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... capacitive reactance decreases and the maximum current increases • As the frequency approaches zero, XC approaches infinity and the current approaches zero – This would act like a DC voltage and the capacitor would act as an open circuit ...
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... with vias. Frequent via placement also improves signal integrity on signal transmission lines by providing short paths for image currents which reduces signal distortion. The planes should be pulled back from all transmission lines and component mounting pads a distance equal to the width of the wid ...
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... range of ±5 V to ±15 V for applications requiring large, linear output signals such as Pin, Power FET, and VDSL line drivers. The THS3096 features a power-down pin (PD) that puts the amplifier in low power standby mode, and lowers the quiescent current from 9.5 mA to 500 µA. The wide supply range co ...
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... current feedback differential amplifier that is an ideal choice for driving high performance ADCs with resolutions up to 16 bits from dc to 100 MHz. The output common-mode level can easily be matched to the required ADC input common-mode levels. The internal common-mode feedback loop provides except ...
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... The main disadvantage of 4 mA to 20 mA pressure transmitters has been their high costs which have continued even though low-cost semiconductor pressure sensors are available. However, now by using a new low cost precision integrated circuit sensor in combination with a single IC, a simple low-cost p ...
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... ceramic capacitor, typically 1 μF, placed as close as possible to the device VDD lead works best. Placing this decoupling capacitor close to the DRV603 is important for the performance of the amplifier. For filtering lower-frequency noise signals, a 10-μF or greater capacitor placed near the audio p ...
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... DIFFERENCE THAT IS NEEDED TO KEEP CURRENT FLOWING IN A CIRCUIT. A.FUSE B. BREAKER C. BATTERY D. OHM 6. ONE ELECTRODE IS THE CARBON ROD, AND THE OTHER IS THE ZINC CONTAINER. A.WET CELL B. DRY CELL C. LEAD ACID 7. 2 CONNECTED PLATES MADE OF DIFFERENT METALS OR METALLIC COMPOUNDS IN A ...
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Operational amplifier



An operational amplifier (""op-amp"") is a DC-coupled high-gain electronic voltage amplifier with a differential input and, usually, a single-ended output. In this configuration, an op-amp produces an output potential (relative to circuit ground) that is typically hundreds of thousands of times larger than the potential difference between its input terminals.Operational amplifiers had their origins in analog computers, where they were used to do mathematical operations in many linear, non-linear and frequency-dependent circuits. The popularity of the op-amp as a building block in analog circuits is due to its versatility. Due to negative feedback, the characteristics of an op-amp circuit, its gain, input and output impedance, bandwidth etc. are determined by external components and have little dependence on temperature coefficients or manufacturing variations in the op-amp itself.Op-amps are among the most widely used electronic devices today, being used in a vast array of consumer, industrial, and scientific devices. Many standard IC op-amps cost only a few cents in moderate production volume; however some integrated or hybrid operational amplifiers with special performance specifications may cost over $100 US in small quantities. Op-amps may be packaged as components, or used as elements of more complex integrated circuits.The op-amp is one type of differential amplifier. Other types of differential amplifier include the fully differential amplifier (similar to the op-amp, but with two outputs), the instrumentation amplifier (usually built from three op-amps), the isolation amplifier (similar to the instrumentation amplifier, but with tolerance to common-mode voltages that would destroy an ordinary op-amp), and negative feedback amplifier (usually built from one or more op-amps and a resistive feedback network).
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