Yaskawa MP2300S Basic Module Bedienungsanleitung

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Model: JEPMC-MP2300S-E
Basic Module
Machine Controller MP2300S
USER'S MANUAL
MANUAL NO. SIEP C880732 00C
1
2
3
4
5
6
7
8
9
A
Overview
Specifications and Functions
Mounting and Wiring
Outline of Motion Control Systems
Built-in Ethernet Communications
Slave CPU Synchronous Function
Maintenance and Inspection
Troubleshooting
Appendices
MP2300S
100M
Ethernet
LINK
DC
DC
24V
RLY
OUT
0V
YAS K AWA
TEST
ALM
MTX
TRX
RUN
ERR
BAT
IP
SW
1
SW
2
ON
ON
CNFG
INT
SUP
MON
STOP
BATTERY
M-
I/II
E-INT
E-TEST
NO
NO
RDY
System Start Up and
Easy Programming
Seitenansicht 0
1 2 3 4 5 6 ... 459 460

Inhaltsverzeichnis

Seite 1 - Basic Module

Model: JEPMC-MP2300S-EBasic ModuleMachine Controller MP2300SUSER'S MANUALMANUAL NO. SIEP C880732 00C123456789AOverviewSpecifications and Functi

Seite 2

x Maintenance and Inspection Precautions Disposal Precautions General Precautions Do not attempt to disassemble the MP2300S.There is a risk of

Seite 3 - Using this Manual

3.1 Mounting MP2300S3.1.4 Replacing and Adding Optional Modules3-9Mounting and Wiring3.1.4 Replacing and Adding Optional ModulesUse the following p

Seite 4 -  Related Manuals

3.1 Mounting MP2300S3.1.4 Replacing and Adding Optional Modules3-103. Remove the Optional Module from the mounting base.Pull the top of the panel of

Seite 5 -  Copyrights

3.1 Mounting MP2300S3.1.4 Replacing and Adding Optional Modules3-11Mounting and Wiring( 3 ) Installing Optional Modules1. Insert Optional Modules.Ho

Seite 6 - Safety Information

3.2 Basic Module Connections3.2.1 Connectors3-123.2 Basic Module Connections3.2.1 ConnectorsThe following diagram shows the connectors for the Bas

Seite 7 - Safety Precautions

3.2 Basic Module Connections3.2.2 Power Supply Connector3-13Mounting and Wiring3.2.2 Power Supply Connector( 1 ) Specifications, Pin Arrangement, a

Seite 8 -  Installation

3.2 Basic Module Connections3.2.3 MECHATROLINK Connectors3-14( 2 ) Connection ProcedureThe power supply terminal has a removable connector. Use the

Seite 9 -  Wiring

3.2 Basic Module Connections3.2.3 MECHATROLINK Connectors3-15Mounting and Wiring( 2 ) CablesName and Specification Model Number LengthMECHATROLINK C

Seite 10 -  General Precautions

3.2 Basic Module Connections3.2.3 MECHATROLINK Connectors3-16( 3 ) Cable Connections between the MP2300S and I/O Units and the MP2300S and SERVO-PAC

Seite 11 - Warranty

3.2 Basic Module Connections3.2.3 MECHATROLINK Connectors3-17Mounting and Wiring( 4 ) Cable Connections between the MP2300S and SGD-N and SGDB-

Seite 12 - ( 4 ) Specifications Change

3.2 Basic Module Connections3.2.3 MECHATROLINK Connectors3-18( 6 ) Connection Example between MP2300S, SERVOPACK, and IO2310 Use MECHATROLINK cable

Seite 13 - Contents

xiWarranty( 1 ) Details of Warranty Warranty PeriodThe warranty period for a product that was purchased (hereinafter called “delivered product”) is

Seite 14

3.2 Basic Module Connections3.2.4 Ethernet Connector Details3-19Mounting and Wiring3.2.4 Ethernet Connector DetailsConnects to a personal computer

Seite 15

3.2 Basic Module Connections3.2.4 Ethernet Connector Details3-20( 3 ) Ethernet Connection ExampleThe following are examples of Ethernet network conn

Seite 16 - Revision History

3.2 Basic Module Connections3.2.4 Ethernet Connector Details3-21Mounting and WiringThe following are examples of Ethernet network connections via 10

Seite 17 - Overview

3.2 Basic Module Connections3.2.4 Ethernet Connector Details3-22 CautionHigh frequency wave noise from other devices in the installation environmen

Seite 18 - 1.1 MP2300S Features

3.2 Basic Module Connections3.2.5 RLY OUT Connector Details3-23Mounting and Wiring3.2.5 RLY OUT Connector DetailsThe RLY OUT connector is a termina

Seite 19 - 1.2 MP2300S Configuration

3.2 Basic Module Connections3.2.5 RLY OUT Connector Details3-24( 3 ) RLY OUT Connection ExampleThe following figure shows how to connect the RLY OUT

Seite 20 - 1.2.2 MP2300S Modules

3.2 Basic Module Connections3.2.6 System Connection Example3-25Mounting and Wiring3.2.6 System Connection ExampleThe following diagram shows a conn

Seite 21 - 1.3.1 Example

4-1System Start Up and Easy Programming4System Start Up and Easy ProgrammingThis chapter explains how to start up a model system using the programming

Seite 22 - Synchronization

4.1 System Startup Overview 4-24.1 System Startup OverviewThis chapter, starting from section 4.2, provides detailed information on each step in th

Seite 23

4.2 Preparation (step 1)4.2.1 Wiring4-3System Start Up and Easy Programming4.2 Preparation (step 1)This section explains the steps of “wiring,” “se

Seite 24 - ( 2 ) Modules

xii( 3 ) Suitability for Use1. It is the customer’s responsibility to confirm conformity with any standards, codes, or regulations that apply if t

Seite 25 - 1.5.1 Cables

4.2 Preparation (step 1)4.2.1 Wiring4-4[ a ] Required Equipment Caution• Install MPE720 Ver.6 in the personal computer before starting step 1.For i

Seite 26

4.2 Preparation (step 1)4.2.2 Self Configuration4-5System Start Up and Easy Programming4.2.2 Self ConfigurationRun the self configuration to automa

Seite 27 - MP2300S

4.2 Preparation (step 1)4.2.3 Test Operation4-64.2.3 Test OperationConfirm that the machine controller can command axis servo ON/OFF and jog operat

Seite 28 - 2.1.1 General Specifications

4.2 Preparation (step 1)4.2.3 Test Operation4-7System Start Up and Easy Programming2. Axis Selection and Servo ONSet an axis number in the Axis Wind

Seite 29 - × 130 mm × 108 mm

4.2 Preparation (step 1)4.2.3 Test Operation4-83. Jog OperationClick the Speed reference icon and set a speed reference value, and check that the ax

Seite 30 - 2.1.3 Function Lists

4.3 Programming (step 2)4.3.1 Programming Procedure4-9System Start Up and Easy Programming4.3 Programming (step 2)This section describes the proced

Seite 31

4.3 Programming (step 2)4.3.1 Programming Procedure4-104. Editing Motion ProgramUse the command input assist feature to insert INC and MOV Commands

Seite 32

4.4 Executing Motion (step 3)4.4.1 Registering Program Execution4-11System Start Up and Easy Programming4.4 Executing Motion (step 3)4.4.1 Registe

Seite 33 - 2.2 Basic Module

4.4 Executing Motion (step 3)4.4.2 Starting a Motion Program Using the Operation Control Panel4-124.4.2 Starting a Motion Program Using the Operati

Seite 34 - ( 2 ) Indicators

4.5 Starting Motion Program from an External Signal4.5.1 Overview4-13System Start Up and Easy Programming4.5 Starting Motion Program from an Extern

Seite 35 - ( 3 ) Switch Settings

xiiiContentsUsing this Manual - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - iiiSafety

Seite 36 - [ b ] SW2

4.5 Starting Motion Program from an External Signal4.5.2 Required Equipment4-14Mapping of the touch panel manufactured by Digital Electronics Corp.N

Seite 37

4.5 Starting Motion Program from an External Signal4.5.3 Creation Procedure4-15System Start Up and Easy Programming4.5.3 Creation Procedure1. Creat

Seite 38

4.5 Starting Motion Program from an External Signal4.5.3 Creation Procedure4-162. Registering Program Execution•A Task Al location Dialog Box will a

Seite 39

4.5 Starting Motion Program from an External Signal4.5.3 Creation Procedure4-17System Start Up and Easy Programming• Click the Save Icon to save the

Seite 40

5-1Outline of Motion Control Systems5Outline of Motion Control SystemsThis chapter describes the basic operation of MP2300S Motion Control Systems and

Seite 41

5.1 Startup Sequence and Basic Operation5.1.1 DIP Switch Settings5-25.1 Startup Sequence and Basic OperationThis section describes the MP2300S star

Seite 42

5.1 Startup Sequence and Basic Operation5.1.2 Startup Sequence5-3Outline of Motion Control Systems5.1.2 Startup SequenceThe startup sequence for th

Seite 43

5.1 Startup Sequence and Basic Operation5.1.3 Startup Sequence Operation Details5-45.1.3 Startup Sequence Operation Details( 1 ) Self-diagnosis at

Seite 44

5.2 User Programs5.2.1 Types and Execution Timing of User Program5-5Outline of Motion Control Systems5.2 User ProgramsUser programs for executing m

Seite 45

5.2 User Programs5.2.2 Motion Programs5-65.2.2 Motion ProgramsMotion programs are programs written in a text-based language called motion language.

