Copper Foil 0,14 mm x1000 mm CuETP R240 (M1E z4) to make faraday cage
Copper Foil 0,14 mm x1000 mm CuETP R240 (M1E z4) to make faraday cage
More Detail
1. Material : Cu-ETP (110) ,Cu-ETP(110),C11000,C1100 CU-ETP,T2,CW004A
2. Temper : Hard or Half Hard ; SOFT(R220)/Annealed ; 1/2-hard (R240 ); Hard
3. Core ID: 76MM,152MM 500ML
4. Max. roll weight : 1500kgs/roll
5. Max. width can supply 1400mm
5, Trial sample min.quantity :100kgs
6. Use more width : 914mm,1000mm, 1250mm,1320mm ,1400mm
Typical Application
1. For faradays cages
2. For RF MRI shieding / RFI/EMI chembers/builds MRI rooms (RF shielded rooms)
Specification
| DIN-EN | CEN | ASTM | Application Area |
| Cu-ETP | CW004A | C11000 | Basic materials for electronic components |
| CuZn30 | CW505L | C26000 | Basic materials of electronic components and installation parts in the electronic industry, with the increase of Zn content, the corresponding metal cost decreases. |
| CuZn33 | CW506L | C26800 | |
| CuZn36 | CW507L | C27000 | |
| CuZn37 | CW508L | C27200 | |
| CuSn4 | CW450K | C51100 | Contact springs, connectors, reeds, switching parts, fixed contacts, ultra-high strength elastic elements. |
| CuSn5 | CW451K | C51000 | |
| CuSn6 | CW452K | C51910 | |
| CuSn8 | CW453K | C52100 | |
| CuB3S | C70250 | Connectors, benders, relays | |
|
CuSn3Zn9 CuSn2Zn10 |
CWK454K | C42500 |
In terms of alloy properties and low metal cost performance, Comprehensive Cost Performance Ratio is the best. Assessment Value of Waste Recycling is excellent. |
Chemical composition
| Page | Alloy |
Cu (%) |
O (%) |
P (%) |
Zn (%) |
Ni (%) |
Sn (%) |
Fe (%) |
Mn (%) |
Si (%) |
Mg (%) |
Zr (%) |
Other (%) |
| 3.4 | Cu-ETP-C11000 | 99.9 | ≤0.040 | ||||||||||
| 3.50 | CuZn30-C26000 | 69-71 | Remain | Max0.3 | Max0.1 | Max0.05 | |||||||
| 3.6 | CuZn33-C26800 | 66-68 | Remain | Max0.3 | Max0.1 | Max0.05 | |||||||
| 3.7 | CuZn36-C27000 | 63.5-65.5 | Remain | Max0.3 | Max0.1 | Max0.05 | |||||||
| 3.8 | CuZn37-C27200 | 62-64 | Max0.3 | Max0.1 | Max0.10 | ||||||||
| 3.9 | CuSn4-C51100 | Remain | 0.01-0.4 | 3.5-4.5 | |||||||||
| 3.10 | CuSn5-C51000 | Remain | 0.01-0.4 | 4.5-5.5 | |||||||||
| 3.10 | CuSn5-C51000 | Remain | 0.01-0.4 | 4.5-5.5 | |||||||||
| 3.11 | CuSn6-C51900 | Remain | 0.01-0.4 | 5.5-7.0 | |||||||||
| 3.12 | CuSn8-C52100 | Remain | 0.01-0.4 | 7.5-8.5 | |||||||||
| 3.13 | C70250-CuNi3Si | Min96.2 | 2.2-4.2 | 0.25-1.2 | 0.05-0.30 | Remain | |||||||
| 3.14 |
CuSn3Zn9/ CuSn2Zn10-C42500 |
87-90 | Remain | 1.5-3.0 |
Mechanical /Physical Properties
| Page | Alloy* | Density** |
Coefficient of Thermal Expansion** |
Heat Conductivity* |
Conductivity***
|
Conductivity *** |
|
| g/cmm³ | 10*-3 |
Watts/(M· Kelvin) |
Siemens/M | IACS/% | Gigabit Pa | ||
| 3.4 | Cu-ETP-C11000 | 8.9 | 17.7 | 394 | 58 | 100 | 127 |
| 3.50 | CuZn30-C26000 | 8.5 | 19.7 | 126 | 14.5 | 25 | 115 |
| 3.6 | CuZn33-C26800 | 8.5 | 19.9 | 121 | 14.5 | 25 | 112 |
| 3.7 | CuZn36-C27000 | 8.45 | 20.2 | 121 | 24 | 110 | |
| 3.8 | CuZn37-C27200 | 8.45 | 20.2 | 121 | 14 | 24 | 110 |
| 3.9 | CuSn4-C51100 | 8.85 | 17.8 | 100 | 11 | 19 | 120 |
| 3.10 | CuSn5-C51000 | 8.85 | 17.8 | 90 | 9 | 15 | 120 |
| 3.11 | CuSn6-C51900 | 8.8 | 18.5 | 75 | 8 | 13 | 118 |
| 3.12 | CuSn8-C52100 | 8.8 | 18.5 | 67 | 6.5 | 11 | 115 |
| 3.13 | C70250-CuNi3Si | 8.8 | 17.6 | 190 | 23 | 40 | 130 |
| 3.14 |
CuSn3Zn9/ CuSn2Zn10-C42500 |
8.8 | 18.4 | 120 | 16 | 25 | 126 |
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Circuitturns the path, because of excellent electrical conductivity of copper
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Certification: SGS, ISO,Reach, RoHS
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