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THE NEW V1000 INVERTER
1 0 x 1 0 0 = 1
D e s i g n e d f o r :
»
»
1 0 y e a r s l i f e t i m e
1 0 0 % ex p e c t a t i o n m a tc h
»
1 i n 1 0,0 0 0 f i e l d fa i l u re ra te
Quality has a new formula
The V1000 Inverter is the result of years of experience as the European market leader and represents a revolution in inverter design.
Compact and sensor-less, the V1000 has all of the features and performance that you have grown to expect from the world’s leading inverter/drive manufacturer. But you have not met an inverter quite like the V1000.
Its new features, not only enable it to outperform previous inverters and make it even easier for users to install and set up, it is also compacter by far. But the big difference is that it takes quality and reliability to a new high level.
For no matter where you want it to operate, it will deliver the same high performance for many years after you have fitted it and forgotten about it.
Our obsession with quality
Our obsession with quality has resulted in the most dependable products available in the industry today.
And we never stop working to improve quality even further. This is fully reflected in our latest inverter, the
V1000, which incorporates decades of experience in developing high quality industrial products.
Features of the V1000 Inverter
• Up to 15 kW
• World’s smallest compact inverter
• Built-in filter
• 10-years service life
• Control terminal board with memory (Patent pending)
• Faster CPU’s
• Current vector control
• Low-noise technology (Patent pending)
• IM & PM Motor control
• On-line tuning (Patent pending)
• Safety embedded
Temperature ºC
113.000
105.125
97.2500
89.3750
81.5000
73.6250
65.7500
57.8750
50.0000
OK
New Heatsink temperature evaluation
Mechanical advances
The V1000 design has not only reduced volume by up to 40% compared with previous inverters, tests prove that it has increased vibration resistance from 20Hz to 50Hz (0.6G) and heat dissipation has also been greatly increased, thanks to a new, hybrid heat-sink system (patent pending).
Market standard
Omron-Yaskawa V1000
5%
3%
1%
1 5 years
10 15
Failure rate for drives
Proven reliability
To improve quality even further, a complete revision of production lines has taken place and human error has been reduced by installing the most advanced robotic technology available.
The result is an expected failure rate of less than 0.01%.
11,1
12
10
V1000 double rating
Market standard
Omron-Yaskawa V1000
20%
8
6
4
2
0
Noisy operation
2,5 3 5
Silent operation
6 7,5
C.Frq. (KHz)
10 12 14
Conventional inverter vs V1000
Performance guaranteed
V1000 is able to increase the output current by around 20% when moving down in frequency carrier thanks to its double rating. The standard setting is heavy duty (HD: 150% rated current/
1min) and increasing output current when in the normal duty mode
(ND: 120% rated current/1 Min).
Advanced Industrial Automation
10,00
8,00
6,00
4,00
2,00
0,00
2,5 3 5 6 7,5 10 12 14
Time and space saving 100% guaranteed
Space-saving side-by-side mounting
Remember when side-by-side mounting meant having to leave spaces for ventilation? Well, not with the V1000. A special alloy, hybrid cooling fin (patent pending) allows you to mount multiple units close together without overheating problems and saving vast amounts of panel space.
Time-saving screw-less terminals
Have you ever stopped to think how much time it takes to wire hundreds of terminals with twelve screws per inverter? With the V1000, you can reduce installation time (and therefore costs) considerably thanks to the use of screw-less terminals.
Easy Shielding
Cost-saving EMC filter
A built-in EMC filter will save you the task of having to take special precautions for EMC shielding during installation. The optional, factoryinstalled filter will not only save on installation costs, it also reduces the bill of materials for external parts and simplifies logistics.
Work-saving set-up
Setting up Omron inverter and servo drives is now easier than ever, following the release of a new version of the company’s versatile CX-Drive drive configuration software package.
New features, all of which save time, include automatic recognition of drive series and type, an oscilloscope function, and facilities for connecting a single PC running Configurator to multiple drives.
During parameter selection, all parameters are fully described, and many, including those associated with PID loops and jump frequency operation, are set with the aid of graphical control diagrams. Extensive help screens and tool tips are also provided.
In addition to aiding drive setup, Omron’s CX-Drive also provides comprehensive facilities, status indications and alarms to assist with commissioning and fault-finding. Drive inputs and outputs can be monitored in real time, while the oscilloscope function allows detailed analysis of drive operation, without the need for additional test equipment CX-Drive enhances connectivity through
Omron’s PLC and motion controllers by supporting DeviceNet,
SCU, Mechatrolink and Profibus connectivity.
Convenient on-line tuning
Unlike previous inverters, the V1000 has a smart ‘on-line tuning’ feature that takes ‘auto-tuning’ a stage further.
This continuous method of tuning ensures that any temperature deviation large enough to affect electrical parameters governing the motor speed will be adjusted before any speed variance can occur.
Time-saving safety feature
Safety is embedded in the V1000 from the inside out, making it easy for you to integrate the inverter into your machine system and avoid difficult connections to safety controllers.
Dual safety inputs (acc. To EN954-1 Safety Category 3) will disconnect the motor faster at the first sign of trouble, while reducing external wiring and contactors.
Advanced performance…
100
50
Speed Fluctuation Rates
speed (r/min)
V/F: 5%
Voltage Vector Control: 1%
Open Loop Current Vector Control: 0,2%
V/F + PG: 0,03%
V/F: 5%
Voltage Vector Control: 1%
Open Loop Current Vector Control: 0,2%
V/F + PG: 0,03%
Accurate speed control
Unlike previous inverters, the V1000 delivers optimum speed control and high starting torque thanks to the current vector control. As opposed to other techniques, such as voltage vector control, current vector control uses the flux current, which is an actual measurement rather than an estimated value.
Fast scan cycle
The V1000 employs a dual CPU concept with a CPU device that is four times faster than those on board previous inverters.