Seite 46

xiv3.2 Basic Module Connections - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 3-123.2.1 Connectors - - - - - - - - - -

Seite 47

5.2 User Programs5.2.2 Motion Programs5-7Outline of Motion Control SystemsThis section explains the Group Definition screen.c No. of GroupSet a numb

Seite 48

5.2 User Programs5.2.2 Motion Programs5-8g Axis No.Set an axis number for the used axis.The axis number can be checked in the detailed screen of the

Seite 49

5.2 User Programs5.2.2 Motion Programs5-9Outline of Motion Control Systems( 2 ) How to Run a Motion ProgramThe following two methods are available f

Seite 50

5.2 User Programs5.2.2 Motion Programs5-10[ b ] Executing H Drawings by MSEE CommandMotion programs are always called from H drawings using the MSEE

Seite 51

5.2 User Programs5.2.2 Motion Programs5-11Outline of Motion Control Systems( 3 ) How to Designate a Motion ProgramThe following two methods are avai

Seite 52

5.2 User Programs5.2.2 Motion Programs5-12[ b ] Using an Indirect Designation to Call a Motion ProgramAn indirect designation method designates a mo

Seite 53

5.2 User Programs5.2.2 Motion Programs5-13Outline of Motion Control Systems( 4 ) Work RegisterConfigure and monitor a motion program via a work regi

Seite 54 - + 4 to OW+7

5.2 User Programs5.2.2 Motion Programs5-14[ a ] Status Flag of a Motion ProgramThe motion program status flag shows the execution status of the moti

Seite 55

5.2 User Programs5.2.2 Motion Programs5-15Outline of Motion Control Systems[ b ] Control SignalProgram control signals (e.g., program operation star

Seite 56

5.2 User Programs5.2.2 Motion Programs5-16 Timing Chart for Motion Program Control SignalsThe following figure shows an example of a timing chart f

Seite 57 - 2.2.5 Built-in SVB Module

xv6.2 Communication with Other MP Series - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 6-36.2.1 When the MP2300S Acts as Slave (autom

Seite 58

5.2 User Programs5.2.2 Motion Programs5-17Outline of Motion Control Systems[ d ] System Work NumberThe system work number n (setting range: 1 to 16)

Seite 59 - 1. Overview

5.2 User Programs5.2.2 Motion Programs5-18( 5 ) How to Operate a Work RegisterThe way to operate a work register of a motion program registered in t

Seite 60

5.2 User Programs5.2.2 Motion Programs5-19Outline of Motion Control Systems A Way to Immediately Control a Motion Program from External EquipmentM-

Seite 61

5.2 User Programs5.2.2 Motion Programs5-20 A Way to Control a Motion Program via a Sequence or Ladder ProgramWithout using the allocating function

Seite 62

5.2 User Programs5.2.2 Motion Programs5-21Outline of Motion Control Systems2. Example using a ladder program

Seite 63

5.2 User Programs5.2.2 Motion Programs5-22[ b ] A motion program referenced by a MSEE command from a ladder programWhen a motion program is referenc

Seite 64 - ( 3 ) Module Configuration

5.2 User Programs5.2.2 Motion Programs5-23Outline of Motion Control Systems2. Example using a ladder program

Seite 65

5.2 User Programs5.2.2 Motion Programs5-24( 6 ) Monitor the motion program execution information using S registerUsing S register (SW03200 to SW0419

Seite 66

5.2 User Programs5.2.2 Motion Programs5-25Outline of Motion Control Systems Register Areas for Motion Program Execution InformationSW03670SW03612SW

Seite 67

5.2 User Programs5.2.2 Motion Programs5-26 Details of Program Information Used by Work n+56+54+52+50+48+46+44+42+40+38+36+34+32+30+28+0+26+23+20+17

Seite 68

xviAppendices - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - A-1Appendix A System Registers List

Seite 69

5.2 User Programs5.2.3 Sequence Program5-27Outline of Motion Control Systems5.2.3 Sequence ProgramA sequence program is a program described with mo

Seite 70 - 2. Link Assignment Tab Page

5.2 User Programs5.2.3 Sequence Program5-28( 2 ) How to Designate a Sequence ProgramYou can only designate a sequence program directly. Indirect des

Seite 71

5.2 User Programs5.2.3 Sequence Program5-29Outline of Motion Control Systems( 3 ) Work RegisterMonitor a sequence program through a work register.A

Seite 72 - ( 5 ) SVB Definition

5.2 User Programs5.2.4 Ladder Drawings (DWG)5-305.2.4 Ladder Drawings (DWG)( 1 ) Types of DrawingsLadder programs are managed in units of ladder dr

Seite 73

5.2 User Programs5.2.4 Ladder Drawings (DWG)5-31Outline of Motion Control Systems( 2 ) Execution Control of Drawings[ a ] Execution ControlThe follo

Seite 74 - ( 1 ) Outline

5.2 User Programs5.2.4 Ladder Drawings (DWG)5-32[ c ] Hierarchical Structure of DrawingsEach processing program is made up of parent drawings, child

Seite 75 - ( 2 ) Example SVR Usage

5.2 User Programs5.2.4 Ladder Drawings (DWG)5-33Outline of Motion Control Systems[ d ] Drawing Execution Processing MethodThe execution processing o

Seite 76 - ( 4 ) SVR Operation

5.2 User Programs5.2.4 Ladder Drawings (DWG)5-34( 3 ) FunctionsFunctions are executed by calling them from parent, child, or grandchild drawings usi

Seite 77

5.3 Registers5.3.1 Types of Registers5-35Outline of Motion Control Systems5.3 RegistersThis section describes the types of registers used in MP2300

Seite 78 - × 2 sub parallels)

5.3 Registers5.3.1 Types of Registers5-36( 2 ) Function RegistersThe following table shows the registers that can be used with each function. n: De

Seite 79

1-1Overview1OverviewThis chapter explains an overview and features of the MP2300S Machine Controller.1.1 MP2300S Features - - - - - - - - - - - - - -

Seite 80 -  I/O Register Details

5.3 Registers5.3.1 Types of Registers5-37Outline of Motion Control Systems( 3 ) Register Ranges in ProgramsThe following figure shows DWG programs,

Seite 81

5.3 Registers5.3.2 Data Types5-385.3.2 Data TypesThere are five kinds of data: Bit, integer, double-length integer, real number, and address data.

Seite 82

5.3 Registers5.3.3 How to Use Subscripts i, j5-39Outline of Motion Control Systems5.3.3 How to Use Subscripts i, jTwo type of registers (i, j) are

Seite 83

5.3 Registers5.3.4 Register Designation5-405.3.4 Register DesignationRegisters can be specified directly by register number or by symbol (register

Seite 84

5.4 Self-configuration5.3.4 Register Designation5-41Outline of Motion Control Systems5.4 Self-configurationThe self-configuration function automati

Seite 85

5.4 Self-configuration5.4.1 How to Execute Self-Configuration5-425.4.1 How to Execute Self-ConfigurationThe following two methods are available for

Seite 86 - ( 5 ) Execution Scheduling

5.4 Self-configuration5.4.1 How to Execute Self-Configuration5-43Outline of Motion Control Systems[ b ] Self-configuration after Adding Devices Such

Seite 87

5.4 Self-configuration5.4.1 How to Execute Self-Configuration5-44( 2 ) Procedure Using MPE720Executing self-configuration from MPE720 allows self-co

Seite 88 - 2.3 Option Module

5.4 Self-configuration5.4.1 How to Execute Self-Configuration5-45Outline of Motion Control Systems5. If the following warning message is shown after

Seite 89

5.4 Self-configuration5.4.1 How to Execute Self-Configuration5-468. Click Start to read the module configuration definition from a controller.9. Cli

Seite 90 - 2.4.1 Basic Module

1.1 MP2300S Features 1-21.1 MP2300S FeaturesThe MP2300S is a small all-in-one machine controller, and successor to the MP2000 series in function an

Seite 91

5.4 Self-configuration5.4.1 How to Execute Self-Configuration5-47Outline of Motion Control Systems[ b ] Self Configuration of Each ModuleIf modules

Seite 92

5.4 Self-configuration5.4.1 How to Execute Self-Configuration5-484. While running the self-configuration, the following message is shown.5. If the f

Seite 93 - 3.1 Mounting MP2300S

5.4 Self-configuration5.4.1 How to Execute Self-Configuration5-49Outline of Motion Control Systems7. Click Individual, and only check Module Configu

Seite 94 - DIN rail

5.4 Self-configuration5.4.2 Definition Information Updated with Self-Configuration5-505.4.2 Definition Information Updated with Self-ConfigurationN

