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PCS5P23Z05BG-08-TT 参数 Datasheet PDF下载

PCS5P23Z05BG-08-TT图片预览
型号: PCS5P23Z05BG-08-TT
PDF下载: 下载PDF文件 查看货源
内容描述: 时序-SAFE ™峰值EMI降低IC [Timing-Safe™ Peak EMI reduction IC]
分类和应用: 时钟驱动器逻辑集成电路光电二极管
文件页数/大小: 14 页 / 659 K
品牌: PULSECORE [ PulseCore Semiconductor ]
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May 2007  
rev 0.2  
PCS5P23Z05B/09B  
Spread Spectrum Frequency Generation  
The clocks in digital systems are typically square waves  
with a 50% duty cycle and as frequencies increase the  
edge rates also get faster. Analysis shows that a square  
wave is composed of fundamental frequency and  
harmonics. The fundamental frequency and harmonics  
generate the energy peaks that become the source of  
EMI. Regulatory agencies test electronic equipment by  
measuring the amount of peak energy radiated from the  
equipment. In fact, the peak level allowed decreases as  
the frequency increases. The standard methods of  
reducing EMI are to use shielding, filtering, multi-layer  
PCBs etc. These methods are expensive. Spread  
spectrum clocking reduces the peak energy by reducing  
the Q factor of the clock. This is done by slowly  
modulating the clock frequency. The PCS5P23Z05B/09B  
uses the center modulation spread spectrum technique in  
which the modulated output frequency varies above and  
below the reference frequency with  
a
specified  
modulation rate. With center modulation, the average  
frequency is the same as the unmodulated frequency and  
there is no performance degradation  
Timing-Safe™ technology  
Timing-Safe™ technology is the ability to modulate a  
clock source with Spread Spectrum technology and  
maintain synchronization with any associated data path.  
Pin Configuration ( 8 Pin Device )  
CLKIN  
1
8
CLKOUT  
CLK4  
VDD  
2
7
6
5
CLK1  
PCS5P23Z05B  
CLK2  
GND  
3
4
CLK3  
Pin Configuration ( 16 Pin Device )  
1
16  
CLKOUT  
CLKA4  
CLKIN  
CLKA1  
2
3
15  
14  
CLKA2  
VDD  
CLKA3  
13 VDD  
4
5
6
7
8
PCS5P23Z09B  
12  
GND  
GND  
CLKB4  
11  
10  
9
CLKB1  
CLKB3  
S1  
CLKB2  
S2  
Timing-Safe™ Peak EMI Reduction IC  
2 of 14  
Notice: The information in this document is subject to change without notice.