Allicdata Part #: | SI5335B-B03079-GMR-ND |
Manufacturer Part#: |
SI5335B-B03079-GMR |
Price: | $ 2.65 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Silicon Labs |
Short Description: | 4-OUTPUT, ANY FREQUENCY( ... |
More Detail: | N/A |
DataSheet: | SI5335B-B03079-GMR Datasheet/PDF |
Quantity: | 1000 |
2500 +: | $ 2.40624 |
Series: | * |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Mounting Type: | Surface Mount |
Package / Case: | 24-VFQFN Exposed Pad |
Supplier Device Package: | 24-QFN (4x4) |
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The SI5335B-B03079-GMR is a high-performance clock generator, phase-locked loop (PLL), and frequency synthesizer. It is ideal for a wide range of clock generation, timekeeping, and synchronization requirements. Its high quality operation and excellent signal stability make it suitable for clock applications and mission-critical applications, such as telecommunications. This device combines robust analog closed-loop frequency synthesis technology with highly advanced digital control, making it one of the most reliable clock generator products on the market.
The SI5335B-B03079-GMR is an advanced clock generator using multi-level synthesis. It has a synthesized frequency range of up to 70kHz and a selectable clock rate resolution of 8nsec, 1msec, or 10msec. It supports differential, LVPECL, LVDS, and 15MHz outputs, and frequency selection from 1kHz up to 200MHz. The device also provides clock output signal strength, temperature compensation, and 1PPS synchronization signal.
The primary application of the SI5335B-B03079-GMR is to provide a reliable clock signal. It is capable of generating both stable and reliable clock outputs, because of its integrated PLL, frequency synthesizer and multi-level synthesis. It is able to generate a stable signal, even in the presence of environmental disturbances, such as temperature, voltage, and noise. It is designed to provide the maximum phase noise performance required in clock applications.
The SI5335B-B03079-GMR is a multi-channel device. It supports up to eight clock outputs and up to eight integrated PLLs, allowing multiple clock signals to be generated simultaneously. It has an on-board digital control interface that simplifies integration into existing system architectures. The SI5335B-B03079-GMR’s frequency-multiplication capabilities allow for additional flexibility in designing complex systems. It is capable of generating up to 4x, 10x and 16x multiplication frequency outputs.
Within the SI5335B-B03079-GMR, a phase-locked loop (PLL) is used to synchronize the references and the generated clocks. This PLL is controlled by a digital loop filter and is optimized for stability and noise control. This PLL utilizes a digitally controlled oscillator (DCO) to minimize the phase-noise of an output signal. With this design, it is capable of achieving excellent stability, while providing a wide range of frequency options. It also supports both negative- and positive-clock edges.
The SI5335B-B03079-GMR includes the ability to generate a one pulse-per-second (1PPS) synchronization signal. This is a common output format for clocks used in mission-critical applications, including telecommunications. The 1PPS signal is typically used to synchronize subsystems in a system. This feature also allows for synchronization with devices in different locations.
Finally, the SI5335B-B03079-GMR provides enhanced temperature compensation. This temperature compensation feature helps to compensate for temperature-related system instabilities, ensuring that the clock signal is stable in various environmental conditions. It is possible to adjust the temperature coefficients, allowing for a wide range of system designs.
The SI5335B-B03079-GMR is a highly feature-rich and reliable clock generation, phase locked loop, and frequency synthesizer. It is designed to provide a high-quality clock signal that is stable and reliable, even in the presence of environmental disturbances. With its multi-level synthesis, integrated PLLs, and temperature compensation, the SI5335B-B03079-GMR is an excellent choice for mission-critical and other demanding clock applications.
The specific data is subject to PDF, and the above content is for reference
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