SI5396B-A11992-GM

IC CLOCK MULTIPLIER 44QFN
part number has RoHS
1 : $72.8880

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Dasenic Part Number
701352-DS
Manufacturer Part #
SI5396B-A11992-GM

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504 In Stock

MOQ
1PCS
Delivery Time
Ship Within 48 Hours
Packaging
44-VFQFN Exposed Pad Tray
Quantity
Unit Price
$ 72.888
Total
$ 72.89

* Tax not included , All prices are in USD

Pricing (USD)

Prices are for reference only and aren't final sales prices.
ManufacturerSkyworks Solutions, Inc.
Integrated Circuits (ICs)Clock Generators, PLLs, Frequency Synthesizers
Product StatusActive
Operating Temperature-40°C ~ 85°C (TA)
Mounting TypeSurface Mount
Package / Case44-VFQFN Exposed Pad
TypeClock Multiplier, Jitter Attenuator
Supplier Device Package44-QFN (7x7)
Frequency - Max350MHz
Number of Circuits1
OutputCML, HCSL, LVCMOS, LVDS, LVPECL
Voltage - Supply1.71V ~ 1.89V, 3.14V ~ 3.47V
P L LYes
InputLVCMOS, Crystal
Ratio - Input: Output4:4
Differential - Input: OutputYes/Yes
Divider/ MultiplierYes/No
SeriesDSPLL®
PackagingTray

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Environmental & Export Classifications
MSL Rating2 (1 Year,30°C/60%RH)
EU RoHS StatusRoHS Compliant
REACH StatusREACH is not affected
US ECCNEAR99
China RoHS StatusGreen Symbol: Green and environmentally friendly product
Description (v) Features
The SI5396B-A11992-GM is an integrated circuit (IC) component that offers high-performance clock synthesis and distribution capabilities. It is specifically designed for applications that require low jitter and high-frequency operation. The IC is primarily used in communication infrastructure, networking, data centers, and other high-speed data transmission systems. Key features of the SI5396B-A11992-GM include: 1. Ultra-Low Jitter: This IC component provides ultra-low jitter performance, ensuring high-quality clock signals. The low jitter is achieved through advanced noise reduction techniques, resulting in reliable clock generation and distribution. 2. Frequency Synthesis: The SI5396B-A11992-GM supports frequency synthesis, allowing the generation of multiple clock signals from a single reference input. This feature simplifies clock distribution and synchronization in complex systems. 3. High-Frequency Operation: The IC is suitable for high-frequency applications, offering a wide range of output frequencies, typically up to several GHz. This capability makes it ideal for high-speed data transmission systems that require precise and synchronized clock signals. 4. Multiple Outputs: The SI5396B-A11992-GM provides multiple clock outputs, allowing for versatile clock distribution. Each output can be individually programmed and adjusted according to the specific requirements of the system. 5. Flexible Programming: The IC offers flexible programming options, enabling customization and fine-tuning of various parameters such as frequency, phase, and amplitude. This programmability ensures compatibility with different system configurations and simplifies integration. 6. Low-Phase Noise: The IC component exhibits low-phase noise characteristics, reducing the interference and distortion caused by clock signal fluctuations. This feature is crucial in high-speed data transmission systems, ensuring accurate data transfer and minimizing signal degradation. 7. Easy Configuration: The SI5396B-A11992-GM includes a user-friendly interface for setup and configuration. It provides various control options, including I2C programming, which enables straightforward integration into existing systems. Overall, the SI5396B-A11992-GM IC component offers low jitter, high-frequency operation, multiple outputs, flexible programming, low-phase noise, and easy configuration. It is a reliable solution for applications that demand precise clock synthesis and distribution, particularly in communication infrastructure, networking, and data centers.

In Stock: 504

MOQ
1PCS
Packaging
44-VFQFN Exposed Pad Tray
Delivery Time
Ship Within 48 Hours
Shipping Origin
Shenzhen or Hong Kong Warehouse
Quantity
Unit Price
$ 72.888
Total
$ 72.89

* Tax not included , All prices are in USD

Pricing (USD)

Prices are for reference only and aren't final sales prices.
Delivery
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Payment
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