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PM6681ATR Datasheet(PDF) 24 Page - STMicroelectronics

Part # PM6681ATR
Description  Dual synchronous step-down controller with adjustable LDO
PDF  47 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

PM6681ATR Datasheet(HTML) 24 Page - STMicroelectronics

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Device description
PM6681A
24/47
Figure 36.
Current waveforms in current limit conditions
Being fixed the valley threshold, the greater the current ripple is, greater the DC output
current is:
The valley current limit can be set with resistor RCSENSE:
Equation 7
(RDS(on) sensing technique)
Where ICSENSE = 100 µA, RDS(on) is the drain-source on resistance of the low side switch.
Consider the temperature effect and the worst case value in RDS(on) calculation.
The accuracy of the valley current threshold detection depends on the offset of the internal
comparator (
∆V
OFF) and on the accuracy of the current generator(∆ICSENSE):
Equation 8
Where RSNS is the sensing element (RDS(on)).
PM6681A provides also a fixed negative peak current limit to prevent an excessive reverse
inductor current when the switching section sinks current from the load in PWM mode. This
negative current limit threshold is measured between PHASE and SGND pins, comparing
the magnitude drop on the PHASE node during the conduction time of the low side
MOSFET with an internal fixed voltage of 120 mV.
The negative valley-current limit INEG (if the device works in PWM mode) is given by:
Equation 9
Inductor current
Valley current threshold
DC current limit = maximum load
Current
Time
Maximum load current is
influenced by the inductor
current ripple
CSENSE
Lvalley
DSon
CSENSE
I
I
R
R
×
=
SNS
SNS
CSENSE
CSENSE
CSENSE
CSENSE
OFF
CSENSE
CSENSE
Lvalley
Lvalley
R
R
R
R
100
I
R
V
I
I
I
I
∆
+
∆
+
⎥
⎦
⎤
⎢
⎣
⎡
×
×
∆
+
∆
=
∆
DSon
NEG
R
mV
120
I
=



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