Seite 95 -  Fixing a DIN Rail

5.4 Self-configuration5.4.2 Definition Information Updated with Self-Configuration5-51Outline of Motion Control Systems[ c ] SVB Module DefinitionsM

Seite 96 - ( 2 ) Screwed Method

5.4 Self-configuration5.4.2 Definition Information Updated with Self-Configuration5-52[ d ] SVR Definition[ e ] M-EXECUTOR DefinitionType No. Name A

Seite 97 - 3.1.1 Method

5.5 Precaution on Using MP2300S5.5.1 Precautions when User Definition File is Configured/Changed5-53Outline of Motion Control Systems5.5 Precaution

Seite 98

5.5 Precaution on Using MP2300S5.5.2 Setting or Changing Module Configuration Definition Files5-54• Module Configuration Definition5.5.2 Setting o

Seite 99 -  Mount condition

5.5 Precaution on Using MP2300S5.5.3 Setting and Changing the Scan Time5-55Outline of Motion Control Systems5.5.3 Setting and Changing the Scan Tim

Seite 100 - Mounting and Wiring

5.5 Precaution on Using MP2300S5.5.3 Setting and Changing the Scan Time5-56( 2 ) Scan Time Set Value Examples 0.8-ms Maximum Scan Time and 1-ms Com

Seite 101 - Round knob

1.2 MP2300S Configuration1.2.1 Basic Module Appearance1-3Overview1.2 MP2300S ConfigurationThe MP2300S is configured with one Basic Module and an op

Seite 102

6-1Built-in Ethernet Communications6Built-in Ethernet CommunicationsThis chapter explains how to communicate with devices (PLC, touch panel, etc.) con

Seite 103 - 3.2.1 Connectors

6.1 Communication Methods 6-26.1 Communication MethodsThe following table provides the appropriate mode of communication for each remote device and

Seite 104 - 3.2.2 Power Supply Connector

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-3Built-in Ethernet Communications6.

Seite 105 - 8 to 9 mm

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-4 Setting ExampleThe following fig

Seite 106 - ( 2 ) Cables

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-5Built-in Ethernet Communications(

Seite 107 - I/O Unit or SERVOPACK

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-64. Set a communication setting in

Seite 108 - ( 5 ) Terminator Connections

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-7Built-in Ethernet Communications5.

Seite 109

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-87. Click Enable in the Automatical

Seite 110

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-9Built-in Ethernet Communications(

Seite 111 -  Connection Example 2

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-10e Set Subnet Mask (“255.255.255.0

Seite 112 -  Connection Example 2

Copyright © 2007 YASKAWA ELECTRIC CORPORATIONAll rights reserved. No part of this publication may be reproduced, stored in a retrieval system, or tra

Seite 113

1.2 MP2300S Configuration1.2.2 MP2300S Modules1-41.2.2 MP2300S ModulesThe following table shows the names and specifications of the Basic Module an

Seite 114

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-11Built-in Ethernet Communications4

Seite 115

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-12 Input/output definitions for me

Seite 116

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-13Built-in Ethernet Communications

Seite 117

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-14 Example of Using the Message Tr

Seite 118 - 4.1 System Startup Overview

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-15Built-in Ethernet CommunicationsC

Seite 119 - 4.2 Preparation (step 1)

6.2 Communication with Other MP Series6.2.1 When the MP2300S Acts as Slave (automatic receive function is used)6-16Continued from the previous pageT

Seite 120 - [ a ] Required Equipment

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-17Built-in Ethernet Commu

Seite 121 - 4.2.2 Self Configuration

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-18 Setting ExampleThe fo

Seite 122 - 4.2.3 Test Operation

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-19Built-in Ethernet Commu

Seite 123

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-203. Click the Easy Setti

Seite 124 - 3. Jog Operation

1.3 System Configuration1.3.1 Example1-5Overview1.3 System Configuration1.3.1 ExampleThe following diagram shows an example of system configuratio

Seite 125 - 4.3 Programming (step 2)

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-21Built-in Ethernet Commu

Seite 126 - 4. Editing Motion Program

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-227. Create a ladder prog

Seite 127

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-23Built-in Ethernet Commu

Seite 128 -  Caution

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-24 Parameter list settin

Seite 129 - 4.5.2 Required Equipment

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-25Built-in Ethernet Commu

Seite 130

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-26Continued from the prev

Seite 131 - 4.5.3 Creation Procedure

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-27Built-in Ethernet Commu

Seite 132

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-282. Set transmission par

Seite 133 - 5. Operation Check

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-29Built-in Ethernet Commu

Seite 134

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-304. Create a ladder prog

Seite 135 - 5.1.1 DIP Switch Settings

1.3 System Configuration1.3.2 Example of Distributed Synchronizing System1-6 For the details on the system configuration example, refer to 4.2.1 (

Seite 136 - 5.1.2 Startup Sequence

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-31Built-in Ethernet Commu

Seite 137 - ( 5 ) Online Self-diagnosis

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-32 Parameter list settin

Seite 138 - 5.2 User Programs

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-33Built-in Ethernet Commu

Seite 139 - 5.2.2 Motion Programs

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-34Continued from the prev

Seite 140 - Line number

6.2 Communication with Other MP Series6.2.2 When the MP2300S Acts as Slave (ladder program which uses a MSG-RCV function)6-35Built-in Ethernet Commu

Seite 141

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-366.2.3 When the MP2300S

Seite 142

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-37Built-in Ethernet Commun

Seite 143 - , MPS )

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-38( 1 ) How to Set up the

Seite 144 - ) in the MSEE command

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-39Built-in Ethernet Commun

Seite 145 - Motion program

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-40i Set a storage area (In

Seite 146 - ( 4 ) Work Register

1.4 MECHATROLINK Compatible Devices1.4.1 MECHATROLINK-I/II Compatible Devices1-7Overview1.4 MECHATROLINK Compatible Devices1.4.1 MECHATROLINK-I/II

Seite 147

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-41Built-in Ethernet Commun

Seite 148 - [ b ] Control Signal

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-42 How to set up transmis

Seite 149 - [ c ] Interpolation Override

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-43Built-in Ethernet Commun

Seite 150 - [ d ] System Work Number

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-44 Input/output definitio

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6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-45Built-in Ethernet Commun

Seite 152 - Allocation register

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-46 Example of Using the M

Seite 153 - M-EXECUTOR

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-47Built-in Ethernet Commun

Seite 154

6.2 Communication with Other MP Series6.2.3 When the MP2300S Acts as Master (I/O message communication function is used)6-48Continued from the previ

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6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-49Built-in Ethernet Comm

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6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-50 Setting ExampleThe f

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1.4 MECHATROLINK Compatible Devices1.4.2 MECHATROLINK-III Compatible Devices1-81.4.2 MECHATROLINK-III Compatible DevicesThe following devices suppo

Seite 158 - Executing program bit

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-51Built-in Ethernet Comm

Seite 159

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-524. Set a communication

Seite 160 - : Program number of SPS

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-53Built-in Ethernet Comm

Seite 161 - Sequence program

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-547. Create a ladder pro

Seite 162 -  Sequence program alarm

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-55Built-in Ethernet Comm

Seite 163 - 5.2.4 Ladder Drawings (DWG)

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-56 Parameter list setti

Seite 164 - [ a ] Execution Control

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-57Built-in Ethernet Comm

Seite 165 - DWG Description:

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-58Continued from the pre

Seite 166 - System starts

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-59Built-in Ethernet Comm

Seite 167 - ( 3 ) Functions

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-60( 2 ) How to Set up th

Seite 168 - 5.3 Registers

1.5 Cables and Accessories1.5.1 Cables1-9Overview1.5 Cables and Accessories1.5.1 CablesThe following table shows the cables that can be connected

Seite 169 - ( 2 ) Function Registers

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-61Built-in Ethernet Comm

Seite 170

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-624. Create a ladder pro

Seite 171 - 5.3.2 Data Types

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-63Built-in Ethernet Comm

Seite 172 - Equivalent

6.2 Communication with Other MP Series6.2.4 When the MP2300S Acts as Master (ladder program which uses a MSG-SND function)6-64 Parameter list setti

Seite 173 - 5.3.4 Register Designation

6.3 Communication with Touch Panel6.3.1 When the MP2300S Acts as Slave (automatic receive function is used)6-65Built-in Ethernet Communications6.3

Seite 174 - 5.4 Self-configuration

6.3 Communication with Touch Panel6.3.1 When the MP2300S Acts as Slave (automatic receive function is used)6-66 Setting ExampleThe following figure

Seite 175

6.3 Communication with Touch Panel6.3.1 When the MP2300S Acts as Slave (automatic receive function is used)6-67Built-in Ethernet Communications( 1 )

Seite 176 -  INIT Switch and RAM Data

6.3 Communication with Touch Panel6.3.1 When the MP2300S Acts as Slave (automatic receive function is used)6-684. Set a communication setting in the

Seite 177 - ( 2 ) Procedure Using MPE720

6.3 Communication with Touch Panel6.3.1 When the MP2300S Acts as Slave (automatic receive function is used)6-69Built-in Ethernet Communications5. Cl

