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L6204 Просмотр технического описания (PDF) - STMicroelectronics

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L6204
ST-Microelectronics
STMicroelectronics ST-Microelectronics
L6204 Datasheet PDF : 12 Pages
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L6204
APPLICATION INFORMATION
RECIRCULATION
During recirculation with the ENABLE input high, the voltage drop across the transistor is RDS(ON). IL for
voltages less than 0.7 V and is clamped at a voltage depending on the characteristics of the source-drain
diode for greater voltages. Although the device is protected against cross conduction, current spikes can
appear on the current sense pin due to charge/discharge phenomena in the intrinsic source drain capac-
itances. In the application this does not cause any problems because the voltage created across the sense
resistor is usually much less than the peak value, although a small RC filter can be added if necessary.
POWER DISSIPATION (each bridge)
In order to achieve the high performance provided by the L6204 some attention must be paid to ensure
that it has an adequate PCB area to dissipate the heat. The first stage of any thermal design is to calculate
) the dissipated power in the appl ication, for this example the half step operation shown in figure 7 is con-
t(s sidered.
duc RISE TIME Tr
ro When an arm of the half bridge is turned on current begins to flow in the inductive load until the maximum
P current IL is reached after a time Tr.
te The dissipated energy EOFF/ON is in this case :
le EOFF/ON = [RDS(ON) · IL2 · Tr] · 2/3
so Figure 7.
Obsolete Product(s) - Ob ON TIME TON
During this time the energy dissipated is due to the ON resistance of the transistors EON and the commu-
tation ECOM. As two of the POWER DMOS transistors are ON EON is given by :
EON = IL 2 · RDS(ON) · 2 · TON
In the commutation the energy dissipated is :
Where :
ECOM = VS · IL · TCOM · fSWITCH · TON
TCOM = Commutation Time and it is assumed that ;
TCOM = TTURN-ON = TTURN-OFF = 100 ns
fSWITCH = Chopper frequency
8/12

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