1/10page
Rating
MW 35-C HY
Thermal Class 200℃
CnC Part Number
Series
600XXX
Date of Revision
11/18/2016
Approved
Approval
Examination
Issue
Publish
Yonghong WAN Mingsheng LIU
Ping HUANG
2/10page
Revision form
TYPE: MW 35-C HY
DATE
REVISION ITEM
2014.01.01
New publishing
2016.11.18
REV 01
3/10page
1. Scope
This Standard specifies thermal class 200℃ MW 35-C HY enameled copper wires to
be used in windings and wirings of electric machines and apparatus, electric
communication equipment, electronic equipment and electrical instruments.
2. Classes and Symbols
The wires are classified according to the conductor and thickness of film, and the
classes and symbols is as Table 1.
Table 1
Class
Class Heavy film Polyester over coated with polyamideimide enameled copper wire
Class Single film Polyester over coated with polyamideimide enameled copper wire
Symbol
MW 35-C HY
MW 35-C SL
3. Thermal Class
TI:200℃
4. Characteristics
The characteristics of the wires shall comply with Table 2, when tested in accordance
with 6.
4/10page
Table 2
Test Method
Test items
Characteristics
Dimensions
Comply with Attached Table4
Single Class
Pinhole
Flexibility
5Max
Heavy
Test requirements
Clause
Used
——
6.1
L=5M
6.2
Class
3Max
The coating shall show no crack on
the conductor
AWG
Size
Elongation
Mandrel
Winding
14~20
20%
3d
21~30
15%
1d
20%(Or to
its
breaking
31~44
point,
6.3
3d
whichever
is
less)
Adhesion
No cracks visible in the film such as
to expose the conductor
——
6.4
Abrasion
Comply with Attached Table
——
6.5
Breakdown Voltage
Comply with Attached Table4
——
6.6
Cut through
Not cut through at 300℃, 2min
——
6.7
5/10page
Continuous Table 2
Test Methods
Test items
Characteristics
Test requirements
AWG Elong-at
Size
ion
14~30
Heat shock resistance
No cracks visible in the film such as to
expose the conductor
Clause
Used
Mandrel
Winding
20%
20%(Or to
its
breaking
31~44
point,
3d
3d
6.8
whichever
is less)
The specimen shall be heated
to220±5℃ in 3d for half an hour
Solvent resistance
No bubbles or blisters visible in the film,
with nail or 2H, film shall not be peeled
off to expose the conductor
Pencil method
6.9
Conductor Resistance
Comply with Attached Table4
——
6.10
Elongation
Comply with Attached Table4
——
6.11
5. Conductor, Insulating Film and Appearance
5.1 Conductor
The conductor for class-2 shall be copper wire specified in JISC 3103-Annealed
Copper Wires for Windings of Electric Machines.
5.2 Insulating Film
The insulating film of the wire shall be made by baking polyurethane and over
coated with polyamide insulating varnish for enameled wires on the conductor
uniformly. The film shall be harmless to the conductor and shall have sufficient
durability.
6/10page
5.3 Appearance
No scratches, to be smooth surface and uniform luster and hue, not sticky, not to be
readily scratched off by fingernail Testing Methods. The wire shall be wind the
bobbin, no cracks and dirt visible on appearance.
6. Test methods
This shall comply with 3.2.1.1of NEMA.MW-1000
6.2 Pinhole
This shall comply with 6.1 of JISC 3003
6.3 Flexibility
This shall comply with 3.3.1.1of NEMA.MW-1000
6.4 Adhesion
This shall comply with 3.3.1.1of NEMA.MW-1000
6.5 Resistance to abrasion
This shall comply with 3.59.1.1of NEMA.MW-1000
6.6 Breakdown Voltage
This shall comply with 3.8.1.1.2of NEMA.MW-1000
6.7 Resistance to out through
This shall comply with 3.50.1.1of NEMA.MW-1000
6.8 Heat shock resistance
This shall comply with 3.51.1of NEMA.MW-1000
6.9 Solvent resistance
This shall comply with 3.51.1.1of NEMA.MW1000
6.10 Conductor resistance
This shall comply with NEMA.MW1000
6.11 Elongation
This shall comply with 3.4.1.1of NEMA.MW1000
7/10page
7. Inspection
Inspection shall be made on the following items by the testing methods of 7 (1)
Appearance
(2) Dimensions
(3) Pinhole
(4) Flexibility
(5) Adhesion
(6) Resistance to abrasion
(7) Breakdown voltage
(8) Cut through
(9) Heat shock resistance
(10) Solvent resistance
(11) Conductor resistance
(12) Elongation
8. Packing and Net Weight per coil
8.1 Packaging
The wire shall be wound, without slackness or tangle, on a bobbin of suitable size
according to the conductor diameter (comply with table 3).
