MAX1226BCEE+ Allicdata Electronics
Allicdata Part #:

MAX1226BCEE+-ND

Manufacturer Part#:

MAX1226BCEE+

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Maxim Integrated
Short Description: IC ADC 12-BIT 300KSPS 16-QSOP
More Detail: 12 Bit Analog to Digital Converter 4, 8 Input 1 SA...
DataSheet: MAX1226BCEE+ datasheetMAX1226BCEE+ Datasheet/PDF
Quantity: 135
Stock 135Can Ship Immediately
Specifications
Number of A/D Converters: 1
Base Part Number: MAX1226
Supplier Device Package: 16-QSOP
Package / Case: 16-SSOP (0.154", 3.90mm Width)
Operating Temperature: 0°C ~ 70°C
Features: Temperature Sensor
Voltage - Supply, Digital: 5V
Voltage - Supply, Analog: 5V
Reference Type: External, Internal
Architecture: SAR
Series: --
Ratio - S/H:ADC: 1:1
Configuration: MUX-S/H-ADC
Data Interface: SPI
Input Type: Differential, Single Ended
Number of Inputs: 4, 8
Sampling Rate (Per Second): 300k
Number of Bits: 12
Part Status: Active
Packaging: Tube 
Description

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Data Acquisition - Analog to Digital Converters (ADC) is an important computer technology that allows the conversion of analog signals into digital signals for use in computers and other electronic components. The MAX1226BCEE+ is an efficient, versatile ADC that is suitable for a range of applications. This article will discuss the application field and working principle of this device.

The MAX1226BCEE+ is an versatile, 8-bit, SAR ADC that is suitable for use in low-power applications. This device operates from a single 2.7V to 3.6V power supply and can be used with an integrated analog-to-digital converter (ADC) controller. It is capable of sampling rates up to 16MSPS and has a wide range of input range and voltage reference options. Furthermore, it features an internal comparator and on-chip Voltage Reference. This makes it particularly suitable for low-power analog-to-digital conversion and for applications such as battery-powered devices, automotive, smart meters, and medical instruments.

The MAX1226BCEE+ is a highly efficient device that operates on low power. It includes several key features such as low power shutdown, fast start-up and low latency. Furthermore, it is located on an 8-bit Serial Peripheral Interface (SPI) bus, which allows for faster data transmission and high accuracy. Additionally, the device has a few options for the reference voltage, such as external references and integrated references, to ensure the most accurate conversion.

The working principle of the MAX1226BCEE+ is based on the successive approximation register (SAR). This method is used to convert an analog input signal into a digital output by measuring the magnitude of the input. The device uses a series of comparators to compare the reference voltage to the input signal. The output from this comparison process is then used to determine the output voltage. Each comparison cycle takes a certain number of clock cycles. After each comparison cycle the SAR\'s output is compared to the reference voltage again and the output is adjusted accordingly. This process continues until the output is equal to the reference voltage and the conversion is complete.

The MAX1226BCEE+ is a versatile, high-performance ADC that is well-suited to low-power digital conversion applications. Its 8-bit SAR architecture allows for precise digital conversion while reducing power consumption. Additionally, the low power consumption allows the device to be used in battery-powered portable applications. Additionally, the fast start-up and low latency make the device suitable for applications that require fast response and high accuracy.

In summary, the MAX1226BCEE+ is a versatile, efficient, 8-bit SAR ADC. It is suitable for use in a range of applications such as battery-powered devices, automotive, smart meters, and medical instruments. It features low power consumption, fast start-up and low latency, and multiple reference voltage options. Furthermore, its working principle is based on a successive approximation register (SAR) for precise digital conversion. It is an ideal device for applications that require low power consumption and high accuracy.

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

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