Micromod RetroPAK: SLC Configuration Manual Bedienungsanleitung

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Inhaltsverzeichnis

Seite 1 - Training

Command Series Migration to MOD 30ML™ Training Tutorial and Reference Guide for Command Series Migration to MOD 30ML

Seite 2 - MicroMod Automation, Inc

Command Series Migration to MOD 30ML Function Codes – Introduction The user database is configurable and writable to make the instrument perform

Seite 3 - CONTENTS

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To change the Algorithm Type (S18): Open the PID block and open the C

Seite 4

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To change the Control Action (S21): Open the PID block and open the G

Seite 5

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To enable Setpoint Tracking (FC21-S14): Open the PID block and open t

Seite 6

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control Notice that the only setpoint mode allowed is LOCAL: Figure P1.14. P

Seite 7 - INTRODUCTION

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To change the process variable high alarm (FC21-S7): Open the PAD blo

Seite 8

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To change the process variable low alarm (FC21-S8): Open the PAD bloc

Seite 9 - Function Codes – Introduction

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control a Refer to the following sections from the Function Codes – Gallery

Seite 10 - Environment Blocks:

Pre-configured Dual Loop PID Control GENERAL DESCRIPTION The advanced PID controller function code implements a proportional integral derivati

Seite 11

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control EXPLANATION Configuration with this compound requires understanding of

Seite 12 - Architecture

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control S11 PID Input – S11 Floating Point Gain Multiplier input for the PID.

Seite 13 - FUNCTION BLOCKS

Command Series Migration to MOD 30ML Function Codes – Introduction Display Interface Block(DIF): This block is used in MOD 30ML only. This block h

Seite 14

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control N PID Output – N Floating Point Output of the compound. PID.N is alre

Seite 15

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To configure the inputs: Open the AIN block AIN1 for input 1. See figu

Seite 16

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control Figure P2.3. Dual loop PID with Local SP You will need to use a diff

Seite 17 - Function blocks

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To change the display tag name for the PID: Open the display block PID

Seite 18 - Execution Order

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To enable feedforward control and change the feedforward type (S6): Op

Seite 19 - COMPOUNDS:

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To connect / change the value of the Gain Multiplier input (S11): Make

Seite 20 - Bailey FC Gallery

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To change the value of the Manual Reset input (S5): To enter a local va

Seite 21 - Choose Parameter

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To change the values of the following: Proportional Gain - S12 Integral

Seite 22 - Cancel Connection

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To change the value of the Derivative Lag Constant (S15): Open the PID

Seite 23 - LOOP COMPOUNDS

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To change the value of the Output Limits (S16, S17): Open the PID block

Seite 24 - Algorithms menu

Command Series Migration to MOD 30ML Function Codes – Introduction Figure 1 .1. Instrument Database Architecture 1 - 4

Seite 25

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To change the Algorithm Type (S18): Open the PID block and open the Con

Seite 26 - THE CONFIGURATION PROCESS

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To change the Control Action (S21): Open the PID block and open the Gen

Seite 27 - PID Display

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To enable Setpoint Tracking (FC21-S14): Open the PID block and open the

Seite 28 - DIF block

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control Notice that the only setpoint mode allowed is LOCAL: Figure P2.14. Dua

Seite 29

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To change the process variable high alarm (FC21-S7): Open the PAD block

Seite 30 - PID CONFIGURATION REFERENCE

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control To change the process variable low alarm (FC21-S8): Open the PAD block

Seite 31 - PID Control Tab

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID Control a Refer to the following sections from the Function Codes – Gallery Tu

Seite 32

Pre-configured Single Loop PID with Remote SP GENERAL DESCRIPTION The advanced PID controller function code implements a proportional integral

Seite 33

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP EXPLANATION Configuration with this compound requires underst

Seite 34 - PID Setpoint Tab

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP compound or change in the Control tab of the PID block. Change

Seite 35 -  Output Modes in MOD 30ML:

Command Series Migration to MOD 30ML Function Codes – Introduction I/O AND COMMUNICATION MODULE BLOCKS: These blocks specify the physical I/O comp

Seite 36 - PID Options Tab

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP S23 N/A N/A N/A SPTI PID Input – Floating Point Setpoint t

Seite 37 - GALLERY TUTORIAL

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To configure the inputs: Open the AIN block AIN1 for input 1.

Seite 38

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP Figure P3 .3. PID with Remote SP You will need to use a dif

Seite 39 - OBJECTIVES

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To change the display tag name for the PID: Open the display

Seite 40 - DOCUMENT

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To enable feedforward control and change the feedforward type

Seite 41 - New Workspace

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To connect / change the value of the Gain Multiplier input (S1

Seite 42

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To change the value of the Manual Reset input (S5): To enter a

Seite 43 - New Project

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To change the values of the following: Proportional Gain - S12

Seite 44 - Class Workspace

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To change the value of the Derivative Lag Constant (S15): Open

Seite 45 - New Document

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To change the value of the Output Limits (S16, S17): Open the

Seite 46 - Default Instrument

Command Series Migration to MOD 30ML Function Codes – Introduction Type Description Availability Input Function Blocks or signal conditioning

Seite 47

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To change the Algorithm Type (S18): Open the PID block and ope

Seite 48 - Interface Block

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To change the Control Action (S21): Open the PID block and ope

Seite 49 - CLC 03/04

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To enable Setpoint Tracking (FC21-S14): Open the PID block and

Seite 50 - Properties

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP Remote Setpoint Configuration Options: Open the PID block and

Seite 51

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP Auto Bias: Bias value of remote setpoint is automatically man

Seite 52 - Open Compound

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To change the process variable high alarm (FC21-S7): Open the

Seite 53 - Compound

Command Series Migration to MOD 30ML Pre-configured Single Loop PID with Remote SP To change the process variable low alarm (FC21-S8): Open the P

