iii
Safety Information
•
This equipment must be grounded for safe and proper operation.
•
Do not supply power to a faulty inverter. If you find that the inverter is faulty, disconnect the
power supply and have the inverter professionally repaired.
•
The inverter becomes hot during operation. Avoid touching the inverter until it has cooled to
avoid burns.
•
Do not allow foreign objects, such as screws, metal chips, debris, water, or oil to get inside
the inverter. Allowing foreign objects inside the inverter may cause the inverter to
malfunction or result in a fire.
•
Do not operate the inverter with wet hands. Doing so may result in electric shock.
•
Do not modify the interior workings of the inverter. Doing so will void the warranty.
•
The inverter is designed for 3-phase motor operation. Do not use the inverter to operate a
single phase motor.
•
Do not place heavy objects on top of electric cables. Doing so may damage the cable and
result in an electric shock.
Note
Maximum allowed prospective short-circuit current at the input power connection is defined
in IEC 60439-1 as 100 kA. LSLV-H100 is suitable for use in a circuit capable of delivering
not more than
100kA RMS at the drive‘s maximum rated voltage, depending on the
selected MCCB. RMS symmetrical amperes for recommended MCCB are the following
table.
Remarque
Le courant maximum de court-
circuit présumé autorisé au connecteur d‘alimentation
électrique est défini dans la norme IEC 60439-1 comme égal à 100 kA. Selon le MCCB
sélectionné, la série LSLV-H100 peut être utilisée sur des circuits pouvant fournir un courant
RMS symétrique de 100 kA maximum en ampères à la tension nominale maximale du
variateur. Le tableau suivant indique le MCCB recommandé selon le courant RMS
symétrique en ampères.
Working
Voltage
UTE100
(E/N)
UTS150
(N/H/L)
UTS250
(N/H/L)
UTS400
(N/H/L)
240V(50/60Hz) 50/65kA 65/100/150kA 65/100/150kA 65/100/150kA
Summary of Contents for H100
Page 14: ......
Page 18: ...Preparing the Installation 4 37 90 kW 3 Phase ...
Page 27: ...Preparing the Installation 13 ...
Page 47: ...33 Installing the Inverter ...
Page 48: ...Installing the Inverter 34 Input and Output Control Terminal Block Wiring Diagram ...
Page 61: ...47 Installing the Inverter ...
Page 71: ...Learning to Perform Basic Operations 57 ...
Page 88: ...Learning to Perform Basic Operations 74 ...
Page 103: ...89 Learning Basic Features Code Description V1 Quantizing ...
Page 129: ...115 Learning Basic Features ...
Page 140: ...Learning Basic Features 126 ...
Page 148: ...Learning Basic Features 134 ...
Page 171: ...157 Learning Advanced Features Deceleration dwell operation ...
Page 183: ...169 Learning Advanced Features ...
Page 184: ...Learning Advanced Features 170 PID Command Block ...
Page 185: ...171 Learning Advanced Features PID Feedback Block ...
Page 186: ...Learning Advanced Features 172 PID Output Block ...
Page 187: ...173 Learning Advanced Features PID Output Mode Block ...
Page 197: ...183 Learning Advanced Features ...
Page 201: ...187 Learning Advanced Features Code Description 100 EPID1 Control block ...
Page 202: ...Learning Advanced Features 188 EPID2 Control block ...
Page 237: ...223 Learning Advanced Features Time Period Schedule AP3 38 Except3 Day 01 01 ...
Page 244: ...Learning Advanced Features 230 ...
Page 259: ...245 Learning Advanced Features Code Description Code Description Volt ...
Page 362: ...Learning Protection Features 348 ...
Page 415: ...401 RS 485 Communication Features Item Standards Parity check None ...
Page 524: ...Table of Functions 510 ...
Page 533: ...Table of Functions 519 ...
Page 547: ...533 Troubleshooting ...
Page 585: ...Technical Specification 571 ...
Page 594: ...580 ...
Page 595: ...581 ...
Page 596: ...582 ...