Watlow CLS200, MLS300 and CAS200 Manual do Utilizador

Consulte online ou descarregue Manual do Utilizador para Sensores Watlow CLS200, MLS300 and CAS200. Watlow CLS200, MLS300 and CAS200 User Manual Manual do Utilizador

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CLS200, MLS300,
and CAS200
Communications
Specification
Watlow Anafaze
Repairs and Returns:
1241 Bundy Blvd.
Winona, MN 55987
Customer Service:
Phone.....800-414-4299
Fax..........800-445-8992
Technical Support:
Phone.......507-494-5656
Fax.............507-452-4507
Email.........wintechsupport@watlow.com
Part No. 0600-1015-5100. Revision 3.0
November 2003
Vista de página 0
1 2 3 4 5 6 ... 91 92

Resumo do Conteúdo

Página 1 - Specification

CLS200, MLS300, and CAS200CommunicationsSpecification Watlow Anafaze Repairs and Returns: 1241 Bundy Blvd.Winona, MN 55987 Customer Service: Phone..

Página 2 - Warranty

4 Communications Specification Chapter 1: ANAFAZE/AB Protocol Transaction Sequence Here are the four steps in a transaction between the host softwa

Página 3 - Contents

Chapter 1: ANAFAZE/AB ProtocolCommunications Specification 5 This flowchart shows one way for the host software to handle errorchecking. (If you are

Página 4

6 Communications Specification Chapter 1: ANAFAZE/AB Protocol Packet Format Messages are transmitted in the form of packets. Command and replypacke

Página 5

Chapter 1: ANAFAZE/AB ProtocolCommunications Specification 7 CMD • The CMD byte indicates the command that the host software sends to the controlle

Página 6

8 Communications Specification Chapter 1: ANAFAZE/AB Protocol ADDL • The low byte of the beginning data table address of the block of data to read

Página 7

Chapter 1: ANAFAZE/AB ProtocolCommunications Specification 9 For instance, the block read example shown in the examples section, adds x08 00 01 00 0

Página 8

10 Communications Specification Chapter 1: ANAFAZE/AB Protocol Examples The host software sends two kinds of commands: block reads and blockwrites.

Página 9 - Protocol Syntax

Chapter 1: ANAFAZE/AB ProtocolCommunications Specification 11 The next picture shows the read command. The controller sends a DLE-ACK:x10 02 08

Página 10 - Transaction Sequence

12 Communications Specification Chapter 1: ANAFAZE/AB Protocol Then the controller sends its reply:Then the host software sends a DLE-ACK:x10 02

Página 11

Chapter 1: ANAFAZE/AB ProtocolCommunications Specification 13Block WriteThis section describes the block write command.This example shows the block w

Página 12 - Codes in a Packet

Copyright © 1996, 1997, 2003Watlow Anafaze Information in this manual is subject to change without notice. No part of this publication may bereprod

Página 13

14 Communications SpecificationChapter 1: ANAFAZE/AB ProtocolHere’s a picture of the controller’s reply:Then the host software sends a DLE-ACK:Messa

Página 14 - Error Checking

Chapter 1: ANAFAZE/AB ProtocolCommunications Specification 15Data for a Write CommandFor a block write command, the block contains the bytes to write

Página 15 - Cyclic Redundancy Check (CRC)

16 Communications SpecificationChapter 1: ANAFAZE/AB ProtocolAnafaze/AB Data Table SummaryEach address holds one byte of data. Each parameter value

Página 16 - Examples

Chapter 1: ANAFAZE/AB ProtocolCommunications Specification 17Ordering of Heat and Cool Channel ParametersFor parameters that have both heat and cool

Página 17

18 Communications SpecificationChapter 1: ANAFAZE/AB Protocol15 Ambient Sensor Readings 0720 SI 216 Pulse Sample Time 0730 UC 117 High Process Varia

Página 18

Chapter 1: ANAFAZE/AB ProtocolCommunications Specification 1954 Ready Event States 1180 UC MAX_RSP * MAX_DIGOUT_BYTES55 Segment Setpoint 1280 SI MAX_