8.2 Net Weight per Coil
The net weight per coil shall comply with Table 3.
Table 3
Conductor diameter
(mm)
0.160~0.051
(34#~44#)
0.361~0.180
(27#~33#)
0.511~0.404
(24#~26#)
1.628~0.574
(14#~23#)
PT-10
Net weight
Per coil (kg)
4+2.0
-3.0
10+2.0
-4.8
PT-15
15+6.0
-5.0
PT-25
25+8
-3
Bobbin type
PT-4
8/10page
9. Designation of Product
The product shall be designated by the class and conductor diameter, or by the symbol
and conductor diameter.
Example: Class Heavy MW 35-C HY enameled copper wire 0.160 mm (AWG34#)
color of nature or MW 35-C HY
AWG34#
10. Marking
The bobbin or container shall be marked at a suitable place with the following items:
(1) Class or symbol
(2) Conductor diameter (3)
Manufacturing Number (4)
11. Magnet Wire Test Report
Test report is must when make lot.
12. Keep method and valid time
12.1 Keep method
(1) Pulling down is not allowed
(2)Beware of collision and fall
(3)Put the goods in dry environment, wet degree: 40%~75%
12.2 Valid time
Valid for two years
9/10page
Table 4
Minimum
AWG
Size
Diameter
(mm)
Conductor
Film
Tolerance
thickness
(mm)
(mm)
MW 35-C HY
Minimum
Maximum
Dielectric
Overall
Breakdown
Elongation
Diam.
Voltage
(%)
(mm)
(v)
Minimum
Maximum
Conductor
Resistance
20ºC
Unit
weight in
meters
(Ω/KM)
(m/kg)
10#
11#
2.588
2.304
+0.021/-0.025
+0.018/-0.023
0.086
0.084
2.703
2.418
6120
5940
35
35
3.342
4.219
21.4
12#
2.052
+0.017/-0.020
0.081
2.163
5760
34
5.316
34.0
13#
1.829
+0.014/-0.018
0.081
1.934
5760
34
6.693
42.8
14#
1.628
+0.015/-0.015
0.081
1.732
5690
33
8.437
54.0
15#
1.450
+0.016/-0.015
0.076
1.547
5550
33
10.66
68.1
16#
1.290
+0.013/-0.012
0.074
1.384
5400
33
13.44
86.1
17#
1.151
+0.012/-0.013
0.071
1.240
5260
32
16.95
108.1
18#
1.024
+0.010/-0.011
0.066
1.110
5130
32
21.39
136.6
19#
0.912
+0.010/-0.010
0.064
0.993
4990
31
26.98
172.2
20#
0.813
+0.007/-0.008
0.058
0.892
4870
30
33.88
216.7
21#
0.724
+0.008/-0.008
0.056
0.798
4740
30
42.82
273.2
22#
23#
24#
0.643
0.574
0.511
+0.007/-0.008
+0.005/-0.005
+0.005/-0.006
0.053
0.051
0.048
0.714
0.642
0.577
4620
4500
4380
29
29
28
54.44
67.80
86.08
346.4
25#
0.455
+0.005/-0.005
0.046
0.516
4270
28
108.4
691.8
26#
0.404
+0.005/-0.005
0.043
0.462
4160
27
137.9
877.5
27#
28#
0.361
0.320
+0.002/-0.003
+0.003/-0.002
0.041
0.041
0.417
0.373
4050
3950
27
26
171.3
217.1
1099.0
1398.6
29#
30#
0.287
0.254
+0.003/-0.003
+0.003/-0.003
0.038
0.036
0.338
0.302
3840
3800
26
25
272.2
348.5
1738.8
31#
32#
0.226
0.203
+0.003/-0.002
+0.003/-0.002
0.033
0.031
0.274
0.249
3510
3210
24
24
437.5
543.4
2804.1
33#
0.180
+0.003/-0.002
0.028
0.224
2920
23
693.0
4420.4
34#
0.160
+0.003/-0.003
0.025
0.198
2630
22
890.6
5594.6
35#
0.142
+0.003/-0.002
0.023
0.178
2630
21
1120
7102.8
36#
0.127
+0.003/-0.003
0.020
0.160
2340
20
1428
8879.8
37#
0.114
+0.003/-0.002
0.020
0.145
2050
20
1750
11020.4
38#
0.102
+0.002/-0.003
0.018
0.130
850
19
2240
13766.0
39#
0.089
+0.002/-0.003
0.015
0.114
800
18
2968
18081.2
40#
0.079
+0.002/-0.003
0.015
0.102
750
17
3801
22948.5
41#
0.071
+0.003/-0.002
0.013
0.091
650
17
4611
28411.3
42#
0.064
+0.002/-0.003
0.010
0.081
650
16
5900
34966.2
43#
0.056
+0.002/-0.003
0.010
0.074
600
15
7815
45670.1
44#
0.051
+0.002/-0.003
0.010
0.069
550
14
9529
55064.0
45#
0.0447
+0.003/-0.003
0.0100
0.0610
500
11
11495
71679.2
46#
0.0399
+0.003/-0.003
0.0076
0.0533
425
10
16122
89962.7
27.0
434.7
548.5
2219.9
3475.5
10/10pag
Continuous Table 4
MW 35-C SL
Minimum
Minimum
AWG
Size
Diameter
(mm)
Conductor
Film
Tolerance
thickness
(mm)
(mm)
Maximum
Dielectric
Overall
Breakdown
Elongation
Diam.