This means a faster-than-ever scan cycle that boosts motor control performance, especially in current vector control applications where speed is of the essence. time
Speed Response Accuracy
Silent operation
A feature of the V1000 that will delight your customers is the noise-suppression function that decreases motor noise at low carrier frequencies. This puts machine operators at less risk to safety hazards and has a positive effect on the general working ambience.
…Easy maintenance
Save repetition
Control parameters need only be set once with the V1000.
They are automatically saved to a control terminal board memory that allows you to replace an inverter and simply forget it. The new inverter will be immediately updated with the current settings.
Minimize downtime
The V1000 has an ingenious pre-maintenance function that will calculate the condition of electronic components and advise about their replacement based not only on the number of hours they have been in service, but also on factors such as stress due to load, temperature, the number of times they have been powered up, output frequency and carrier frequency, etc.
Keeps running
Assuring that new data and communications keep flowing in the event of a power failure is critical in many applications.
Naturally, the V1000 is available with a 24Vdc power supply that will keep the CPU working in any power-down situation.
Main Power Supply
24 Vdc
VZ
V1000
More performance & Quality in less space
• Current vector control
• High starting torque (200% / 0.5 Hz)
• 1:100 speed control range
• Double rating ND 120%/1min and HD 150%/1 min
• IM&PM motor control
• Online Tuning
• Low-noise Low carrier technology
• 10 years lifetime design
• Built-in filter
• Screw-less terminals
• Control Terminals with memory backup
• 24 VDC control board power supply option
• Fieldbus communications: Modbus, Profibus, CanOpen,
DeviceNet, Lonworks, CompoNet, Ethernet
• Safety embedded (EN954-1 safety cat. 3)
• CE, UL, cUL and TUV
Ratings
• 200 V Class single-phase 0.1 to 4 kW
• 200 V Class three-phase 0.1 to 15 kW
• 400 V Class three-phase 0.2 to 15 kW
System configuration
Power
Supply
MCCB
AC Reactor
Filter
V1000
Motor
Ground
RJ-45 / USB
Adapter
Remote Operator
Extansion Cable
24Vdc Control Board Power Supply
USB Cable
LCD Remote
Operator
Communication Option Board
Mounting Accesories
Braking Resistor
DC Reactor
CX-Drive
CX-One
Specifications
Type designation
V1000 series
Z: European standard specifications
A: Standard specs
Voltage:
B: Single-phase 200 VAC
2: Three-phase 200 VAC
4: Three-phase 400 VAC
V Z A B 0 P 1 B A A
Version
Coating specs:
A: Standard
Enclosure, Fin, Filter:
C: IP20 with top cover
B: IP20 without top cover
F: Nema 1
H: IP20 with top cover and C3 filter
[”P” indicates a decimal point]
Max. applicable motor output
0P1: 0.1 kW
015: 15 kW
200 V class
Motor kW
1
Single-phase: VZ-@
Three-phase: VZ-@
For HD setting
For ND setting
Inverter capacity kVA
Rated output current (A) at HD
Rated output current (A) at ND
Max. output voltage
Max. output frequency
Rated input voltage and frequency
Allowable voltage fluctuation
Allowable frequency fluctuation
B0P1
20P1
0.12
0.18
0.3
0.8
1.2
B0P2
20P2
0.25
0.37
0.6
1.6
1.9
B0P4
20P4
0.4
0.75
1.1
3.0
3.5
1. Based on a standard 4-pole motor for maximum applicable motor output:
Heavy Duty (HD) mode with a 150% overload capacity
Normal Duty (ND) mode with a 120% overlaod capacity
B0P7
20P7
0.75
1.1
1.9
5.0
6.0
B1P5
21P5
1.5
2.2
3.0
B2P2
22P2
2.2
3.0
4.2
B4P0
24P0
4.0
5.5
6.7
8.0
9.6
11.0
12.0
17.5
21.0
Proportional to input voltage: 0..240 V
400 Hz
Single-phase 200..240 V 50/60 Hz
3-phase 200..240 V 50/60 Hz
-
25P5
5.5
7.5
9.5
25.0
30.0
-15%..+10%
+5%
400 V class
Motor kW
1
Three-phase: VZ-@
For HD setting
For ND setting
Inverter capacity kVA
Rated output current (A) at HD
Rated output current (A) at ND
Max. output voltage
Max. output frequency
Rated input voltage and frequency
Allowable voltage fluctuation
Allowable frequency fluctuation
40P2
0.2
0.37
0.9
1.2
1.2
40P4
0.4
0.75
1.4
1.8
2.1
40P7
0.75
1.5
2.6
3.4
4.1
1. Based on a standard 4-pole motor for maximum applicable motor output:
Heavy Duty (HD) mode with a 150% overload capacity
Normal Duty (ND) mode with a 120% overlaod capacity
41P5
1.5
2.2
3.7
4.8
5.4
42P2
2.2
3.0
4.2
5.5
43P0
3.0
3.7
5.5
