ADC1213D065HN/C1,5 Allicdata Electronics
Allicdata Part #:

568-5648-ND

Manufacturer Part#:

ADC1213D065HN/C1,5

Price: $ 10.49
Product Category:

Integrated Circuits (ICs)

Manufacturer: IDT, Integrated Device Technology Inc
Short Description: ADC 12BIT DUAL 65MSPS 56HVQFN
More Detail: 12 Bit Analog to Digital Converter 2 Input 2 Pipel...
DataSheet: ADC1213D065HN/C1,5 datasheetADC1213D065HN/C1,5 Datasheet/PDF
Quantity: 1000
260 +: $ 9.53519
Stock 1000Can Ship Immediately
$ 10.49
Specifications
Number of A/D Converters: 2
Base Part Number: ADC1213D
Supplier Device Package: 56-HVQFN (8x8)
Package / Case: 56-VFQFN Exposed Pad
Operating Temperature: -40°C ~ 85°C
Features: Simultaneous Sampling
Voltage - Supply, Digital: 1.65 V ~ 1.95 V
Voltage - Supply, Analog: 2.85 V ~ 3.4 V
Reference Type: External, Internal
Architecture: Pipelined
Series: --
Ratio - S/H:ADC: 1:1
Configuration: S/H-ADC
Data Interface: JESD204A
Input Type: Differential, Single Ended
Number of Inputs: 2
Sampling Rate (Per Second): 65M
Number of Bits: 12
Part Status: Active
Packaging: Tray 
Description

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Data Acquisition - Analog to Digital Converters (ADC) is a type of technology that enables analog signals to be converted into digital signals and vice versa. This technology is used in a wide range of applications, including video and sound, controlling digital devices and monitoring environmental and medical equipment. One specific type of ADC is the ADC1213D065HN/C1,5.

The ADC1213D065HN/C1,5 is a low power, 10-bit monolithic analog-to-digital converter with a voltage reference and low-power 8-bit digital-to-analog convertor. It is capable of operating from a single 3.0V power supply, with a full-scale input range of 0 to +4.096V. It is designed for use with low power applications and has a 68 dB signal to noise ratio and an 86 dB signal-to-noise and distortion ratio (SNR/DNR). It also features two separate, multiplexed voltage reference outputs that can be used to provide separate capacitor or resistor values for each of the analog-to-digital converters.

The ADC1213D065HN/C1,5 has a wide range of uses, and is especially useful for applications requiring versatile signal acquisition. It can be found in a variety of applications, including medical imaging, signal conditioning, environmental monitoring, and data acquisition. In medical imaging, it can be used to measure the electrical signals from physiological sources, such as ECG and EEG signals, and can be used to quantify the images and reconstruct the data. In signal conditioning, it is used to accurately measure and store signal amplitudes and other characteristics. In environmental monitoring, it is used to measure and store a variety of physical parameters, such as temperature, humidity and barometric pressure. Finally, in data acquisition, it is used to convert analog signals to a digital format for storage and subsequent analysis.

The ADC1213D065HN/C1,5 is based on the principle of sampling the analog signal and quantizing it by comparing the input signal with predetermined voltage levels. The voltage levels are established by two separate voltage references, which provide the ADC with a reference level for each of the 10-bit steps. This reference level is used to make sure that the voltage levels are properly established and that the signal is properly quantized. The quantized signal can then be stored in its digital form, which is much easier to manipulate than analog signals.

In conclusion, the ADC1213D065HN/C1,5 is a versatile and reliable 10-bit analog-to-digital convertor that is suitable for a wide range of applications. Its low power design makes it a great choice for applications that require minimal power consumption, and its multiplexed voltage reference outputs allow for the selection of different capacitor or resistor values for each of the analog-to-digital convertors. Finally, its sampling and quantizing principles allow for the digital conversion of analog signals for accurate storage and subsequent analysis.

The specific data is subject to PDF, and the above content is for reference

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