Voltage
(%)
(mm)
(v)
Minimum
Maximum
Conductor
Resistance
20ºC
Unit
weight in
meters
(Ω/KM)
(m/kg)
10#
2.588
+0.021/-0.025
0.043
2.660
-
35
3.342
21.4
11#
2.304
+0.018/-0.023
0.043
2.373
-
35
4.219
27.0
12#
2.052
+0.017/-0.020
0.041
2.117
-
34
5.316
34.0
13#
1.829
+0.014/-0.018
0.041
1.892
-
34
6.693
42.8
14#
1.628
+0.015/-0.015
0.041
1.692
3170
33
8.437
54.0
15#
1.450
+0.016/-0.015
0.038
1.509
3090
33
10.66
68.1
16#
1.290
+0.013/-0.012
0.036
1.349
3010
33
13.44
86.1
17#
1.151
+0.012/-0.013
0.036
1.203
2930
31
16.95
108.1
18#
1.024
+0.010/-0.011
0.033
1.077
32
21.39
136.6
19#
0.912
+0.010/-0.010
0.030
0.963
2850
2780
31
26.98
172.2
20#
21#
0.813
0.724
+0.007/-0.008
+0.008/-0.008
0.030
0.028
0.861
0.770
2710
30
30
33.88
42.82
22#
23#
24#
25#
26#
27#
28#
29#
30#
0.643
0.574
0.511
0.455
0.404
0.361
0.320
0.287
0.254
+0.007/-0.008
+0.005/-0.005
+0.005/-0.006
+0.005/-0.005
+0.005/-0.005
+0.002/-0.003
+0.003/-0.002
+0.003/-0.003
+0.003/-0.003
0.028
0.025
0.025
0.023
0.023
0.020
0.020
0.018
0.018
0.686
0.617
0.551
0.493
0.439
0.396
0.356
0.320
0.285
2570
2500
2440
2370
2310
2250
2200
2140
2140
29
29
28
28
27
27
26
26
25
54.44
67.80
86.08
108.4
137.9
171.3
217.1
272.2
348.5
216.7
273.2
346.4
434.7
548.5
31#
32#
0.226
0.203
+0.003/-0.002
+0.003/-0.002
0.015
0.013
0.254
0.231
1840
1840
24
24
437.5
543.4
33#
34#
35#
36#
37#
38#
39#
40#
0.180
0.160
0.142
0.127
0.114
0.102
0.089
0.079
+0.003/-0.002
+0.003/-0.003
+0.003/-0.002
+0.003/-0.003
+0.003/-0.002
+0.002/-0.003
+0.002/-0.003
+0.002/-0.003
0.013
0.013
0.010
0.010
0.008
0.008
0.005
0.005
0.206
0.183
0.163
0.147
0.132
0.119
0.104
0.094
1530
450
450
375
23
22
21
20
20
19
18
17
693.0
890.6
1120
1428
1750
2240
2968
3801
691.8
877.5
1099.0
1398.6
1738.8
2219.9
2804.1
3475.5
4420.4
5594.6
7102.8
8879.8
11020.4
13766.0
18081.2
22948.5
41#
42#
0.071
0.064
+0.003/-0.002
+0.002/-0.003
0.005
0.005
0.084
0.076
375
350
17
16
4611
5900
28411.3
34966.2
43#
44#
45#
0.056
0.051
0.0447
+0.002/-0.003
+0.002/-0.003
+0.003/-0.003
0.005
0.005
0.0051
0.066
0.061
0.0559
300
275
250
15
14
11
7815
9529
11495
45670.1
55064.0
71679.2
46#
0.0399
+0.003/-0.003
0.0051
0.0508
225
10
16122
89962.7
2640
1530
1220
1220
1220
11/10pag
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