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EMC2103-2-AP 参数 Datasheet PDF下载

EMC2103-2-AP图片预览
型号: EMC2103-2-AP
PDF下载: 下载PDF文件 查看货源
内容描述: 基于RPM的风扇控制器硬件过热关机 [RPM-Based Fan Controller with HW Thermal Shutdown]
分类和应用: 风扇控制器
文件页数/大小: 84 页 / 1193 K
品牌: SMSC [ SMSC CORPORATION ]
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RPM-Based Fan Controller with HW Thermal Shutdown  
Datasheet  
3. Setting the LUT_LOCK bit will disable the Watchdog Timer. The fan driver will be set based on the  
Look Up Table settings.  
Writing any other configuration registers will not disable the Watchdog Timer.  
APPLICATION NOTE: Disabling the Watchdog will not automatically set the fan drive. This must be done manually  
(or via the Look Up Table).  
5.10  
Fault Queue  
The EMC2103 contains a programmable fault queue on all fault conditions. The fault queue defines  
how many consecutive out-of-limit conditions must be reported before the corresponding status bit is  
set (and the ALERT pin asserted).  
5.11  
Temperature Monitoring  
The EMC2103 can monitor the temperature of up to three (3) externally connected diodes as well as  
the internal or ambient temperature. Each channel is configured with the following features enabled or  
disabled based on user settings and system requirements.  
5.11.1  
Dynamic Averaging  
The EMC2103 supports dynamic averaging. When enabled, this feature changes the conversion time  
for all channels based on the selected conversion rate. This essentially increases the averaging factor  
as shown in Table 5.4. The benefits of Dynamic Averaging are improved noise rejection due to the  
longer integration time as well as less random variation on the temperature measurement.  
Table 5.4 Dynamic Averaging Behavior  
AVERAGING FACTOR (RELATIVE TO 11-BIT CONVERSI0N)  
CONVERSION RATE  
DYNAMIC AVERAGING  
ENABLED  
DYNAMIC AVERAGING  
DISABLED  
1 / sec  
2 / sec  
8x  
4x  
2x  
1x  
1x  
1x  
1x  
1x  
4 / sec  
Continuous  
5.11.2  
Resistance Error Correction  
The EMC2103 includes active Resistance Error Correction to remove the effect of up to 100 ohms of  
series resistance. Without this automatic feature, voltage developed across the parasitic resistance in  
the remote diode path causes the temperature to read higher than the true temperature is. The error  
induced by parasitic resistance is approximately +0.7°C per ohm. Sources of parasitic resistance  
include bulk resistance in the remote temperature transistor junctions, series resistance in the CPU,  
and resistance in the printed circuit board traces and package leads. Resistance error correction in the  
EMC2103 eliminates the need to characterize and compensate for parasitic resistance in the remote  
diode path.  
Revision 0.85 (01-29-08)  
SMSC EMC2103  
DATA3S2HEET