High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM

Product Details
Customization: Available
Application: Industrial
Number of Stator: Three-Phase
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  • High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM
  • High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM
  • High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM
  • High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM
  • High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM
  • High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM
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  • Overview
  • Product Description
Overview

Basic Info.

Model NO.
YVF
Function
Driving
Casing Protection
Protection Type
Starting Mode
Auto-induction Voltage-reduced Starting
Certification
CCC
Transport Package
Wooden Box
Trademark
WOLONG
Origin
China
HS Code
8501610000
Production Capacity
5000picese/Year

Packaging & Delivery

Package Size
100.00cm * 100.00cm * 100.00cm
Package Gross Weight
3000.000kg

Product Description

Product Description

High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODMIntelligent manufacturing drives the future
High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM

YVF series variable frequency speed regulation high voltage three-phase asynchronous motor
 (Machine base number 315~630)
High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM
1  Product Overview
YVF series variable frequency speed regulation high-voltage three-phase asynchronous motor (frame number 315 ~ 630) (hereinafter referred to as motor) is a new product developed by our company according to market demand. When used in conjunction with frequency converter, it can achieve smooth stepless speed regulation in a wide range, in which the frequency range 5-50Hz is constant torque speed regulation, and the frequency range 50-60Hz is constant power speed regulation.It is an ideal drive product for speed regulation equipment.
This series of motors has the characteristics of exquisite material selection, excellent manufacturing, wide speed range, high efficiency, low noise, low vibration, safe and reliable operation, convenient use and maintenance, energy saving and environmental protection, etc.
2  Purpose
This series of motors have the characteristics of lower center height, greater power, higher efficiency, lower noise, safe and reliable operation, easy use and maintenance, etc.It is suitable for driving various ventilators, compressors, water pumps, transportation machinery, general machinery and other mechanical equipment with constant torque and quadratic torque characteristics for general purposes, and is used in various working conditions such as mining, steel, machinery, petroleum, chemical industry, power stations, etc. Used as the driving force in enterprises.When the working speed is adjusted below its rated speed, the energy-saving effect is very obvious.No matter indoor, outdoor, plateau climate or hot and humid climate, this series of high-voltage three-phase asynchronous motors can always provide driving force beyond Zhuoqun, and have been trusted and respected by users.
3 Model description




4  Execution Standard
This series of motors comply with the following standards and specifications GB 755 Quota and performance of rotating electrical machines
GB 10069.3 Methods and limits for measuring noise of rotating electrical machines-Part 3: Noise limits.
GB 10068 Measurement, evaluation and limits of mechanical vibration of motors with center height of 56mm and above.
GB/T 22670 Test method for three-phase cage induction motor powered by frequency converter.
GBT 28562 Technical specifications of YVF series variable frequency speed regulation high-voltage three-phase asynchronous motor (frame number 355-630).Tolerances for power supply and performance are shown in Table 1
Table 1: Tolerance table for power supply and performance
Items Tolerance
Voltage fluctuation ±5%
Efficiency -0.1×(1-η)
Power factor -(1-cosφ)/6     Minimum absolute value 0.02   Maximum absolute value 0.07
Slip rate ±20%
Lockdown current multiple +20%
Plug torque multiple (-15%,+25%)
Maximum torque multiple -10%
Moment of inertia ±10%

5  Basic characteristics
5.1, Machine base number:315~630
5.2, Rated voltage:6000V,10000V
5.3, Reference frequency:50Hz(Frequency conversion range According to order)
5.4, Nominal power range:160~4500kW
5.5, Number of poles:4~8P
5.6, Thermal classification:155(F)
5.7, Temperature rise limit:80K(B )
5.8, Cooling method:
Air-to-air cooling:5~50Hz :IC666;25~50Hz :IC611.
Air-water cooling:5~50Hz:IC86W;25~50Hz :IC81W.
5.9, Installation method:IMB3(If other installation methods are required, please specify when ordering)
5.10, Level of protection:IP55
5.11, Working system:S1
5.12, Ambient air temperature: -15ºC~+40ºC
5.13, Altitude: ≤1000mm 5.14, Indoor(Standard configuration).
Optional: Outdoor (W), Outdoor Anti-Medium Corrosion (WF1), Outdoor Anti-Strong Corrosion (WF2), Indoor Anti-Medium Corrosion (F1), Indoor Anti-Strong Corrosion (F2), Humid Tropical Zone (TH), Dry Tropical Zone (TA), Outdoor Humid Tropical Zone (THW), Outdoor Dry Tropical Zone (TAW).
Note: If you have any special requirements for ambient air temperature, altitude, power supply voltage and frequency, please put forward them when ordering.
6  Structural description
This series of motors adopt box structure and steel plate bending frame, which have the advantages of strong load capacity, convenient maintenance and assembly, etc.The electric motor is lightweight and has good rigidity.Remove the cooler to observe or contact the inside of the motor, which is convenient for installation and maintenance.
The stator adopts a press-in external pressing structure, the stator winding adopts 155 (F) class insulation, and the stator coil is wound with
double glass filament-wrapped film tape wrapped with copper flat wire. After being wrapped with main insulation and VPI overall paint, it has high electrical strength, mechanical strength, insulation performance, moisture resistance and thermal stability.
The standard configuration of the motor is with stator temperature measurement, bearing temperature measurement and anti-condensation heater. The stator temperature measurement is two Pt100 platinum thermal resistors (single three-wire system) per phase, one for use and one for standby, a total of 6;The leads are connected to the set temperature measuring junction box.Each bearing is equipped with a Pt100 platinum thermal resistor (single three-wire system), two in total. The stator temperature measuring lead wire and the bearing temperature measuring lead wire are all connected to a temperature measuring junction box.
l Main junction box and neutral junction box
The protection grade of the main junction box is IP55, and the cavity of the main junction box is large.The standard configuration position of the main junction box is on the right side of the motor (the extension end of the shaft is seen).When the motor power is greater than 2000kW, the neutral point can be led out, and the neutral point junction box is on the symmetrical side of the main junction box;Current transformers can also be configured according to user needs.
Standard configuration of line inlet port: single port, bell mouth line inlet.
Optional configuration of wire inlet: steel pipe wiring with threaded port or Glenhead wire inlet.The attributes of the junction box introduction device are shown in Table 2.
Auxiliary junction box
Auxiliary junction box (including temperature measurement junction box and heater junction box) Standard configuration: Glenhead incoming wire (measurement
2 inlets for warm junction box and 1 inlet for heater junction box).Optional configuration: made into threaded mouth steel pipe wiring.
See Table 2 for the attributes of threaded port steel pipe wiring and Glenhead junction box introduction device.
 Table 2: Junction Box Introduction Device Properties
Junction box Introduction device Trait



Main junction box

Bell-mouth inlet line
The external lead cable is fixed with a press plate structure.The connection port is provided with a rubber sealing device and a device for preventing the cable from pulling off.The diameter of the sealing ring of the high-voltage junction box has concentric circles of Φ64, Φ57, Φ51, Φ46, and Φ40. It is equipped with a bell-mouth junction bucket. The default outlet size is 1-Ф 70, and the outer diameter of the applicable cable is Φ38 ~ Φ62mm.
Threaded mouth steel pipe wiring. A rubber sealing device is arranged at the connection port, and the diameters of the sealing ring are Φ64, Φ57, Φ51, Φ ,
 
Junction box Introduction device Trait
    Applicable cable outer diameter is Φ38 ~ Φ62mm.