Seite 178

6.3 Communication with Touch Panel6.3.1 When the MP2300S Acts as Slave (automatic receive function is used)6-70( 2 ) How to set up a touch panelThis

Seite 179

1.5 Cables and Accessories1.5.2 Accessories and Options1-101.5.2 Accessories and Options1.5.3 Software (Programming Tool)The MPE720, programming t

Seite 180

6.3 Communication with Touch Panel6.3.1 When the MP2300S Acts as Slave (automatic receive function is used)6-71Built-in Ethernet Communications Por

Seite 181

6.3 Communication with Touch Panel6.3.1 When the MP2300S Acts as Slave (automatic receive function is used)6-728. Click the setup button of the conn

Seite 182

6.3 Communication with Touch Panel6.3.1 When the MP2300S Acts as Slave (automatic receive function is used)6-73Built-in Ethernet Communications[ b ]

Seite 183 - [ b ] 218IFA Definition

6.3 Communication with Touch Panel6.3.1 When the MP2300S Acts as Slave (automatic receive function is used)6-74( 3 ) How to Start Communication1. Th

Seite 184 -  Master

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.1 When the MP2300S Acts as Slave (automatic receive

Seite 185 - [ e ] M-EXECUTOR Definition

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.1 When the MP2300S Acts as Slave (automatic receive

Seite 186

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.1 When the MP2300S Acts as Slave (automatic receive

Seite 187

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.1 When the MP2300S Acts as Slave (automatic receive

Seite 188

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.1 When the MP2300S Acts as Slave (automatic receive

Seite 189

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.1 When the MP2300S Acts as Slave (automatic receive

Seite 190 - MP2300S by Ethernet

2-1Specifications and Functions2Specifications and FunctionsThis chapter explains detailed specifications for the Basic Module and Optional Modules of

Seite 191 - 6.1 Communication Methods

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.1 When the MP2300S Acts as Slave (automatic receive

Seite 192 - MSG-SND function

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.1 When the MP2300S Acts as Slave (automatic receive

Seite 193 - MP2300S MP2300

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.2 When the MP2300S Acts as Master (I/O message commu

Seite 194

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.2 When the MP2300S Acts as Master (I/O message commu

Seite 195

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.2 When the MP2300S Acts as Master (I/O message commu

Seite 196

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.2 When the MP2300S Acts as Master (I/O message commu

Seite 197

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.2 When the MP2300S Acts as Master (I/O message commu

Seite 198 - Set transmission parameters

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.2 When the MP2300S Acts as Master (I/O message commu

Seite 199

6.4 Communication with PLC Manufactured by Mitsubishi Electric Corporation (MELSEC protocol)6.4.2 When the MP2300S Acts as Master (I/O message commu

Seite 200 - Line number = 1

7-1Slave CPU Synchronous Function7Slave CPU Synchronous FunctionThis chapter explains the slave CPU synchronous function details and the precautions f

Seite 201

2.1 Specifications2.1.1 General Specifications2-22.1 Specifications2.1.1 General SpecificationsItem SpecificationsEnvironmental ConditionsAmbient

Seite 202

7.1 Function 7-27.1 FunctionA slave CPU synchronous function synchronizes the master side high-speed scan cycle with the MP2300S high-speed scan cy

Seite 203 - Continued on the next page

7.2 Requirements and Setting of Execution7.2.1 Supported Version7-3Slave CPU Synchronous Function7.2 Requirements and Setting of Execution7.2.1 Su

Seite 204

7.2 Requirements and Setting of Execution7.2.3 How to Set up Slave CPU Synchronous Function7-47.2.3 How to Set up Slave CPU Synchronous FunctionThe

Seite 205

7.2 Requirements and Setting of Execution7.2.3 How to Set up Slave CPU Synchronous Function7-5Slave CPU Synchronous Function( 2 ) Slave Side Setting

Seite 206 - MSG-RCV function

7.2 Requirements and Setting of Execution7.2.3 How to Set up Slave CPU Synchronous Function7-62. Set the synchronous scan to High as a MECHATROLINK

Seite 207 -  Setting Example

7.2 Requirements and Setting of Execution7.2.4 How to Execute Slave CPU Synchronous Function7-7Slave CPU Synchronous Function7.2.4 How to Execute S

Seite 208

7.2 Requirements and Setting of Execution7.2.4 How to Execute Slave CPU Synchronous Function7-8( 2 ) Turning ON the Slave Side Power FirstAfter conf

Seite 209

7.3 Operation7.3.1 Input/Output Register7-9Slave CPU Synchronous Function7.3 Operation7.3.1 Input/Output RegisterThis section describes the detail

Seite 210 - 6. Check the setting values

7.3 Operation7.3.1 Input/Output Register7-10 Slave status detailsNote: When a receive error occurs, both system registers “I/O Error Count” (SW0020

Seite 211 - Circuit number=1

7.3 Operation7.3.1 Input/Output Register7-11Slave CPU Synchronous Function( 2 ) Slave Side Input/Output Data Input data detailsItem DescriptionScan

Seite 212

2.1 Specifications2.1.2 Product Specifications2-3Specifications and Functions2.1.2 Product SpecificationsThe following table shows the product spec

Seite 213

7.3 Operation7.3.1 Input/Output Register7-12 Output data details Control bit detailsNote: For information on SLVSC usage, refer to 7.3.6 Managemen

Seite 214

7.3 Operation7.3.1 Input/Output Register7-13Slave CPU Synchronous Function( 3 ) Input/Output Data Flow between Master and Slave From MP2000 (master

Seite 215

7.3 Operation7.3.1 Input/Output Register7-14 From MP2300S (slave) to MP2000 (master)DATA_RWA00h02h04h06h08h0Ah0Ch0Eh01h03h05h07h09h0Bh0Dh0Fhࠪࠬ࠹ࡓ૶↪1

Seite 216

7.3 Operation7.3.2 How to Determine Slave CPU Synchronous State7-15Slave CPU Synchronous Function7.3.2 How to Determine Slave CPU Synchronous State

Seite 217

7.3 Operation7.3.3 Calculation of Slave CPU Synchronous Delay Time7-167.3.3 Calculation of Slave CPU Synchronous Delay TimeIn a slave CPU synchrono

Seite 218

7.3 Operation7.3.4 How to Use Scan Counter7-17Slave CPU Synchronous Function7.3.4 How to Use Scan CounterA scan counter enables the reception devic

Seite 219

7.3 Operation7.3.5 How to Determine Input Error7-187.3.5 How to Determine Input Error( 1 ) How to Determine an Input Error Using an Application Pro

Seite 220

7.3 Operation7.3.5 How to Determine Input Error7-19Slave CPU Synchronous Function Application ExampleContinued on the next page

Seite 221

7.3 Operation7.3.5 How to Determine Input Error7-20Continued from the previous page

Seite 222

7.3 Operation7.3.5 How to Determine Input Error7-21Slave CPU Synchronous Function[ b ] Slave SideNote: For an error to be reported to an I/O Error S

Seite 223

iiiUsing this ManualThe MP2300S is a compact Machine Controller that contains the power supply, the CPU, I/O, and the communication functions in one

Seite 224

2.1 Specifications2.1.3 Function Lists2-42.1.3 Function Lists( 1 ) PLC Function SpecificationsThe following table shows the PLC function specificat

Seite 225 -  I/O Message Communication

7.3 Operation7.3.5 How to Determine Input Error7-22 Application ExampleContinued on the next page

Seite 226 - (Remote station)

7.3 Operation7.3.5 How to Determine Input Error7-23Slave CPU Synchronous FunctionContinued from the previous page( 2 ) How to Recover from Input Er

Seite 227

7.3 Operation7.3.6 Management to Resume Slave CPU Synchronization7-247.3.6 Management to Resume Slave CPU SynchronizationThe slave CPU synchronous

Seite 228

7.3 Operation7.3.6 Management to Resume Slave CPU Synchronization7-25Slave CPU Synchronous FunctionThe example below shows how the slave side applic

Seite 229 -  Data Update Timing

7.3 Operation7.3.6 Management to Resume Slave CPU Synchronization7-26 Application ExampleContinued on the next page

Seite 230

7.3 Operation7.3.6 Management to Resume Slave CPU Synchronization7-27Slave CPU Synchronous FunctionContinued from the previous page

Seite 231

7.4 Precautions7.4.1 Precautions on Usage7-287.4 Precautions7.4.1 Precautions on UsageWhen using the slave CPU synchronous function, the slave si

Seite 232

7.4 Precautions7.4.2 Effect of Error on Slave CPU Synchronous Operation7-29Slave CPU Synchronous Function When the MP2300S with a built-in SVB work

Seite 233

8-1Maintenance and Inspection8Maintenance and InspectionThis chapter explains daily and regular inspection items to ensure that the MP2300S can always

Seite 234

8.1 Daily Inspections 8-28.1 Daily InspectionsThe following table lists the daily inspection items.No. Inspection Item Inspection Details Criteria

