Diodes - Variable Capacitance (Varicaps, Varactors)

Image Part Number Description / PDF Quantity Rfq
MA2737600L

MA2737600L

Panasonic

DIODE VARIABLE CAP 6V SSS-MINI

1249

MA27V1500L

MA27V1500L

Panasonic

DIODE VARIABLE CAP 6V SSS-MINI

341

MA27V0200L

MA27V0200L

Panasonic

DIODE VARIABLE CAP 6V SSS-MINI

18462

MA27V0300L

MA27V0300L

Panasonic

DIODE VARIABLE CAP 6V SSS-MINI

74977

MA26V0300A

MA26V0300A

Panasonic

DIODE VARIABLE CAP 6V 1006

9950

MA27V0900L

MA27V0900L

Panasonic

DIODE VARIABLE CAP 6V SSS-MINI

16295

MA26V0500A

MA26V0500A

Panasonic

DIODE VARIABLE CAP 10V 1006

9824

MA2S30400L

MA2S30400L

Panasonic

DIODE VARIABLE CAP 30V SS-MINI

13

MA2SV1500L

MA2SV1500L

Panasonic

DIODE VARIABLE CAP 6V SSMINI-2P

340

MA2SV0900L

MA2SV0900L

Panasonic

DIODE VARIABLE CAP 6V SSMINI-2P

4577

MA26V1500A

MA26V1500A

Panasonic

DIODE VARIABLE CAP 6V 1006

9978

MA27V0500L

MA27V0500L

Panasonic

DIODE VARIABLE CAP 10V SSS-MINI

7390

MA27V1200L

MA27V1200L

Panasonic

DIODE VARIABLE CAP 8V SSS-MINI

12688

MA27V2000L

MA27V2000L

Panasonic

DIODE VARIABLE CAP 6V SSSMINI-2P

19560

MA27V2200L

MA27V2200L

Panasonic

DIODE VARIABLE CAP 6V SSSMINI-2P

18971

MA26V0400A

MA26V0400A

Panasonic

DIODE VARIABLE CAP 6V 1006

9796

MA26V0100A

MA26V0100A

Panasonic

DIODE VARIABLE CAP 6V 1006

9993

MA26V1100A

MA26V1100A

Panasonic

DIODE VARIABLE CAP 8V 1006

9649

MA26V1600A

MA26V1600A

Panasonic

DIODE VARIABLE CAP 6V 1006

9952

MA27V0400L

MA27V0400L

Panasonic

DIODE VARIABLE CAP 6V SSS-MINI

3554

Diodes - Variable Capacitance (Varicaps, Varactors)

1. Overview

Variable Capacitance Diodes (Varicaps or Varactors) are specialized semiconductor devices that exploit the voltage-dependent capacitance of a reverse-biased p-n junction. These components act as voltage-controlled capacitors, enabling electronic tuning and frequency modulation in various circuits. Their ability to provide precise capacitance adjustment without mechanical movement makes them critical in modern communication systems, signal processing, and RF/wireless applications.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Hyperabrupt VaractorsNon-linear C-V curve with high capacitance ratioVoltage-Controlled Oscillators (VCOs), Frequency Synthesizers
Abrupt Junction VaractorsLinear C-V characteristicsParametric Amplifiers, Tunable Filters
Double VaractorsDual back-to-back junctions for balanced operationModulators, Demodulators, Microwave Switches
High-Voltage VaractorsRated for >100V reverse biasPower Tuning Circuits, Industrial RF Equipment

3. Structure and Composition

Varactors are constructed with a p-n junction optimized for controlled depletion region expansion. Key structural elements include:

  • Doped semiconductor layers (typically silicon or GaAs)
  • Metallized contacts with passivation layers
  • Hermetic glass or plastic encapsulation
  • Specific junction geometry to define capacitance-voltage (C-V) characteristics

The depletion region width varies with reverse bias voltage, altering the effective capacitance according to the formula: C = A/(W+d), where W is depletion width and d is fixed dielectric thickness.

4. Key Technical Specifications

ParameterSignificance
Capacitance Range (Cmin-Cmax)Determines tuning range at specific bias voltages
Q-Factor (Quality Factor)Measures energy loss at operating frequencies
Breakdown Voltage (Vbr)Maximum allowable reverse voltage
Series Resistance (Rs)Affects power handling capability
Temperature CoefficientDefines capacitance stability over temperature
Capacitance Ratio (Cmax/Cmin)Indicates tuning efficiency

5. Application Fields

Major application areas include:

  • Telecommunications: Cellular base stations, Satellite receivers, Wi-Fi equipment
  • Consumer Electronics: Smartphones, Television tuners, Bluetooth devices
  • Industrial: Test and measurement equipment, RFID systems
  • Automotive: Keyless entry systems, Radar sensors
  • Specialized: Phase-locked loops (PLLs), Parametric amplifiers

Case Study: In a smartphone transceiver, varactors enable adaptive antenna tuning to maintain optimal signal strength across multiple frequency bands (700MHz-6GHz).

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
ON SemiconductorMVAM SeriesHigh Q (>1000), 12pF-50pF range
STMicroelectronicsBB8XX SeriesUltra-small SMD packaging, 1-30pF
Skyworks SolutionsSMV SeriesHigh linearity for CATV applications
NXP SemiconductorsBBY SeriesAutomotive-grade temperature stability

7. Selection Guidelines

Key selection criteria:

  • Match capacitance range to required frequency tuning range
  • Select appropriate Q-factor for target frequency (higher Q for microwave applications)
  • Consider temperature stability requirements
  • Evaluate package type (SMD vs. through-hole) for PCB integration
  • Verify voltage ratings against circuit requirements
  • Assess non-linearity requirements for modulation applications

For high-reliability applications, prioritize devices with AEC-Q101 automotive qualification.

8. Industry Trends

Current development trends include:

  • Increased integration with MEMS technology for hybrid tuning solutions
  • Development of GaN-based varactors for millimeter-wave applications
  • Improved capacitance ratios through advanced junction engineering
  • Nanometer-scale dielectrics for ultra-low voltage operation
  • Embedded varactors in SiP (System-in-Package) modules

The market is projected to grow at 6.2% CAGR through 2027, driven by 5G infrastructure and IoT connectivity demands.

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