background image

Possible to bring 

into compliance with 

IP55 specifications!

Totally enclosed box type

Totally enclosed box type

Totally enclosed box type

DC reactor (DCL)

1 (option)

Braking resistor (option)

Sink (Negative) logic : Common = CC

1: The inverter comes with the PO and PA (positive) terminals short-circuited with a shorting bar. When connecting a DC reactor (DCL), detach the shorting bar.

2: When using the OUT output terminal in a sink logic configuration, do not short-circuit the NO and CC terminals.

3: When using the OUT output terminal in a sink logic configuration, do not short-circuit the P24 and OUT terminals.

Motor circuit breaker

R/L1
S/L2
T/L3

U/T1
V/T2
W/T3

Forward

Reverse

Reset

Preset-speed1

Preset-speed2

Preset-speed3

Common

Speed reach
signal output.

I M

FLC

FLB

FLA

RY

RC

PLC

Motor

F

R

RES

S1

S2

S3

CC

P24

OUT

NO

CC

FM

CC

VIA

VIB

PP

+ 

+ 

− 

− 

P0

PA/+

PB

PC/-

Meter

Voltage signal: 0-10V
(Current signal: 4-20mA)

Control

circuit

Operation switch

Fault detection relay

Ry

VF-S11

Frequency

meter

(ammeter)

Main circuit

Frequency setting potentiometer

Noise
filter

Low-speed
signal output

External 24Vdc
power input

Main circuit power supply

240V class: 
 1ph/3ph-200 to 240V
 -50/60Hz

 500V class: 
 3ph-380 to 500V
 -50/60Hz

PLC

Connector for

common serial

communications

I

I

SINK

SWI

SOURCE

FM

V

VIA

V

2

DC reactor (DCL)

1 (option)

Braking resistor (option)

Source (Positive) logic : Common = P24

Motor circuit breaker

R/L1
S/L2
T/L3

U/T1
V/T2
W/T3

Forward

Reverse

Reset

Preset-speed1

Preset-speed2

Preset-speed3

Common

Speed reach
signal output

I M

FLC

FLB

FLA

RY

RC

PLC

Motor

F

P24

OUT

NO

CC

R

RES

S1

S2

S3

FM

CC

VIA

VIB

PP

+ 

+ 

− 

− 

P0

PA/+

PB

PC/-

Meter

Voltage signal: 0-10V
(Current signal: 4-20mA)

Control

circuit

Operation switch

Fault detection relay

VF-S11

Frequency

meter

(ammeter)

Main circuit

Frequency setting potentiometer

Noise
filter

Low-speed
signal output

External 24Vdc
power input

Main circuit power supply

240V class: 
 1ph/3ph-200 to 240V
 -50/60Hz

 500V class: 
 3ph-380 to 500V
 -50/60Hz

PLC

Connector for

common serial

communications

I

I

SINK

SWI

SOURCE

FM

V

VIA

V

3

Ry

Standard connection diagram

Note 1: Capacity is calculated at 220V for the 240V class and at 440V for the 500V class.
Note 2: Indicates rated output current setting when the PWM carrier frequency (Parameter F300) is 4kHz or less. When exceeding 4kHz , the rated output current setting is indicated in the parenthesis.
Note 3: The maximum output voltage is equal to the input supply voltage.
Note 4: 

±

10% when the inverter is operated continuously (under a load of 100%). 

Note 5: The factory default settings of the following parameters are different from those of the standard type.

The factory default settings of all other parameters are the same as those of the standard type.
For parameter settings, see the tables of parameters on page 10. periodically.

Note 6: Installation environment

Install the inverter in a well-ventilated place and mount it on a flat metal plate in portrait orientation. Install the inverter so that it is not inclined more than 

±

10

°

 from the vertical.

Leave a space of 10 cm or more on the upper and lower sides of the inverter, and a space of 5 cm or more on each side.