Página 19 - Block Write

20 Communications SpecificationChapter 1: ANAFAZE/AB Protocol84 PV Retransmit Minimum Input 4330 UI MAX_CH * 485 PV Retransmit Minimum Output 43C0 U

Página 20 - Message Data

Chapter 2: Modbus-RTU ProtocolCommunications Specification 21Chapter 2: Modbus-RTU ProtocolOverviewTransactions on Modbus-RTU NetworksStandard Modbus

Página 21 - Figuring Block Size

22 Communications SpecificationChapter 2: Modbus-RTU ProtocolThe Query-Response CycleThe QueryThe function code in the query tells the addressed slav

Página 22 - Anafaze/AB Data Table Summary

Chapter 2: Modbus-RTU ProtocolCommunications Specification 23• 8 data bits, least significant bit sent first• 2 stop bits• No parityError Check FieldCy

Página 23

ContentsCommunications Specification i Contents Overview... 1 In This Manual ..

Página 24 - Type Number of Bytes

24 Communications SpecificationChapter 2: Modbus-RTU ProtocolWhen a message is sent from a master to a slave device, the functioncode field tells the

Página 25

Chapter 2: Modbus-RTU ProtocolCommunications Specification 25The data field can be nonexistent (of zero length) in certain kinds ofmessages, where the

Página 26

26 Communications SpecificationChapter 2: Modbus-RTU ProtocolThis process is repeated until eight shifts have been performed. After thelast shift, th

Página 27 - Overview

Chapter 2: Modbus-RTU ProtocolCommunications Specification 27NOTEThe function will override the controller’s memory protectstate and the coil’s disab

Página 28 - Serial Transmission

28 Communications SpecificationChapter 2: Modbus-RTU Protocolresponse is returned. This function is the only one that brings the port out of Listen O

Página 29 - Message Framing

Chapter 2: Modbus-RTU ProtocolCommunications Specification 29operation, or power-up.Subfunction Data Field (Query) Data Field (Response)x00 0C x00 00

Página 30 - Contents of the Data Field

30 Communications SpecificationChapter 2: Modbus-RTU ProtocolWriting DataWatlow Anafaze controller memory is divided into approximately 100parameters

Página 31 - CRC Error Checking

Chapter 2: Modbus-RTU ProtocolCommunications Specification 31ExamplesRead ExamplesThe data read must be sequentially located. If you’re reading a coi

Página 32 - Function Codes

32 Communications SpecificationChapter 2: Modbus-RTU ProtocolWrite ExamplesThe data written is echoed back to the controller.Sample Packet for Host T

Página 33 - Diagnostic Subfunctions

Chapter 2: Modbus-RTU ProtocolCommunications Specification 33Sample Packet for Host Transmission, a Multipoint WriteThe data must be written to seque

Página 34

ContentsCommunications Specification ii Chapter 3: Controller Parameter Descriptions ... 39 Correlating Menu Items with Parameters ...

Página 35

34 Communications SpecificationChapter 2: Modbus-RTU ProtocolThe storage requirements for some parameters depend on the number ofdigital inputs or di

Página 36 - Reading Data

Chapter 2: Modbus-RTU ProtocolCommunications Specification 35Relative and Absolute Modbus AddressesIn the tables on the following pages, absolute add

Página 37

36 Communications SpecificationChapter 2: Modbus-RTU Protocol27 Not used 40942 03AD UC 128 Override Digital Input 40943 03AE UC 129 Override Polarity

Página 38 - Write Examples

Chapter 2: Modbus-RTU ProtocolCommunications Specification 3761 Output Limit 48147 1FD2 SI MAX_CH * 262 Output Limit Time 48213 2014 SI MAX_CH * 263

Página 39 - Modbus-RTU Data Table Summary

38 Communications SpecificationChapter 2: Modbus-RTU Protocol87 Cacade Base Setpoint 49306 2459 SI MAX_CH88 Cascade Minimum Setpoint 49339 247A SI MA

Página 40

Chapter 3: Controller Parameter DescriptionsCommunications Specification 39Chapter 3: Controller Parameter DescriptionsThis section provides specific

