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COMBIVERT 38F5 Series
KEB COMBIVERT 38F5 Series Manuals
Manuals and User Guides for KEB COMBIVERT 38F5 Series. We have
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KEB COMBIVERT 38F5 Series manual available for free PDF download: Instructions For Use Manual
KEB COMBIVERT 38F5 Series Instructions For Use Manual (72 pages)
INSTALLATION ACTIVE INFEED CONTROLLER
Brand:
KEB
| Category:
Inverter
| Size: 4.72 MB
Table of Contents
Preface
3
Signal Words and Symbols
3
More Symbols
3
Laws and Guidelines
4
Warranty and Liability
4
Support
4
Copyright
4
Table of Contents
5
List of Figures
8
List of Tables
9
Glossary
10
Standards for Drive Converters / Control Cabinets
12
Product Standards that Apply Directly to the Drive Converter
12
Basic Standards to Which Drive Converter Standards Refer Directly
12
Standards that Are Used in the Environment of the Drive Converter
13
1 Basic Safety Instructions
14
Target Group
14
Transport, Storage and Proper Use
14
Installation
15
Electrical Connection
16
EMC-Compatible Installation
17
Voltage Test
17
Insulation Measurement
17
Start-Up and Operation
18
Maintenance
19
Repair
19
Disposal
20
2 Product Description
21
Specified Application
22
Residual Risks
22
Unintended Use
22
Part Code
23
Table 1: Part Code
23
3 Technical Data
24
Operating Conditions
24
Climatic Environmental Conditions
24
Table 2: Climatic Environmental Conditions
24
Mechanical Environmental Conditions
25
Chemical / Mechanical Active Substances
25
Table 3: Mechanical Environmental Conditions
25
Table 4: Chemical / Mechanical Active Substances
25
Electrical Operating Conditions
26
Device Classification
26
Electromagnetic Compatibility
26
Table 5: Device Classification
26
Table 6: Electromagnetic Compatibility
26
4 Unit Data
27
Table 7: Device Data
27
Overload Characteristic
30
Accessories
30
Aic, Lcl And Emc Filters
30
Figure 1: Overload Characteristic
30
Table 8: AIC, LCL and EMC Filters
30
Common Mode Filter
31
Table 9: Common Mode Filter
31
Table 10: Sinus EMC Filters and Mains Chokes
31
DC Fuses
32
Alternative DC-Fusing
32
Table 11: DC Fuses
32
Table 12: Alternative DC-Fusing
32
Additional Precharging Resistor at Master-Slave Operation
33
Dimensions and Weights
33
Table 13: Dimensions and Weights
33
5 Installation
34
EMC-Compatible Control Cabinet Installation
34
Installation Instructions
34
Table 14: EMC-Compatible Control Cabinet Installation
34
6 Connection of the Combivert F5-AIC
35
Description of the Input Terminals at the Drive Converter
35
Table 15: Description of the Input Terminals at the Drive Converter
35
Terminal Blocks of the Devices
36
Figure 2: Terminal Blocks Housing E
36
Figure 3: Terminal Blocks Housing G
36
Figure 4: Terminal Blocks Housing H
36
Figure 5: Terminal Blocks Housing R
37
Figure 6: Terminal Blocks Housing U
37
Figure 7: Terminal Blocks Housing P
38
Cross-Sections and Tightening Torques of the Terminals
39
Table 16: Cross-Sections and Tightening Torques of the Terminals
39
External Fan Supply for Housing P and U
40
Figure 8: External Fan Supply for Housing P and U
40
Temperature Detection T1, T2
41
Use of the Temperature Input in KTY Mode
41
Use of the Temperature Input in PTC Mode
41
Input and Pre-Charging Circuits
42
Table 17: Wiring Example in PTC Mode
42
Circuit Examples
43
Instructions to the Following Circuit Example
43
Circuit Example For The Power Unit With Aic/Lcl Filter
44
Figure 9: Circuit Example for the Power Unit with AIC/LCL Filter
44
Circuit Example For The Power Unit With Aic/Lcl Filter And Common Mode Filter
45
Figure 10: Circuit Example for the Power Unit with AIC/LCL Filter and Common Mode Filter
45
Circuit Example for the Master-Slave Operation with AIC/LCL Filter and Common Mode Filter
46
Figure 11: Circuit Example for the Master-Slave Operation with AIC/LCL Filter and Common Mode Filter
46
Circuit Example for the Control Circuit
47
Figure 12: Circuit Example for the Control Circuit
47
Functional Description
48
Figure 13: Flow Chart Switch-On Procedure
48
7 Connection of the Control
49
Control Board for F5 AIC Devices
49
Assignment of the Terminal Block X2A
49
Connection of the Control
50
Digital Inputs
50
Figure 14: Assignment of the Terminal Block X2A
50
Figure 15: Digital Inputs
50
Analog Inputs
51
Voltage Input External Power Supply
51
Digital Outputs
51
Figure 16: Analog Inputs
51
Figure 17: Voltage Input External Power Supply
51
Figure 18: Digital Outputs
51
Relay Outputs
52
Analog Outputs
52
Voltage Output
52
Figure 19: Relay Outputs
52
Figure 20: Analog Outputs
52
Figure 21: Voltage Output
52
8 Operation of the Control
53
Operation Without Operator
53
Operation with Digital Operator
53
Figure 22: Operation with Digital Operator
53
Keyboard Operation
54
Parameter Numbers and / Values
54
Password Input
54
Resetting of Error Messages
54
Interface Operator
55
Description of the Diagnostic and Parameter Interface X6B
55
Figure 23: Password Input
55
Figure 24: Interface Operator
55
Description of the RS232/485 Interface X6C
56
Connection of the RS232 Interface
56
Connection of the RS485 Interface
56
Table 18: Description of the RS232/485 Interface X6C
56
Wiring RS485 Full Duplex
57
Wiring RS485 Half Duplex
57
Remote Control
57
Further Operators
57
Figure 25: Wiring RS485 Full Duplex
57
Figure 26: Wiring RS485 Half Duplex
57
9 Dimensioning
58
Dimensioning Instructions
58
Technical Data of Combivert Drive Converters
59
Table 19: Technical Data of COMBIVERT Drive Converters
60
Technical Data of the Combivert F5 AIC Devices
61
Table 20: Technical Data of KEB COMBIVERT F5 AIC Devices
61
10 Cooling System
62
Installation of Liquid-Cooled Devices
62
Heat Sink and Operating Pressure
62
Materials in the Cooling Cicuit
62
Table 21: Heat Sink and Operating Pressure
62
Requirements on the Coolant
63
Table 22: Electrochemical Series / Standard Potentials against Hydrogen
63
Table 23: Requirements on the Coolant
63
Coolant Temperature
64
Moisture Condensation
64
Supply of Temper Coolant
64
Connection to the Cooling System
65
Table 24: Coolant Inlet Temperature [°C] Is Depending on Ambient Temperature and Air Humidity
65
Pressure Drop Of The Heat Sink Depending On The Flow Rate
66
Figure 27: Pressure Drop of the Heat Sink Depending on the Flow Rate
66
Connection Scheme for a Cooling Circuit (Series Connection)
67
Figure 28: Coolant Connection
67
Volume Flow In Dependence Of The Heat Power Dissipation And Temperature Difference
68
Figure 29: Volume Flow in Dependence of the Heat Power Dissipation and Temperature Difference
68
Connection Scheme for a Cooling Circuit (Parallel Connection)
69
Decommissioning
69
Figure 30: Connection Scheme for a Cooling Circuit
69
11 Revision History
70
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