Skip to main content

VDM Verlag Dr. Mueller E.K.

Power Devices Electrothermal Characterisation by Optical Techniques - An Experimental Approach to Analyse Internal Electrothermal Phenomena at Device

No reviews yet
Product Code: 9783836474801
ISBN13: 9783836474801
Condition: New
$63.72
$63.18
Sale 1%

Power Devices Electrothermal Characterisation by Optical Techniques - An Experimental Approach to Analyse Internal Electrothermal Phenomena at Device

$63.72
$63.18
Sale 1%
 
The characterisation of semiconductor devices has an important role in Microelectronics, especially in the case of power semiconductor devices, in which the electrothermal characterisation is an essential aspect to study their behaviour. In several Power Electronics applications, non-controlled electrothermal phenomena are the responsible for the device destruction. The internal self-heating experienced by Power Devices generates an internal temperature rise, which may negatively affect their internal physical behaviour. In this framework, this book covers the development of an experimental rig for temperature and free-carrier concentration measurement in power devices, based on the internal IR-laser deflection (IIR-LD) and free-carrier absorption (FCA) techniques. IIR-LD allows a complete characterisation of power devices, extracting its temperature and free-carrier concentration gradients. By contrast, FCA provides the carrier concentration at the drift region of bipolar power devices. With both techniques, paramount information related to power devices physical behaviour are derived.


Author: Perpi? Xavier
Publisher: VDM Verlag Dr. Mueller E.K.
Publication Date: Apr 23, 2008
Number of Pages: 152 pages
Binding: Paperback or Softback
ISBN-10: 3836474808
ISBN-13: 9783836474801
 

Customer Reviews

This product hasn't received any reviews yet. Be the first to review this product!

Faster Shipping

Delivery in 3-8 days

Easy Returns

14 days returns

Discount upto 30%

Monthly discount on books

Outstanding Customer Service

Support 24 hours a day