MX674AKCWI+ Allicdata Electronics
Allicdata Part #:

MX674AKCWI+-ND

Manufacturer Part#:

MX674AKCWI+

Price: $ 21.74
Product Category:

Integrated Circuits (ICs)

Manufacturer: Maxim Integrated
Short Description: IC ADC 12BIT W/REF 28-SOIC
More Detail: 12 Bit Analog to Digital Converter 1 Input 1 SAR 2...
DataSheet: MX674AKCWI+ datasheetMX674AKCWI+ Datasheet/PDF
Quantity: 1000
25 +: $ 19.76610
Stock 1000Can Ship Immediately
$ 21.74
Specifications
Number of A/D Converters: 1
Base Part Number: MX674A
Supplier Device Package: 28-SO
Package / Case: 28-SOIC (0.295", 7.50mm Width)
Operating Temperature: 0°C ~ 70°C
Features: --
Voltage - Supply, Digital: 5V
Voltage - Supply, Analog: ±11.4 V ~ 16.5 V
Reference Type: External, Internal
Architecture: SAR
Series: --
Ratio - S/H:ADC: 1:1
Configuration: S/H-ADC
Data Interface: Parallel
Input Type: Single Ended
Number of Inputs: 1
Sampling Rate (Per Second): 66k
Number of Bits: 12
Part Status: Active
Packaging: Tube 
Description

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Analog to Digital Converters (ADC) are electrical components that convert analog electric signals into digital representations of those signals. The MX674AKCWI+ is a type of ADC that enables the digital sampling of analog signals and is used in a variety of devices and applications from audio equipment to energy management systems. This article will provide an overview of the MX674AKCWI+ application field and working principle.

The MX674AKCWI+ is an 8-bit ADC capable of analog input conversion rates of up to 6.4 MSPS (mega samples per second). It provides excellent signal-to-noise performance (<-65 dBFS) and is designed to meet the demanding requirements of consumer audio and video applications, telecommunications, energy management systems, mobile computing, automated test equipment, and other general-purpose applications. This ADC is well suited for applications requiring high resolution and low power dissipation such as communication over longer distances. The power consumption of the MX674AKCWI+ is less than 1 mW.

In terms of its application field, the MX674AKCWI+ is primarily used to convert analog signals into digital signals. It can be used in a variety of devices such as mixers, microphones, audio signals and video signals. In addition, it can be used as a digital to analog conversion (DAC) device in some applications. This versatile converter can also be used in energy management systems to control the flow of electricity, or for communication purposes such as radio broadcasting, cellular transmission, and other applications for transferring data over long distances.

The MX674AKCWI+ has a differential linearity error (DLE) of less than 15 LSBs (least significant bits). This ensures that the signal is accurately converted from its analog form to its digital form. The signal is further improved by low pass filtering, noise immunity, and a wide dynamic range. In addition, the ADC offers a wide input range, allowing for the conversion of a very wide range of analog signals.

The working principle of the MX674AKCWI+ is fairly straightforward. The signal is first sampled and then converted into a digital signal. This signal is then sent to a digital to analog converter (DAC) which in turn generates the analog signal. The DAC then sends the analog signal back to the MX674AKCWI+ which then converts it to digital form and sends it to the user. The conversion process is repeated until the desired audio or video signal is obtained.

In summary, the MX674AKCWI+ is an 8-bit ADC designed for a variety of devices and applications. It is capable of analog input conversion rates of up to 6.4 MSPS and is well suited for applications requiring high resolution and low power consumption. Its differential linearity error (DLE) is less than 15 LSBs and it has a wide input range. The working principle of the converter is fairly simple. It samples an analog signal and then converts it to digital form. The signal then goes to a DAC before being sent back to the converter and repeated until the desired audio or video signal is obtained.

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

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