Unarmored Grant
On the basis of threaded steel pipe wiring, a Gran head is added, which is suitable for non-armored cable incoming. The default specification of the Gran head is M75X1.5, and the applicable cable outer diameter is Φ48 ~ Φ63mm.

Armored Gülen
On the basis of threaded steel pipe wiring, a Gran head is added, which is suitable for armored cable incoming. The default specification of Gran head is M75X1.5, and the outer diameter of the applicable outer cable is Φ57-Φ78mm, and the outer diameter of the applicable inner cable is Φ54.5 ~ Φ64mm.

Auxiliary wiring
Cartridge (containing
Temperature measuring wiring
Cartridge and heating
Device wiring
Box)
Threaded opening steel pipe wiring It adopts steel Bugran, with a threaded port on the gran head. The default threaded interface is M25X1.5, and the outer diameter of the applicable cable is Φ6 ~ Φ16mm.
Unarmored Grant It is suitable for non-armored cable incoming lines. The default specification of Gran Head is M25X1.5, and the applicable cable outer diameter is Φ6 ~ Φ16mm.

Armored Gülen
It is suitable for armored cable incoming lines. The default specification of Gran Head is M25X1.5. The outer diameter of the applicable outer cable is Φ17-Φ25mm, and the outer diameter of the applicable inner cable is Φ13 ~ Φ20mm.
Water leakage monitoring
Instrument junction box
(For only
Air-water cooling
Motor)

Bell-mouth inlet line

Suitable for non-armored cable incoming, the standard configuration specification of Glenhead is M20X1.5, and the applicable cable outer diameter is Φ5.5 ~ Φ11.8 mm.

 Bearing type
According to the motor power and speed, the bearings of the motor are standard configured as rolling bearings;Optionally available as plain bearings.If you need sliding bearing structure, please specify it when ordering.The rolling bearing is equipped with a non-stop oil injection and discharge device, which can realize regular injection of grease for maintenance and maintenance under the condition of continuous operation of the motor.Great Wall HTHS grease is used for rolling bearing grease. See Table 3 for rolling bearing model, greasing amount and greasing cycle.
Table 3 Rolling bearing models, fatliquoring amount, fatliquoring cycle

Center height-number of poles
Shaft extension rolling bearing Non-shaft extension rolling bearing

Model
Fatliquoring amount (g) Fatliquoring cycle(h)
Model

Fatliquoring amount(g)

Fatliquoring cycle(h)
315-4 6220C3 30 4700 6218C3 25 5300
315-6/8 6220C3 30 6700 6218C3 25 7110
355-4 6222 40 4100 6218C3 25 5300
355-6 6222 40 6270 6218C3 25 7170
355-8 6222 40 7440 6218C3 25 8360
400-4 6224 45 3680 6222 40 4100
400-6 6224 45 5900 6222 40 6270
 

Center height-number of poles
Shaft extension rolling bearing Non-shaft extension rolling bearing

Model
Fatliquoring amount (g) Fatliquoring cycle(h)
Model

Fatliquoring amount(g)

Fatliquoring cycle(h)
400-8 6224 45 7160 6222 40 7440
450-4 6228 50 2920 6228 50 2920
450-6 6228 50 5150 6228 50 5150
450-8 6228 50 6550 6228 50 6550
500-4 6230 60 2580 6230 60 2580
500-6 6230 60 4700 6230 60 4700
500-8 6230 60 6220 6230 60 6220
560-4 6234 80 2020 NU1028 35 2000
560-6 6238 95 3400 NU1028 35 3450
560-8 6238 95 5030 NU1028 35 5090
630-4 NU1044M1+6044M 190 850 NU1032 45 1700
630-6 NU1044M1+6044M 190 1450 NU1032 45 2800
630-8 NU1044M1+6044M 190 2580 NU1032 45 4290


The sliding bearing is an end-cap spherical sliding bearing, which adopts pressure oil supply lubrication or oil ring self-lubrication or compound lubrication. At the same time, measures are taken to prevent the generation of shaft current at the non-shaft extension end.Plain bearing lubricating oil grade L-TSA46 (viscosity ISO VG46), plain bearing grade is shown in Table 4.

Table 4 Sliding bearing grades
 
Center height-number of poles Shaft extension end bearing model Non-shaft extension end bearing model
YVF450 DQ11-125A DQ11-125AJ
YVF500 DQ14-140A DQ14-140AJ
YVF560 DQ18-180A DQ18-180AJ
YVF630 DQ18-200A DQ18-200AJ
The inlet pressure of external circulating oil for sliding bearings is 0.01 ~ 0.03 MPa, and the external oil supply quantity of a single bearing is shown in table 5.
 Table 5 External oil supply for individual bearings

Diameter of bearing table(mm)
Number of poles
4P 6P 8P
External fuel supply(L/min)
125 2 1 0.5
140 3 2 2
180 5 4 3
4
200 7 5
 Air path structure
Air-air cooling internal and external double forced ventilation cooling system, the internal air path forms an internal circulation air path under the action of a forced fan, and the external air path blows cooling air from one end of the motor to the other end through a cooling pipe under the action of an external forced fan, so as to complete the heat exchange between the internal and external air paths.If an air-water cooler structure is required, the internal air path forms an internal circulation air path under the action of forced fan, and the external heat exchange is realized by the air-water cooler at the top of the motor. The inlet water pressure of the cooler is 0.35-0.45 MPa, and the inlet water temperature is ≤ 33 ºC. See Table 6 for the water consumption and inlet and outlet flanges of the cooler.
The low-voltage motor power supply of forced ventilation cooling system is three-phase AC380V, 50Hz.
 Table 6 Water consumption and water inlet and outlet flanges of cooler

Center height
Number of poles Inlet and outlet flange
(SH3406 PN2.0 WN/RF
With mating flange)
4P 6P,8P
Water consumption(m3/h)
315 8 8 DN50
355 8 8 DN65
400 13 10 DN65
450 18 15 DN80
500 24 20 DN80
560 29 25 DN80
630 37 30 DN100(4P) , DN80(6\8P)
7  Engineering selection
7.1, When ordering, please indicate the model, rated voltage, rated power, frequency, number of poles, installation type, cooling method, protection level, rotation direction, operating environment, altitude, etc. of the motor.An example is as follows:
Model number: YVF560-4
Rated power: 2800kW
Rated voltage: 6kV
Rated reference frequency: 50Hz(Frequency conversion range 5-50Hz or 25-50Hz)
Number of poles: 4P
Installation type: IMB3
Cooling method: IC666(5-50Hz)orC611(25-50Hz); IC86W(5-50Hz)orIC81W(25-50Hz);
Level of protection: IP55
Direction of rotation: Clockwise (from the extended end of the shaft)
Use environment: Outdoor(W)
 Altitude:≤1000m
Note: The influence of ambient temperature and altitude on motor output power is shown in Table 7 below.

