英語 での Analog-to-digital converter の使用例とその 日本語 への翻訳
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The ADS1120 is a precision, 16-bit, analog-to-digital converter(ADC) that offers many integrated features to reduce system cost and component count in applications measuring small sensor signals.
The analog voltage needs to be conditioned and then converted into a digital signal using an audio analog-to-digital converter(ADC) or audio codec.
Improved testing efficiency through innovative features For all members of the product family, each SMU is equipped with its own analog-to-digital converter(ADC), which speeds up test times and even supports true parallel measurement.
In the heart of the signal path is a 16-bit analog-to-digital converter(ADC) that converts the analog input signal to a digital value to be processed by the internal microprocessor.
Every channel is equipped with an independent full range input amplifier, a 7-pole Bessel or Butterworth analog anti-aliasing filter, user selectable digital Bessel, Butterworth and Elliptic IIR filters and an 18 bit Analog-to-Digital converter.
By means of a cellular cdma2000 multicarrier receiver design example, this article discusses some of the most important parameters that influence the analog-to-digital converter(ADC) component selection-parameters such as the IF frequency, the receiver's analog power gain, the signal bandwidth, and the ADC's sample clock frequency.
MAX195 16-Bit, 85ksps ADC with 10μA Shutdown- Maxim Description Create a design and simulate using EE-Sim® tools: The MAX195 is a 16-bit successive-approximation analog-to-digital converter(ADC) that combines high speed, high accuracy, low power consumption, and a 10μA shutdown mode.
2Msps, analog-to-digital converter ADC.
Figure 3 shows a block diagram of the sensor, which includes the array, analog-to-digital converter, on-chip oscillator, control and status registers, navigation and click units, and separate interfaces for slow and fast modes of operation.
The MAX1011 is a 6-bit analog-to-digital converter(ADC) that combines high-speed, low-power operation with a user-selectable input range, an internal reference, and a clock oscillator.
SPITM-compatible 3Msps analog-to-digital converter ADC.
When a single touch occurs, a voltage divider is formed in the active layer, and the passive-layer voltage measurement allows an analog-to-digital converter to read the voltage proportional to the distance of the touch point from the negative electrode1.
MAX1205 +5V Single-Supply, 1Msps, 14-Bit Self-Calibrating ADC- Maxim Description Create a design and simulate using EE-Sim® tools: The MAX1205 is a 14-bit, monolithic, analog-to-digital converter(ADC) capable of conversion rates up to 1Msps.
An internal phase locked loop(PLL) multiplies the incoming analog-to-digital converter(ADC) sampling clock to derive the bit clock, which is used to serialize the 14-bit data from each channel.
sigma-delta analog-to-digital converter ADC.
MAX101A 500Msps, 8-Bit ADC with Track/Hold- Maxim Description Create a design and simulate using EE-Sim® tools: The MAX101A ECL-compatible, 500Msps, 8-bit analog-to-digital converter(ADC) allows accurate digitizing of analog signals from DC to 250MHz Nyquist frequency.
6-bit, analog-to-digital converter(ADC) designed to allow fast and precise digitizing of in-phase(I) and quadrature(Q) baseband signals.
sampling 14-bit analog-to-digital converter(ADC) that combines an on-chip track/hold and a low-drift, low-noise, buried-zener voltage reference with fast conversion speed and low power consumption.
MAX1219 1.8V, Dual, 12-Bit, 210Msps ADC for Broadband Applications- Maxim Description Create a design and simulate using EE-Sim® tools: The MAX1219 dual, monolithic, 12-bit, 210Msps analog-to-digital converter(ADC) provides outstanding dynamic performance up to a 250MHz input frequency.
MAX16031 EEPROM-Based System Monitors with Nonvolatile Fault Memory- Maxim Description Create a design and simulate using EE-Sim® tools: The MAX16031/MAX16032 EEPROM-configurable system monitors feature an integrated 10-bit analog-to-digital converter(ADC) designed to monitor voltages, temperatures, and current in complex systems.