Seite 54 - Loop Block

Pre-configured Dual Loop PID with Remote SP GENERAL DESCRIPTION The advanced PID controller function code implements a proportional integral d

Seite 55 - Gallery Menu

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP reference that includes listing of most commonly used / changed

Seite 56

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP S10 N/A N/A N/A S11 PID Input – S11 Floating Point Gain Mult

Seite 57

Command Series Migration to MOD 30ML Function Codes – Introduction NM Notification Message MOD 30ML and Modcell SM Supervisory Message MOD 30M

Seite 58 - ADDING I/O

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP S21 PID Input – Discreet Controller Action. Choose the action

Seite 59 - AIN Block

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To configure the inputs: Open the AIN block AIN1 for input 1. S

Seite 60 - VCI Properties

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP Figure P4.3. Dual PID with Remote SP You will need to use a

Seite 61

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP Figure P4.4. Dual PID with Remote SP P4- 7

Seite 62 - MAKING CONNECTIONS

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To change the display tag name for the PID: Open the display bl

Seite 63 - Choose parameter

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To enable feedforward control and change the feedforward type (S

Seite 64

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To connect / change the value of the Gain Multiplier input (S11)

Seite 65

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To change the value of the Manual Reset input (S5): To enter a l

Seite 66

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To change the values of the following: Proportional Gain - S12 I

Seite 67

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To change the value of the Derivative Lag Constant (S15): Open t

Seite 68 - SP) Compound

Command Series Migration to MOD 30ML Function Codes – Introduction A typical instrument database as function block diagram configured in ViZapp i

Seite 69 - ENG block

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To change the value of the Output Limits (S16, S17): Open the PI

Seite 70

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To change the Algorithm Type (S18): Open the PID block and open

Seite 71 - Faceplate

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To change the Control Action (S21): Open the PID block and open

Seite 72 - 100. See the next figure:

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To enable Setpoint Tracking (FC21-S14): Open the PID block and o

Seite 73

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP Remote Setpoint Configuration Options: Open the PID block and s

Seite 74 - Close Compound

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP Auto Bias: Bias value of remote setpoint is automatically manip

Seite 75

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To change the process variable high alarm (FC21-S7): Open the PA

Seite 76

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP To change the process variable low alarm (FC21-S8): Open the PAD

Seite 77

Command Series Migration to MOD 30ML Pre-configured Dual Loop PID with Remote SP a Refer to the following sections from the Function Codes – Gal

Seite 78 - SAVING DOCUMENTS

Pre-Configured – Cascade Control GENERAL DESCRIPTION This is a pre-configured loop compound that has inputs, outputs, complete Cascade loop PI

Seite 79

Command Series Migration to MOD 30ML Function Codes – Introduction Figure 1 .3. Function blocks inside a loop compound 1 - 9

Seite 80 - Communication

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control EXPLANATION Configuration with this loop compound requires understanding o

Seite 81 - COMPILING THE DATABASE

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control GAIN MULTIPLIER INPUT. S11 PID2 Input – S11 Floating Point Gain Multiplie

Seite 82 - Options for Modbus

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control S18 PID1, PID2, PIDFAIL Input – S18 Count Algorithm Type. Choose the type

Seite 83 - Information Window

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To configure the inputs: Open the AIN block AIN1 for input 1. See figure b

Seite 84

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control Figure P5.3. Cascade PID You will need to use a different input function

Seite 85 - STRATEGIES

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To change the display tag name for the PID: Open the display block Display

Seite 86

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To enable feedforward control and change the feedforward type (S6): Open t

Seite 87

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To connect / change the value of the Gain Multiplier input (S11): Make a co

Seite 88

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To change the value of the Manual Reset input (S5): To enter a local value,

Seite 89

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To change the values of the following: Proportional Gain - S12 Integral Res

Seite 90

Command Series Migration to MOD 30ML Function Codes – Introduction FUNCTION BLOCK EXECUTION ORDER: The order in which the blocks in the database

Seite 91

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To change the value of the Derivative Lag Constant (S15): Open the respecti

Seite 92

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To change the value of the Output Limits (S16, S17): Open the respective PI

Seite 93

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To change the Algorithm Type (S18): Open the respective PID block and open

Seite 94

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To change the Control Action (S21): Open the respective PID block and open

Seite 95

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To enable Setpoint Tracking (FC21-S14): Open the respective PID block and o

Seite 96

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To change the process variable high alarm (FC21-S7): Open the desired PAD b

Seite 97

Command Series Migration to MOD 30ML Pre-Configured – Cascade Control To change the process variable low alarm (FC21-S8): Open the desired PAD bl

Seite 98

Pre-configured PID Ratio with Remote SP GENERAL DESCRIPTION The advanced PID controller function code implements a proportional integral deriv

Seite 99

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP reference that includes listing of most commonly used / changed attr

Seite 100 - PID with Local SP

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP S12 ENG Input – GAIN Floating Point Proportional Gain Kp. Enter in

Seite 101 - See figure below:

Command Series Migration to MOD 30ML Function Codes – Introduction COMPOUNDS: Function blocks in a database can be compounded (grouped) into a si

Seite 102

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP N PID Output – N Floating Point Output of the compound. PID.N is a

Seite 103

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To configure the inputs: Open the AIN block AIN1 for input 1. See f

Seite 104

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP Figure P6.3. PID Ratio with Remote SP You will need to use a dif

Seite 105

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To change the display tag name for the PID: Open the display block

Seite 106

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To enable feedforward control and change the feedforward type (S6):

Seite 107 - UTILIZATION

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To connect / change the value of the Gain Multiplier input (S11): Ma

Seite 108 - INPUTS – OUTPUTS

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To change the value of the Manual Reset input (S5): To enter a local

Seite 109

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To change the values of the following: Proportional Gain - S12 Integ

