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SL2309NZSI-1HT 参数 Datasheet PDF下载

SL2309NZSI-1HT图片预览
型号: SL2309NZSI-1HT
PDF下载: 下载PDF文件 查看货源
内容描述: 低抖动和偏斜DC到220MHz的时钟缓冲器 [Low Jitter and Skew DC to 220MHz Clock Buffer]
分类和应用: 时钟
文件页数/大小: 11 页 / 133 K
品牌: SPECTRALINEAR [ SPECTRALINEAR INC ]
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SL23EP09NZ  
General Description  
Output Clock Skew  
The SL23EP09NZ is a low skew, jitter and power fanout  
buffer designed to produce up to nine (9) clock outputs  
from one (1) reference input clock, for high speed clock  
distribution, including PCI/PCI-X applications.  
All outputs should drive the similar load to achieve output-  
to-output skew specifications as given in the switching  
electrical tables.  
Power Supply Range (VDD)  
Input and output Frequency Range  
The SL23EP09NZ is designed to operate from 3.3V to 2.5V  
VDD power supply range. An internal on-chip voltage  
regulator is used to provide to constant power supply of  
1.8V, leading to a consistent and stable electrical  
performance in terms of skew and jitter. The SL23EP09NZ  
I/O is powered by using VDD.  
The input and output frequency is the same (1x) for  
SL2309NZ and the product operates from DC to  
220MHz clock range with 15pF and 100MHz with 30pF  
output loads.  
High Drive Capability  
Refer to SL2309NZ product for DC to 140MHz-max  
frequency range.  
The SL23EP09NZ is designed to meet high drive  
requirements for up to 30pF load condition per electrical  
specifications.  
Contact SLI for 1.8V power supply Buffers and ZDB  
products.  
If lower drive levels are required refer to SL2309NZ  
fanout buffer product.  
Absolute Maximum Ratings (C-Grade and I-Grade)  
Description  
Supply voltage, VDD  
Condition  
Min  
-0.5  
-0.5  
0
Max  
4.6  
Unit  
V
All Inputs and Outputs  
VDD+0.5  
70  
V
Ambient Operating Temperature  
Ambient Operating Temperature  
Storage Temperature  
In operation, C-Grade  
°C  
°C  
°C  
°C  
°C  
V
In operation, I-Grade  
-40  
-65  
85  
No power is applied  
150  
125  
260  
Junction Temperature  
In operation, power is applied  
Soldering Temperature  
ESD Rating (Human Body Model)  
MIL-STD-883, Method 3015  
2000  
Rev 1.1, May 18, 2007  
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