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MPC8308CVMADDA Datasheet(PDF) 76 Page - NXP Semiconductors |
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MPC8308CVMADDA Datasheet(HTML) 76 Page - NXP Semiconductors |
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76 / 95 page ![]() MPC8308 PowerQUICC II Pro Processor Hardware Specification, Rev. 4 76 Freescale Semiconductor Thermal appropriate for a tightly packed printed-circuit board. The value obtained on the board with the internal planes is usually appropriate if the board has low power dissipation and the components are well separated. Test cases have demonstrated that errors of a factor of two (in the quantity TJ – TA) are possible. 22.2.2 Estimation of Junction Temperature with Junction-to-Board Thermal Resistance The thermal performance of a device cannot be adequately predicted from the junction-to-ambient thermal resistance. The thermal performance of any component is strongly dependent on the power dissipation of surrounding components. In addition, the ambient temperature varies widely within the application. For many natural convection and especially closed box applications, the board temperature at the perimeter (edge) of the package is approximately the same as the local air temperature near the device. Specifying the local ambient conditions explicitly as the board temperature provides a more precise description of the local ambient conditions that determine the temperature of the device. At a known board temperature, the junction temperature is estimated using the following equation: TJ = TB + (RJB PD) where: TJ = junction temperature (C) TB = board temperature at the package perimeter (C) RJB = junction-to-board thermal resistance (C/W) per JESD51–8 PD = power dissipation in the package (W) When the heat loss from the package case to the air can be ignored, acceptable predictions of junction temperature can be made. The application board should be similar to the thermal test condition: the component is soldered to a board with internal planes. 22.2.3 Experimental Determination of Junction Temperature To determine the junction temperature of the device in the application after prototypes are available, the thermal characterization parameter ( JT) can be used to determine the junction temperature with a measurement of the temperature at the top center of the package case using the following equation: TJ = TT + (JT PD) where: TJ = junction temperature (C) TT = thermocouple temperature on top of package (C) JT = thermal characterization parameter (C/W) PD = power dissipation in the package (W) The thermal characterization parameter is measured per JESD51-2 specification using a 40 gauge type T thermocouple epoxied to the top center of the package case. The thermocouple should be positioned so that the thermocouple junction rests on the package. A small amount of epoxy is placed over the thermocouple junction and over about 1 mm of wire extending from the junction. The thermocouple wire is placed flat against the package case to avoid measurement errors caused by cooling effects of the thermocouple wire. |
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