Seite 110

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To change the value of the Derivative Lag Constant (S15): Open the P

Seite 111 - Dual loop

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To change the value of the Output Limits (S16, S17): Open the PID bl

Seite 112

MicroMod Automation, Inc. The Company MicroMod Automation is dedicated to improving customer efficiency by providing the most cost-effective, applic

Seite 113 - Display Block

Command Series Migration to MOD 30ML Function Codes – Introduction Figure 1 .6. Inside a Compound • You can ungroup a compound by un-compoundin

Seite 114

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To change the Algorithm Type (S18): Open the PID block and open the

Seite 115

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To change the Control Action (S21): Open the PID block and open the

Seite 116

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To enable Setpoint Tracking (FC21-S14): Open the PID block and open

Seite 117

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP Remote Setpoint Configuration Options: Open the PID block and select

Seite 118

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP Auto Bias: Bias value of remote setpoint is automatically manipulat

Seite 119

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To change the process variable high alarm (FC21-S7): Open the PAD bl

Seite 120

Command Series Migration to MOD 30ML Pre-configured PID Ratio with Remote SP To change the process variable low alarm (FC21-S8): Open the PAD blo

Seite 121

BOOK 2 REFERENCE SECTION 2 FUNCTION CODE COMPOUNDS

Seite 123

Function Code 1- Function Generator GENERAL DESCRIPTION This function approximates a nonlinear output to input relationship. The input range i

Seite 124

Command Series Migration to MOD 30ML Function Codes – Introduction • This will un-group the function blocks and place them where the grouped comp

Seite 125

Command Series Migration to MOD 30ML Function Code 1- Function Generator Figure 1 .2.Function Generator compound INPUTS - OUTPUTS INPUTS - OUT

Seite 126

Function Code 2- Manual Set Constant GENERAL DESCRIPTION The output of the Manual Set Constant or the Signal Generator is an analog signal dev

Seite 127

Command Series Migration to MOD 30ML Function Code 2- Manual Set Constant Millisecond time Format: hh:mm:ss.xxx (xxx in millisecond) Hex Hexadec

Seite 128 - INPUTS - OUTPUTS

Command Series Migration to MOD 30ML Error! No text of specified style in document. APPLICATIONS This compound is meant for storing of values that

Seite 129

Command Series Migration to MOD 30ML Function Code 2- Manual Set Constant 2 - 4

Seite 130

Function Code 3 - Lead / Lag GENERAL DESCRIPTION The output of a lead/lag function code equals the product of the time function and the input

Seite 131 - PID with Remote

Command Series Migration to MOD 30ML Function Code 3 - Lead / Lag EXPLANATION Function code 3 causes the output of the function block to lead or

Seite 132

Command Series Migration to MOD 30ML Function Code 3 - Lead / Lag Lag Function : To select the lag function, leave S3 at its initial value (0) and

Seite 133

Command Series Migration to MOD 30ML Function Code 3 - Lead / Lag 3 - 4

Seite 134

Function Code 6 – High / Low Limiter GENERAL DESCRIPTION This block limits the output signal to a range that lies between a specified high and

Seite 135

Command Series Migration to MOD 30ML Function Codes – Introduction • You can also double-click on the Compound Internals and then select from th

Seite 136

Command Series Migration to MOD 30ML Function Code 6 – High / Low Limiter 6 - 2

Seite 137

Function Code 7 – Square Root GENERAL DESCRIPTION This function computes the square root of the input signal in engineering units. The output

Seite 138

Command Series Migration to MOD 30ML Function Code 7 – Square Root N Output – R Floating Point Connect from the FC7.N signal of the compound.

Seite 139

Command Series Migration to MOD 30ML Function Code 7 – Square Root Figure 7 .3. LN block used for linearizing 7 - 3

Seite 140

Command Series Migration to MOD 30ML Function Code 7 – Square Root 7 - 4

Seite 141

Function Code 8 – Rate Limiter GENERAL DESCRIPTION The output of this block equals the input until the input rate of change exceeds the limit

Seite 142

Command Series Migration to MOD 30ML Function Code 8 – Rate Limiter INPUTS - OUTPUTS Signal Block Type Description S1 RATELIM Input – S1 Floa

Seite 143

Command Series Migration to MOD 30ML Function Code 8 – Rate Limiter To verify this, check the execution order of the blocks. Select Objects – Set

Seite 144

Command Series Migration to MOD 30ML Function Code 8 – Rate Limiter To change the Increase Rate Limit S3: Open the EX block INCLIM. Select the In

Seite 145

Command Series Migration to MOD 30ML Function Code 8 – Rate Limiter Figure 8 .5. Blocks Execution Order after rearranging 8 - 5

Seite 146 - Low Alarm

Command Series Migration to MOD 30ML Function Codes – Introduction LOOP COMPOUNDS Loop compound is a special compound that contains a loop block.

Seite 147

Command Series Migration to MOD 30ML Function Code 8 – Rate Limiter 8 - 6

Seite 148

Function Code 9 – Analog Transfer GENERAL DESCRIPTION This function selects one of two inputs depending on Boolean input <S3>. The outpu

Seite 149

Command Series Migration to MOD 30ML Function Code 9 – Analog Transfer S2 S1/S2 Input – S2 Floating Point Connect to the S1/S2.S2 signal of the

Seite 150

Command Series Migration to MOD 30ML Function Code 9 – Analog Transfer Figure 9 .2. Blocks Execution Order You can change the execution order of

Seite 151 - Remote SP

Command Series Migration to MOD 30ML Function Code 9 – Analog Transfer Figure 9 .4. Timer block S4 To change the transfer time (S5) for S2: Ope

Seite 152

Command Series Migration to MOD 30ML Function Code 9 – Analog Transfer Figure 9 .5. Timer Block S5 9 - 5

