NoiseSorb NS1000 CFH
Laird Performance Materials' ultra-thin permeability noise suppressor
Laird's ultra-thin noise suppressor is ideal for suppressing the magnetic field that is created by a device. This is a lower alternative that may be cut-and-placed on the source of EM noise. The CFH represents the range that each material can manage. Suggested applications include medical, consumer, and industrial segments.
- Operating temperature: -40°F to +105°F
- Available thickness from 0.05 mm to 0.50 mm
- Low outgassing
- RoHS compliant
- Highly flexible
- Automotive infotainment systems
- Gaming
- Smart home devices
- Notebooks/tablets and portable electronic devices
NoiseSorb NS1000 CFH
| Billede | Manufacturer Part Number | Beskrivelse | Bredde | Tykkelse - Samlet | Driftstemperatur | Tilgængeligt antal | Pris | Vis detaljer | |
|---|---|---|---|---|---|---|---|---|---|
![]() | ![]() | NS1050CAB10C00SN00 | RF EMI ABSORB SHEET 300MMX8.268" | 8,268" (210,00mm) | 0,020" (0,50mm) | -40°C – 105°C | 9 - Immediate | $419.90 | Vis detaljer |
![]() | ![]() | NS1010CAB00C00SN00 | RF EMI ABSORB SHEET 300MMX200MM | 7,874" (200,00mm) | 0,004" (0,10mm) | -40°C – 105°C | 42 - Immediate | $178.79 | Vis detaljer |
![]() | ![]() | NS1020CAB00C00SN00 | RF EMI ABSORB SHEET 300MMX200MM | 7,874" (200,00mm) | 0,008" (0,20mm) | -40°C – 105°C | 129 - Immediate | $163.51 | Vis detaljer |
![]() | ![]() | NS1005HAA00C00SN00 | RF EMI ABSORB SHEET 300MMX3.937" | 3,937" (100,00mm) | 0,002" (0,05mm) | -40°C – 105°C | 143 - Immediate | $141.96 | Vis detaljer |
![]() | ![]() | NS1040CAB10C00SN00 | RF EMI ABSORB SHEET 300MMX8.268" | 8,268" (210,00mm) | 0,016" (0,40mm) | -40°C – 105°C | 51 - Immediate | $389.97 | Vis detaljer |
![]() | ![]() | NS1020FAA25A25SN00 | RF EMI ABSORB SHEET 4.921X4.921" | 4,921" (125,00mm) | 0,008" (0,20mm) | -40°C – 105°C | 19 - Immediate | $95.20 | Vis detaljer |
![]() | ![]() | NS1010FAA25A25SN00 | RF EMI ABSORB SHEET 4.921X4.921" | 4,921" (125,00mm) | 0,004" (0,10mm) | -40°C – 105°C | 0 - Immediate | $78.17 | Vis detaljer |