Table 7 Relationship between ambient temperature, altitude and output power
Ambient temperature Altitude
1000m 1500m 2000m 2500m 3000m
40ºC 100% 97% 93% 90% 84%
45ºC 95% 92% 88% 85% 83%
50ºC 90% 87% 84% 81% /
55ºC 85% 82% / / /
Note: The percentage in the table is the percentage of motor output power to rated power.
7.2,If there are special requirements, after the two parties sign an agreement, they can also provide various motors with special specifications (such as different voltages, different pole numbers, different frequencies, biaxial extension, junction box position, noise requirements, different environmental conditions, wet and dry hot zone types, etc.).
7.3. For motors used to drive blowers, coal mills, rolling mills, hoists, and belt conveyors, relevant technical information should be provided when ordering, and a technical agreement should be signed as the basis for the special design of the motor to ensure the reliable operation of the motor.
7.4. With the progress of product technical level and the revision of relevant domestic and foreign standards, the technical parameters in the sample may change without prior notice. After ordering, please ask our company for the appearance, installation dimensions and technical data. Finally, the data provided shall prevail.
8  Technical data
8.1,   Type spectrum
See Table 8 and Table 9 for the motor type spectrum.





Table 8 YVF Series (6/10 kV, IC666) Motor Type Spectrum
 

Machine base number
 
Synchronous speed
 r/min
Synchronous speed
 r/min
1500 1000 750 1500 1000 750
6kV 10kV
Rated power


315
200 160

-


-


-


-
220 185
250 200
280 220


355
315 250 200 250 200  
355 280 220 280 220
400 315 250 315 250
450 355 280 355 280
400 500 400 315 400 315 250
560 450 355 450 355 280
 

Machine base number
 
Synchronous speed
 r/min
Synchronous speed
 r/min
1500 1000 750 1500 1000 750
6kV 10kV
Rated power
630 500 400 500 400 315
710 560 450 560 450 355


450
800 630 500 630 500 400
900 710 560 710 560 450
1000 800 630 800 630 500
1120 900 710 900 710 560


500
1250 1000 800 1000 800 630
1400 1120 900 1120 900 710
1600 1250 1000 1250 1000 800
1800 1400 1120 1400 1120 900


560
2000 1600 1250 1600 1250 1000
2240 1800 1400 1800 1400 1120
2500 2000 1600 2000 1600 1250
2800 2240 1800 2240 1800 1400


630
3150 2500 2000 2500 2000 1600
3550 2800 2240 2800 2240 1800
4000 3150 2500 3150 2500 2000
4500 3550 2800 3550 2800 2240



Table 9 YVF series (6/10 kV, IC86W) motor type spectrum
 

Machine base number 
Synchronous speed
 r/min
Synchronous speed
 r/min
1500 1000 750 1500 1000 750
6kV 10kV
Rated power


315
250 200

-


-


-


-
280 220
315 250
355 280


355
400 315 250 315 250

-
450 355 280 355 280
500 400 315 400 315
560 450 355 450 355


400
630 500 400 500 400 315
710 560 450 560 450 355
800 630 500 630 500 400
900 710 560 710 560 450


450
1000 800 630 800 630 500
1120 900 710 900 710 560
1250 1000 800 1000 800 630
1400 1120 900 1120 900 710
 

Rated power
Synchronous speed
 r/min
Synchronous speed
 r/min
1500 1000 750 1500 1000 750
6kV 10kV
Rated power


500
1600 1250 1000 1250 1000 800
1800 1400 1120 1400 1120 900
2000 1600 1250 1600 1250 1000
2240 1800 1400 1800 1400 1120


560
2500 2000 1600 2000 1600 1250
2800 2240 1800 2240 1800 1400
3150 2500 2000 2500 2000 1600
3550 2800 2240 2800 2240 1800


630
4000 3150 2500 3150 2500 2000
4500 3550 2800 3550 2800 2240
5000 4000 3150 4000 3150 2500
5600 4500 3550 4500 3550 2800
8.2,   Vibration
Vibration intensity: The vibration grade is Grade A, and the vibration guarantee value under rigid installation is: displacement 37 μm, speed 2.3 mm/s, acceleration 3.6 m/s2.
8.3,   Noise
Noise limit: No-load A-weighted sound pressure level noise limit Lp ≤ 85 dB (A) of YVF (cooling mode CI611 or IC81W) series motors;The no-load A-weighted sound pressure level noise limit of YVF (cooling mode IC86W or IC666) series motors meets Table 10;Please ask for special noise requirements when ordering.
Table 10 A Noise values for weighted sound pressure levels
Rated power kW Synchronous speed
 r/min
1500 1000 750
≤220 90 86 86
>220~550 92 89 86
>550~1100 94 91 88
>1100~2200 95 92 90
>2200 96 93 92

8.4,  The electrical performance indexes of the motor are shown in Tables 11, 12, 13 and 14.
Table 11 Electrical Performance of 6kV, IC666 Motors


Model

Rated power

Rated current

Rated rotational speed
Efficiency Power factor Stopping current Blocking torque Maximum torque Moment of inertia of motor Load moment of inertia
Weight
Rated current Rated torque Rated torque
kW A r/min η% COSΦ Ist Tst Tmx kg.m2 kg.m2 kg
Synchronous speed 1500r/min

YVF315- 4
200 25 1482 92.1 0.83 6.5 0.8 2 4.1 70 2606
220 28 1483 92.2 0.83 6.5 0.8 2 4.5 77 2762
250 31 1481 92.3 0.83 6.5 0.8 2 4.8 88 2822
280 35 1482 92.4 0.83 6.5 0.8 2 5.4 98 2870

YVF355- 4
315 39 1484 92.6 0.84 6.5 0.8 2 9 107 3031
355 44 1482 92.8 0.84 6.5 0.8 2 9.7 122 3121
400 49 1484 93 0.84 6.5 0.8 2 10.4 137 3201
450 55 1483 93.2 0.84 6.5 0.8 2 11.1 155 3291

YVF400- 4
500 61 1485 93.4 0.84 6.5 0.8 2 11.8 172 3838
560 69 1485 93.6 0.84 6.5 0.8 2 12.6 194 3932
630 77 1485 93.8 0.84 6.5 0.8 2 13.5 219 4043
710 87 1485 94 0.84 6.5 0.8 2 14.3 247 4148

