SIMOTION SCOUT. If you use an older project, you must first upgrade it to SIMOTION SCOUT V Configuration Manual, 2014

33 SIMOTION SCOUT V4.4 with Comfort Panels 4.3 Configuring Comfort Panels in a SIMOTION SCOUT project To configure an HMI Panel, proceed as follows: 1. Create a project in SIMOTION SCOUT and add the modules that you need. 2. Configure the communication and the technology. If you have not fully configured the project, you can update the device proxy at a later date (see also Updating a device proxy via a project file (Page 25)) 3. Save and compile the project. 4. Open the TIA Portal (as of V13). 5. Create a project and insert a device proxy. 6. Initialize the device proxy using a project file (see also Create a device proxy and initialize via a project file (Page 21)). 7. To do that, in the device view right-click on the device proxy and execute "Initialize device proxy." The "Open data source for device proxy" dialog box opens. 8. Select "SIMOTION Project" as the filter for the data source. 9. In the file system, navigate to your project and select the project file. 10.Apply the setting with "Open." Result The device proxy has now been initialized with the settings of the SIMOTION module. Figure 4-2 Device proxy initialized Configuration Manual,

34 SIMOTION SCOUT V4.4 with Comfort Panels 4.4 Project with integrated WinCC flexible HMI configuration Inserting and connecting HMI Once you have initialized the device proxy, add the HMI and configure the connection. 1. Change to the network view. 2. Select a Comfort Panel in the hardware catalog ("HMI > SIMATIC Comfort Panels"). 3. Drag the Comfort Panel into net view. 4. Configure the communication between device proxy and HMI panel in the same way as the SIMOTION SCOUT project: use the same interfaces and ports (PROFINET only) for the network connection with PROFIBUS or PROFINET as in SIMOTION SCOUT. 5. Change the net view from "interconnect" to "connections", select the "HMI connection" entry in the drop-down list and drag a connection from the device proxy to the HMI panel. The connection is created. Figure 4-3 Device proxy HMI connection This connection is an integrated connection and like the connections with SIMOTION devices, it cannot be edited in the WinCC connection editor. Download 1. Carry out the additional configuration in SIMOTION SCOUT and in the TIA Portal. 2. Load the SIMOTION configuration from SIMOTION SCOUT into the controller. 3. Load the HMI configuration from the TIA Portal into the Comfort Panel. 4.4 Project with integrated WinCC flexible HMI configuration Migrating a Classic HMI configuration If you have a project that contains an HMI configuration, you can migrate this HMI project from WinCC flexible to the TIA Portal. To do this, you must extract the integrated HMI configuration from the SIMOTION SCOUT V4.4 project. This migration can also be used to switch from a panel to a Comfort Panel. You will find an FAQ in the Internet about extracting the HMI configuration and subsequent migration: 34 Configuration Manual, 2014

35 SIMOTION SCOUT V4.4 with Comfort Panels 4.4 Project with integrated WinCC flexible HMI configuration Migrating an integrated project from WinCC flexible to WinCC (TIA Portal) ( support.automation.siemens.com/ww/view/en/ ) After the migration, the project contains the migrated HMI with the old connections. Figure 4-4 HMI migration You must then perform the following additional steps: Configuration Manual,

36 SIMOTION SCOUT V4.4 with Comfort Panels 4.4 Project with integrated WinCC flexible HMI configuration 1. Insert a device proxy and initialize it to the Classic project (see also Configuring Comfort Panels in a SIMOTION SCOUT project (Page 32)). The Classic project must reference the same HMI tags as the migrated project. 2. If you want to use a Comfort Panel, perform a device replacement. 3. Right-click the panel in the net view and select the "Device / change version" entry. The "Replace device" dialog opens. Figure 4-5 Replacing a device Note Note the compatibility information. 36 Configuration Manual, 2014

