ADS5270IPFP Allicdata Electronics
Allicdata Part #:

296-17091-ND

Manufacturer Part#:

ADS5270IPFP

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC ADC 12BIT 8CH 40MSPS 80HTQFP
More Detail: 12 Bit Analog to Digital Converter 8 Input 8 Pipel...
DataSheet: ADS5270IPFP datasheetADS5270IPFP Datasheet/PDF
Quantity: 4
Stock 4Can Ship Immediately
Specifications
Ratio - S/H:ADC: 1:1
Number of A/D Converters: 8
Architecture: Pipelined
Reference Type: External, Internal
Voltage - Supply, Analog: 3 V ~ 3.6 V
Voltage - Supply, Digital: 3 V ~ 3.6 V
Features: Simultaneous Sampling
Operating Temperature: -40°C ~ 85°C
Package / Case: 80-TQFP Exposed Pad
Supplier Device Package: 80-HTQFP (12x12)
Base Part Number: ADS5270
Series: --
Packaging: Tray 
Part Status: Active
Number of Bits: 12
Sampling Rate (Per Second): 40M
Number of Inputs: 8
Input Type: Differential
Data Interface: LVDS - Serial
Configuration: S/H-ADC
Description

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Analog to Digital converters (ADC) are used for data acquisition in many different industries. The ADS5270IPFP is a high performance, high precision ADC that is designed for applications requiring up to 12-bit resolution. This device is ideal for applications that require high sampling rates, such as automotive, avionics, medical, communications, instrumentation and industrial automation.

The ADS5270IPFP offers a wide input range of +2.5V to +5.25 V DC and a maximum sampling rate of 70 million samples per second. It offers two power save modes that can reduce power consumption while not impacting performance. The on-board bandgap reference voltage enables high accuracy measurements and the internal clock generator provides the ability to easily synchronize other system components.

The ADS5270IPFP Application Field is quite vast and ranges from automotive engine control and powertrain diagnosis to avionics and medical imaging. The device’s low power and high performance makes it ideal for IoT (Internet Of Things) and wearable electronics applications, as well as for data acquisition in the industrial automation and communications sectors. The ADS5270IPFP can also be used for radar, fast focusing lenses and other high performance applications that require high sampling speeds.

In addition to its high performance, the ADS5270IPFP features a simple external input circuit. This is done through the use of a ferrite bead to provide low noise filtering, a voltage divider to adjust the gain of the signal, and an op-amp to buffer the signal prior to the device’s input. This helps reduce noise and distortion in the signal.

The ADS5270IPFP is also equipped with an output buffer that helps reduce the output impedance of the device and ensures a clean, low distortion signal. The output buffer also helps to ensure compatibility with most industry-standard digital signal processors.

The ADS5270IPFP is a 12-bit, low-power analog-to-digital signal converter designed for high-precision data acquisition applications. By sampling at up to 70 million samples per second and providing an accurate and low noise output, the device is ideal for a variety of demanding applications requiring an efficient, low power solution.

The device is also equipped with a programmable on-chip temperature sensor, which allows the device to be precisely thermally compensated for accurate measurements over a wide range of temperatures. This makes it ideal for applications that need to be tolerant to temperature variations.

For applications where the accuracy of the data needs to be further improved, the device allows for the integration of on-chip linearity and offset correction features. This ensures that the data captures the true output of the device, even in the presence of input noise. In addition, the device can also be calibrated to reduce nonlinearity and further increase the accuracy of the output data.

In summary, the ADS5270IPFP is a high-precision, low-power, 12-bit analog to digital converter designed for high-performance data acquisition applications. With features such as an integrated temperature sensors, on-chip linearity/offset corrections, and a programmable output buffer, the device is well-suited for applications requiring accuracy, low power consumption and wide dynamic range.

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

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