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CS2300CP-DZZ

Part No CS2300CP-DZZ
Manufacturer Cirrus Logic Inc.
Catalog OEM Souring
Description Clock Multiplie 10Pin MSOP
Sample
Rohs State rohs
ECAD Module
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Products specifications Report Issue?

Category OEM Souring
Win Source Part Number 1464981-CS2300CP-DZZ
Manufacturer Cirrus Logic Inc.
Package Tube
Product Status Obsolete
Type Fanout Distribution, Fractional N Synthesizer
PLL Yes
Input Clock
Output Clock
Number of Circuits 1
Ratio - Input 1:2
Differential - Input No/No
Frequency - Max 75MHz
Divider/Multiplier Yes/Yes
Voltage - Supply 3.1V ~ 3.5V
Operating Temperature -40°C ~ 85°C
Mounting Type Surface Mount
Grade -
Package / Case 10-TFSOP, 10-MSOP (0.118", 3.00mm Width)
Supplier Device Package 10-MSOP
Ultra Librarian 3D Model Ultra Librarian CS2300CP-DZZ CAD Model

Description

The CS2300CP-DZZ from Cirrus Logic represents a cutting-edge clock multiplier solution in a compact 10-pin MSOP package, designed to enhance system performance by stabilizing and frequency-multiplying the input clock signal. Primarily targeting applications requiring precise clock signals, this device seamlessly integrates into a wide range of electronic systems, from consumer electronics to professional audio and video equipment, as well as telecommunications infrastructure. Its utility lies in its ability to generate a stable, accurate clock output from a less stable source, thereby improving the overall reliability and performance of the system. The CS2300CP-DZZ provides a flexible, low-jitter clock output that can be readily adjusted to meet the specific requirements of the application, supporting various multiplier settings to ensure compatibility with different system designs. This device not only enhances the performance of the electronic systems it is integrated into but also contributes to simplifying the design process by reducing the need for multiple clock sources. Its low power consumption further ensures that it is well-suited for use in portable and energy-sensitive applications, making the CS2300CP-DZZ a versatile and efficient solution for addressing complex timing challenges in modern electronic designs.

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