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ICS854S01I Datasheet - Integrated Device Technology
ICS854S01I Datasheet - Integrated Device Technology

Sampling and Reconstruction
Sampling and Reconstruction

Issue 22 - HP Archive
Issue 22 - HP Archive

Detailed Course Lectures (PowerPoint file)
Detailed Course Lectures (PowerPoint file)

...  Offset Error: Voltage measured when the measurement is zero.  Full-scale (Gain) Error: difference between the ideal voltage and the actual voltage when the measurement is at maximum.  Drift: change of the output as the temperature varies. ...
OP37 Low Noise, Precision, High Speed Operational Amplifier
OP37 Low Noise, Precision, High Speed Operational Amplifier

using the sa605/615 if processor ic
using the sa605/615 if processor ic

EEL 4512 – INTRODUCTION TO COMMUNICATION SYSTEMS
EEL 4512 – INTRODUCTION TO COMMUNICATION SYSTEMS

a High Accuracy anyCAP 50 mA Low Dropout Linear Regulator ADP3300
a High Accuracy anyCAP 50 mA Low Dropout Linear Regulator ADP3300

... that is repeatable and very well controlled. The temperatureproportional offset voltage is combined with the complimentary diode voltage to form a “virtual bandgap” voltage, implicit in the network, although it never appears explicitly in the circuit. Ultimately, this patented design makes it possib ...
Capacitors
Capacitors

... Final voltage The voltage across the capacitor decreases as the meter measures voltage using a resistor to sense the current. This is an example of how the act of measurement can change the state of an experiment! Repeat the experiment with two 10μF capacitors in series as shown in figure 3.10. Remo ...
LTC6403-1 - 200MHz, Low Noise, Low Power Fully Differential Input
LTC6403-1 - 200MHz, Low Noise, Low Power Fully Differential Input

A 1 GS/s 6 bits Time-Based Analog-to
A 1 GS/s 6 bits Time-Based Analog-to

OP193 数据手册DataSheet 下载
OP193 数据手册DataSheet 下载

... The OP193 family of single-supply operational amplifiers features a combination of high precision, low supply current and the ability to operate at low voltages. For high performance in single-supply systems the input and output ranges include ground, and the outputs swing from the negative rail to ...
OPA2604 - Texas Instruments
OPA2604 - Texas Instruments

CA3130, CA3130A Datasheet
CA3130, CA3130A Datasheet

MC33170 RF Amplifier Companion Chip for Dual-Band Cellular Subscriber Terminal
MC33170 RF Amplifier Companion Chip for Dual-Band Cellular Subscriber Terminal

Chapter 3 - Op Amps(PowerPoint Format)
Chapter 3 - Op Amps(PowerPoint Format)

Practical Power Solutions
Practical Power Solutions

... This shows a typical filtering network for the power supply and signal input of an in-amp. Let's look at the power supply networks first. The input LC filter is designed to remove the ripple component of the power supply noise. The 100 µF electrolytic capacitors should be located within a couple of ...
ADuM2200 数据手册DataSheet下载
ADuM2200 数据手册DataSheet下载

... The ADuM220x isolators provide two independent isolation channels in a variety of channel configurations and data rates (see the Ordering Guide). The ADuM220x models operate with the supply voltage of either side ranging from 3.0 V to 5.5 V, providing compatibility with lower voltage systems as well ...
BelaSigna 250
BelaSigna 250

Action PAK AP1280 & AP1290 ® Thermocouple Input,
Action PAK AP1280 & AP1290 ® Thermocouple Input,

... performed in the operating installation, allowing approximately 12 hours for warmup and thermal equilibrium of the system. Setpoint: Set deadband at its minimum (factory default - fully CCW) before adjusting the setpoint. With the appropriate input applied, adjust setpoint until the relay trips. For ...
ADS5271 数据资料 dataSheet 下载
ADS5271 数据资料 dataSheet 下载

... expressed in terms of % of full-scale. Fixed attenuation in the channel arises due to a fixed attenuation in the sample-and-hold amplifier. When the differential voltage at the analog input pins are changed from –VREF to +VREF, the swing of the output code is expected to deviate from the full-scale ...
Lecture 9
Lecture 9

... voltage is suddenly removed. • In general, when an applied current or voltage suddenly changes, the voltages and currents in an RL or RC circuit will change exponentially with time, from their initial values to their final values, with the characteristic time constant t: ...
Test Procedure for the NCL30051LEDGEVB Evaluation Board
Test Procedure for the NCL30051LEDGEVB Evaluation Board

Preliminary Datasheet Industrial DC/DC CONVERTER MGDDI-20 Ultra Wide Input : 20W POWER
Preliminary Datasheet Industrial DC/DC CONVERTER MGDDI-20 Ultra Wide Input : 20W POWER

Diode Logic
Diode Logic

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Analog-to-digital converter



An analog-to-digital converter (ADC, A/D, or A to D) is a device that converts a continuous physical quantity (usually voltage) to a digital number that represents the quantity's amplitude.The conversion involves quantization of the input, so it necessarily introduces a small amount of error. Furthermore, instead of continuously performing the conversion, an ADC does the conversion periodically, sampling the input. The result is a sequence of digital values that have been converted from a continuous-time and continuous-amplitude analog signal to a discrete-time and discrete-amplitude digital signal.An ADC is defined by its bandwidth (the range of frequencies it can measure) and its signal to noise ratio (how accurately it can measure a signal relative to the noise it introduces). The actual bandwidth of an ADC is characterized primarily by its sampling rate, and to a lesser extent by how it handles errors such as aliasing. The dynamic range of an ADC is influenced by many factors, including the resolution (the number of output levels it can quantize a signal to), linearity and accuracy (how well the quantization levels match the true analog signal) and jitter (small timing errors that introduce additional noise). The dynamic range of an ADC is often summarized in terms of its effective number of bits (ENOB), the number of bits of each measure it returns that are on average not noise. An ideal ADC has an ENOB equal to its resolution. ADCs are chosen to match the bandwidth and required signal to noise ratio of the signal to be quantized. If an ADC operates at a sampling rate greater than twice the bandwidth of the signal, then perfect reconstruction is possible given an ideal ADC and neglecting quantization error. The presence of quantization error limits the dynamic range of even an ideal ADC, however, if the dynamic range of the ADC exceeds that of the input signal, its effects may be neglected resulting in an essentially perfect digital representation of the input signal.An ADC may also provide an isolated measurement such as an electronic device that converts an input analog voltage or current to a digital number proportional to the magnitude of the voltage or current. However, some non-electronic or only partially electronic devices, such as rotary encoders, can also be considered ADCs. The digital output may use different coding schemes. Typically the digital output will be a two's complement binary number that is proportional to the input, but there are other possibilities. An encoder, for example, might output a Gray code.The inverse operation is performed by a digital-to-analog converter (DAC).
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