TLC3548EVM Allicdata Electronics
Allicdata Part #:

296-18900-ND

Manufacturer Part#:

TLC3548EVM

Price: $ 0.00
Product Category:

Development Boards, Kits, Programmers

Manufacturer: Texas Instruments
Short Description: EVALUATION MODULE FOR TLC3548
More Detail: TLC3548 - 14 Bit 200k Samples per Second Analog to...
DataSheet: TLC3548EVM datasheetTLC3548EVM 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Part Status: Obsolete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: 14
Sampling Rate (Per Second): 200k
Data Interface: Serial
Input Range: 0 ~ 5 V
Power (Typ) @ Conditions: --
Utilized IC / Part: TLC3548
Supplied Contents: Board(s)
Description

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The TLC3548EVM evaluation module (EVM) is a convenient tool for designers and engineers looking to test and analyze the performance of the Texas Instruments TLC3548 8-bit, 1 MS/s analog-to-digital converter (ADC). This module is equipped with a wide range of features and components, such as an on-board voltage reference, built-in comparators, access to all of the control lines, and more. With this module, users can easily evaluate not only the ADC’s basic performance, but also a wide array of more complex applications where higher accuracy is desired, such as remote sensing and control, motor control, medical instrumentation, and data acquisition systems.

To take full advantage of what the TLC3548EVM offers, it is important to be familiar with its field of application and its working principle. This article will discuss the TLC3548EVM’s application field and working principle in detail.

Application Field

The TLC3548EVM is designed to serve as an evaluation tool for Texas Instruments’ TLC3548 8-bit, 1 MS/s ADC. With this module, users can accurately test and measure the performance of the TLC3548 ADC. In addition, the module is engineered to be easily customizable to accommodate a wide range of applications. With the built-in voltage reference and comparators, it can be used in a variety of situations where higher accuracy is desired, including remote sensing, motor control, medical instrumentation, and data acquisition systems.

The TLC3548EVM can also be used to identify key parameters in a range of applications and analyze various architectures to ensure they meet the design requirements. In addition, the TLC3548EVM is equipped with software development tools to enable users to efficiently develop applications and troubleshoot issues in a timely manner.

Working Principle

The heart of the TLC3548EVM is the TLC3548 8-bit, 1 MS/s ADC. This ADC includes a variety of features and components, such as an on-board voltage reference and comparators. To gain a better understanding of how the TLC3548EVM works, its working principle can be broken down into three main components: analog input, converter, and digital output.

The analog input is the signal or voltage that is to be converted by the ADC. The signal is sent into the converter, which is responsible for the actual conversion process. Once the analog input has been converted, the resulting digital output is then sent out of the converter.

The converter consists of a comparator, which compares the analog input to a voltage reference. Depending on the difference between the input and reference voltages, the output from the comparator is either a digital “1” or a digital “0”. The output of the comparator is then encoded and formatted into the desired digital output.

The TLC3548EVM is designed to work with a single-ended analog input, allowing for a greater range of ADC resolutions. The module also includes multiple pinouts to help increase channel count and scalability. With the help of these components, designers and engineers can accurately analyze the performance of the TLC3548 8-bit, 1 MS/s ADC.

To sum up, the TLC3548EVM evaluation module is a useful tool for designers and engineers to test and analyze the performance of Texas Instruments’ TLC3548 8-bit, 1 MS/s ADC. The module can be used in a variety of applications where accuracy and precision are key, such as remote sensing, motor control, medical instrumentation, and data acquisition systems. Furthermore, its working principle can be broken down into three main components: analog input, converter, and digital output.

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

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