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  • TRIACs 8A 600V T0835-6A - Topdiode
  • TRIACs 8A 600V T0835-6A - Topdiode
  • TRIACs 8A 600V T0835-6A - Topdiode
  • TRIACs 8A 600V T0835-6A - Topdiode
  • TRIACs 8A 600V T0835-6A - Topdiode
  • TRIACs 8A 600V T0835-6A - Topdiode
  • TRIACs 8A 600V T0835-6A - Topdiode
  • TRIACs 8A 600V T0835-6A - Topdiode
  • TRIACs 8A 600V T0835-6A - Topdiode
  • TRIACs 8A 600V T0835-6A - Topdiode

Topdiode T0835-6A TRIACs is a nice alternative offer to STMicroelectronics BTA08-600B

  • Glass Passivated Junctions
  • High voltage and surge capability
  • Low Thermal Resistance and Durability
  • Triggering in three quadrants

TRIACs 8A 600V T0835-6A - Topdiode

Topdiode T0835-6A TRIACs series is available either in through-hole or surface-mount, T08 8A series is suitable for general purpose AC switching, due to high commutation performances, it’s specially recommended for use on inductive loads

Topdiode T0835-6A TRIACs is a nice alternative offer to STMicroelectronics BTA08-600B

TRIACs 8A 600V T0835-6A - Topdiode DATA

Parameter Symbol Value Unit
Storage junction temperature range Tstg -40~150 °C
Operating junction temperature range Tj -40~150 °C
Repetitive peak off-state voltage (T=25°C) VDRM 600/800 V
Repetitive peak reverse voltage (T=25°C) VRRM 600/800 V
RMS on-state current TO-220A(TC=100°C) IT(RMS) 8 A
TO-220B/TO-251/
TO-252(TC=107°C)
TO-220F(TC=95°C)
 Non repetitive surge peak on-state current
(full cycle, F=50Hz)
ITSM 80 A
I2t value for fusing (tp=10ms) I2t 32 A2S
Critical rate of rise of on-state current(I =2×IGT) di/dt 50 A/μS
Peak gate current IGM 4 A
Peakgate power dissipation PGM 5 W
Average gate power dissipation PG(AV) 1 W

Topdiode Hot Selling Products (6)

Circuit - speed water heater

Thyristors are pivotal in instant water heaters, significantly enhancing their performance.

Precise Temperature Control, in an instant water heater, thyristors regulate the power supplied to the heating element. By precisely adjusting the electrical current, they ensure the water reaches the desired temperature quickly and accurately. For example, if you set the heater to 40°C, the thyristor monitors the temperature sensor data. If the water is too cold, it increases power to the heating element; if it’s getting too hot, it reduces the power.

Energy Efficiency, thyristors optimize energy usage. They only draw the necessary power to heat the water, preventing over – heating and energy wastage. This not only saves on electricity bills but also makes the heater more environmentally friendly. Their ability to fine – tune power based on real – time temperature needs ensures efficient operation, making them an essential component for instant water heaters.

Recommended Models:
T16 Series
T25 Series

Topdiode SCRs and Triacs Applications

Home appliances
Speed water heater
UPS
What is a Thyristor?

A thyristor is a type of semiconductor device that acts as a switch, controlling the flow of electrical current in a circuit. Thyristors are typically used for switching and controlling high voltage or current in applications where the power must be turned on or off. They are made of four layers of semiconductor material (P-N-P-N) and typically have three terminals: anode, cathode, and gate.

Difference Between SCR & TRIAC?

Silicon Carbide Schottky Barrier Diodes are semiconductor devices that consist of a metal contact on a layer of n-type Silicon Carbide (SiC) material. The metal contact forms a Schottky barrier with the SiC material, which allows the flow of current in only one direction. SiC Schottky barrier diodes offer several advantages over conventional diodes, including lower forward voltage drop, shorter reverse recovery time, higher breakdown voltage, and higher temperature operation

What is the Working Principle of SiC Schottky Barrier Diodes?

SCR (Silicon Controlled Rectifier):

    1. Structure: An SCR is a type of thyristor that has a single direction of current flow. It has four layers (P-N-P-N) and three terminals: anode, cathode, and gate.
    2. Control: It is controlled by a gate signal. Once triggered, it remains in the “on” state (conducting) until the current flowing through it drops below a certain threshold (called the “holding current”).

TRIAC (Triode for Alternating Current):

    1. Structure: A TRIAC is similar to an SCR but can conduct current in both directions, making it suitable for AC applications. It has a similar structure but with an additional set of layers.
    2. Control: Like an SCR, a TRIAC is controlled by a gate signal, but it can conduct during both halves of an AC cycle, allowing bidirectional control.
Applications of TRIACs 8A 600V T0835-6A
  1. Static relays
  2. Heating regulation
  3. In-duction motor starting circuits
  4. Phase control operation in light dimmers
  5. Motor speed controllers
What are Benefits of Thyristors?
  1. Topdiode produces TRIAC and SCR to replace tier 1 brands like ST, WeEn, Onsemi, Vishay etc.
  2. Cost down 30-60%
  3. Lead time around 3 weeks
  4. 100% guarantee quality
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