• Home
  • About Us
  • Contact Us
Semiconductor for You
  • Home
  • Semiconductor News
  • Technology
    • Automotive
    • Consumer Electronics
    • IoT
    • Lighting
    • Power Management
    • Wireless
    • Personal Electronics
    • Hardware & Software
    • Research
    • Medical Electronics
    • Embedded Design
    • Aerospace & Defence
    • Artificial Intelligence
  • DIY Projects
  • Market
  • Industries
    • Renesas Electronics
  • Knowledge Base
  • Events
  • Tools
    • Resistor Color Code Calculator
No Result
View All Result
  • Home
  • Semiconductor News
  • Technology
    • Automotive
    • Consumer Electronics
    • IoT
    • Lighting
    • Power Management
    • Wireless
    • Personal Electronics
    • Hardware & Software
    • Research
    • Medical Electronics
    • Embedded Design
    • Aerospace & Defence
    • Artificial Intelligence
  • DIY Projects
  • Market
  • Industries
    • Renesas Electronics
  • Knowledge Base
  • Events
  • Tools
    • Resistor Color Code Calculator
No Result
View All Result
Semiconductor for You
No Result
View All Result
Home Articles

What are the different types of SCR gate triggering?

Semiconductor For You by Semiconductor For You
July 21, 2017
in Articles
0
ADVERTISEMENT

The various methods of  SCR triggering by gate control are given below,

  • Triggering by acgate signal

In many power control circuit that uses AC input, the gate to cathode voltage is obtained from a phase shifted AC voltage derived from the main supply. The advantage is that it has proper isolation of power and control circuits are provided.

  • Triggering by dcgate signal

The SCR in forward blocking state, a DC voltage of proper polarity and magnitude is applied between the gate and the cathode. The gate current starts flowing and turns ON the device. The disadvantages of this triggering are continuous gate current causes power losses at the gate junction and there is no isolation of the gate control circuit from the main power circuit.

  • Triggering by pulsegate signal

In this triggering the gate drive consists of a single pulse appearing periodically or a sequence of high frequency pulses which is also called as carrier frequency gating. The advantages of triggering by pulse gate signal is that the gate losses are very much reduced since the drive is discontinuous. The gate pulses are applied through pulse transformer which gives isolation. The firing angle varies from 0 to 180 degree.

Content Protection by DMCA.com
Tags: SCRSemiconductors
Semiconductor For You

Semiconductor For You

Browse by Category

  • Aerospace and Defence
  • Articles
  • Automotive
  • Consumer-Electronics
  • Hardware & Software
  • Interview
  • IoT
  • Knowledge Base
  • Lighting
  • Market
  • personal-electronics
  • Power Management
  • Research
  • Semiconductor Events
  • Semiconductor News
  • Technology
  • Wireless
Semiconductor for You

Semiconductor For You is a resource hub for electronics engineers and industrialist. With its blend of
technology features, news and new product information, Semiconductor For You keeps designers and
managers up to date with the fastest moving industry in the world.

Follow Us

Browse by Category

  • Aerospace and Defence
  • Articles
  • Automotive
  • Consumer-Electronics
  • Hardware & Software
  • Interview
  • IoT
  • Knowledge Base
  • Lighting
  • Market
  • personal-electronics
  • Power Management
  • Research
  • Semiconductor Events
  • Semiconductor News
  • Technology
  • Wireless

Recent News

TME, DC power connectors from Amphenol GEC

TME, DC power connectors from Amphenol GEC

June 27, 2025
Analog Semiconductors Poised to Cross USD 100 Billion by 2032

Analog Semiconductors Poised to Cross USD 100 Billion by 2032

June 26, 2025
  • About
  • Advertise
  • Privacy & Policy
  • Contact

© 2022 Semiconductor For You

No Result
View All Result
  • Home
  • Semiconductor News
  • Technology
    • IoT
    • Wireless
    • Power Management
    • Automotive
    • Hardware & Software
  • Market
  • Knowledge Base
  • Tools
    • Resistor Color Code Calculator

© 2022 Semiconductor For You