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INA301 36-V, High-Speed, Zero-Drift, Voltage-Output, Current
INA301 36-V, High-Speed, Zero-Drift, Voltage-Output, Current

... The INA301 is a 36-V common-mode, zero-drift topology, current-sensing amplifier that can be used in both lowside and high-side configurations. These specially-designed, current-sensing amplifiers are able to accurately measure voltages developed across current-sensing resistors (also known as curre ...
Load Transient
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... Stepwise load transient: load transient duration TLT is much smaller than closed loop system’s response time given by the crossover frequency fC, TLT << 1/(4fC) Fast load transient: load transient duration TLT is smaller than closed loop system’s response time TLT < 1/(4fC) Slow load transient: load ...
Concepts Addressed in Lesson - Union
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From: Wilf Rigter <wilf
From: Wilf Rigter

... The reverser works by inverting or not inverting 2 inputs connected to bicore or microcore outputs. For a bicore whose output signals are always complementary polarities, this inverting or non-inverting of signals is equal to swapping outputs. When used with a microcore the result is the same althou ...
ASI5111/ASI5211
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... controls are arranged, from top to bottom, in order of audio signal flow, i.e. the audio signal can be viewed as entering the node at the top control and leaving at the bottom control. Controls may be used to either manipulate the audio as it passes through the node, or report back control status in ...
AD9501 Digitally Programmable Delay Generator
AD9501 Digitally Programmable Delay Generator

... Offset between the two levels is necessary for three reasons. First, offset allows the ramp to reset and settle without reentering the voltage range of the DAC. Second, the DAC may overshoot as it switches to its most positive value (00H); this could lead to false output pulses if there were no offs ...
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MAX17504 4.5V–60V, 3.5A, High-Efficiency, Synchronous Step-Down DC-DC Converter with  Internal Compensation
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... high-efficiency, high-voltage, synchronously rectified step-down converter with dual integrated MOSFETs operates over a 4.5V to 60V input. It delivers up to 3.5A and 0.9V to 90% VIN output voltage. Built-in compensation across the output voltage range eliminates the need for external components. The ...
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... Negative Phase Sequence Overcurrent Protection (NPS) NPS protection can be used in applications where certain fault conditions may not be detected by the normal phase and earth overcurrent protections, for example, in the case of a relay applied on the delta side of a delta-star transformer, to dete ...
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... meters by calibration of voltage and current channels rather than of output pulse signal frequency. Since any energy measure performed by the device (active wide band and active fundamental, reactive or apparent) is calculated digitally (without error) from current and voltage calibrated signals, it ...
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... •For example, if the behavior of a coating on a metal when in salt water is required, by the appropriate use of impedance spectroscopy, a value of resistance and capacitance for the coating can be determined through modeling of the electrochemical data. The modeling procedure uses electrical circuit ...
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... combined with reactive (RC) circuits. Series A type of voltage regulator with the control regulator element in series between the input and output. Electronics Fundamentals 8th edition Floyd/Buchla ...
APV25S0 - Calibration Circuit
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... noise figure improvement. Different cable termination characteristics can be accommodated by utilizing the VCA2612’s switchable LNA feedback pins. The LNP has the ability to accept both differential and single-ended inputs, and generates a differential output signal. The LNP provides strappable gain ...
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... meters by calibration of voltage and current channels rather than of output pulse signal frequency. Since any energy measure performed by the device (active wide band and active fundamental, reactive or apparent) is calculated digitally (without error) from current and voltage calibrated signals, it ...
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... The voltage-level translator has two supply voltage pins. VCCA as well as VCCB can be operated over the full range of 1.1 V to 3.6 V. The TXS0206A enables system designers to easily interface applications processors or digital basebands to memory cards and SDIO peripherals operating at a different I ...
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... voltage can be set externally using a resistor divider to any value between 0.8 V and close to the input supply. Each converter features enable pin that allows a delayed start-up for sequencing purposes, soft start pin that allows adjustable soft-start time by choosing the soft-start capacitor, and ...
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... The PAM99700 is optimized to drive buck LED drivers using open-loop peak current mode control. This method of control enables fairly accurate LED current control without the need for high side current sensing or the design of any closed loop controllers. The IC uses very few external components and ...
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... the controlling clock signal. Thus, we can have all changes synchronized to the rising or falling edge of the clock. An edge-triggered flip-flop achieves this by combining in series a pair of latches. Figure 10(a) shows a positiveedge-triggered D flip-flop where two D latches are connected in series ...
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... Amplifiers increase the magnitude of a signal by multiplier called a gain -- “A”.  The internal gain of an op-amp is very high. The exact gain is often unpredictable.  We call this gain the open-loop gain or intrinsic ...
Low Pin Count, Low VIN [3.0V to 5.5V] Synchronous Buck DC-to
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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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