Transistors - JFETs

Image Part Number Description / PDF Quantity Rfq
J2A012ZXZ/S1AZ197J

J2A012ZXZ/S1AZ197J

NXP Semiconductors

TRANSISTOR JFET

0

CP216-2N4393-CT

CP216-2N4393-CT

Central Semiconductor

JFET N-CH SWITCH CHOPPER

0

CMPFJ310 BK

CMPFJ310 BK

Central Semiconductor

IC JFET P-CH SOT23-3

0

2N5546JTXV01

2N5546JTXV01

Vishay / Siliconix

JFET N-CH 50V TO-71

0

2N4861JTXV02

2N4861JTXV02

Vishay / Siliconix

JFET N-CH 30V TO-206

0

2SK1070PIETL-E

2SK1070PIETL-E

Renesas Electronics America

JFET N-CH MPAK

0

2N4858JAN02

2N4858JAN02

Vishay / Siliconix

JFET N-CH 40V 80MA TO-18

0

U440-E3

U440-E3

Vishay / Siliconix

JFET DUAL P-CH 25V TO-71

0

J2A040YXS/T0BY424,

J2A040YXS/T0BY424,

NXP Semiconductors

TRANSISTOR JFET 8PLLCC

0

2N4393-2

2N4393-2

Vishay / Siliconix

MOSFET N-CH 40V .1NA TO-18

0

J2A012YXZ/S1AY7UZJ

J2A012YXZ/S1AY7UZJ

NXP Semiconductors

TRANSISTOR JFET

0

2N4859JTX02

2N4859JTX02

Vishay / Siliconix

JFET N-CH 30V 360MW TO-18

0

CP216-2N4856-CT

CP216-2N4856-CT

Central Semiconductor

JFET N-CH SWITCH CHOPPER

0

J3E081CA4/S1ACH49J

J3E081CA4/S1ACH49J

NXP Semiconductors

TRANSISTOR JFET

0

TF256-4-TL-H

TF256-4-TL-H

Sanyo Semiconductor/ON Semiconductor

JFET N-CH 1MA 30MW USFP

0

2N4857JTXL02

2N4857JTXL02

Vishay / Siliconix

JFET N-CH 40V 360MA TO-18

0

2N5114JTX02

2N5114JTX02

Vishay / Siliconix

JFET P-CH 30V TO-206AA

0

CP210-2N4416-CT

CP210-2N4416-CT

Central Semiconductor

JFET N-CH AMP CHIP FORM 1=400

0

CP210-2N5486-CT

CP210-2N5486-CT

Central Semiconductor

TRANS JFET N-CH AMP

0

J3E082EUA/S0BE503V

J3E082EUA/S0BE503V

NXP Semiconductors

TRANSISTOR JFET

0

Transistors - JFETs

1. Overview

Junction Field-Effect Transistors (JFETs) are three-terminal voltage-controlled semiconductor devices that regulate current flow through a conductive channel. As the first type of field-effect transistor, JFETs are characterized by high input impedance, low noise, and excellent analog signal handling capabilities. They play critical roles in modern electronics for signal amplification, switching, and impedance matching applications.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
N-channel JFETHigher electron mobility, faster operationAudio amplifiers, RF mixers
P-channel JFETComplementary to N-channel, lower speedPower switching, analog switches
Dual-gate JFETTwo control gates for improved linearityTV tuners, communication systems
High-frequency JFETOptimized for GHz-range performanceRF amplifiers, microwave circuits

3. Structure and Composition

JFETs consist of a semiconductor channel (typically silicon or GaAs) with source and drain contacts at each end. A reverse-biased p-n junction gate controls the channel width. Key structural elements include: - Channel: Determines current capacity and transconductance - Gate: Forms depletion region to modulate channel conductivity - Metallization layers: Provide low-resistance contacts - Passivation layer: Protects device surface from contamination

4. Key Technical Specifications

ParameterDescriptionImportance
VGS(off)Gate-source cutoff voltageDetermines operating voltage range
IDSSSaturation drain currentDefines maximum current capability
gmTransconductanceMeasures amplification efficiency
RDS(on)On-state resistanceImpacts power dissipation
fTTransition frequencyLimits high-frequency performance

5. Application Fields

Major industries utilizing JFETs include: - Audio equipment: Guitar amplifiers, microphone preamps - Test & measurement: Oscilloscopes, signal analyzers - Industrial control: Sensor interfaces, process control - Medical devices: ECG machines, diagnostic equipment - Communication systems: RF front-ends, satellite receivers

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TI (Texas Instruments)J111General-purpose N-channel JFET
ON Semiconductor2N5457High-voltage switching applications
Infineon TechnologiesBF862Low-noise RF amplifier JFET
STMicroelectronicsSTJ105Power JFET for industrial systems

7. Selection Guidelines

Consider the following factors when selecting JFETs: - Application type: Audio (low noise), switching (high IDSS), or RF (high fT) - Operating conditions: Temperature range, voltage requirements - Package type: Through-hole for prototyping vs. surface-mount for mass production - Cost vs performance: Balance between specifications and budget constraints

8. Industry Trends

Emerging trends shaping JFET development include: - Development of wide-bandgap JFETs using SiC/GaN for high-power applications - Integration with CMOS technology for mixed-signal systems - Miniaturization for portable electronics - Enhanced radiation-hardened variants for aerospace applications - Growing adoption in bio-sensing and IoT edge devices

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