RF Multiplexers

Image Part Number Description / PDF Quantity Rfq
B39881B8652P810

B39881B8652P810

RF360 - A Qualcomm-TDK joint venture

SAW DUPLEXER SMD

0

SD25-0836R9UBM1

SD25-0836R9UBM1

KYOCERA Corporation

DUPLEXER SAW 8SMD

0

B39781B1248P810

B39781B1248P810

RF360 - A Qualcomm-TDK joint venture

SAW DUPLEXER SMD

0

B39951B8093P810S5

B39951B8093P810S5

RF360 - A Qualcomm-TDK joint venture

SAW DUPLEXER MOBILE SMD

0

ACMD-6125-TR1

ACMD-6125-TR1

Broadcom

RF DUPLEXER 1.8825/1.9625GHZ SMD

0

B39262B8339P810

B39262B8339P810

RF360 - A Qualcomm-TDK joint venture

SAW FILTER MOBILE 1814

0

SD25-0836L8UU31

SD25-0836L8UU31

KYOCERA Corporation

RF DUPLEXER 836.5/881.5MHZ 8SMD

0

B39182B8008P810S5

B39182B8008P810S5

RF360 - A Qualcomm-TDK joint venture

SAW DUPLEXER MOBILE SMD

0

B39941B8694P810

B39941B8694P810

RF360 - A Qualcomm-TDK joint venture

SAW DUPLEXER MOBILE SMD

0

B39941B8073P810A99

B39941B8073P810A99

RF360 - A Qualcomm-TDK joint venture

SAW DUPLEXER MOBILE SMD

0

B39941B8073P810S5

B39941B8073P810S5

RF360 - A Qualcomm-TDK joint venture

SAW DUPLEXER MOBILE SMD

0

ACFM-7101-BLKG

ACFM-7101-BLKG

Broadcom

RF QUINTPLEX 859MHZ/1.92GHZ 6SMD

0

B39741B8570P810S5

B39741B8570P810S5

RF360 - A Qualcomm-TDK joint venture

SAW DUPLEXER MOBILE SMD

0

B39741B8570P810A99

B39741B8570P810A99

RF360 - A Qualcomm-TDK joint venture

SAW DUPLEXER MOBILE SMD

0

D5GA881M5D1AB-Z

D5GA881M5D1AB-Z

TAIYO YUDEN

RF DUPLEXER

0

B39202B8082P810S3

B39202B8082P810S3

RF360 - A Qualcomm-TDK joint venture

SAW DUPLEXER MOBILE SMD

0

B39202B8082P810A3

B39202B8082P810A3

RF360 - A Qualcomm-TDK joint venture

SAW DUPLEXER MOBILE SMD

0

ACMD-7617-TR1

ACMD-7617-TR1

Broadcom

RF DUPLEXER 1.95/2.14GHZ 8VQFN

0

ACMD-6003-TR1

ACMD-6003-TR1

Broadcom

RF DUPLEXER 1.75/1.84GHZ 8VQFN

0

D5GA881M5D1AK-Z

D5GA881M5D1AK-Z

TAIYO YUDEN

RF DUPLEXER

0

RF Multiplexers

1. Overview

RF/IF multiplexers are devices that route high-frequency signals (typically 300 MHz to 6 GHz for RF, and 10 MHz to 1 GHz for IF) between multiple channels. RFID RF multiplexers specialize in managing signals for radio frequency identification systems (125 kHz to 900 MHz). These components enable efficient signal management in wireless communication, industrial automation, and IoT systems, reducing hardware complexity and cost.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Coaxial RF MultiplexerMechanical switching with high power handling (up to 100W)Test equipment, military communication
MMIC-based MultiplexerMonolithic Microwave IC integration, fast switching ( 1 s)5G base stations, phased array systems
UHF RFID MultiplexerSupports EPCglobal Gen2 protocol, 8-16 portsWarehouse inventory management
Fiber-Optic RF MultiplexerOptical signal routing, low insertion loss (<1 dB)Aerospace telemetry systems

3. Structure and Components

Typical construction includes: - Switch matrix (electromechanical relays or PIN diodes) - RF shielding enclosure (aluminum alloy) - SMA/N-type connectors - Control circuitry (TTL/CMOS interface) - Dielectric substrate (RO4000 series for high frequencies)

4. Key Technical Specifications

ParameterValue RangeImportance
Frequency RangeDC-18 GHzDetermines application compatibility
Insertion Loss0.3-3.5 dBSignal integrity preservation
Isolation20-80 dBPrevents channel cross-talk
Switching Speed10 s-10 msAffects system response time
VSWR1.2:1-2.0:1Impedance matching quality indicator

5. Application Fields

  • Telecom: Base station antenna sharing
  • Medical: MRI RF coil switching
  • Manufacturing: Automated test equipment (ATE)
  • Logistics: RFID warehouse tracking systems

6. Leading Manufacturers and Products

VendorProduct SeriesKey Features
Analog DevicesADG9xxCMOS-based, 0.1-3 GHz, 1.8-5.5V supply
Keysight TechnologiesU2000 SeriesOptical RF multiplexer with 0.05 dB accuracy
Nordic SemiconductornRF24 2.4 GHz, -94 dBm sensitivity for RFID
TE ConnectivityRF Multiplex SwitchIP67 rated for outdoor deployment

7. Selection Guidelines

Consider: 1. Frequency match with application band 2. Signal power handling requirements 3. Environmental conditions (temperature/humidity) 4. Control interface compatibility (SPI/UART) 5. Port count scalability 6. Cost vs. performance trade-offs

8. Industry Trends

Current developments include: - Integration with AI for dynamic signal path optimization - Sub-6 GHz 5G MIMO support expansion - Development of reconfigurable intelligent surfaces (RIS) - RFID multiplexers with embedded sensing capabilities - Miniaturization using LTCC packaging technology

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