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TIC201S

Texas Instruments

TIC201S by Texas Instruments

TIC201S by Texas Instruments is a TRIAC with 2.5A RMS current, 700V repetitive peak off-state voltage, and 25mA max DC gate trigger current. It operates b/w -40°C to 110°C, making it ideal for AC power control applications requiring precise switching capabilities.

Median Price

$1.529

Lifecycle Status

Suppliers In-Stock

4

In-Stock Inventory

1k+

Distributors (In-Stock)

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Vyrian

USA . 8,116 parts In-Stock

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Digiode

USA . 529 parts In-Stock

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529

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Lakeland Logistics Inc

USA . 188 parts In-Stock

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Bristol Electronics

USA . 188 parts In-Stock

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$1.529

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$1.419

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188

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$1.529

$1.419

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Distributors (Availability)

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Parana Technologies

USA . 1,794 parts In-Stock

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$1.899

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$2.438

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DigiPath Technology Company

USA . 533 parts In-Stock

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$2.091

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$1.924

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533

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$1.924

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ChromeModa Solutions

Germany . 4,817 parts In-Stock

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$2.134

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$1.750

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IDEA Electronic Components Group

UK . 2,060 parts In-Stock

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$2.134

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$1.921

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AZTECH Wire

Italy . 298 parts In-Stock

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$6.621

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One Stop Electronics

USA . 871 parts In-Stock

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$25.100

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Kepictronics

USA . 15,000 parts In-Stock

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Corphita

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Assy Fe

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Overview

Upgrade your electronic projects with the TIC201S by Texas Instruments, a top-quality Triode for Alternating Current (TRIAC) that offers maximum performance and reliability. Manufactured by industry leader Texas Instruments, this TRIAC is designed to withstand extreme temperatures and deliver seamless operation. From dimmer switches to motor speed control, the TIC201S is perfect for a wide range of applications. Experience the value and benefits of using this high-quality component in your next project, ensuring efficiency and precision every time.

Feature Benefit Bullets

Maximum DC Gate Trigger Current: 25 mA

The high maximum DC gate trigger current ensures reliable and consistent triggering of the TRIAC, making it ideal for applications that require precise control and low noise.

Maximum Leakage Current: 1 mA

The low maximum leakage current helps in reducing power consumption and improving efficiency of the device, making it suitable for energy-saving applications.

Maximum Operating Temperature: 110 °C

The high maximum operating temperature allows the TRIAC to operate in a wide range of environments without compromising performance, making it versatile for various industrial and commercial applications.

Trigger Device Type: TRIAC

Being a TRIAC, this device enables bidirectional control of current flow, making it suitable for AC power control applications such as dimmer switches, motor speed control, and heating control.

Minimum Operating Temperature: -40 °C

The low minimum operating temperature ensures that the TRIAC can still function effectively in cold environments, making it suitable for applications that require reliable performance under extreme conditions.

Maximum RMS On-state Current: 2.5 A

The high maximum RMS on-state current capability of the TRIAC makes it suitable for handling moderate to high AC loads, allowing for robust performance in various power control applications.

Maximum DC Gate Trigger Voltage: 2.5 V

The low maximum DC gate trigger voltage requirement allows for easy and efficient triggering of the TRIAC, enabling precise control over power switching with minimal input signal.

Repetitive Peak Off-state Voltage: 700 V

The high repetitive peak off-state voltage rating ensures the TRIAC can withstand transient voltage spikes and surges, making it suitable for applications where protection against voltage fluctuations is crucial.

Minimum Critical Rate of Rise of Commutation Voltage: 2 V/us

The minimum critical rate of rise of commutation voltage specification ensures fast and efficient commutation of the TRIAC, reducing stress on the device and enhancing its reliability in rapidly switching AC circuits.

Minimum Critical Rate of Rise of Off-state Voltage: 50 V/us

The minimum critical rate of rise of off-state voltage specification indicates the TRIAC's ability to handle sudden changes in voltage levels with minimal risk of false triggering or malfunction, ensuring stable operation in dynamic AC power systems.

