TVS - Varistors, MOVs

Image Part Number Description / PDF Quantity Rfq
CG0603MLC-12LE

CG0603MLC-12LE

J.W. Miller / Bourns

VARISTOR 0603

20716

PV130K3225R2

PV130K3225R2

J.W. Miller / Bourns

PV SERIES 130V 3225 PKG

1498

MOV-14D182K

MOV-14D182K

J.W. Miller / Bourns

VARISTOR 1.8KV 4.5KA DISC 14MM

0

CVQ275K23BL1

CVQ275K23BL1

J.W. Miller / Bourns

CVQ 275VRMS 23MM BULK L1

0

MOV-10D101KTR

MOV-10D101KTR

J.W. Miller / Bourns

VARISTOR 100V 2.5KA DISC 10MM

0

MOV-10D241KTR

MOV-10D241KTR

J.W. Miller / Bourns

VARISTOR 240V 2.5KA DISC 10MM

0

AV20K1812801NIR1

AV20K1812801NIR1

J.W. Miller / Bourns

VARISTOR

975

MOV-14D781K

MOV-14D781K

J.W. Miller / Bourns

VARISTOR 780V 4.5KA DISC 14MM

0

MOV-20D151K

MOV-20D151K

J.W. Miller / Bourns

VARISTOR 150V 6.5KA DISC 20MM

0

MOV-20D431KTR

MOV-20D431KTR

J.W. Miller / Bourns

VARISTOR 430V 6.5KA DISC 20MM

5153

MOV-07D201K

MOV-07D201K

J.W. Miller / Bourns

VARISTOR 200V 1.2KA DISC 7MM

0

MOV-07D820K

MOV-07D820K

J.W. Miller / Bourns

VARISTOR 82V 1.2KA DISC 7MM

3323

MOV-20D621KTR

MOV-20D621KTR

J.W. Miller / Bourns

VARISTOR 620V 6.5KA DISC 20MM

0

CV150K7BL1

CV150K7BL1

J.W. Miller / Bourns

CV 150VRMS 7MM BULK L1

0

MOV-10D271K

MOV-10D271K

J.W. Miller / Bourns

VARISTOR 270V 2.5KA DISC 10MM

931

MOV-10D470K

MOV-10D470K

J.W. Miller / Bourns

VARISTOR 47V 500A DISC 10MM

0

MOV-20D681K

MOV-20D681K

J.W. Miller / Bourns

VARISTOR 680V 6.5KA DISC 20MM

4499

MOV-10D391K

MOV-10D391K

J.W. Miller / Bourns

VARISTOR 390V 2.5KA DISC 10MM

1

MOV-20D470KTR

MOV-20D470KTR

J.W. Miller / Bourns

VARISTOR 47V 2KA DISC 20MM

0

MOV-07D270KTR

MOV-07D270KTR

J.W. Miller / Bourns

VARISTOR 27V 250A DISC 7MM

1995

TVS - Varistors, MOVs

1. Overview

Transient Voltage Suppressors (TVS), Varistors, and Metal Oxide Varistors (MOVs) are critical components for protecting electronic circuits from voltage spikes and electrostatic discharge (ESD). These devices clamp excessive voltage to safe levels, preventing damage to sensitive components. TVS diodes are semiconductor-based solutions with fast response times, while Varistors (including MOVs) use nonlinear resistive materials to absorb energy. Their importance spans industries like telecommunications, automotive, and consumer electronics, ensuring reliability in environments exposed to electrical surges.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
TVS DiodesUnidirectional/bidirectional clamping, sub-nanosecond response time, low leakage currentCommunication interfaces (USB, HDMI), microcontrollers, power supplies
Zinc Oxide VaristorsHigh energy absorption, voltage-dependent resistance, aging characteristicsPower line protection, industrial motor drives, surge protection strips
MOVsSpecialized varistors with metal oxide ceramics, optimized for AC/DC applicationsAppliances, LED lighting, renewable energy systems

3. Structure and Composition

TVS diodes employ a PN junction semiconductor structure with doping profiles optimized for breakdown characteristics. Varistors consist of polycrystalline ceramic materials (typically zinc oxide grains with additives) sandwiched between metal electrodes, encapsulated in epoxy or molded housings. MOVs use similar materials to varistors but with enhanced grain boundary engineering for improved voltage clamping. All devices incorporate termination coatings (e.g., silver, tin) for PCB mounting compatibility.

4. Key Technical Parameters

ParameterDescriptionImportance
Clamping Voltage (VCLAMP)Voltage level during surge conductionDetermines protection level for downstream components
Response TimeTime to transition from blocking to clamping modeTVS: 0.5-10 ns; MOVs: 10-50 ns
Energy Absorption (WADM)Maximum surge energy handling capabilityMeasured in joules (J), critical for industrial applications
Leakage CurrentOff-state current at rated voltageImpacts power efficiency, typically <100 A

5. Application Fields

Key industries include:

  • Consumer Electronics: Smartphone charging circuits, TV power supplies
  • Industrial Automation: PLCs, motor drives, sensor interfaces
  • Automotive: ECU protection, CAN bus interfaces, battery management systems
  • Renewable Energy: Solar inverters, wind turbine controllers

Case Study: MOVs in smart meters provide 10kA surge protection against grid transients.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Specifications
LittelfuseSM712-0212A, 13.3V clamping, bidirectional TVS for RS-485
BournsV14450A14mm MOV, 450VAC, 210J energy rating
STMicroelectronicsTV05C0600.5W, 6V, ultra-small TVS for IoT devices

7. Selection Guidelines

Key considerations:

  • Operating voltage vs. clamping voltage margin
  • Surge current requirements (8/20 s waveform standard)
  • Package size constraints (SMD vs. through-hole)
  • Environmental conditions (temperature, humidity)
  • Lifespan expectations (MOVs degrade with repeated surges)

8. Industry Trends

Emerging trends include:

  • Miniaturization: Sub-0201 TVS devices for mobile applications
  • Higher energy density: MOVs with >1000J/cm absorption
  • Integration: Combined ESD and surge protection solutions
  • Automotive focus: AEC-Q qualified devices for 48V systems
  • Green manufacturing: Lead-free and RoHS-compliant materials
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