Seite 153

Command Series Migration to MOD 30ML Function Code 9 – Analog Transfer 9 - 6

Seite 154

Function Code 10 – High Select GENERAL DESCRIPTION This function selects and outputs the input with the highest algebraic value. UTILIZATION

Seite 155

Command Series Migration to MOD 30ML Function Code 10 – High Select S4 FC10 Input – S4 Floating Point Connect to the FC10.S4 signal to the Hig

Seite 156

Function Code 11 – Low Select GENERAL DESCRIPTION This function selects and outputs the input with the lowest algebraic value. UTILIZATION Th

Seite 157

Command Series Migration to MOD 30ML Function Codes – Introduction Figure 1 .13. Cancel Connection To add a loop compound: Select the Loop Cpd (

Seite 158

Command Series Migration to MOD 30ML Function Code 11 – Low Select N FC11 Output – R Floating Point Connect from the FC11.N output signal from

Seite 159

Function Code 12 – High / Low Compare GENERAL DESCRIPTION This function has two outputs. When the input is equal to or exceeds the high limit,

Seite 160

Command Series Migration to MOD 30ML Function Code 12 – High / Low Compare INPUTS - OUTPUTS Input Block Type Description S1 HIGHLIM Input –

Seite 161

Command Series Migration to MOD 30ML Function Code 12 – High / Low Compare NOTES To change the High alarm point / high limit: Open the HIGHLIM exp

Seite 162

Command Series Migration to MOD 30ML Function Code 12 – High / Low Compare Figure 12 .3. High Select Function Inputs 12 - 4

Seite 163

Function Code 14 - Summer GENERAL DESCRIPTION This function computes the algebraic sum of up to four inputs with unity gain. The output equati

Seite 164 - Hi Alarm

Command Series Migration to MOD 30ML Function Code 14 - Summer Figure 14 .2. Function Code 14 Input Configuration INPUTS - OUTPUTS Signal Bloc

Seite 165

Function Code 15 – Summer (2 Inputs) GENERAL DESCRIPTION This function performs a weighted sum of two inputs. By choosing the proper gains and

Seite 166

Command Series Migration to MOD 30ML Function Code 15 – Summer (2 Inputs) Figure 15 .2. Function Code 15 INPUTS - OUTPUTS Signal Block Type

Seite 167

Function Code 16 – Multiply GENERAL DESCRIPTION This function performs a multiplication of two input signals (S1 by S2) with the result multip

Seite 168

Command Series Migration to MOD 30ML Function Codes – Introduction • Loop compounds also have jump objects when connections are made from or to t

Seite 169

Command Series Migration to MOD 30ML Function Code 16 – Multiply Figure 16 .2. Function Code 16 INPUTS - OUTPUTS Signal Block Type Descripti

Seite 170

Function Code 17 – Divide GENERAL DESCRIPTION This function causes one input S1 to be divided by a second input S2 and the quotient to be mult

Seite 171

Command Series Migration to MOD 30ML Function Code 17 – Divide Figure 17 .2. Function Code 17 INPUTS - OUTPUTS Signal Block Type Description

Seite 172

Function Code 20 – Indicator Station GENERAL DESCRIPTION This function displays 3 inputs in one display one at a time. UTILIZATION The MOD

Seite 173 - Cascade PID

Command Series Migration to MOD 30ML Function Code 20 – Indicator Station Figure 20 .2. Function Code 14 Input Configuration Add the Display

Seite 174

Command Series Migration to MOD 30ML Error! No text of specified style in document. Figure 20 .3. Closing Compound • Click on the New button on t

Seite 175

Command Series Migration to MOD 30ML Function Code 20 – Indicator Station • A text edit box will appear in the area below and you will see a te

Seite 176

Command Series Migration to MOD 30ML Error! No text of specified style in document. INPUTS - OUTPUTS Signal Block Type Description S1 DISPLAY

Seite 177

Command Series Migration to MOD 30ML Function Code 20 – Indicator Station 20 - 6

Seite 178

Function Codes 25 and 41 – Analog/Digital Input GENERAL DESCRIPTION This function can be used to acquire an input (analog, digital or any othe

Seite 179

Command Series Migration to MOD 30ML Function Codes – Introduction THE CONFIGURATION PROCESS The steps involved configuring a MOD 30ML or Modcell

Seite 180

Command Series Migration to MOD 30ML Function Codes 25 and 41 – Analog/Digital Input   To configure the ICN communication in an instrument data

Seite 181

Command Series Migration to MOD 30ML Function Codes 25 and 41 – Analog/Digital Input Figure 25 .3. Function Code 25 and 41 To configure the sourc

Seite 182

Command Series Migration to MOD 30ML Function Codes 25 and 41 – Analog/Digital Input Figure 25 .4. IC Block INPUTS - OUTPUTS Signal Block Typ

Seite 183

Function Code 28 – Analog/Digital Output GENERAL DESCRIPTION This function can be used to send an output (analog, digital or any other data ty

Seite 184

Command Series Migration to MOD 30ML Function Code 28 – Analog/Digital Output   To configure the ICN communication in an instrument database, y

Seite 185

Command Series Migration to MOD 30ML Function Code 28 – Analog/Digital Output Instrument Number – This is the ICN address of the instrument wher

Seite 186 - Low Alarm

Command Series Migration to MOD 30ML Function Code 28 – Analog/Digital Output 28 - 4

Seite 187

Function Code 33 – NOT GENERAL DESCRIPTION Function code 33 performs a logical negation of the input (the output is the opposite of the input)

Seite 188

Command Series Migration to MOD 30ML Function Code 33 – NOT 33 - 2

Seite 189

Function Code 34 – Memory (RS Flip Flop) GENERAL DESCRIPTION This function memorizes its previous output when both inputs are logic 0. S1 is t