YVF450- 4
800 94 1488 94.3 0.87 6.5 0.8 2 23.9 270 4991
900 105 1487 94.4 0.87 6.5 0.8 2 27 304 5240
1000 117 1488 94.5 0.87 6.5 0.8 2 29.9 337 5498
1120 131 1487 94.6 0.87 6.5 0.8 2 31.4 380 5650

YVF500- 4
1250 144 1487 94.8 0.88 6.5 0.7 2 45 312 6924
1400 161 1487 94.9 0.88 6.5 0.7 2 47.3 353 7099
1600 184 1486 95 0.88 6.5 0.7 2 51.9 406 7456
1800 207 1487 95.1 0.88 6.5 0.7 2 54.2 460 7641

YVF560- 4
2000 229 1492 95.3 0.88 6.5 0.7 2 85.1 482 8620
2240 257 1492 95.4 0.88 6.5 0.7 2 94.8 541 9056
2500 286 1491 95.5 0.88 6.5 0.6 2 103.4 404 9306
2800 320 1491 95.6 0.88 6.5 0.6 2.0 111.7 457 9759

YVF630- 4
3150 360 1491 95.8 0.88 6.5 0.6 2 144.9 495 12091
3550 401 1491 95.8 0.89 6.5 0.6 2 158 563 12601
4000 451 1491 95.9 0.89 6.5 0.6 2 171 641 13184
4500 507 1491 96 0.89 6.5 0.6 2 184 729 13751
Synchronous speed 1000r/min

YVF315- 6
160 21 986 91.5 0.82 6 0.8 2 8.3 125 2802
185 24 986 91.5 0.82 6 0.8 2 8.7 146 2868
200 26 985 91.8 0.82 6 0.8 2 8.7 159 2868
220 28 986 92 0.82 6 0.8 2 9.3 175 2925



Model

Rated power

Rated current

Rated rotational speed
Efficiency Power factor Stopping current Blocking torque Maximum torque Moment of inertia of motor Load moment of inertia
Weight
Rated current Rated torque Rated torque
kW A r/min η% COSΦ Ist Tst Tmx kg.m2 kg.m2 kg

YVF355- 6
250 32 986 92.2 0.82 6 0.8 2 13.2 196 3112
280 36 987 92.5 0.82 6 0.8 2 14.3 219 3202
315 39 987 92.8 0.83 6 0.8 2 16.3 246 3368
355 44 985 93 0.83 6 0.8 2 16.3 281 3368

YVF400- 6
400 50 989 93.1 0.83 6 0.8 2 18.8 313 3923
450 56 988 93.4 0.83 6 0.8 2 21.1 353 4039
500 62 988 93.7 0.83 6 0.8 2 22.2 394 4144
560 68 989 93.8 0.84 6 0.8 2 23.5 442 4249

YVF450- 6
630 77 989 93.9 0.84 6 0.8 2 34.4 489 5142
710 86 989 94.2 0.84 6 0.8 2 37.8 552 5427
800 97 989 94.4 0.84 6 0.8 2 39.5 625 5559
900 108 989 94.5 0.85 6 0.8 2 41.2 706 5691

YVF500- 6
1000 120 991 94.6 0.85 6 0.8 2 60.1 767 6705
1120 134 991 94.7 0.85 6 0.8 2 66.2 860 7037
1250 147 990 94.9 0.86 6 0.8 2 72.3 964 7369
1400 165 991 95 0.86 6 0.8 2 78.4 1080 7701

YVF560- 6
1600 188 993 95.1 0.86 6 0.8 2 102 1216 8525
1800 212 993 95.2 0.86 6 0.8 2 111.2 1372 9019
2000 235 993 95.4 0.86 6 0.7 2 120 1161 9445
2240 262 993 95.5 0.86 6 0.7 2 129.3 1306 9879

YVF630- 6
2500 290 993 95.5 0.87 6 0.7 2 207.1 1395 11596
2800 324 992 95.6 0.87 6 0.7 2 224.8 1573 12085
3150 364 992 95.7 0.87 6 0.7 2 242.4 1780 12606
3550 410 993 95.8 0.87 6 0.7 2 260.1 2014 13119
Synchronous speed 750r/min

YVF355- 8
200 28 739 91.9 0.75 5.5 0.8 2 14.3 283 3143
220 31 739 92.1 0.75 5.5 0.8 2 15.3 312 3223
250 35 740 92.2 0.75 5.5 0.8 2 16.3 354 3293
280 39 739 92.4 0.75 5.5 0.8 2 17.4 399 3393

YVF400- 8
315 41 739 92.7 0.79 5.5 0.8 2 18.8 450 3827
355 47 739 92.8 0.79 5.5 0.8 2 20 508 3931
400 52 739 93 0.8 5.5 0.8 2 22.2 573 4127
450 58 739 93.1 0.8 5.5 0.8 2 23.5 646 4229

YVF450- 8
500 64 741 93.6 0.8 5.5 0.8 2 34.4 705 5311
560 72 741 93.8 0.8 5.5 0.8 2 37.8 791 5403
630 81 741 93.9 0.8 5.5 0.8 2 39.5 892 5535
710 91 741 94 0.8 5.5 0.7 2 41.2 776 5677



Model

Rated power

Rated current

Rated rotational speed
Efficiency Power factor Stopping current Blocking torque Maximum torque Moment of inertia of motor Load moment of inertia
Weight
Rated current Rated torque Rated torque
kW A r/min η% COSΦ Ist Tst Tmx kg.m2 kg.m2 kg

YVF500- 8
800 100 743 94.2 0.82 5.5 0.7 2 63.2 852 6797
900 112 743 94.3 0.82 5.5 0.7 2 66.2 964 6966
1000 124 742 94.4 0.82 5.5 0.7 2 72.3 1075 7304
1120 139 742 94.5 0.82 5.5 0.7 2 78.4 1207 7637

YVF560- 8
1250 151 743 94.7 0.84 5.5 0.7 2 117.4 1313 8535
1400 169 743 94.8 0.84 5.5 0.7 2 128.3 1474 8964
1600 193 743 94.9 0.84 5.5 0.7 2 138.7 1692 9375
1800 215 743 95 0.85 5.5 0.7 2 149 1911 9783

YVF630- 8
2000 238 743 95.2 0.85 5.5 0.7 2 200.7 2088 11269
2240 266 743 95.3 0.85 5.5 0.7 2 218.6 2345 11782
2500 297 743 95.4 0.85 5.5 0.7 2 245.6 2615 12529
2800 332 743 95.5 0.85 5.5 0.7 2 263.5 2941 13059

Table 12 Electrical Performance of 10kV, IC666 Motors


Model

Rated power

Rated current

Rated rotational speed
Efficiency Power factor Stopping current Blocking torque Maximum torque Moment of inertia of motor Load moment of inertia
Weight
Rated current Rated torque Rated torque
kW A r/min η% COSΦ Ist Tst Tmx kg.m2 kg.m2 kg
Synchronous speed 1500r/min

