RFI and EMI - Contacts, Fingerstock and Gaskets

Image Part Number Description / PDF Quantity Rfq
3047001100

3047001100

Laird - Performance Materials

FLX,STR,BF,CTL .170X.195X.188X24

0

4060PA51H01200

4060PA51H01200

Laird - Performance Materials

GK NICU PTAFG PU V0 DSH

0

0097011202

0097011202

Laird - Performance Materials

CSTR,STR,BF

0

4055AB51K00360

4055AB51K00360

Laird - Performance Materials

GK NICU NRS PU V0 REC

0

4242AB51K04800

4242AB51K04800

Laird - Performance Materials

GK NICU NRS PU V0 DSH

0

0078009617

0078009617

Laird - Performance Materials

SLMT,4F,SNB,USFT

0

4244AB22106900

4244AB22106900

Laird - Performance Materials

GK NICU PTAF TPE HB CSH

0

4212PC51H00291

4212PC51H00291

Laird - Performance Materials

GK,NICU,PTAFG,PU,V0,SQ .195X.195

0

4797PA51G09600

4797PA51G09600

Laird - Performance Materials

GK NICU NRSG PU V0 KN

0

4906AB51K01000

4906AB51K01000

Laird - Performance Materials

GK,NICU,NRS,PU,V0,DSH

0

0097056018

0097056018

Laird - Performance Materials

TWT,STR,NIE,PSA .070X.500X.165X2

0

0097010502

0097010502

Laird - Performance Materials

CSTR,STR,BF

0

0097031032

0097031032

Laird - Performance Materials

CSTR,STR,BF,PSA

0

4W00AB51G01800

4W00AB51G01800

Laird - Performance Materials

GK,NICU,NRSG,PU,V0,TRI

0

21135273

21135273

Laird - Performance Materials

MF500-110 .25X.25X12 BAR ECCOSOR

0

0097055518

0097055518

Laird - Performance Materials

TWT,STR,NIE,PSA

0

4049PA51G01200

4049PA51G01200

Laird - Performance Materials

GASKET FAB/FOAM 6.35X304.8MM SQ

0

4070AB51Y02300

4070AB51Y02300

Laird - Performance Materials

GK NICU MESH PU V0 REC

0

4046AG51H01800

4046AG51H01800

Laird - Performance Materials

GASKET FABRIC/FOAM 3X457.2MM SQ

0

0077002119

0077002119

Laird - Performance Materials

SLMT,STR,NIB

0

RFI and EMI - Contacts, Fingerstock and Gaskets

1. Overview

RF/IF (Radio Frequency/Intermediate Frequency) and RFID (Radio Frequency Identification) systems require effective electromagnetic interference (EMI) and radio frequency interference (RFI) shielding to maintain signal integrity. Contacts, fingerstock, and gaskets are critical components for ensuring electrical continuity and shielding performance in electronic enclosures. These components prevent electromagnetic leakage while maintaining mechanical functionality in connectors, housings, and assemblies.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
ContactsConductive elements for maintaining electrical connections under compressionRF connectors, PCB grounding pads
FingerstockResilient metal strips with finger-like projections for continuous shieldingServer chassis, military equipment
GasketsConductive elastomers or mesh materials for sealing gapsAutomotive sensors, medical devices

3. Structure and Composition

Typical structures include:

  • Contacts: Beryllium copper or phosphor bronze cores with conductive platings (gold, silver, nickel)
  • Fingerstock: Canted coil springs or stamped metal fingers with corrosion-resistant coatings
  • Gaskets: Silicone rubber with embedded silver-aluminum particles or wire mesh

4. Key Technical Parameters

ParameterTypical RangeSignificance
Contact Resistance0.1-10 m Affects signal transmission efficiency
Shielding Effectiveness60-120 dB (100 MHz-10 GHz)Determines EMI/RFI attenuation
Compression Force0.5-5 N/mmImpacts mechanical durability
Temperature Range-55 C to +150 CDefines operational stability

5. Application Fields

Main industries include:

  • Telecommunications (5G base stations, microwave links)
  • Automotive (V2X communication systems, radar sensors)
  • Aerospace (avionics shielding compartments)
  • Medical (MRI shielding enclosures)

6. Leading Manufacturers and Products

ManufacturerRepresentative Products
Parker ChomericsCHO-SEAL conductive gaskets
Laird Performance MaterialsForm-in-Place EMI gaskets
3MEMI Shielding Tapes 9703/9706
SamtecRFI/EMI shielded connectors

7. Selection Recommendations

Considerations include:

  • Frequency range of the application (higher frequencies require tighter tolerances)
  • Environmental conditions (temperature, humidity, chemical exposure)
  • Material compatibility (avoid galvanic corrosion between mating surfaces)
  • Cost-effectiveness (balance performance vs. budget constraints)

Case Study: In automotive radar systems, Parker Chomerics' silicone-based gaskets reduced EMI leakage by 40% compared to traditional metal fingerstock.

8. Industry Trends

Key development directions:

  • Miniaturization for 5G mmWave applications
  • Low-PIM (Passive Intermodulation) material formulations
  • Multi-functional integration with thermal management
  • RoHS-compliant plating processes (eliminating hexavalent chromium)
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