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L5963 bảng dữ liệu(PDF) 37 Page - STMicroelectronics

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L5963
Thermal design
48
8
Thermal design
The PCB design should take into account also thermal aspects.
The maximum power manageable by the IC depends on how the board is designed and on
the package junction to ambient thermal resistance.
The temperature inside the IC (junction temperature) should not exceed 150 °C or one or
more thermal shut-down protections intervene.
The total power dissipation is approximately given by the sum of the power dissipation of the
two dc-dc regulators and the linear regulator:
Pd = Pdpwm1 + Pdpwm2 + Pdldo
Where:
PdissDC/DC = IloadDC/DC x VoutDC/DC x (1-)/;
 is the efficiency, as shown in Figure 7 and 8.
PdissLDO = IloadLDO x (VINLDO-VOUTLDO)
The junction temperature is estimated in this way:
Tj = Ta + Pd x Rthj-a
Where:
Ta is the maximum ambient temperature;
Rthj-amb is the junction to ambient thermal resistance, as defined in Table 5 and Table 6.
The slug has to be connected to the ground plane, whenever possible.
According to below formula and considering TSD_TH thermal shutdown minimum threshold
at 150 °C, maximum suggested power dissipation, for a slug-down configuration, can be
easily retrieved:
PDISS_suggested = (TSHD - Tamb) / Rthj-a
Table 9. Maximum suggested power for L5963 in PSSO36 slug-down package
Symbol
Tamb 105 °C
Tamb 80 °C
Rth j-a-2s
0.85 W
1.32 W
Rth j-a-2s2p
1.66 W
2.6 W
Rth j-a-2s2pvias
2.05 W
3.2 W
Table 10. Maximum suggested power for L5963 in QFN48 package
Symbol
Tamb 105 °C
Tamb 80 °C
Rth j-a-2s
0.68 W
1.06 W
Rth j-a-2s2p
1.41 W
1.19 W
Rth j-a-2s2pvias
1.73 W
2.7 W



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