Seite 235

2.1 Specifications2.1.3 Function Lists2-5Specifications and Functions( 2 ) Motion Control Function SpecificationsThe following table lists the motio

Seite 236

8.2 Regular Inspections8-3Maintenance and Inspection8.2 Regular InspectionsThis section explains inspection items that must be performed once or twi

Seite 237

8.3 Replacing the Basic Module Battery 8-48.3 Replacing the Basic Module BatteryThe Basic Module has one replaceable built-in battery. This battery

Seite 238

9-1Troubleshooting9TroubleshootingThis section describes the basic troubleshooting methods and provides a list of errors.9.1 Basic Flow of Troubleshoo

Seite 239

9.1 Basic Flow of Troubleshooting 9-29.1 Basic Flow of TroubleshootingWhen problems occur, it is important to quickly find the cause of the problem

Seite 240

9.2 LED Indicator Meanings9-3Troubleshooting9.2 LED Indicator MeaningsThe following table shows how to use the LED indicators to determine the opera

Seite 241

9.3 Problem Classification9.3.1 Overview9-49.3 Problem Classification9.3.1 OverviewThe following table shows MP2300S problems and LED indicator pa

Seite 242

9.3 Problem Classification9.3.2 MP2300S Error Check Flowchart9-5Troubleshooting9.3.2 MP2300S Error Check FlowchartUse the following to troubleshoot

Seite 243 - Circuit number = 1

9.4 Troubleshooting Details9.4.1 Operation Errors9-69.4 Troubleshooting Details9.4.1 Operation ErrorsIf an operation error occurs, one of the foll

Seite 244

9.4 Troubleshooting Details9.4.1 Operation Errors9-7TroubleshootingTroubleshooting Procedure Example 1This section describes the procedures for trou

Seite 245

9.4 Troubleshooting Details9.4.1 Operation Errors9-8Troubleshooting Procedure Example 2This section describes the procedures for troubleshooting if

Seite 246

2.1 Specifications2.1.3 Function Lists2-6Applicable SERVOPACKs MECHATROLINK-I•SERVOPACKsSGD-NSGDB-ANSGDH-E + NS100SGDS-1SGDV-1SGD

Seite 247

9.4 Troubleshooting Details9.4.2 I/O Errors9-9Troubleshooting9.4.2 I/O ErrorsAn I/O error may occur in the following cases.• An Optional Module ha

Seite 248

9.4 Troubleshooting Details9.4.3 Watchdog Timer Timeout Errors9-109.4.3 Watchdog Timer Timeout ErrorsIf a watchdog timer timeout error occurs, one

Seite 249

9.4 Troubleshooting Details9.4.5 System Errors9-11Troubleshooting9.4.5 System ErrorsIf a system error occurs, one of the following may be the cause

Seite 250

A-1AppendicesAppendicesA System Registers Lists - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -A-3A.1 System Service Re

Seite 251

A-2G MSG-SND/MSG-RCV Functions (Ethernet) - - - - - - - - - - - - - - - - - - - - - -A-51G.1 Message Transmit Function (MSG-SND)- - - - - - - -

Seite 252

Appendix A System Registers ListsA.1 System Service RegistersA-3AppendicesAppendix A System Registers ListsThe system registers are prepared by the

Seite 253

Appendix A System Registers ListsA.1 System Service RegistersA-4( 3 ) DWG.L OnlyThe following relays are reset at the start of the low-speed scan.0.

Seite 254 - (GP3000 series)

Appendix A System Registers ListsA.1 System Service RegistersA-5Appendices( 4 ) Scan Execution Status and Calendar( 5 ) Program Software Numbers and

Seite 255 - GP3000 series

Appendix A System Registers ListsA.2 System StatusA-6A.2 System StatusSystem operating status and error status is stored in registers SW00040 to SW0

Seite 256

Appendix A System Registers ListsA.3 System Error StatusA-7AppendicesA.3 System Error StatusSystem error status is stored in registers SW00050 to SW

Seite 257

2.2 Basic Module2.2.1 Outline of Functions2-7Specifications and Functions2.2 Basic ModuleThis section describes the functions, the external appeara

Seite 258

Appendix A System Registers ListsA.3 System Error StatusA-8* 1. The CPU system program version 2.75 or later: 0051H will be reported.The CPU system

Seite 259 - [ a ] How to Set up GP-Pro EX

Appendix A System Registers ListsA.4 User Operation Error StatusA-9AppendicesA.4 User Operation Error StatusError information for user operation err

Seite 260 -  Port Number

Appendix A System Registers ListsA.5 System Service Execution StatusA-10( 3 ) User Operation Error Codes 2A.5 System Service Execution StatusSystem

Seite 261

Appendix A System Registers ListsA.6 User Operation Error Status DetailsA-11AppendicesA.6 User Operation Error Status DetailsDetailed information ab

Seite 262 - GP-Pro EX Screen

Appendix A System Registers ListsA.7 System I/O Error StatusA-12A.7 System I/O Error StatusData that show details when a system I/O error occurs are

Seite 263

Appendix A System Registers ListsA.8 Compact Flash Card-Related System Registers (CPU-02 and CPU-03 Modules for the MP2200 Only)A-13AppendicesA.8 Co

Seite 264 - Corporation (MELSEC protocol)

Appendix A System Registers ListsA.9 Interrupt StatusA-14A.9 Interrupt StatusA.9.1 Interrupt Status ListA.9.2 Details on Interrupting Module( 1 ) Ra

Seite 265

Appendix A System Registers ListsA.10 Module InformationA-15AppendicesA.10 Module InformationName Register No. RemarksCPU informationSW00800 MP2300S

Seite 266

Appendix A System Registers ListsA.11 MPU-01 System StatusA-16A.11 MPU-01 System StatusName Register No. RemarksMPU-01 #1 Status SW01411Status of MP

Seite 267

Appendix A System Registers ListsA.12 Motion Program InformationA-17AppendicesA.12 Motion Program InformationSystem Work Number 1 to 8System Work N

Seite 268

2.2 Basic Module2.2.2 External Appearance, LED Indicators, and Switch Settings2-82.2.2 External Appearance, LED Indicators, and Switch Settings( 1

Seite 269

Appendix A System Registers ListsA.12 Motion Program InformationA-18 System Word Number 9 to 16Logical axis #12Program Current PositionSL03312 SL03

Seite 270

Appendix A System Registers ListsA.12 Motion Program InformationA-19AppendicesLogical axis #7Program Current PositionSL03766 SL03824 SL03882 SL03940

Seite 271 -  Complement

Appendix B SERVOPACK Parameter Data FlowB.1 Operations and Parameter Data FlowA-20Appendix B SERVOPACK Parameter Data Flow In systems connected to M

Seite 272

Appendix B SERVOPACK Parameter Data FlowB.1 Operations and Parameter Data FlowA-21Appendices( 2 ) Normal Operation1. Control software of the SERVOPA

Seite 273

Appendix B SERVOPACK Parameter Data FlowB.1 Operations and Parameter Data FlowA-222. The following figure shows an example of the SERVOPACK Tab in t

Seite 274

Appendix B SERVOPACK Parameter Data FlowB.1 Operations and Parameter Data FlowA-23Appendices3. The following figure shows a display example after ha

Seite 275

Appendix B SERVOPACK Parameter Data FlowB.1 Operations and Parameter Data FlowA-24( 5 ) Copying Current Values to Set Values (Input Data) in the SER

Seite 276

Appendix B SERVOPACK Parameter Data FlowB.1 Operations and Parameter Data FlowA-25Appendices2. The following figure shows a display example after ha

Seite 277

Appendix B SERVOPACK Parameter Data FlowB.1 Operations and Parameter Data FlowA-26( 6 ) Changing Parameters in the SERVOPACK Tab PageThe data flow f

Seite 278

Appendix B SERVOPACK Parameter Data FlowB.1 Operations and Parameter Data FlowA-27Appendices3. The following figure shows a display example after ha

Seite 279

2.2 Basic Module2.2.2 External Appearance, LED Indicators, and Switch Settings2-9Specifications and Functions( 3 ) Switch SettingsThe DIP switch set

Seite 280 - 7.1 Function

Appendix B SERVOPACK Parameter Data FlowB.1 Operations and Parameter Data FlowA-28( 7 ) Saving Data to Flash MemoryThe data flow for SERVOPACK param

Seite 281 - 7.2.1 Supported Version

Appendix C Initializing SERVOPACKsA-29AppendicesAppendix C Initializing SERVOPACKsThis section describes the procedure for initializing Σ-III SERVOPA

Seite 282 - Set the synchronous

Appendix D Initializing the Absolute EncoderD.1 Σ-V SERVOPACKA-30Appendix D Initializing the Absolute EncoderThe procedure for initializing an absol

Seite 283 - ( 2 ) Slave Side Setting

Appendix D Initializing the Absolute EncoderD.2 Σ-III SERVOPACKA-31AppendicesD.2 Σ-III SERVOPACK Refer to the following manuals for information on

