Lenze 2130IB Instrukcja Użytkownika

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EDB2130IB/GB
00381616
L
Antriebstechni
k
Operating Instructions
PROFIBUS-FMS/DP
Bus interface module
Type 2130IB
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EDB2130IB/GB00381616LAntriebstechnikOperating InstructionsPROFIBUS-FMS/DPBus interface moduleType 2130IB

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L8The 2130IB bus interface module has the following features:• Slave interface module for the communication system PROFIBUSwith the communication prof

Strona 3 - How to use these operating

91.1. Structure of the PROFIBUS systemThe PROFIBUS network according to DIN 19245 part 1, consists of anRS485 connection.As standard, you can connect

Strona 4 - Safety information

L101.1.1. Explanations about PROFIBUS-DPPROFIBUS-DP is the variant for sensors/actors, when a higherprocess response is required. PROFIBUS-DP connects

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111.1.2. Explanations about PROFIBUS-FMS / mixed operationPROFIBUS-FMS is the standard PROFIBUS according to part 1 andpart 2 of DIN19245. This operat

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L121.2.3. Selection of the PROFIBUS operating modeSelect the desired PROFIBUS operating mode using the followingtable.PROFIBUS operating mode for thec

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132. Technical data2.1. General dataCommunication media RS485 (2130IB.V001)OFC (SINEC-L2FO) (2130IB.V002)Communication profile PROFIBUS-FMS (DIN 19245

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L142.3. Dimensions of the 2130IB boardConnections of 2130IBX12 X13V1 V2View of 2130IB with front plateExplanations:X4 Automation interface34-pole plug

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152.4. Scope of supplyVariants of the 2130IB bus interface module:Variant Communication medium Service no.2130IB.V001 RS485 33.2130IB.V0012130IB.V002

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L162.5. Manufacturer's DeclarationWe hereby certify that the electronic controllers listed in theseOperating Instructions are control components

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173. Installation3.1. InstallationYou can integrate the 2130IB bus interface module into the controllersof the 4900, 8600, 9200 series.It is also poss

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These operating instructions are valid for the interface modules as of nameplate designation:2130 IB 0x. 0x. V001 PROFIBUS-FMS/DPwith RS4852130 IB 0x.

Strona 13 - DP, FMS or mixed operation

L18How to wire the module• Only use cables according to the following cable specification.• Observe the following illustrations concerning the bus con

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19Accessories for the wiring of the RS485 connectionName Part no. ExplanationBus connectorService designation:Bus connector PROFIBUSRS485363 695 Bus c

Strona 15 - 2. Technical data

L203.2.3. Additional procedure for FMS / mixed operationWhen using the FMS / mixed operation, some parameters must be setfor the controller and the fi

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21ProgrammingThe programming section using the 2130IB bus interface module isdivided into the following chapters:• Commissioning• Code table 2130IB• P

Strona 17 - 2.4. Scope of supply

L221. Commissioning1.1. Code numbers / IndexThe parameters of the controller are addressed by means of numbers.These numbers are called "index&qu

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231.3. Commissioning sequenceThe initial commissioning of the 2130IB bus interface module togetherwith a controller and possibly an automation module

Strona 19 - 3. Installation

L241.3.1. Base setting of the drive systemFor the base setting, the keypad on the controller or LEMOC2 can beused.Setting using the keypad on the cont

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256. To save the setting of L-C001 and L-C370 permanently, setparameter L-C003 "Save parameter set" to 1 (parameter set 1).Confirm the sett

Strona 21 - 3.2.2. 2130IB.V002 (OFC)

L26Setting using the LEMOC2 PC program1. Change to your LEMOC2 directory (...\LM2\BIN) andstart LEMOC2 by entering LM2.2. Load the file "2130_xxx

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27Important notesWithout automation module• For the 4900 or 8600 series, the freely assignable inputs (Lenze codesL-C112 and L-C113) must not be assig

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L1How to use these operatinginstructions...To locate information on specific topics, simply refer to the table ofcontents at the beginning and to the

Strona 24 - 1. Commissioning

L281.3.3. PROFIBUS drive controlWithout automation module1. The controller accepts control and parameter setting data fromPROFIBUS. The controller is

Strona 25 - 1.3. Commissioning sequence

29Without automation module1. The controller accepts control and parameter setting data fromPROFIBUS. The controller is controlled by DRIVECOM process

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L30Communication principle for the access to the controller dataProzeßdatenkanal to the masterDP = 4 byteFMS = not availableProcess data from the m

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31The diagram explains the PROFIBUS access to controller data. Here youhave to distinguish between access to process data and parameter data.Process d

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L322. 2130IB code tableIn the following, parameters of the 2130IB module are listed which youcan set via the LECOM1 interface (LECOM-A/B).The paramete

Strona 29 - With automation module

33CodeL-CName Parameter(Factory setting is printed in bold)Yoursettings1904 min TSDR11 to 255 Bit-times11 (L-C1900 = 0)125 (L-C1900 = 1;L-C1902 = 2)25

