Iai-america RCS-C Uživatelský manuál

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Strany 1 - RCS-C Type

Operation Manual Nineteenth Edition RCS Series ROBO Cylinder Controller RCS-C Type

Strany 2 - CAUTION

(1) Message Alarms ... 93 (2) Oper

Strany 3 - Caution

90 6.3.3 Parameters Relating to External Interface ● Hold input disable selection Parameter No. 15 sets whether to enable or disable the hold in

Strany 4

Appendix 91Appendix 7. Troubleshooting 7.1 What to Do When A Problem Occurs If you encountered a problem, follow the steps below to conduct the s

Strany 5

92 7.2 Alarm Level Classification The alarms are classified into three levels based on the corresponding symptoms. Alarm level ALM lamp *Alarm

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Appendix 93Appendix 7.4 Alarms, Causes and Actions (1) Message Alarms Code Error Cause/action 040 Emergency stop Cause: An emergency stop stat

Strany 7 - Before Use

94 (2) Operation Cancellation Alarms Code Error Cause/action 0B0 Bank 30 data error Cause: Out-of-range or invalid data is included in the par

Strany 8 - Table of Contents

Appendix 95Appendix Code Error Cause/action 0CA Overheat The surrounding air temperature of the power transistor in the controller rose excessiv

Strany 9

96 (3) Cold Start Alarms Code Error Cause/action 0C8 Overcurrent Cause: The output current from the power circuit became abnormally high. Th

Strany 10

Appendix 97Appendix Code Error Cause/action 0E5 Encoder receive error The controller and encoder exchange position data via serial communication.

Strany 11 - 1. Overview

98 Code Error Cause/action 0E7 Phase A/B/Z open Encoder signal cannot be detected properly. Cause: [1] Open encoder extension cable or supplie

Strany 12

Appendix 99Appendix 7.5 Messages Displayed during Operations Using Teaching Pendant or PC Software The warning messages that may be displayed duri

Strany 13 - 1.3 Safety Precautions

1 1. Overview 1.1 Introduction Thank you for purchasing the RCS controller. This manual explains the features and operating procedures of the prod

Strany 14

100 Code Message Description 20C CSTR-ON during operation The start signal (CSTR) was turned ON by the PLC while the actuator was moving. As a

Strany 15 - 1.5.2 Power Supply

Appendix 101Appendix * Appendix Specification List of Supported Actuators (Note 1) The figure i

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102 Appendix (Note 1) The figure in each elongated circle represents the maximum speed for the applicable stroke(s). (N

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Appendix 103Appendix Distance from point of action Flat Type (F45, 55) - Moments and Loading Capacity The directions of moments generated around t

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104 Appendix Example of Basic RCS Positioning Sequence An example of basic sequence is given below for reference when creating an RCS positioning

Strany 19 - 2.1 Basic Specifications

Appendix 105Appendix Position 2 positioning start request (Position 2 positioning circuit) P

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106 Appendix Position 3 set signal Position 5 set signal Position 3 set signal

Strany 21 - 2.2.2 Functions

Appendix 107Appendix Position Table Record Recorded date: No. Position [mm] Speed [mm/sec] Acceleration/ deceleration [G]Push [%] Positioning b

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108 Appendix Parameter Record Recorded date: Type a: Parameter relating to actuator stroke range b: Parameter relating to actuator operatin

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Catalog No.: ME0102-19A Head Office: 2690 W. 237th Street, Torrance, CA 90505 TEL (310) 891-6015 FAX (310) 891-0815 Chi

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2 * We have made every effort to ensure accuracy of the information provided in this manual. Should you find an error, however, or if you have any

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3 1.3 Safety Precautions Read the following information carefully and provide safety measures with due consideration. This system product has bee

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4 1.4 Warranty Period and Scope of Warranty The RCS controller you have purchased passed IAI’s shipping inspection implemented under the strict

Strany 27 - 2.3.2 Absolute Specification

5 1.5 Installation Environment and Noise Elimination Pay due attention to the installation environment of the controller. 1.5.1 Installation En

Strany 28 - 2.4 Connection Method

6 [1] Connect the controller by directly screwing it onto a metal frame. Protective grounding (AC power supply) 100/200-Vcontroller24-V controller U

Strany 29

7 (3) Noise sources and elimination Among the numerous noise sources, solenoid valves, magnet switches and relays are of particular concern when bu

Strany 30 - 2.5 Supplied Cable

8 1.6 Heat Radiation and Installation Design the control panel size, controller layout and cooling method in such a way that the temperature arou

Strany 31 - 2.5.2 Motor Extension Cable

9 2. Specification for 24-VDC Input Power 2.1 Basic Specifications Item Specification Supply voltage 24 VDC  10% Type RA35 RA45, F45 RB75 (60

