resistor
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resistor [2012/07/01 20:06] – [Active area] mcmaster | resistor [2013/10/20 14:59] (current) – external edit 127.0.0.1 | ||
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+ | ====== Depletion load ====== | ||
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+ | FIXME: compare with analysis at [NMOS logic design], tried to do for enhancement mode and so analysis didn't work out | ||
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+ | Most MOSFETs encountered are enhancement. | ||
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+ | Depletion load PMOS resistor on Intel 4004 (IC images courtesy of Flylogic, mask from http:// | ||
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+ | {{: | ||
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+ | {{: | ||
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+ | {{: | ||
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+ | Which translates to the following schematic: | ||
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+ | {{: | ||
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+ | So the natural question to ask is how do you tell a depletion from an enhancement load MOSFET? | ||
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====== Active area ====== | ====== Active area ====== | ||
One common way to form resistors is to lay out one type of active area (ex: p) inside of another (ex: n) in a thin strip. | One common way to form resistors is to lay out one type of active area (ex: p) inside of another (ex: n) in a thin strip. | ||
- | {{: | + | {{: |
- | {{: | + | {{: |
- | {{: | + | {{: |
Which translates into: | Which translates into: | ||
- | {{: | + | {{: |
- | I've grayed out the irrelevant parts and added labels for power and the two resistor terminals (T1/ | + | I've grayed out the irrelevant parts and added labels for power and the two resistor terminals (T1/ |
+ | Unfortunately, | ||
===== Diffused ===== | ===== Diffused ===== | ||
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====== Polysilicon ====== | ====== Polysilicon ====== | ||
+ | Polysilicon is a so-so conductor and so simply making a long strip of it will create a significant resistance. | ||
====== References ====== | ====== References ====== | ||
- Resistor Fabrication on Semiconductor Wafers: http:// | - Resistor Fabrication on Semiconductor Wafers: http:// | ||
+ | - http:// | ||
+ | - NMOS logic design: http:// | ||
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resistor.1341173193.txt.gz · Last modified: 2013/10/20 14:59 (external edit)