RF Filters

Image Part Number Description / PDF Quantity Rfq
AE2275B10871

AE2275B10871

Anatech Electronics Inc.

2275 MHZ CAVITY BANDPASS FILTER

10

AB4925B1241

AB4925B1241

Anatech Electronics Inc.

4925 MHZ CAVITY BANDPASS FILTER

10

AE9370B10979

AE9370B10979

Anatech Electronics Inc.

9370 MHZ CAVITY BANDPASS FILTER

10

AE2000SSH6549

AE2000SSH6549

Anatech Electronics Inc.

2000 MHZ SUSPENDED STRIPLINE HIG

10

AE1542B9506

AE1542B9506

Anatech Electronics Inc.

1542 MHZ CAVITY BANDPASS FILTER

10

AB1600B902

AB1600B902

Anatech Electronics Inc.

1600 MHZ CAVITY BANDPASS FILTER

10

AE7140B1381

AE7140B1381

Anatech Electronics Inc.

7140 MHZ CAVITY BANDPASS FILTER

10

AB2072B1327

AB2072B1327

Anatech Electronics Inc.

2072 MHZ CAVITY BANDPASS FILTER

10

AE15125B11042

AE15125B11042

Anatech Electronics Inc.

15125 MHZ CAVITY BANDPASS FILTER

10

AB4887B1059

AB4887B1059

Anatech Electronics Inc.

4887 MHZ CAVITY BANDPASS FILTER

10

AE4030B11471

AE4030B11471

Anatech Electronics Inc.

4030 MHZ CAVITY BANDPASS FILTER

10

AB5200B739

AB5200B739

Anatech Electronics Inc.

5200 MHZ CAVITY BANDPASS FILTER

10

AB829B1038

AB829B1038

Anatech Electronics Inc.

829 MHZ CAVITY BANDPASS FILTER

10

AE2097B1360

AE2097B1360

Anatech Electronics Inc.

2097 MHZ CAVITY BANDPASS FILTER

10

AE461-466D5496

AE461-466D5496

Anatech Electronics Inc.

461 MHZ / 466 MHZ CAVITY DUPLEXE

10

AE18000SSH6577

AE18000SSH6577

Anatech Electronics Inc.

18000 MHZ SUSPENDED STRIPLINE HI

10

AE420B11630

AE420B11630

Anatech Electronics Inc.

420 MHZ CAVITY BANDPASS FILTER

10

AB4512B1058

AB4512B1058

Anatech Electronics Inc.

4512 MHZ CAVITY BANDPASS FILTER

10

AE915NS2095

AE915NS2095

Anatech Electronics Inc.

915 MHZ LC BANDSTOP/NOTCH FILTER

10

AE5800B11316

AE5800B11316

Anatech Electronics Inc.

5800 MHZ CAVITY BANDPASS FILTER

10

RF Filters

1. Overview

RF Filters are passive components that selectively allow or block specific frequency ranges in radio frequency (RF) systems. They are critical for signal integrity in wireless communication by eliminating interference, enhancing signal clarity, and ensuring compliance with regulatory standards. Modern applications include 5G networks, Wi-Fi systems, radar, and IoT devices.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Bandpass FilterAllows frequencies within a specific rangeCellular base stations, Wi-Fi routers
Low-pass FilterPasses frequencies below cutoff frequencyPower amplifiers, GPS systems
High-pass FilterAttenuates frequencies below cutoff frequencySatellite communication systems
Band-reject FilterBlocks specific frequency bandsMedical imaging equipment
SAW FilterUses surface acoustic waves for precise filteringSmartphones, automotive radar
BAW FilterEmploys bulk acoustic resonators for high-frequency operation5G mmWave devices, WLAN modules
Cavity FilterMetallic resonant cavities for high Q-factorRadio astronomy, military communication

3. Structure and Components

Typical RF filter structures include:

  • Resonant Elements: Determine passband frequencies (e.g., quartz crystals in SAW filters)
  • Transmission Lines: Microstrip or coplanar waveguides for signal propagation
  • Dielectric Materials: Substrates like alumina or LTCC for impedance control
  • Enclosure: Metal housing for EMI shielding (cavity filters) or surface-mount packages
  • Ports: Input/output connectors (SMA, N-type) or PCB pads

Advanced designs integrate MEMS tuning mechanisms or LTCC multilayer structures for miniaturization.

4. Key Technical Specifications

ParameterDescriptionImportance
Frequency RangeOperational bandwidth (e.g., 2.4-2.5 GHz)Determines application compatibility
Insertion LossSignal attenuation in passband (e.g., <1.5 dB)Impacts system sensitivity
Bandwidth (3dB)Passband width at half-power pointsDefines frequency selectivity
Rejection RatioStopband attenuation level (e.g., >40 dB)Interference suppression capability
Power HandlingMaximum input power (e.g., 20W CW)Prevents component damage
Temperature StabilityFrequency drift vs temperature (e.g., 50 ppm/ C)Ensures operational reliability

5. Application Fields

  • Telecommunications: 5G NR base stations, fiber optic networks
  • Aerospace: Avionics navigation systems, satellite transponders
  • Medical: MRI RF coils, ultrasound imaging equipment
  • Automotive: V2X communication modules, 77GHz radar systems
  • Industrial: Wireless sensor networks, RFID readers

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Murata ManufacturingSAWLF5G30D3.3-4.2 GHz BAW filter for 5G
QorvoQPM25152.3-2.7 GHz bandpass filter, 100W power rating
Skyworks SolutionsSKY13460DC-6 GHz SPDT switch with integrated filters
Mini-CircuitsBFCN-1100+Cavity filter with 1050-1300 MHz range
TE ConnectivityRFHF35-2.92MHigh-frequency coaxial filter up to 40 GHz

7. Selection Guidelines

Key considerations:

  1. Frequency Requirements: Match passband with system operating bands
  2. Power Handling: Ensure ratings exceed maximum system power
  3. Environmental Conditions: Temperature (-40 to +85 C), humidity resistance
  4. Form Factor: SMD for compact designs vs. coaxial for high-power applications
  5. Cost vs. Performance: Trade-off between ceramic filters (low-cost) and cavity filters (high-stability)

Case Study: Selecting a BAW filter for 5G mmWave devices requires <0.5 dB insertion loss, 28 GHz operation, and compliance with 3GPP TS 38.141-1 standards.

8. Industry Trends and Future Outlook

Key development trends:

  • Higher Frequency Operation: mmWave filters for 5G/6G (24-100 GHz) using photonic bandgap structures
  • Miniaturization: Wafer-level packaging reducing SAW filter size to 0.4x0.2 mm
  • Integrated Solutions: Filter+LNA modules for IoT devices (e.g., Qorvo's QM33013)
  • Advanced Materials: Lithium niobate on silicon (LiNoSi) substrates improving temperature stability
  • Software-Defined Radio: Tunable RF filters with MEMS or ferroelectric materials

The market is projected to grow at 9.8% CAGR (2023-2030), driven by automotive radar and satellite internet demand.

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