Strany 32 - 2.6 Wiring

CAUTION (1) Hold · Servo ON Signal When operating the RCS (ROBO cylinder) controller, you will need to turn ON the Hold & Servo ON signal

Strany 33 - Home return completion

10 2.1.1 Backup Battery (Absolute Specification) (1) Battery Specification Item Description Model number AB-1 Type Lithium battery Manufacture

Strany 34 - 2.6.3 PIO Interface

11[1] Battery connector (BAT) (absolute specification) [2] Motor connector (M) [3] Brake release switch (BK) [4] SIO connector (SIO) [5] Port s

Strany 35

12 [5] Port switch (PORT) ON: The PORT IN port (teaching pendant/PC software) becomes active. If a dedicated teaching pendant or cable is not con

Strany 36 - Command position 8

13 [13] Piano switches 1 (SW1) Nos. 1 to 4 --- Address switches Use these switches to set the address of the applicable actuator if two or more ax

Strany 37 - Input Part

14 2.2.3 Pin Assignments of the Communication Ports  Pin assignments of the SIO connector Pin No. Signal name Function 1 (+5V) (5-VDC power

Strany 38 - Output Part

15  Encoder/brake connector [High-density D-sub, DE-15 type] Pin No. Signal name Connected wire 1 EN A+ Encoder A+ 2 EN A– Encoder A- 3 EN

Strany 39 - 3.1 Base Specification

16 2.3 External Dimensional Diagram 2.3.1 Standard Specifications 5

Strany 40

17 2.3.2 Absolute Specification 5

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18 Teaching pendant <RCA-T/TD> Optional Cable length: 5 m PC PC software <RCA-101-MW> Optional Host system <PLC> Supplied flat c

Strany 42 - 3.2.2 Functions

19 2.4.2 Absolute Specifications ROBO Cylinder <RCS> The absolute specification cannot be used with a standard

Strany 43

Safety Precautions (Please read before using the product.) Before installing, operating, maintaining or inspecting this product, please peruse t

Strany 44

20 I/O connector Flat cable (Split position)(Omron)Output connector Input connector (Omron) (Omron) [A] [B]Flat cable I/O connector (40P) 2.5 Suppl

Strany 45

21 2.5.2 Motor Extension Cable Controller end Actuator end 2.5.3 Encoder Extension Cable Controller end Actuator end

Strany 46

22 2.6 Wiring 2.6.1 Wiring for Power Supply/Emergency Stop * The two EMG terminals are contact-b inputs used for connecting an eme

Strany 47

23 2.6.2 External Connection Diagram PC To the next controller Teaching pendant Conversion adapter Conversion adapter Host system (PLC) Output Mo

Strany 48 - 3.3 External Dimensions

24 2.6.3 PIO Interface A PIO interface list is given below. The PIO cable is a flat cable with no connector attached on the end connected to the e

Strany 49 - 3.3.2 Absolute Specification

25 [1] COMOA [2] COMOB Connect the 24-VDC power supply for output ports between COMOA and COMOB. COMOA and COMOB have no polarities. Pin Nos. 1 &a

Strany 50 - 3.4 Connection Method

26 [9] Emergency stop This signal will turn OFF when an emergency stop is actuated. It remains ON as long as the controller is operating properly.

Strany 51 - Battery

27 2.6.4 External I/O Specifications Input Part Item Specification Number of input points 8 points Input voltage 24 VDC  20  Input current 7 m

Strany 52 - 3.5 Supplied Cables

28 Output Part 100-mA output circuit by power MOSFET Item Specification Number of output points 10 points Rated load voltage 24 VDC; 60 VDC (peak

Strany 53 - 3.5.2 Motor Extension Cable

29 3. Input Power 100/200 VAC Specification 3.1 Base Specification Item Specification Supply voltage 90 to 125 / 180 to 250 VAC Type RB75 (60 W) R

Strany 54 - 3.6 Wiring

[Installation]  Do not use this product in a place exposed to ignitable, inflammable or explosive substances. The product may ignite, burn or exp

Strany 55 - Emergency stop

30 3.1.1 Backup Battery (Absolute Specification) (1) Battery specifications Item Description Model number AB-1 Classification Lithium battery Ma

Strany 56 - 3.6.3 PIO Interface

31 If the battery was replaced while the controller power was off, the position information (absolute data) may or may not be retained depending on

Strany 57

32 [1] Battery connector (absolute specification) [5] Motor connector [3] Brake release switch [14] SIO connector [2] Port switch [13]

Strany 58

33 [5] Motor connector A connector for the actuator’s motor power cable. [6] Power terminal block L/N: An AC-power connection terminal. PE: A pr

