Transistors - FETs, MOSFETs - RF

Image Part Number Description / PDF Quantity Rfq
MRF9180R5

MRF9180R5

NXP Semiconductors

FET RF 65V 880MHZ NI-1230

0

MRF6V2010NBR5

MRF6V2010NBR5

NXP Semiconductors

FET RF 110V 220MHZ TO-272-2

0

BF1105R,215

BF1105R,215

NXP Semiconductors

MOSFET N-CH 7V 30MA SOT-143R

0

MRFE6VP5600HSR6

MRFE6VP5600HSR6

NXP Semiconductors

FET RF 2CH 130V 230MHZ NI1230S

0

MRF19085LSR3

MRF19085LSR3

NXP Semiconductors

FET RF 65V 1.99GHZ NI-780S

0

MRF6S27050HSR5

MRF6S27050HSR5

NXP Semiconductors

FET RF 68V 2.62GHZ NI-780S

0

MRF5S9101NBR1

MRF5S9101NBR1

NXP Semiconductors

FET RF 68V 960MHZ TO-272-4

0

MRF5S21130HR5

MRF5S21130HR5

NXP Semiconductors

FET RF 65V 2.17GHZ NI-880

0

MRF8S21140HR5

MRF8S21140HR5

NXP Semiconductors

FET RF 65V 2.14GHZ NI780

0

MRF6V2300NBR1

MRF6V2300NBR1

NXP Semiconductors

FET RF 110V 220MHZ TO-272-4

0

MRF18060ALR3

MRF18060ALR3

NXP Semiconductors

FET RF 65V 1.88GHZ NI-780

0

BF998,235

BF998,235

NXP Semiconductors

MOSFET N-CH 12V 30MA SOT143

0

MRFE6S9160HSR5

MRFE6S9160HSR5

NXP Semiconductors

FET RF 66V 880MHZ NI-780S

0

MRF7S19080HSR5

MRF7S19080HSR5

NXP Semiconductors

FET RF 65V 1.99GHZ NI-780S

0

BF1211,215

BF1211,215

NXP Semiconductors

MOSFET N-CH DUAL GATE 6V SOT143B

0

MRF8P23080HR5

MRF8P23080HR5

NXP Semiconductors

FET RF 2CH 65V 2.3GHZ NI780-4

0

MRF8S9220HR5

MRF8S9220HR5

NXP Semiconductors

FET RF 70V 960MHZ NI780H

0

MRF6S9045MR1

MRF6S9045MR1

NXP Semiconductors

FET RF 68V 880MHZ TO-270-2

0

MRF8S26120HSR3

MRF8S26120HSR3

NXP Semiconductors

FET RF 65V 2.69GHZ NI780S

0

MRF6S9125NR1

MRF6S9125NR1

NXP Semiconductors

FET RF 68V 880MHZ TO-270-4

0

Transistors - FETs, MOSFETs - RF

1. Overview

RF FETs and MOSFETs are critical semiconductor devices designed for high-frequency signal amplification and switching in radio frequency (RF) applications. These transistors operate efficiently in microwave and RF circuits, enabling wireless communication, radar systems, and broadcasting equipment. Their ability to handle high frequencies (typically above 1 MHz) with minimal noise and distortion makes them indispensable in modern telecommunications infrastructure.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Junction FET (JFET)Voltage-controlled device with low noise and high input impedanceLow-noise amplifiers in RF receivers
MESFETMetal-Semiconductor FET with GaAs substrate for high-speed operationSatellite communication systems
HEMT/PHEMTHigh-electron-mobility transistor with pseudomorphic structures5G base stations, microwave amplifiers
LDMOSLateral Diffused MOSFET with high power density and thermal stabilityCellular base station amplifiers
GaN HEMTGallium Nitride-based HEMT for ultra-high frequency/powerRadar systems, 5G mmWave

3. Structure and Composition

RF FETs typically feature a three-terminal structure (source, gate, drain) with a semiconductor channel (Si, GaAs, or GaN). The gate region uses Schottky contacts (MESFET) or insulated layers (MOSFET). Advanced devices like HEMTs employ heterojunctions between different semiconductor materials (e.g., AlGaN/GaN) to enhance electron mobility. Packaging includes ceramic or plastic enclosures with RF-compatible connectors to minimize parasitic capacitance and inductance.

4. Key Technical Specifications

ParameterDescriptionImportance
Frequency RangeOperational bandwidth (e.g., 0.1-6 GHz)Determines application suitability
Power Output (P1dB)1dB compression point (e.g., 10-500W)Measures linearity and saturation
Gain (S21)Signal amplification ratio (e.g., 10-30 dB)System sensitivity indicator
Efficiency (PAE)Power-added efficiency (e.g., 40-75%)Energy consumption metric
Input/Output VSWRVoltage Standing Wave Ratio (e.g., <2:1)Mismatch loss assessment

5. Application Fields

  • Telecommunications: 5G/4G base stations, small cells, fiber-optic networks
  • Defense: Radar systems, electronic warfare, UAV communication
  • Broadcasting: FM/TV transmitters, satellite uplinks
  • Medical: MRI machines, RF ablation equipment
  • Industrial: Plasma generators, RFID readers

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Specifications
NXP SemiconductorsMRF1K50GN50W GaN HEMT, 1.8-2.7GHz, 70% PAE
Wolfspeed (Cree)CGH4G090400F400W GaN HEMT, 900MHz, 10:1 VSWR ruggedness
InfineonBLS14H10LS-250250W LDMOS, 1.8-2.2GHz, 14dB gain
MACOMNPT1007SiGe HBT, 7GHz, 18dB gain for 5G

7. Selection Recommendations

  1. Match operating frequency to device transition frequency (fT)
  2. Verify power handling with derating curves under working temperatures
  3. Assess package thermal resistance (Rth) for longevity
  4. Compare S-parameters for impedance matching requirements
  5. Consider ESD protection and ruggedness for field conditions

8. Industry Trends

Key trends include: - Wide bandgap materials (GaN/SiC) enabling higher efficiency (>80%) at mmWave frequencies - 3D packaging for reduced parasitics in 5G massive MIMO systems - Integrated RF frontend modules (FEM) with on-chip matching networks - AI-driven design optimization for complex impedance matching - Growing adoption of GaN-on-diamond substrates for thermal management

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