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STDRIVE101 Datenblatt(PDF) 14 Page - STMicroelectronics

Teilenummer STDRIVE101
Bauteilbeschribung  Triple half-bridge gate driver
PDF  32 Pages
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Hersteller  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
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STDRIVE101 Datenblatt(HTML) 14 Page - STMicroelectronics

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Figure 9. 12 V LDO linear regulator typical configuration
VS
12 V
LDO reg
REG12
VS
CREG12
220 nF
100 nF
The regulator supplies the gate drivers and can be used to supply small external loads. The average current
consumption IREG12 is given by the internal consumption of the gate drivers, the current provided to the gates of
the external MOSFETs and the external load consumption, if any. IREG12 cannot exceed IREG12lim.
The internal consumption of the gate drivers is proportional to the switching frequency and its typical value is
reported in Figure 10; this is the overall consumption of the six gate drivers and it is measured without any load
connected on the drivers’ outputs.
Figure 10. Typical current consumption (driver’ outputs unloaded)
On top of this, the current supplied to the external MOSFETs’ gates must be considered. The overall gate current
IG,tot for the six MOSFETs of the power stage can be calculated as:
Equation 1
(1)
IG,tot= 6⋅Qg⋅fSW
where Qg is the gate charge value of the external MOSFETs, taken at gate voltage equal to VREG12 and fSW is the
switching frequency of the MOSFETs (i.e. the frequency of the PWM signals applied to the drivers).
Another aspect to consider for the maximum current of the linear regulator is the power dissipation. An excessive
power dissipation leads to the thermal shutdown of the device ( Section 5.8 ). The total power dissipation of the
regulator PREG12 can be calculated as:
STDRIVE101
12 V LDO linear regulator
DS13472 - Rev 1
page 14/32



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