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Probes-Fact
Probes-Fact

... capacitor and inductor, as seen below. ...
Single phase PWM controller
Single phase PWM controller

RCV420 - Texas Instruments
RCV420 - Texas Instruments

... decrease gain, take care to match the parallel resistance on each sense resistor. To maintain high CMR when increasing the gain of the RCV420, keep the series resistance added to the feedback network as small as possible. Whether the Rcv Com pin is grounded or connected to a voltage reference for le ...
Physics 160 Lecture 13
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ADC108S102 8-Channel, 500 kSPS to 1 MSPS, 10
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... GAIN ERROR is the deviation of the last code transition (111...110) to (111...111) from the ideal (VREF - 1.5 LSB), after adjusting for offset error. INTEGRAL NON-LINEARITY (INL) is a measure of the deviation of each individual code from a line drawn from negative full scale (½ LSB below the first c ...
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2 x 5-watt dual BTL class-D audio amplifier
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... 8-Added extra X elements near connectors to bridge CGND and GND cut.9-Added an option to use a single dual FET for low end bd.10-Fixed error on 6529 power good and current supplement.11-Changed C302 to 0603 (too big pkg for .1uf in 0805)12-Deleted C296 and C293 (shared them with C313, C324)13-Change ...
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... domain can be easily converted into time domain signal. The reflected voltage which is shown in Figure 3.a is actually the multiple reflections of the incident voltage time waveform from multiple discontinuity points in a circuit (which means different time delays) with different coefficients. These ...
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... The aim here is to choose values for the Rs that will give the largest change in Vab for a small change in Rx . Another way to say this is that if we plot the value of Vab as a function of Rx (the output characteristic), we’d like that function to have a slope as steep as possible. If we only consid ...
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... is used on frequencies bands where the response signals are larger than the noise. The displacement control is used for lower frequencies bands. Both methods are coupled in series. The control’s software is projected using the µ Synthesis Method with two degrees of freedom in order to improve the s ...
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... provides a high efficiency over a wide load range. The switching frequency of the internal oscillator is programmable using an external resistor and can be set between 300 kHz and 2 MHz. This control scheme uses a hysteresis window to regulate the output voltage. When the output voltage is below the ...
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... The equations (1-14) and (1-15) provide the relationships that can be used to measure Ad and Ac in op-amp circuits. 1. To measure Ad: Set Vi1 = -Vi2 = Vs = 0.5 V, we obtain Vd = 1 V, Vc = 0 V and Vo = Ad Thus, setting the input voltages Vi1 = -Vi2 = 0.5 V results in an output voltage numerically equ ...
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... Traditional Class-D Modulation Scheme The TPA3121D2 operates in AD mode. There are two main configurations that may be used. For stereo operation, the TPA3121D2 should be configured in a single-ended (SE) half-bridge amplifier. For mono applications, TPA3121D2 may be used as a bridge-tied-load (BTL) ...
2 x 40 W/2 Ohm stereo BTL car radio power amplifier with diagnostic
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... Limiting values given are in accordance with the Absolute Maximum Rating System (IEC 134). Stress above one or more of the limiting values may cause permanent damage to the device. These are stress ratings only and operation of the device at these or at any other conditions above those given in the ...
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Phase-locked loop

A phase-locked loop or phase lock loop (PLL) is a control system that generates an output signal whose phase is related to the phase of an input signal. While there are several differing types, it is easy to initially visualize as an electronic circuit consisting of a variable frequency oscillator and a phase detector. The oscillator generates a periodic signal. The phase detector compares the phase of that signal with the phase of the input periodic signal and adjusts the oscillator to keep the phases matched. Bringing the output signal back toward the input signal for comparison is called a feedback loop since the output is ""fed back"" toward the input forming a loop.Keeping the input and output phase in lock step also implies keeping the input and output frequencies the same. Consequently, in addition to synchronizing signals, a phase-locked loop can track an input frequency, or it can generate a frequency that is a multiple of the input frequency. These properties are used for computer clock synchronization, demodulation, and frequency synthesis.Phase-locked loops are widely employed in radio, telecommunications, computers and other electronic applications. They can be used to demodulate a signal, recover a signal from a noisy communication channel, generate a stable frequency at multiples of an input frequency (frequency synthesis), or distribute precisely timed clock pulses in digital logic circuits such as microprocessors. Since a single integrated circuit can provide a complete phase-locked-loop building block, the technique is widely used in modern electronic devices, with output frequencies from a fraction of a hertz up to many gigahertz.
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