Strany 59 - Rectifier

34 The controller link cable is 200 mm long. A maximum of 16 controllers can be connected. [11] Piano switches 1 (SW1) Nos. 1 to 4 --- Address swi

Strany 60 - Each output

35 [12] PIO connector (PIO) A connector for PIO cable. [13] Main communication port connector (PORT IN) A connector for receiving the communicati

Strany 61

36 3.2.3 Signal Tables of Connectors and Terminal Blocks  Pin assignments of the SIO connector Pin No. Signal name Function 1 (+5V) (5-VDC

Strany 62

37  Encoder/brake connector [High-density D-sub, DE-15 type] Pin No. Signal name Connected wire 1 EN A+ Encoder A+ 2 EN A– Encoder A- 3 EN

Strany 63 - [B] Push = Other than 0

38 5 3.3 External Dimensions 3.3.1 Standard Type

Strany 64

39 3.3.2 Absolute Specification

Strany 65

 Turn off the power to the product in the event of power failure. Failure to do so may cause the product to suddenly start moving when the power

Strany 66 - 4.2 Explanation of Modes

40 PC Supplied flat cable Cable length: 2 mExternal unit <RCA-105-5> Optional Cable length: 5 m ROBO Cylinder <RCS> The cables are optio

Strany 67

41 3.4.2 Absolute Specifications ROBO Cylinder <RCS> The absolute specification cannot be used with a s

Strany 68 - Positioning

42 [A] [B] Flat cable (Omron) (Omron) (Split location)Output Connector (20P) Input Connector (20P) I/O Connector (40P) 3.5 Supplied Cables 3.5.1

Strany 69 - 4.2.6 Zone Signal Output

43Pink Purple White Blue/red Orange/white Green/white Blue Orange Black Yellow Green Brown Gray Red Pink Purple White Blue/red Orange/white Green/wh

Strany 70 - 4.3 Timing Chart

44 3.6 Wiring 3.6.1 Wiring for Power Supply/Emergency Stop * The two EMG terminals are contact-b inputs used for connecting an emergency-sto

Strany 71

45 3.6.2 External Connection Diagram PC To the next controller Teaching pendant Conversion adapter Host system OutputInput StartCommand position 1Co

Strany 72

46 3.6.3 PIO Interface A PIO interface list is given below. The PIO cable is a flat cable with no connector attached on the end connected to the e

Strany 73

47 [1] COMIA [2] COMIB Connect the 24-VDC power supply for output ports between COMOA and COMOB. COMOA and COMOB have no polarities. Pin Nos. 1 &a

Strany 74

48 [9] Moving This signal remains ON while the actuator is moving. Use this signal if you want to detect stopping of the motor during pause. [10] E

Strany 75

49External power supply 24 VDC Pin No. Rectifier Each input Internal circuit External power supply 24 VDC Pin No. RectifierEach input Internal circu

Strany 76 - 1 msec or less

 Before installing or adjusting the product or performing other operations on the product, display a sign that reads, “WORK IN PROGRESS. DO NOT TU

Strany 77

50 Each outputPin No.RectifierInternal circuit Fuse resistance: Load Load Output Part 100-mA output circuit by power MOSFET Item Specification Nu

Strany 78

51 4. Data Entry <Basics> This controller doesn’t use command words, so there is no need to create a program. All you need is to enter posit

Strany 79 - 5.5 Push & Hold Mode

52 4.1 Description of Position-Data Table (1) No.  Indicate the position data number. To enter an incremental movement, press the minus key in

Strany 80

53 (5) Push (Push)  Select the positioning mode or push & hold mode. The default value is “0.” 0: Positioning mode (= Normal operation) Oth

Strany 81

54 (7) Acceleration only MAX (ACC MAX)  Select the specified acceleration or maximum acceleration by entering “0” or “1.” The default value is

Strany 82

55 4.1.1 Push Force at Standstill In the push & hold mode, enter a current-limiting value (%) in the position-data table under “Push.” With th

Strany 83 - 0.1 mm before position 1

56 4.2 Explanation of Modes 4.2.1 Positioning Mode Push = 0 4.2.2 Push & Hold Mode Push = Other than 0 (1) Load was contacted succ

Strany 84

57 (2) Load was not contacted (missed) (3) Load moves during push & hold operation [1] Load moves in the pushed direction

Strany 85 - 5.8 Pause

58 Speed Deceleration can be set freely TimeMaximum acceleration according to the load (4) Positioning band was entered with a wrong sign If th

Strany 86 - 4 msec or more

59 4.2.5 Pause This signal can be used to stop the actuator in case of emergency. The movement of the actuator can be paused via an external input

Strany 87 - 5.9 Zone Signal Output

Before Use  Caution [1] Be sure to read this operation manual to ensure the proper use of this product. [2] Unauthorized use or reproduction

