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L5983 Folha de dados(PDF) 26 Page - STMicroelectronics

Nome de Peças L5983
Descrição Electrónicos  1.5A step-down switching regulator
PDF  37 Pages
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Fabricante Electrônico  STMICROELECTRONICS [STMicroelectronics]
Página de início  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

L5983 Folha de dados(HTML) 26 Page - STMicroelectronics

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Application informations
L5983
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5.5
Thermal considerations
The thermal design is important to prevent the thermal shutdown of device if junction
temperature goes above 150°C. The three different sources of losses within the device are:
a)
conduction losses due to the not negligible RDSON of the power switch; these are
equal to:
Equation 26
Where D is the duty cycle of the application and the maximum RDSon is 300mΩ. Note that
the duty cycle is theoretically given by the ratio between VOUT an VIN, but actually it is quite
higher to compensate the losses of the regulator. So the conduction losses increases
compared with the ideal case.
b)
switching losses due to power MOSFET turn ON and OFF; these can be
calculated as:
Equation 27
Where TRISE and TFALL are the overlap times of the voltage across the power switch (VDS)
and the current flowing into it during turn ON and turn OFF phases, as shown in Figure 16.
TSW is the equivalent switching time.
For this device the typical value for the equivalent switching time is 50ns.
c)
Quiescent current losses, calculated as:
Equation 28
where IQ is the quiescent current. (IQ = 20uA)
The junction temperature TJ can be calculated as:
Equation 29
Where TA is the ambient temperature and PTOT is the sum of the power losses just seen.
RthJA is the equivalent thermal resistance junction to ambient of the device; it can be
calculated as the parallel of many paths of heat conduction from the junction to the ambient.
P
ON
R
DSON
I
OUT
()
2
D
⋅⋅
=
P
SW
V
IN
I
OUT
T
RISE
T
FALL
+
()
2
------------------------------------------- Fsw
⋅⋅
V
IN
I
OUT
T
SW
F
SW
⋅⋅
==
P
Q
V
IN
I
Q
=
T
J
T
A
Rth
JA
P
TOT
+
=



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