Seite 190

Command Series Migration to MOD 30ML Function Codes – Introduction Procedure for adding the Display Tag to the Display Interface Block Each displa

Seite 191 - PID Ratio with

Command Series Migration to MOD 30ML Function Code 34 – Memory (RS Flip Flop) Figure 34 .2. Function Code 34 S3 INPUTS - OUTPUTS Truth Table f

Seite 192

Function Code 35 – Timer GENERAL DESCRIPTION The timer function code performs pulsed timing function. The duration of time delay is specified

Seite 193

Command Series Migration to MOD 30ML Function Code 35 – Timer Figure 35 .2. Function Code 35 S3 INPUTS – OUTPUTS Signal Block Type Descript

Seite 194

Command Series Migration to MOD 30ML Error! No text of specified style in document. EXPLANATION I/O Elapsed Time < S3 Elapsed Time > S3 IN

Seite 195

Command Series Migration to MOD 30ML Function Code 35 – Timer 35 - 4

Seite 196

Function Code 36 – Qualified OR GENERAL DESCRIPTION The qualified OR function code monitors the status of up to eight digital inputs and produ

Seite 197

Command Series Migration to MOD 30ML Function Code 36 – Qualified OR To specify the value of S9, open the EX block and click on the Inputs tab. D

Seite 198

Command Series Migration to MOD 30ML Function Code 36 – Qualified OR Figure 36 .3. INPUTS - OUTPUTS Signal Block Type Description S1 FC36

Seite 199

Command Series Migration to MOD 30ML Function Code 36 – Qualified OR S7 FC36 Input – S7 Boolean (Discrete) Connect to the FC36.S7 signal of the

Seite 200

Function Code 37 – AND (2 input) GENERAL DESCRIPTION The 2-input AND function code performs the logical AND function. The output is logic 1 wh

Seite 201

Command Series Migration to MOD 30ML Function Codes – Introduction Figure 1 .16. DIF block Click on the New button on this block as shown in fig

Seite 202

Command Series Migration to MOD 30ML Function Code 37 – AND (2 input) Truth Table Figure 37 .2. Function Code 37 Truth Table 37 - 2

Seite 203

Function Code 38 – AND (4 input) GENERAL DESCRIPTION The 4-input AND function code performs the logical AND function. The output is logic 1 wh

Seite 204

Command Series Migration to MOD 30ML Function Code 38 – AND (4 input) N FC38 Output – R Boolean (Discrete) Connect from the FC.38.N signal of t

Seite 205

Function Code 39 – OR (2 input) GENERAL DESCRIPTION The 2-input OR function code performs the logical OR function. The output is logic 1 if ei

Seite 206

Command Series Migration to MOD 30ML Function Code 39 – OR (2 input) 39 - 2

Seite 207 - FUNCTION CODE COMPOUNDS

Function Code 40 – OR (4 input) GENERAL DESCRIPTION The 4-input OR function code is used to perform the logical OR function. The output is log

Seite 208

Command Series Migration to MOD 30ML Function Code 40 – OR (4 input) Truth Table Figure 40 .2. Function Code 40 Truth Table 40 - 2

Seite 209

Function Code 51- Manual Set Constant GENERAL DESCRIPTION The output of the Manual Set Constant or the Signal Generator is an analog signal de

Seite 210 - APPLICATIONS

Command Series Migration to MOD 30ML Function Code 51- Manual Set Constant INPUTS - OUTPUTS Signal Type Block Description S1 Input – S1 Float

Seite 211

Function Code 59- Digital Transfer GENERAL DESCRIPTION This function code selects one of two digital inputs, depending on a transfer switch si

Seite 212

Command Series Migration to MOD 30ML Function Codes – Introduction A text edit box will appear in the area below and you will see a text edit curs

Seite 213

Command Series Migration to MOD 30ML Function Code 59- Digital Transfer 59 - 2

Seite 214

Function Code 65 – Digital Sum with Gain GENERAL DESCRIPTION This function computes the weighted sum of up to four Boolean inputs. The output

Seite 215 - Function Code 3 - Lead / Lag

Command Series Migration to MOD 30ML Function Code 65 – Digital Sum with Gain Figure 65 .2. Function Code 65 Input Configuration INPUTS - OUTP

Seite 216

Command Series Migration to MOD 30ML Function Code 65 – Digital Sum with Gain S6 FC65 Input gain parameter – S6 Floating Point Connect to the F

Seite 217

Command Series Migration to MOD 30ML Function Code 65 – Digital Sum with Gain 65 - 4

Seite 218

Function Code 156 – PID with Local SP GENERAL DESCRIPTION The advanced PID controller function code implements a proportional integral derivat

Seite 219

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP EXPLANATION Configuration with this compound requires understanding o

Seite 220

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP GAIN to change the value. S13 ENG Input – RESET Floating Point Integra

Seite 221 - Function Code 7 – Square Root

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP S23 N/A N/A N/A SPTI PID Input – Floating Point Setpoint track inp

Seite 222 - VCI block used for

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP To enable feedforward control and change the feedforward type (S6): Ope

Seite 223 - LN block used for

Command Series Migration to MOD 30ML CONTENTS CONTENTS Page BOOK 1 SECTION 1 – FUNCTIONCODES - INTRODUCTION HOW TO USE THIS BOOK ...

Seite 224

Command Series Migration to MOD 30ML Function Codes – Introduction PID CONFIGURATION REFERENCE The PID block in the MOD 30ML/Modcell is versatile

Seite 225

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP To connect / change the value of the Gain Multiplier input (S11): Make

Seite 226

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP To change the value of the Manual Reset input (S5): To enter a local val

Seite 227 - Order after

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP To change the values of the following: Proportional Gain - S12 Integra

Seite 228

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP To change the value of the Derivative Lag Constant (S15): Open the PID b

Seite 229

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP To change the value of the Output Limits (S16, S17): Open the PID bloc

Seite 230

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP To change the Algorithm Type (S18): Open the PID block and open the Cont

Seite 231

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP To change the Control Action (S21): Open the PID block and open the Ge

Seite 232

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP To enable Setpoint Tracking (FC21-S14): Open the PID block and open the

Seite 233

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP Notice that the only setpoint mode allowed is LOCAL: Figure 156 .12.