YVF355- 4
250 19 1484 91.6 0.83 6.5 0.8 2.0 8.3 84 2906
280 21 1484 91.8 0.83 6.5 0.8 2.0 9.0 94 3001
315 24 1484 92.1 0.83 6.5 0.8 2.0 9.7 106 3081
355 27 1483 92.3 0.83 6.5 0.8 2.0 10.4 121 3161

YVF400- 4
400 29 1487 92.5 0.86 6.5 0.8 2.0 10.9 136 3698
450 33 1486 92.9 0.86 6.5 0.8 2.0 11.8 154 3769
500 36 1486 93.0 0.86 6.5 0.8 2.0 13.5 170 3903
560 40 1487 93.3 0.86 6.5 0.8 2.0 14.3 191 4000

YVF450- 4
630 45 1489 93.5 0.86 6.5 0.8 2.0 23.9 207 4951
710 51 1488 94.1 0.86 6.5 0.8 2.0 25.5 235 5080
800 56 1488 94.3 0.87 6.5 0.8 2.0 28.4 265 5190
900 63 1488 94.4 0.87 6.5 0.8 2.0 29.9 300 5428

YVF500- 4
1000 70 1488 94.5 0.87 6.5 0.7 2.0 42.8 243 6673
1120 79 1488 94.6 0.87 6.5 0.7 2.0 45.0 275 6844
1250 87 1489 94.7 0.88 6.5 0.7 2.0 47.3 309 7014
1400 97 1487 95.0 0.88 6.5 0.7 2.0 51.9 348 7300
YVF560- 1600 110 1492 95.1 0.88 6.5 0.7 2.0 80.6 374 8255



Model



4

Rated power

Rated current

Rated rotational speed
Efficiency Power factor Stopping current Blocking torque Maximum torque

Model
Load moment of inertia
Weight
Rated current Rated torque Rated torque
kW A r/min η% COSΦ Ist Tst Tmx kg.m2 kg.m2 kg
1800 124 1492 95.2 0.88 6.5 0.7 2.0 90.3 421 8692
2000 138 1491 95.4 0.88 6.5 0.7 2.0 100.0 468 9126
2240 154 1491 95.5 0.88 6.5 0.6 2.0 104.7 350 9553

YVF630- 4
2500 172 1491 95.5 0.88 6.5 0.6 2.0 131.9 376 11321
2800 190 1492 95.6 0.89 6.5 0.6 2.0 144.9 423 11931
3150 214 1491 95.7 0.89 6.5 0.6 2.0 158.0 481 12371
3550 240 1491 95.8 0.89 6.5 0.6 2.0 171.0 550 12899
Synchronous speed 1000r/min

YVF355- 6
200 16 987 91.1 0.80 6 0.8 2.0 13.2 154 3043
220 17 988 91.2 0.80 6 0.8 2.0 13.2 170 3043
250 20 987 91.4 0.80 6 0.8 2.0 14.3 194 3133
280 22 986 91.7 0.80 6 0.8 2.0 15.3 219 3213

YVF400- 6
315 24 988 92.0 0.82 6 0.8 2.0 17.7 244 3704
355 27 988 92.2 0.82 6 0.8 2.0 18.8 277 3804
400 30 987 92.4 0.82 6 0.8 2.0 21.1 312 4000
450 34 987 92.6 0.82 6 0.8 2.0 22.2 353 4098

YVF450- 6
500 37 988 93.0 0.83 6 0.8 2.0 31.0 385 4871
560 41 989 93.3 0.84 6 0.8 2.0 34.4 431 5162
630 46 989 93.6 0.84 6 0.8 2.0 36.1 487 5254
710 52 989 93.8 0.84 6 0.8 2.0 37.8 552 5387

YVF500- 6
800 58 990 94.0 0.84 6 0.8 2.0 57.1 606 6482
900 65 990 94.2 0.85 6 0.8 2.0 60.1 686 6545
1000 72 990 94.4 0.85 6 0.8 2.0 66.2 763 6967
1120 80 990 94.6 0.85 6 0.8 2.0 72.3 856 7209

YVF560- 6
1250 89 993 94.7 0.86 6 0.8 2.0 97.6 932 8254
1400 99 993 95.1 0.86 6 0.8 2.0 106.6 1047 8645
1600 113 993 95.2 0.86 6 0.8 2.0 115.7 1202 9045
1800 127 993 95.3 0.86 6 0.7 2.0 124.5 1029 9485

YVF630- 6
2000 141 993 95.4 0.86 6 0.7 2.0 189.4 1092 10960
2240 158 993 95.4 0.86 6 0.7 2.0 207.1 1228 11446
2500 174 993 95.4 0.87 6 0.7 2.0 224.8 1377 11945
2800 195 993 95.5 0.87 6 0.7 2.0 242.4 1552 12321
Synchronous speed 750r/min

YVF400- 8
250 21 739 91.3 0.75 5.5 0.8 2.0 17.7 354 3680
280 24 739 91.6 0.75 5.5 0.8 2.0 18.8 398 3776
315 26 738 92.0 0.75 5.5 0.8 2.0 21.1 449 3960
355 30 738 92.4 0.75 5.5 0.8 2.0 22.2 507 4055



Model

Rated power

Rated current

Rated rotational speed
Efficiency Power factor Stopping current Blocking torque Maximum torque

Model
Load moment of inertia
Weight
Rated current Rated torque Rated torque
kW A r/min η% COSΦ Ist Tst Tmx kg.m2 kg.m2 kg

YVF450- 8
400 32 740 92.5 0.78 5.5 0.8 2.0 34.4 559 5088
450 36 740 92.7 0.78 5.5 0.8 2.0 36.1 631 5200
500 39 740 93.1 0.79 5.5 0.7 2.0 37.8 539 5333
560 44 740 93.3 0.79 5.5 0.7 2.0 39.5 607 5475

YVF500- 8
630 49 743 93.8 0.79 5.5 0.7 2.0 60.1 661 6554
710 55 743 94.0 0.79 5.5 0.7 2.0 66.2 746 6876
800 62 743 94.2 0.79 5.5 0.7 2.0 72.3 843 7199
900 70 743 94.3 0.79 5.5 0.7 2.0 78.4 952 7517

YVF560- 8
1000 75 743 94.5 0.82 5.5 0.7 2.0 117.4 1027 8203
1120 82 743 94.7 0.83 5.5 0.7 2.0 128.4 1153 8607
1250 92 743 94.8 0.83 5.5 0.7 2.0 138.9 1292 8999
1400 103 743 94.9 0.83 5.5 0.7 2.0 149.6 1453 9392

