T1035H-6G-TR Allicdata Electronics
Allicdata Part #:

497-8056-2-ND

Manufacturer Part#:

T1035H-6G-TR

Price: $ 0.55
Product Category:

Discrete Semiconductor Products

Manufacturer: STMicroelectronics
Short Description: TRIAC ALTERNISTOR 600V 10A D2PAK
More Detail: TRIAC Alternistor - Snubberless 600V 10A Surface M...
DataSheet: T1035H-6G-TR datasheetT1035H-6G-TR Datasheet/PDF
Quantity: 1000
1000 +: $ 0.49877
Stock 1000Can Ship Immediately
$ 0.55
Specifications
Series: Snubberless™
Packaging: Tape & Reel (TR) 
Part Status: Active
Triac Type: Alternistor - Snubberless
Voltage - Off State: 600V
Current - On State (It (RMS)) (Max): 10A
Voltage - Gate Trigger (Vgt) (Max): 1V
Current - Non Rep. Surge 50, 60Hz (Itsm): 100A, 105A
Current - Gate Trigger (Igt) (Max): 35mA
Current - Hold (Ih) (Max): 35mA
Configuration: Single
Operating Temperature: -40°C ~ 150°C (TJ)
Mounting Type: Surface Mount
Package / Case: TO-263-3, D²Pak (2 Leads + Tab), TO-263AB
Supplier Device Package: D2PAK
Base Part Number: T1035H
Description

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Introduction

The T1035H-6G-TR is a three-terminal, single phase, zero-crossing TRIAC with a maximum current rating of 10A and a maximum voltage rating of 600V. As a part of a broader range of TRIACs, this device is largely used in many industrial applications, especially those requiring high power switching. The TRIAC is an acronym of "Triode for Alternating Current", and it is a form of a thyristor (silicon-controlled rectifier).

Application Field

The T1035H-6G-TR is typically used as a high power electronic switch in motor speed control, heating and lighting control, and flow control. This device can also be used in applications such as start/stop AC power factors, alternating current phase controlling, rectification, switching and over-voltage protection. Moreover, the low holding current of this TRIAC enables it to be used in medium to high performance relay products.

In the motor speed control applications, the TRIAC can be used to control the speed and direction of the motor. The TRIAC acts as a switching device in between the motor\'s input power and the motor drive electronics. It allows for controlling of the power supplied to the motor, allowing for accurate speed control. In heating control applications, the TRIAC allows for precise temperature control in process control and environmental control.

In lighting control applications, the TRIAC can be used to switch on/off the lighting, while controlling its intensity. The TRIAC allows for controlled and stable intensities when using low voltage fluorescent lamps. Additionally, in the flow control applications, the TRIAC can be employed to control the level of flow of water and gas in water and gas supply systems.

Working Principle

The T1035H-6G-TR works on the principle of a three-terminal, single phase TRIAC. It utilizes the electric properties of a silicon-controlled rectifier (SCR) to provide a high power switch for medium to high power switching devices. The device works on the principle of zero-crossing detection. It switches on at the zero-crossing point of the AC waveform, which is usually situated between the 0.1 and 0.3 ms time frame. At the zero-crossing point, the TRIAC turns on and allows current to flow through the device.

The device turns off when the gate current is reduced below the holding current. Once the current is cut off or reduced to below the holding current, the TRIAC will become deactivated and the current will stop flowing through it. Moreover, the device can be activated again by applying a control voltage to the gate terminal. This will cause the TRIAC to turn on, allowing current to flow through it.

The TRIAC also has two operational states. When it is in the blocking state, no current is allowed to flow through the device. This state is achieved when the gate voltage is low or zero. On the other hand, when the gate voltage exceeds the breakdown voltage of the device, current begins to flow through the device.

Conclusion

Overall, the T1035H-6G-TR is a single phase zero-crossing TRIAC that is used in various applications such as motor speed control, heating and lighting control, flow control, and more. The device works on the principle of zero-crossing detection and it has two operational states, namely blocking and conduction states. This component can be used in a variety of applications in order to control and manage power flow. With its flexible design and reliable performance, it is an ideal choice for medium to high-power switching applications.

The specific data is subject to PDF, and the above content is for reference

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