Seite 234 - Timer block S4

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP To change the process variable high alarm (FC21-S7): Open the PAD block

Seite 235 - Timer Block S5

Command Series Migration to MOD 30ML Function Codes – Introduction Figure 1 .20. PID Control Tab • Select the Algorithm Type and change it to ES

Seite 236

Command Series Migration to MOD 30ML Function Code 156 – PID with Local SP To change the process variable low alarm (FC21-S8): Open the PAD block

Seite 237

Function Code 156 – PID (Cascade) GENERAL DESCRIPTION The advanced PID controller function code implements a proportional integral derivative

Seite 238

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) EXPLANATION Configuration with this compound requires understanding of th

Seite 239 - Function Code 11 – Low Select

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) of the PID2 block. Change the value for GAIN MULTIPLIER INPUT. S11 PIDFA

Seite 240

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) S19 N/A N/A N/A S21 PID1, PID2, PIDFAIL Input – S21 Discreet Controller

Seite 241

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To change the display tag name for the PID: Open the display block Displ

Seite 242

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To enable feedforward control and change the feedforward type (S6): Open

Seite 243 - Function Inputs

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To connect / change the value of the Gain Multiplier input (S11): Make a

Seite 244

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To change the value of the Manual Reset input (S5): To enter a local value

Seite 245 - Function Code 14 - Summer

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To change the values of the following: Proportional Gain - S12 Integral R

Seite 246

Command Series Migration to MOD 30ML Function Codes – Introduction M 8 MICRO-SCAN. Reset response is turned on and is operating with MICRO-SCAN a

Seite 247

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To change the value of the Derivative Lag Constant (S15): Open the respect

Seite 248

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To change the value of the Output Limits (S16, S17): Open the respective

Seite 249 - Function Code 16 – Multiply

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To change the Algorithm Type (S18): Open the respective PID block and open

Seite 250

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To change the Control Action (S21): Open the respective PID block and ope

Seite 251 - Function Code 17 – Divide

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To enable Setpoint Tracking (FC21-S14): Open the respective PID block and

Seite 252

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To change the process variable high alarm (FC21-S7): Open the desired PAD

Seite 253

Command Series Migration to MOD 30ML Function Code 156 – PID (Cascade) To change the process variable low alarm (FC21-S8): Open the desired PAD b

Seite 254 - Configuration

Function Code 156 – PID with Remote SP GENERAL DESCRIPTION The advanced PID controller function code implements a proportional integral deriva

Seite 255 - Closing Compound

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP EXPLANATION Configuration with this compound requires understanding

Seite 256

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP Floating Point GAIN to change the value. S13 ENG Input – RESET Flo

Seite 257 - OPERATION

Command Series Migration to MOD 30ML Function Codes – Introduction  The valid actions for CATYPE are: EOOO Gain on error, Reset off, Pre-Act of

Seite 258

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP N PID Output – N Floating Point Output of the compound. Connect fro

Seite 259

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To change the display tag name for the PID: Open the display block

Seite 260 - Function Code 25

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To enable feedforward control and change the feedforward type (S6):

Seite 261

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To connect / change the value of the Gain Multiplier input (S11): Ma

Seite 262

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To change the value of the Manual Reset input (S5): To enter a local

Seite 263

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To change the values of the following: Proportional Gain - S12 Integ

Seite 264 - Function Code 28

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To change the value of the Derivative Lag Constant (S15): Open the PI

Seite 265

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To change the value of the Output Limits (S16, S17): Open the PID bl

Seite 266

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To change the Algorithm Type (S18): Open the PID block and open the C

Seite 267 - Function Code 33 – NOT

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To change the Control Action (S21): Open the PID block and open the

Seite 268

Command Series Migration to MOD 30ML Function Codes – Introduction • Click on the Setpoint tab to select the Setpoint configuration options. See

Seite 269

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To enable Setpoint Tracking (FC21-S14): Open the PID block and open t

Seite 270

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP Remote Setpoint Configuration Options: Open the PID block and selec

Seite 271 - Function Code 35 – Timer

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP Auto Bias: Bias value of remote setpoint is automatically manipulate

Seite 272

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To change the process variable high alarm (FC21-S7): Open the PAD bl

Seite 273

Command Series Migration to MOD 30ML Function Code 156 – PID with Remote SP To change the process variable low alarm (FC21-S8): Open the PAD bloc

Seite 274

Function Code 156 – PID Ratio with Remote SP GENERAL DESCRIPTION The advanced PID controller function code implements a proportional integral

Seite 275

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP reference that includes listing of most commonly used / changed

Seite 276 - Function Code 36

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP Floating Point Inputs tab and select the input RESET to change

Seite 277

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP To change the display tag name for the PID: Open the display b

Seite 278

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP To enable feedforward control and change the feedforward type

Seite 279

Command Series Migration to MOD 30ML Function Codes – Introduction • Click on the Output tab to select the output configuration options. See the

Seite 280 - Truth Table

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP To connect / change the value of the Gain Multiplier input (S11

Seite 281

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP To change the value of the Manual Reset input (S5): To enter a

Seite 282

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP To change the values of the following: Proportional Gain - S12

Seite 283

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP To change the value of the Derivative Lag Constant (S15): Open

Seite 284

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP To change the value of the Output Limits (S16, S17): Open the P

Seite 285

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP To change the Algorithm Type (S18): Open the PID block and ope

Seite 286

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP To change the Control Action (S21): Open the PID block and open

