Toshiba TOSVERT VF-AS1 Series Скачать руководство пользователя страница 6

Item

Specification

Applicable Motor (kW)

Type

Form

Output Capacity (kVA) 

Note 1)

Output Current (A) 

Note 2)

Output Voltage

Overload Current Rating

Dynamic

Braking Circuit

Dynamic Breaking Resistor

Voltage/frequency 

Allowable Fluctuation

Protective method

Cooling method

Color

Built-in Filter

DC Reactor

 Standard specifications (200 V class - 0.4 to 45 kW, 400 V class -0.75 to 75 kW model)

0.4

2004PL

1.1

3.0

(3.0)

0.75

2007PL

1.8

4.8

(4.5)

1.5

2015PL

3.0

8.0

(8.0)

2.2

2022PL

4.2

11

(10.5)

3.7

2037PL

6.7

17.5

(16.6)

5.5

2055PL

10

27.5

(25.0)

7.5

2075PL

13

33

(33)

11

2110PM

21

54

(49)

15

2150PM

25

66

(64)

18.5

2185PM

29

75

22

2220PM

34

88

30

2300PM

46

120

37

2370PM

55

144

45

2450PM

67

176

Rating

Po

w

e

r

Supply

Electr

ic

Br

aking

Po

w

e

r

Supply

Electr

ic

Br

aking

VFAS1–

3-phase, 200 to 240 V (The maximum output voltage is the same as the input voltage.)

150%–1 minute, 165%–2 seconds

Built-in

Compatible with external options

3-phase, 200 to 240 V – 50/60 Hz

V10% - 15% 

Note 3)

 Frequency 

±

5%

Forced air cooling

RAL7016

EMI noise filter 

Note 5)

External option

Basic noise filter 

Note 6)

Built-in

Item

Specification

Applicable Motor (kW)

Type

Form

Output Capacity (kVA) 

Note 1)

Output Current (A) 

Note 2)

Output Voltage

Overload Current Rating

Dynamic

Braking Circuit

Dynamic Breaking Resistor

Voltage/frequency 

Allowable Fluctuation

Protective method

Cooling method

Color

Built-in Filter

DC Reactor

0.75

4007PL

1.8

2.3

(2.3)

1.5

4015PL

3.1

4.1

(4.0)

2.2

4022PL

4.4

5.8

(5.3)

3.7

4037PL

8.0

10.5

(8.6)

5.5

4055PL

11

14.3

(13)

7.5

4075PL

13

17.6

(17)

11

4110PL

21

27.7

(25)

15

4150PL

25

33

(32)

18.5

4185PL

31

41

22

4220PL

37

48

30

4300PL

50

66

37

4370PL

60

79

45

4450PL

72

94

55

4550PL

88

116

75

4750PL

122

160

VFAS1–

3-phase, 380 to 480 V (The maximum output voltage is the same as the input voltage.)

150%–1 minute, 165%–2 seconds

Built-in

Compatible with external options

3-phase, 380 to 480 V – 50/60 Hz 

V10% - 15% 

Note 3)

 Frequency 

±

5%

Forced air cooling

RAL7016

EMI noise filter 

Note 5)

External option

Built-in

200 V class

400 V class

Note 1) Capacity is calculated at 220V for the 200V models and at 440V for the 400V models.
Note 2) Rated output current when the PWM carrier frequency (parameter        ) is 4kHz or less. 

The values between parentheses refer to rated output currents when set to 12kHz.

Note 3) 

±

10% when the inverter is used continuously (load of 100%)

Note 4) Inverters, 18.5kW or greater, do not have wiring port covers. They have large openings, but there is no space to bend the external cables inside the unit. If they are fitted 

external to the cabinet, please use an optional wiring port cover.

Note 5) Complies with the Europian EMC Directive

IEC/EN61800-3, 1st environment, category C2 or IEC/EN61800-3, 2nd environment, category C3

Note 6) Not complies with the European EMC Directive

Core and capacities with external filter (optional) : Complies with the Europien EMC Directive.

