RF Shields

Image Part Number Description / PDF Quantity Rfq
MS338-10S

MS338-10S

Masach

33.8 X 30.3 X 3.3MM EMI/RF SHIEL

1000

MS520-10F

MS520-10F

Masach

RF SHLD FRAME 1.051"X2.047" SLDR

752

MS268-20S

MS268-20S

Masach

26.8 X 15.6 X 4MM EMI/RF SHIELD

935

MS513-10S

MS513-10S

Masach

51.3 X 26.5 X 9.5MM EMI/RF SHIEL

1000

MS263-10S

MS263-10S

Masach

26.3 X 16.8 X 4.5MM EMI/RF SHIEL

997

MS233-20S

MS233-20S

Masach

23.3 X 14.5 X 3MM EMI/RF SHIELD

1000

MS256-10C

MS256-10C

Masach

RF SHLD COVER 0.626"X1.024" SNAP

6720

MS355-10C

MS355-10C

Masach

RF SHLD COVER 0.771"X1.421" SNAP

2573

MS415-20S

MS415-20S

Masach

41.5 X 26.5 X 9.5MM EMI/RF SHIEL

995

MS220-40S

MS220-40S

Masach

22 X 11.3 X 7MM EMI/RF SHIELD

899

MS290-10C

MS290-10C

Masach

RF SHLD COVER 1.047"X1.165" SNAP

390

MS402-10C

MS402-10C

Masach

RF SHLD COVER 1.386"X1.606" SNAP

985

MS183-10C

MS183-10C

Masach

RF SHLD COVER 0.437"X0.744" SNAP

386

MS250-10F

MS250-10F

Masach

RF SHLD FRAME 0.827"X0.984" SLDR

724

MS288-10S

MS288-10S

Masach

28.8 X 19.4 X 5MM EMI/RF SHIELD

961

MS585-10F

MS585-10F

Masach

RF SHLD FRAME 1.957"X2.303" SLDR

945

MS570-10C

MS570-10C

Masach

RF SHLD COVER 1.244"X2.268" SNAP

985

MS434-10S

MS434-10S

Masach

43.4 X 28.4 X 3.3MM EMI/RF SHIEL

1000

MS230-10C

MS230-10C

Masach

RF SHLD COVER 0.484"X0.929" SNAP

989

MS310-10C

MS310-10C

Masach

RF SHLD COVER 0.697"X1.244" SNAP

937

RF Shields

1. Overview

RF/IF (Radio Frequency/Intermediate Frequency) Shields and RFID (Radio-Frequency Identification) Shields are electromagnetic interference (EMI) protection components designed to isolate RF circuits and devices. These shields prevent signal leakage, cross-talk, and external interference, ensuring stable performance in high-frequency systems. With the rapid growth of wireless communication, IoT, and 5G technologies, RF shields have become critical in maintaining signal integrity and compliance with electromagnetic compatibility (EMC) standards.

2. Main Types and Functional Classification

Type Functional Features Application Examples
RF/IF Shields Isolate RF/IF circuits, minimize signal loss, support frequencies from kHz to 6 GHz Smartphones, wireless routers, base stations
RFID Shields Block unauthorized RFID signal access, support 125 kHz 900 MHz Contactless payment systems, access control
Multi-band Shields Operate across multiple frequency ranges, optimized for wideband applications 5G NR devices, automotive radar

3. Structure and Components

RF shields typically consist of:

  • Metallic enclosures (aluminum, steel, or conductive polymers)
  • EMI gaskets or conductive coatings for seam sealing
  • PCB-mounted shielding cans with grounding tabs
  • Integrated thermal management features (e.g., heat dissipation vents)

4. Key Technical Specifications

Parameter Description Importance
Shielding Effectiveness (SE) Attenuation level (dB) at specific frequencies (e.g., 30 MHz 10 GHz) Ensures compliance with EMC standards
Frequency Range Operational bandwidth (e.g., 0.1 MHz 18 GHz) Determines application compatibility
Insertion Loss Signal power loss (dB) caused by the shield Impacts system signal integrity
Material Conductivity Surface conductivity (S/m) of shielding material Affects shielding performance and durability

5. Application Fields

Key industries include:

  • Telecommunications: 5G base stations, fiber-optic transceivers
  • Consumer Electronics: Smartphones, wearables
  • Healthcare: MRI machines, wireless medical monitors
  • Logistics: RFID-enabled inventory systems

6. Leading Manufacturers and Products

Manufacturer Representative Product Features
TE Connectivity RF Shielding Cans Series 1500 SE >60 dB at 1 GHz, aluminum alloy construction
Molex EMI Shielding Clips 47320 Multi-band coverage (30 MHz 12 GHz)
Amphenol RFS-18G-XX 18 GHz ultra-wideband shielding

7. Selection Guidelines

Key considerations:

  • Match SE requirements with regulatory standards (e.g., FCC, CE)
  • Verify frequency compatibility with target systems
  • Evaluate environmental factors (temperature, humidity)
  • Balance cost and performance for mass production
Case Study: For 5G NR base stations, select shields with SE 70 dB at 3.5 GHz and thermal conductivity >100 W/m K.

8. Industry Trends

Future developments include:

  • High-frequency shielding for 6G (sub-THz bands)
  • Nano-coatings for lightweight, flexible shields
  • AI-driven EMI simulation tools for optimized design
  • Integration with PCBs for compact IoT devices

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