Seite 287

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP To enable Setpoint Tracking (FC21-S14): Open the PID block and

Seite 288

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP Remote Setpoint Configuration Options: Open the PID block and s

Seite 289

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP Auto Bias: Bias value of remote setpoint is automatically man

Seite 290

Command Series Migration to MOD 30ML Function Codes – Introduction block or it can be an internal value in the PID block that can be manually cha

Seite 291

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP To change the process variable high alarm (FC21-S7): Open the P

Seite 292

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP Figure 156rr .15. Process Variable Low Alarm PID Ratio with R

Seite 293

Command Series Migration to MOD 30ML Function Code 156 – PID Ratio with Remote SP 156rr - 18

Seite 294

Function Code 156 – PID with Manual/Auto Station GENERAL DESCRIPTION The PID with Manual/Auto station function basically performs Manual / Aut

Seite 295

Command Series Migration to MOD 30ML Function Code 156 – PID with Manual/Auto Station EXPLANATION Configuration with this compound requires unde

Seite 296

Command Series Migration to MOD 30ML Function Code 156 – PID with Manual/Auto Station S12 M/A Input – GAIN Floating Point Proportional Gain Kp. E

Seite 297 - 156 - 3

Command Series Migration to MOD 30ML Function Code 156 – PID with Manual/Auto Station To change the display tag name for the PID: Open the displ

Seite 298 - Function Code

Command Series Migration to MOD 30ML Function Code 156 – PID with Manual/Auto Station To enable feedforward control and change the feedforward type

Seite 299

Command Series Migration to MOD 30ML Function Code 156 – PID with Manual/Auto Station To connect / change the value of the Gain Multiplier input

Seite 300

Command Series Migration to MOD 30ML Function Code 156 – PID with Manual/Auto Station To change the value of the Manual Reset input (S5): To enter

Seite 301

BOOK 1 SECTION 2 GALLERY TUTORIAL

Seite 302

Command Series Migration to MOD 30ML Function Code 156 – PID with Manual/Auto Station To change the value of the Derivative Lag Constant (S15): O

Seite 303

Command Series Migration to MOD 30ML Function Code 156 – PID with Manual/Auto Station To change the value of the Output Limits (S16, S17): Open the

Seite 304

Command Series Migration to MOD 30ML Function Code 156 – PID with Manual/Auto Station To change the Control Action (S21): Open the PID block and

Seite 305

Command Series Migration to MOD 30ML Function Code 156 – PID with Manual/Auto Station Note that the OP (Output) of the PID block is connected to th

Seite 306

Command Series Migration to MOD 30ML Function Code 156 – PID with Manual/Auto Station Notice that the only setpoint mode allowed is REMOTE: Figur

Seite 307

Function Code 156 – Auto Bias Station GENERAL DESCRIPTION The PID with Auto Bias Station is basically a Manual/Auto station that performs Manu

Seite 308

Command Series Migration to MOD 30ML Function Code 156 – Auto Bias Station EXPLANATION Configuration with this compound requires understanding o

Seite 309

Command Series Migration to MOD 30ML Function Code 156 – Auto Bias Station MULTIPLIER INPUT. S12 AUTO BIAS Input – GAIN Floating Point Proport

Seite 310

Command Series Migration to MOD 30ML Function Code 156 – Auto Bias Station To change the display tag name for the PID: Open the display block PI

Seite 311

Command Series Migration to MOD 30ML Function Code 156 – Auto Bias Station To enable feedforward control and change the feedforward type (S6):

Seite 313

Command Series Migration to MOD 30ML Function Code 156 – Auto Bias Station To connect / change the value of the Gain Multiplier input (S11): Make

Seite 314

Command Series Migration to MOD 30ML Function Code 156 – Auto Bias Station To change the value of the Manual Reset input (S5): To enter a local

Seite 315

Command Series Migration to MOD 30ML Function Code 156 – Auto Bias Station To change the values of the following: Proportional Gain - S12 Integra

Seite 316

Command Series Migration to MOD 30ML Function Code 156 – Auto Bias Station To change the value of the Derivative Lag Constant (S15): Open the PI

Seite 317

Command Series Migration to MOD 30ML Function Code 156 – Auto Bias Station To change the value of the Output Limits (S16, S17): Open the PID bloc

Seite 318

Command Series Migration to MOD 30ML Function Code 156 – Auto Bias Station Note that the OP (Output) of the PID block is connected to the SPTI (

Seite 319

Command Series Migration to MOD 30ML Function Code 156 – Auto Bias Station Notice that the only setpoint mode allowed is REMOTE: Figure 156ab .10

Seite 320

Function Code 165 - Moving Average GENERAL DESCRIPTION The moving average function code computes a moving average from n samples taken at a de

Seite 321

Command Series Migration to MOD 30ML Function Code 165 - Moving Average INPUTS - OUTPUTS Signal Type Block Description S1 Input – S1 Floating

Seite 322

BOOK 2 REFERENCE SECTION 3 EXTRAS

Seite 323

Function Codes – Gallery Tutorial FOREWORD The ViZapp (Visual Application Designer) software has a library of function block compounds that rep

Seite 325

Extras – Reject to Manual GENERAL DESCRIPTION The Reject to Manual compound sends a logical Zero output when its digital input does a low to h

Seite 326

Command Series Migration to MOD 30ML Extras – Reject to Manual INPUTS - OUTPUTS Signal Type Block Description S1 Input – S1 Discrete QUALLOGI

Seite 328

The Company’s policy is one of continuous product improvement and the right is reserved to modify the information

Seite 329

Command Series Migration to MOD 30ML CONTENTS BOOK 2 – FUNCTION CODE GALLERY COMPOUNDS REFERENCE SECTION 1 – PRE-CONFIGURED CONTROL STRATEGIES 1