7.2
44P0
4.0
5.5
7.2
9.2
6.9
8.8
11.1
0..480V (proportional to input voltage)
400 Hz
45P5
5.5
7.5
9.2
14.8
17.5
3-phase 380..480 VAC, 50/60 Hz
-15%..+10%
+5%
47P5
7.5
11
14.8
18.0
23
-
27P5
7.5
11
13
33.0
40.0
4011
11
15
18
24
31
-
2011
11
15
18
47.0
56.0
4015
15
18.5
24
31
38
-
2015
15
18.5
23
60.0
69.0
Specifications
Commom specifications
Control methods
Output frequency range
Frequency tolerance
Resolution of frequency set value
Resolution of output frequency
Overload capability
Frequency set value
Braking torque
(short term peak torque)
V/f Characteristics
Inputs signals
Output signals
Standard functions
Analogue inputs
Braking/acceleration times
Display
Model number
VZ-@
Motor overload protection
Instantaneous overcurrent
Overload
Overvoltage
Undervoltage
Momentary power loss
Cooling fin overheat
Stall prevention level
Ground fault
Power charge indication
Degree of protection
Cooling
Ambient humidity
Storage temperature
Installation
Installation height
Vibration
Specifications
Sine wave PWM (V/f control, sensorless current vector control)
0.1..400 Hz
Digital set value: ±0.01% (-10..+50 ºC)
Analogue set value: ±0.1% (25 ±10 ºC)
Digital set value: 0.01 Hz (<100 Hz), 0.1 Hz (>100 Hz)
Analogue set value: 1/1000 of maximum frequency
0.01 Hz
Heavy duty use: 150% rated output current for one minute
Normal duty use: 120% rated output current for one minute
0..10 V (20 kΩ), 4..20 mA (250 Ω), 0..20 mA (250 Ω)
Pulse train input, frequency setting value (selectable)
Short-term average deceleration torque: 150% (up 1.5 kW), 100% (for 1.5 kW), 50% (for 2.2 kW), 20% (fof bigger size)
Continous regenerative torque: Aprox 20% (125% with optional braking resistor, 10%ED, 10 s, braking transistor built itn)
Possible to program any V/f pattern
Seven of the following input signals are selectable: Forward/reverse run (3-wire sequence), fault reset, external fault (NO/NC contact input), multi-step speed operation, Jog command, accel/decel time select, external baseblock, speed search command, UP/DOWN command, accel/decel hold command, LOCAL/REMOTE selection, communication/control circuit terminal selection, mergency stop fault, emergency stop alarm, self test
Following output signals are selectable (NO/NC contact output, 2 photo-coupler outputs): Fault, running, zero speed, speed agree, frequency detection (output frequency <= or => set value), during overtorque detection, minor error, during baseblock, operation mode, inverter run ready, during fault retry, during undervoltage detection, reverse running, during speed search, data output through communication.
Open-loop vector control, full-range automatic torque boost, slip compensation, 17-step speed operation (max.), restart after momentary power loss, DC injection braking current at stop/start (50% of inverter rated current, 0.5 sec, or less), frequency reference bias/gain, MEMOBUS communications (RS-485/422, max. 115K bps), fault retry, speed search, frequency upper/ lower limit setting, overtorque detection, frequency jump, accel/decel time switch, accel/decel prohibited, S-curve accel/decel,
PID control, energy-saving control, constant copy.
2 analogue inputs, 0..10 V, 4..20 mA, 0..20 mA
0.01..6000 s
Optionally frequency, current or set value
Error and status LED
Electronic thermal overload relay
Motor coasts to a stop at approx. 250% of inverter rated current
Heavy Duty: Motor coasts to a stop after 1 minute at 150% of inverter rated output current
Normal Duty: Motor coasts to a stop after 1 minute at 120% of inverter rated output current
Motor coasts to a stop if DC bus voltage exceed 410 V (double for 400 V class)
Stops when DC bus voltage is approx. 190 V or less (double for 400 V class)
(approx. 150 V or less for single-phase series)
Following items are selectable: not provided (stop if power loss is 15 ms or longer), continuous operation if power loss is approx. 0.5 s or shorter, continuous operation
Protected by thermister
Stall prevention during acceleration/deceleration and constant speed operation
Protected by electronic circuit (operation level is approx. 250% of rated output current)
Indicates until the main circuit voltage reaches 50 V.
IP20, NEMA1
Cooling fan is provided for 200 V, 0.75 kW (1HP) (3/single-phase)
400 V, 1.5 kW (2HP) (3-phase), others are self-cooling
