STCD1020RDG6F Allicdata Electronics
Allicdata Part #:

497-8361-2-ND

Manufacturer Part#:

STCD1020RDG6F

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: STMicroelectronics
Short Description: IC CLK BUFFER 1:2 52MHZ 8TDFN
More Detail: Clock Fanout Buffer (Distribution) IC 1:2 52MHz 8-...
DataSheet: STCD1020RDG6F datasheetSTCD1020RDG6F Datasheet/PDF
Quantity: 6000
Stock 6000Can Ship Immediately
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Type: Fanout Buffer (Distribution)
Number of Circuits: 1
Ratio - Input:Output: 1:2
Differential - Input:Output: No/No
Input: Clock
Output: Clock
Frequency - Max: 52MHz
Voltage - Supply: 2.5 V ~ 3.6 V
Operating Temperature: -40°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: 8-TDFN
Supplier Device Package: 8-TDFN (2x2)
Base Part Number: STCD1020
Description

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The STCD1020RDG6F is a high-performance clock buffer/driver that offers integrated jitter attenuation and wide-range programmability of drive strength, output-enable latency, and channel count. This device is well-suited for a variety of applications across the telecommunications and industrial sectors, including as an industrial protocol clock synchronization/synchronous transfer between different systems and Global Positioning System (GPS) time-stamps. It offers superior jitter attenuation compared to its competitors, and its robust, feature-rich design makes it an ideal choice for clock and data synchronization tasks.

The STCD1020RDG6F is designed to offer reliable and accurate timing performance in a wide range of applications. It utilizes a proprietary output driver design that enables it to produce different signal strengths and impedance levels. This feature is especially beneficial in long-distance and high-speed signal transfer applications where precise impedance is critical for proper signal propagation. The wide-range programmability of the output strength and output-enable latency allows the user to configure the device to their precise requirements.

The STCD1020RDG6F also features a low-jitter, low-power consume design, enabling it to eliminate undesired jitter from moving signal transmission lines. This is achieved by converting the tedious and time consuming calibration processes required with conventional clock sources into a quick and reliable PLL-based technology. The reduced jitter size minimizes susceptibility to electrical noise over longer transmission distances.

The STCD1020RDG6F is designed to operate in a wide supply voltage range, making it suitable for a variety of communication and industrial applications. Additionally, it comes with an integrated power-down feature that allows the device to enter a low power state when not in use. This power saving feature makes the STCD1020RDG6F an ideal choice for applications requiring low power consumption.

This device provides reliability and stability through its wide programmable frequency range, which means that it can be tailored for any specific application. The integrated fractional-N phase-locked loop (PLL) and on-board VCO allow the user to quickly adjust the output frequency without having to change the hardware. This enables it to achieve a high level of accuracy and stability in clock timing.

In addition to its excellent performance, the STCD1020RDG6F is cost-effective andenergy-efficient. The low power consumption, coupled with its low noise characteristics make it an economical choice for power-sensitive applications. Moreover, the integrated phase-locked loop technology provides excellent phase noise and jitter performance, enabling it to deliver high-quality synchronization with minimal interference.

The STCD1020RD6F is the ideal choice for advanced industrial and communications applications, where high reliability and accuracy are essential. Its robust and feature-rich design, low power consumption, and excellent stability, makes it an ideal choice for today’s ever-changing clock and data synchronization tasks.

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

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