TVS - Diodes

Image Part Number Description / PDF Quantity Rfq
SMF8V0TFTR

SMF8V0TFTR

ROHM Semiconductor

TVS DIODE 8VWM 13.6VC PMDU

2990

VS3V3BN1HST15R

VS3V3BN1HST15R

ROHM Semiconductor

RASMID SERIES - TRANSIENT VOLTAG

14890

VS14VUA1LAMTR

VS14VUA1LAMTR

ROHM Semiconductor

TRANSIENT VOLTAGE SUPPRESSOR - V

0

VS5V0BN1EST15R

VS5V0BN1EST15R

ROHM Semiconductor

TVS DIODE 5V 18V DSN0603-2

28645

VS30VUA1LAMTR

VS30VUA1LAMTR

ROHM Semiconductor

TRANSIENT VOLTAGE SUPPRESSOR - V

2868

EDZCVT2R6.8B

EDZCVT2R6.8B

ROHM Semiconductor

TRANSIENT VOLTAGE SUPPRESSOR - E

5948

EDZCVFHT2R6.8B

EDZCVFHT2R6.8B

ROHM Semiconductor

TVS DIODE 5VWM EMD2

5439

VS22VUA1LAMTR

VS22VUA1LAMTR

ROHM Semiconductor

TRANSIENT VOLTAGE SUPPRESSOR - V

3000

SMF7V5TR

SMF7V5TR

ROHM Semiconductor

TRANSIENT VOLTAGE SUPPRESSOR - S

2590

VS10VUA1LAMTR

VS10VUA1LAMTR

ROHM Semiconductor

TRANSIENT VOLTAGE SUPPRESSOR - V

3000

VS11VUA1LAMTFTR

VS11VUA1LAMTFTR

ROHM Semiconductor

TVS DIODE 11VWM 18.2VC PMDTM

2940

VS30VUA1LAMTFTR

VS30VUA1LAMTFTR

ROHM Semiconductor

TVS DIODE 30VWM 48.4VC PMDTM

1800

UMZ8.2NUMTL

UMZ8.2NUMTL

ROHM Semiconductor

UMZ8.2NUM IS A TRANSIENT VOLTAGE

2915

UMZ5.1NUMTL

UMZ5.1NUMTL

ROHM Semiconductor

TRANSIENT VOLTAGE SUPPRESSOR - U

2755

UMZ12NUMTL

UMZ12NUMTL

ROHM Semiconductor

TRANSIENT VOLTAGE SUPPRESSOR - U

2880

RSBC6.8CMT2N

RSBC6.8CMT2N

ROHM Semiconductor

TRANSIENT VOLTAGE SUPPRESSOR - R

5031

VS5V0BB1FST27N

VS5V0BB1FST27N

ROHM Semiconductor

RASMID SERIES - TRANSIENT VOLTAG

26000

VS3V3BA1FST27N

VS3V3BA1FST27N

ROHM Semiconductor

RASMID SERIES - TRANSIENT VOLTAG

27000

VS3V3BB1FST27N

VS3V3BB1FST27N

ROHM Semiconductor

RASMID SERIES - TRANSIENT VOLTAG

27000

VS5V0BL1QST18R

VS5V0BL1QST18R

ROHM Semiconductor

RASMID SERIES - TRANSIENT VOLTAG

15550

TVS - Diodes

1. Overview

Transient Voltage Suppression (TVS) Diodes are semiconductor devices designed to protect sensitive electronics from voltage spikes caused by ESD (electrostatic discharge), lightning, or switching events. By clamping transient voltages to safe levels, TVS diodes ensure circuit reliability in modern electronic systems. Their fast response time (<1ps) and low clamping voltage make them critical components in high-speed data lines, power supplies, and automotive electronics.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Unidirectional TVSSingle-polarity protection, asymmetrical voltage responseDC power lines, automotive systems
Bidirectional TVSSymmetrical protection for AC signalsTelecom interfaces (e.g., RJ45), USB 3.0 Multichannel TVSMultiple protection paths in single packageHDMI ports, DisplayPort interfaces Automotive TVSAEC-Q101 qualified, high surge capabilityECU modules, CAN bus protection

3. Structure and Composition

TVS diodes utilize a PN junction semiconductor structure with optimized doping profiles. Key components include:

  • Silicon epitaxial layer for precise voltage control
  • Passivation layer (SiO2/Nitride) to reduce leakage current
  • Backside metallization for low-inductance packaging
  • DO-214, SOD-123, or WCSP packaging variants

4. Key Technical Specifications

ParameterDescriptionImportance
Breakdown Voltage (Vbr)Minimum voltage where TVS activatesDetermines protection threshold
Clamping Voltage (Vc)Max voltage during transient eventMust be below protected IC's max rating
Peak Pulse Current (Ipp)Maximum surge current handlingDefines robustness against large transients
Response Time (tresp)Time to switch from off to on stateCrucial for ESD protection (typically <1ps)
Leakage Current (Ir)Off-state current at working voltageImpacts power efficiency

5. Application Areas

Major industries and typical equipment:

  • Telecommunications: 5G base stations, optical transceivers
  • Automotive: CAN/LIN bus protection, ADAS sensors
  • Industrial: PLCs, motor drives
  • Consumer Electronics: USB Type-C interfaces, Wi-Fi modules
  • Renewable Energy: Solar inverters, wind turbine controllers

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
LittelfuseSP301x SeriesUSB 3.1 Gen2 protection, 0.35pF capacitance
ON SemiconductorNUP410606-channel ESD protection, 30kV HBM
STMicroelectronicsESDA8401Automotive-grade, 150A surge rating
InfineonESD320Single-line protection, 0.25pF for HDMI 2.1

7. Selection Guidelines

Key considerations:

  • Operating voltage must be below Vbr (typically 1.1 Voper)
  • Clamping voltage should stay under protected IC's maximum ratings
  • Packaging selection based on board space and thermal requirements
  • Environmental factors: temperature range, humidity resistance
  • Compliance with standards (IEC 61000-4-2, ISO 10605)

Example: For a 12V automotive circuit, select a bidirectional TVS with Vbr=15V, Vc<30V, and Ipp>50A to handle load dump events.

8. Industry Trends

Key development directions:

  • Miniaturization: 0201 package (0.6 0.3mm) for mobile devices
  • Integration: Combo devices with filters and shielding
  • Higher robustness: 40kV+ ESD protection for industrial IoT
  • Advanced materials: Silicon carbide (SiC) for high-temperature applications
  • AI-driven selection tools for optimized component matching
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