RF Mixers

Image Part Number Description / PDF Quantity Rfq
TFF1014HN/N1,135

TFF1014HN/N1,135

NXP Semiconductors

IC MIXER 10.7-12.75GHZ 16DHVQFN

6044

SA606DK/01,112

SA606DK/01,112

NXP Semiconductors

IC MIXER 150MHZ UP CONVRT 20SSOP

0

SA636DK/01,112

SA636DK/01,112

NXP Semiconductors

IC MIXER 500MHZ UP CONVRT 20SSOP

880

SA612AD/01,118

SA612AD/01,118

NXP Semiconductors

IC MIXER 500MHZ UP CONVRT 8SO

2908

SA602AD/01,118

SA602AD/01,118

NXP Semiconductors

IC MIXER 500MHZ UP CONVRT 8SO

4440

SA639DH/01,118

SA639DH/01,118

NXP Semiconductors

IC MIXER 500MHZ UP CONV 24TSSOP

3897

SA607DK/01,112

SA607DK/01,112

NXP Semiconductors

IC MIXER 150MHZ UP CONVRT 20SSOP

444

TFF1015HN/N1,115

TFF1015HN/N1,115

NXP Semiconductors

IC MIXER 10.7-12.75GHZ 16DHVQFN

316671

SA606DK/01,118

SA606DK/01,118

NXP Semiconductors

IC MIXER 150MHZ UP CONVRT 20SSOP

5305

TFF1014HN/N1,115

TFF1014HN/N1,115

NXP Semiconductors

IC MIXER 10.7-12.75GHZ 16DHVQFN

95160

SA636BS,115

SA636BS,115

NXP Semiconductors

IC MIXER 500MHZ UP CONV 20HVQFN

105

BGX7221HN/1,518

BGX7221HN/1,518

NXP Semiconductors

TRANSMITTER IQ MODULATOR 36HVQFN

0

SA606D/01,118

SA606D/01,118

NXP Semiconductors

IC MIXER 150MHZ UP CONVRT 20SO

43

SA639DH/01,112

SA639DH/01,112

NXP Semiconductors

IC MIXER 500MHZ UP CONV 24TSSOP

2159

TFF1018HN/N1,115

TFF1018HN/N1,115

NXP Semiconductors

IC MIXER 10.7-12.75GHZ 16DHVQFN

8429

SA615DK/01,118

SA615DK/01,118

NXP Semiconductors

IC MIXER 500MHZ UP CONVRT 20SSOP

2870

SA615D/01,118

SA615D/01,118

NXP Semiconductors

IC MIXER 500MHZ UP CONVRT 20SO

571

SA616BS,115

SA616BS,115

NXP Semiconductors

IC MIXER FM IF SYSTEM LV 20HVQFN

1458

SA636DK/01,118

SA636DK/01,118

NXP Semiconductors

IC MIXER 500MHZ RSSI 20SSOP

9936

SA616DK/01,118

SA616DK/01,118

NXP Semiconductors

IC MIXR 150MHZ RSSI EQUIP 20SSOP

275

RF Mixers

1. Overview

RF/IF Mixers are three-port nonlinear devices that convert signals from one frequency to another by multiplying two input signals (RF and LO) to produce intermediate frequency (IF) or baseband outputs. They are critical components in wireless communication systems, enabling frequency translation for signal processing. RFID RF Mixers specialize in handling signals for Radio Frequency Identification systems, ensuring accurate data transmission between readers and tags. These components underpin modern technologies including 5G, IoT, and industrial automation.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Passive MixersUse diodes or FETs without external power, offering high linearity and wide bandwidthSatellite communication, test equipment
Active MixersUse transistors with power supply, provide conversion gain and isolation5G base stations, RFID readers
Up-Conversion MixersConvert low-frequency signals to higher RF frequenciesWireless transmitters, radar systems
Down-Conversion MixersConvert high-frequency signals to lower IF/basebandSmartphone receivers, RFID interrogators
Zero-IF MixersDirect conversion to DC/baseband, eliminating IF stagesSoftware-defined radios, BLE modules

3. Structure and Components

Typical RF Mixers consist of nonlinear semiconductor elements (diodes, BJTs, or FETs), impedance matching networks, and three frequency-selective ports (RF, LO, IF). Advanced designs integrate baluns for balanced signal processing and temperature compensation circuits. Packaging varies from surface-mount (SMD) for PCB integration to coaxial connectors for high-power applications. RFID-specific mixers often include on-chip filtering for 860-960 MHz UHF bands.

4. Key Technical Specifications

ParameterSignificanceTypical Values
Frequency RangeDetermines operational bandwidth50 MHz - 100 GHz
Conversion Loss/GainMeasures efficiency of frequency translation-6 dB to +12 dB
LO Drive LevelRequired local oscillator power0 dBm - 20 dBm
Isolation (RF-LO, IF-LO)Prevents signal leakage20 dB - 45 dB
IP3 (Third-Order Intercept)Indicates linearity performance+5 dBm - +25 dBm
Phase NoiseAffects signal purity-150 dBc/Hz @ 100 kHz offset

5. Application Fields

  • Telecommunications: 5G NR base stations, microwave backhaul
  • RFID Systems: UHF Gen2 readers, NFC payment terminals
  • Test & Measurement: Spectrum analyzers, signal generators
  • Industrial IoT: Wireless sensor networks, asset tracking
  • Medical Imaging: MRI system frequency conversion
  • Automotive Radar: 76-81 GHz FMCW radar mixers

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Analog DevicesADL58016 GHz active mixer, +18 dBm IIP3, 4G/5G applications
Mini-CircuitsZMX-7R2-S+26.5 GHz passive mixer, 50-4000 MHz bandwidth
Nordic SemiconductornRF24L012.4 GHz active mixer for Bluetooth LE
InfineonB4100N60ESiC mixer for 600V RFID systems
STMicroelectronicsSAW36R1M3.6 GHz SAW mixer for RFID readers

7. Selection Recommendations

Key selection criteria include: matching target frequency bands, required conversion gain/loss budget, LO power availability, and linearity requirements. For RFID applications, prioritize low LO leakage (<-15 dBm) and integrated filters. High-volume manufacturing should consider package type (QFN vs. die) and RoHS compliance. Always verify IP3 performance for multi-signal environments and check temperature stability (-40 C to +85 C) for industrial use.

8. Industry Trends

The market shifts toward: 1) Millimeter-wave mixers for 28/39 GHz 5G FR2 bands 2) System-on-Chip (SoC) integration with on-die mixers 3) Energy-efficient designs for battery-powered RFID tags 4) Software-defined radio (SDR) compatibility with programmable IF 5) Increased adoption of GaN mixers for high-power aerospace applications 6) Refined zero-IF architectures reducing component count in mobile devices

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