RF Receiver, Transmitter, and Transceiver Finished Units

Image Part Number Description / PDF Quantity Rfq
MTCMR-H4-GP-P1

MTCMR-H4-GP-P1

Multi-Tech Systems, Inc.

MODEM CELLULAR QUAD GPRS HSPA

2

MTCMR-C1-N2-NAM

MTCMR-C1-N2-NAM

Multi-Tech Systems, Inc.

MODEM CELLULAR DUAL CDMA

8

MTCMR-E1-EU

MTCMR-E1-EU

Multi-Tech Systems, Inc.

MODEM CELLULAR QUAD E-GPRS

3

MTC-H5-B01

MTC-H5-B01

Multi-Tech Systems, Inc.

MODEM HSPA+ RS-232 W/O ACCY

0

MTCMR-C1-GP-N3

MTCMR-C1-GP-N3

Multi-Tech Systems, Inc.

MODEM CELLULAR DUAL CDMA

7

MTCMR-C2-GP-N16

MTCMR-C2-GP-N16

Multi-Tech Systems, Inc.

MODEM CELLULAR DUAL CDMA

2

MTCMR-H4-P1-GB/IE

MTCMR-H4-P1-GB/IE

Multi-Tech Systems, Inc.

MODEM CELLULAR QUAD GPRS HSPA

3

MTC-LVW2-B02-US

MTC-LVW2-B02-US

Multi-Tech Systems, Inc.

LTE CAT 3 MODEM, RS-232 INTERFAC

1

MTCBA-C1-N2

MTCBA-C1-N2

Multi-Tech Systems, Inc.

MODEM CDMA RS232 DUAL

14

MTC-C2-B08-N16-KIT

MTC-C2-B08-N16-KIT

Multi-Tech Systems, Inc.

MODEM ETHERNET USB

1

MTC-EV3-B01-N3

MTC-EV3-B01-N3

Multi-Tech Systems, Inc.

MODEM EV-DO RS-232 VERIZON

8

MTCMR-H-NAM

MTCMR-H-NAM

Multi-Tech Systems, Inc.

MODEM HSDPA INTELLIGNT US BUNDLE

1

MTC-EV3-B01-N3-US

MTC-EV3-B01-N3-US

Multi-Tech Systems, Inc.

MODEM EV-DO RS-232 US ACCY VERIZ

10

MTCMR-E1-NAM

MTCMR-E1-NAM

Multi-Tech Systems, Inc.

MODEM CELLULAR QUAD E-GPRS

1

MTCBA-C1-U-N2

MTCBA-C1-U-N2

Multi-Tech Systems, Inc.

MODEM CDMA USB 800MHZ 1.9GHZ

2

MTCDT-LEU1-210L-EU-GB

MTCDT-LEU1-210L-EU-GB

Multi-Tech Systems, Inc.

LTE MLINUX PROGRAMMABLE GATEWAY

0

MTC-G3-B08-KIT

MTC-G3-B08-KIT

Multi-Tech Systems, Inc.

MODEM GPRS QUAD GLOBAL USB INTFC

6

MTC-LNA4-B03

MTC-LNA4-B03

Multi-Tech Systems, Inc.

LTE CAT4 MODEM USB W/O ACCESSORI

12

MTCDP-EV2-GP-N3-1.0-EX

MTCDP-EV2-GP-N3-1.0-EX

Multi-Tech Systems, Inc.

DEV KIT 3G REMOTE ASSET MONITOR

4

MTCBA-C1-N2-NAM

MTCBA-C1-N2-NAM

Multi-Tech Systems, Inc.

MODEM CELLULAR RS232 DUAL CDMA

4

RF Receiver, Transmitter, and Transceiver Finished Units

1. Overview

RF (Radio Frequency)/IF (Intermediate Frequency) and RFID (Radio Frequency Identification) finished units are critical components in wireless communication systems. These devices enable signal reception, transmission, and bidirectional communication through electromagnetic waves. RF/IF units typically operate in the radio frequency spectrum (3 kHz 300 GHz) and intermediate frequency ranges (typically 455 kHz for AM radios or 10.7 MHz for FM), while RFID systems use specific ISM (Industrial, Scientific, Medical) bands (e.g., 125 kHz, 13.56 MHz, 900 MHz). Their importance spans telecommunications, IoT, logistics, healthcare, and industrial automation.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
RF ReceiverDemodulates incoming RF signals, amplifies weak signals, and filters noiseAM/FM radios, Wi-Fi routers, satellite communication systems
RF TransmitterGenerates and amplifies RF signals for wireless transmissionCellular base stations, Bluetooth devices, RFID readers
RF TransceiverCombines receiver and transmitter functions with duplexing capabilitiesSmartphones, Zigbee modules, 5G infrastructure
RFID ReaderInterrogates RFID tags and processes backscattered signalsInventory management, access control systems
RFID TagPassive/active device storing unique identification dataAsset tracking, retail payment systems

3. Structure and Components

Typical physical structures include:

  • Antenna Interface: Dipole, patch, or loop antennas for signal coupling
  • RF Front-End: Low-noise amplifiers (LNAs), power amplifiers (PAs), and frequency synthesizers
  • Mixing Stage: Converts signals between RF and IF/baseband using local oscillators (LOs)
  • Digital Baseband: ADC/DAC converters, DSP/FPGA for signal processing
  • Power Supply: Regulated DC sources or energy-harvesting circuits (for passive RFID tags)

4. Key Technical Specifications

ParameterDescriptionImportance
Frequency RangeOperating bandwidth (e.g., 2.4 GHz ISM band)Determines application compatibility
Receiver SensitivityMinimum detectable signal level (e.g., -120 dBm)Impacts communication range and reliability
Output PowerTransmit signal strength (e.g., +30 dBm)Dictates coverage area and regulatory compliance
Data RateMaximum transmission speed (e.g., 1 Mbps)Critical for real-time applications
Power ConsumptionOperating current/voltage requirementsAffects battery life and thermal management

5. Application Fields

  • Telecommunications: 5G NR base stations, microwave backhaul links
  • Healthcare: Wireless patient monitoring systems (e.g., Medtronic CareLink)
  • Retail: RFID-based inventory tracking (e.g., Amazon Go stores)
  • Automotive: Keyless entry systems (e.g., Tesla Model S passive entry)
  • Industrial: Wireless sensor networks (e.g., Siemens SIMATIC NET)

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
QualcommWTR5975 RF TransceiverSupports 2G 5G, 20 MHz bandwidth
NXP SemiconductorsUHF RFID Reader IC SL900A900 MHz, 128-bit security encryption
Texas InstrumentsCC2640R2F Bluetooth TransceiverBLE 5.0, 5 mm 5 mm QFN package
STMicroelectronicsSPBTLE-RF Evaluation Board868/915 MHz ISM band operation

7. Selection Guidelines

Key considerations include:

  • Frequency compatibility with target environment
  • Link budget analysis (distance, obstacles, fading)
  • Regulatory certifications (FCC, ETSI, RoHS)
  • Environmental factors (temperature, humidity, EMI)
  • Integration requirements (form factor, interface protocols)

8. Industry Trends

Future developments focus on:

  • Ultra-wideband (UWB) for precise localization
  • Massive MIMO integration in 5G transceivers
  • Energy-harvesting RFID tags for IoT
  • AI-driven dynamic spectrum management
  • Miniaturization via System-on-Chip (SoC) designs
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