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Transient Voltage Protection for Stratix GX Devices
Transient Voltage Protection for Stratix GX Devices

Evolution of Very High Frequency Power Supplies
Evolution of Very High Frequency Power Supplies

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DM32711716
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... pattern must generate a fundamental Vx mod with the same frequency of the power source Vx, Charging the amplitude of this fundamental, and its phase-shift with respect to the mains, the rectifier can be controlled to operation the four quadrant: leading power factor rectifier, lagging power factor r ...
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Third harmonic generation by Bloch-oscillating electrons in a quasioptical array
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... harmonic currents for a superlattice, the generated third harmonic power is expected to depend on the local field Q 1 as J 20 (Q 1 )J 23 (Q 1 ), the overall factor of J 20 (Q 1 ) arising from dynamic localization.2 The transformation from the local field inside the mesa to the incident field is stro ...
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402 Series High Voltage - TDK
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... in a triple parallel push-pull configuration in each channel. The instrumentation amplifier principle allows fully balanced signal paths in the input stage, and further refined MCS+ topology keeps noise at an absolute minimum. The result is an entry-level pure class A amplifier that truly delivers. ...
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AD8310 Fast, Voltage-Out DC–440 MHz, 95 dB Logarithmic
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... power supply over the remote interface. This section is only an overview and does not give all of the details you will need to write your own application programs. Refer to the remainder of this chapter and also chapter 6, Application Programs, for more details and examples. Also refer to the progra ...
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...  Created specific measurement configuration for both CCFL and WLED panels  Chart logic power consumption per typical ...
Turkey Point Units 6 & 7 COL Application Part 2 — FSAR
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Decibel

The decibel (dB) is a logarithmic unit that expresses the ratio of two values of a physical quantity, often power or intensity. One of these quantities is often a reference value and in this case the decibel expresses the absolute level of the physical quantity. The number of decibels is ten times the logarithm to base 10 of the ratio of two power quantities, or of the ratio of the squares of two field amplitude quantities. One decibel is one tenth of one bel, named in honor of Alexander Graham Bell; however, the bel is seldom used.The definition of the decibel is based on the measurement of power in telephony of the early 20th century in the Bell System in the United States. Today, the unit is used for a wide variety of measurements in science and engineering, most prominently in acoustics, electronics, and control theory. In electronics, the gains of amplifiers, attenuation of signals, and signal-to-noise ratios are often expressed in decibels. The decibel confers a number of advantages, such as the ability to conveniently represent very large or small numbers, and the ability to carry out multiplication of ratios by simple addition and subtraction. By contrast, use of the decibel complicates operations of addition and subtraction.A change in power by a factor of 10 is a 10 dB change. At the half power point an audio circuit or an antenna exhibits an attenuation of 3dB. A change in voltage by a factor of 10 results in a change in power by a factor of 100, which is a 20 dB change. A change in voltage ratio by a factor of two approximately corresponds to a 6 dB change.The decibel symbol is often qualified with a suffix that indicates the reference quantity that has been used or some other property of the quantity being measured. For example, dBm indicates a reference power of one milliwatt, while dBu is referenced to approximately 0.775 volts RMS.In the International System of Quantities, the decibel is defined as a unit of measurement for quantities of type level or level difference, which are defined as the logarithm of the ratio of power- or field-type quantities.
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