Transistors - Bipolar (BJT) - RF

Image Part Number Description / PDF Quantity Rfq
AT-32063-BLKG

AT-32063-BLKG

Broadcom

RF TRANS 2 NPN 5.5V SOT363

0

AT-30511-TR1G

AT-30511-TR1G

Broadcom

RF TRANS NPN 5.5V SOT143

0

BFG198,115

BFG198,115

NXP Semiconductors

RF TRANS NPN 10V 8GHZ SOT223

0

2SC3932GSL

2SC3932GSL

Panasonic

RF TRANS NPN 20V 1.6GHZ SMINI3

0

BFG540W,115

BFG540W,115

NXP Semiconductors

RF TRANS NPN 15V 9GHZ 4SO

0

2A5

2A5

Microsemi

RF TRANS NPN 22V 3.7GHZ 55ET

0

BF959ZL1G

BF959ZL1G

Sanyo Semiconductor/ON Semiconductor

RF TRANS NPN 20V 700MHZ TO92-3

0

HFA3128RZ

HFA3128RZ

Intersil (Renesas Electronics America)

RF TRANS 5 PNP 15V 5.5GHZ 16QFN

0

2SC5415AE-TD-E

2SC5415AE-TD-E

Sanyo Semiconductor/ON Semiconductor

RF TRANS NPN 12V 6.7GHZ PCP

0

PN5179_D75Z

PN5179_D75Z

Sanyo Semiconductor/ON Semiconductor

RF TRANS NPN 12V 2GHZ TO92-3

0

NE94433-T1B

NE94433-T1B

CEL (California Eastern Laboratories)

RF TRANS NPN 15V 2GHZ SOT23

0

BFP 650F E6327

BFP 650F E6327

IR (Infineon Technologies)

RF TRANS NPN 4.5V 42GHZ 4TSFP

0

BFQ67,215

BFQ67,215

NXP Semiconductors

RF TRANS NPN 10V 8GHZ TO236AB

0

BFR92A,235

BFR92A,235

NXP Semiconductors

RF TRANS NPN 15V 5GHZ TO236AB

0

MRF581G

MRF581G

Microsemi

RF TRANS NPN 18V 5GHZ MICRO X

0

BFG410W,135

BFG410W,135

NXP Semiconductors

RF TRANS NPN 4.5V 22GHZ CMPAK-4

0

AT-32011-TR1G

AT-32011-TR1G

Broadcom

RF TRANS NPN 5.5V SOT143

0

FH105A-TR-E

FH105A-TR-E

Sanyo Semiconductor/ON Semiconductor

RF TRANS NPN 10V 8GHZ 6MCP

0

NE68030-T1-R45-A

NE68030-T1-R45-A

CEL (California Eastern Laboratories)

RF TRANS NPN 10V 10GHZ SOT323

0

NE85633-R23-A

NE85633-R23-A

CEL (California Eastern Laboratories)

RF TRANS NPN 12V 7GHZ SOT23

0

Transistors - Bipolar (BJT) - RF

1. Overview

Radio Frequency Bipolar Junction Transistors (RF BJTs) are three-layer semiconductor devices optimized for amplification and switching in high-frequency applications (typically >100 MHz). These transistors maintain stable performance in microwave and ultra-high frequency (UHF) ranges, characterized by high current gain-bandwidth product (fT), low noise figures, and fast switching capabilities. Their importance in modern technology spans wireless communication infrastructure, radar systems, and RF test equipment, enabling efficient signal transmission and reception in 5G networks, satellite communications, and IoT devices.

2. Main Types & Functional Classification

TypeFunctional FeaturesApplication Examples
NPN RF BJTHigh electron mobility, optimized for low-noise amplification5G base station LNAs, GPS receivers
PNP RF BJTComplementary design for power amplificationRF power modules, automotive radar
RF Darlington PairHigh (current gain), cascaded amplificationAntenna drivers, industrial RF heaters
Heterojunction Bipolar Transistor (HBT)Compound semiconductor materials (SiGe/GaAs), ultra-high fTOptical communication transceivers, mmWave systems

3. Structure & Composition

Typical RF BJT structure includes:

  • Material: Silicon (Si), Silicon-Germanium (SiGe), Gallium Arsenide (GaAs)
  • Layer Architecture: Emitter (high doping), Base (thin layer), Collector (graded doping)
  • Package Types: Surface-mount (SOT-89, SOT-343), Through-hole (TO-18, TO-92)
  • Metallization: Gold/aluminum contacts for reduced parasitic resistance

Advanced designs incorporate air-bridge structures to minimize parasitic capacitance and epitaxial layers for improved frequency response.

4. Key Technical Parameters

ParameterDescriptionTypical Range
fT (Transition Frequency)Current gain cutoff frequency1 GHz - 100 GHz
GUM (Max. Available Gain)Power gain at optimal impedance10 dB - 30 dB
Pout (Output Power)RMS power capability0.1 W - 500 W
NF (Noise Figure)Signal-to-noise degradation0.3 dB - 5 dB
VCE0 (Breakdown Voltage)Collector-emitter withstand voltage5 V - 80 V
(Junction Temperature)Thermal stability limit150 C - 200 C

5. Application Fields

  • Telecommunications: 5G massive MIMO amplifiers, fiber optic transceivers
  • Defense: Phased array radar systems, electronic warfare jammers
  • Test & Measurement: RF signal generators, spectrum analyzers
  • Consumer Electronics: Bluetooth LE modules, Wi-Fi 6E front-ends
  • Industrial: Plasma generators, RFID readers

6. Leading Manufacturers & Products

ManufacturerRepresentative ProductKey Specifications
Infineon TechnologiesBFP740FfT=50 GHz, NF=0.8 dB, Pout=18 dBm
STMicroelectronicsSTAG21412.7 GHz dual-stage amplifier, 32 dB gain
Skyworks SolutionsASK240110.05-6 GHz, 50 W GaAs power transistor
ON SemiconductorMRF151G125 W, 880 MHz, 40% efficiency

7. Selection Guidelines

Key considerations:

  1. Match fT to application frequency with 20% margin
  2. Verify load-line requirements for power applications
  3. Select appropriate package for thermal dissipation (e.g., TO-220 for >50 W)
  4. Derate VCE0 by 30% in high-temperature environments
  5. Consider integrated solutions (RFICs) for complex impedance matching

8. Industry Trends

Future development directions:

  • Transition to SiGe BiCMOS technology for 100+ GHz applications
  • Integration with GaN-on-SiC substrates for hybrid power amplifiers
  • Development of 5G NR direct-conversion transmitters using HBT arrays
  • Advancements in wafer-level packaging (WLP) for mmWave 5G devices
  • Adoption of AI-driven parameter optimization in production testing
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