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DC Circuit - UniMAP Portal
DC Circuit - UniMAP Portal

... EQUIVALENT resistance. To find the value of the equivalent resistance we simply add the values. In this case it is 30 ohms. • Note that, as a quick check on calculations, the value of the equivalent resistance is always higher than the value of the highest value resistance. • If these resistors were ...
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... Fax: (49) 89 45 49 49 49 [email protected] ...
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Next generation of quantum voltage systems for wide range

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... Current Characteristics – the current through any element in a series circuit must equal the current through every other element in the circuit ...
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... These are stress ratings only. Functional operation of the device at these or any other conditions beyond those indicated under “Recommended Operating Conditions” is not implied. Exposure to absolute-maximum-rating conditions for extended periods may affect device reliability. Electrical parameters ...
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... operates on current and if you make a small current flow through a big resistor that is a big voltage difference). The bad thing about this arrangement is that the output impedance of the transistor amplifier is also equal to RC. So we are left with the standard dilemma, we need low output impedance ...
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VCM TCM LCM Data Sheet/Manual PDF

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Some physical problems: The driven, damped, harmonic oscillator

... 2) Set up the resistor and capacitor in series as shown and measure the magnitude and phase shift of the voltage across the capacitor as a function of frequency from 10Hz to 106 Hz. Take data on a 1-2-5-10 scale in frequency. For each frequency, you should also measure the voltage out of the functio ...
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MEEPP 201 Power Electronic System Control -set1

... 6. (a). The input voltage to the forward converter is 150V. The switching frequency is 95 kHz and duty cycle is 50%. The converter transformer has 100 turns each on the primary and feedback. Find the time duration in one switching period when the feedback diode is ON. Find the maximum voltage that c ...
midterm05.pdf
midterm05.pdf

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Schmitt trigger



In electronics a Schmitt trigger is a comparator circuit with hysteresis implemented by applying positive feedback to the noninverting input of a comparator or differential amplifier. It is an active circuit which converts an analog input signal to a digital output signal. The circuit is named a ""trigger"" because the output retains its value until the input changes sufficiently to trigger a change. In the non-inverting configuration, when the input is higher than a chosen threshold, the output is high. When the input is below a different (lower) chosen threshold the output is low, and when the input is between the two levels the output retains its value. This dual threshold action is called hysteresis and implies that the Schmitt trigger possesses memory and can act as a bistable multivibrator (latch or flip-flop). There is a close relation between the two kinds of circuits: a Schmitt trigger can be converted into a latch and a latch can be converted into a Schmitt trigger.Schmitt trigger devices are typically used in signal conditioning applications to remove noise from signals used in digital circuits, particularly mechanical contact bounce. They are also used in closed loop negative feedback configurations to implement relaxation oscillators, used in function generators and switching power supplies.
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