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RHRPM4423K02V Datasheet(PDF) 12 Page - STMicroelectronics

Part # RHRPM4423K02V
Description  Rad-hard 4.5 A dual inverting low-side MOSFET driver
PDF  31 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

RHRPM4423K02V Datasheet(HTML) 12 Page - STMicroelectronics

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8
Design guidelines
8.1
Output series resistance
The output resistance allows the high frequency operation without exceeding the maximum power dissipation of
the driver package. See Section 8.2 Power dissipation to understand how the output resistance value is
obtained. For applications with VCC supply voltage greater than 10 V and high capacitive loads (Cg > 10 nF), the
dissipated power in the output stage of the device has to be limited, therefore at least 2.2 Ω Rg gate resistor has
to be added. Figure 7. Minimum gate resistance is a synthetic view of the boundaries for the safe operation of the
RHRPM4423.
Figure 7. Minimum gate resistance
10
18
VCC [V]
Cg [nF]
10
Rg >2.2Ω
GIPD180120161238MT
8.2
Power dissipation
The RHRPM4423 embeds two high current low-side drivers which drive high capacitive MOSFETs. This section
estimates the power dissipated inside the device in normal applications. Two main terms contribute to the device
power dissipation: bias power and driver power.
•
PDC bias power depends on the static consumption of the device through the supply pins and it is given by
below equation:
Equation 1
P DC = VCC * ICC
•
The driver power is the necessary power to continuously switch on and off the external MOSFETs; it is a
function both of the switching frequency and total gate charge of the selected MOSFETs. PSW total
dissipated power is given by three main factors:
–
external gate resistance (when present)
–
intrinsic MOSFET resistance
–
intrinsic driver resistance
RHRPM4423
Design guidelines
DS11827 - Rev 3
page 12/31



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