RF Transceiver ICs

Image Part Number Description / PDF Quantity Rfq
ATSAMR21E18A-MU

ATSAMR21E18A-MU

Roving Networks / Microchip Technology

IC RF TXRX+MCU ISM>1GHZ 32VQFN

449

ATMEGA128RFR2-ZUR

ATMEGA128RFR2-ZUR

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 64VFQFN

4000

MRF24J40-I/ML

MRF24J40-I/ML

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 40VFQFN

544

ATMEGA2564RFR2-ZFR

ATMEGA2564RFR2-ZFR

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 48VFQFN

396

ATMEGA64RZAPV-10AU

ATMEGA64RZAPV-10AU

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 44TQFP

154

AT86RF232-ZXR

AT86RF232-ZXR

Roving Networks / Microchip Technology

IC RF TXRX 802.15.4 32VFQFN

4659

ATMEGA128RFR2-ZFR

ATMEGA128RFR2-ZFR

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 64VFQFN

3848

ATMEGA2564RFR2-ZU

ATMEGA2564RFR2-ZU

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 48VFQFN

496

ATSAMR21G18A-MUT

ATSAMR21G18A-MUT

Roving Networks / Microchip Technology

IC RF TXRX+MCU ISM>1GHZ 48VFQFN

2562

ATSAMR30E18A-MU

ATSAMR30E18A-MU

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 32VFQFN

0

ATMEGA64RFR2-ZUR

ATMEGA64RFR2-ZUR

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 64VFQFN

3936

ATSAMR21E17A-MF

ATSAMR21E17A-MF

Roving Networks / Microchip Technology

IC RF TXRX+MCU ISM>1GHZ 32VQFN

2446

ATA5812-PLQ

ATA5812-PLQ

Roving Networks / Microchip Technology

IC RF TXRX ISM<1GHZ 48VFQFN

344

AT86RF215IQ-ZUR

AT86RF215IQ-ZUR

Roving Networks / Microchip Technology

IC RF TXRX 802.15.4 48VFQFN

4226

ATMEGA128RFA1-ZF

ATMEGA128RFA1-ZF

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 64VFQFN

148

ATMEGA256RFR2-ZFR

ATMEGA256RFR2-ZFR

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 64VFQFN

5652

ATSAMR21E17A-MU

ATSAMR21E17A-MU

Roving Networks / Microchip Technology

IC RF TXRX+MCU ISM>1GHZ 32VQFN

1839

ATSAMR34J17B-I/7JX

ATSAMR34J17B-I/7JX

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 64TFBGA

0

ATSAMR21G16A-MU

ATSAMR21G16A-MU

Roving Networks / Microchip Technology

IC RF TXRX+MCU ISM>1GHZ 48VFQFN

1821

ATSAMR30E18A-MUT

ATSAMR30E18A-MUT

Roving Networks / Microchip Technology

IC RF TXRX+MCU 802.15.4 32VFQFN

0

RF Transceiver ICs

1. Overview

RF (Radio Frequency) and IF (Intermediate Frequency) transceiver ICs are integrated circuits that enable wireless communication by transmitting and receiving radio signals. These devices are critical in modern technologies, supporting applications from cellular networks to IoT (Internet of Things). RFID (Radio-Frequency Identification) RF transceivers specialize in short-range communication for identification and tracking systems. Their miniaturization, energy efficiency, and reliability have driven advancements in connectivity across industries.

2. Major Types and Functional Classification

Type Functional Features Application Examples
Low-Power RF Transceivers Optimized for energy efficiency, supports sub-1GHz and 2.4GHz bands IoT sensors, smart meters, wearable devices
High-Performance RF Transceivers High output power (up to +20dBm), low phase noise 5G base stations, military communication systems
Multi-Band RF Transceivers Supports multiple frequency bands (e.g., 400MHz-6GHz) Dual-mode radios, global navigation systems
Integrated RFID Transceivers Embedded protocol handling, on-chip modulation/demodulation Inventory tracking, access control systems

3. Structure and Components

Typical RF transceiver ICs include:

  • Transmitter Section: Power Amplifier (PA), up-conversion mixer, frequency synthesizer
  • Receiver Section: Low-Noise Amplifier (LNA), down-conversion mixer, channel filter
  • Digital Baseband: ADC/DAC, error correction, protocol engine
  • Process Technology: CMOS, SiGe, or GaAs for high-frequency performance
  • Package Types: QFN (Quad Flat No-leads), BGA (Ball Grid Array)

4. Key Technical Specifications

Parameter Description Importance
Frequency Range Operational bandwidth (e.g., 868MHz-915MHz, 2.4GHz-5.8GHz) Determines application compatibility
Output Power Transmit power level (e.g., -20dBm to +20dBm) Impacts transmission distance and regulatory compliance
Receiver Sensitivity Minimum detectable signal level (e.g., -120dBm) Defines signal quality in noisy environments
Data Rate Maximum throughput (e.g., 1Mbps-1Gbps) Affects real-time data transmission capability
Power Consumption Operating current/voltage requirements Crucial for battery-powered devices

5. Application Areas

  • Telecommunications: 5G small cells, Wi-Fi 6 access points
  • Industrial IoT: Predictive maintenance sensors
  • Automotive: Tire Pressure Monitoring Systems (TPMS), keyless entry
  • Healthcare: Remote patient monitoring devices
  • Retail: Smart shelves with RFID inventory tracking

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Features
TI (Texas Instruments) CC1352P Sub-1GHz & 2.4GHz dual-band, +7dBm output power
Nordic Semiconductor nRF52840 Bluetooth 5.2, 2.4GHz, 128-bit AES encryption
STMicroelectronics S2-LP Very low-power (14mA RX), sub-GHz transceiver
Infineon Technologies BTS720 Automotive-grade RFID transceiver for immobilizers

7. Selection Guidelines

Key considerations include:

  • Frequency band alignment with regulatory standards (FCC, ETSI)
  • Power budget vs. transmission range requirements
  • Integration level (e.g., on-chip MCU, external PA needs)
  • Environmental factors (temperature range, EMI resilience)
  • Cost vs. performance trade-offs for mass production

8. Industry Trends

Future developments include:

  • Ultra-low-power designs for energy-harvesting IoT nodes
  • Massive MIMO integration for 6G infrastructure
  • AI-enhanced spectrum management algorithms
  • Expanded use of mmWave bands (24GHz+) for high-speed applications
  • Standardization of RFID protocols for global supply chains
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