SI5335A-B08365-GM Allicdata Electronics
Allicdata Part #:

SI5335A-B08365-GM-ND

Manufacturer Part#:

SI5335A-B08365-GM

Price: $ 3.62
Product Category:

Integrated Circuits (ICs)

Manufacturer: Silicon Labs
Short Description: 4-OUTPUT, ANY FREQUENCY( ...
More Detail: N/A
DataSheet: SI5335A-B08365-GM datasheetSI5335A-B08365-GM Datasheet/PDF
Quantity: 1000
75 +: $ 3.28726
Stock 1000Can Ship Immediately
$ 3.62
Specifications
Series: *
Packaging: Tray 
Part Status: Active
Mounting Type: Surface Mount
Package / Case: 24-VFQFN Exposed Pad
Supplier Device Package: 24-QFN (4x4)
Description

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The SI5335A-B08365-GM is a clock generator, phase-locked loop (PLL), and frequency synthesizer that offers a wide range of features, making it an ideal solution for a wide variety of applications. These features include a low-power output buffer, wide range frequency tuning, and programmable delay skews. It also has a wide operating voltage range and is RoHS compliant for environmental friendliness. Additionally, its low profile surface mountable package makes it suitable for high density applications.

The SI5335A-B08365-GM is a high-performance clock generator with a wide range of features and applications. It features a low jitter clock generator, adjustable frequency and control, and programmable control and delay skews. It also offers a wide operating voltage range and is RoHS compliant for environmental friendliness. It also features a low-power output buffer and a range of jitter reduction techniques.

The back end of the SI5335A-B08365-GM is a phase-locked loop (PLL), which offers a wide range of features. These features include a low noise phase-detector (PD) and wide range frequency tuning. Additionally, it has an adjustable frequency range and an adjustable voltage mode or a differential voltage mode. The PLL also provides a frequency synthesizer with programmable delay skews, phase noise control, and programmable clock phase control.

The clock generator of the SI5335A-B08365-GM provides a wide range of features that enable it to be used in a variety of applications. It offers jitter free clock outputs, selectable clock dividers, frequency synthesizer, and adjustable frequency range. Additionally, it provides adjustable control and delay skews, and low power output buffers. It is also RoHS compliant and has a wide operating voltage range.

The SI5335A-B08365-GM is ideal for a variety of applications in industries such as telecommunications, industrial automation, data storage, automotive, and military. It can be used to generate clock signals for a variety of systems and can be used to replace existing systems. Additionally, it can be used as an oscillator, and as a clock source in communications and embedded systems. Furthermore, it can also be used in wireless applications such as clock synchronization or broadcast transmission.

The working principle of the SI5335A-B08365-GM is based on its PLL, which converts a reference clock frequency, such as the clock from a central processing unit (CPU), into a local frequency synthesizer that is adjustable. The circuit starts by dividing the reference frequency by a factor of two, resulting in two signals referred to as the 0- and 1-phases. The 0-phase is then compared with the 1-phase and the difference is used to adjust the frequency of the synthesizer. The PLL then uses a series of digital filters to adjust the output frequency.

In summary, the SI5335A-B08365-GM is a clock generator, phase-locked loop and frequency synthesizer that offers a wide range of features for a variety of applications including telecommunications, industrial automation, data storage, automotive and military. It provides jitter free clock outputs, selectable clock dividers, and adjustable frequency and control, and is also RoHS compliant for environmental friendliness. Additionally, it has a low-power output buffer and low-profile surface mountable package making it suitable for high density applications. It works by converting a reference clock frequency into a local frequency synthesizer that is adjustable using a PLL, digital filters, and comparison of the 0- and 1-phases.

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

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