Strona 30 - 1.3.3. PROFIBUS drive control

L343. PROFIBUS operating modeThe PROFIBUS operating mode determines the participants for thebus system. We distinguish between two operating modes:• p

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353.1. PROFIBUS-DP operating modeIn the following only the settings for pure PROFIBUS-DP operation areexplained.Settings for the masterMost of the con

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L36Controller settingsCode Name ParameterL-C1900 PROFIBUSoperatingmode-0- DP operation. Only pure PROFIBUS-DP-1- Mixed operation. PROFIBUS-FMS and PRO

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373.1.1. Simatic-S5Lenze controllers comply with the standard of PROFIBUS-DPparticipants. For communication with Simatic-S5, the following hardwareand

Strona 34 - 2. 2130IB code table

L2Safety informationThe equipment described is intended for use in industrial drivesystems.This equipment can endanger life through rotating machinery

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L383.1.2. Diagnosis dataThe controller supplies the following diagnosis data:Station status_1(1 byte)Diagnosis data of the controller part 1Bit no. Me

Strona 36 - 3. PROFIBUS operating mode

39Station status_2(1 byte)Diagnosis data of the controller part 2Bit no. Meaning----------------------------------------------------------------------

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L403.1.3. DP process dataProcess data are data memories where several individual parametersare combined to form a new parameter, the process data. The

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413.1.4. DP user dataWith PROFIBUS, process data are exchanged cyclically betweenmaster and controller in the user-data phase. In addition to theproce

Strona 39 - 3.1.1.2. Example program

L423.1.5. DP parameter setting channelFor the DP parameter setting channel, parameter setting and diagnosisis possible in the user data operation. Thi

Strona 40 - 3.1.2. Diagnosis data

43Data/Error(4 byte)Parameter value or fault information in case of an invalidaccess. The status of bit service/status determines the meaningof the da

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L44The parameter communication with the controller has the followingsequence:Read service1. Determine user-data range of the controller; i.e. the loca

Strona 42 - 3.1.3. DP process data

453.1.6. DP command Sync/UnsyncThe Sync command is used to 'freeze' the controller process input data.This means that the controller works w

Strona 43 - 3.1.4. DP user data

L463.2. Operating mode PROFIBUS mixed operation (FMS/DP)In the operating mode mixed operation, the controller can be called up byan FMS master or by

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473.2.1. FMS process dataProcess data are data memories where several individual parametersare combined to form a new parameter, the process data. The

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L3ContentsPlanning1. General information about PROFIBUS 71.1. Structure of the PROFIBUS system 91.1.1. Explanations about PROFIBUS-DP 101.1.2. Explana

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L483.2.2. Communication servicesThe following FMS communication services are supported by Lenzecontrollers:• Initiate Make connection from master to

Strona 47 - 3.1.7. DP command Clear_Data

493.2.2.2. InitiateThe initiate service is used for the logic initiation between twoparticipants. The controller returns the following parameters:Valu

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L503.2.2.6. IdentifyThe identify service is used to identify the controller. The controllersupplies the following parameters:Value MeaningName of manu

Strona 49 - 3.2.1. FMS process data

513.2.2.7. Read / WriteThe Read service is used to read parameters. Either the value or a faultindication is output.The Write service is used to write

Strona 50 - 3.2.2. Communication services

L524. DRIVECOM parameters4.1. DRIVECOM code tableThe following parametes are implemented according to thestandardization of controller parameters in c

Strona 51 - 3.2.2.5. Get-OV

53MeaningR/WRead-Write authorization via LECOM2 (PROFIBUS)Ra Read-only always permittedRa/W Reading is always permitted; writing is restricted (e.g. d

Strona 52 - 3.2.2.6. Identify

L544.2. Controller states4.2.1. Status diagram of standard controlFor standard control you enter the control information via terminal,keypad or LECOM1

Strona 53 - 3.2.2.7. Read / Write

55Controller states MeaningNOT READY TO SWITCH ONThe controller is being initialized and is not yetready to operate. It then switches automatically to

Strona 54 - 4. DRIVECOM parameters

L564.2.2. Status diagram DRIVECOM controlWith LECOM2 control (Lenze parameter L-C001 = 5, 6 or 7), theLenze controller has the standardized controller

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57Controller states MeaningNOT READY TO SWITCH ONThe controller is being initialized and is not yetready to operate. It then switches automaticaly tot

Strona 56 - 4.2. Controller states

L4Programming1. Commissioning 221.1. Code numbers / Index 221.2. How to install the PROFIBUS software 221.3. Commissioning sequence 231.3.1. Base sett

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L584.2.3. Control word (6040hex)Data format: Unsigned16The parameter "control word" is used for the control of the controller. Itcontains co

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59Bit Name Meaning11 free 1 For base controllers, mapping to the 4th freely assignableinput0 = do not activate function1 = activate function12 free 2

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L60Several control commands can be given at the same time. Pleasenote that a bit change of bit0 is necessary to change from thestatus "SWITCH ON

