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LM2735XMF/NOPB датащи(PDF) 40 Page - Texas Instruments |
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LM2735XMF/NOPB датащи(HTML) 40 Page - Texas Instruments |
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40 / 59 page ![]() = 6 JA R P n Dissipatio - A T J T Internal R A T C T DISS P - C A 6 C - R CASE 6 J - C CASE 6 J- A 6 C - J T LM2735, LM2735-Q1 SNVS485G – JUNE 2007 – REVISED AUGUST 2015 www.ti.com Thermal Considerations (continued) 10.3.1 Definitions Heat energy is transferred from regions of high temperature to regions of low temperature through three basic mechanisms: radiation, conduction and convection. Radiation Electromagnetic transfer of heat between masses at different temperatures. Conduction Transfer of heat through a solid medium. Convection Transfer of heat through the medium of a fluid; typically air. Conduction & Convection will be the dominant heat transfer mechanism in most applications. RθJC Thermal impedance from silicon junction to device case temperature. RθJA Thermal impedance from silicon junction to ambient air temperature. CθJC Thermal Delay from silicon junction to device case temperature. CθCA Thermal Delay from device case to ambient air temperature. RθJA & RθJC These two symbols represent thermal impedances, and most data sheets contain associated values for these two symbols. The units of measurement are °C/Watt. RθJAis the sum of smaller thermal impedances (see Figure 46). The capacitors represent delays that are present from the time that power and its associated heat is increased or decreased from steady state in one medium until the time that the heat increase or decrease reaches steady state on the another medium. Figure 46. Simplified Thermal Impedance Model The datasheet values for these symbols are given so that one might compare the thermal performance of one package against another. In order to achieve a comparison between packages, all other variables must be held constant in the comparison (PCB size, copper weight, thermal vias, power dissipation, VIN, VOUT, Load Current, and so forth). This does shed light on the package performance, but it would be a mistake to use these values to calculate the actual junction temperature in your application. (29) We will talk more about calculating the variables of this equation later, and how to eventually calculate a proper junction temperature with relative certainty. For now we need to define the process of calculating the junction temperature and clarify some common misconceptions. 40 Submit Documentation Feedback Copyright © 2007–2015, Texas Instruments Incorporated Product Folder Links: LM2735 LM2735-Q1 |
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