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First Steps in Commissioning CPU1xC: Positioning with analog output
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SIMATICS7-300First Steps in Commissioning CPU 31xC:Positioning with analog outputGetting Started
08/2011A5E00105537-03
Introduction 1
Preparation 2
Learning units 3
Further Information 4
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Legal informationLegal informationWarning notice system
This manual contains notices you have to observe in order to ensure your personal safety, as well as to preventdamage to property. The notices referring to your personal safety are highlighted in the manual by a safety alertsymbol, notices referring only to property damage have no safety alert symbol. These notices shown below aregraded according to the degree of danger.
DANGERindicates that death or severe personal injury will result if proper precautions are not taken.
WARNINGindicates that death or severe personal injury may result if proper precautions are not taken.
CAUTIONwith a safety alert symbol, indicates that minor personal injury can result if proper precautions are not taken.
CAUTIONwithout a safety alert symbol, indicates that property damage can result if proper precautions are not taken.
NOTICEindicates that an unintended result or situation can occur if the relevant information is not taken into account.
If more than one degree of danger is present, the warning notice representing the highest degree of danger willbe used. A notice warning of injury to persons with a safety alert symbol may also include a warning relating toproperty damage.
Qualified PersonnelThe product/system described in this documentation may be operated only by personnel qualified for the specifictask 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 andavoiding potential hazards when working with these products/systems.
Proper use of Siemens productsNote the following:
WARNINGSiemens products may only be used for the applications described in the catalog and in the relevant technicaldocumentation. If products and components from other manufacturers are used, these must be recommendedor approved by Siemens. Proper transport, storage, installation, assembly, commissioning, operation andmaintenance are required to ensure that the products operate safely and without any problems. The permissibleambient conditions must be complied with. The information in the relevant documentation must be observed.
TrademarksAll names identified by are registered trademarks of Siemens AG. The remaining trademarks in this publicationmay be trademarks whose use by third parties for their own purposes could violate the rights of the owner.
Disclaimer of LiabilityWe have reviewed the contents of this publication to ensure consistency with the hardware and softwaredescribed. Since variance cannot be precluded entirely, we cannot guarantee full consistency. However, theinformation in this publication is reviewed regularly and any necessary corrections are included in subsequenteditions.
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90026 NRNBERGGERMANY
A5E00105537-03 09/2011
Copyright Siemens AG 2011.Technical data subject to change
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Table of contents
1 Introduction................................................................................................................................................ 52 Preparation................................................................................................................................................ 73 Learning units .......................................................................................................................................... 11
3.1 1. Step: Wire the CPU..................................................................................................................11
3.2 2. Step: Installing the sample project ...........................................................................................14
3.3 3. Step: Parameter assignment ...................................................................................................15
3.4 4. Step: Linking blocks to the user program ................................................................................173.5 5. Step: Trial run ..........................................................................................................................18
4 Further Information.................................................................................................................................. 21
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Introduction 1
Contents of this Getting Started ManualBased on a concrete example, this Getting Started manual takes you through fivecommissioning steps to the point where you have a functioning traversing movement. Youwill get to know certain basic hardware and software functions and will calculate and checkthe application-dependent parameters in this sample.
This process will take one to two hours, depending on your experience.
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Introduction
First Steps in Commissioning CPU 31xC: Positioning with analog output
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Preparation
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RequirementsThe following requirements must be met:
You have an S7 300 station consisting of a power supply module and a CPU 314C-2 DP,314C-2 PtP or 314C-2 PN/DP.
STEP 7 is correctly installed on your PG.The table below shows the STEP 7 version you need for each CPU.
CPU STEP 7 version314C-2 PtP STEP 7 as of V5.5 + SP1 or STEP 7 as of V5.3 + SP2 with HSP 204
314C-2 DP STEP 7 as of V5.5 + SP1 or STEP 7 as of V5.3 + SP2 with HSP 203
314C-2 PN/DP STEP 7 as of V5.5 with HSP 191
You have downloaded the sample projects from the Internet or have the CD of sampleprojects included with the Technological Functions operating instructions.
You have set up a project for the S7-300 station. The PG is connected to the CPU. You have an external 24 V DC power supply, an encoder, a drive, and the necessary
accessories, such as a front connector and wiring material.
You provided hardware limit switches and EMERGENCY-OFF switches for safe andreliable operation of the system.