Seite 284

Appendix D Initializing the Absolute EncoderD.3 Σ-II SERVOPACKA-32D.3 Σ-II SERVOPACK Refer to the following manuals for information on Σ-II SERVOPA

Seite 285 - 7.3.1 and 7.3.2

Appendix D Initializing the Absolute EncoderD.3 Σ-II SERVOPACKA-33Appendices( 2 ) Initialization Using the Built-in Panel Operator1. Press the MODE/

Seite 286 - Refer to 7.3.6

Appendix D Initializing the Absolute EncoderD.4 Σ-I SERVOPACKA-34D.4 Σ-I SERVOPACK Refer to the following manuals for information on Σ-I SERVOPACKS

Seite 287 - 7.3 Operation

Appendix D Initializing the Absolute EncoderD.4 Σ-I SERVOPACKA-35Appendices( 2 ) Initializing a 15-bit Absolute EncoderUse the following procedure t

Seite 288 -  Output data details

Appendix E Motion Parameter DetailsE.1 Fixed Parameter ListA-36Appendix E Motion Parameter DetailsThe motion parameters (fixed parameters, setting p

Seite 289 -  Input data details

Appendix E Motion Parameter DetailsE.1 Fixed Parameter ListA-37Appendices30Encoder Selection0: Incremental Encoder1: Absolute Encoder2: Absolute Enc

Seite 290 -  Control bit details

2.2 Basic Module2.2.2 External Appearance, LED Indicators, and Switch Settings2-10[ b ] SW2Sets the Ethernet port condition and other operating cond

Seite 291

Appendix E Motion Parameter DetailsE.2 Setting Parameter ListA-38E.2 Setting Parameter ListRegister No. Name Contents SVB SVROW00RUN CommandSettin

Seite 292

Appendix E Motion Parameter DetailsE.2 Setting Parameter ListA-39AppendicesOW04Function Setting 2Bits 0 to 3: Latch Detection Signal Selection0: −

Seite 293 - 7 6 5 4 3 2 1 0

Appendix E Motion Parameter DetailsE.2 Setting Parameter ListA-40OW09Motion Command Control FlagBit 0: Holds a Command. (0: OFF/1: ON)Yes YesBit 1

Seite 294 - × 2 + 1 ms

Appendix E Motion Parameter DetailsE.2 Setting Parameter ListA-41AppendicesOL2CLatch Zone Upper Limit Setting1 = 1 reference unitYesOW2EPosition

Seite 295 -  Slave processing

Appendix E Motion Parameter DetailsE.2 Setting Parameter ListA-42* Valid only when using an MP2300SCPU ver 2.61 or later and Σ-V series servo drive.

Seite 296 - [ a ] Master Side

Appendix E Motion Parameter DetailsE.3 Monitoring Parameter ListA-43AppendicesE.3 Monitoring Parameter List Register No. Name Contents SVB SVRIW00

Seite 297 -  Application Example

Appendix E Motion Parameter DetailsE.3 Monitoring Parameter ListA-44IW09Motion CommandStatusBit 0: Command Execution FlagYes Ye sBit 1: Command Ho

Seite 298

Appendix E Motion Parameter DetailsE.3 Monitoring Parameter ListA-45AppendicesIL20Speed Reference Output Monitorpulse/sYesIL22 to IL2A− Reserv

Seite 299 - [ b ] Slave Side

Appendix E Motion Parameter DetailsE.3 Monitoring Parameter ListA-46* Valid only when using an MP2300SCPU ver 2.61 or later and Σ-V series servo dri

Seite 300

Appendix F Simple Connection Function of the Engineering ToolF.1 PreparationA-47AppendicesAppendix F Simple Connection Function of the Engineering T

Seite 301

2.2 Basic Module2.2.3 Specifications2-11Specifications and Functions2.2.3 Specifications( 1 ) Hardware SpecificationsThe following table shows hard

Seite 302

Appendix F Simple Connection Function of the Engineering ToolF.2 ProcedureA-483. Turn ON E-INIT of DIP switch (SW2) in the MP2300S main unit. 4. Tur

Seite 303

Appendix F Simple Connection Function of the Engineering ToolF.2 ProcedureA-49Appendices8. Select Ethernet (LP) (IP:192.168.1.2) as the communicatio

Seite 304

Appendix F Simple Connection Function of the Engineering ToolF.2 ProcedureA-5010. Select the found controller and click the Connection Button. MPE72

Seite 305

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-51AppendicesAppendix G MSG-SND/MSG-RCV Functions (Ethernet)G

Seite 306 - 7.4 Precautions

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-52G.1.2 I/O Item Details of the Message Transmit Function( 1

Seite 307

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-53Appendices5. Cir-No (line number)Specify a circuit number

Seite 308 - Maintenance and Inspection

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-547. Param (parameter list start address)Specify the start a

Seite 309 - 8.1 Daily Inspections

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-55Appendices3. Error (error occurred)Specify a bit that repo

Seite 310 - PROHIBITED

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-56G.1.3 Message Transmit Function Parameter List (Param) Ove

Seite 311 - Red lead Black lead

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-57AppendicesG.1.4 Function Setting and Parameter Details for

Seite 312 - Troubleshooting

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-122.2.4 218IFA Module (Ethernet)( 1 ) Overview of 218IFA Module FunctionsMP2300S built-in 218IFA mo

Seite 313

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-58( 2 ) Process Result (PARAM00)Process result is output to

Seite 314 - 9.2 LED Indicator Meanings

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-59Appendices( 3 ) Status (PARAM00)Outputs status of the comm

Seite 315 - 9.3.1 Overview

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-60( d ) PARAMETER (parameter)When RESULT(process result) = 4

Seite 316

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-61Appendices( 4 ) Connection Number (PARAM02)Specify the rem

Seite 317 - Index error

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-62( 6 ) Function Code (PARAM04)Set a function code to transm

Seite 318

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-63Appendices( 7 ) Data Address (PARAM05)Specify the start ad

Seite 319 - ■ Complement

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-64( 8 ) Data Size (PARAM06)Set the data size (number of bits

Seite 320

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-65Appendices( 9 ) Remote CPU Number (PARAM07)Set a remote CP

Seite 321

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-66( 11 ) Reserved by System 1 (PARAM12)Used by system (the c

Seite 322

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-67AppendicesG.1.5 Function Setting and Parameter Details for

Seite 323 - Appendices

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-13Specifications and Functions( 2 ) Specification of 218IFA ModuleThe following table shows the spec

Seite 324 - MSG-SND

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-68( 5 ) Option (PARAM03)Choose a unique setting for each com

Seite 325 - 2.0s 2.0s

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-69Appendices( 7 ) Data Address (PARAM05)Specify the start ad

Seite 326 - ( 3 ) DWG.L Only

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-70( 8 ) Data Size (PARAM06)Set the data size (number of bits

Seite 327

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-71Appendices( 9 ) Remote CPU Number (PARAM07)Refer to G.1.4

Seite 328 - A.2 System Status

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-72G.1.6 Function Setting and Parameter Details for MODBUS/TC

Seite 329

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-73Appendices( 4 ) Connection Number (PARAM02)Refer to G.1.4

Seite 330 - A.3 System Error Status

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-74( 7 ) Data Address (PARAM05)Specify the start address of t

Seite 331

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-75Appendices2. Address tableAn address table used for the r

Seite 332

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-76( 9 ) Remote CPU Number (PARAM07)Refer to G.1.4 Function S

Seite 333

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-77AppendicesG.1.7 Function Setting and Parameter Details for

Seite 334 - A.7 System I/O Error Status

iv Related ManualsThe following table lists the manuals relating to the MP2300S. Refer to these manuals as required. Manual Name Manual Number Co

Seite 335

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-14uously received at an interval shorter than the startup interval of the MSG-RCV function.

Seite 336 - A.9.1 Interrupt Status List

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-78( 2 ) Process Result (PARAM00)The process result is output

Seite 337 - A.10 Module Information

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-79Appendices( 3 ) Status (PARAM01)Outputs status of the comm

Seite 338 - A.11 MPU-01 System Status

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-80( d ) PARAMETER (parameter)When RESULT (process result) =

Seite 339

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-81Appendices( 6 ) Data Size (PARAM06)Set the data size (numb

Seite 340 -  System Word Number 9 to 16

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-82G.1.8 Relationship between Data Address, Data Size, and Of

Seite 341 - (cont’d)

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-83Appendices( 2 ) When WritingFig. G.6 Data Flow when Writi

Seite 342 - ( 1 ) Power ON

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-84Example: When reading coil state with offset:The various s

Seite 343 - ( 2 ) Normal Operation

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.1 Message Transmit Function (MSG-SND)A-85Appendices• Relationship with the Data of the Remote Devic

Seite 344 - HDD in personal computer

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-86G.2 Message Receive Function (MSG-RCV)This section explains

Seite 345

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-87AppendicesG.2.2 I/O Item Details of the Message Receive Fun

Seite 346 - PACK Tab and displays

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-15Specifications and Functions( 3 ) Module Configuration Definition(a) Module Configuration Definiti

Seite 347

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-885. Cir-No (circuit number)Specify a circuit number for the

Seite 348

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-89Appendices7. Param (parameter list start address)Specify th

Seite 349

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-90Note: For more information about the error cause, refer to

Seite 350

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-91AppendicesG.2.3 Message Receive Function Parameter List (Pa

Seite 351

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-92( 1 ) MEMOBUS Parameter List* It is IN/OUT for MODBUS/TCP.

