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Ch 6
Ch 6

... The capacitance of the collector-base junction (CCB) looks bigger at the base than it really is. It looks like CM = Av  CCB where CM is the Miller Capacitance. It’s caused by negative feedback from the output (collector) back to the input (base). An RC low-pass filter is formed by CM and the resist ...
Chapter 11 Constant Voltage Transformer (CVT)
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Field-Circuit Coupling Applied to Inductive Fault Current
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... current peak, since it causes large mechanical stress to all parts of the power system. The inductive FCL based on the core saturation effect are particulary interesting due to the fact that they do not have any reaction delay. They inherently react on the fault, requiring no control circuit; hence, ...
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... Diodes Incorporated products are specifically not authorized for use as critical components in life support devices or systems without the express written approval of the Chief Executive Officer of Diodes Incorporated. As used herein: A. Life support devices or systems are devices or systems which: ...
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... • The INSTANTANEOUS value of an alternating voltage or current is the value of voltage or current at one particular instant. • The value may be zero if the particular instant is the time in the cycle at which the polarity of the voltage is changing. • It may also be the same as the peak value, if th ...
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... 5.0 PCB Layout Design Considerations – RF Circuits The position detection system of the POV device works on a 1.2GHz RF beacon and phase detector. The circuit layout of the phase detection circuit is absolutely critical to its functionality and accuracy. The four antennae connect to an SMA connector ...
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... Figure 8: The presence of a blinding zone in the encircled part of the network. For a certain range of the fault location k, the fault currents from both sides are too small for the relays to response. The orange dashed line represents the Ie,DMT setting while the red dashed line represents the +Ie ...
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... ability to detect rapid changes in the sensed current, as well as the ability to quickly slew the output, make the INA181 a good choice for applications that require a quick response to input current changes. One application that requires high bandwidth and slew rate is low-side motor control, where ...
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... adaptive dead-time circuit to work properly. Any delay along that path subtracts from the delay generated by the adaptive dead-time circuit and shoot-through may occur. ...
High-Resolution Electrometer with Micromechanical Variable
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... bandwidth of 1 Hz and a full-scale voltage of 1V. The series represented by triangles used a 3.1 Hz bandwidth and 50 mV fullscale. The maximum relative error of the entire series with respect to a linear fit is less than 15%. Also plotted on Fig. 7 is the noise floor of the lower-range measurement, ...
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... The capacitance of the structure changes accordingly, but before any discussion about the capacitance can be started, one has to distinguish between "low frequency" and "high frequency" capacitance measurements. The low frequency capacitance is measured when the semiconductor is in thermal equilibri ...
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... Optimisation of the external switching transistor base drive may be necessary for improved efficiency in low power applications. This can be achieved by introducing an external resistor between the supply and the RE pin of the ZXSC100. The resistor value can be determined by: ...
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... may cause permanent damage to the device. This is a stress rating only; functional operation of the device at these or any other conditions above those indicated in the operational section of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may a ...
Comparative analysis of lightning overvoltages in distribution lines
Comparative analysis of lightning overvoltages in distribution lines

... • Tests and many years of observations of atmospheric discharges show that peak value and steepness of wave front are random values of negligible correlation. This means that these parameters can be analyzed independently. • Analysis results of computer simulations, laboratory tests, and measurement ...
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Stray voltage



Stray voltage is the occurrence of electrical potential between two objects that ideally should not have any voltage difference between them. Small voltages often exist between two grounded objects in separate locations, due to normal current flow in the power system. Large voltages can appear on the enclosures of electrical equipment due to a fault in the electrical power system, such as a failure of insulation.
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