SY10E111LJC-TR Allicdata Electronics
Allicdata Part #:

SY10E111LJC-TR-ND

Manufacturer Part#:

SY10E111LJC-TR

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Microchip Technology
Short Description: IC CLK BUFFER 1:9 28PLCC
More Detail: Clock Fanout Buffer (Distribution) IC 1:9 28-LCC ...
DataSheet: SY10E111LJC-TR datasheetSY10E111LJC-TR Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: 100E, Precision Edge®
Packaging: Tape & Reel (TR) 
Part Status: Discontinued at Digi-Key
Type: Fanout Buffer (Distribution)
Number of Circuits: 1
Ratio - Input:Output: 1:9
Differential - Input:Output: Yes/Yes
Input: PECL
Output: PECL
Voltage - Supply: 3 V ~ 3.8 V
Operating Temperature: 0°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: 28-LCC (J-Lead)
Supplier Device Package: 28-PLCC (11.51x11.51)
Base Part Number: SY10E111
Description

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The SY10E111LJC-TR is a high-performance clock buffer belonging to the Clock/Timing - Clock Buffers, Drivers category. It is designed to provide excellent jitter performance, minimal clock skew, and reliability for a wide range of clock applications. The SY10E111LJC-TR offers output delays of up to 400ps, as well as features such as glitch-free output switching, adaptive equalization and wide bandwidth.

The SY10E111LJC-TR is ideal for data transmission applications that require large data throughput, such as high-speed storage innovation, HD video streaming, and internet-of-things applications. Additionally, its excellent skew characteristics make it suitable for critical timing applications, such as clock deskewing, processor/peripheral clock synchronization, PLL/DLL reset, delay locked loops, critical data synchronization, and other autonomous clock delivery applications. Furthermore, this clock buffer has low power consumption, making it suitable for applications that require low power.

The SY10E111LJC-TR offers two different programmable termination options. It can be used with a resistor divider, or with an onboard programmable voltage reference. The buffer\'s clock outputs can also be used within a differential signal pair, allowing for a lower noise operation and superior ground noise immunity. Additionally, the buffer\'s flexible architecture ensures that it is compatible with both SSTL and LVCMOS input levels.

The SY10E111LJC-TR works by receiving an input clock signal and then buffering, amplifying, increasing current drive, and increasing voltage swing. This allows it to drive multiple clock outputs with maximum efficiency and accuracy, reducing cost of ownership and providing superior signal integrity. Additionally, it features built-in low-power sleep modes to reduce the overall power consumption.

This buffer also features four clock output banks, each with four independent clock outputs, giving a total of sixteen output clocks. These outputs are dynamically adjustable and capable of providing speeds of up to 1.45GHz. The outputs can also be individually enabled and disabled, allowing for fine-grained control of the clock signal output.

The SY10E111LJC-TR also includes an adjustable edge delay filter that ensures that the clock output is free from glitches and unwanted noise, allowing for higher data rates and superior signal integrity. Additionally, it includes a built-in temperature compensated crystal oscillator (TCXO) that provides an accurate clock reference. This ensures excellent skew performance and jitter performance, minimizing clock errors and making it suitable for critical timing applications.

In summary, the SY10E111LJC-TR is an ideal choice for a wide range of clock applications, due to its excellent jitter performance, minimal clock skew, and low power consumption. Its features such as glitch-free output switching, adaptive equalization, wide bandwidth, and adjustable edge delay filter make it suitable for data transmission and critical timing applications, allowing for improved data throughput and minimized clock errors. Its built-in TCXO also ensures excellent skew performance and jitter performance, making it an ideal choice for critical timing applications.

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

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