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Membership Emails
Below is a sample of the emails you can expect to receive when signed up to Power Electronic Tips.
System Performance Bene?ts from Using Power Supplies Made with Wide Bandgap Semiconductors
You've probably read about the wide bandgap semiconductors, such as silicon carbide (SiC) and gallium nitride (GaN), that are replacing silicon power devices in some AC/DC power supplies. You've probably also read that the new wide bandgap devices can switch faster and more ef?ciently in power conversion circuits than their silicon cousins. How does that translate into performance bene?ts for users of AC/DC power supplies? This webinar will take a look at the system- level bene?ts that you can expect to enjoy by specifying AC/DC power supplies made with wide bandgap semiconductors.
Attendees of this webinar will learn:
What is wideband gap? Why does it make a difference?
When do you use GaN? When do you use SiC?
Reliability of wideband gap supplies
Markets expected to have greatest impact in the near-term
Total Cost of Ownership
Register Now
WEBINAR SPEAKERS
Chris Hewitt R&D Manager AstrodyneTDI
Jeff Shepard Contributing Writer EE World Online
Philip Zuk Vice President of Worldwide Technical Marketing & NA Sales Transphorm
Guy Moxey Senior Director Wolfspeed Power
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Where's the Fit for GaN and SiC?
System Performance Bene?ts from Using Power Supplies Made with Wide Bandgap Semiconductors
You've probably read about the wide bandgap semiconductors, such as silicon carbide (SiC) and gallium nitride (GaN), that are replacing silicon power devices in some AC/DC power supplies. You've probably also read that the new wide bandgap devices can switch faster and more ef?ciently in power conversion circuits than their silicon cousins. How does that translate into performance bene?ts for users of AC/DC power supplies? This webinar will take a look at the system- level bene?ts that you can expect to enjoy by specifying AC/DC power supplies made with wide bandgap semiconductors.
Attendees of this webinar will learn:
What is wideband gap? Why does it make a difference?
When do you use GaN? When do you use SiC?
Reliability of wideband gap supplies
Markets expected to have greatest impact in the near-term
Total Cost of Ownership
Register Now
WEBINAR SPEAKERS
Chris Hewitt R&D Manager AstrodyneTDI
Jeff Shepard Contributing Writer EE World Online
Philip Zuk Vice President of Worldwide Technical Marketing & NA Sales Transphorm
Guy Moxey Senior Director Wolfspeed Power
This email was sent to @ WTWH Media, LLC - 1111 Superior Ave, Suite 2600 Cleveland OH 44114 United States View Online | Privacy Policy | Preference Center | Unsubscribe | Forward
Link
.emailview
Where's the Fit for GaN and SiC?
System Performance Bene?ts from Using Power Supplies Made with Wide Bandgap Semiconductors
You've probably read about the wide bandgap semiconductors, such as silicon carbide (SiC) and gallium nitride (GaN), that are replacing silicon power devices in some AC/DC power supplies. You've probably also read that the new wide bandgap devices can switch faster and more ef?ciently in power conversion circuits than their silicon cousins. How does that translate into performance bene?ts for users of AC/DC power supplies? This webinar will take a look at the system- level bene?ts that you can expect to enjoy by specifying AC/DC power supplies made with wide bandgap semiconductors.
Attendees of this webinar will learn:
What is wideband gap? Why does it make a difference?
When do you use GaN? When do you use SiC?
Reliability of wideband gap supplies
Markets expected to have greatest impact in the near-term
Total Cost of Ownership
Register Now
WEBINAR SPEAKERS
Chris Hewitt R&D Manager AstrodyneTDI
Jeff Shepard Contributing Writer EE World Online
Philip Zuk Vice President of Worldwide Technical Marketing & NA Sales Transphorm
Guy Moxey Senior Director Wolfspeed Power
This email was sent to @ WTWH Media, LLC - 1111 Superior Ave, Suite 2600 Cleveland OH 44114 United States View Online | Privacy Policy | Preference Center | Unsubscribe | Forward
Link
.emailview
Design Engineering Resources
September 18, 2020
Protecting autonomous vehicle control circuits
The subsystems that make up an autonomous vehicle should be bullet-proof when it comes to electrical interference and transients. James Colby, Prasad Tawade Littelfuse, Inc. Those who follow autonomous vehicle technology are usually well aware of its benefits. But the safety and convenience autonomous vehicles offer can only come if the vehicle electronics is reliable...
More »
Formula E Gen3 smaller batteries, regen and fast charging
The battery and energy systems of Formula E cars will change significantly with the introduction of the third generation (Gen3) design in 2022. The Gen3 specifications are scheduled to last three seasons until 2025. In Gen3 cars, the battery will be lighter (so will the entire car), it will be capable of handling fast charging...
More »
3x5" 600W AC/DC Power Supplies
The CUS600M can deliver 600W with forced air or 400W with a 600W peak power with convection cooling. Meeting Medical & ITE certifications, the unit can be used in both Class I & II applications, and meets Class B Conducted and Radiated EMI.
Learn More at Sager.com »
How to design modular DC-DC systems
When designing a modular DC-DC system, it is important to look at the entire power-delivery system from source to load to achieve the desired functionality and performance. This tutorial series examines the modular DC-DC system design process and walks through an example set of system loads and the process to supply those from a given source.
Check out now and every three weeks »
EDITOR'S CHOICE
Latest connected car feature: Germicidal lights
A year ago, if your cocktail party conversations had included the idea of adding germicidal lights to a connected car, you probably would have elicited facial expressions suggesting you’d lost your mind. Today, the same idea would be more likely to engender a lot of head nodding.
More »
Enews Editor: Lee Teschler | lteschler@wtwhmedia.com
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