User:John R. Brews: Difference between revisions

From Citizendium
Jump to navigation Jump to search
imported>John R. Brews
No edit summary
imported>John R. Brews
Line 9: Line 9:
==Images==
==Images==
{{Gallery-mixed
{{Gallery-mixed
|caption=Some of my images so far
|caption=Magnetism
|width=200
|width=200
|lines=3
|lines=3
|Magnetized sphere.PNG|'''B'''-field lines near uniformly magnetized sphere
|Magnetized sphere.PNG|'''B'''-field lines near uniformly magnetized sphere
|Hysteresis loops.PNG|Magnetic flux density ''vs.'' magnetic field in steel and iron
|Hysteresis loops.PNG|Magnetic flux density ''vs.'' magnetic field in steel and iron
}}
{{Gallery-mixed
|caption=Widlar current source
|width=200
|lines=3
|Widlar Current Source.PNG|Widlar current source using bipolar transistors
|Widlar small-signal.PNG|Small-signal circuit for finding output resistance of the Widlar source
|Widlar Resistance Plot.PNG|Design trade-off between output resistance and output current in Widlar source
}}
}}

Revision as of 09:11, 17 December 2010

I am a Professor Emeritus of Electrical Engineering from The University of Arizona, where I taught device physics and circuit design for just under two decades. Previously, I was a research scientist for twenty-odd years at Bell Laboratories, Murray Hill, doing theoretical work in the areas of solid-state physics and device physics. I also am a Fellow of the IEEE, and a recipient of the Electron Device Society distinguished service award for work as Editor-in-chief of the journal IEEE Electron Device Letters, founded by Nobel prize winner George E. Smith. I've published a number of technical books and papers, some of which may be found at this link.


Images

Magnetism
B-field lines near uniformly magnetized sphere
(CC) Image: John R. Brews
B-field lines near uniformly magnetized sphere
Magnetic flux density vs. magnetic field in steel and iron
(CC) Image: John R. Brews
Magnetic flux density vs. magnetic field in steel and iron
Widlar current source
Widlar current source using bipolar transistors
(CC) Image: John R. Brews
Widlar current source using bipolar transistors
Small-signal circuit for finding output resistance of the Widlar source
(CC) Image: John R. Brews
Small-signal circuit for finding output resistance of the Widlar source
Design trade-off between output resistance and output current in Widlar source
(CC) Image: John R. Brews
Design trade-off between output resistance and output current in Widlar source