IP20 enclosed type (JEM1030)

IP00 enclosed type (JEM1030) 

Note 4)

IP00 enclosed type (JEM1030) 

Note 4)

IP20 enclosed type (JEM1030)

9

10

Rating

Setting

Motor type

0
1
2
3
4
5
6
7

Overload protection

OL stall

Standard Motor

VF Motor

(protect)

(stall)

(protect)
(not protect)

(not stall)

(stall)

(not stall)

(stall)

(not stall)

(stall)

(not stall)

(not protect)
(protect)
(protect)
(not protect)
(not protect)

Each “setup item” that determines the control characteristics of the inverter is called a “parameter.”
For example, to change the acceleration time, you choose the acceleration time parameter (titled “          ”).

To enter the Quick mode, press the 
EASY key on the panel. In this mode, you 
can set eight of the basic parameters.

In this mode, you can set all parameters. 
For details of parameters, refer to the Instruction Manual.

Basic functions

Standard specifications

Quick mode (EASY)

Standard mode

 

Basic parameters

 

Extended parameters

About 500 extended parameters are available. For details on extended parameters, please visit our web site 
(http://www.inverter.co.jp/).

Title

Function

Parameter setting macro function
V/f control mode selection
Maximum frequency
Acceleration time 1
Deceleration time 1
Motor overload protection level 1
FM terminal meter adjustment
Parameter display selection

Title

Function

Adjustment Range

Default

Frequency of operation panel

0

Hz

0:Deselect 1:Automatic setting 2:Automatic setting (during acceleration only)

0:Deselect 1:Automatic torque boost + auto-tuning 1 2: Sensorless vector control 1+ auto-tuning 1

0:Disabled 1:Frequency setting by means of voltage 2:Frequency setting by means of current 

3:Voltage/current switching from external terminal 4:Frequency setting on operation panel and operation by means of terminals 

5: Frequency setting and operation on operation panel

0:Terminal input enabled 1:Operation panel input enabled (including LED/LCD option input) 

2:Operation panel RS485 (2-wire) communication input 3:Internal RS485 (4-wire) communication input 4:Communication option input 

1:VI/II (voltage/current input) 2:RR/S4 (potentiometer/voltage input) 3:RX (voltage input)

4:Operation panel input enabled (including LED/LCD option input)

5:Operation panel RS485 (2-wire) communication input 6:Internal RS485 (4-wire) communication input 7:Communication option input

8:Optional AI1 (differential current input) 9:Optional AI2 (voltage/current input) 10:UP/DOWN frequency 11:RP pulse input

12:High-speed pulse input 13:Binary/BCD input

0:Constant torque characteristics 1:Voltage decrease curve 2:Automatic torque boost 3:Sensorless vector control 1 (speed)

4:Sensorless vector control 2 (speed/torque) 5:V/f 5-point setting 6:PM control 7:PG feedback vector control 1 (speed)

8:Sensorless vector control 2 (speed/torque)

0.0~30.0%

25.0~500.0Hz

200V class:50~330V    400V class:50~660V

30.0~500.0Hz

0.0~       Hz

0.0~      Hz

0.1~6000 sec.

0.1~6000 sec.

0.0~       Hz

0.0~       Hz

     ~       Hz

     ~       Hz

     ~       Hz

     ~       Hz

     ~       Hz

     ~       Hz

     ~       Hz

0:Forward run 1:Forward run 2:Forward run (Forward/reverse switchable on operation panel) 

3:Reverse run (Forward/reverse switchable on operation panel)

10~100%

0:%, 1:A (ampere)/V (volt)

0~64 (0:Output frequency, 1:Frequency command value, 2:Output current, 3:Input voltage, 4:Output voltage, etc.)