Seite 330 - Floating Point

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial INSTRUCTIONS – CREATING A NEW WORKSPACE, PROJECT AND DOCUMENT 1. Launch Vi

Seite 331

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .3. New Workspace • By default, the workspace file is created i

Seite 332

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial  • The New dialog box will redisplay Figure 2 .5. New Workspace • T

Seite 333

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial • Notice that the workspace Class is added to the project tree. We will cr

Seite 334

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .9. Class Workspace • The left frame shows the project tree. T

Seite 335

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .10. New Document • The New dialog box shows the Document tab no

Seite 336

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .11. Choose Instrument Version • Select MOD 30ML 2 from this li

Seite 337

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial  Each instrument will have its own database. The databases of the instrum

Seite 338

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial CONFIGURING SCAN GROUPS AND LOOP COMPOUNDS 5. Let us first configure a sc

Seite 339

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial M/A Station – Function Code 21 Analog output AO – Function Code 29 Figure 2

Seite 340

Command Series Migration to MOD 30ML CONTENTS 20 FUNCTION CODE 35 – TIMER...

Seite 341

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial • Select the Loop Cpd (Loop compound) block from the Algorithms window ad

Seite 342

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial • Type a description "This compound is for the Flow Control Loop"

Seite 343

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .19. Open Compound • The loop compound will open as shown below

Seite 344

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .20. Inside the Loop Compound  A loop compound is a compound or

Seite 345

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .21. Loop Block • Close the Loop block by clicking on the OK bu

Seite 346

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial ADDING COMPOUND FROM THE GALLERY 11. We will now use a compound from the B

Seite 347

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .23. Bailey FC Gallery • The compounds in this gallery have be

Seite 348

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .24. Bailey FC Gallery • The exported compound will be placed in

Seite 349

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial ADDING I/O 12. The loaded compound has all the function blocks for doing t

Seite 350

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial • Resize the block by dragging one of the handles (corner or side) Figure

Seite 351

Command Series Migration to MOD 30ML CONTENTS iv

Seite 352

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial • The next function block VCI, is a signal conditioning block. This block

Seite 353

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .29. PID Options Tab • Click on OK to accept the changes and clo

Seite 354

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial MAKING CONNECTIONS 15. The next step is to connect the blocks together.

Seite 355

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .33. Connecting blocks • The connection will now be complete. Th

Seite 356

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .35. Right Angle connection • Click on the output point of the

Seite 357

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .37. Choose Parameter • Select PID.S1 from the list and then cli

Seite 358

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .39. Cancel Connection 17. Connect the PID output from the com

Seite 359

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .41. 2 - 29

Seite 360 - High Alarm

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial CHANGING ENGINEERING RANGES AND ALARM TRIP VALUES 18. The FC156 PID (PV/L

Seite 361

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .44. ENG block • Select the Inputs tab of this block. Double-cl

Seite 362

BOOK 1 SECTION 1 FUNCTION CODES – INTRODUCTION

Seite 363

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .45. ENG block • Repeat the above process to configure the Low

Seite 364

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial  If you press the ALARM key on the faceplate when the alarm is active, th

Seite 365 - 156ma - 3

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial CONFIGURING DISPLAY TAG FOR THE PID DISPLAY 19. Each display configured i

Seite 366

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .48. PID Display • Click on OK to close the block. 2 - 35

Seite 367

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial 20. Close the compound: • First click on a blank area of the function b

Seite 368

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial 21. Add the Display Tag to the Display Interface Block: The next step is t

Seite 369

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .52. Closing Compound • A text edit box will appear in the are

Seite 370

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .53. Closing Compound • Refer back to the figure 1-37 for the di

Seite 371

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial SAVING DOCUMENTS 22. Save your Document. Figure 2 .54. File Menu • I

Seite 372

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial SETTING UP COMMUNICATIONS WITH MODBUS 23. We need to setup communications f

Seite 374

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial  The connections for the port are available in the terminals in the back

Seite 375

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial COMPILING THE DATABASE It is necessary to compile the database without erro

Seite 376

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .60. Interface File Options for Modbus • If the database has er

Seite 377

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial Figure 2 .61. Information Window • You can double-click on an error to o

Seite 378 - Auto Bias Station

Command Series Migration to MOD 30ML Function Codes – Gallery Tutorial 2 - 46

Seite 379

BOOK 2 REFERENCE SECTION 1 PRE-CONFIGURED CONTROL STRATEGIES

Seite 381

Pre-configured Single Loop PID Control GENERAL DESCRIPTION The advanced PID controller function code implements a proportional integral deriva

Seite 382

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control EXPLANATION Configuration with this compound requires understanding

Seite 383

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control of the PID block. Change the value for GAIN MULTIPLIER INPUT. S12 EN

Seite 384

Function Codes – Introduction HOW TO USE THIS BOOK This book is meant for users of Bailey SLC, CLC controllers who are migrating to the new gen

Seite 385

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control the first loop. S22 N/A N/A N/A S23 N/A N/A N/A SPTI PID Input

Seite 386

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To configure the inputs: Open the AIN block AIN1 for input 1. See fi

Seite 387

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control Figure P1.3. PID with Local SP You will need to use a different in

Seite 388

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To change the display tag name for the PID: Open the display block P

Seite 389 - SECTION 3

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To enable feedforward control and change the feedforward type (S6):

Seite 390

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To connect / change the value of the Gain Multiplier input (S11): Mak

Seite 391 - Extras – Reject to Manual

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To change the value of the Manual Reset input (S5): To enter a local

Seite 392

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To change the values of the following: Proportional Gain - S12 Integr

Seite 393

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To change the value of the Derivative Lag Constant (S15): Open the PI

Seite 394

Command Series Migration to MOD 30ML Pre-configured Single Loop PID Control To change the value of the Output Limits (S16, S17): Open the PID blo

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