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Modified Polyester Copper Enameled Wire Thermal Class 155 For High Temperature Motor

Modified Polyester Copper Enameled Wire Thermal Class 155 For High Temperature Motor

MOQ: The MOQ varies according to the size of the specification
Price: Copper price plus processing fee plus freight
Standard Packaging: Box
Delivery Period: 3-5 work days
Payment Method: T/T 100% payment before shipment
Supply Capacity: Delivery 10-15 days after next order
Detail Information
Place of Origin
China
Brand Name
PEWSC
Certification
UL,ROHS
Model Number
PEWF Single
Product Name:
PEWF Single
Material:
Copper
Insulation Material:
Enameled
Insulation Thickness:
Single
Specification:
AWG 38-8
Applications:
For Other Electric Appliances
Standard:
NEMA
Color:
Could Be Customized
Conductor Shape:
Round
Packaging:
Box
Highlight:

Modified Polyester Copper Enameled Wire

,

Copper Enameled Wire Class 155

Product Description

Enameled PEWF Single is an insulated wire designed for electrical applications with a core of high quality copper conductors coated with a uniform, continuous layer of polyesterimide-nylon (PEWF) composite insulating varnish that provides excellent electrical performance and high temperature resistance. It has the following characteristics:

 

1. High-quality copper conductor: PEWF Single enameled wire is made of high-purity copper as the conductor material, which ensures good electrical conductivity and signal transmission efficiency while reducing resistance loss.

 

2. High-performance insulating varnish coating: Advanced polyesterimide-nylon (PEWF) composite insulating varnish is used to provide the wire with excellent insulating properties, effectively preventing current leakage and improving voltage resistance.

 

3. High Temperature Resistance: PEWF insulating varnish has excellent high temperature resistance and is able to work stably in environments as high as 155°C, making it suitable for a wide range of high temperature application scenarios.

Modified Polyester Copper Enameled Wire Thermal Class 155 For High Temperature Motor 0Modified Polyester Copper Enameled Wire Thermal Class 155 For High Temperature Motor 1Modified Polyester Copper Enameled Wire Thermal Class 155 For High Temperature Motor 2