95% RH or less (without condensation)
-20 ºC..+60 ºC (short-term temperature during transportation)
Indoor (no corrosive gas, dust, etc.)
Max. 1000 m
Up to 1 G at 10 to less than 20 Hz, Up to 0.65 G at 20 to 50 Hz
Dimensions
I
P 20 type 0.1 to 4 kW
Figure 1
W1 2-M4 t1
W1
Figure 2
4-M4
W
D
D1
W D1 t1
D
Voltage class
Single-phase
200 V
Three-phase
200 V
Three-phase
400 V
Max. applicable motor output kW
5.5
7.5
11
15
1.5
2.2
3.0
4.0
15
0.37
0.55
1.1
4.0
5.5
7.5
11
2.2
4.0
0.12
0.25
0.55
1.1
1.5
2.2
0.12
0.25
0.55
1.1
1.5
V1000 + Option board
Inverter model VZA Figure
41P5
42P2
43P0
44P0
45P5
47P5
4011
4015
24P0
25P5
27P5
2011
2015
40P2
40P4
40P7
B0P1
B0P2
B0P4
B0P7
B1P5
B2P2
B4P0
20P1
20P2
20P4
20P7
21P5
22P2
1
2
1
2
3
2
3
W1
56
96
128
56
96
128
122
160
192
96
128
122
160
H1
118
118
248
284
336
118
248
284
108
140
140
180
220
W
68
108
140
68
108
H
254
290
358
Dimensions in mm
D t1 H2
76 3
128
108
137.5
154
5
163
Under development
3
128
76
108
128
129
137.5
143
5
140
163
187
81
99
137.5
-
5
5
6
8
7
128 5 5
154
6.5
38.5
58
58
65
55
75
78
10
28
D1
6.5
38.5
58
65
140
140
180
254
290
143
140
143
163
-
6
8
65
55
75
H3
-
-
-
13
15
13
15
6.2
7.2
6
6.2
6
H4 Weight
0.6
-
0.7
1.0
1.5
1.5
2.1
-
-
1.5
1.5
1.5
2.1
9.2
0.8
1.0
1.4
3.8
3.8
5.2
5.5
2.1
3.8
3.8
5.5
0.6
0.6
0.9
1.1
1.3
1.4
Built-in Filter Dimensions
VZA-
B0P1
B0P2
B0P4
B0P7
B1P5
B2P2
B4P0
40P2
40P4
40P7
41P5
42P2
43P0
44P0
45P5
47P5
4011
4015
W
68
108
140
108
140
H
178
183
178
Dimensions in mm
H1 D1
50
69.5
79.5
77.9
89.4
55 96.4
Under development
69.4
D2
6.5
38.5
59.6
64.6
66.6
11.6
29.6
50
77.9
94.4
59.6
183 55 76.4
66.6
Under development
81
99
137.5
154
143
D
76
118
137.5
154
163
Schaffner footprint Filters
3x200 V
1x200 V
3x400 V
Schaffner model
A1000-FIV2010-SE
A1000-FIV2020-SE
A1000-FIV2030-SE
A1000-FIV2050-SE
A1000-FIV2100-SE
A1000-FIV1010-SE
A1000-FIV1020-SE
A1000-FIV1030-SE
A1000-FIV1040-SE
A1000-FIV3005-SE
A1000-FIV3010-SE
A1000-FIV3020-SE
A1000-FIV3030-SE
A1000-FIV3050-SE
A
194
169
174
B
82
111
144
169
169
174
304
169
169
174
174
111
111
144
184
71
111
144
144
45
45
50
56
45
50
50
50
C
50
50
50
D
160
135
135
135
135
135
264
135
135
135
135
E
181
156
161
156
156
161
288
156
156
161
161
Dimensions
F
62
G
5.3
91
120
5.5
5.3
Under development
51
91
120
150
5.3
5.3
5.3
5
91
91
5.3
5.3
120
150
5
6
Under development
H
M5
M5
M5
M5
M5
M5
M5
M5
M5
M5
M5
I
25
25
25
J
56
96
128
K
118
118
118
L
M4
M4
M4
22
25
25
25
22
22
25
28
56
96
128
158
96
96
128
164
118
118
118
118
118
118
118
244
M4
M4
M4
M5
M4
M4
M4
M4
Rasmi footprint Filters
3x200 V
1x200 V
3x400 V
Rasmi model
A1000-FIV2010-RE
A1000-FIV2020-RE
A1000-FIV2030-RE
A1000-FIV2060-RE
A1000-FIV2100-RE
A1000-FIV1010-RE
A1000-FIV1020-RE
A1000-FIV1030-RE
A1000-FIV1040-RE
A1000-FIV3005-RE
A1000-FIV3010-RE
A1000-FIV3020-RE
A1000-FIV3030-RE
A1000-FIV3050-RE
DIN rail mounting bracket
EZZ08122A
150
188
71
111
144
W
82
111
144
111
111
144
150
182
52
62
45
50
50
H
50
50
50
45
45
50
52
62
EZZ08122B
169
169
174
306
357
Dimensions
320
362
169
169
174
L
194
194
174
290
330
156
156
X
181
181
161
161
Under development
156
156
161
290
330
91
91
120
122
160
122
160
51
91
120
Y
62
62
120
M5
M5
M4
M4
M4
M
M4
M4
M4
M4
M4
M4
M5
M5
Weight
2.4
4.2
0.6
1.0
5.3
KG
0.8
1.1
1.3
1.1
1.1
1.3
2.1
2.9
EZZ08122C
Four, M4 tap
Side view
(common to all the units)
EZZ08122D
Four, M4 tap
3-phase 200 VAC
Single-phase 200 VAC
3-phase 400 VAC
Four, M4 tap
Inverter
VZ - 20P1/ 20P2 / 20P4/ 20P7
VZ - 21P5/ 22P2
VZ - 24P0
VZ - B0P1/ B0P2/ B0P4
VZ - B0P7/ B1P5
VZ - B2P2
VZ - B4P0
VZ - 40P2/ 40P4/ 40P7/ 41P5/ 42P2
VZ - 44P0
Four, M4 tap
DIN rail mounting bracket
EZZ08122A
EZZ08122B
EZZ08122C
EZZ08122A
EZZ08122B
EZZ08122C
EZZ08122D
EZZ08122B
EZZ08122C
Heatsink attachment and Panel cut dimensions
Heatsink External Mounting Attachment
Panel Cit for External Mounting of Cooling Fin (Heatsink)
2 - 5 Dia. Holes
Fig 1
VZA
43P0
44P0
45P5
47P5
4011
4015
B1P5
B2P2
B4P0
40P2
40P4
40P7
41P5
42P2
25P5
27P5
2011
2015
B0P1
B0P2
B0P4
B0P7
20P1
20P2
20P4
20P7
21P5
22P2
24P0
Reference
100-034-075
100-034-076
100-034-077
100-034-079
100-034-080
100-036-300
100-036-301
100-036-302
100-034-075
100-034-076
100-035-418
100-034-079
100-034-080
100-036-357
100-034-078
100-036-418
100-034-079
100-034-080
100-036-300
100-036-301
140
158
198
68
128
108
140
158
198
241
68
286
322
380
128
108
140
W
Mounting Panel
