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Silver plated high-temperature wire |
High temperature resistant compensating wire |
FLEXIBLE CABLE |
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AFR-250 AFRP-250 AFPF High Temperature CableMain performance of the product
1. Rated voltage: AC 220V
2. Working temperature: -65 ℃~200 ℃ -65 ℃~250 ℃ (silver plated conductor)
3. Insulation resistance: The finished wire should not be less than 100M Ω· km at room temperature
4. The shielding weaving density should not be less than 80% and can be delivered over 3 meters.
AFR-250 AFRP-250 AFPF High Temperature CableCommon specification structure data table (can be customized according to user's special needs)
model |
Number of cores x cross-section mm2 |
Conductor structure Number of shares/diameter mm |
The largest DC resistor Ω/km 20℃ |
The thinnest insulation thickness mm |
Outer diameter of wire |
testing voltage kV |
AFR-250 AF-1 AFR-200 AF |
1×0.035 | 7/0.08 | 600 | 0.07 | 0.67 | 1.0 |
2×0.035 | 1.50 | |||||
3×0.035 | 1.70 | |||||
1×0.05 |
10/0.08 7/0.10 |
370 | 0.07 | 0.72 | ||
2×0.05 | 1.60 | |||||
3×0.05 | 1.80 | |||||
1×0.07 |
14/0.08 7/0.12 |
260 | 0.07 | 0.75 | ||
2×0.07 | 1.70 | |||||
3×0.07 | 2.00 | |||||
1×0.10 | 21/0.08 | 180 | 0.07 | 0.85 | ||
2×0.10 | 1.80 | |||||
3×0.10 | 2.10 | |||||
1×0.12 |
24/0.08 7/0.15 |
165 | 0.07 | 0.87 | ||
2×0.12 | 1.80 | |||||
3×0.12 | 2.10 | |||||
1×0.15 |
30/0.08 19/0.10 |
125 | 0.07 | 0.90 | ||
2×0.15 | 1.80 | |||||
3×0.15 | 2.20 | |||||
1×0.20 |
42/0.08 27/0.10 12/0.15 19/0.12 |
100 | 0.07 | 1.00 | ||
2×0.20 | 2.00 | |||||
3×0.20 | 2.20 | |||||
1×0.30 |
62/0.08 45/0.10 18/0.15 |
70 | 0.07 | 1.15 | ||
2×0.30 | 2.30 | |||||
3×0.30 | 2.60 | |||||
1× 0.35 |
75/0.08 45/0.10 19/0.16 |
60 | 0.07 | 1.20 | ||
2× 0.35 | 2.40 | |||||
3× 0.35 | 2.60 | |||||
1× 0.40 |
85/0.08 54/0.10 24/0.15 |
55 | 0.07 | 1.30 | ||
2× 0.40 | 2.70 | |||||
3× 0.40 | 3.00 | |||||
1× 0.50 |
105/0.08 66/0.10 29/0.15 19/0.18 |
42 | 0.07 | 1.40 | ||
2× 0.50 | 2.80 | |||||
3× 0.50 | 3.10 |
Note: AF-1 is the same as AFR-250, and AF is the same as AFR-200 (with bare copper core)
Common Specification Structure Data Sheet (Continued)
model |
Number of cores x cross-section mm2 |
Conductor structure Number of shares/diameter mm |
The largest DC resistor Ω/km 20℃ |
The thinnest insulation thickness mm |
Outer diameter of wire |
testing voltage kV |
AFRP-250 AFP-1 AFRP-200 AFP |
1×0.035 | 7/0.08 | 600 | 0.07 | 1.10 | 0.8 |
2×0.035 | 1.90 | |||||
3×0.035 | 2.20 | |||||
