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EMC1187 数据表(PDF) 21 Page - Microchip Technology |
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EMC1187 数据表(HTML) 21 Page - Microchip Technology |
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21 / 47 page ![]() Triple Channel 1°C Temperature Sensor with Hardware Thermal Shutdown and 1.8V SMBus Communications Datasheet SMSC EMC1187 21 Revision 1.0 (07-11-13) DATASHEET 5.7 Temperature Measurement The EMC1187 can monitor the temperature of up to two externally connected diodes. The device contains programmable High, Low, and Therm limits for all measured temperature channels. If the measured temperature goes below the Low limit or above the High limit, the ALERT pin can be asserted (based on user settings). 5.7.1 Beta Compensation The EMC1187 is configured to monitor the temperature of basic diodes (e.g., 2N3904) or CPU thermal diodes. It automatically detects the type of external diode (CPU diode or diode connected transistor) and determines the optimal setting to reduce temperature errors introduced by beta variation. Compensating for this error is also known as implementing the transistor or BJT model for temperature measurement. For discrete transistors configured with the collector and base shorted together, the beta is generally sufficiently high such that the percent change in beta variation is very small. For example, a 10% variation in beta for two forced emitter currents with a transistor whose ideal beta is 50 would contribute approximately 0.25°C error at 100°C. However for substrate transistors where the base-emitter junction is used for temperature measurement and the collector is tied to the substrate, the proportional beta variation will cause large error. For example, a 10% variation in beta for two forced emitter currents with a transistor whose ideal beta is 0.5 would contribute approximately 8.25°C error at 100°C. 5.7.2 Resistance Error Correction (REC) Parasitic resistance in series with the external diodes will limit the accuracy obtainable from temperature measurement devices. The voltage developed across this resistance by the switching diode currents cause the temperature measurement to read higher than the true temperature. Contributors to series resistance are PCB trace resistance, on die (i.e. on the processor) metal resistance, bulk resistance in the base and emitter of the temperature transistor. Typically, the error Figure 5.3 Isolating ALERT and SYS_SHDN Pin EMC1187 10 9 8 7 SMDATA SMCLK 1 2 3 4 ALERT VDD DP1 DN1 SYS_SHDN GND +3.3V 22K 4.7K - 33K +2.5 - 5V 5 6 DP2 DN2 +3.3V 22K 4.7K - 33K +2.5 - 5V Shared SYS_SHDN Shared Alert |
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