108
H
128
286
322
128
122
160
4-d Tap
56
56
96
128
96
D3 for more
W1
96
128
122
160
192
Frame
H1
118
D1
69.2
71
79.5
86.5
272 86.6
53.4
308 89.6
73.4
362 110.6
76.4
69.2
12
D2
12
42
62
58
53.5
118
118
79.2
79.5
96
98
71
79.5
96
D3
30
50
70
70
60
60
80
85
30
Fig
2
3
4
1
2
42 50
58
65
13.2
28
70
3
4
Under development
30
40
3
58
70
Panel Cutting
(W2) (W3) (H2) (H3)
9
10
14
9
10.5
8.5
10.5
10.5
-
-
-
-
-
-
-
7
9
272
308
78
86.6
65
53.4
73.4
60
80
4
1
9
10
9
8.5
10.5
-
7
A
140
180
220
140
180
B
255
287
341
255
287
Fig 2
Fig 3
Fig 4
Standard connections
For 1-phase power supply use
R/L1 and S/L2
Power
Supply
L1
L2
L3
Main
Switch
Fuses
Filter
Forward/Stop
Reverse/Stop
External Fault
Fault Reset
Multi-speed 1
Multi-speed 2
Multi-function digital inputs
(default setting)
Safe Disable inputs
2 kΩ
Multi- function pulse / analog inputs
(default: frequency reference)
H2
H1
HC
S1
S2
S3
S4
S5
S6
R/L1
S/L2
T/L3
+2
DC reactor
(option)
Link
+1
Thermal relay
㪄 B1
V1000
Braking resistor
(opt)
B2
U/T1
V/T2
W/T3
+24 V 8 mA
Shielded
Cable
Ground
MA
MB
MC
Fault
U
V
W
M
Multi-function relay output
250 Vac / 30 VDC (10 mA to 1A)
(default setting)
SINK
24 V
SC
DIP switch S3
SOURCE
0 V
Shielded ground terminal
RP
+V
A1
A2
AC
Pulse Input
(max. 32kHz)
Analog input power supply
+10.5 VDC, max. 20 mA
Multi-function analog input 1
0 to 10 V (20 kΩ)
Multi-function analog input 2
0 to 10 V (20 kΩ) or
0/4 to 20 mA (250 Ω)
P1
During run
P2
PC
MP
Frequency agree
Photocoupler common
Pulse train output
(max. 32 kHz)
(Output frequency)
AM
AC
Analog output
0 to +10 VDC (2mA)
(Output frequency)
Multi-function photocoupler output
48 VDC, max. 50 mA
(default setting)
Monitor outputs
(default setting)
Terminal resistance
(120 Ω, 1/2 W)
R+
R−
S+
S−
IG
Memobus comm.
RS-485/422 max. 115 kBps
Symbols:
Use twisted pair cables
Use shielded twisted pair cables
Indicates a main circuit terminal
Indicates a control circuit terminal.
Main circuit
Terminal
R/L1, S/L2, T/L3
U/T1, V/T2, W/T3
B1, B2
+2, +1
+1, –
Name
Main circuit power supply input
Inverter output
Braking resistor connection
DC reactor connection
DC power supply input
Grounding
Function (signal level)
Used to connect line power to the drive.
Drives with single-phase 200 V input power use only terminals R/L1 and S/L2
(T/L3 is not connected to anything)
Used to connect the motor
Available for connecting a braking resistor or the braking resistor unit option.
Remove the short bar between +2 and +1 when connecting DC reactor (option)
For power supply input (+1: positive electrode; – : negative electrode)*
For grounding (grounding should conform to the local grounding code.)
Control Circuit
Type No.
S1
S2
S3
S4
S5
S6
Fast
Stop
Cmd
Analog output signals
SC
PC
PM
AM
MC
P1
P2
AC
R+
R–
S+
S–
HC
H1
H2
MA
MB
RP
FS
FR1
FR2
FC
Signal name
Multi-function input selection 1
Multi-function input selection 2
Multi-function input selection 3
Communication input (+)
Communication input (–)
Communication output (+)
Communication output (–)
Function
Factory setting: runs when CLOSED, stops when OPEN.
Factory setting: runs when CLOSED, stops when OPEN.
Factory setting: External Fault (N.O.)
Multi-function input selection 4
Multi-function input selection 5
Factory setting: Fault reset
Factory setting: Multi-step speed cmd 1
Multi-function input selection 6
Multi-function input selection
Common
Factory setting: Multi-step speed cmd 2
Common for control signal
Main Speed Cmd Pulse Train Input 32 kHz max.
Power Supply for Frequency Setting +10 V (allowable max current 20 mA)
Main Speed Freq Ref
Voltage input or current input
0 to +10 VDC (20 kΩ) (resolution 1/1000)
4 to 20 mA (250 Ω) or 0 to 20 mA (250 Ω) Resolution: 1/500
0 V
+24 V (max allowable current 10 mA)
Frequency reference common
Power Supply Fast Stop Cmd
Special Digital input
Special Digital input
NO contact output
NC Output
Relay Output common
Photocoupler output 1
Open: Fast Stop Closed: Normal Operation
Factory setting: "fault"
Photocoupler output 2
Photocoupler output common
Pulse train Output
Analog monitor output
Analog monitor common
Factory setting: During run
Factory setting: Frequency Agree
0 V max 33 kHz
Factory setting: "output frequency" 0 to +10 V output Resolution: 1/1000
0 V
For MEMOBUS communication operation by RS-485 or RS-422 communication is available.
