Digital to Analog Convertor - определение. Что такое Digital to Analog Convertor
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Что (кто) такое Digital to Analog Convertor - определение

DEVICE THAT CONVERTS A DIGITAL SIGNAL INTO AN ANALOG SIGNAL
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  • A simplified functional diagram of an 8-bit DAC
  • Top-loading CD player and external digital-to-analog converter.
  • 8-channel [[Cirrus Logic]] CS4382 digital-to-analog converter as used in a [[sound card]].
  • IBM Selectric typewriter uses a mechanical digital-to-analog converter to control its typeball.
  • Sampled signal.

Analog-to-digital converter         
  • '''Fig. 1.''' An 8-level ADC coding scheme
  • Analog to digital conversion as shown with fig. 1 and fig. 2.
  • Comparison of quantizing a sinusoid to 64 levels (6 bits) and 256 levels (8 bits).  The additive noise created by 6-bit quantization is 12 dB greater than the noise created by 8-bit quantization.  When the spectral distribution is flat, as in this example, the 12 dB difference manifests as a measurable difference in the noise floors.
SYSTEM THAT CONVERTS AN ANALOG SIGNAL, SUCH AS A SOUND PICKED UP BY A MICROPHONE OR LIGHT ENTERING A DIGITAL CAMERA, INTO A DIGITAL SIGNAL; DEVICE CONVERTING A PHYSICAL QUANTITY TO A DIGITAL NUMBER
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In electronics, an analog-to-digital converter (ADC, A/D, or A-to-D) is a system that converts an analog signal, such as a sound picked up by a microphone or light entering a digital camera, into a digital signal. An ADC may also provide an isolated measurement such as an electronic device that converts an analog input voltage or current to a digital number representing the magnitude of the voltage or current.
Digital to Analog Converter         
<electronics> (DAC) A device which takes a digital value and outputs a voltage which is proportional to the input value. Typical uses include digital generation of audio signals or conversion of a bitmap image to a signal to drive a CRT. (1998-02-15)
A/D         
  • '''Fig. 1.''' An 8-level ADC coding scheme
  • Analog to digital conversion as shown with fig. 1 and fig. 2.
  • Comparison of quantizing a sinusoid to 64 levels (6 bits) and 256 levels (8 bits).  The additive noise created by 6-bit quantization is 12&nbsp;dB greater than the noise created by 8-bit quantization.  When the spectral distribution is flat, as in this example, the 12&nbsp;dB difference manifests as a measurable difference in the noise floors.
SYSTEM THAT CONVERTS AN ANALOG SIGNAL, SUCH AS A SOUND PICKED UP BY A MICROPHONE OR LIGHT ENTERING A DIGITAL CAMERA, INTO A DIGITAL SIGNAL; DEVICE CONVERTING A PHYSICAL QUANTITY TO A DIGITAL NUMBER
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¦ abbreviation Electronics analogue to digital.

Википедия

Digital-to-analog converter

In electronics, a digital-to-analog converter (DAC, D/A, D2A, or D-to-A) is a system that converts a digital signal into an analog signal. An analog-to-digital converter (ADC) performs the reverse function.

There are several DAC architectures; the suitability of a DAC for a particular application is determined by figures of merit including: resolution, maximum sampling frequency and others. Digital-to-analog conversion can degrade a signal, so a DAC should be specified that has insignificant errors in terms of the application.

DACs are commonly used in music players to convert digital data streams into analog audio signals. They are also used in televisions and mobile phones to convert digital video data into analog video signals. These two applications use DACs at opposite ends of the frequency/resolution trade-off. The audio DAC is a low-frequency, high-resolution type while the video DAC is a high-frequency low- to medium-resolution type.

Due to the complexity and the need for precisely matched components, all but the most specialized DACs are implemented as integrated circuits (ICs). These typically take the form of metal–oxide–semiconductor (MOS) mixed-signal integrated circuit chips that integrate both analog and digital circuits.

Discrete DACs (circuits constructed from multiple discrete electronic components instead of a packaged IC) would typically be extremely high-speed low-resolution power-hungry types, as used in military radar systems. Very high-speed test equipment, especially sampling oscilloscopes, may also use discrete DACs.