Página 41

40 Communications SpecificationChapter 3: Controller Parameter DescriptionsIn the following tables, “RS” in the Product(s) column indicates that thep

Página 42

Chapter 3: Controller Parameter DescriptionsCommunications Specification 41Input Units All Units 33Input Reading Offset All Units 17, 18Reversed T/C

Página 43

42 Communications SpecificationChapter 3: Controller Parameter DescriptionsCool Output Action Not CAS/CAS200 4, 98Cool Output Limit Not CAS/CAS200 61

Página 44

Chapter 3: Controller Parameter DescriptionsCommunications Specification 43Additional menus are found in controllers with Ramp and Soak andEnhanced F

Página 45 - Chapter 3:

ContentsCommunications Specification iii Last Segment (51) ... 62Number of Cycles (52)...

Página 46

44 Communications SpecificationChapter 3: Controller Parameter DescriptionsSegment ## Edit Seg Trggrs RS Front Panel onlySeg ## Trig # Input NR RS 56

Página 47 - All Units 17, 18

Chapter 3: Controller Parameter DescriptionsCommunications Specification 45Parameters (by number)Proportional Band/Gain (0)The MLS and CLS controller

Página 48

46 Communications SpecificationChapter 3: Controller Parameter DescriptionsInput Type (3)This parameter specifies the input type.• Range: 0 to 19 defin

Página 49 - Enhanced Features options

Chapter 3: Controller Parameter DescriptionsCommunications Specification 47• Proportional band• High process alarm• Low process alarm• Deviation band

Página 50

48 Communications SpecificationChapter 3: Controller Parameter DescriptionsBits 0 and 1 work together to determine some of the output’scharacteristic

Página 51 - Parameters (by number)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 49• Default: 3 scans.Output Value (8)This parameter contains the output valu

Página 52 - Input Type (3)

50 Communications SpecificationChapter 3: Controller Parameter DescriptionsNOTEProcess alarms, deviation alarms, and failed sensor alarmsare set indi

Página 53 - Output Type (4)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 51When using the Anafaze protocol, when an Alarm_Status bit haschanged, and

Página 54 - Output Filter (7)

52 Communications SpecificationChapter 3: Controller Parameter DescriptionsAmbient Sensor Readings (15)This parameter returns the value of the system

Página 55 - Alarm Deadband (12)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 53NOTEUse the High Process Variable and Low Process Variablefor an offset on

Página 56 - Alarm_Status (13)

ContentsCommunications Specification iv Controller Address (101)... 77Baud Rate (102) ...

Página 57

54 Communications SpecificationChapter 3: Controller Parameter Descriptions(3) If the original precision value (from the table below) was a negative

Página 58 - Low Process Variable (18)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 55The Anafaze/AB protocol returns all 8 bits in 1 byte. See the tablebelow.T

Página 59 - Precision (19)

56 Communications SpecificationChapter 3: Controller Parameter DescriptionsSystem Status (30)The system status command consists of internal registers

Página 60 - Digital Inputs (25)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 57Data Changed Register (32)The data changed register acts as a First-In-Fir

Página 61 - Override Polarity (29)

58 Communications SpecificationChapter 3: Controller Parameter DescriptionsFor linear and pulse inputs, users can select three characters to display.

Página 62 - System Command Register (31)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 59Process Power Digital Input (36)Enable the thermocouple short detection fe

Página 63 - Input Units (33)

60 Communications SpecificationChapter 3: Controller Parameter Descriptions• Range: 0 to 255.• Default: 5.Startup Alarm Delay (40)This parameter desi

Página 64 - Options Register (35)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 61• Default: 0 (no low deviation alarm output).Channel Profile and Status (46

Página 65 - Heat/Cool Spread (39)

62 Communications SpecificationChapter 3: Controller Parameter DescriptionsCurrent Segment (47)This parameter returns the segment number that is curr

Página 66 - Startup Alarm Delay (40)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 63• Default: 19.Number of Cycles (52)This parameter represents the total num

Página 67 - • Default: 0

OverviewCommunications Specification 1 Overview This reference guide is designed to help applications softwareprogrammers with the following tasks:

