Now showing circuits 31361-31380 of 53499. Sort by
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Automelette PUBLICby jwright471 | updated April 30, 2017 |
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nmos inverter PUBLICby oabdelka | updated April 30, 2017 |
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NMOS Inverter Real PUBLICby ewallac2 | updated April 30, 2017 |
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NMOS Inverter PUBLICby ewallac2 | updated April 30, 2017 |
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307_6.6 PUBLICby oabdelka | updated April 29, 2017 |
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current mirror PUBLICby oabdelka | updated April 29, 2017 |
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Lab 7 Bistable PUBLICby ewallac2 | updated April 29, 2017 |
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Lab 7 Monostable Configuration PUBLICby ewallac2 | updated April 29, 2017 |
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Circuit 1 PUBLICby vincentsiow | updated April 29, 2017 |
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Example Circuit PUBLICby xepher3642 | updated April 26, 2017 |
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Op Amp Q5 PUBLICThe outputs are inverses of other, one positive and one negative. Extra Credit: Nothing changed in Question 3, because it utilized DC input instead of a function generator. 4 and 5 had their outputs... by xepher3642 | updated April 26, 2017 |
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Op Amp Q1-4 PUBLIC1. The circuit is currently in series, so by using 4-volt total drop and the equivalent resistance of 40 kΩ (10k + 20k + 10k), the current is uniform throughout with a value of 100 µA, including... by xepher3642 | updated April 26, 2017 |
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HW4 Q2 PUBLICby xepher3642 | updated April 26, 2017 |
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HW4 Q3 PUBLICThe dedicated component rectifier built up to the final voltage the fastest, followed by the transformer rectifier then the diode bridge rectifier, which was the slowest. by xepher3642 | updated April 26, 2017 |
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Lab 8 part 2 (Eqn4) PUBLICby Starjjil | updated April 26, 2017 |
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HW4 Q1 PUBLICby xepher3642 | updated April 26, 2017 |
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HW4 Q0 PUBLICImpedance works similar to resistance in its formulas, so series impedance would be Zeq = Z1 + Z2 + Z3, while in parallel Zeq = ( 1/Z1 + 1/Z2 + 1/Z3)^-1. by xepher3642 | updated April 26, 2017 |
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hw2 PUBLICby sarends2015 | updated April 26, 2017 |
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hw3c PUBLICby sarends2015 | updated April 26, 2017 |
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hw3b PUBLICby sarends2015 | updated April 26, 2017 |
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