83
Learning Basic Features
Basic Tasks
Description
Ref.
reaches the defined frequency, DC braking is applied.
Free-run stop
Configures the inverter to stop output to the motor using
a stop command. The motor will free-run until it slows
down and stops.
p.135
Power braking
Configures the inverter to provide optimal, motor
deceleration, without tripping over-voltage protection.
p.136
Start/maximum frequency
configuration
Configures the frequency reference limits by defining a
start frequency and a maximum frequency.
p.137
Upper/lower frequency limit
configuration
Configures the frequency reference limits by defining an
upper limit and a lower limit.
p.137
Frequency jump
Configures the inverter to avoid running a motor in
mechanically resonating frequencies.
p.140
2
nd
Operation Configuration
Used to configure the 2
nd
operation mode and switch
between operation modes according to your
requirements.
p.141
Multi-function input
terminal control
configuration
Enables the user to improve the responsiveness of the
multi-function input terminals.
p.142
4.1
Switching between the Operation Modes (HAND /
AUTO / OFF)
The H100 series inverters have two operation modes–the HAND and AUTO modes. HAND mode is
used for local control using the keypad. AUTO mode is used for remote control using the terminal
inputs or networks commands (the keypad may still be used in AUTO mode if the command
source is set as ‘keypad’).
HAND Mode Operation
Follow the instructions listed below to operate the inverter in HAND mode.
1
On the keypad, use the [Up], [Down], [Left], or [Right] keys to set the frequency reference.
2
Press the [HAND] key. The HAND LED turns on and the inverter starts operating in HAND
mode.
Summary of Contents for 6731001500
Page 1: ......
Page 17: ...Preparing the Installation 4 37 90kW 3 Phase ...
Page 18: ...Preparing the Installation 5 110 132kW 3 Phase ...
Page 19: ...Preparing the Installation 6 160 185kW 3 Phase ...
Page 20: ...Preparing the Installation 7 220 250kW 3 Phase ...
Page 21: ...Preparing the Installation 8 315 400kW 3 Phase ...
Page 22: ...Preparing the Installation 9 500kW 3 Phase ...
Page 34: ...21 Installing the Inverter 400 V 220 500kW ...
Page 50: ...37 Installing the Inverter Inputand OutputControlTerminalBlockWiringDiagram 5 5 90kW ...
Page 66: ...Perform BasicOperations 53 ...
Page 106: ...93 Learning BasicFeatures 0 10V InputVoltageSettingDetails V1 Quantizing ...
Page 107: ...94 Learning BasicFeatures ...
Page 187: ...174 Learning Advanced Features PIDCommandBlock ...
Page 188: ...175 Learning Advanced Features ...
Page 189: ...176 Learning Advanced Features PIDFeedbackBlock ...
Page 190: ...177 Learning Advanced Features PIDOutputBlock ...
Page 191: ...178 Learning Advanced Features PIDOutputModeBlock ...
Page 205: ...192 Learning Advanced Features EPID1Controlblock ...
Page 206: ...193 Learning Advanced Features EPID2Controlblock ...
Page 228: ...215 Learning Advanced Features ...
Page 244: ...231 Learning Advanced Features TheTime Chartfor the Exception Day ...
Page 260: ...247 Learning Advanced Features SpeedSearchOperation SettingDetails ...
Page 405: ...392 RS 485 Communication Features 7 3 9 2 Control Area Parameter Read Write ...
Page 555: ...Table ofFunctions 542 8 16 4 CoolingTower MC4 Group ...
Page 558: ...Tableof Functions 545 8 16 5 Circulation Pump MC5 Group ...
Page 562: ...Tableof Functions 549 8 16 6 Vacuum Pump MC6 Group ...
Page 588: ...575 Troubleshooting ...
Page 608: ...TechnicalSpecification 595 11 3 External Dimensions 0 75 30kW 3 phase 37 90kW 3 phase ...
Page 609: ...TechnicalSpecification 596 110 185kW 3 phase ...
Page 632: ...TechnicalSpecification 619 400 V 37 500 kW Current Derating Rate ...
Page 643: ...630 ...
Page 644: ...631 ...
Page 645: ...632 ...