SI5324E-C-GM Allicdata Electronics
Allicdata Part #:

SI5324E-C-GM-ND

Manufacturer Part#:

SI5324E-C-GM

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Silicon Labs
Short Description: IC CLOCK MULT 2KHZ-1.4GHZ 36VQFN
More Detail: N/A
DataSheet: SI5324E-C-GM datasheetSI5324E-C-GM Datasheet/PDF
Quantity: 221
Stock 221Can Ship Immediately
Specifications
Series: DSPLL®
Packaging: Tray 
Part Status: Active
PLL: Yes
Main Purpose: 3G, Ethernet, PCI, SONET/SDH, Wireless systems
Input: Clock
Output: CML, CMOS, LVDS, LVPECL
Number of Circuits: 1
Ratio - Input:Output: 2:2
Differential - Input:Output: Yes/Yes
Frequency - Max: 1.417GHz
Voltage - Supply: 1.71 V ~ 3.63 V
Operating Temperature: -40°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: 36-VFQFN
Supplier Device Package: 36-QFN (6x6)
Description

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The SI5324E-C-GM application field and its working principle can best be characterized as Clock/Timing - Application Specific due to its main uses. The SI5324E-C-GM is a high performance, low additive jitter jitter attenuator and clock generator, designed specifically for xDSL applications such as ADSL, VDSL, and VDSL2. It features excellent system jitter performance, low additive jitter, low power consumption, and excellent system reliability. It provides a compact, low-cost, low-latency solution for applications such as network timing and synchronization, telecom/datacom, and other clock and timing applications.

The SI5324E-C-GM operates on an oscillator core, which maintains a constant frequency and phase relationship between an external input clock and an internal reference clock. This oscillator core allows the SI5324E-C-GM to maintain a fixed phase relationship between the two clock signals, even over temperature and voltage variations. The SI5324E-C-GM is capable of generating output clocks with 10 ppm of frequency precision and a low jitter of less than 1.5 picoseconds. This output accuracy provides reliable performance for very demanding clock and timing applications.

The SI5324E-C-GM supports a variety of programming interfaces, including I2C, Serial Peripheral Interface (SPI), and Data-Link Interface (DLI). The I2C interface allows for very high-speed communication between the controller and the SI5324E-C-GM, and the Serial Peripheral Interface allows the controller to read specific registers within the device. The DLI allows the SI5324E-C-GM to operate in a single-wire manner, where all commands and data transfer take place over one wire.

The SI5324E-C-GM also supports a variety of output modes, including static, dynamic, and synchronous data-link. In static mode, the output clock is generated based on the incoming external clock signal, while in dynamic mode, the output clock changes its frequency as the incoming signal changes. The synchronous data-link mode provides a high-speed, low-latency connection between the controller and the SI5324E-C-GM. This mode can be used for both clock and data transfer.

In addition to its clock generation capabilities, the SI5324E-C-GM supports an onboard power supply controller. This allows the user to adjust the power requirements for the system, helping to reduce power consumption and eliminating the need for an additional power supply. The SI5324E-C-GM also supports an integrated reset controller, which provides the controller with the ability to reset the device when required.

The SI5324E-C-GM is engineered to provide high reliability in mission-critical applications. It is designed with proprietary Built-In-Self-Test (BIST) technology, which ensures that all the components of the SI5324E-C-GM are functioning properly. This ensures that the device will operate reliably in harsh environments, such as high temperatures, strong vibrations, and electrical noise. The SI5324E-C-GM is designed to provide a high level of accuracy and reliability, making it an ideal choice for applications such as telecom/datacom, clock and timing, and industrial applications.

The SI5324E-C-GM is an excellent choice for any application that requires accurate clock and timing solutions. It features high performance, low additive jitter, low power consumption, and excellent system reliability, making it ideal for a variety of clock and timing applications. Its advanced features and capabilities make it an ideal choice for mission-critical applications that require accuracy, reliability, and high-speed operation.

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

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