YVF630- 8
1600 117 744 94.9 0.83 5.5 0.7 2.0 200.7 1625 11029
1800 130 743 95.0 0.84 5.5 0.7 2.0 218.6 1841 11477
2000 145 744 95.1 0.84 5.5 0.7 2.0 236.6 2046 11523
2240 162 743 95.2 0.84 5.5 0.7 2.0 254.5 2309 11978

Table 13 Electrical Performance of 6kV, IC86W Motors


Model

Rated power

Rated current

Rated rotational speed
Efficiency Power factor Stopping current Blocking torque Maximum torque

Model
Load moment of inertia
Weight
Rated current Rated torque Rated torque
kW A r/min η% COSΦ Ist Tst Tmx kg.m2 kg.m2 kg

Synchronous speed 1500r/min

YVF315-4
250 31 1482 92.6 0.83 6.5 0.8 2.0 3.9 89 2406
280 35 1483 92.7 0.83 6.5 0.8 2.0 4.2 99 2562
315 39 1481 92.9 0.83 6.5 0.8 2.0 4.5 112 2622
355 44 1482 93.1 0.83 6.5 0.8 2.0 5.1 126 2670


YVF355-4
400 49 1484 93.3 0.84 6.5 0.8 2.0 8.6 139 2831
450 55 1482 93.5 0.84 6.5 0.8 2.0 9.2 157 2921
500 61 1484 93.7 0.84 6.5 0.8 2.0 9.8 175 3001
560 68 1483 93.9 0.84 6.5 0.8 2.0 10.6 196 3091


YVF400-4
630 77 1485 94.2 0.84 6.5 0.8 2.0 11.2 221 3718
710 86 1485 94.4 0.84 6.5 0.8 2.0 12.0 250 3812
800 97 1485 94.6 0.84 6.5 0.8 2.0 12.8 282 3923
900 109 1485 94.7 0.84 6.5 0.8 2.0 13.6 318 4028
YVF450-4 1000 117 1488 94.8 0.87 6.5 0.8 2.0 22.7 344 4791



Model

Rated power

Rated current

Rated rotational speed
Efficiency Power factor Stopping current Blocking torque Maximum torque

Model
Load moment of inertia
Weight
Rated current Rated torque Rated torque
kW A r/min η% COSΦ Ist Tst Tmx kg.m2 kg.m2 kg
1120 131 1487 94.9 0.87 6.5 0.8 2.0 25.6 386 5040
1250 145 1488 95.1 0.87 6.5 0.8 2.0 28.4 430 5298
1400 163 1487 95.2 0.87 6.5 0.8 2.0 29.8 485 5450


YVF500-4
1600 184 1487 95.3 0.88 6.5 0.7 2.0 42.8 414 6524
1800 206 1487 95.4 0.88 6.5 0.7 2.0 44.9 469 6699
2000 229 1486 95.6 0.88 6.5 0.7 2.0 49.3 523 7056
2240 256 1487 95.7 0.88 6.5 0.7 2.0 51.4 589 7241


YVF560-4
2500 285 1492 95.8 0.88 6.5 0.7 2.0 80.9 629 8220
2800 319 1492 95.9 0.88 6.5 0.7 2.0 90.1 705 8656
3150 358 1491 96.1 0.88 6.5 0.6 2.0 98.2 541 8906
3550 404 1491 96.1 0.88 6.5 0.6 2.0 106.1 614 9359


YVF630-4
4000 455 1491 96.2 0.88 6.5 0.6 2.0 137.6 674 11391
4500 506 1491 96.2 0.89 6.5 0.6 2.0 150.1 763 11901
5000 561 1491 96.4 0.89 6.5 0.6 2.0 162.5 853 12484
5600 628 1491 96.4 0.89 6.5 0.6 2.0 174.8 962 13051

Synchronous speed 1000r/min


YVF315-6
200 26 986 92.0 0.82 6 0.8 2.0 7.9 159 2602
220 28 986 92.2 0.82 6 0.8 2.0 8.3 176 2668
250 32 985 92.5 0.82 6 0.8 2.0 8.3 201 2668
280 35 986 92.7 0.82 6 0.8 2.0 8.8 225 2725


YVF355-6
315 40 986 93.0 0.82 6 0.8 2.0 12.5 251 2912
355 45 987 93.2 0.82 6 0.8 2.0 13.5 282 3002
400 50 987 93.3 0.83 6 0.8 2.0 15.5 318 3168
450 56 985 93.6 0.83 6 0.8 2.0 15.5 361 3168


YVF400-6
500 62 989 93.9 0.83 6 0.8 2.0 17.9 397 3683
560 69 988 94.1 0.83 6 0.8 2.0 20.0 446 3799
630 78 988 94.2 0.83 6 0.8 2.0 21.1 503 3904
710 86 989 94.4 0.84 6 0.8 2.0 22.3 567 4009


YVF450-6
800 97 989 94.6 0.84 6 0.8 2.0 32.7 632 4942
900 109 989 94.7 0.84 6 0.8 2.0 35.9 711 5227
1000 121 989 94.8 0.84 6 0.8 2.0 37.5 793 5359
1120 134 989 94.9 0.85 6 0.8 2.0 39.2 891 5491


YVF500-6
1250 149 991 95.1 0.85 6 0.8 2.0 57.1 977 6205
1400 166 991 95.2 0.85 6 0.8 2.0 62.9 1095 6537
1600 188 990 95.3 0.86 6 0.8 2.0 68.7 1257 6769
1800 211 991 95.4 0.86 6 0.8 2.0 74.5 1414 7201
YVF560-6 2000 234 993 95.6 0.86 6 0.8 2.0 96.9 1551 8025
2240 262 993 95.7 0.86 6 0.8 2.0 105.6 1740 8519
17
 


Model

Rated power

Rated current

Rated rotational speed
Efficiency Power factor Stopping current Blocking torque Maximum torque

Model
Load moment of inertia
Weight
Rated current Rated torque Rated torque
kW A r/min η% COSΦ Ist Tst Tmx kg.m2 kg.m2 kg
2500 292 993 95.7 0.86 6 0.7 2.0 114.0 1488 8945
2800 327 993 95.8 0.86 6 0.7 2.0 122.8 1671 9379


YVF630-6
3150 363 993 96.0 0.87 6 0.7 2.0 196.7 1821 10796
3550 409 992 96.0 0.87 6 0.7 2.0 213.5 2066 11285
4000 460 992 96.1 0.87 6 0.7 2.0 230.3 2338 11806
4500 518 993 96.1 0.87 6 0.7 2.0 247.1 2636 12319

Synchronous speed 750r/min


YVF355-8
250 35 739 92.2 0.75 5.5 0.8 2.0 13.5 358 2943
280 39 739 92.4 0.75 5.5 0.8 2.0 14.5 402 3023
315 44 740 92.7 0.75 5.5 0.8 2.0 15.5 452 3093
355 49 739 92.8 0.75 5.5 0.8 2.0 16.5 511 3193


