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Chapter 21
Chapter 21

... source and a resistor The graph shows the current through and the voltage across the resistor The current and the voltage reach their maximum values at the same time The current and the voltage are said to be in phase ...
Low-Voltage, Low-Power and High Gain CMOS OTA
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... 4 Conclusion In this paper, a 0.8m CMOS low voltage wideband load compensated cascode operational transconductance ampli er, using an active positive feedback with feedforward and frequency-dependent current mirror techniques, has been presented and analyzed. These techniques have been applied to a ...
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... 22. We can split the circuit up into two independent parts because the opamp outputs are voltage sources whose voltage is not affected by how many other things are connected to them. Note that all three opamps have negative feedback and so we can assume that V+ = V− . −X −U2 For the first part, we h ...
EE 101 Lab 2 Ohm`s and Kirchhoff`s Circuit Laws
EE 101 Lab 2 Ohm`s and Kirchhoff`s Circuit Laws

... Introduction and Theory An electrical circuit can contain voltage sources (bench power supply or battery) and one or more additional components, such as the resistors that were used in Lab #1. A point in the circuit where two or more components connect together is called a circuit node. A path from ...
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... stability and noise immunity. Each MDT connects to a “signal” preamp with an associated “dummy” preamp. This in turn connects to the mezzanine card but goes no further. It provides dc balance to the subsequent stages as well as some degree of common mode rejection from noise pickup, substrate coupli ...
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Lab5 NYB -Resistors in Series and Parallel

Series and Parallel Circuits
Series and Parallel Circuits

... pieces of wire, add resistance to the circuit. Another term for resistance in a circuit is the resistive “load” to describe the resistance a component adds to the circuit. An inductor can add several ohms of resistance but the function of that part is not intended to reduce the current flow. Why is ...
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... layout of the PC board. When one wishes to take advantage of the ultra-low bias current of the LPC662, typically less than 0.04 pA, it is essential to have an excellent layout. Fortunately, the techniques for obtaining low leakages are quite simple. First, the user must not ignore the surface leakag ...
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... 6. Suppose the voltage output of a battery is 12.0 V, and the resistances for 3 resistors connected in parallel with the battery are R1 = 1.00 , R2 = 6.00  and R3 = 13.0 . A. What is the total resistance? ...
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... gain of the amplifier may need to be adjusted via the potentiometer to avoid clipping. 2. Apply the sine wave signal to the electrodes of one channel. Ensure that the right leg driver is connected to ground and the unused channel inputs are also grounded. 3. Using an oscilloscope verify that the gai ...
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... The circuit in Fig.4 was simulated using SPICE with parameters for a 0.35 m CMOS process (VTn ' 0.55V and VTp ' –0.71V). The transistor dimensions are listed in Table 2. Capacitive load of 10pF were used, and the supply voltage (VDD = – VSS) and bias current IB were set to 1.5V and 10 A, respectivel ...
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... configuration, the CB configuration, the CE cut-off and saturation region, common emitter current gain, the common collector configuration, analytical expression for transistor characteristics, the phototransistor. Transistor at low frequency: Graphical analysis of the CE model, two-port model and h ...
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