The inverter has a cooling fan to circulate air in it. The cooling fan has a useful life of approximately 30,000 hours (2 to 3 years when operated continuously), so it needs to be replaced          

periodically.

● 

Power switch for motor circuit breaker

● 

Operation panel

● 

Operation switch

● 

Frequency setting potentiometer

● 

Slots for additional switches (Two) 

● 

Totally enclosed structure  compliant with IP54

● 

Built-in noise filter 

● 

Equipped with all control devices as standard

 

 (Control devices compliant with IP55 

   specifications / All-in-one) 

● 

Built-in motor circuit breaker

● 

Minimum wiring

● 

Cooling structure: Self-cooling type

22

21

Command mode selection

Frequency setting mode selection

1
0

Function

VF-S11 

Standard type

0
2

VF-S11 

otally enclosed type

Title

External dimensions

Fig.F

3ph-240V

3ph-500V

1ph-240V

VFS11-2004PME
VFS11-2007PME
VFS11-2015PME
VFS11-2022PME
VFS11-2037PME
VFS11-4007PLE
VFS11-4015PLE
VFS11-4022PLE
VFS11-4037PLE
VFS11-4055PLU
VFS11-4075PLU
VFS11-4110PLU
VFS11-4150PLU
VFS11S-2002PLE
VFS11S-2004PLE
VFS11S-2007PLE
VFS11S-2015PLE
VFS11S-2022PLE

0.4

0.75

1.5
2.2
4.0

0.75

1.5
2.2
4.0
5.5
7.5

11
15

0.2
0.4

0.75

1.5
2.2

Input voltage

class

Aplicable motor

(kW)

Dimensions (mm)

W

Inverter type

Cabling hole Drawing

Approx.weight

(kg)

210

215

230

215

230

400

450

210

215
230

H

240

297

340

297

340

600

700

240

297
340

D

163.3

192.3

208.3

192.3

208.3

243

267

163.3

192.3
208.3

192

197

212

197

212

310

340

192

197
212

218

277

320

277

320

570

670

218

277
320

13.7

13.7

13.7

13.7

13.7

-

-

13.7

13.7
13.7

3.9

  

5.9

7.6

 F

  
F

F

G

G

F

F

6.1

17.0

4.0

 

8.0

 

11.8

6.0
7.6

W1

H1

D2

φ19x3 

φ21x1

φ19x1 

φ23x3

φ19x1 

φ23x3

-

-

φ19x3 

φ21x1

φ19x1 

φ23x3

Standard specifications

 

* Other specifications are the same as those of the standard type. See common specification on page 6.

 

Item

Input voltage class
Applicable motor (kW)

Protective method

Cooling method
Color
Built-in filter

Capacity(kVA)  

Note 1)

Output voltage  

Note 3)

Overload current rating

Voltage-frequency

Allowable fluctuation

Service environments  

Note 6)

Ambient temperature
Storage temperature
Relative humidity
Vibration

Input voltage class

1ph-240V class
3ph-240V class
3ph-500V class

Rated output current   

(A) 

Note 2)

Type

VFS11S-

VFS11-
VFS11-

1ph-240V class
3ph-240V class
3ph-500V class

Model

Rating

Power
supply

Environments

Specification

1ph-240V input class / 3ph-240V input class / 3ph-500V input class

Form

3ph-500V input class

Form

Indoor, altitude 1000m or less. Place not exposed to direct sunlight and free from of corrosive and explosive gases.