YVF400-8
400 52 739 93.0 0.79 5.5 0.8 2.0 17.9 577 3587
450 59 739 93.1 0.79 5.5 0.8 2.0 19.0 650 3691
500 64 739 93.7 0.80 5.5 0.8 2.0 21.1 723 3787
560 72 739 93.8 0.80 5.5 0.8 2.0 22.3 811 3989


YVF450-8
630 81 741 93.9 0.80 5.5 0.8 2.0 32.7 899 5111
710 91 741 94.0 0.80 5.5 0.8 2.0 35.9 1014 5203
800 102 741 94.2 0.80 5.5 0.8 2.0 37.5 1146 5335
900 115 741 94.3 0.80 5.5 0.7 2.0 39.2 996 5477


YVF500-8
1000 124 743 94.4 0.82 5.5 0.7 2.0 60.0 1084 6347
1120 139 743 94.5 0.82 5.5 0.7 2.0 62.9 1219 6416
1250 155 742 94.7 0.82 5.5 0.7 2.0 68.7 1366 6864
1400 173 742 94.8 0.82 5.5 0.7 2.0 74.5 1532 7197


YVF560-8
1600 193 743 94.9 0.84 5.5 0.7 2.0 111.5 1720 8035
1800 217 743 95.0 0.84 5.5 0.7 2.0 121.8 1938 8464
2000 241 743 95.2 0.84 5.5 0.7 2.0 131.8 2157 8875
2240 266 743 95.3 0.85 5.5 0.7 2.0 141.5 2422 9283


YVF630-8
2500 297 743 95.4 0.85 5.5 0.7 2.0 190.7 2670 10469
2800 332 743 95.5 0.85 5.5 0.7 2.0 207.7 2997 10982
3150 373 743 95.6 0.85 5.5 0.7 2.0 233.3 3372 11729
3550 420 743 95.7 0.85 5.5 0.7 2.0 250.4 3812 12259


Table 14 Electrical Performance of 10kV, IC86W Motors


Model

Rated power

Rated current

Rated rotational speed
Efficiency Power factor Stopping current Blocking torque Maximum torque

Model
Load moment of inertia
Weight
Rated current Rated torque Rated torque
kW A r/min η% COSΦ Ist Tst Tmx kg.m2 kg.m2 kg

Synchronous speed 1500r/min


YVF355-4
315 24 1484 92.5 0.83 6.5 0.8 2.0 7.9 108 2706
355 27 1484 92.6 0.83 6.5 0.8 2.0 8.6 122 2801
400 30 1484 92.8 0.83 6.5 0.8 2.0 9.2 138 2881
450 34 1483 93.2 0.83 6.5 0.8 2.0 9.8 156 2961


YVF400-4
500 36 1487 93.4 0.86 6.5 0.8 2.0 10.4 173 3498
560 40 1486 93.6 0.86 6.5 0.8 2.0 11.2 195 3569
630 45 1486 93.8 0.86 6.5 0.8 2.0 12.8 219 3603
710 50 1487 94.4 0.86 6.5 0.8 2.0 13.6 247 3800


YVF450-4
800 57 1489 94.6 0.86 6.5 0.8 2.0 22.7 270 4711
900 64 1488 94.7 0.86 6.5 0.8 2.0 24.2 306 4840
1000 70 1488 94.8 0.87 6.5 0.8 2.0 27.0 340 4950
1120 78 1488 94.9 0.87 6.5 0.8 2.0 28.4 382 4748


YVF500-4
1250 87 1488 95.1 0.87 6.5 0.7 2.0 40.6 316 6233
1400 97 1488 95.3 0.87 6.5 0.7 2.0 42.8 357 6404
1600 110 1489 95.4 0.88 6.5 0.7 2.0 44.9 411 6574
1800 124 1487 95.5 0.88 6.5 0.7 2.0 49.3 465 6860


YVF560-4
2000 137 1492 95.7 0.88 6.5 0.7 2.0 76.5 491 7755
2240 153 1492 95.8 0.88 6.5 0.7 2.0 85.8 550 8192
2500 171 1491 95.8 0.88 6.5 0.7 2.0 95.0 615 8626
2800 192 1491 95.8 0.88 6.5 0.6 2.0 99.5 469 9053


YVF630-4
3150 216 1491 95.9 0.88 6.5 0.6 2.0 125.3 514 10521
3550 240 1492 95.9 0.89 6.5 0.6 2.0 137.6 582 11131
4000 270 1491 96.0 0.89 6.5 0.6 2.0 150.1 662 11571
4500 304 1491 96.0 0.89 6.5 0.6 2.0 162.5 751 12099

Synchronous speed 1000r/min


YVF355-6
250 20 987 91.6 0.80 6 0.8 2.0 12.5 196 2843
280 22 988 91.8 0.80 6 0.8 2.0 12.5 220 2843
315 25 987 92.1 0.80 6 0.8 2.0 13.5 249 2933
355 28 986 92.4 0.80 6 0.8 2.0 14.5 282 3013


YVF400-6
400 30 988 92.6 0.82 6 0.8 2.0 16.8 316 3504
450 34 988 92.8 0.82 6 0.8 2.0 17.9 357 3604
500 38 987 93.3 0.82 6 0.8 2.0 20.0 397 3800
560 42 987 93.5 0.82 6 0.8 2.0 21.1 446 3898
YVF450-6 630 47 988 93.8 0.83 6 0.8 2.0 29.4 495 4671
710 52 989 94.0 0.84 6 0.8 2.0 32.7 557 4962
 


Model

Rated power

Rated current

Rated rotational speed
Efficiency Power factor Stopping current Blocking torque Maximum torque

Model
Load moment of inertia
Weight
Rated current Rated torque Rated torque
kW A r/min η% COSΦ Ist Tst Tmx kg.m2 kg.m2 kg
800 58 989 94.2 0.84 6 0.8 2.0 34.3 630 5054
900 66 989 94.4 0.84 6 0.8 2.0 35.9 711 5187


YVF500-6
1000 73 990 94.6 0.84 6 0.8 2.0 54.3 775 6042
1120 80 990 94.8 0.85 6 0.8 2.0 57.1 871 6105
1250 89 990 95.0 0.85 6 0.8 2.0 62.9 973 6527
1400 100 990 95.3 0.85 6 0.8 2.0 68.7 1092 6769


YVF560-6
1600 113 993 95.4 0.86 6 0.8 2.0 92.7 1225 7754
1800 127 993 95.5 0.86 6 0.8 2.0 101.3 1382 8445
2000 140 993 95.6 0.86 6 0.8 2.0 109.9 1538 8545
2240 157 993 95.6 0.86 6 0.7 2.0 118.3 1317 8985


YVF630-6
2500 176 993 95.6 0.86 6 0.7 2.0 180.0 1422 10160
2800 197 993 95.5 0.86 6 0.7 2.0 196.7 1597 10646
3150 218 993 95.7 0.87 6 0.7 2.0 213.5 1805 11445
3550 246 993 95.8 0.87 6 0.7 2.0 230.3 2044 11821