Seite 352 - D.1 Σ-V SERVOPACK

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-93AppendicesG.2.4 Function Setting and Parameter Details for

Seite 353 - D.2 Σ-III SERVOPACK

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-94( 2 ) Process Result (PARAM00)The process result is output

Seite 354 - D.3 Σ-II SERVOPACK

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-95Appendices( 3 ) Status (PARAM01)Outputs status of the commu

Seite 355

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-96[ d ] PARAMETER (parameter)When RESULT(process result) = 4

Seite 356 - D.4 Σ-I SERVOPACK

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-97AppendicesFig. G.11 218IF Parameter Setting Screen for the

Seite 357 - Key location

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-16( 4 ) 218IFA Module Detailed Screen(a) Displaying the 218IFA Module Detailed WindowThe 218IFA Mo

Seite 358 - E.1 Fixed Parameter List

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-98( 6 ) Function Code (PARAM04)Received function code is outp

Seite 359 - E.1 Fixed Parameter List

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-99Appendices( 10 ) Offset (PARAM08 to PARAM11)Specify an offs

Seite 360 - E.2 Setting Parameter List

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-100( 11 ) Write Range (PARAM12, PARAM13)Sets an available add

Seite 361

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-101AppendicesG.2.5 Function Setting and Parameter Details for

Seite 362

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-102( 5 ) Option (PARAM03)A unique value is output for each co

Seite 363

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-103Appendices( 10 ) Offset (PARAM08 to PARAM11)Specify an off

Seite 364

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-104( 11 ) Write Range (PARAM12, PARAM13)Sets an available add

Seite 365

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-105AppendicesG.2.6 Function Setting and Parameter Details for

Seite 366

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-106( 3 ) Status (PARAM01)Refer to G.2.4 Function Setting and

Seite 367

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-107Appendices( 7 ) Data Address (PARAM05)A data address reque

Seite 368

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-17Specifications and Functions(b) 218IFA Module Detailed WindowThe 218IFA Module Detailed Window is

Seite 369 - F.2 Procedure

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-108( 11 ) Write Range (PARAM12, PARAM13)Sets an available add

Seite 370 - E-INIT 2

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-109AppendicesG.2.7 Function Setting and Parameter Details for

Seite 371 -  Controller search function

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-110( 2 ) Process Result (PARAM00)The process result is output

Seite 372 - Personal computer IP address

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-111Appendices( 3 ) Status (PARAM01)Outputs status of the comm

Seite 373

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-112[ d ] PARAMETER (parameter)When RESULT (process result) =

Seite 374 - ( 1 ) Input Item

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-113Appendices( 7 ) Write Range HI (PARAM13)Sets an available

Seite 375

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-114G.2.8 Relationship between Data Address, Data Size, and Of

Seite 376 - 1. Busy (in process)

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-115Appendices( 2 ) When WritingData flow when writingWrite ra

Seite 377 - 3. Error (error occurred)

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-116Example: “Writes to multiple holding registers” with offse

Seite 378 - ( 1 ) MEMOBUS Parameter List

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.2 Message Receive Function (MSG-RCV)A-117Appendices• Relationship with the Remote Device DataThe fo

Seite 379 - BUS Protocols

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-18 Transmission Parameter Setting ItemsSets local transmission parameters for the 218IFA module.The

Seite 380 - PARAM09 (input relay offset)

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.3 Communication Buffer ChannelA-118G.3 Communication Buffer ChannelA communication buffer channel i

Seite 381 - ( 3 ) Status (PARAM00)

Appendix G MSG-SND/MSG-RCV Functions (Ethernet)G.3 Communication Buffer ChannelA-119AppendicesFig. G.15 Schematic Diagram for Communication Buffer

Seite 382 - ( d ) PARAMETER (parameter)

Appendix H Optional FunctionsH.1 Clearing D Registers at StartupA-120Appendix H Optional Functions H.1 Clearing D Registers at Startup ( 1 ) Overvie

Seite 383

Appendix H Optional FunctionsH.2 SecurityA-121AppendicesH.2 Security ( 1 ) Overview of FunctionsSecurity functions set a password (security key) to

Seite 384 - ( 6 ) Function Code (PARAM04)

Appendix H Optional FunctionsH.2 SecurityA-122( 4 ) Operation Procedure[ a ] Opening the Security Setting Dialog Box Make the security settings usi

Seite 385 - ( 7 ) Data Address (PARAM05)

Appendix H Optional FunctionsH.2 SecurityA-123Appendices[ b ] New Security SettingsMake a new security setting in the Security Setting Dialog Box. 1

Seite 386 - ( 8 ) Data Size (PARAM06)

Appendix H Optional FunctionsH.2 SecurityA-124[ c ] Changing the Restriction PrivilegeChange the restriction privilege with the security settings ma

Seite 387

Appendix H Optional FunctionsH.2 SecurityA-125Appendices[ d ] Changing the File Reading RestrictionChange the file reading restriction with the secu

Seite 388

Appendix H Optional FunctionsH.2 SecurityA-126A dialog box for changing the security key will be displayed as shown in the following figure. 2. Ente

Seite 389 - ( 3 ) Status (PARAM01)

Appendix H Optional FunctionsH.2 SecurityA-127Appendices( 5 ) Security Operation [ a ] Privilege Settings in User Applications Privilege settings e

Seite 390 - ( 5 ) Option (PARAM03)

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-19Specifications and Functions Detailed Setting Screen of Transmission Parameter SettingSets the en

Seite 391

Appendix H Optional FunctionsH.2 SecurityA-128( 7 ) Security-related System RegistersThe security setting status can be checked by using the followi

Seite 392

Appendix H Optional FunctionsH.3 Battery Backup for Table DataA-129AppendicesH.3 Battery Backup for Table Data ( 1 ) Overview of FunctionsFor the MP

Seite 393

Appendix H Optional FunctionsH.3 Battery Backup for Table DataA-130( 5 ) Setting Procedure for Using Battery Backup MemoryUse the following procedur

Seite 394

Appendix H Optional FunctionsH.3 Battery Backup for Table DataA-131Appendices4. Enter the required data, and then click the Save icon.5. Return to t

Seite 395

Appendix H Optional FunctionsH.3 Battery Backup for Table DataA-132( 6 ) Precautions When Using Battery Backup for Table Dataa) When you have create

Seite 396

Appendix I Installing MPE720 Version 6A-133AppendicesAppendix I Installing MPE720 Version 6  MPE720MPE720 Version 6 (CPMC-MPE770) is the Engineerin

Seite 397

IndexIndex-1INDEXSymbols# registers - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 5-35*****I/O - - - - - - - - - - - -

Seite 398

IndexIndex-2how to operate work register - - - - - - - - - - - - - - - - - - - - - - - - - 5-18how to use scan counter - - - - - - - - - - - - - - -

Seite 399 - ( b ) 218IF Setting Example

IndexIndex-3program control method - - - - - - - - - - - - - - - - - - - - - - - - - - - - 2-52program current position - - - - - - - - - - - - - - -

Seite 400 - 83H Data size error

Revision HistoryThe revision dates and numbers of the revised manuals are given on the bottom of the back cover.MANUAL NO.ޓSIEP C880732 00APublished i

Seite 401

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-20 Message Communication Item of Connection Parameter SettingSets the connection parameters for the

Seite 402 - ( 5 ) Data Address (PARAM05)

IRUMA BUSINESS CENTER (SOLUTION CENTER)480, Kamifujisawa, Iruma, Saitama, 358-8555, JapanPhone 81-4-2962-5151 Fax 81-4-2962-6138http://www.yaskawa

Seite 403

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-21Specifications and FunctionsCodeASCIIBINRTUSelect a code type for the message communication data.

Seite 404 - Function

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-22 Simple Setting Screen for Message CommunicationGraphically sets connection parameters for each c

Seite 405 - ( 2 ) When Writing

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-23Specifications and Functions Automatic Receive Setting Screen for Message CommunicationThe automa

Seite 406

v Terms Used to Describe “Torque”Although the term “torque” is commonly used when describing rotary servomotors and “force” or “thrust” are used wh

Seite 407

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-24The following table provides the valid setting items for each communication protocol type.Note: √

Seite 408

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-25Specifications and Functions I/O Message Communication Item Connection Parameter SettingSets conn

Seite 409

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-26* 1. “xxxx” represents a start I/O register number specified by the 218IFA cell in the detailed fi

Seite 410 - 5. Cir-No (circuit number)

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-27Specifications and Functions Easy Setting Window for I/O Message CommunicationGraphically adjusts

Seite 411

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-28In addition, click the Default Button to set the default values for data code type, local I/O regi

Seite 412 - [When Error Occurred]

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-29Specifications and Functions2. Status tabIn the Status Tab, each setting for the transmission defi

Seite 413

2.2 Basic Module2.2.4 218IFA Module (Ethernet)2-30Note: 1. Transmission statusIn online mode, displays the transmission status for each connection.

