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MIC2133YML Fiches technique(PDF) 31 Page - Microchip Technology |
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MIC2133YML Fiches technique(HTML) 31 Page - Microchip Technology |
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31 / 50 page ![]() 2022 Microchip Technology Inc. and its subsidiaries DS20006653B-page 31 MIC2133 The TEMP pin voltage is given in the equation below. EQUATION 4-30: The CSH pin monitors the average inductor current by using the bottom FET RDSON as a sense resistor. The CSH pin voltage can be calculated using the equation below. EQUATION 4-31: Because of the sense resistor type (NMOS FET), the constant, K, depends on temperature. To measure the real current through a PMBus, the voltage values at the TEMP and CSH pins will be used by a PMBus-enabled microcontroller to cancel the temperature dependence and get a precise temperature- independent measurement by calculating the corrected value using a stable, known temperature dependency and calibrating at 25°C. The system input voltage and the output voltage are also available from the MIC2133 converter. These volt- ages can be sensed by the PMBus-enabled microcon- troller, through appropriate resistive dividers, to convert to digital form and communicate with the PMBus host for telemetry. Additionally, the external temperature from the individ- ual channels can be measured by the PMBus-enabled microcontroller through the external PN junction diode placed at the hot spot in the channel (e.g., MOSFET or inductor). This is the mechanism through which the MIC2133 provides all the required process variables in the system, as analog sense to the PMBus-enabled microcontroller, which will provide telemetry to the PMBus host controller. 4.5.14 FREQUENCY PROGRAMMING The switching frequency per phase in CCM can be programmed by the equation below: EQUATION 4-32: 4.5.15 THERMAL SHUTDOWN When the junction temperature of the MIC2133 reaches +160°C or above, the buck converter goes into thermal shutdown. When the junction temperature falls below +140°C, the MIC2133 buck converter soft starts again. VTEMP TJ GTS VOS TS + = Where: TJ = MIC2133 Device Junction Temperature GTS = Gain of Thermal Sense (6 mV/°C typical) VOS(TS) = Offset Voltage of Thermal Sense Output (1.8V typical) VCSH ILAVG KVCSH 0A + = Where: IL(AVG) = Average Inductor Current VCSH(0A) =1.2V = VCSH Voltage for IL(AVG) = 0A to Allow 2-Quadrant Monitoring (e.g., IL(AVG) ±10A) K = Constant Factor Where: RFREQ = Resistor Connects from FREQ Pin to AGND RFREQ = 20.1 × 109 fSW_PH |
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