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L100 Inverter

L100 Inverter Specifications

Model-specific tables for 200V and 400V class inverters

The following tables are specific to L100 inverters for the 200V and 400V class model 
groups. Note that “General Specifications” on page 1–9 apply to both voltage class 
groups. Footnotes for all specifications tables follow the table below.

Item

200V Class Specifications

L100 inverters, 
200V models

CE version

002NFE

004NFE

005NFE

007NFE

011NFE

UL version

002NFU

004NFU

007NFU

Applicable motor size  *2

kW

0.2

0.4

0.55

0.75

1.1

HP

1/4

1/2

3/4

1

1 1/2

Rated capacity (240V) kVA *10

0.5

1.0

1.2

1.6

2.0

Rated input voltage

1-phase: 200 to 240V +5/-10%, 50/60 Hz ±5%,
3-phase: 200 to 240V +5/-10%, 50/60 Hz ±5%,

(037LFU, 055LFU & 075LFU 3-phase only)

Rated input 
current (A)

1-phase

3.1

5.8

6.7

9.0

11.2

3-phase

1.8

3.4

3.9

5.2

6.5

Rated output voltage  *3

3-phase: 200 to 240V (corresponding to input voltage)

Rated output current (A)

1.4

2.6

3.0

4.0

5.0

Efficiency at 100% rated output (%)

91.5

92.8

93.6

94.1

95.4

Watt loss,
approximate (W)

at 70% output

13

21

25

31

38

at 100% output

17

29

32

41

51

Braking

Dynamic 
braking, approx. 
% torque, (short 
time stop from 
50 / 60 Hz)  *5

 100%: 

 50 Hz,

50%: 

≤ 

60 Hz

Capacitive feedback type, dynamic braking unit and braking 

resistor optional, individually installed

DC braking

Variable operating frequency, time, and braking force

Weight

kg

0.85

0.85

1.3

1.3

2.2

lb

1.87

1.87

2.87

2.87

4.85

Summary of Contents for L100 Series

Page 1: ... 2 1 6 2 0 Rated input voltage 1 phase 200 to 240V 5 10 50 60 Hz 5 3 phase 200 to 240V 5 10 50 60 Hz 5 037LFU 055LFU 075LFU 3 phase only Rated input current A 1 phase 3 1 5 8 6 7 9 0 11 2 3 phase 1 8 3 4 3 9 5 2 6 5 Rated output voltage 3 3 phase 200 to 240V corresponding to input voltage Rated output current A 1 4 2 6 3 0 4 0 5 0 Efficiency at 100 rated output 91 5 92 8 93 6 94 1 95 4 Watt loss a...

Page 2: ...e The average deceleration torque varies with motor loss This value decreases when operating beyond 50 Hz Note that a braking unit is not included in the inverter If a large regenerative torque is required the optional regenerative braking unit should be used Note 6 The frequency command is the maximum frequency at 9 8V for input voltage 0 to 10 VDC or at 19 6 mA for input current 4 to 20 mA If th...

Page 3: ... 1 phase 16 0 22 5 3 phase 9 3 13 0 20 0 30 0 40 0 Rated output voltage 3 3 phase 200 to 240V corresponding to input voltage Rated output current A 7 1 10 0 15 9 24 32 Efficiency at 100 rated output 95 3 95 6 95 5 96 1 96 2 Watt loss approximate W at 70 output 50 71 118 152 204 at 100 output 70 97 166 216 288 Braking Dynamic braking approx torque short time stop from 50 60 Hz 5 100 50Hz 50 60Hz 40...

Page 4: ... Rated output voltage 3 3 phase 380 to 460V corresponding to input voltage Rated output current A 1 5 2 5 3 8 5 5 Efficiency at 100 rated output 92 0 93 7 95 7 95 8 Watt loss approximate W at 70 output 25 33 48 68 at 100 output 32 44 65 92 Braking Dynamic braking approx torque short time stopping from 50 60 Hz 5 100 50Hz 50 60Hz 40 50Hz 20 60Hz Capacitive feedback type dynamic braking unit and bra...

Page 5: ...namic braking approx torque short time stop from 50 60 Hz 5 40 50Hz 20 60Hz 20 50Hz 20 60Hz Capacitive feedback type dynamic braking unit and braking resistor optional individually installed DC braking Variable operating frequency time and braking force Weight kg 2 8 2 8 5 5 5 7 lb 6 17 6 17 12 13 12 57 Item General Specifications Protective housing 1 IP20 Control method Sine wave pulse width modu...

Page 6: ...put current monitor or digital output frequency monitor Alarm output contact ON for inverter alarm 1C contacts both normally open or closed avail Other functions AVR function curved accel decel profile upper and lower limiters 16 stage speed profile fine adjustment of start frequency carrier frequency change 0 5 to 16 kHz frequency jump gain and bias setting process jogging electronic thermal leve...

Page 7: ...s inside the control cabinet where the inverter is mounted A higher ambient temperature decreases derates the inverter s maximum current output capacity Use the following derating curves to help determine the optimal carrier frequency setting for your inverter and to find the output current derating Be sure to use the proper curve for your particular L100 inverter model number L100 002NFE NFU 0 5 ...

Page 8: ...14 16 70 80 90 100 95 85 75 of rated output current Carrier frequency kHz L100 0015NFE NFU 0 5 2 4 6 8 10 12 14 16 70 80 90 100 95 85 75 of rated output current Carrier frequency kHz L100 022NFE NFU 0 5 2 4 6 8 10 12 14 16 70 80 90 100 95 85 75 of rated output current Carrier frequency kHz ...

Page 9: ...16 40 60 80 100 90 70 50 of rated output current Carrier frequency kHz L100 055LFU 0 5 2 4 6 8 10 12 14 16 70 80 90 100 95 85 75 of rated output current Carrier frequency kHz L100 075LFU 0 5 2 4 6 8 10 12 14 16 70 80 90 100 95 85 75 of rated output current Carrier frequency kHz ...

Page 10: ... 14 16 40 60 80 100 90 70 50 of rated output current Carrier frequency kHz L100 007HFE HFU 0 5 2 4 6 8 10 12 14 16 40 60 80 100 90 70 50 of rated output current Carrier frequency kHz L100 015HFE HFU 0 5 2 4 6 8 10 12 14 16 40 60 80 100 90 70 50 of rated output current Carrier frequency kHz ...

Page 11: ...0 60 80 100 90 70 50 of rated output current Carrier frequency kHz L100 040HFE HFU 0 5 2 4 6 8 10 12 14 16 40 60 80 100 90 70 50 of rated output current Carrier frequency kHz L100 055HFE HFU 0 5 2 4 6 8 10 12 14 16 70 80 90 100 95 85 75 of rated output current Carrier frequency kHz ...

Page 12: ...L100 Inverter Specifications Derating curves continued L100 075HFE HFU 0 5 2 4 6 8 10 12 14 16 70 80 90 100 95 85 75 of rated output current Carrier frequency kHz ...

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