37 SIMOTION SCOUT V4.4 with Comfort Panels 4.4 Project with integrated WinCC flexible HMI configuration Establishing a connection and synchronizing HMI tags 1. Establish a connection between the device proxy and the HMI. This connection is an integrated connection and like the connections with SIMOTION devices, it cannot be edited in the WinCC connection editor. 2. Click the "Connections" button and select the device in the net view. Also select "HMI connection" in the drop-down list. 3. Move one device to the other one using drag-and-drop. The TIA Portal creates an HMI connection. Figure 4-6 HMI device proxy connection 4. Double-click the "Connections" entry under HMI variables in the project navigation. The panel settings are displayed. Figure 4-7 Customizing connections 5. Note the name of the old connection (here "Connection_1") and delete this connection. The old connection is invalid after the migration. 6. Change the name of the new connection (between panel and device proxy) by entering the name of the old connection. Configuration Manual,

38 SIMOTION SCOUT V4.4 with Comfort Panels 4.5 Using direct keys 7. Perform a comparison of the old HMI variables. 8. Right-click the "HMI variables" entry in the project tree and "Synchronize for comparison with the PLC variable". The following dialog opens: Figure 4-8 Synchronizing PLC variables dialog 9. Activate the "Data type and absolute address match" option. If you have renamed one of the variables, it is possible that it is connected with an incorrect variable. Consequently, renamed variables should be reassigned manually. If a variable is incorrectly connected, this error will not occur until during RT communication. 10.Activate the "Replace WinCC variable name with PLC variable name" option. The project that was used for initializing the device proxy must contain the same set of tags as the old project. Add new tags after the migration and synchronization, and interconnect them. If you change the source project settings in SIMOTION SCOUT, you must update the device proxy. 4.5 Using direct keys Use of panel keys as direct keys The direct keys are used to directly influence the machine status from the HMI Panel. For example, a direct key can be pressed to stop an axis. The following files must exist for the configuring: For PROFIBUS DP, a GSD file for the panel For PROFINET IO, a GSDML file for the panel Requirement You already have a project with a device proxy that is connected with a Comfort Panel, and a SIMOTION controller exists. 38 Configuration Manual, 2014

39 SIMOTION SCOUT V4.4 with Comfort Panels 4.5 Using direct keys Configuring in HW Config As you cannot select the Comfort Panel in the HW Config of SIMOTION SCOUT, you must add the device to the HW Config using GSD import. Only then can you configure the direct keys. The GSD/GSDML files are not currently available; contact SIEMENS Customer Support in this connection. To configure a Comfort Panel, proceed as follows: Configuring in HW Config 1. Switch to SIMOTION SCOUT and open HW Config. 2. Perform "Options > Install GSD files". The "Install GSD files" dialog box is displayed. 3. Select the GSD/GSDML file, and click "Install" and "Close". The file will be installed. 4. Navigate in the hardware catalog, for example to the "PROFINET IO > Further field devices > HMI" entry. The installed Comfort Panels are displayed in the folder. 5. Drag the panel to the PROFIBUS master system or to the PROFINET IO subsystem. Ensure that the panels have the same bus addresses (PROFIBUS address, IP address, etc.) as the devices configured in the TIA Portal. The help system of the TIA Portal describes how you complete the configuration of a direct key with WinCC flexible. See also Create a device proxy and initialize via a project file (Page 21) Configuration Manual,

40

41 Index C Comfort Panel Device proxy, 32 Direct keys, 38 Integrated HMI project, 34 SIMOTION, 31 D Device proxy Comfort Panel, 32 Initializing, 21 SIMOTION, 31 Updating, 25, 30 Direct keys, 38 S SIMOTION Comfort Panel, 31 Integrated HMI project, 34 U Updating Device proxy, 25, 30 IPE data, 25, 30 I Initializing IPE file, 27 Project file, 21 Inter Project Engineering Requirements, 19 Software and hardware requirements, 18 Inter Project Engineering (IPE) Exchanging PLC data via IPE file, 18 Exchanging PLC data via project file, 17 SIMOTION, 16 IPE File, 27 IPE data Updating, 25, 30 IPE file Initializing, 27 P PLC data Initializing, 27 Project file Initializing, 21 R References, 3 Configuration Manual,

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