Maximum Holding Current: 30 mA

The high maximum holding current capability of the TRIAC ensures that it can maintain conduction even after the gate signal is removed, making it suitable for applications where sustained current flow is required in the on-state.

Technical Specifications

Triode For Alternating Current (TRIAC) TIC201S attributes and parameters. Explore more Triode For Alternating Current (TRIAC) devices from Texas Instruments

Specs

Minimum Critical Rate of Rise of Commutation Voltage:

2 V/us

Minimum Critical Rate of Rise of Off-state Voltage:

50 V/us

Maximum DC Gate Trigger Current:

25 mA

Maximum DC Gate Trigger Voltage:

2.5 V

Maximum Holding Current:

30 mA

Maximum Leakage Current:

1 mA

Maximum Operating Temperature:

110 Cel

Minimum Operating Temperature:

-40 Cel

Peak Reflow Temperature (C):

NOT SPECIFIED

Maximum RMS On-state Current:

2.5 A

Repetitive Peak Off-state Voltage:

700 V

Sub-Category:

TRIACs

Surface Mount:

NO

Maximum Time At Peak Reflow Temperature (s):

NOT SPECIFIED

Trigger Device Type:

Trade Compliance

TIC201S Triggering Devices trade compliance attributes, and parameters.

ECCN

EAR99

ECCN Governance

EAR

Manufacturer Highlights

Texas Instruments

Texas Instruments Inc. (TI) is one of the world's leading semiconductor companies and a global leader in analog and digital signal processing technology. The company has had a major impact on the electronics industry for over 80 years, manufacturing integrated circuits (ICs), software and subsystems that leverage high-performance computing capabilities. It offers an extensive portfolio of solutions for a wide range of industries, from aerospace to medical devices and consumer products to communication systems. Over its long history, TI has become synonymous with quality, reliability and innovation. Today, TI is one of the largest semiconductor companies in the world with operations in more than 30 countries across six continents.

The material and information contained is this video is for educational and general information purposes. All rights remain with respective rightsholders. Fair Use Statement

Management team

President, CEO

Haviv Ilan

Chairman

Richard K. Templeton

Senior VP, CFO

Rafael R. Lizardi

Manufacturer fab locations 15

Fab name Location Fab Initiation Wafer Capacity

M - Fab

Fabrication

Fab Initiation

1997

USA

South Portland

Wafer Capacity

32,000

1997

32,000

D - FAB

Fabrication

Fab Initiation

1966

USA

Dallas

Wafer Capacity

42,000

1966

42,000

D MOS - 6

Fabrication

Fab Initiation

2002

USA

Dallas

Wafer Capacity

25,000

2002

25,000

D MOS - 5

Fabrication

Fab Initiation

1995

USA

Dallas

Wafer Capacity

75,000

1995

75,000

Miho - 8

Fabrication

Fab Initiation

1980

Japan

Inashiki

Wafer Capacity

43,000

1980

43,000

S FAB 1

Fabrication

Fab Initiation

1966

USA

Sherman

Wafer Capacity

91,000

1966

91,000

F - FAB

Fabrication

Fab Initiation

2001

Germany

Freising

Wafer Capacity

37,000

2001

37,000

R Fab 1

Fabrication

Fab Initiation

2010

USA

Richardson

Wafer Capacity

40,000

2010

40,000

D HC Line

Fabrication

Fab Initiation

1999

USA

Dallas

Wafer Capacity

2,000

1999

2,000

JV3

Fabrication

Fab Initiation

2001

Japan

Aizu Wakamatsu

Wafer Capacity

45,000

2001

45,000

C - FAB

Fabrication

Fab Initiation

2007

China

Chengdu

Wafer Capacity

30,000

2007

30,000

L - Fab

Fabrication

Fab Initiation

2015

USA

Lehi

Wafer Capacity

70,000

2015

70,000

R - Fab 2

Fabrication

Fab Initiation

2022

USA

Richardson

Wafer Capacity

2022

S - FAB 2

Fabrication

Fab Initiation

2025

USA

Sherman

Wafer Capacity

2025

S - FAB 3

Fabrication

Fab Initiation

2028

USA

Sherman

Wafer Capacity

2028

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