SI5334C-B07659-GMR Allicdata Electronics
Allicdata Part #:

SI5334C-B07659-GMR-ND

Manufacturer Part#:

SI5334C-B07659-GMR

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Silicon Labs
Short Description: 4-OUTPUT, ANY FREQUENCY( ...
More Detail: N/A
DataSheet: SI5334C-B07659-GMR datasheetSI5334C-B07659-GMR Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: *
Packaging: Tape & Reel (TR) 
Part Status: Active
Mounting Type: Surface Mount
Package / Case: 24-VFQFN Exposed Pad
Supplier Device Package: 24-QFN (4x4)
Description

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Introduction to SI5334C-B07659-GMR

SI5334C-B07659-GMR is a low-jitter precision clock generator and clock multiplier for a wide range of applications. It is designed for clock frequencies from 250 kHz to 5.6 GHz, and can be used in a variety of specialized fields, ranging from automotive and industrial to communications and aerospace. The SI5334C-B07659-GMR supports a wide range of output frequencies and flexibility in output buffer configurations, allowing designers to customize their applications.

Application Specifics

The SI5334C-B07659-GMR provides an excellent clock generator solution for a number of application fields that require precise and stable timing signals. Its primary application fields include automotive and industrial automation, communications, aerospace, and medical instrumentation.

In automotive and industrial automation applications, the SI5334C-B07659-GMR can be used as a timing source for distributed clocks and can also ensure that signals are in sync for a variety of applications, such as data synchronization between electronic control units (ECU). In communications systems, the SI5334C-B07659-GMR can provide a reference clock for high-speed protocols such as PCIExpress and Serial ATA (SATA). In aerospace applications, the SI5334C-B07659-GMR can be used as a timing source for critical control systems such as inertial navigation and guidance systems. And in medical instrumentation, the SI5334C-B07659-GMR can provide a reliable and accurate clock source for monitoring and other diagnostic tools.

Working Principle

The SI5334C-B07659-GMR is an integrated circuit that utilises a crystal oscillator as the source of its internal clock signal. It then uses a combination of logic circuits and frequency multiplication techniques to generate the desired output clock frequencies. It is capable of generating clock frequencies above the frequency range of the crystal oscillator, as well as providing adjustments to the output signal’s voltage and current strength. The SI5334C-B07659-GMR also features a spread spectrum mode which can be used to further reduce EMI emission, as well as a slew rate control which can be used to further reduce jitter in the generated clock signal.

The SI5334C-B07659-GMR supports a wide range of output frequencies and buffer configurations, allowing designers to customize their applications. The integrated circuit features an on-chip loop filter that combines with a low-noise voltage regulation circuit to ensure stable output signals. It also includes slew rate control and spread spectrum modes for reduced EMI emissions, as well as two low-skew outputs for clock distribution.

Conclusion

The SI5334C-B07659-GMR is an excellent choice for applications that require a low-power, low-jitter clock generator. The integrated circuit is capable of generating clock frequencies from 250kHz up to 5.6GHz and is suitable for a variety of specialized fields, ranging from automotive and industrial to communications and aerospace. Its primary application field is clock multiples and distributed clocks, as well as short-fitting and long-term precision timing applications. It is designed with a low-noise voltage regulation circuit and an on-chip loop filter which combine to provide stable output signals. The SI5334C-B07659-GMR also features slew rate control and spread spectrum modes to reduce EMI emissions, as well as two low-skew outputs for clock distribution.

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

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