Thyristors - TRIACs

Image Part Number Description / PDF Quantity Rfq
T2550-12G-TR

T2550-12G-TR

STMicroelectronics

TRIAC ALTERNISTOR 1.2KV D2PAK

12410

T835T-8T

T835T-8T

STMicroelectronics

TRIAC ALTERNISTOR 800V TO-220AB

1939

T1635H-6T

T1635H-6T

STMicroelectronics

TRIAC ALTERNISTOR 600V TO220AB

1745

BTA316B-600E,118

BTA316B-600E,118

WeEn Semiconductors Co., Ltd

TRIAC SENS GATE 600V 16A D2PAK

0

BT134W-600,115

BT134W-600,115

WeEn Semiconductors Co., Ltd

TRIAC 600V 1A SC73

0

QK008RH4TP

QK008RH4TP

Wickmann / Littelfuse

ALTNSTR 1000V 8A 35-35-35 MA TO2

0

BTA12-700BWRG

BTA12-700BWRG

STMicroelectronics

TRIAC ALTERNISTOR 700V TO220AB

150

BTA312B-600D,118

BTA312B-600D,118

WeEn Semiconductors Co., Ltd

NOW WEEN - BTA312B-600D - 3 QUAD

4050

Q4012NH5TP

Q4012NH5TP

Wickmann / Littelfuse

TRIAC ALTERNISTOR 400V 12A TO263

0

QJ6025LH5TP

QJ6025LH5TP

Wickmann / Littelfuse

ALTERNISTOR TRIAC 25A TO220AB

0

BTA225B-600B,118

BTA225B-600B,118

WeEn Semiconductors Co., Ltd

TRIAC 600V 25A D2PAK

363

TIL3020

TIL3020

Texas Instruments

TRIAC OUTPUT OPTOCOUPLER

2930

ACTT16-800CTNQ

ACTT16-800CTNQ

WeEn Semiconductors Co., Ltd

ACTT16-800CTN/SIL3P/STANDARD M

0

QK010R4TP

QK010R4TP

Wickmann / Littelfuse

TRIAC 1000V 10A 25-25-25 MA TO22

0

BTB24-600CWRG

BTB24-600CWRG

STMicroelectronics

TRIAC ALTERNISTOR 600V TO220AB

4881

NTE5641

NTE5641

NTE Electronics, Inc.

TRIAC 200V 2.5A TO5

84

T835H-6I

T835H-6I

STMicroelectronics

TRIAC ALTERNISTOR 600V TO220AB

2000

BT131-600/DG,116

BT131-600/DG,116

NXP Semiconductors

NOW WEEN - BT131-600 - 4 QU+E379

10788

L601E8

L601E8

Wickmann / Littelfuse

TRIAC SENS GATE 600V 1A TO92

0

Z0109NA0,412

Z0109NA0,412

WeEn Semiconductors Co., Ltd

TRIAC SENS GATE 800V 1A TO92-3

1923

Thyristors - TRIACs

1. Overview

TRIAC (Triode for Alternating Current) is a three-terminal semiconductor device belonging to the thyristor family. It enables bidirectional current flow control in AC circuits through a single gate terminal. As a key component in power electronics, TRIACs are widely used for phase control, switching, and regulation of AC loads. Their ability to conduct current in both directions makes them ideal for applications requiring full-wave control, such as dimmers and motor speed regulators.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
Standard TRIAC General-purpose with moderate gate sensitivity Light dimmers, heater controls
Sensitive Gate TRIAC Low gate trigger current ( 5mA) Microcontroller-driven circuits
Logic Level TRIAC Compatible with 3.3V/5V logic signals Smart home automation systems
High dv/dt TRIAC Enhanced immunity to voltage spikes Industrial motor drives

3. Structure and Composition

TRIACs feature a four-layer (PNPN) silicon structure with three electrodes: Main Terminal 1 (MT1), Main Terminal 2 (MT2), and Gate (G). The symmetrical design allows bidirectional conduction. Modern TRIACs incorporate:

  • Dielectric passivation layers for voltage stability
  • Aluminum gate metallization
  • Epitaxial silicon wafers with precise doping profiles
  • Plastic encapsulation (TO-220/TO-92 packages)

4. Key Technical Parameters

Parameter Description Typical Range
Breakover Voltage (VBO) Minimum voltage to initiate conduction 200-1200V
Gate Trigger Current (IGT) Required gate current for turn-on 5-50mA
Holding Current (IH) Minimum current to maintain conduction 5-50mA
RMS On-State Current (IT(RMS)) Continuous load current capacity 0.5-50A
dv/dt Rating Voltage change immunity 10-50V/ s

5. Application Fields

  • Consumer Electronics: Smart lighting systems, washing machine water level controls
  • Industrial Automation: AC motor speed controllers, solid-state relays
  • Power Systems: Voltage regulators, reactive power compensators
  • Automotive: Electric vehicle charging circuits, HVAC controls
  • Renewable Energy: Solar inverter AC switching circuits

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Parameters
STMicroelectronics BT136-600E 600V, 4A, 10mA IGT
ON Semiconductor Q6015LH 600V, 15A, 15mA IGT
Infineon Technologies BTA16-600B 600V, 16A, 50mA IGT
Microsemi MAC97A8 600V, 8A, 5mA IGT

7. Selection Guidelines

  1. Verify VBO exceeds maximum circuit voltage by 20%
  2. IT(RMS) should be 1.5 load current
  3. Match IGT with driver circuit capability
  4. Consider heatsinking requirements
  5. Select dv/dt rating based on load inductance
  6. Use zero-crossing detection for EMI-sensitive applications

8. Industry Trends

Key development trends include:

  • Integration with SiC/GaN for higher efficiency
  • Smart packaging with built-in temperature sensors
  • Miniaturization for space-constrained applications
  • Improved immunity to electromagnetic interference
  • AI-driven predictive maintenance in industrial systems

Market growth is driven by smart grid implementations and EV charging infrastructure expansion, with a projected CAGR of 6.8% through 2030.

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