Signal level
24 VDC, 8 mA photocoupler insulation
Contact capacity
250 VAC,
1 A or less
30 VDC, 1 A or less
Photocoupler output:
+48 VDC, 50 mA or less
0 to 10 V 2 mA or less
Resolution: 8 bits
RS-485/422
MEMOBUS protocol
V1000
9
a a: Space required differs by model:
Up to 3.7 kW: minimum 30 mm
5.5 kW and above: minimum 50 mm a
At least
100 m m
Airflow
At least
100 m m
Side by Side mounting
Inverter heat loss
Three-phase 200 V class
Model VZ
Inverter capacity kVA
Rated current (A) at HD
Rated current (A) at ND
Fin
Inside unit
Total heat loss
Fin
Inside unit
Total heat loss
Cooling Method
Single-phase 200 V class
Model VZ
Inverter capacity kVA
Rated current (A) at HD
Rated current (A) at ND
Fin
Inside unit
Total heat loss
Fin
Inside unit
Total heat loss
Cooling Method
Three-phase 400 V class
Model VZ
Inverter capacity kVA
Rated current (A) at HD
Rated current (A) at ND
Fin
Inside unit
Total heat loss
Fin
Inside unit
Total heat loss
Cooling Method
20P1
0.3
0.8
1.2
4.3
7.3
11.6
4.7
7.9
12.6
20P2
0.6
1.6
1.9
7.9
8.8
16.7
7.2
9.4
16.6
Self Cooled
20P4
1.1
3
3.5
16.1
11.5
27.7
14.0
13.4
28.5
20P7
1.9
5
6.0
27.4
15.9
43.3
35.6
16.9
43.1
21P5
3.0
8
9.6
54.8
23.8
78.6
48.6
25.0
73.6
22P2
4.2
11
12.0
70.7
30.0
100.6
57.9
29.6
87.5
24P0
6.7
17.5
21.0
110.5
43.3
153.8
93.3
45.0
236.8
87.2
138.2
324.0
Fan Cooled
25P5
9.5
25
30.0
231.5
72.2
303.7
27P5
13
33
40.0
239.5
81.8
321.3
258.8
11.4
370.3
2011
18
47.0
56.0
347.6
117.6
465.2
342.8
149.1
491.9
2015
23
60.0
69.0
437.7
151.4
589 .1
448.5
182.2
630.7
B0P1
0.3
0.8
1.2
4.3
7.4
11.7
4.7
8.4
13.1
B0P2
0.6
1.6
1.9
7.9
8.9
16.7
7.2
9.6
16.8
Self Cooled
B0P4
1.1
3
3.5
16.1
11.5
27.7
15.1
14.3
28.3
B0P7
1.9
5
6.0
42.5
19.0
61.5
26.2
20.8
56.5
B1P5
3.0
8
9.6
54.8
25.9
80.7
48.6
29.0
77.6
36.3
94.2
Fan Cooled
B2P2
4.2
11
12.0
70.7
34.1
104.8
57.9
B4P0
6.7
17.5
21.0
110.5
51.4
161.9
93.3
58.5
151.8
40P2
0.9
1.2
1.2
19.2
11.4
30.6
8.2
9.2
17.4
40P4
1.4
1.8
2.1
28.9
14.9
43.7
15.5
13.1
28.6
Self Cooled
40P7
2.6
3.4
4.1
42.3
17.9
60.2
26.4
15.8
42.2
41P5
3.7
4.8
5.4
70.7
26.2
96.9
37.5
20.0
57.5
42P2
4.2
5.5
6.9
81.0
30.7
111.7
49.7
26.3
76.0
43P0
5.5
7.2
8.8
84.6
32.9
117.5
55.7
29.4
85.1
44P0
7.2
9.2
11.1
45P5
9.2
14.8
17.5
107.2
41.5
148.7
71.9
166.0
62.7
228.7
170.3
43.6
115.5
78.1
248.4
Fan Cooled
47P5
14.8
18.0
23
207.1
78.1
285.2
199.5
105.3
304.8
4011
18
24
31
266.9
105.9
372.7
268.6
142.8
411.4
4015
24
31
38
319.1
126.6
445.8
298.7
152.2
450.9
Connections for braking resistor
Power supply
MCCB MC
Thermal relay
R/L1 B1
S/L2
T/L3
VZ
B2
U/T1
V/T2
W/T3
Braking resistor
Motor
THRX OFF ON MC
MC
SA
THRX
Thermal relay switch for external braking resistor
MC
TRX
SA
TRX
FLT-A FLT-B
Fault contact
AC reactor
Power supply MCCB
U
V
W
AC reactor
X
Y
Z
R/L1
S/L2
T/L3
VZ
Max. applicable
motor output kW
0.12
0.25
0.55
1.1
1.5
2.2
4.0
5.5
7.5
11
15
DC reactor
200 V class
Current value
A
2.0
2.0
2.5
5
10
15
20
30
40
60
80
Power supply
Inductance mH
2.0
2.0
4.2
2.1
1.1
0.71
0.53
0.35
0.265
0.18
0.13
MCCB
R/L1
S/L2
T/L3
Max. applicable motor output kW
0.2
0.4
0.75
1.5
2.2
4.0
5.5
7.5
11
15
VZ
+1 +2
400 V class
Current value
A
------
1.3
15
20
30
40
2.5
5
7.5
10
Max. applicable motor output kW
0.12
0.25
0.55
1.1
1.5
2.2
4.0
5.5
7.5
11
15
200 V class
Current value
A
5.4
18
36
72
Inductance mH
8
3
1
0.5
DC reactor
Max. applicable
motor output kW
5.5
7.5
11
15
0.2
0.4
0.75
1.5
2.2
4.0
400 V class
Current value
A
--------
3.2
5.7
12
23
33
Inductance mH
18.0
8.4
4.2
3.6
2.2
1.42
1.06
0.7
0.53
Inductance mH
28
11
6.3
3.6
1.9
Safety System
Control Circuit
Ordering information
Power
Supply
MCCB
AC Reactor
A
Filter
V1000
Motor