The CPU is correctly connected to a power supply.WARNING
Operation of an S7-300 as part of plants or systems is subject to special rules andregulations, which depend on its field of application. Please make sure that you adhereto the applicable safety and accident prevention regulations, for example IEC 204(emergency stop systems).
You risk severe injury, or damage to machines and equipment if you ignore theseregulations.
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Preparation
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Layout of the example2 3
7 6 5 4
1
For setting the line voltage
Mode selector Mounting rail Programming device with STEP 7 software PG cable Connecting cable Clamp for strain relief
Figure 2-1 Overview of sample layout
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Preparation
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Learning units 33.1 1. Step: Wire the CPU
WARNINGMake sure that the PS 307 power supply module and the S7 300 are completelydisconnected before you start wiring.
You may come into contact with live wires if the PS 307 power supply module and S7 300
are connected to the power supply.
Procedure1. Connect the wired front connectors to the CPU.2. Fasten the front connector.3. Connect the power supply of the inputs and outputs:
24 V to X2, pins 1 and 21 Ground to X2, pins 20 and 30
4. Connect the incremental encoder to the 24 V power supply.5. Connect the encoder signals (X2, pins 2 to 4).
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6. Connect the power unit to the power supply.
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Learning units
3.1 1. Step: Wire the CPU
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7. Connect the signal lines of the power unit over shielded cables (X1, pin 16 or 17 andpin 20 and X2, pins 28 and 30).
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8. Strip the insulation from the shielded cables.9. Clamp the cable shield into the shield connection element. using the shield terminal
elements.
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Learning units
3.1 1. Step: Wire the CPU
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Connector pin assignmentThe pin assignments described below relate only to the connectors relevant for the
positioning type.
Table 3- 1 CONNECTOR X1
Pin Name/address Function16 AO 0 (V) Voltage output, power unit
17 AO 0 (A) Current output, power unit
20 Mana Analog ground
Table 3- 2 CONNECTOR X2
Pin Name/address Function1 1 L+ 24 V power supply of the inputs
2 DI + 0.0 Encoder signal A
3 DI + 0.1 Encoder signal B
4 DI + 0.2 Encoder signal N
5 DI + 0.3 Length measurement
6 DI + 0.4 Reference point switch
20 1 M Ground
21 2 L+ 24 V power supply of the outputs
28 DO + 0.6 CONV_EN: Power unit enable
30 2 M Ground
ReferenceYou will find information on the remaining connections in the documentation of the S7-300.
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Learning units
3.2 2. Step: Installing the sample project
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3.2 2. Step: Installing the sample projectIntroduction
When installing the sample project, you have the following options:
Installing from CD1. Take the CD out of the Technological Functions operating instructions.2. Start the installation program on the CD by double-clicking on the SETUP.EXE file in the
SETUP folder.
The installation program is started.
3. Now follow the instructions in the installation program.Installing from the Internet
1. Open the directory with the sample projects.2. Start the installation program by double-clicking the SETUP.EXE file.
The installation program is started.
3. Now follow the instructions in the installation program.
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Learning units
3.3 3. Step: Parameter assignment
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3.3 3. Step: Parameter assignmentProcedure
1. Open your project in SIMATIC Manager.A window, divided into two sections, opens showing the title of your project.
2. In your project, call the configuration table HW Config.
3. Double-click on the submodule "AI5/AO2".The "Properties AI5/AO2" dialog opens.
4. Disable analog output 0 by left-clicking the "Output mode" field of the "Output " tab andselect "Disabled". Close the dialog with "OK".
Analog output 0 is enabled for controlling the motor power unit.
5. Double-click on the submodule "Positioning".The "Positioning properties" dialog opens.
6. Select "Positioning with analog output". On the drive, axis and encoder tabs, customizethe properties according to your system.
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Learning units
3.3 3. Step: Parameter assignment
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7. Confirm your settings with "OK".The "Positioning properties" dialog closes.
NoteThe input and output address of the submodules "DI24/DO16", "AI5/02", "Counting" and"Positioning" must be adapted for the example to function correctly.
Double-click the relevant line to adapt the submodule. A dialog opens. Select the"Addresses" tab in each case. Deselect the "System default" checkboxes. Change theaddresses as follows:
DI24/DO16: Inputs: 124..126, Outputs: 124..125 AI5/AO2: Inputs: 752..761, Outputs: 752..755 Counting: Inputs: 768..783, Outputs: 768..783 Positioning: Inputs: 784..799, Outputs: 784..799Confirm your settings with "OK".