    NEMA---Single   Unit﹕mm
AWG Diameter of
Conduct
Conductor Control
Benchmarks
  OD Control
Benchmarks
  Specification Boundaries   Conductor
Resistance 20℃
(Ω/KM)
Insulation breakdownvoltage
(v)
  Min Elongation
(%)
Max.
Springiness
(°)
  Resistance to
abrasion
Lower
Limit
Upper
Limit
Lower
Limit
Median Upper
Limit
Min. Increase
in Diameter
Max. Finished
overall Diameter
Average Minimum
44 0.051 +0.002 0.050 0.052 0.056 0.059 0.060 0.005 0.061 9527.95 500 14 -- -- --
-0.003
43 0.056 +0.002 0.055 0.057 0.063 ------- 0.066 0.005 0.069 7815.03 550 15 -- -- --
-0.003
42 0.064 +0.002 0.063 0.065 0.071 0.073 0.075 0.005 0.076 5899.60 625 16 -- -- --
-0.003
41 0.071 +0.003 0.070 0.072 0.079 0.081 0.083 0.008 0.084 4610.88 700 17 -- -- --
-0.002
40 0.079 +0.002 0.078 0.080 0.087 0.090 0.093 0.008 0.094 3800.62 775 17 -- -- --
-0.003
39 0.089 +0.002 0.088 0.090 0.099 0.102 0.105 0.008 0.107 2968.15 850 18 -- -- --
-0.003
38 0.102 +0.002 0.101 0.103 0.111 0.114 0.117 0.008 0.118 2239.81 950 19 -- -- --
-0.003
37 0.114 +0.003 0.113 0.115 0.125 0.128 0.131 0.010 0.132 1750.03 1075 20 -- -- --
-0.002
36 0.127 +0.003 0.126 0.128 0.139 0.142 0.145 0.010 0.147 1427.71 1200 20 -- -- --
-0.003
35 0.142 +0.003 0.141 0.143 0.154 0.157 0.160 0.010 0.165 1120.02 1325 21 -- -- --
-0.002
34 0.16 +0.003 0.159 0.161 0.175 0.178 0.181 0.013 0.183 890.60 1500 22 -- -- --
-0.003
33 0.18 +0.003 0.179 0.181 0.195 0.199 0.203 0.013 0.206 692.85 1675 23 -- -- --
-0.002
32 0.203 +0.003 0.202 0.205 0.220 0.224 0.228 0.015 0.229 543.36 1850 24 -- -- --
-0.002
31 0.226 +0.003 0.225 0.228 0.243 0.247 0.251 0.015 0.254 437.51 2075 24 -- -- --
-0.002
30 0.254 +0.002 0.252 0.256 0.274 0.278 0.282 0.018 0.284 348.45 2300 25 66 295 250
-0.003
29 0.287 +0.003 0.285 0.289 0.308 0.312 0.316 0.018 0.320 272.17 2375 26 61 310 265
-0.003
28 0.32 +0.003 0.318 0.322 0.343 0.347 0.351 0.020 0.356 217.08 2425 26 55 335 285
-0.002
27 0.361 +0.002 0.358 0.363 0.383 0.387 0.391 0.020 0.396 171.28 2500 27 50 355 300
-0.003
26 0.404 +0.002 0.401 0.406 0.429 0.433 0.437 0.023 0.439 137.89 2550 27 76 380 325
-0.005
25 0.455 +0.002 0.452 0.457 0.480 0.485 0.490 0.023 0.493 108.41 2625 28 72 400 340
-0.005
24 0.511 +0.002 0.507 0.513 0.538 0.543 0.548 0.025 0.551 86.08 2700 28 67 430 365
-0.006
23 0.574 +0.003 0.570 0.576 0.601 0.606 0.611 0.025 0.617 67.8 2775 29 62 460 390
-0.005
22 0.643 +0.002 0.639 0.645 0.673 0.678 0.683 0.028 0.686 54.44 2850 29 58 490 415
-0.008
21 0.724 +0.002 0.720 0.726 0.754 0.760 0.766 0.028 0.770 42.82 2925 30 53 525 445
-0.008
20 0.813 +0.005 0.808 0.816 0.846 0.852 0.858 0.030 0.864 33.88 3000 30 66 560 475
-0.008
19 0.912 +0.005 0.907 0.915 0.945 0.951 0.957 0.030 0.963 26.98 3075 31 62 600 510
-0.01
18 1.024 +0.005 1.019 1.027 1.060 1.066 1.072 0.033 1.077 21.39 3175 32 58 645 550
-0.011
17 1.151 +0.005 1.145 1.154 1.190 1.196 1.202 0.036 1.207 16.95 3250 32 54 690 585
-0.013
16 1.29 +0.008 1.284 1.293 1.330 1.336 1.342 0.036 1.349 13.44 3325 33 50 735 625
-0.012
15 1.45 +0.008 1.444 1.453 1.492 1.498 1.505 0.038 1.509 10.66 3425 33 46 780 665
-0.015
14 1.628 +0.008 1.621 1.631 1.673 1.680 1.687 0.041 1.692 8.44 3525 33 42 840 715
-0.015
The above single wear resistance value is applicable to MW-5C 35C 30C 81C 80C 24C 28C 76C , voltage resistance is applicable to MW-5C 35C 30C 81C 79C 75C 77C 26C .
products
PRODUCTS DETAILS
Modified Polyester Copper Enameled Wire Thermal Class 155 For High Temperature Motor
MOQ: The MOQ varies according to the size of the specification
Price: Copper price plus processing fee plus freight
Standard Packaging: Box
Delivery Period: 3-5 work days
Payment Method: T/T 100% payment before shipment
Supply Capacity: Delivery 10-15 days after next order
Detail Information
Place of Origin
China
Brand Name
PEWSC
Certification
UL,ROHS
Model Number
PEWF Single
Product Name:
PEWF Single
Material:
Copper
Insulation Material:
Enameled
Insulation Thickness:
Single
Specification:
AWG 38-8
Applications:
For Other Electric Appliances
Standard:
NEMA
Color:
Could Be Customized
Conductor Shape:
Round
Packaging:
Box
Minimum Order Quantity:
The MOQ varies according to the size of the specification
Price:
Copper price plus processing fee plus freight
Packaging Details:
Box
Delivery Time:
3-5 work days
Payment Terms:
T/T 100% payment before shipment
Supply Ability:
Delivery 10-15 days after next order
Highlight

Modified Polyester Copper Enameled Wire

,

Copper Enameled Wire Class 155

Product Description

Enameled PEWF Single is an insulated wire designed for electrical applications with a core of high quality copper conductors coated with a uniform, continuous layer of polyesterimide-nylon (PEWF) composite insulating varnish that provides excellent electrical performance and high temperature resistance. It has the following characteristics:

 

1. High-quality copper conductor: PEWF Single enameled wire is made of high-purity copper as the conductor material, which ensures good electrical conductivity and signal transmission efficiency while reducing resistance loss.

 

2. High-performance insulating varnish coating: Advanced polyesterimide-nylon (PEWF) composite insulating varnish is used to provide the wire with excellent insulating properties, effectively preventing current leakage and improving voltage resistance.

 

3. High Temperature Resistance: PEWF insulating varnish has excellent high temperature resistance and is able to work stably in environments as high as 155°C, making it suitable for a wide range of high temperature application scenarios.

