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CC-M
FE CC-M Manuals
Manuals and User Guides for FE CC-M. We have
1
FE CC-M manual available for free PDF download: Instruction Manual
FE CC-M Instruction Manual (43 pages)
Brand:
FE
| Category:
Controller
| Size: 1 MB
Table of Contents
Introduction
2
Safety Precautions
3
Table of Contents
6
Foreword
8
General Precautions on Compact Controller (CC-M)
10
Precautions for Use of Wafers
10
Correspondence of External Signals and Internal Signals
10
Contents of Internal Arithmetic Operations
11
Modes and Output Signals of Controller
12
Control Output Bumpless Changeover
13
Balanceless, Bumpless Circuit at the Time of Mode Change of Controller Mode (Case of from A-Mode to R-Mode)
14
Case Where R-SV Is an External Signal (Manual Bumpless Changeover)
14
Case Where R-SV Is an Internal Signal
14
Secondary PID Control Are Used)
14
Bumpless Changeover Circuit of Ordinary Cascade Control
14
Bumpless Changeover Circuit with Inverse Arithmetic Operation Function
15
Bumpless Changeover Circuit Using Primary Integration Circuit
16
Bumpless Changeover Circuit Using Pulse Width Integration Wafer (06)
17
How to Hold Output Value (MV)
18
Method to Input External Signal (Forced Manual SMAN)
18
Method to Input External Signal (EX
18
Method to Stop Addition of ∆MV Value
18
Method for Materialization of Various Functions Using
19
Wafers of Various Types
19
How to Use Changeover Wafer (67)
19
Analog Signal Hold Circuit
19
Sample Hold Circuit Using Pulse Generation Wafer
19
R · S Flip-Flop Circuit (RESET Priority)
20
Changeover of Digital Signal
20
Creation of One-Shot Multiple Circuits (Method to Use Basic Period)
21
Method to Seize Rise of Input
21
Method to Seize Fall of Input
21
Method Using Timer and Logical Wafer
22
How to Use Ramp Output Wafer
23
Ramp Output Circuit (Case of Normal Way of Use)
23
Method to Use Ramp Wafer as a Change Ratelimiter
23
How to Use Dead Time Wafer
24
Series Connection of Dead Time Wafers
24
Method to Convert Analog Signal to Integration Pulse
25
Method to Create Time Function Circuit Using Analog Integration Wafer and N Wafer
26
Method to Create 32-Segmented-Line Approximation Circuit
27
Sequence Circuit of Program Setting Wafer
28
Bulb Compensation Circuit
29
Method for Materialization of Various Advance Controls
30
Selective Control (Auto Selector)
30
Method to Make Selection by Outputs of Primary Integration Wafer and Secondary Integration Wafer
31
Method to Make Selection by Velocity Control Type Outputs of Primary PID
32
Wafer and Secondary PID Wafer
32
Variable Gain Control
33
Variable Gain by LIN Wafer
34
Variable Gain by Primary PID Block and Secondary PID Block
35
Deviation Square Type PID Control
35
Feed Forward Control
36
Static Feed Forward
37
Dynamic Feed Forward
37
Dead Time Control
38
Sampling Control
38
Intermittent PID Control (Sample Value Type PID Control)
39
Smith's Dead Time Compensation Control
40
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