Ground
V1000
1x200 V
3x200 V
3x400 V
0.4 kW
0.75 kW
1.5 kW
2.2 kW
3.0 kW
4.0 kW
5.5 kW
7.5 kW
11 kW
15 kW
1.5 kW
2.2 kW
4.0 kW
5.5 kW
7.5 kW
11 kW
15 kW
0.2 kW
0.12 kW
0.25 kW
0.55 kW
Specifications
Heavy Duty
0.8 A
1.6 A
3.0 A
1.1 kW
1.5 kW
2.2 kW
4.0 kW
0.12 kW
0.25 kW
0.55 kW
1.1 kW
5.0 A
8.0 A
11.0 A
17.5 A
0.8 A
1.6 A
3.0 A
5.0 A
1.8 A
3.4 A
4.8 A
5.5 A
7.2 A
9.2 A
14.8 A
18.0 A
24.0 A
31.0 A
8.0 A
11.0 A
17.5 A
25.0 A
33.0 A
47.0 A
60.0 A
1.2 A
11.0 kW
15.0 kW
18.5 kW
0.37 kW
0.75 kW
1.5 kW
2.2 kW
3.0 kW
3.7 kW
5.5 kW
7.5 kW
11.0 kW
15.0 kW
18.5 kW
Normal Duty
0.18 kW 0.8 A
0.37 kW
0.75 kW
1.6 A
3.5 A
1.1 kW
2.2 kW
3.0 kW
5.5 kW
6.0 A
9.6 A
12.0 A
21.0 A
0.18 kW
0.37 kW
0.75 kW
1.1 kW
2.2 kW
3.0 kW
5.5 kW
7.5 kW
0.8 A
1.6 A
3.5 A
6.0 A
9.6 A
12.0 A
21.0 A
30.0 A
40.0 A
56.0 A
69.0 A
1.2 A
2.1 A
4.1 A
5.4 A
6.9 A
8.8 A
11.1 A
17.5 A
23.0 A
31.0 A
38.0 A
C
RJ-45 / USB
Adapter
C
Remote Operator
Extansion Cable
C
24Vdc Control Board Power Supply
C
USB Cable
C
LCD Remote
Operator
B
Communication Option Board
F
Mounting Accesories
E
Braking Resistor
DC Reactor
D
CX-Drive
CX-One
Standard
VZAB0P1BAA
VZAB0P2BAA
VZAB0P4BAA
VZAB0P7BAA
VZAB1P5BAA
VZAB2P2BAA
VZAB4P0BAA
VZA20P1BAA
VZA20P2BAA
VZA20P4BAA
VZA20P7BAA
VZA21P5BAA
VZA22P2BAA
VZA24P0BAA
VZA25P5FAA
VZA27P5FAA
VZA2011FAA
VZA2015FAA
VZA40P2BAA
VZA40P4BAA
VZA40P7BAA
VZA41P5BAA
VZA42P2BAA
VZA43P0BAA
VZA44P0BAA
VZA45P5FAA
VZA47P5FAA
VZA4011FAA
VZA4015FAA
Model
Built-in filter
VZAB0P1HAA
VZAB0P2HAA
VZAB0P4HAA
VZAB0P7HAA
VZAB1P5HAA
VZAB2P2HAA
VZAB4P0HAA
VZA20P1HAA
VZA20P2HAA
VZA20P4HAA
VZA20P7HAA
VZA21P5HAA
VZA22P2HAA
VZA24P0HAA
VZA25P5HAA
VZA27P5HAA
VZA2011HAA
VZA2015HAA
VZA40P2HAA
VZA40P4HAA
VZA40P7HAA
VZA41P5HAA
VZA42P2HAA
VZA43P0HAA
VZA44P0HAA
VZA45P5HAA
VZA47P5HAA
VZA4011HAA
VZA4015HAA
A
Line filters
Voltage
3-Phase 200 VAC
Single-Phase 200
VAC
3-Phase 400 VAC
Inverter Line filter Schaffner
Model VZ Reference
20P1 / 20P2 / 20P4 / 20P7 A1000-FIV2010-SE
Rated current (A) Weight (kg)
10 0.7
21P5 / 22P2
24P0
25P5 / 27P5
2011 / 2015
A1000-FIV2020-SE
A1000-FIV2030-SE
A1000-FIV2050-SE
A1000-FIV2100-SE
20
30
0.9
1.0
Under development
B0P1 / B0P2 / B0P4
B0P7 / B1P5
B2P2
B4P0
40P2 / 40P4
44P0
45P5 / 47P5
4011 / 4015
A1000-FIV1010-SE
A1000-FIV1020-SE
A1000-FIV1030-SE
A1000-FIV1040-SE
A1000-FIV3005-SE
40P7 / 41P5 / 42P2 / 43P0 A1000-FIV3010-SE
A1000-FIV3020-SE
A1000-FIV3030-SE
A1000-FIV3050-SE
10
20
30
40
5
10
15
0.5
0.7
1.0
1.1
0.5
0.75
1.0
Under development
Line filter Rasmi
Reference
A1000-FIV2010-RE
A1000-FIV2020-RE
A1000-FIV2030-RE
A1000-FIV2060-RE
A1000-FIV2100-RE
A1000-FIV1010-RE
A1000-FIV1020-RE
A1000-FIV1030-RE
A1000-FIV1040-RE
A1000-FIV3005-RE
A1000-FIV3010-RE
A1000-FIV3020-RE
A1000-FIV3030-RE
A1000-FIV3050-RE
Rated current (A) Weight (kg)
10 0.8
20
30
58
96
1.1
1.3
2.4
4.2
10
20
30
40
0.6
1.0
1.1
-
5
10
20
29
48
1.1
1.1
1.3
2.1
2.9
B
Communication cards
Type Model
SI-N3
/V
SI-P3
/V
Description
DeviceNet option card
PROFIBUS-DP option card
Can open option card
CompoNet option card
Function
• Used for running or stopping the inverter, setting or referencing parameters, and monitoring output frequency, output current, or similar items through DeviceNet communication with the host controller.
• Used for running or stopping the inverter, setting or referencing parameters, and monitoring output frequency, output current, or similar items through PROFIBUS-DP communication with the host controller.
• Used for running or stopping the inverter, setting or referencing parameters, and monitoring output frequency, output current, or similar items through CANopen communication with the host controller.
