Size of this PNG preview of this SVG file: 250 × 175 pixels. Other resolutions: 320 × 224 pixels | 640 × 448 pixels | 1,024 × 717 pixels | 1,280 × 896 pixels | 2,560 × 1,792 pixels.
Original file (SVG file, nominally 250 × 175 pixels, file size: 32 KB)
This is a file from the Wikimedia Commons. Information from its description page there is shown below. Commons is a freely licensed media file repository. You can help. |
DescriptionEbers-Moll model schematic (PNP).svg | A schematic diagram of the Ebers-Moll models of a PNP BJT. The base, collector and emitter currents are IB, IC and IE, the common-base forward and reverse current gains are αF and αR, and the collector and emitter diode currents are ICD and IED. |
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Source | |
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This file is licensed under the Creative Commons Attribution-Share Alike 3.0 Unported license.
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This image is a derivative work of the following images:
- File:Ebers-Moll_Model_PNP.PNG licensed with Cc-by-sa-3.0-migrated-with-disclaimers, GFDL-en
- 2010-03-28T19:08:04Z CosineKitty 527x254 (13959 Bytes) Corrected the orientation of the diodes for PNP.
- 2010-03-28T19:05:15Z CosineKitty 527x254 (13881 Bytes) Based on page 903 in ''Microelectronic Circuits, second edition'' by Adel S. Sedra and Kenneth C. Smith, ISBN 0-03-007328-6: fixed current directions and diode current symbol.
- 2007-09-16T00:41:35Z Kved 535x251 (13959 Bytes) {{Information |Description=Drawn using "Klunky" and added the minor details using MS-WORD |Source=Originally from [http://en.wikipedia.org en.wikipedia]; description page is/was [http://en.wikipedia.org/w/index.php?title=Imag
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Date/Time | Thumbnail | Dimensions | User | Comment | |
---|---|---|---|---|---|
current | 11:27, 22 August 2010 | 250 × 175 (32 KB) | Inductiveload | fixed diode orientation | |
05:26, 4 August 2010 | 250 × 175 (32 KB) | Inductiveload | {{Information |Description=A schematic diagram of the Ebers-Moll models of a PNP BJT. The base, collector and emitter currents are ''I''<sub>B</sub>, ''I''<sub>C</sub> and ''I''<sub>E</sub>, the common-base forward and reverse current gains are ''α''<sub |
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