Seite 414

2.2 Basic Module2.2.5 Built-in SVB Module2-31Specifications and Functions2.2.5 Built-in SVB Module( 1 ) Overview[ a ] About SVB ModuleThe SVB Modul

Seite 415

2.2 Basic Module2.2.5 Built-in SVB Module2-32[ d ] System Configuration ExampleThe following diagram shows a system configuration example. Use the

Seite 416 - PARAM09 (input relay offset)

2.2 Basic Module2.2.5 Built-in SVB Module2-33Specifications and Functions[ e ] Synchronization between Modules1. OverviewMP2300S Machine Controller

Seite 417

viSafety InformationThe following conventions are used to indicate precautions in this manual. These precautions are provided to ensure the safe o

Seite 418 - [ d ] PARAMETER (parameter)

2.2 Basic Module2.2.5 Built-in SVB Module2-343. Timing At Which Modules Are SynchronizedModules are automatically synchronized when the power supply

Seite 419

2.2 Basic Module2.2.5 Built-in SVB Module2-35Specifications and Functions( 2 ) SpecificationsThe specifications of built-in and optional SVB Modules

Seite 420

2.2 Basic Module2.2.5 Built-in SVB Module2-36Servo ControlCommunication MethodSingle-send (communication cycle = transmission cycle) synchronous com

Seite 421 - : Available, –: Not available

2.2 Basic Module2.2.5 Built-in SVB Module2-37Specifications and Functions[ b ] MECHATROLINK Communication Specifications* Up to 16 stations can be c

Seite 422

2.2 Basic Module2.2.5 Built-in SVB Module2-38 Transmission Distance and Maximum No. of Slave Stations* The values in parentheses apply when a JEPMC

Seite 423

2.2 Basic Module2.2.5 Built-in SVB Module2-39Specifications and FunctionsThe following table lists the items shown in the Module Configuration Windo

Seite 424

2.2 Basic Module2.2.5 Built-in SVB Module2-40( 4 ) MECHATROLINK Transmission Definition[ a ] How to Open the MECHATROLINK Transmission Definition Wi

Seite 425

2.2 Basic Module2.2.5 Built-in SVB Module2-41Specifications and Functions[ b ] MECHATROLINK Transmission Definition Window DetailsThe MECHATROLINK T

Seite 426

2.2 Basic Module2.2.5 Built-in SVB Module2-42* 1. Hidden for MECHATROLINK-I* 2. Hidden for MECHATROLINK-II Transmission Bytes, Communication Cycle

Seite 427 - [ b ] 218IF Setting Example

2.2 Basic Module2.2.5 Built-in SVB Module2-43Specifications and Functions Communication Cycle That Can be SetThe communication cycle that can be se

Seite 428

viiSafety PrecautionsThe following precautions are for checking products on delivery, storage, transportation, installation, wiring, operation, appl

Seite 429

2.2 Basic Module2.2.5 Built-in SVB Module2-442. Link Assignment Tab PageThe data of the slave devices (MECHATROLINK connected devices such as SERVOP

Seite 430

2.2 Basic Module2.2.5 Built-in SVB Module2-45Specifications and Functions3. I/O Map TabThe status allocated to I/O registers is displayed. The I/O

Seite 431

2.2 Basic Module2.2.5 Built-in SVB Module2-46( 5 ) SVB DefinitionThe SVB Definition file defines the motion parameters (motion fixed parameters, mot

Seite 432

2.2 Basic Module2.2.5 Built-in SVB Module2-47Specifications and Functions3. Click the Fixed Parameters, Setup Parameters, or Monitor Tab to display

Seite 433

2.2 Basic Module2.2.6 SVR Virtual Motion Module2-482.2.6 SVR Virtual Motion Module( 1 ) OutlineThe Virtual Motion Module is a software module provi

Seite 434 - ( 5 ) Data Size (PARAM06)

2.2 Basic Module2.2.6 SVR Virtual Motion Module2-49Specifications and Functions( 2 ) Example SVR UsageThe SVR is used in the following two applicati

Seite 435

2.2 Basic Module2.2.6 SVR Virtual Motion Module2-50( 4 ) SVR Operation[ a ] SVR Execution TimingThe SVR is processed at the beginning of the high-sp

Seite 436

2.2 Basic Module2.2.7 M-EXECUTOR Module (Motion Program Executor)2-51Specifications and Functions2.2.7 M-EXECUTOR Module (Motion Program Executor)T

Seite 437

2.2 Basic Module2.2.7 M-EXECUTOR Module (Motion Program Executor)2-52( 2 ) M-EXECUTOR Module Specification[ a ] Programs Capable of Registration in

Seite 438

2.2 Basic Module2.2.7 M-EXECUTOR Module (Motion Program Executor)2-53Specifications and Functions( 3 ) Module Configuration Definition(a) Details of

Seite 439

viii Storage and Transportation Installation Do not store or install the MP2300S in the following locations.There is a risk of fire, electrical

Seite 440

2.2 Basic Module2.2.7 M-EXECUTOR Module (Motion Program Executor)2-54 I/O Register DetailsAn I/O register assigned to M-EXECUTOR is used to run a m

Seite 441

2.2 Basic Module2.2.7 M-EXECUTOR Module (Motion Program Executor)2-55Specifications and Functions( 4 ) Detailed ScreenThis section describes the M-E

Seite 442 - ( 2 ) Supported Versions

2.2 Basic Module2.2.7 M-EXECUTOR Module (Motion Program Executor)2-56g Execution typeSets the program execution type.h SettingSets the a program des

Seite 443

2.2 Basic Module2.2.7 M-EXECUTOR Module (Motion Program Executor)2-57Specifications and Functions Control Register Mapping WindowThe control regist

Seite 444 - ( 4 ) Operation Procedure

2.2 Basic Module2.2.7 M-EXECUTOR Module (Motion Program Executor)2-58f Allocation registerData is exchanged between mapping and M-EXECUTOR control r

Seite 445

2.2 Basic Module2.2.7 M-EXECUTOR Module (Motion Program Executor)2-59Specifications and Functions Program Execution Registration Screen (M-EXECUTOR

Seite 446 - H.2 Security

2.2 Basic Module2.2.7 M-EXECUTOR Module (Motion Program Executor)2-60( 5 ) Execution SchedulingPrograms registered in M-EXECUTOR are executed on the

Seite 447

2.2 Basic Module2.2.7 M-EXECUTOR Module (Motion Program Executor)2-61Specifications and FunctionsAn execution example is as follows:• M-EXECUTOR pr

Seite 448 - [ f ] Releasing Security

2.3 Option Module2.3.1 Option Module Overview List2-622.3 Option ModuleThis section provides an option module overview. For more information on its

Seite 449

2.3 Option Module2.3.1 Option Module Overview List2-63Specifications and FunctionsInput/Out-put ModuleLIO-01/LIO-02 ModuleDigital I/O and pulse coun

Seite 450

ix Wiring Selecting, Separating, and Laying External Cables Check the wiring to be sure it has been performed correctly.There is a risk of motor

Seite 451

2.4 External Appearance2.4.1 Basic Module2-642.4 External AppearanceThe external appearance of the basic module is as follows:2.4.1 Basic Module*

Seite 452 - Use the following procedure

2.4 External Appearance2.4.2 Basic Module with Metal Fittings2-65Specifications and Functions2.4.2 Basic Module with Metal Fittings/252 x φ5 ho

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3-1Mounting and Wiring3Mounting and WiringThis chapter explains how to handle MP2300S and the connection methods for each module.3.1 Mounting MP2300S

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3.1 Mounting MP2300S3.1.1 Method3-23.1 Mounting MP2300S3.1.1 MethodThere are two methods for mounting MP2300S.• Using DIN rail (standard)• Using

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3.1 Mounting MP2300S3.1.1 Method3-3Mounting and Wiring[ b ] Procedure for Mounting to DIN RailUse the following procedure to attach the DIN rail mou

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3.1 Mounting MP2300S3.1.1 Method3-4 Fixing a DIN RailMake sure to fix a DIN rail at 300 mm or less pitch as shown in the figure below.3. Hook the M

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3.1 Mounting MP2300S3.1.1 Method3-5Mounting and Wiring( 2 ) Screwed MethodUse a panel mounting clamp (optional) by the following procedure to mount

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3.1 Mounting MP2300S3.1.1 Method3-64. Push the MP2300S mounted clamp onto the mounting plate as shown in the figure below, and use fourmounting scre

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3.1 Mounting MP2300S3.1.2 MP2300S Mount Direction3-7Mounting and Wiring3.1.2 MP2300S Mount DirectionBe sure to mount the MP2300S using DIN rail or

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3.1 Mounting MP2300S3.1.3 Space Required for Mounting MP2300S3-83.1.3 Space Required for Mounting MP2300SInstall MP2300S so that enough space is le

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