| 전자부품 데이터시트 검색엔진 |
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AN2344 데이터시트(PDF) 22 Page - STMicroelectronics |
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AN2344 데이터시트(HTML) 22 Page - STMicroelectronics |
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22 / 27 page ![]() Datasheet avalanche ratings AN2344 22/27 Figure 18. STP11NM60FP rectangular pulse superimposition principle graph The temperature increase due to a finite number of repetitive avalanche phenomena may be calculated by substituting the Rth of Equation 11 with the Zth calculated at the train pulse duration τ : Equation 29 Other methods may be used. For example, using ‘ti’ as the rise and fall times for each rectangular power pulse (seeFigure 13.), the TJ may be calculated with the superimposition principle for each pulse contribution. This method can be used for trains of few pulses. At the end of the Nth pulse, Equation 30 However, for a considerably high number of pulses, this equivalent method should be used to calculate TJ at the Nth avalanche pulse: Equation 31 This result is to be added (by the superimposition principle) to the temperature increase due to the conduction and switching losses. Figure 19. Equally spaced, same amplitude pulse train timing diagram T JC max () P 0 t AV T --------Zth JC τ () 1 t AV T -------- – Zth JC tAV () + = ∆ T JC n () P 0 Zth JC ni – ()Tt AV + () Zth JC ni – ()T – () ) i1 = n ∑ = ∆ T JC n () ∆ P 0 t AV T --------Zth n 2 – ()Tt AV + () 1 t AV T -------- – Zth JC TtAV + () Zth JC T () – Zth JC tAV () ++ = |
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