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ZXLB1600 LCD and OLED bias boost converter
ZXLB1600 LCD and OLED bias boost converter

... space as well as required performance. Small value inductors have the advantage of smaller physical size and may offer lower series resistance and higher saturation current compared to larger values. A disadvantage of smaller inductors is that they result in higher frequency switching, which in turn ...
Designing Operational Amplifier Oscillator Circuits for Sensor
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... also must be analyzed. If the magnitude of the loopgain is greater than one and the phase is zero, the amplitude of oscillation will increase exponentially until a factor in the system, such as the supply voltage, restricts the growth. In contrast, if the magnitude of the loop-gain is less than one, ...
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Slide 1

Square Law and Linear Detection Application Note 986 Introduction
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... The ratio of this factor at 1 GHz to that at 2 GHz is 0.30 for the -2800 and 0.48 for the -2824. This degradation factor also explains the increasing slope of the detection curve at higher values of frequency and diode capacitance. Consider the -2800 at 1 and 2 GHz. We have seen that the ratio of th ...
74LCX257 Low Voltage Quad 2-Input Multiplexer with 5V Tolerant Inputs and Outputs 7
74LCX257 Low Voltage Quad 2-Input Multiplexer with 5V Tolerant Inputs and Outputs 7

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74LCX652 Low Voltage Transceiver/Register with 5V Tolerant Inputs and Outputs 7

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... applications. This device accepts LVTTL/LVCMOS input levels and translates them to output levels of 250mV to 450mV into a 27Ω load. The flow-through pinout simplifies board layout and reduces the potential for crosstalk between single-ended inputs and differential outputs. Transition times are desig ...
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... Use the next higher standard value available which is 50V. 63V capacitors can also be used in the example, as long as you go higher but not lower than the computed Working Voltage. Adding extra headroom by choosing the next higher voltage value guarantees the safe operation of your power supply. Cho ...
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Chapter 4 - UniMAP Portal
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MAX1858 Dual 180° Out-of-Phase PWM Step-Down Controller with Power Sequencing and POR
MAX1858 Dual 180° Out-of-Phase PWM Step-Down Controller with Power Sequencing and POR

... The MAX1858 step-down converters use a PWM voltage-mode control scheme (Figure 2) for each out-ofphase controller. The controller generates the clock signal by dividing down the internal oscillator or SYNC input when driven by an external clock, so each controller’s switching frequency equals half t ...
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SGC-6289Z 数据资料DataSheet下载

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OP37

... 63 MHz Gain Bandwidth Low Input Offset Voltage, 10 V Excellent CMRR, 126 dB (Common-Voltage @ 11 V) High Open-Loop Gain, 1.8 Million Replaces 725, OP-07, SE5534 In Gains > 5 Available in Die Form ...
Up to 2 A step-down switching regulator for automotive applications
Up to 2 A step-down switching regulator for automotive applications

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Amplifier



An amplifier, electronic amplifier or (informally) amp is an electronic device that increases the power of a signal.It does this by taking energy from a power supply and controlling the output to match the input signal shape but with a larger amplitude. In this sense, an amplifier modulates the output of the power supply to make the output signal stronger than the input signal. An amplifier is effectively the opposite of an attenuator: while an amplifier provides gain, an attenuator provides loss.An amplifier can either be a separate piece of equipment or an electrical circuit within another device. The ability to amplify is fundamental to modern electronics, and amplifiers are extremely widely used in almost all electronic equipment. The types of amplifiers can be categorized in different ways. One is by the frequency of the electronic signal being amplified; audio amplifiers amplify signals in the audio (sound) range of less than 20 kHz, RF amplifiers amplify frequencies in the radio frequency range between 20 kHz and 300 GHz. Another is which quantity, voltage or current is being amplified; amplifiers can be divided into voltage amplifiers, current amplifiers, transconductance amplifiers, and transresistance amplifiers. A further distinction is whether the output is a linear or nonlinear representation of the input. Amplifiers can also be categorized by their physical placement in the signal chain.The first practical electronic device that amplified was the Audion (triode) vacuum tube, invented in 1906 by Lee De Forest, which led to the first amplifiers. The terms ""amplifier"" and ""amplification"" (from the Latin amplificare, 'to enlarge or expand') were first used for this new capability around 1915 when triodes became widespread. For the next 50 years, vacuum tubes were the only devices that could amplify. All amplifiers used them until the 1960s, when transistors appeared. Most amplifiers today use transistors, though tube amplifiers are still produced.
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