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L624.2.4. Status word (6041hex)Data format: Unsigned16The parameter "status word" is used to show compact information about thecontroller. I

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63Controller states Bits of the status word15 8 7 0NOT READY TO SWITCHON−−−−−−−−−0−−0000SWITCH ON DISABLED−−−−−−−−−1−−0000READY TO SWITCH ON−−−−−−−−−0

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L644.3. Ramps for quick stop / disable ramp function generator / QSP4.3.1. Ramp-min functionIn the DRIVECOM profile, two ramps are defined for the con

Strona 64 - 4.2.4. Status word (6041

654.3.3. Quick stop time (6051hex)The parameter "quick stop time" corresponds to the relative speedramp of the deceleration for the control

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L664.4. Malfunction / Monitoring4.4.1. Malfunction code (603Fhex)Data format: Unsigned16The malfunction code has an equivalent profile code, if the co

Strona 66 - 4.3.2. Speed quick stop (604A

674.5. Process data configurationThe process data configuration is used to combine different parametersto form a new parameter, in order to transmit t

Strona 67 - 4.3.3. Quick stop time (6051

L54. DRIVECOM parameters 524.1. DRIVECOM code table 524.2. Controller states 544.2.1. Status diagram of standard control 544.2.2. Status diagram DRIVE

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L68Byte assignment of the process dataIf a word parameter (16 bit) is assigned to the process data, theparameter address (index, subindex) is entered

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694.5.1. Process input data description (6000hex)Data format: Process data description structure (index 20hex).For description see page 67.Description

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L704.5.3. Process output data enable (6002hex)Inhibiting and enabling of process output data (output data of themaster). More detailed information abo

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714.6.2. Process output data (6011hex)Data format: Unsigned16 with 4 elementsProcess data are data memories where several individual parametersare com

Strona 72 - 4.6. Process data

L724.7.2. Face value factor (604Bhex)The parameter "face value factor" is used to change the resolutionor the setting range of the set-value

Strona 73 - 4.7.1. Pole number (604D

734.7.5. Speed reference variable (6043hex)The parameter "speed reference variable" corresponds to theoutput of the ramp function generator

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L744.7.9. Actual percentage (6054hex)The parameter "actual percentage" corresponds to the actualspeed in per cent. It is scaled to the speed

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754.7.11. Ramps4.7.11.1. Ramp-min functionIn the DRIVECOM profile, there are each two ramps for the nominalspeed, one absolute and one relative ramp.F

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L764.7.11.3. Speed deceleration (6049hex)The parameter "speed deceleration" corresponds to the absolutespeed ramp of the deceleration. The s

Strona 77 - 4.7.11.1. Ramp-min function

775. Lenze parameters5.1. Lenze code addressingThe access to Lenze parameters is possible. However, the addressing ofthe parameter (code number) is sh

Strona 79 - 5. Lenze parameters

L785.3. AIF process data base controllerAt the moment, the following Lenze parameters can be mapped to thePROFIBUS process channel:Function DatatypePC

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795.4. Lenze automation moduleIf you want to use an additional automation module (e.g. 2211PP,2212WP), please observe the following notes concerning t

Strona 81 - 5.4. Lenze automation module

L80Structure of the parameter "automation control word":Bit Name Meaning0 Switch on Controller states0 = command 2,6,8 (controller inhibit)

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81Controller statecommandsBits of the control word16 8 7 01 Shutdown−−−−−−−−−−−−−1102 Switch on−−−−−−−−−−−−−1113 Enable operation−−−−−−−−−−−−11114 Dis

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L825.4.2. Automation status word (58C4hex)Data format: Unsigned16The parameter "automation status word" is used to show compactinformation a

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83Bit Name Meaning14 free 1Mapping to the 31st freely assignable input (L-1384)0 = do not activate function1 = activate function15 free 2Mapping to th

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L845.4.3. AIF process data automation moduleAt the moment, the following Lenze parameters can be mapped to thePROFIBUS process channel:Automation modu

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856. GlossaryAIF Automation interface. Interface between controller andautomation/field bus modules. Among others, it containsdefined process data.bin

Strona 87 - 6. Glossary

L86LSB Least significant bitMasterBus participant with independent sending authority. Mastersare hosts, like PLCs or PCs.Mixed operationOperating mode

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87QSPQuick-StopRepeaterRepeaters are used for the regeneration of the bus signals(RS485) and therefore for an extension of the bus system.Repeaters ar

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7Planning1. General information about PROFIBUSThe 2130IB interface module is used for serial connection of Lenzecontrollers with the standardized seri

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L88Index2130IB features 82130IB.V001 152130IB.V002 15AAbort (FMS) 49AIF 85AIF process data 78, 84automation control word 56Automation control w

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89LL-Cxxx 85LED green 14LED yellow 14LEMOC2 20Lenze code number 22Lenze data types 77Lenze parameters 77LWL-Verdrahtung 19Mmalfunction 66Malf

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