ADC12C080EB/NOPB Allicdata Electronics
Allicdata Part #:

ADC12C080EB/NOPB-ND

Manufacturer Part#:

ADC12C080EB/NOPB

Price: $ 0.00
Product Category:

Development Boards, Kits, Programmers

Manufacturer: Texas Instruments
Short Description: EVAL BOARD FOR ADC12C080
More Detail: ADC12C080 - 12 Bit 80M Samples per Second Analog t...
DataSheet: ADC12C080EB/NOPB datasheetADC12C080EB/NOPB Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Part Status: Obsolete
Number of A/D Converters: 1
Number of Bits: 12
Sampling Rate (Per Second): 80M
Data Interface: Parallel
Input Range: 2 Vpp
Power (Typ) @ Conditions: 270mW @ 80MSPS
Utilized IC / Part: ADC12C080
Supplied Contents: Board(s)
Description

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Evaluation Boards - Analog to Digital Converters (ADCs)

The ADC12C080EB/NOPB (Evaluation Board) is a useful tool for analyzing and evaluating the performance of an analog to digital converter (ADC). ADC12C080EB/NOPB is designed by Texas Instruments to provide a testing and evaluation environment for the ADC12C080E and/or its derivative C-programmable, 8-bit, single-channel, serial or parallel-output analog-to-digital converter. This is an ideal evaluation board for customers to view on-board performance of the ADC12C080E.

Application Field

ADC12C080EB/NOPB is an evaluation board that can be used for various applications like signal chain analysis, data collection and acquisition, communications system design, distributed data acquisition, medical diagnostics and design trends. It is used for analog signal processing, data conversion, embedded system and designs that require 10-bits resolution and very high frequencies. The board has a wide range of applications in industrial, automotive and medical instruments. It can be used in audio, instrumentation, communication, and other consumer electronics applications such as process control and digital camera applications.

Working Principle

The ADC12C080EB/NOPB is based on the ADC12C080E analog-to-digital converter, which uses a newly developed 8-bit, single-channel, serial or parallel-output analog-to-digital converter. It has a wide input range of both unipolar and bipolar signals. It provides low noise, low offset, low distortion, and low power consumption. The internal clock frequency can be selected from between 350kHz and 9MHz, with an internal 32kHz clock. The ADC works in one of four different modes: normal, differential, alternate channel, and rampscan. The normal mode is the default for the on-board testing. In the differential mode, the inputs are treated as differential signals, effectively increasing the resolution. With alternate channel mode, two channels can be sampled simultaneously, while rampscan mode allows the converter to automatically step through a range of input levels.The output of the ADC12C080EB/NOPB can be monitored by an oscilloscope and other devices like voltage meters and ammeters. It also comes with an on-board temperature detector and light detector for measurement and analysis. In normal mode, the analog input is connected to the analog input pin (AI), while the digital output is available on the output pins (Q0-Q7). The analog input signal is sampled and held, followed by a voltage-to-digital conversion using the pipeline architecture of the ADC12C080E. The digital output is then available on the output pins. The ADC12C080EB/NOPB evaluation board also has a Windows-based program that allows the user to write and customize the code for ADC testing. The software supports the generation and execution of test patterns, performance measurements, and custom code execution on the evaluation board. It also allows the user to debug the code running on the board as well as the operation of the ADC12C080E.

Conclusion

The ADC12C080EB/NOPB evaluation board from Texas Instruments is an ideal tool for analyzing and evaluating the performance of the ADC12C080E. The evaluation board provides a full complement of features for testing and evaluation, and allows the user to customize the code for testing and debugging. The wide range of applications for the ADC12C080EB/NOPB board, including its use for audio, instrumentation, communications, and consumer electronics applications, provides customers with a versatile tool for their design needs.

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