Skyworks Solutions Inc. SI5335D-B03502-GM
- SI5335D-B03502-GM
- Skyworks Solutions Inc.
- IC 4OUT ANY FREQ <200MHZ 24QFN
- Clock/Timing - Clock Generators, PLLs, Frequency Synthesizers
- SI5335D-B03502-GM Datasheet
- 24-VFQFN Exposed Pad
- Tray
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Lead free / RoHS Compliant - 2776
- Spot Inventory / Athorized Dstributor / Factory Excess Stock
- 1 year quality assurance 》
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What is SI5335D-B03502-GM
Skyworks Solutions Inc. Part Number SI5335D-B03502-GM(Clock/Timing - Clock Generators, PLLs, Frequency Synthesizers), developed and manufactured by Skyworks Solutions Inc., distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.
SI5335D-B03502-GM is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.
SI5335D-B03502-GM Specifications
- Part NumberSI5335D-B03502-GM
- CategoryClock/Timing - Clock Generators, PLLs, Frequency Synthesizers
- ManufacturerSkyworks Solutions Inc.
- DescriptionIC 4OUT ANY FREQ <200MHZ 24QFN
- PackageTray
- SeriesMultiSynth™
- Type-
- Voltage - Supply-
- Operating Temperature-
- Mounting TypeSurface Mount
- Package / Case24-VFQFN Exposed Pad
- Supplier Device Package24-QFN (4x4)
- Output-
- Frequency - Max-
- Number of Circuits-
- Input-
- PLL-
- Ratio - Input:Output-
- Differential - Input:Output-
- Divider/Multiplier-
Application of SI5335D-B03502-GM
SI5335D-B03502-GM Datasheet
SI5335D-B03502-GM Datasheet , Tray,MultiSynth™,Surface Mount,24-VFQFN Exposed Pad,24-QFN (4x4)
SI5335D-B03502-GM Classification
Clock/Timing - Clock Generators, PLLs, Frequency Synthesizers
FAQ about Clock/Timing - Clock Generators, PLLs, Frequency Synthesizers
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1. How does the output frequency of the PLL frequency synthesizer change?
The core of the PLL frequency synthesizer is to change the output frequency by adjusting the various components in the loop. The basic working principle of the PLL frequency synthesizer is to generate a stable frequency signal through the interaction of the phase detector, loop filter and voltage-controlled oscillator. When the output frequency needs to be changed, the control voltage of the voltage-controlled oscillator can be changed by adjusting the input signal or by an external control signal to adjust its output frequency.
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2. How does PLL increase frequency?
PLL (phase-locked loop) is usually used to increase or decrease the frequency of a signal. Increasing the frequency usually involves increasing the value of the feedback divider, while decreasing the frequency involves increasing or adjusting the gain followed by a divider.
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3. What is the difference between PLL and oscillator?
The main difference between PLL and oscillator lies in their functions and features. PLL has the ability of phase locking and frequency tracking, which can provide higher frequency stability, especially in the presence of an external reference signal. Oscillators usually generate fixed-frequency signals and do not have these functions of PLL.
Specifically, oscillators are devices used to generate periodic signals. Common types include RC oscillators, LC oscillators, and crystal oscillators. RC oscillators have a simple structure and low cost, but poor frequency stability and accuracy; LC oscillators have good frequency stability, but are large in size and high in cost; crystal oscillators have extremely high frequency stability, but are expensive.
PLL is a feedback control circuit that can compare the output of the oscillator with a reference signal, generate a control voltage based on the phase difference, and thus adjust the frequency and phase of the oscillator to synchronize it with the reference signal. PLL can generate output signals with higher or lower frequencies than the reference signal, and is usually more complex to design and implement than oscillators, with higher power consumption and cost.
Whether to choose an oscillator or PLL depends on the specific application requirements. If a fixed frequency signal is required and cost and complexity are a concern, an oscillator is the appropriate choice. If precise frequency control and low phase noise are required and a stable reference signal is available in the system, a PLL is a better choice.
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