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FS781BZBT PDF预览

FS781BZBT

更新时间: 2024-11-20 19:42:31
品牌 Logo 应用领域
赛普拉斯 - CYPRESS 时钟光电二极管外围集成电路晶体
页数 文件大小 规格书
12页 196K
描述
Clock Generator, 82MHz, CMOS, PDSO8, 0.150 INCH, MS-012, SOIC-8

FS781BZBT 技术参数

是否无铅: 含铅是否Rohs认证: 不符合
生命周期:Obsolete零件包装代码:SOIC
包装说明:0.150 INCH, MS-012, SOIC-8针数:8
Reach Compliance Code:compliantECCN代码:EAR99
HTS代码:8542.39.00.01风险等级:5.86
其他特性:ALSO OPERATES AT 5V SUPPLYJESD-30 代码:R-PDSO-G8
JESD-609代码:e0长度:4.889 mm
湿度敏感等级:1端子数量:8
最高工作温度:70 °C最低工作温度:
最大输出时钟频率:82 MHz封装主体材料:PLASTIC/EPOXY
封装代码:SOP封装等效代码:SOP8,.25
封装形状:RECTANGULAR封装形式:SMALL OUTLINE
峰值回流温度(摄氏度):220电源:3.3/5 V
主时钟/晶体标称频率:82 MHz认证状态:Not Qualified
座面最大高度:1.727 mm子类别:Clock Generators
最大供电电压:3.63 V最小供电电压:2.97 V
标称供电电压:3.3 V表面贴装:YES
技术:CMOS温度等级:COMMERCIAL
端子面层:TIN LEAD端子形式:GULL WING
端子节距:1.27 mm端子位置:DUAL
处于峰值回流温度下的最长时间:NOT SPECIFIED宽度:3.8985 mm
uPs/uCs/外围集成电路类型:CLOCK GENERATOR, OTHERBase Number Matches:1

FS781BZBT 数据手册

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FS781/82/84  
Low EMI Spectrum Spread Clock  
Features  
Functional Description  
• Spread Spectrum clock generator (SSCG) with 1×, 2×,  
The Cypress FS781/82/84 are Spread Spectrum clock  
generator ICs (SSCG) designed for the purpose of reducing  
electromagnetic interference (EMI) found in today’s  
high-speed digital systems.  
and 4× outputs  
• 6- to 82-MHz operating frequency range  
• Modulates external clocks including crystals, crystal  
The FS781/82/84 SSCG clocks use a Cypress-proprietary  
technology to modulate the input clock frequency, XIN, by  
modulating the frequency of the digital clock. By modulating  
the reference clock the measured EMI at the fundamental and  
harmonic frequencies of FSOUT is greatly reduced. This  
reduction in radiated energy can significantly reduce the cost  
of complying with regulatory requirements without degrading  
digital waveforms.  
The Cypress FS781/82/84 clocks are very simple and  
versatile devices to use. By programming the two range select  
lines, S0 and S1, any frequency from 6- to 82-MHz operating  
range can be selected. The FS781/2/4 are designed to  
operate over a very wide range of input frequencies and  
provides 1×, 2×, and 4× modulated clock outputs.  
The FS78x devices have a simple frequency selection table  
that allows operation from 6 MHz to 82 MHz in four separate  
ranges. The bandwidth of the frequency spread at FSOUT is  
determined by the values of the loop filter components. The  
modulation rate is determined internally by the input frequency  
and the selected input frequency range.  
oscillators, or ceramic resonators  
• Programmable modulation with simple R-C external  
loop filter (LF)  
• Center spread modulation  
• 3V-5V power supply  
• TTL-/CMOS-compatible outputs  
• Low short-term jitter  
• Low-power Dissipation  
— 3.3 VDC = 37 mW – typical  
— 5.0 VDC = 115 mW – typical  
• Available in 8-pin SOIC and TSSOP packages  
Applications  
• Desktop/notebook computers  
• Printers, copiers, and MFP  
• Scanners and fax  
The Bandwidth of these products can be programmed from as  
little as 1.0% up to as much as 4.0% by selecting the proper  
loop filter value. Refer to the Loop Filter Selection chart in  
Table 2 and Table 3 for the recommended values. Due to a  
wide range of application requirements, an external loop filter  
(LF) is used on the FS78x products. The user can select the  
exact amount of frequency modulation suitable for the appli-  
cation. Using a fixed internal loop filter would severely limit  
the use of a wide range of modulation bandwidths (Spread %)  
to a few discrete values. Refer to FS791/2/4 products for appli-  
cations requiring 80- to 140-MHz frequency range.  
• LCD displays and monitors  
• CD-ROM, VCD, and DVD  
• Automotive and embedded systems  
• Networking, LAN/WAN  
• Digital cameras and camcorders  
• Modems  
Benefits  
• Programmable EMI reduction  
• Fast time to market  
• Lower cost of compliance  
• No degradation in rise/fall times  
• Lower component and PCB layer count  
Cypress Semiconductor Corporation  
3901 North First Street  
San Jose, CA 95134  
408-943-2600  
Document #: 38-07029 Rev. *D  
Revised October 13, 2004  

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