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L6717 датащи(PDF) 48 Page - STMicroelectronics

номер детали L6717
подробное описание детали  High-efficiency hybrid AM2r2 controller with I2C interface and embedded drivers
PDF  56 Pages
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производитель  STMICROELECTRONICS [STMicroelectronics]
домашняя страница  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

L6717 датащи(HTML) 48 Page - STMicroelectronics

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High current embedded drivers
L6717
48/56
Doc ID 17326 Rev 1
10.2
Power dissipation
It is important to consider the power that the device is going to dissipate in driving the exter-
nal MOSFETs in order to avoid overcoming the maximum junction operative temperature.
Two main terms contribute in the device power dissipation: bias power and drivers' power.
Device power (PDC) depends on the static consumption of the device through the
supply pins and it is simply quantifiable as follow:
Drivers' power is the power needed by the driver to continuously switch ON and OFF
the external MOSFETs; it is a function of the switching frequency and total gate charge
of the selected MOSFETs. It can be quantified considering that the total power PSW
dissipated to switch the MOSFETs dissipated by three main factors: external gate
resistance (when present), intrinsic MOSFET resistance and intrinsic driver resistance.
This last term is the important one to be determined to calculate the device power
dissipation.
The total power dissipated to switch the MOSFETs for each phase featuring embedded
driver results:
Where QGHSx is the total gate charge of the HS MOSFETs and QGLSx is the total gate
charge of the LS MOSFETs for both CORE and NB sections (only Phase1 and Phase2
for CORE section); VBOOTx is the driving voltage for the HSx MOSFETs.
P
DC
V
CC
I
CC
V
VCCDR
I
VCCDR
+
=
P
SWx
F
SW
Q
GLSx
VCCDR
Q
GHSx
VBOOTx
+
()
=



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