NCP338FCCT2GEVB Allicdata Electronics
Allicdata Part #:

NCP338FCCT2GEVB-ND

Manufacturer Part#:

NCP338FCCT2GEVB

Price: $ 43.75
Product Category:

Development Boards, Kits, Programmers

Manufacturer: ON Semiconductor
Short Description: EVAL BOARD NCP338FCCT2G
More Detail: NCP338 Power Distribution Switch (Load Switch) Pow...
DataSheet: NCP338FCCT2GEVB datasheetNCP338FCCT2GEVB Datasheet/PDF
Quantity: 1000
1 +: $ 39.37500
Stock 1000Can Ship Immediately
$ 43.75
Specifications
Series: --
Part Status: Active
Type: Power Management
Function: Power Distribution Switch (Load Switch)
Embedded: No
Utilized IC / Part: NCP338
Primary Attributes: --
Supplied Contents: Board(s)
Secondary Attributes: --
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

Evaluation and demonstration boards and kits are an important class of products that help design engineers achieve their desired results in a short amount of time. The NCF338FCCT2GEVB is an example of these products, as it is an evaluation and demonstration board. It helps design engineers to quickly evaluate and demonstrate the performance of certain integrated circuits.

The NCF338FCCT2GEVB is a high-performance 8-channel digital Triple I/OTM LVDS to coaxial transmitter integrated circuit (IC). It is ideal for applications ranging from one to eight coax channels in various digital video formats such as HDMI, DVI, DisplayPort or SDI. It is designed for those applications that require a small and efficient footprint while also being very low power.

The NCF338FCCT2GEVB evaluation and demonstration board supports multiple signal formats, including single, dual or quad lane as well as single, dual or quad channel. It is equipped with an IC slot along its top allowing for quick and easy replacements or upgrades. Each of the eight LVDS transmission nodes (i.e., LVDS DIFF, LVDS P + N, and SPDIF Coax Out) are individually controlled using the switches on the board. The I2C based features are controlled via the included onboard USB hub. This allows for control and configuration of features such as offset adjustment.

The board supplies a 3.3V source voltage to the integrated circuit and is rated up to 3A. It also includes an onboard 5V regulator that is utilized by the other components on the board. Together, these two voltage supplies provide the necessary power to the IC.

The NCF338FCCT2GEVB evaluation and demonstration board is equipped with a number of features. It provides up to 1.7Gbps transmission rate across all eight LVDS transmission channels. Onboard test points are provided allowing for the evaluation and demonstration of jitter, eye diagram measurements and impedance. System level performance is also evaluated using the on board RTTs. The board also provides on-board ports for connecting external jitter analysis evaluation tools.

The working principle behind the NCF338FCCT2GEVB evaluation and demonstration board is rather simple. After the board is powered up, the integrated circuit that it houses converts the LVDS signal into a coaxial signal. This is done by using the control settings that are set up using the switches on the board. The signals are sent out into the coaxial cables and then can be evaluated or demonstrated. The system performance can also be evaluated using the RTTs and the test points.

The NCF338FCCT2GEVB evaluation and demonstration board is a powerful tool for design engineers who are interested in quickly evaluating and demonstrating the performance of integrated circuits. It is small and efficient in size and utilizes two voltage sources to provide the power necessary for the IC. The board also provides onboard test points and onboard ports allowing for the evaluation and demonstration of important aspects of the system performance. The working principle behind the board is quite simple as it involves using the control settings provided to convert the LVDS signal into a coaxial signal.

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

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