CDCE18005EVM Allicdata Electronics
Allicdata Part #:

296-49156-ND

Manufacturer Part#:

CDCE18005EVM

Price: $ 144.65
Product Category:

Development Boards, Kits, Programmers

Manufacturer: Texas Instruments
Short Description: EVALUATION MODULE FOR CDCE18005
More Detail: CDCE18005 Clock Buffer/Driver/Receiver/Translator ...
DataSheet: CDCE18005EVM datasheetCDCE18005EVM Datasheet/PDF
Quantity: 2
1 +: $ 130.18300
Stock 2Can Ship Immediately
$ 144.65
Specifications
Series: --
Part Status: Active
Type: Timing
Function: Clock Buffer/Driver/Receiver/Translator
Embedded: No
Utilized IC / Part: CDCE18005
Primary Attributes: 3 Inputs, 10 Outputs
Supplied Contents: Board(s), Cable(s)
Secondary Attributes: Graphical User Interface
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

The CDCE18005EVM is an evaluation and demonstration board and kit that various engineering applications can use it. It features the latest Texas Instruments CDCE18005 clock generator. It is capable of producing frequencies up to 54 MHz and is oscillator-based with Temperature Compensated Crystal Oscillator (TCXO) technology. A wide range of applications and applications scenarios can benefit from the product, providing a wide variety of user-selectable frequencies with higher accuracy and stability.

The CDCE18005EVM integrated the CDCE18005 clock generator, which is the most advanced clock generator technology in the market. It is a high performance clock generator, designed for clocking high-speed logic and memory applications. It achieves accuracy levels to +/- 1ppm (part per million) making it ideal for high performance system timing applications. It also supports many widely used protocols, such as I2C, SPI, UART, and I2S. The CDCE18005EVM supports clocking, jitter reduction, and jitter attenuation with separate outputs. This makes it suitable for a variety of demanding engineering applications.

The CDCE18005EVM can be used to evaluate the performance of the CDCE18005 clock generator for many different applications. Through the built-in support for various protocols, it can easily and quickly evaluate the total performance of the device as an integral part of the device system, instead of having to be evaluated in isolation. The CDCE18005EVM also allows engineers to easily choose, modify, and compare various settings on the clock generator for optimal performance. Finally, the CDCE18005EVM supports I2C and SPI, making it easier to program and control the clock generator for different applications, reducing the time needed for development.

The working principle of the CDCE18005EVM evaluation and demonstration board and kit is simple. First, the CDCE18005 clock generator receives a signal from an external reference clock, such as a crystal oscillator or from a temperature-compensated crystal oscillator (TCXO). The signal then passes through the mixer, which allows the user to select a specific frequency or range of frequencies to be output. The signal then travels through the jitter attenuation block and is finally output from the PLL.

Once the signal is output from the PLL, it can be fed into any application or system requiring a clock signal. This is done in a variety of ways, including via coaxial cable, ribbon cable, through a logic device, or through a special driver IC. Since the signal is high precision, engineers can then rely on the device to handle the rest of the system needs and will not need to worry about any degradation of the signal over time. Furthermore, the jitter attenuation block makes sure that the signal is as clean and reliable as possible when it is output to the system.

The CDCE18005EVM evaluation and demonstration board and kit allows engineers to quickly and accurately evaluate the CDCE18005 clock generator and use it for many different applications. It is a compact, efficient, and reliable device with a high parts count, allowing engineers to quickly evaluate a system and find the optimal settings for a device. By doing so, engineers can quickly develop and produce cost-effective systems with higher accuracies and greater stability.

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

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