SAW Filters

Image Part Number Description / PDF Quantity Rfq
SF2254E

SF2254E

RFMi

FILTER, SAW, 872.5 MHZ, 6SMD

0

B39162B2618P810

B39162B2618P810

RF360 - A Qualcomm-TDK joint venture

SAW INDUSTRIAL

3847

SF2173E

SF2173E

RFMi

FILTER, SAW, 2350 MHZ, 6SMD

0

SF16-0953M4UU01

SF16-0953M4UU01

KYOCERA Corporation

FILTER SAW 953MHZ 4SMD

2059

RF1404C

RF1404C

RFMi

CRF,SM,433.920 MHZ

0

RF1172C

RF1172C

RFMi

CRF,SM,433.920 MHZ,

0

SF2120C

SF2120C

RFMi

FILTER, SAW, 149 MHZ, 8SMD

0

B39162B3524B710

B39162B3524B710

RF360 - A Qualcomm-TDK joint venture

FILTER SAW 1.575GHZ 6SMD

0

SF2296C

SF2296C

RFMi

FILTER, SAW, 312 MHZ, 8SMD

0

B39921B4379P810

B39921B4379P810

RF360 - A Qualcomm-TDK joint venture

CSSP3 CU

12374

RF1353C

RF1353C

RFMi

CRF,SM,345.000 MHZ

0

SF2224E

SF2224E

RFMi

FILTER, SAW, 1950 MHZ, 6SMD

0

B39431B3791Z810

B39431B3791Z810

RF360 - A Qualcomm-TDK joint venture

FILTER SAW 433.42MHZ 8SMD

0

B39901B5056U410

B39901B5056U410

RF360 - A Qualcomm-TDK joint venture

FILTER SAW 895.5MHZ 6SMD

0

RF3602D

RF3602D

RFMi

CRF,SM,303-307 MHZ

0

SF2316H-1

SF2316H-1

RFMi

FILTER, SAW, 1583 MHZ, 4SMD

0

B39921B3728U410

B39921B3728U410

RF360 - A Qualcomm-TDK joint venture

FILTER SAW 915MHZ 6SMD

19023

AFS20A05-719.00-T3

AFS20A05-719.00-T3

Abracon

FILTER SAW 719MHZ 4SMD

247

AFS434S3-T

AFS434S3-T

Abracon

FILTER SAW 434MHZ 6SMD

36

B39431R1920A310

B39431R1920A310

RF360 - A Qualcomm-TDK joint venture

FILTER SAW 6SMD

0

SAW Filters

1. Overview

Surface Acoustic Wave (SAW) filters are compact, cost-effective RF filtering components that utilize mechanical waves propagating along the surface of piezoelectric materials. By converting electrical signals to acoustic waves and back, SAW filters achieve precise frequency selection with steep roll-off characteristics. They play a critical role in modern communication systems by enabling spectral efficiency, noise suppression, and signal integrity maintenance in wireless devices, automotive electronics, and industrial equipment.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
IDT-Structured SAWStandard interdigital transducer design with <3 GHz operating rangeMobile phones, Wi-Fi routers
Dual-Mode SAWHigher Q-factor through resonator coupling5G NR frequency bands (n77/n78)
Temperature-Compensated SAW (TC-SAW) 0.5 ppm/ C stability using layered substratesAutomotive radar (76-81 GHz)
Miniature SAW (M-SAW)0.5-2.0 mm package sizes for IoT devicesBluetooth LE modules, wearables

3. Structure and Composition

Typical SAW filter construction includes:

  • Piezoelectric substrate (LiTaO3, LiNbO3, or quartz)
  • Aluminum interdigital transducer (IDT) electrodes (50-200 nm thickness)
  • Acoustic wave propagation path (10-100 wavelength)
  • Hermetic ceramic packaging with EMI shielding

Advanced variants incorporate temperature compensation layers (SiO2/Ta2O5) and reflector bars to enhance frequency stability and stopband attenuation.

4. Key Technical Specifications

ParameterDescriptionImportance
Center Frequency (f0)100 MHz - 6 GHz rangeDetermines application compatibility
Bandwidth (BW)0.5-15% of f0Impacts data rate capabilities
Insertion Loss1.5-15 dBAffects signal strength
Attenuation Slope10-100 dB/MHzMeasures selectivity performance
Power Handling100 mW - 5 WLimits transmitter integration
Temperature Stability 50 ppm/ C (standard)System reliability factor

5. Application Fields

  • Telecommunications: 5G base stations, CATV systems, GPS receivers
  • Automotive: Tire pressure monitoring systems (TPMS), V2X communication
  • Consumer Electronics: Smartphones, IoT modules, drones
  • Industrial: Medical imaging equipment, test & measurement instruments

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Murata ManufacturingSAWF9BAF420M4A12.4 GHz WLAN filter, 0.9 dB loss
TDK CorporationKC5030S108MB1Sub-6 GHz 5G filter, 1.2 dB insertion loss
Skyworks SolutionsSAW-8851417Multi-band cellular filter, 1.8-2.7 GHz
Infineon TechnologiesB11243-F108Automotive-grade TC-SAW for 80 GHz radar

7. Selection Recommendations

Key selection criteria:

  1. Frequency match with < 0.1% tolerance
  2. Temperature stability grade (standard vs TC-SAW)
  3. Package size vs power handling requirements
  4. Attenuation slope for adjacent channel rejection
  5. RoHS compliance for environmental regulations

Example: For LTE Band 7 (2.6 GHz) applications, select TDK's KC5030S108MB1 with 110 MHz bandwidth and 1.2 dB loss in 0.5x0.5 mm package.

8. Industry Trends

  • Transition to 5G driving demand for 3-6 GHz SAW filters
  • Development of hybrid SAW-BAW modules for wideband applications
  • Miniaturization reaching 0.4x0.2 mm WLB packages
  • Advanced TC-SAW achieving < 10 ppm/ C stability
  • Integration with antenna switch modules (ASM) in SiP solutions
RFQ BOM Call Skype Email
Top