TVS - Thyristors

Image Part Number Description / PDF Quantity Rfq
P2706UCLTP

P2706UCLTP

Wickmann / Littelfuse

THYRISTOR 230V 400A 6SMD GW

0

P0904UALRP

P0904UALRP

Wickmann / Littelfuse

THYRISTOR 75V/175V 150A 6SMD GW

0

NP0720SCMCT3G

NP0720SCMCT3G

SILICON SURGE PROTECTOR

0

TISP4C350H3BJR-S

TISP4C350H3BJR-S

J.W. Miller / Bourns

THYRISTOR 275V 100A DO214AA

15238

TISP4360M3BJR-S

TISP4360M3BJR-S

J.W. Miller / Bourns

THYRISTOR 290V 220A DO214AA

0

P1402ABL60

P1402ABL60

Wickmann / Littelfuse

THYRISTOR 58V/116V 250A TO220-3

0

NP2100SCT3G

NP2100SCT3G

SILICON SURGE PROTECTOR

1735

P1201SCLRP

P1201SCLRP

Wickmann / Littelfuse

SIDACTOR UNI 105V 500A DO214 2L

0

TISP4220M3AJR-S

TISP4220M3AJR-S

J.W. Miller / Bourns

THYRISTOR 160V 220A DO214AC

0

P2706UBLRP

P2706UBLRP

Wickmann / Littelfuse

THYRISTOR 230V 250A 6SMD GW

0

P3500FNLTP

P3500FNLTP

Wickmann / Littelfuse

THYRISTOR 320V 3KA TO262M-2

18

P3206UBLRP

P3206UBLRP

Wickmann / Littelfuse

THYRISTOR 270V 250A 6SMD GW

0

SMP75-8

SMP75-8

STMicroelectronics

THYRISTOR 8V 250A DO214AA

2629

P2353ACLRP

P2353ACLRP

Wickmann / Littelfuse

THYRISTOR 200V 400A TO220-3

0

P0084UAMCLTP

P0084UAMCLTP

Wickmann / Littelfuse

THYRISTOR 6V/12V 150A 6SMD GW

0

P0720SALRP

P0720SALRP

Wickmann / Littelfuse

THYRISTOR 65V 150A DO214AA

0

P1504UBLRP

P1504UBLRP

Wickmann / Littelfuse

THYRISTOR 140V/280V 250A 6SMD GW

0

SMP1500SCMC

SMP1500SCMC

STMicroelectronics

THYRISTOR 150V 400A DO214AA

0

P2703AAL

P2703AAL

Wickmann / Littelfuse

THYRISTOR 230V 150A TO220-3

0

TISP4030L1BJR-S

TISP4030L1BJR-S

J.W. Miller / Bourns

THYRISTOR 15V 120A DO214AA

0

TVS - Thyristors

1. Overview

Transient Voltage Suppression (TVS) diodes and Thyristors are critical components in circuit protection systems. TVS diodes are semiconductor devices designed to protect sensitive electronics from voltage spikes caused by electrostatic discharge (ESD), inductive load switching, or lightning strikes. Thyristors, a family of semiconductor devices including Silicon-Controlled Rectifiers (SCRs) and Triacs, are used for high-power switching and overvoltage protection. Both technologies are essential in modern electronics, ensuring reliability in applications ranging from consumer devices to industrial machinery.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Unidirectional TVSProtects against single-polarity transientsPower supplies, DC circuits
Bidirectional TVSClamps positive/negative transients simultaneouslyAC lines, communication interfaces
Silicon-Controlled Rectifier (SCR)Latching behavior for overvoltage crowbar protectionPower converters, motor drives
TriacAC current control and bidirectional switchingLighting control, HVAC systems

3. Structure and Composition

TVS diodes typically use a heavily doped PN junction structure with a large cross-sectional area to absorb transient energy. They are encapsulated in plastic packages (e.g., DO-214) with two terminals. Thyristors feature a four-layer PNPN structure with three terminals (anode, cathode, gate). Advanced models incorporate passivation layers and metal-over-glass packaging for thermal stability. Both devices use semiconductor materials like silicon, with doping profiles optimized for specific breakdown voltages.

4. Key Technical Specifications

ParameterDescriptionImportance
Breakdown Voltage (Vbr)Minimum voltage causing conductionMatches protection level to circuit requirements
Clamping Voltage (Vc)Voltage across device during conductionDetermines stress on protected components
Response TimeTime to transition from off to on stateCritical for protecting against fast transients
Surge Current Rating (Ipp)Maximum allowable transient currentEnsures survival under worst-case scenarios
Holding Current (Ih)Thyristor-specific: Maintains conduction stateAffects reset behavior in crowbar circuits

5. Application Fields

Key industries include:

  • Telecommunications: Ethernet transceivers, fiber optic modules
  • Industrial Automation: PLCs, motor drives
  • Consumer Electronics: Smartphones, power adapters
  • Automotive: CAN bus protection, alternator circuits
  • Renewable Energy: Solar inverters, wind turbine controllers

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductsKey Features
LittelfuseSM8S Series TVS8kV ESD protection, low leakage current
STMicroelectronicsSTRIP Series ThyristorsIntegrated protection for AC loads
VishayTPSMB Series Bidirectional TVSAEC-Q101 qualified for automotive use
ON SemiconductorNUD3160 SCRIntegrated gate drive for crowbar circuits

7. Selection Guidelines

Key considerations:

  1. Match breakdown voltage to system operating voltage (typically 10-15% higher)
  2. Ensure clamping voltage is below the maximum rating of protected ICs
  3. Select surge current capacity based on expected fault conditions
  4. For thyristors: Evaluate holding current vs. load characteristics
  5. Consider packaging (SMD vs. through-hole) for PCB integration

Example: For a 12V automotive circuit, a bidirectional TVS with 18V breakdown voltage and 40A surge rating would protect against load dump transients while surviving ISO 7637 test pulses.

8. Industry Trends

Emerging trends include:

  • Integration of TVS and EMI filtering in single packages
  • Wide bandgap materials (SiC/GaN) enabling higher temperature operation
  • Smart thyristors with integrated diagnostics for predictive maintenance
  • Miniaturization driven by 5G infrastructure and IoT device demands
  • Rail-to-rail protection architectures in high-speed data lines
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