240V class : 3ph-200V to 240V, 500V class : 3ph-380V to 500V

150% -60 seconds, 200% -0.5 second

240V class : 1ph/3ph-200V to 240V -50/60Hz,

500V class : 3ph-380V to 500V -50/60Hz

V10%, -15% 

Note4)

, frequency 

±

5%

IP54 Totally enclosed type (JEM1030) /

Possible to bring into compliance with IP55

Self-cooling

Munsel 5Y-8/0.5

1ph and 500V class : High-attenuation EMI filter, 3ph-240V class : Basic filter

-10 to +40˚C
-25 to +70˚C

20 to 93%

5.9 m/s

2

 or less (10 to 55Hz)

3ph -380V to 500V

150% -60 seconds, 200% -0.5 second

3ph-380V to 500V -50/60Hz

 

V10%, -15% 

Note4)

, frequency 

±

5%

IP00 Open type (JEM1030) /
Cooling fin mountable out side

Forced air-cooling

Not painted

High-attenuation EMI filter

-10 to +40˚C
-25 to +70˚C

20 to 93%

5.9 m/s

2

 or less (10 to 55Hz)

0.2

2002PLE


0.6

1.5 (1.5)


0.4

2004PLE

2004PME

 –

1.3

3.3 (3.3) 
3.3 (3.3) 

 – 

0.75

2007PLE

2007PME

4007PLE

1.8

4.8 (4.4) 
4.8 (4.4) 
2.3 (2.1) 

1.5

2015PLE

2015PLME

4015PLE

3.0/3.0/3.1

8.0 (7.9) 
8.0 (7.9) 
4.1 (3.7) 

2.2

2022PLE

2022PME

4022PLE

4.2

11.0 (10.0) 
11.0 (10.0) 

5.5 (5.0) 

4.0

2037PME

4037PLE

6.7/7.2

17.5 (16.4) 

9.5 (8.6) 

5.5


4055PLU

11


14.3 (13.0) 

7.5


4075PLU

13


17.0 (17.0) 

11


4110PLU

21


27.7 (25.0) 

15


4150PLU

25


33 (30) 

W1

 (Mounting dimension)

W

9

H1

 (

Mounting

 dimension)

H

D

D2

10

R2.75

φ13

2-R2.75

Compliance with IP55

IP54-compliant structures refer to structures that protect the contents from dust and harmful effects of water that drops from every direction. The inverter can be 
brought into compliance with IP55 specifications by making the wiring port watertight. (IP55-compliant structures refer to structures that protect the contents from 
dust and harmful effects of water that comes in a jet from every direction.)

Note) 500V class 5.5 to 15kW range are IP00 type.

D

W

15

R4

10

H

H1

 (

Mounting

 dimension)

W1

 (Mounting dimension)

Fig.G

Line-up

<UL compliant type>

Applicable motor (kW)

0.2

0.4

0.75

1.5

2.2

4.0

5.5

7.5

11

15

1-phase 240V

3-phase 240V

3-phase 500V

Input voltage

class

IP00

IP54

IP54

IP54

External dimensions

Summary of Contents for TOSVERT VF-S11

Page 1: ...ns must be studied carefully When using our inverters for critical equipment even though the inverters are manufactured under strict quality control always fit your equipment with safety devices to prevent serious accident or loss should the inverter fail such as issuing an inverter failure signal Do not use our inverters for any load other than three phase induction motors None of Toshiba its sub...

Page 2: ...ditioning systems and plant line control systems As well as being highly expandable the VF S11 uses a detachable type of control terminal board which allows you to easily mount optionally available communication boards RS 485 DeviceNet and LonWorks DeviceNet is a registered trademarks of ODVA Open DeviceNet Vendor Association For users who need a wide capacity and range of models For obtaining spa...

Page 3: ...omentary monitor values for when a trip occurs can be viewed Ten monitor values are stored in memory for the last four inverter operations which is effective in pin pointing the cause of a trip Storage of user parameter settings All parameter settings made by the user can be stored in memory Stored parameters can be immediately called even they have been changed History function This function is f...

Page 4: ...the range of 50 to 600V by correcting the supply voltage not adjustable above the input voltage 0 5 to 500 0Hz default setting 0 5 to 80Hz maximum frequency 30 to 500Hz 0 01Hz operation panel setting 0 1Hz analog input when the max frequency is 100Hz V f constant variable torque automatic torque boost vector control automatic energy saving dynamic automatic energy saving control Auto tuning Base f...

