欢迎访问ic37.com |
会员登录 免费注册
发布采购

316963-002 参数 Datasheet PDF下载

316963-002图片预览
型号: 316963-002
PDF下载: 下载PDF文件 查看货源
内容描述: 支持英特尔赛扬处理器 [Supporting the Intel Celeron processor]
分类和应用:
文件页数/大小: 100 页 / 1346 K
品牌: INTEL [ INTEL ]
 浏览型号316963-002的Datasheet PDF文件第74页浏览型号316963-002的Datasheet PDF文件第75页浏览型号316963-002的Datasheet PDF文件第76页浏览型号316963-002的Datasheet PDF文件第77页浏览型号316963-002的Datasheet PDF文件第79页浏览型号316963-002的Datasheet PDF文件第80页浏览型号316963-002的Datasheet PDF文件第81页浏览型号316963-002的Datasheet PDF文件第82页  
Thermal Specifications and Design Considerations  
5.1.2  
Thermal Metrology  
The maximum and minimum case temperatures (TC) for the processor is specified in  
Table 26. This temperature specification is meant to help ensure proper operation of  
the processor. Figure 17 illustrates where Intel recommends TC thermal measurements  
should be made. For detailed guidelines on temperature measurement methodology,  
refer to the Intel® Celeron® Processor 400 Series Thermal and Mechanical Design  
Guidelines.  
Figure 17.  
Case Temperature (TC) Measurement Location  
Measure TC at this point  
(geometric center of the package)  
37.5 mm  
5.2  
Processor Thermal Features  
5.2.1  
Thermal Monitor  
The Thermal Monitor feature helps control the processor temperature by activating the  
thermal control circuit (TCC) when the processor silicon reaches its maximum operating  
temperature. The TCC reduces processor power consumption by modulating (starting  
and stopping) the internal processor core clocks. The Thermal Monitor feature must  
be enabled for the processor to be operating within specifications. The  
temperature at which Thermal Monitor activates the thermal control circuit is not user  
configurable and is not software visible. Bus traffic is snooped in the normal manner,  
and interrupt requests are latched (and serviced during the time that the clocks are on)  
while the TCC is active.  
When the Thermal Monitor feature is enabled, and a high temperature situation exists  
(i.e., TCC is active), the clocks will be modulated by alternately turning the clocks off  
and on at a duty cycle specific to the processor (typically 30–50%). Clocks often will  
not be off for more than 3.0 microseconds when the TCC is active. Cycle times are  
processor speed dependent and will decrease as processor core frequencies increase. A  
small amount of hysteresis has been included to prevent rapid active/inactive  
transitions of the TCC when the processor temperature is near its maximum operating  
temperature. Once the temperature has dropped below the maximum operating  
temperature, and the hysteresis timer has expired, the TCC goes inactive and clock  
modulation ceases.  
With a properly designed and characterized thermal solution, it is anticipated that the  
TCC would only be activated for very short periods of time when running the most  
power intensive applications. The processor performance impact due to these brief  
78  
Datasheet  
 复制成功!