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AD630 - Analog Devices
AD630 - Analog Devices

... The AD630 is used in precision signal processing and instrumentation applications that require wide dynamic range. When used as a synchronous demodulator in a lock-in amplifier configuration, the AD630 can recover a small signal from 100 dB of interfering noise (see the Lock-In Amplifier Application ...
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Dual, Variable Gain Amplifier

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11. The Series RLC Resonance Circuit

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Data Acquisition Fundamentals

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AD7845 数据手册DataSheet 下载

... Negative power supply for the output amplifier (nominal –12 V to +15 V) Positive power supply (nominal +12 V to +15 V) Application resistor. RA = 4 RFB Application resistor. RB = 2 RFB Application resistor. RC = 2 RFB Feedback resistor in the DAC. For normal operation this is connected to VOUT ...
Motional feedback with loudspeakers
Motional feedback with loudspeakers

` 76/
` 76/

NBB-400 CASCADABLE BROADBAND GaAs MMIC AMPLIFIER DC TO 8GHz Features
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... • Die should be mounted to a clean, flat surface. Epoxy or eutectic die attach are both acceptable attachment methods. Top and bottom metallization are gold. Conductive silver-filled epoxies are recommended. This procedure involves the use of epoxy to form a joint between the backside gold of the ch ...
Lecture CMOS - Center for Detectors
Lecture CMOS - Center for Detectors

... CMOS Detector Definition • CMOS detectors are made of complimentary MOSFET circuits connected to light-sensitive materials. • The voltage change due to integrated photogenerated charge is generally sensed directly through a source follower amplifier in each pixel, instead of via a charge transfer p ...
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Achieving and improving Level and Attenuation

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TPA0162: 2.8-W Stereo Audio Power Amplifier with Digital Volume

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ADA4841-1 数据手册DataSheet 下载

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Terahertz spectrum analyzer based on a terahertz frequency comb

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Unit 11 PowerPoint Slides

... Sinusoids arise in many areas of engineering and science. They are the waveform used most frequently in electrical circuit theory. The waveform we’ve been looking at is a sinusoid. ...
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Pentium Processor Clock Design

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A) Resistance, Voltage and Current Measurement

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use of arno converter and motor-generator set to convert a

May 2001 1MW Transimpedance Amplifier Achieves Near-Theoretical Noise Performance, 2.4GHz Gain Bandwidth, with Large-Area Photodiodes
May 2001 1MW Transimpedance Amplifier Achieves Near-Theoretical Noise Performance, 2.4GHz Gain Bandwidth, with Large-Area Photodiodes

... many ways that the LTC2411 can be used in a correlated double sampling scheme. This is a simple example but is capable of impressive results, although the implications of sensing the current through the bridge as opposed to the voltage across the bridge must be understood. Success is dependent on ca ...
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PCM1794A 数据资料 dataSheet 下载

... optimize analog performance externally. Sampling rates up to 200 kHz are supported. ...
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... components with a low inductive ground connection. However, in the areas of the amplifier inputs and output, the ground plane can be removed to minimize the stray capacitance. Proper power supply decoupling – Use a 6.8-µF tantalum capacitor in parallel with a 0.1-µF ceramic capacitor on each supply ...
Design criteria for SEPIC and Cuk converters as power factor
Design criteria for SEPIC and Cuk converters as power factor

... achieved, in steady-state. Comparing SEPIC and CUK converters with boost and fly-back converters in discontinuous conduction mode as PFP, a good current waveform is achieved without an input filter. In addition, comparing them with converters as PFP in continuous conduction mode, similar current wav ...
Universal frequency-dependent conduction of
Universal frequency-dependent conduction of

... Amorphous systems, and in particular glasses, still present major theoretical and experimental challenges. One of the most fascinating and appealing aspects of these systems is the fact that despite the complex, system-specific microscopic details of each particular glass, they share much in common ...
13710237524571_01-Feedback Amplifiers
13710237524571_01-Feedback Amplifiers

... (yellow covered book). Chapter: 13 ...
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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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