Strany 88

60 4.2.7 Home Return With the standard specification, home return must be performed after the power has been input or an encoder open or CPU error

Strany 89 - 5.10 Returning Home

61 4.4 Items to Note on Gripper (RCS-G20) (1) Finger Operation [1] Definition of position The stroke in the specification table indicates a sum o

Strany 90 - Position 0

62 5. Using the Controller <Practical Steps> 5-1 How to Start (Standard Specification) (Refer to 5-2, “How to Execute An Absolute Reset,”

Strany 91 - 5.11 Incremental Moves

63 5.2 How to Execute Absolute Reset (Absolute Specification) Note) With the absolute specification, an encoder receive error (0E5) will occur w

Strany 92

64 How to Execute an Absolute Reset on a Controller of Version J* or Earlier [1] Connect the motor and encoder/brake cables to the controller. [

Strany 93

65 5.3 Movement after Power On (Standard Type) Example of use in operation) After the power is turned on, move the actuator to the position 150 mm

Strany 94

66 Start Position complete Moving Actuator 1 msec or less The position complete output will turn ON when the control

Strany 95 - 6. Parameters

67 5.4 Positioning Mode (Back and Forth Movement between Two Points) Example of use in operation) The actuator moves back and forth between two po

Strany 96 - 6.3 Parameter Settings

68 Position-data table (Field(s) within thick line must be entered.) No. Position Speed Acceleration/ deceleration Push Positioning band Accelera

Strany 97

69 5.5 Push & Hold Mode Example of use in operation) The actuator is caused to move back and forth in the push & hold mode and positioning

Strany 98

Table of Contents 1. Note to the User ...1 1.1 Introduction

Strany 99 -  Movement flag during stop

70 Position-data table (Field(s) within thick line must be entered.) No. Position Speed Acceleration/ deceleration Push Positioning band Acceler

Strany 100 - 6.3.3 Servo Gain Adjustment

71 5.6 Speed Change during Movement Example of use in operation) The actuator speed is reduced at a certain point during movement. The position

Strany 101 - 7. Troubleshooting

72 Position-data table (Field(s) within thick line must be entered.) No. Position Speed Acceleration/ deceleration Push Positioning band Acceler

Strany 102 - 7.3 Alarm Output by PIO

73 5-7 Operation at Different Acceleration and Deceleration Settings Example of use in operation) Positioning is performed to the position 150 mm

Strany 103 - (1) Message Alarms

74 Position-data table (Field(s) within thick line must be entered.) No. Position Speed Acceleration/ deceleration Push Positioning band Acceler

Strany 104

75 5.8 Pause Example of use in operation) The actuator is paused during movement. Method) Use the pause input. RCS controller

Strany 105

76 T1: 5 msec or more; time after selecting/entering a command position until the start input turns ON (The scan time of t

Strany 106 - (3) Cold Start Alarms

77 5.9 Zone Signal Output Example of use in operation) While the actuator is moving a zone signal is output inside the zone enclosed by distances

Strany 107

78 T1: 5 msec or more; time after selecting/entering a command position until the start input turns ON (The scan time o

Strany 108

79 5.10 Returning Home Example of use in operation) Home return alone cannot be performed using PIO. Method) Create point data of 0 distance from

Strany 109

3.4 Connection Method ... 40 3.4.1

Strany 110

80 T1: 5 msec or more; time after selecting/entering a command position until the start input turns ON (The scan time of th

Strany 111 - * Appendix

81 5.11 Incremental Moves Example of use in operation) The actuator is caused to move from the home to the 30-mm position, from which it will be m

Strany 112 - (Total of both fingers)

82 Command position Start Position complete Completed position Moving Actuator movement Speed Position 1 Position 2 Note 1Note 2Time D

Strany 113 - Point of action

83 5.12 Notes on Incremental Mode (1) Notes on positioning operation Selecting/entering a position number using relative coordinates during positi

Strany 114

84 Example) If the start signal for movement to position 2 is input while the actuator is moving to position 1 in the push & hold mode, the ac

Strany 115

85 6. Parameters 6.1 Parameter Classification The parameters are classified into the following four types depending on their function: Types: a: Pa

Strany 116

86 6.3 Parameter Settings If you have changed any parameter, be sure to restart the controller via a software reset or reconnect the controller pow

Strany 117 - Position Table Record

87  Home offset Parameter No. 22 has been set to an optimal value at the factory so that the distance from the mechanical end to home will remain c

Strany 118 - Parameter Record

88 Push current Start position Target position Counting startsCount to 200 Decrement to 180 Count to 255 Completion of push-mode operation is re

Strany 119 - IAI (Shanghai) Co., Ltd

89  Movement flag during stop This parameter defines whether to enable or disable the dynamic brake while the actuator is stopped. It has been set

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