8. Save your configuration to your project with "Station > Save and compile".Your changes are now stored in your project.
9. When the CPU is in STOP, select "PLC > Download to module ..." to download theconfiguration.
The data are now downloaded from the PG to the CPU.
10.Close HW Config with "Station > Close".You have returned to SIMATIC Manager.
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Learning units
3.4 4. Step: Linking blocks to the user program
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3.4 4. Step: Linking blocks to the user programProcedure
1. Open the project "ZDt26_03_TF_____31xC_Pos" in the catalog ...\Siemens\STEP7\Examples via "File > Open ... > Sample projects" in SIMATIC Manager.
A window, divided into two sections, opens showing the title of the project.
2. Double-click on the S7 program "Analog 1 First Steps".The "Sources", "Blocks" and "Symbols" folders are displayed in the right-hand window.
3. Double-click on the "Blocks" container.All blocks of the S7 program are displayed.
4. Copy all blocks from this folder to your project under "SIMATIC 300 Station > CPU 3xx >S7 Program > Blocks".
Chip Name (in the toolbar) DescriptionOB 1 CYCLE_EXC Cyclic program
OB 100* COMPLETE RESTART Complete restart: Reset the control signals
FC 1 GETST_A Example 1: ANALOG, first steps
SFB 44 ANALOG SFB ANALOG
DB 6 DI_ANALOG Instance DB for ANALOG
VAT_GETST_A VAT_GETST_A Variable table
* Note: Adjust the values for the speed, acceleration, deceleration, and switchover and shutdowndifference in the block COMPLETE RESTART (OB 100).
5. In SIMATIC Manager, select "SIMATIC 300 Station > CPU 3xx > S7 Program > Blocks".All blocks of the S7 program are displayed.
6. Download all of the S7 blocks it contains via "PLC > Download to your CPU" (CPU inSTOP mode).
The program and configuration are downloaded from the PG to the CPU.
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Learning units
3.5 5. Step: Trial run
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3.5 5. Step: Trial runProcedure
1. In the "Function blocks" directory, double-click on the variable table "VAT_GETST_A" inyour project.
The variable table for monitoring and modifying is displayed.
2. Go online with "PLC > Connect to > Configured CPU".At the bottom right, you will see that the CPU is set to "STOP" mode.
3. Activate monitoring with "Variable > Monitor".The current values of the addresses are displayed in the "Status Value" column.
CAUTIONThe next two test steps start the drive.
You can stop the drive in one of the following ways:
Set the control value for the direction to 0 again and activate it Set the control value for the drive enable to 0 again and activate it Change the CPU to STOP
4. Switch the CPU to RUN.At the bottom right, you will see that the CPU is set to "RUN" mode.
5. Try out the two following experiments. With "Variable > Activate Modify Values", you canmake the control values valid.
"Jogging" modeMake the following settings:
MODE_IN = 1:Select "Jogging" mode
DRV_EN = 1:drive enable
SPEED:
Speed in pulses/sStarting the drive:DIR_P = 1: Jogging in plus directionDIR_M = 1: Jogging in minus direction
Remark: If both variables DIR_P and DIR_M areactivated, no positioning is possible.
You can monitor the following signal statuses inthe column "Status Value":
ST_ENBL = 1:Start enable
MOD_OUT = 1:Current mode "Jogging"
WORKING = 1:
Travel activeACT_POS:Current actual position
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Learning units
3.5 5. Step: Trial run
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"Incremental approach, relative" modeMake the following settings:
MODE_IN = 4:Select "Incremental approach, relative" mode
DRV_EN = 1:drive enable
TARGET:Distance in pulses
SPEED:Speed in pulses/s
Start drive:DIR_P = 1: Incremental approach, relative in plusdirectionDIR_M = 1: Incremental approach, relative inminus direction
You can monitor the following signal statuses in
the column "Status Value":ST_ENBL = 1:Start enable
MOD_OUT = 4:Current mode "Incremental approach, relative"
WORKING = 1:Travel active
ACT_POS:Current actual position
POS_RCD = 1:Position reached
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Learning units
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Further Information 4
Diagnostics/Correction of ErrorsIncorrect operator input, faulty wiring or inconsistent configuration data may lead to errors.
For information on how to analyze such errors and messages, refer to the S7-300documentation.
Example:The "ZEn26_03_TF_____31xC_Pos" project contains further samples you can use fororientation. You can customize all samples according to your personal applications.
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