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A5974AD датащи(PDF) 31 Page - STMicroelectronics

номер детали A5974AD
подробное описание детали  Zero load current operation
PDF  49 Pages
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производитель  STMICROELECTRONICS [STMicroelectronics]
домашняя страница  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

A5974AD датащи(HTML) 31 Page - STMicroelectronics

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Doc ID 018762 Rev 1
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Figure 17.
Measurement of the thermal impedance of the demonstration board
As can be seen, for example, for load pulses with a duration of 1 second, the actual thermal
impedance is lower than 20
°C/W. This means that, for short pulses, the device can deliver a
higher output current value.
8.4
Short-circuit protection
In overcurrent protection mode, when the peak current reaches the current limit, the device
reduces the TON down to its minimum value (approximately 250 nsec) and the switching
frequency to approximately one third of its nominal value even when synchronized to an
external signal (see Section 5.4: Current protection). In these conditions, the duty cycle is
strongly reduced and, in most applications, this is enough to limit the current to ILIM. In any
event, in case of heavy short-circuit at the output (VO = 0 V) and depending on the
application conditions (VCC value and parasitic effect of external components), the current
peak could reach values higher than ILIM. This can be understood considering the inductor
current ripple during the ON and OFF phases:
●
On phase
Equation 29
●
Off phase
Equation 30
where VD is the voltage drop across the diode, DCRL is the series resistance of the inductor.
In short-circuit conditions VOUT is negligible, so during TOFF the voltage across the inductor
is very small, as equal to the voltage drop across parasitic components (typically the DCR of
I
L TON
Δ
V
IN
V
out
–
DCR
L
R
DS(on)
+
() I
⋅
–
L
-------------------------------------------------------------------------------------- T
ON
()
=
I
L TOFF
Δ
V
D
V
out
DCR
L
I
⋅
++
()
–
L
-------------------------------------------------------------- T
OFF
()
=



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