RF Antennas

Image Part Number Description / PDF Quantity Rfq
140000608

140000608

Amphenol

BA 450/GPS/380-430 MHZ

100

7042220

7042220

Amphenol

6 ELEMENT YAGI 208-232MHZ

100

140000750

140000750

Amphenol

EFSS 70/460-FME

50

110000376

110000376

Amphenol

CXL 150-1LW-SS-R/H

100

140000692

140000692

Amphenol

BA 800/GPS/760-860-SMA(M)

100

100000509

100000509

Amphenol

CXL 380-470C

100

4240.03-875-T6

4240.03-875-T6

Amphenol

LTE800 / GSM COLINEAR ANTENNA,

100

7042155

7042155

Amphenol

6 ELEMNT YAGI 155-175MHZ

100

100000098

100000098

Amphenol

CXL 2-3C/M

100

100000117

100000117

Amphenol

CXL 70-5C/H

100

140000688

140000688

Amphenol

BA 800/GPS/760-860-SMA(F)

100

140000116

140000116

Amphenol

GA 2/H-FME HANDPORTABLE ANTENNA

100

7175833

7175833

Amphenol

8 ELEMENT YAGI

100

100000137

100000137

Amphenol

CXL 900-6LW/H

100

4240.06-875-T0

4240.06-875-T0

Amphenol

6DBD COLINEAR 0DEG DOWNTILT 79

100

4220.09-445-T0

4220.09-445-T0

Amphenol

9DBD COLINEAR 0 DEG 420-470 MH

100

4240.09-875-T0

4240.09-875-T0

Amphenol

9DBD COLINEAR 0DEG DOWNTILT 79

100

110000083

110000083

Amphenol

CXL 70-1LW/H

100

110000103

110000103

Amphenol

CXL 900-1LW/L

100

110000087

110000087

Amphenol

CXL 70-1LW/I

99

RF Antennas

1. Overview

RF/IF (Radio Frequency/Intermediate Frequency) antennas and RFID (Radio Frequency Identification) antennas are critical components in wireless communication systems. RF/IF antennas transmit and receive radio frequency signals, while RFID antennas enable contactless data exchange between tags and readers. These technologies underpin modern applications such as IoT, 5G networks, logistics tracking, and smart devices, driving efficiency and connectivity across industries.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Dipole AntennasBalanced radiation pattern, omnidirectional coverageWi-Fi routers, radio broadcasting
Microstrip Patch AntennasCompact, planar design, directional beamMobile devices, satellite communication
Loop AntennasHigh sensitivity for near-field applicationsRetail RFID payment systems
Fractal AntennasMultiband operation with miniaturized geometryMilitary communication, wearable devices
Far-Field RFID AntennasLong-range UHF operation (>860 MHz)Warehouse inventory management
Near-Field RFID AntennasShort-range HF operation (13.56 MHz)Contactless payment, access control

3. Structure and Components

A typical RF/IF antenna consists of:

  • Conductive elements (copper, aluminum) for signal radiation
  • Dielectric substrates (FR4, Rogers materials) for impedance control
  • Feed lines (coaxial cables, microstrip lines) for signal transmission
  • Enclosures for environmental protection
RFID antennas integrate additional components like impedance matching circuits and chip interfaces, with designs optimized for magnetic or electric field coupling.

4. Key Technical Specifications

ParameterDescriptionImportance
Frequency RangeOperational bandwidth (e.g., 860 960 MHz for UHF RFID)Determines application compatibility
Gain (dBi)Signal directionality and strength (2 8 dBi typical)Affects transmission distance and efficiency
ImpedanceMatching standard (usually 50 )Minimizes signal reflection
VSWRVoltage Standing Wave Ratio (<2:1 preferred)Indicates power transfer efficiency
PolarizationLinear/circular orientationImpacts signal stability in dynamic environments

5. Application Fields

  • Telecommunications: 5G base stations, DAS (Distributed Antenna Systems)
  • Healthcare: MRI RF coils, patient monitoring systems
  • Transportation: ETC (Electronic Toll Collection), vehicle-to-everything (V2X) communication
  • Retail: Smart shelves, inventory tracking with RFID
  • Industrial: Asset management, drone communication

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductFeatures
AvnetRFID UHF Reader Antenna A1001Linear polarization, 902 928 MHz, 6 dBi gain
Alien TechnologyALN-9652 IMPINJ R4PPassive UHF RFID, 860 960 MHz
Pulse ElectronicsLF RFID Antenna PLX17R125 kHz, embedded in access control systems
KathreinRF Dipole Antenna 800101332.3 3.8 GHz for 5G small cells

7. Selection Recommendations

Key factors to consider:

  1. Frequency alignment with system requirements
  2. Environmental durability (temperature, moisture, vibration)
  3. Size constraints for PCB or mechanical integration
  4. Cost vs. performance trade-offs for mass deployment
  5. Regulatory compliance (FCC, ETSI standards)
For RFID systems, prioritize read range and tag compatibility; for high-frequency RF applications, emphasize VSWR and phase stability.

8. Industry Trends

Emerging trends include:

  • Development of mmWave (24 100 GHz) antennas for 5G/6G
  • Miniaturization via metamaterials and 3D printing
  • AI-optimized beamforming antennas for IoT networks
  • Conductive ink-based flexible RFID tags for disposable applications
  • Integration of energy harvesting capabilities
The global RFID antenna market is projected to grow at 12.3% CAGR through 2027, driven by smart city initiatives and supply chain digitization.

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