1×0.05 |
10/0.08 7/0.10 |
370 | 0.07 | 1.20 | ||
2×0.05 | 2.10 | |||||
3×0.05 | 2.30 | |||||
1×0.07 |
14/0.08 7/0.12 |
260 | 0.07 | 1.30 | ||
2×0.07 | 2.20 | |||||
3×0.07 | 2.50 | |||||
1×0.10 | 21/0.08 | 180 | 0.07 | 1.40 | ||
2×0.10 | 2.30 | |||||
3×0.10 | 2.80 | |||||
1×0.12 |
24/0.08 7/0.15 |
165 | 0.07 | 1.45 | ||
2×0.12 | 2.40 | |||||
3×0.12 | 2.85 | |||||
1×0.15 |
30/0.08 19/0.10 |
125 | 0.07 | 1.55 | ||
2×0.15 | 2.50 | |||||
3×0.15 | 2.90 | |||||
1×0.20 |
42/0.08 27/0.10 12/0.15 19/0.12 |
100 | 0.07 | 1.75 | ||
2×0.20 | 3.10 | |||||
3×0.20 | 3.25 | |||||
1×0.30 |
62/0.08 45/0.10 18/0.15 |
70 | 0.07 | 1.80 | ||
2×0.30 | 3.20 | |||||
3×0.30 | 3.50 | |||||
1× 0.35 |
75/0.08 45/0.10 19/0.16 |
60 | 0.07 | 1.95 | ||
2× 0.35 | 3.40 | |||||
3× 0.35 | 3.70 | |||||
1× 0.40 |
85/0.08 54/0.10 24/0.15 |
55 | 0.07 | 2.00 | ||
2× 0.40 | 3.50 | |||||
3× 0.40 | 3.90 | |||||
1× 0.50 |
105/0.08 66/0.10 29/0.15 19/0.18 |
42 | 0.07 | 2.20 | ||
2× 0.50 | 3.90 | |||||
3× 0.50 | 4.30 |
Note: AFP-1 is the same as AFRP-250, AFP is the same as AFRP-200 (with bare copper core), and P1 is a braided tin plated copper wire
Common Specification Structure Data Sheet (Continued)
model |
Number of cores x cross-section mm2 |
Conductor structure Number of shares/diameter mm |
The largest DC resistor Ω/km 20℃ |
The thinnest insulation thickness mm |
Outer diameter of wire |
testing voltage kV |
AFPF |
1×0.035 | 7/0.08 | 600 | 0.07 | 1.30 | 0.8 |
2×0.035 | 2.20 | |||||
3×0.035 | 2.50 | |||||
1×0.05 |
10/0.08 7/0.10 |
370 | 0.07 | 1.50 | ||
2×0.05 | 2.40 | |||||
3×0.05 | 2.60 | |||||
1×0.07 |
14/0.08 7/0.12 |
260 | 0.07 | 1.60 | ||
2×0.07 | 2.50 | |||||
3×0.07 | 2.80 | |||||
1×0.10 | 21/0.08 | 180 | 0.07 | 1.65 | ||
2×0.10 | 2.60 | |||||
3×0.10 | 3.10 | |||||
1×0.12 |
24/0.08 7/0.15 |
165 | 0.07 | 1.70 | ||
2×0.12 | 2.65 | |||||
3×0.12 | 3.15 | |||||
1×0.15 |
30/0.08 19/0.10 |
125 | 0.07 | 1.80 | ||
2×0.15 | 2.80 | |||||
3×0.15 | 3.20 | |||||
1×0.20 |
42/0.08 27/0.10 12/0.15 19/0.12 |
100 | 0.07 | 2.05 | ||
2×0.20 | 3.40 | |||||
3×0.20 | 3.55 | |||||
1×0.30 |
62/0.08 45/0.10 18/0.15 |
70 | 0.07 | 2.25 | ||
2×0.30 | 3.70 | |||||
3×0.30 | 3.90 | |||||
1× 0.35 |
75/0.08 45/0.10 19/0.16 |
60 | 0.07 | 2.35 | ||
2× 0.35 | 3.85 | |||||
3× 0.35 | 4.10 | |||||
1× 0.40 |
85/0.08 54/0.10 24/0.15 |
55 | 0.07 | 2.40 | ||
2× 0.40 | 3.95 | |||||
3× 0.40 | 4.30 | |||||
1× 0.50 |
105/0.08 66/0.10 29/0.15 19/0.18 |
42 | 0.07 | 2.60 | ||
2× 0.50 | 4.40 | |||||
3× 0.50 | 4.70 |
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