Texas Instruments ADS7827IDRBRG4
- ADS7827IDRBRG4
- Texas Instruments
- IC ADC 8BIT SAR 8SON
- Data Acquisition - Analog to Digital Converters (ADC)
- ADS7827IDRBRG4 Datasheet
- 8-VDFN Exposed Pad
- Tape & Reel (TR)
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What is ADS7827IDRBRG4
Texas Instruments Part Number ADS7827IDRBRG4(Data Acquisition - Analog to Digital Converters (ADC)), developed and manufactured by Texas Instruments, distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.
ADS7827IDRBRG4 is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.
ADS7827IDRBRG4 Specifications
- Part NumberADS7827IDRBRG4
- CategoryData Acquisition - Analog to Digital Converters (ADC)
- ManufacturerTexas Instruments
- DescriptionIC ADC 8BIT SAR 8SON
- PackageTape & Reel (TR)
- SeriesmicroPOWER™
- Features-
- Operating Temperature-40°C ~ 85°C
- Mounting TypeSurface Mount
- Package / Case8-VDFN Exposed Pad
- Supplier Device Package8-SON (3x3)
- Reference TypeExternal
- Sampling Rate (Per Second)250k
- Data InterfaceSPI
- Number of Bits8
- Voltage - Supply, Analog2.7V ~ 5.25V
- Voltage - Supply, Digital2.7V ~ 5.25V
- Number of Inputs1
- Input TypePseudo-Differential
- ConfigurationS/H-ADC
- Ratio - S/H:ADC1:1
- Number of A/D Converters1
- ArchitectureSAR
Application of ADS7827IDRBRG4
ADS7827IDRBRG4 Datasheet
ADS7827IDRBRG4 Datasheet , Tape & Reel (TR),microPOWER™,-40°C ~ 85°C,Surface Mount,8-VDFN Exposed Pad,8-SON (3x3),External,250k,SPI,8,2.7V ~ 5.25V,2.7V ~ 5.25V,1,Pseudo-Differential,S/H-ADC,1:1,1,SAR
ADS7827IDRBRG4 Classification
Data Acquisition - Analog to Digital Converters (ADC)
FAQ about Data Acquisition - Analog to Digital Converters (ADC)
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1. What are DAC and ADC?
ADC and DAC are two important concepts in digital electronics. ADC stands for "analog-to-digital converter", which can convert analog signals into digital signals. DAC stands for "digital-to-analog converter", which can convert digital signals into analog signals. Both converters play an important role in many electronic products, such as mobile phones, televisions, stereos, etc.
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2. What process converts analog to digital?
There are three basic processes for analog to digital conversion:
The first process is "sampling", which is to extract the sample value of the analog signal at equal intervals to turn the continuous signal into a discrete signal.
The second process is called "quantization", which is to convert the extracted sample value into the closest digital value to represent the size of the extracted sample value.
The third process is "encoding", which is to represent the quantized value with a set of binary digits. After these three processes, the digitization of the analog signal can be completed. This method is called "pulse encoding".
After the digital signal is transmitted to the receiving end, a restoration process is required, that is, the received digital signal is converted back to an analog signal so that it can be understood by the receiver. This process is called "digital-to-analog conversion", which reproduces it as sound or image. -
3. What is the difference between ADC and DAC?
The main difference between ADC and DAC is that they process different types of signals and conversion directions.
The main function of an ADC (analog-to-digital converter) is to convert analog signals into digital signals. This process involves sampling, quantization, and encoding, where sampling is the periodic measurement of the value of an analog signal at a certain sampling rate, quantization is the conversion of the sampled continuous values into a finite number of discrete levels, and encoding is the conversion of the quantized discrete levels into binary code. The output of the ADC is a digital signal that can be processed and stored by a computer or other digital circuit for various applications such as digital signal processing, data logging, and communications. Common applications in life include microphones, digital thermometers, digital cameras, etc., which convert the actual perceived analog information into digital signals for further processing and analysis12.
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