Página 68 - Last Segment (51)

64 Communications SpecificationChapter 3: Controller Parameter DescriptionsIn the Anafaze/AB protocol, the states are stored as bits in 5 bytes. Each

Página 69 - Ready Event States (54)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 65• Default: 0 (no trigger assigned).Bits 0 to 3 determine the input number

Página 70 - Segment Setpoint (55)

66 Communications SpecificationChapter 3: Controller Parameter DescriptionsBits 0 to 5 determine the output number for an event: Segment Time (58)Thi

Página 71

Chapter 3: Controller Parameter DescriptionsCommunications Specification 67* The controller toggles a bit in the data-changed register to notify high

Página 72 - Ramp/Soak Flags (60)

68 Communications SpecificationChapter 3: Controller Parameter DescriptionsAlarm_Control (63)Setting a bit for an alarm in the Alarm_Control variable

Página 73 - Output Limit Time (62)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 69This variable is currently used for deviation and process alarms. Processa

Página 74 - Alarm_Enable (66)

70 Communications SpecificationChapter 3: Controller Parameter DescriptionsOutput Linearity Curve (69)This parameter lets users set heat and cool out

Página 75 - AIM Fail Output (68)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 71• Default: 1000 (10.00 volts) or 2000 (20.00 mA).Save Setup to Job (73)Thi

Página 76 - SDAC High Value (72)

72 Communications SpecificationChapter 3: Controller Parameter DescriptionsT/C Failure Detection Flags (78)This parameter determines the thermocouple

Página 77 - Loop Names (77)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 73WARNINGThis command should only be used when it is necessary toperform the

Página 78 - Manufacturing Test (80)

2 Communications Specification Overview

Página 79

74 Communications SpecificationChapter 3: Controller Parameter DescriptionsPV Retransmit Minimum Output (85)This parameter specifies the minimum outpu

Página 80 - Cascade Minimum Setpoint (88)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 75Cascade Heat/Cool Span (90)This parameter is multiplied by the heat and co

Página 81

76 Communications SpecificationChapter 3: Controller Parameter Descriptions• Range: –999 to 9999 (depending on the precision in the master loop).• De

Página 82 - Output Reverse/Direct (98)

Chapter 3: Controller Parameter DescriptionsCommunications Specification 770 = Reverse1 = Direct• Default: 0 for heat outputs, 1 for cool outputs.Con

Página 83 - Baud Rate (102)

78 Communications SpecificationChapter 3: Controller Parameter Descriptions2 = 19200• Default: Varies by controller.Ready Events (103)This parameter

Página 84 - Ready Events (103)

Appendix A: Communications DriverCommunications Specification 79Appendix A: Communications DriverCompiling and LinkingThe driver is compiled and link

Página 85 - Communications Driver

80 Communications SpecificationAppendix A: Communications Driverchar error_check; Set to BCC, or CRC. BCC = 1. CRC = 2;Example Call:Init_Comm_Port(1

Página 86 - DownLoad()

Appendix A: Communications DriverCommunications Specification 81char sts; Controller status. See the AnafazeController/Host InterfaceDataand Communic

Página 87 - UpLoad()

82 Communications SpecificationAppendix A: Communications DriverExample Call:return_value = DownLoad(TYPE_CLS8, 1, SETPT, 0, 8, sp); This callUploads

Página 88

GlossaryCommunications Specification 83GlossaryACK (Acknowledge) A control code that signals that a syntactically correct message packet has been rec

Página 89 - Glossary

Chapter 1: ANAFAZE/AB ProtocolCommunications Specification 3 Chapter 1: ANAFAZE/AB Protocol This section explains the ANAFAZE/Allen Bradley protocol

Página 90

84 Communications SpecificationGlossaryDeadband, alarmThe range through which a process variable must travel from the alarm setpoint toward the proce

Página 91

GlossaryCommunications Specification 85LSB Least Significant Byte. For all two-byte data types, the LSB is transmitted before the MSB (Most Significant

Página 92

86 Communications SpecificationGlossarySet, bit See Cleared, bit.Single-bit errorAn error in which only one bit is incorrect.Stop bit The last part o

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