Diodes - Zener - Arrays

Image Part Number Description / PDF Quantity Rfq
AZ23C4V3 RFG

AZ23C4V3 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 4.3V SOT23

0

AZ23C16 RFG

AZ23C16 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 16V SOT23

0

AZ23C6V2 RFG

AZ23C6V2 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 6.2V SOT23

0

AZ23C22 RFG

AZ23C22 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 22V SOT23

0

AZ23C20 RFG

AZ23C20 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 20V SOT23

0

AZ23C15 RFG

AZ23C15 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 15V SOT23

0

AZ23C27 RFG

AZ23C27 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 27V SOT23

0

AZ23C36 RFG

AZ23C36 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 36V SOT23

0

AZ23C6V8 RFG

AZ23C6V8 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 6.8V SOT23

0

AZ23C13 RFG

AZ23C13 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 13V SOT23

0

AZ23C43 RFG

AZ23C43 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 43V SOT23

0

AZ23C47 RFG

AZ23C47 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 47V SOT23

0

AZ23C3V0 RFG

AZ23C3V0 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 3V SOT23

0

AZ23C5V6 RFG

AZ23C5V6 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 5.6V SOT23

0

AZ23C51 RFG

AZ23C51 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 51V SOT23

0

AZ23C33 RFG

AZ23C33 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 33V SOT23

0

AZ23C11 RFG

AZ23C11 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 11V SOT23

0

AZ23C4V7 RFG

AZ23C4V7 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 4.7V SOT23

0

AZ23C18 RFG

AZ23C18 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 18V SOT23

0

AZ23C7V5 RFG

AZ23C7V5 RFG

TSC (Taiwan Semiconductor)

DIODE ZENER ARRAY 7.5V SOT23

0

Diodes - Zener - Arrays

1. Overview

Zener diode arrays are discrete semiconductor devices integrating multiple Zener diodes in a single package. They leverage the Zener breakdown effect to provide precise voltage regulation, overvoltage protection, and reference voltage generation. These arrays are critical in modern electronics for ensuring circuit stability, protecting sensitive components from voltage spikes, and enabling compact PCB designs. Their importance spans industries like automotive, telecommunications, and industrial automation.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Unidirectional Zener ArraysSingle-direction voltage clampingESD protection in data lines
Bidirectional Zener ArraysDouble-sided voltage regulationAC voltage stabilization circuits
Multi-Voltage ArraysMultiple Zener diodes with different VzPower supply sequencing
Low-Leakage ArraysMinimized reverse leakage currentBattery-powered devices

3. Structure and Composition

Zener arrays consist of silicon semiconductor substrates with precisely doped P-N junctions. The die structure includes:

  • Doped regions creating tailored breakdown voltages
  • Metallic contacts for anode/cathode connections
  • Passivation layers preventing surface leakage
  • Thermal management structures (e.g., heat spreaders)
Common packaging types include SOIC, TSSOP, and DIP formats with standardized pinouts.

4. Key Technical Specifications

ParameterDescriptionTypical Range
Zener Voltage (Vz)Voltage regulation setpoint2.4V - 200V
Power Dissipation (Pd)Maximum thermal energy handling100mW - 5W
Zener Current (Iz)Operating current range1mA - 100mA
Dynamic Impedance (Zz)Voltage variation under load1 - 50
Temperature CoefficientVoltage stability vs temperature 0.05%/ C

5. Application Fields

Key industries utilizing Zener arrays include:

  • Telecommunications: Line protection for transceivers
  • Automotive: ECU voltage stabilization
  • Industrial Control: Sensor signal conditioning
  • Consumer Electronics: Power management circuits
Typical devices: SMPS converters, IoT sensors, motor controllers.

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
ON SemiconductorNUP41066-channel ESD protection array
STMicroelectronicsSMF48A48V bidirectional protection
NXP SemiconductorsPESD1CANAutomotive CAN bus protection
Texas InstrumentsZHCS100Ultra-low leakage voltage reference

7. Selection Guidelines

Key selection criteria:

  • Match Vz to target regulation voltage ( 5% tolerance)
  • Verify Pd rating exceeds maximum power dissipation
  • Consider package thermal resistance
  • Select appropriate leakage current level
  • For arrays: Ensure channel independence and crosstalk specifications
Application Case: In automotive ECU design, NXP PESD1CAN selected for its AEC-Q100 qualification and 40kV ESD robustness.

8. Industry Trends

Emerging trends include:

  • Miniaturization: 0.4mm pitch WLCSP packages
  • Integration with TVS diodes for hybrid protection
  • Wide bandgap materials (SiC) for higher Vz stability
  • Automotive-grade arrays supporting 48V systems
  • RoHS-compliant packaging materials
Market demand driven by 5G infrastructure and EV battery management systems.

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