• Under Development
SI-S3 /V
A1000 - CRT1
C
Accessories
Types Model
JVOP-180
72606-WV001
72606-WV003
JVOP-181
Description
LCD remote operator
Remote operator cable (1 m)
Remote operator cable (3 m)
USB converter / USB cable
Functions
LCD Display operator with language support
Cable for connecting remote operator
USB converter unit with copy and backup function
PS-UDC24 24 VDC option board 24V DC control board power supply
D
Computer software
Types Model
CX-drive
CX-One
Description
Computer software
Computer software
Installation
Configuration and monitoring software tool
Configuration and monitoring software tool
E
Braking unit, braking resistor unit
Voltage
200 V
(single-/ three-phase)
400 V
(threephase)
11
15
0.37
0.55
2.2
4.0
5.5
7.5
Max. applicable motor output kW
0.12
0.25
0.55
1.1
1.5
4.0
5.5
7.5
11
15
1.1
1.5
2.2
3.0
Inverter
Inverter model VZ
20P1
20P2
20P4
20P7
21P5
22P2
24P0
25P5
27P5
2011
2015
40P2
40P4
40P7
41P5
42P2
43P0
44P0
45P5
47P5
4011
4015
Three-phase Single-phase
B0P1
B0P2
B0P4
B0P7
B1P5
B2P2
B4P0
–
–
-
-
–
–
–
–
–
–
–
–
–
F
Mounting accesories
Connectable min.
resistance Ω
9.6
9.6
750
750
60
32
16
9.6
300
300
200
120
60
510
240
200
100
32
32
20
20
Types Model
EZZ08122A
EZZ08122B
Description
Necessary to mount the inverter on a DIN rail
EZZ08122C
EZZ08122D
100-034-075
100-034-076
100-034-077
100-034-078
100-034-079
Additional items to mount the inverter with the heatshink out of the panel.
100-034-080
100-036-357
100-036-418
100-036-300
100-036-301
100-036-302
Braking resistor unit
Inverter-mounted type (3 %ED, 10 sec max)
ERF-150WJ_
401
401
201
201
101
700
620
Resistance Ω
400
400
200
200
100
70
62
No. of used
1
1
1
1
1
1
1
Braking torque %
220
220
220
125
125
120
100
–--
751
751
751
401
301
401
–--
750
750
750
400
300
400
1
1
1
1
1
2
---
–--
Applicable models
VZ-20P1/20P2/20P4/20P7
VZ-B0P1/B0P2/B0P4
VZ-21P5/22P2
VZ-B0P7/B1P5
VZ-40P2/40P4/40P7/41P5/42P2
VZ-24P0
VZ-B2P2
VZ-44P0
VZ-B4P0
VZ-20P1/20P2
VZ-B0P1/B0P2
VZ-20P4
VZ-B0P4
VZ-20P7
VZ-40P2
VZ-21P5/22P2
VZ-B1P5
VZ-41P5/42P2/43P0
VZ-24P0
VZ-B2P2
VZ-44P0
VZ-B4P0
VZ-B0P7
VZ-40P2/40P4
VZ-25P5/27P5
VZ-45P5/47P5
VZ-2011
VZ-4011/4015
VZ-2015
230
230
130
125
115
105
Cat. No. I68E-EN-01
In the interest of product improvement, specifications are subject to change without notice.
OMRON EUROPE B.V.
Wegalaan 67-69,
NL-2132 JD, Hoofddorp,
The Netherlands
Phone: +31 23 568 13 00
Fax: +31 23 568 13 88 www.omron-industrial.com
OMRON EUROPE B.V.
Wegalaan 67-69, NL-2132 JD, Hoofddorp, The Netherlands. Tel: +31 (0) 23 568 13 00 Fax: +31 (0) 23 568 13 88 www.omron-industrial.com
Austria
Tel: +43 (0) 2236 377 800 www.omron.at
Belgium
Tel: +32 (0) 2 466 24 80 www.omron.be
Czech Republic
Tel: +420 234 602 602 www.omron-industrial.cz
Denmark
Tel: +45 43 44 00 11 www.omron.dk
Finland
Tel: +358 (0) 207 464 200 www.omron.fi
France
Tel: +33 (0) 1 56 63 70 00 www.omron.fr
Germany
Tel: +49 (0) 2173 680 00 www.omron.de
Hungary
Tel: +36 1 399 30 50 www.omron.hu
Italy
Tel: +39 02 326 81 www.omron.it
Middle East & Africa
Tel: +31 (0) 23 568 11 00 www.omron-industrial.com
Netherlands
Tel: +31 (0) 23 568 11 00 www.omron.nl
Norway
Tel: +47 (0) 22 65 75 00 www.omron.no
Poland
Tel: +48 (0) 22 645 78 60 www.omron.pl
Portugal
Tel: +351 21 942 94 00 www.omron.pt
Russia
Tel: +7 495 648 94 50 www.omron-industrial.ru
Spain
Tel: +34 913 777 900 www.omron.es
Sweden
Tel: +46 (0) 8 632 35 00 www.omron.se
Switzerland
Tel: +41 (0) 41 748 13 13 www.omron.ch
Turkey
Tel: +90 (0) 216 474 00 40 www.omron.com.tr
United Kingdom
Tel: +44 (0) 870 752 08 61 www.omron.co.uk
More Omron representatives
www.omron-industrial.com
Authorised Distributor:
KPP_V1000_EN_INT02_0607
Control Systems
• Programmable logic controllers • Human-machine interfaces • Remote I/O
Motion & Drives
• Motion controllers • Servo systems • Inverters
Control Components
• Temperature controllers • Power supplies • Timers • Counters • Programmable relays
• Digital panel indicators • Electromechanical relays • Monitoring products • Solid-state relays
• Limit switches • Pushbutton switches • Low voltage switch gear
Sensing & Safety
• Photoelectric sensors • Inductive sensors • Capacitive & pressure sensors • Cable connectors
• Displacement & width-measuring sensors • Vision systems • Safety networks • Safety sensors
• Safety units/relay units • Safety door/guard lock switches
Although we strive for perfection, Omron Europe BV and/or its subsidiary and affiliated companies do not warrant or make any representations regarding the correctness or completeness of the information described in this document.
We reserve the right to make any changes at any time without prior notice.
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