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Precision, Low Power INSTRUMENTATION AMPLIFIER INA118
Precision, Low Power INSTRUMENTATION AMPLIFIER INA118

... The inputs of the INA118 are individually protected for voltages up to ±40V. For example, a condition of –40V on one input and +40V on the other input will not cause damage. Internal circuitry on each input provides low series impedance under normal signal conditions. To provide equivalent protectio ...
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... ,但由于芯片型号的限制 ,加上 are, in many ways, similar to those for data conversion in 只有可靠的设计技术和结构才能使用 ,高速电路就显得 general. High speed circuits may sometimes seem different because device types can be limited and。 only certain design 有些不同 高速电路或系统 ,然而它们的基础是一样的 techniques and architectures can be used with success. ...
DI-149 protocol - DATAQ Instruments
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... would have an antenna for looking at ambient noise. Moving the probe around your cell phone, computer, or monitor, you would see what is picked up out of the air. Generally, line frequency dominates, but other frequencies, such as the operating frequency of a nearby switched-mode power converter, wo ...
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... Course Outcomes and Relation to ABET Program Outcomes: Upon successful completion of this course, the student should be able to: 1. Recognize the basic terms of common measurements; accuracy, precision, sensitivity, resolution and error.[PO1 H, PO5 H, PO7 L] 2. Estimate the accuracy of a measurement ...
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... ADC. R4 and Rt provide for double termination of the transmission line between the amplifier and the ADC, and form a voltage divider. C3 helps absorb charge injection from the ADC’s input. R4 and C3 form a real pole that can be used to make a third-order filter, in conjunction with the complex pole ...
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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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