Synchronous speed 750r/min


YVF400-8
315 26 739 92.1 0.75 5.5 0.8 2.0 16.8 452 3440
355 30 739 92.4 0.75 5.5 0.8 2.0 17.9 510 3536
400 33 738 92.5 0.75 5.5 0.8 2.0 20.0 577 3720
450 37 738 92.7 0.75 5.5 0.8 2.0 21.1 650 3815


YVF450-8
500 40 740 93.2 0.78 5.5 0.8 2.0 32.7 709 4888
560 44 740 93.3 0.78 5.5 0.8 2.0 34.3 796 5000
630 49 740 93.8 0.79 5.5 0.7 2.0 35.9 691 5133
710 55 740 94.0 0.79 5.5 0.7 2.0 37.5 782 5275


YVF500-8
800 62 743 94.2 0.79 5.5 0.7 2.0 57.1 858 6114
900 70 743 94.3 0.79 5.5 0.7 2.0 62.9 967 6436
1000 77 743 94.5 0.79 5.5 0.7 2.0 68.7 1076 6759
1120 86 743 94.7 0.79 5.5 0.7 2.0 74.5 1207 7077


YVF560-8
1250 93 743 94.9 0.82 5.5 0.7 2.0 111.5 1319 7703
1400 103 743 94.9 0.83 5.5 0.7 2.0 122.0 1480 8107
1600 117 743 94.9 0.83 5.5 0.7 2.0 131.9 1699 8499
1800 132 743 94.9 0.83 5.5 0.7 2.0 142.1 1918 8892


YVF630-8
2000 147 744 94.9 0.83 5.5 0.7 2.0 190.7 2092 10229
2240 162 743 95.0 0.84 5.5 0.7 2.0 207.7 2356 10677
2500 181 744 95.1 0.84 5.5 0.7 2.0 224.7 2629 10723
2800 202 743 95.2 0.84 5.5 0.7 2.0 241.8 2963 11178



9.
Installation and dimensions

The installation dimensions and overall dimensions of the motor are specified in Table 15, and the dimension symbols are shown in Figure 1, Figure 2 and Figure 3
High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM
                Figure 1 Dimensional diagram (YVF IC666)

High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM

               Figure 2 Dimensional diagram (YVF-4P IC86W))

High Voltage Yvf Series Three-Phase Asynchronous Motor for Industrial Use OEM/ODM             Figure 3 Dimensional diagram (YVF-6/8P IC86W)


Table 15 YVF series motor installation and overall dimensions
Table 15(1)
 
type
ΦD

E

F

G

A

B
C
(Rolling)
C
(Slide)

H

K
YVF315-4 90 170 25 81 560 950 280   315 35
YVF315-6/8 90 170 25 81 560 950 280 - 315 35
YVF355-4 100 210 28 90 630 1000 300 - 355 35
YVF355-6/8 100 210 28 90 630 1000 300 - 355 35
YVF400-4 110 210 28 100 710 1120 315 - 400 35
YVF400-6/8 110 210 28 100 710 1120 315 - 400 35
YVF450-4 130 250 32 119 800 1250 355 500 450 42
YVF450-6/8 130 250 32 119 800 1250 355 500 450 42
YVF500-4 140 250 36 128 900 1400 355 560 500 42
YVF500-6/8 140 250 36 128 900 1400 355 560 500 42
YVF560-4 160 300 40 147 1000 1600 355 560 560 48
YVF560-6/8 180 300 45 165 1000 1600 355 560 560 48
YVF630-4 200 350 45 185 1120 1800 450 560 630 56
YVF630-6/8 200 350 45 185 1120 1800 450 560 630 56

Table 15(go 1)
 



type
L
(Rolling)
L
(Slide)

HC
L
(Rolling)
L
(Slide)

HC

AD1

AD2

AD3

AD4
(IC666,Picture 1) (IC86W Picture 2,3)
YVF
315-4

2048

--

2020

1700

--

2300

680

400

875

1250
YVF315-6/8 2048 -- 2020 2428 -- 1610 680 400 875 1000
YVF355-4 2178 -- 2145 1830 -- 2340 720 500 910 1290
YVF355-6/8 2178   2145 2558   1705 720 500 910 1015
YVF400-4 2308   2290 1970   2545 760 500 990 1415
YVF400-6/8 2308 -- 2290 2728 -- 1800 760 500 990 1100
YVF450-4 2540 2650 2480 2205 2465 2645 800 550 1105 1515
YVF450-6/8 2540 2650 2480 2960 3525 2020 800 550 1105 1245
YVF500-4 2808 3013 2812 2360 2735 2835 850 650 1100 1615
YVF500-6/8 2808 3013 2812 3268 3933 2235 850 650 1100 1355
YVF560-4 3128 3333 3190 2585 3000 2955 920 800 1250 1775
YVF560-6/8 3128 3333 3190 3588 4253 2470 920 700 1250 1505
YVF630-4 3508 3618 3530 2940 3220 3255 975 800 1350 1905
YVF630-6/8 3508 3618 3530 4028 4758 2675 975 700 1350 1675
Table 15(go 2)
 
Type AA AB AC AD AE BA BB BC GD BD HA HB LD LE LF HU
YVF315-4 115 680 808 694 1328 520 1350 560 14 200 25 -40 100 400 900 493
YVF315-6/8 115 680 808 694 1328 520 1350 560 14 200 25 -40 100 400 900 493
YVF355-4 120 760 932 760 1502 500 1420 540 16 200 25 -35 100 865 400 545
YVF355-6/8 120 760 932 760 1502 500 1420 540 16 200 25 -35 100 965 400 545
YVF400-4 130 860 972 800 1572 570 1550 610 16 215 30 60 95 965 495 640
YVF400-6/8 130 860 972 800 1572 570 1550 610 16 215 30 60 50 1065 450 640
YVF450-4 140 960 1012 840 1612 610 1730 650 18 240 30 150 50 1120 450 730
YVF450-6/8 140 960 1012 840 1612 610 1730 650 18 240 30 150 50 1220 450 730
YVF500-4 150 1060 1062 890 1752 650 1880 690 20 240 35 200 50 1200 450 780
YVF500-6/8 150 1060 1062 890 1752 650 1880 690 20 240 35 200 150 1350 550 780
YVF560-4 160 1160 1164 987 1914 710 2050 750 22 225 40 200 125 1325 525 819
YVF560-6/8 160 1160 1164 987 1914 710 2050 750 25 225 40 200 125 1450 525 819
YVF630-4 180 1280 1224 1047 2036 750 2250 750 25 225 40 270 250 1530 700 889
YVF630-6/8 180 1280 1224 1047 2036 750 2250 750 25 225 40 270 250 1600 700 889

 

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