Texas Instruments microPOWER™ series Analog to Digital Converters (ADC)

Introduction, stock information and FAQs of microPOWER™ series ADC

In this article, you will be informed about the features, applications, PDF datasheets, alternative items, and the most recent stock and cost data of the Texas Instruments microPOWER™ series ADC.

Applications

  • Advanced driver assistance systems (ADAS)
  • Factory automation & control
  • Medical
Associated Products

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ADS7822E/2K5G4IC ADC 12 BIT 200KHZ 8VSSOP28BUY
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ADS7826IDRBRG4Single Channel Single ADC SAR 200ksps 10-bit Serial 8-Pin VSON EP T/R28BUY
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ADS8326IDRBRIC ADC 16BIT SRL 250KSPS 8SON12BUY
ADS7886SDBVRIC ADC 12BIT 1MSPS SAR SOT23-619RFQ
ADS7866IDBVRG4IC ADC 12BIT 200KSPS SOT23-628RFQ
ADS7826IDRBRSingle Channel Single ADC SAR 200ksps 10-bit Serial 8-Pin VSON EP T/R25RFQ
ADS7960SDBTRIC ADC 8BIT SER 1M 38TSSOP9600RFQ
ADS7954SRGERIC ADC 10BIT 1MSPS 4CH 24VQFN471RFQ
ADS7888SDCKTIC ADC 8BIT 1.25MSPS SC70-616347RFQ
TLC0820AIDWRIC ADC 8BIT MOD FLASH 20-SOIC1298RFQ
TLC0820ACDWRIC ADC 8BIT MOD FLASH 20-SOIC10000RFQ
ADS7958SDBTRIC ADC 8BIT SER 1M 30TSSOP198RFQ
ADS7959SRGERIC ADC 8BIT 1MSPS 8CH 24VQFN2309RFQ
ADS7886SDCKRIC ADC 12BIT 1MSPS SAR SC70-63995RFQ
ADS7887SDCKTIC ADC 10BIT 1.25MSPS SC70-618744RFQ
ADS8865IDRCTSingle Channel Single ADC SAR 400ksps 16-bit Serial 10-Pin VSON EP T/R69989RFQ
Technical Documents

Texas Instruments microPOWER™ series Analog to Digital Converters (ADC) are a family of low-power, high-performance ADCs designed to meet the needs of a wide range of applications. These ADCs feature a wide input range, low power consumption, and high accuracy. They are available in a variety of resolutions, from 8-bit to 16-bit, and offer a wide range of sampling rates, from 1 kSPS to 1 MSPS. The microPOWER™ series also offers a variety of features, such as programmable gain, offset, and reference voltage, as well as a wide range of digital interfaces, including SPI, I2C, and UART. With their low power consumption and high performance, the microPOWER™ series ADCs are ideal for battery-powered and portable applications.


Features


• Low power consumption: The microPOWER™ series of ADCs feature low power consumption, allowing for extended battery life and reduced system power requirements.

• High resolution: The microPOWER™ series of ADCs offer high resolution, allowing for accurate data acquisition and conversion.

• High speed: The microPOWER™ series of ADCs offer high speed, allowing for fast data acquisition and conversion.

• Low noise: The microPOWER™ series of ADCs feature low noise, allowing for accurate data acquisition and conversion.

• Wide input range: The microPOWER™ series of ADCs offer a wide input range, allowing for a variety of input signals to be converted.


Applications


• Automotive: The microPOWER™ series of ADCs can be used in automotive applications, such as engine control, fuel injection, and emissions control.

• Industrial: The microPOWER™ series of ADCs can be used in industrial applications, such as process control, machine control, and robotics.

• Medical: The microPOWER™ series of ADCs can be used in medical applications, such as patient monitoring, imaging, and diagnostics.

• Consumer: The microPOWER™ series of ADCs can be used in consumer applications, such as home automation, security systems, and entertainment systems.


Frequently Asked Questions

What are the Alternative Products of Texas Instruments microPOWER™ series Analog to Digital Converters (ADC)?

1. Analog Devices ADCs 2. Maxim Integrated ADCs 3. Microchip Technology ADCs 4. NXP Semiconductors ADCs 5. STMicroelectronics ADCs 6. ON Semiconductor ADCs 7. Cirrus Logic ADCs 8. Asahi Kasei Microdevices ADCs 9. ROHM Semiconductor ADCs 10. Silicon Labs ADCs

What are the differences between the types of Texas Instruments microPOWER™ series Analog to Digital Converters (ADC)?

1. Resolution: The resolution of the microPOWER™ series ADCs varies from 8-bit to 16-bit. The higher the resolution, the more accurate the conversion of analog signals to digital signals.  2. Speed: The speed of the microPOWER™ series ADCs varies from 1MSPS to 10MSPS. The higher the speed, the faster the conversion of analog signals to digital signals.  3. Input Range: The input range of the microPOWER™ series ADCs varies from 0V to 5V to 0V to 10V. The wider the input range, the more versatile the ADC is for different types of analog signals.  4. Power Consumption: The power consumption of the microPOWER™ series ADCs varies from 0.5mW to 1.5mW. The lower the power consumption, the more efficient the ADC is.