SI5335B-B06102-GM Allicdata Electronics
Allicdata Part #:

SI5335B-B06102-GM-ND

Manufacturer Part#:

SI5335B-B06102-GM

Price: $ 3.07
Product Category:

Integrated Circuits (ICs)

Manufacturer: Silicon Labs
Short Description: 4-OUTPUT, ANY FREQUENCY( ...
More Detail: N/A
DataSheet: SI5335B-B06102-GM datasheetSI5335B-B06102-GM Datasheet/PDF
Quantity: 1000
75 +: $ 2.79124
Stock 1000Can Ship Immediately
$ 3.07
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 SI5335B-B06102-GM is a high performance Clock Generator, PLL, and Frequency Synthesizer designed for many applications. It is based on Silicon Labs’ patented fourth-generation DSPLL technology and provides a low jitter and small footprint solution for applications with high frequency clock oscillators such as frequency translation, clock generation, and frequency synchronization. The SI5335B-B06102-GM has a wide variety and variety of features, allowing it to serve in multiple roles within one system.

The SI5335B-B06102-GM is powered by a low-noise and low-jitter oscillator, combined with an adjustable output frequency range of 12.000MHz to 644.22MHz. Its rich feature set including multiple clock and PLL outputs, multiple clock and PLL inputs, a unique spread spectrum programmability, and programmable slew rate control make it an ideal choice for high-frequency, multi-role clock and synchronization applications.

The clock generator, PLL, and frequency synthesizer of the SI5335B-B06102-GM has a simplified, unified control. It further allows for direct programmability of the entire device to create a coherent clock solution. It is a powerful choice for clock/timing applications ranging from basic frequency translation, clock generation and phase frequency synchronization to complex clock tree synthesis and phase-shifting. The SI5335B-B06102-GM supports a wide variety of output clocks and frequencies, enabling reuse and reuseability on a variety of platforms.

The SI5335B-B06102-GM is an ideal choice for applications requiring an adjustable solution for clock/timing needs due to its cost-effective clock management capabilities. It provides automated, centralized control of clock settings enabling updated frequencies to be issued and switched to in a matter of microseconds, greatly reducing the noise and jitter on its outputs. Additionally, the SI5335B-B06102-GM’s versatile architecture allows the use of multiple PLLs to generate the desired clock frequencies and the ability to design a clock tree of multiple multi-phase clock frequencies along with multiple multi-phase clock outputs, noticeably increasing system performance.

The working principle of the SI5335B-B06102-GM is based on a continuous oscillatory circuitry using control voltage and external components, as well as charging and discharging circuits to provide a constant voltage at the output. The external components are a pair of discrete transistors and capacitors of fixed frequency. This design allows for a low-jitter, highly stable output clock with adjustable frequency. The charge and discharge circuits are controlled by the microcontroller, which determines the amount of charging and discharging cycle and thereby the output clock frequency. By changing the values of the components and the control voltage, the microcontroller is able to dynamically change the output frequency.

The SI5335B-B06102-GM is a key component in many applications, including: clock tree synthesis, high frequency clock and data recovery, embedded and processor clock distribution, microcontroller, and system synchronization. Its cost-effective clock management capabilities, including the ability to program multiple clocks and PLLs and dynamically adjust frequencies, make it an ideal choice for applications requiring adjustable clock/timing solutions. Its advanced on-chip features such as spread spectrum and slew rate control give designers a discrete solution that is both low power and high performance.

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

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