Modified Polyester Copper Enameled Wire Thermal Class 155 For High Temperature Motor 0Modified Polyester Copper Enameled Wire Thermal Class 155 For High Temperature Motor 1Modified Polyester Copper Enameled Wire Thermal Class 155 For High Temperature Motor 2

    NEMA---Single   Unit﹕mm
AWG Diameter of
Conduct
Conductor Control
Benchmarks
  OD Control
Benchmarks
  Specification Boundaries   Conductor
Resistance 20℃
(Ω/KM)
Insulation breakdownvoltage
(v)
  Min Elongation
(%)
Max.
Springiness
(°)
  Resistance to
abrasion
Lower
Limit
Upper
Limit
Lower
Limit
Median Upper
Limit
Min. Increase
in Diameter
Max. Finished
overall Diameter
Average Minimum
44 0.051 +0.002 0.050 0.052 0.056 0.059 0.060 0.005 0.061 9527.95 500 14 -- -- --
-0.003
43 0.056 +0.002 0.055 0.057 0.063 ------- 0.066 0.005 0.069 7815.03 550 15 -- -- --
-0.003
42 0.064 +0.002 0.063 0.065 0.071 0.073 0.075 0.005 0.076 5899.60 625 16 -- -- --
-0.003
41 0.071 +0.003 0.070 0.072 0.079 0.081 0.083 0.008 0.084 4610.88 700 17 -- -- --
-0.002
40 0.079 +0.002 0.078 0.080 0.087 0.090 0.093 0.008 0.094 3800.62 775 17 -- -- --
-0.003
39 0.089 +0.002 0.088 0.090 0.099 0.102 0.105 0.008 0.107 2968.15 850 18 -- -- --
-0.003
38 0.102 +0.002 0.101 0.103 0.111 0.114 0.117 0.008 0.118 2239.81 950 19 -- -- --
-0.003
37 0.114 +0.003 0.113 0.115 0.125 0.128 0.131 0.010 0.132 1750.03 1075 20 -- -- --
-0.002
36 0.127 +0.003 0.126 0.128 0.139 0.142 0.145 0.010 0.147 1427.71 1200 20 -- -- --
-0.003
35 0.142 +0.003 0.141 0.143 0.154 0.157 0.160 0.010 0.165 1120.02 1325 21 -- -- --
-0.002
34 0.16 +0.003 0.159 0.161 0.175 0.178 0.181 0.013 0.183 890.60 1500 22 -- -- --
-0.003
33 0.18 +0.003 0.179 0.181 0.195 0.199 0.203 0.013 0.206 692.85 1675 23 -- -- --
-0.002
32 0.203 +0.003 0.202 0.205 0.220 0.224 0.228 0.015 0.229 543.36 1850 24 -- -- --
-0.002
31 0.226 +0.003 0.225 0.228 0.243 0.247 0.251 0.015 0.254 437.51 2075 24 -- -- --
-0.002
30 0.254 +0.002 0.252 0.256 0.274 0.278 0.282 0.018 0.284 348.45 2300 25 66 295 250
-0.003
29 0.287 +0.003 0.285 0.289 0.308 0.312 0.316 0.018 0.320 272.17 2375 26 61 310 265
-0.003
28 0.32 +0.003 0.318 0.322 0.343 0.347 0.351 0.020 0.356 217.08 2425 26 55 335 285
-0.002
27 0.361 +0.002 0.358 0.363 0.383 0.387 0.391 0.020 0.396 171.28 2500 27 50 355 300
-0.003
26 0.404 +0.002 0.401 0.406 0.429 0.433 0.437 0.023 0.439 137.89 2550 27 76 380 325
-0.005
25 0.455 +0.002 0.452 0.457 0.480 0.485 0.490 0.023 0.493 108.41 2625 28 72 400 340
-0.005
24 0.511 +0.002 0.507 0.513 0.538 0.543 0.548 0.025 0.551 86.08 2700 28 67 430 365
-0.006
23 0.574 +0.003 0.570 0.576 0.601 0.606 0.611 0.025 0.617 67.8 2775 29 62 460 390
-0.005
22 0.643 +0.002 0.639 0.645 0.673 0.678 0.683 0.028 0.686 54.44 2850 29 58 490 415
-0.008
21 0.724 +0.002 0.720 0.726 0.754 0.760 0.766 0.028 0.770 42.82 2925 30 53 525 445
-0.008
20 0.813 +0.005 0.808 0.816 0.846 0.852 0.858 0.030 0.864 33.88 3000 30 66 560 475
-0.008
19 0.912 +0.005 0.907 0.915 0.945 0.951 0.957 0.030 0.963 26.98 3075 31 62 600 510
-0.01
18 1.024 +0.005 1.019 1.027 1.060 1.066 1.072 0.033 1.077 21.39 3175 32 58 645 550
-0.011
17 1.151 +0.005 1.145 1.154 1.190 1.196 1.202 0.036 1.207 16.95 3250 32 54 690 585
-0.013
16 1.29 +0.008 1.284 1.293 1.330 1.336 1.342 0.036 1.349 13.44 3325 33 50 735 625
-0.012
15 1.45 +0.008 1.444 1.453 1.492 1.498 1.505 0.038 1.509 10.66 3425 33 46 780 665
-0.015
14 1.628 +0.008 1.621 1.631 1.673 1.680 1.687 0.041 1.692 8.44 3525 33 42 840 715
-0.015
The above single wear resistance value is applicable to MW-5C 35C 30C 81C 80C 24C 28C 76C , voltage resistance is applicable to MW-5C 35C 30C 81C 79C 75C 77C 26C .