-

0~64 (0:Output frequency, 1:Frequency command value, 2:Output current, 3:Input voltage, 4:Output voltage, etc.)

-

1.0~16.0kHz (large capacity model 1.0~8.0kHz) 

0:Deselect 1:At auto-restart 2:ST ON/OFF switching 3:1+2 4:Starting

0:Deselect 1:Power ride-through 2:Deceleration stop during power failure  

3:Synchronized deceleration/acceleration (synchronized acceleration/deceleration signal)

4:Synchronized deceleration/acceleration (synchronized acceleration/deceleration power failure) 

0:Deselect 1:Select (braking resistance overload detect) 2:Select (braking resistance overload not detect)

0.5~1000

0.01~600.0kW

0: - 1:50 Hz default setting 2:60 Hz default setting 3:Factory default setting 4:Trip cleared 5:Cumulative operation time cleared

6:Type information initialized 7:User-defined parameter recorded 8:Item 7 above reset 9:Cumulative fan operation time cleared

10:Acceleration/deceleration time setting 0.01 sec.~600.0 sec.  11:Acceleration/deceleration time setting 0.1 sec.~6000sec. 

0:Standard setting mode at time of activation of motor 1:Quick mode at time of activation of motor 2:Quick mode only

Set parameters in more detail. 

-

History function

Automatic acceleration/deceleration

Automatic torque boost

Automatic function setting

Command mode selection

Frequency setting mode selection 1

  

  

  

  

V/f control mode selection

Manual torque boost 1

Base frequency 1

Base frequency voltage 1

Maximum frequency

Upper limit frequency

Lower limit frequency

Acceleration time 1

Deceleration time 1

RR/S4 input point 2 frequency

VI/II input point 2 frequency

Preset speed operation frequency 1

Preset speed operation frequency 2

Preset speed operation frequency 3

Preset speed operation frequency 4

Preset speed operation frequency 5

Preset speed operation frequency 6

Preset speed operation frequency 7

Forward run/reverse run selection 
(operation panel operation)

Motor overload protection level 1

Motor overload protection characteristic selection

Current/voltage unit selection

FM terminal meter selection

FM terminal meter adjustment

AM terminal meter selection

AM terminal meter adjustment

PWM carrier frequency

Auto-restart control selection

Regenerative power ride-through control

Dynamic braking selection

Dynamic braking resistance

Allowable continuous braking resistance

Factory default setting

Parameter display selection

Extended parameters

Automatic edit function

-

0

0

0

0

2

0

80.0

0.0

0.0

0.0

0.0

0.0

0.0

0.0

0.0

0

100

 0 

0

0

-

2

-

0

0

0

0

0

-

-

Depends on the capacity

WN:60, WP:50.0

Depends on the capacity

WN:60.0, WP:50.0

Depends on the capacity

Depends on the capacity

WN:60.0, WP:50.0

WN:60.0, WP:50.0

Depends on the capacity

Depends on the capacity

Depends on the capacity

Title

Function

Adjustment Range

Default

Содержание TOSVERT VF-AS1 Series

Страница 1: ...Transistor Inverter High performance Inverter TOSVERT ...

Страница 2: ...ance standard The factories manufacturing this product are ISO 14001 environmental management system registered factories ISO 9001 Certification Acquired ISO 14001 Certification Acquired For system devices that requires flexibility Feature My function High precision and high speed torque control with or without sensors Applications Process lines Printing machines Coilers uncoilers 3ø200V 3ø200V 3ø...

Страница 3: ... in standard 400V class models 0 75 to 75kW EMI noise filter complies with the European EMC Directive built in standard 400V class models 90 to 500kW EMI noise filter complies with the European EMC Directive built in standard European EMC Directive IEC EN61800 3 1st Environment C2 or IEC EN61800 3 2nd Environment C3 For machinery that requires simple function POINT In the Quick mode pressing the E...