Page 5: ...g across F CC causes forward rotation open causes slowdown and stop Shorting across R CC causes reverce rotation open causes slowdown and stop RES S1 S2 S3 Shorting across S1 CC causes preset speed operation Shorting across S2 CC causes preset speed operation Shorting across S3 CC causes preset speed operation CC PLC Control circuit s equipotential terminal sink logic 3 common terminals for input ...

Page 6: ... 5 5 0 5 1 9 6 9 6 1 0 1 0 1 2 1 4 2 2 1 3 1 3 2 1 2 2 4 7 4 7 8 8 8 8 3 phase 240V 3 phase 500V Input voltage Applicable motor kW Type H W D H1 H2 Approx weight kg W1 D2 Drawing Dimensions mm 0 4 0 55 0 75 1 5 2 2 4 0 5 5 7 5 11 15 0 4 0 75 1 5 2 2 4 0 5 5 7 5 11 15 0 2 0 4 0 75 1 5 2 2 0 75 1 5 2 2 4 0 5 5 7 5 11 15 VFS11 2004PM VFS11 2005PM VFS11 2007PM VFS11 2015PM VFS11 2022PM VFS11 2037PM VF...

Page 7: ...rs Protection parameters Set to generate high torque to match load or motor Torque up parameters Set if changing units displayed or various display methods Panel display parameters List of parameters 12 DC Braking parameters Title Function Adjustment range Default setting DC braking starting frequency DC braking current DC braking time Motor shaft fixing control 0 0 Hz 0 100 A 0 0 20 0 s 0 Invalid...

Page 8: ...put and output cables etc of the inverter To prevent current leakage it is recommended to take the following measures Effects of leakage current Leakage current which increases when an inverter is used may pass through the following routes Route 1 Leakage due to the capacitance between the ground and the noise filter Route 2 Leakage due to the capacitance between the ground and the inverter Route ...

Page 9: ...CL High attenuation radio noise filter NF type Braking resistor Conduit pipe attachment kit Motor end surge voltage suppression filter for 500V class only Zero phase reactor ferrite core type EMC noise filter Compliant with European standards P 17 P 18 P 18 P 9 P 20 P 20 P 19 P 18 P 19 P 19 P 19 P 20 Used to improve the input power factor reduce the harmonics and suppress external surge on the inv...

Page 10: ...ox with cover 4 ØF holes AC reactor Power source AC reactor Power source P Earth terminal Power source LC filter Model Rated current A Inverter type Diagram Terminals Approx weight kg Dimensions mm W H D X Y d1 d2 DCLS 2002 DCL 2007 DCL 2022 DCL 2037 DCL 2055 DCL 2110 DCL 2220 DCL 2007 DCL 2022 DCL 4110 DCL 4220 2 5 7 14 22 5 38 75 150 7 14 38 75 79 92 86 86 75 100 117 92 86 95 105 50 65 110 110 1...

Page 11: ...devices 19 Devices External dimensions and connections Motor end surge voltage suppression filter for 500V class only Parameter writer Extension panel Motor end surge voltage suppression filter l Invertor type Approx weight kg MSF 4015Z MSF 4037Z MSF 4075Z MSF 4150Z Dimensions mm Depth 12 20 30 40 Terminal screw M4 M4 M5 M5 Grounding screw M4 M4 M5 M5 VFS11 4004 4015PL VFS11 4022 4037PL VFS11 4055...

Page 12: ...it breaker Minimum wiring Cooling structure Self cooling type 22 21 Command mode selection Frequency setting mode selection 1 0 Function VF S11 Standard type 0 2 VF S11 otally enclosed type Title External dimensions Fig F 3ph 240V 3ph 500V 1ph 240V VFS11 2004PME VFS11 2007PME VFS11 2015PME VFS11 2022PME VFS11 2037PME VFS11 4007PLE VFS11 4015PLE VFS11 4022PLE VFS11 4037PLE VFS11 4055PLU VFS11 4075P...

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