Страница 4: ...nctions Ideal for Lifting Applications For system devices that requires flexibility With My function you can create programs containing up to 28 steps This achieves logic operations and internal data operations Parameters can also be set according to analog input and minimum peak hold of analog outputs For example Ex 1 Ex 2 Ex 3 Ex 4 Inverter is automatically switched to commercial operation witho...

Страница 5: ...collector complimentary output 15 V Type VEC005Z 9 Point The photograph shows a screen currently in development 8 Wide Range of Applications Safety Environmental Compatibility The VF AS1 can be used at a rating up to an ambient temperature of 50 C and in environments up to 60 C at a derating current Ambient temperature 60 C 88 of materials used on the VF AS1 are recyclable which design more than m...

Страница 6: ...ic torque boost auto tuning 1 2 Sensorless vector control 1 auto tuning 1 0 Disabled 1 Frequency setting by means of voltage 2 Frequency setting by means of current 3 Voltage current switching from external terminal 4 Frequency setting on operation panel and operation by means of terminals 5 Frequency setting and operation on operation panel 0 Terminal input enabled 1 Operation panel input enabled...

Страница 7: ...en acceleration deceleration time torque limit and V f by set frequency Capable of restarting after a check of the main circuit elements in case the protective function is activated Max 10 times selectable arbitrarily Waiting time adjustment 0 to 10 sec The cooling fan will be stopped automatically to assure long life when unnecessary Possible to keep the motor running using its regenerative energ...

Страница 8: ...14 138 158 190 210 206 280 114 138 158 190 210 206 206 280 220 249 283 283 386 403 525 220 249 283 283 386 403 529 605 A B C D E F H A B C D E F G I Figure G Figure H Figure I W H D W1 H1 External dimensions Figure A Figure B Figure C Figure D Figure E Figure F 200 V class 0 4 to 45 kW 400 V class 0 75 to 75 kW model W1 Installation dimension W 15 D 9 H H1 Installation dimension 2 R2 5 R 2 5 R 6 8...

Страница 9: ...ø24 W D 7 2 R5 7 R 5 7 R 12 17 W D 7 H H2 H3 H4 W2 4 ø24 H1 Installation dimension W1 Installation dimension 2 R5 7 R 5 7 R 12 17 H H1 Installation dimension Braking Unit option 4 ø24 W1 Installation dimension W 75 D 7 2 R5 7 R 5 7 R 12 17 H H2 H3 H4 4 ø24 W D 7 75 W2 H1 Installation dimension Braking Unit option W1 Installation dimension 2 R5 7 R 5 7 R1 2 17 15 Figure J Figure J Figure K Figure K...

Страница 10: ...Hz 90 500kW Three phase 380 440V 50Hz Three phase 380 480V 60Hz F R ST RES S1 S2 S3 RR S4 P24 PLC CC 1 PP RR S4 VI I I RX FM AM OUT1 OUT2 NO CCA 1 SU FLA FLB FLC Terminal Symbol Function Electrical Specifications Input output Lan current signal Choose low current contacts to avoid poor attaching Source input ON DC11V or more OFF Less than DC5V Input Input Input Input Input Input Input Input Output...

Страница 11: ...ance between ground and the cable connecting the inverter and the motor Route 4 Leakage due to the capacitance of the cable connecting the motor and an inverter in another power distribution line Route 5 Leakage through the grounding line common to motors Route 6 Leakage to another line because of the capacitance of the ground Leakage current which passes through the above routes may cause the fol...

Страница 12: ...his option when backing up only by the control power supply when the main circuit is shut off This is 24 VDC output common to both 200 and 400 V models Type CPS001Z This operation panel unit is for extension It is provided with an LED display RUN STOP key UP DOWN key monitor key and enter key Setup parameters for three inverters can be stored to this panel Type RKP002Z Connector cable for LED exte...

Страница 13: ...covers of this catalogue Special precautions must be taken and such applications 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 inverter...

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