PM6686TR STMicroelectronics, PM6686TR Datasheet - Page 40

IC CTLR DUAL STEP DOWN VFQFPN32

PM6686TR

Manufacturer Part Number
PM6686TR
Description
IC CTLR DUAL STEP DOWN VFQFPN32
Manufacturer
STMicroelectronics
Datasheet

Specifications of PM6686TR

Applications
Controller, Notebook Computers
Voltage - Input
5.5 ~ 28 V
Number Of Outputs
2
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
32-VFQFN, 32-VFQFPN
Output Voltage
5.5 V
Output Current
100 mA
Output Power
4.3 mW
Input Voltage
5.5 V to 28 V
Switching Frequency
33 KHz
Mounting Style
SMD/SMT
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
497-8522-2

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Manufacturer
Quantity
Price
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Application information
10.1.4
40/50
Finally the output capacitor choice deeply impacts on the load transient response. Below
there is a list of some capacitor manufacturers.
Output capacitor manufacturer
Table 16.
MOSFET
Logic-level MOSFETs are recommended, since low-side and high-side gate drivers are
powered by PVCC. Their breakdown voltage (VBRDSS) must be higher than the maximum
input voltage.
In notebook applications, power management efficiency is a high level requirement. The
power dissipation on the power switches becomes an important factor in switching
selections. Losses of high-side and low-side MOSFETs depend on their working conditions.
The power dissipation of the high-side MOSFET is given by:
Equation 14
Maximum conduction losses are approximately:
Equation 15
Where R
Switching losses are approximately:
Equation 16
Where t
MOSFETs.
As general rule, high-side MOSFETs with low gate charge are recommended, in order to
minimize driver losses.
Below there is a list of possible choices for the high-side MOSFETs.
Manufacturer
SANYO
SANYO
P
switching
on
DS(on)
and t
Input capacitor manufacturer
=
is the drain-source on resistance of the high-side MOSFET.
off
POSCAP TPB
POSCAP TPF
V
are the switching times of the turn off and turn off phases of the
IN
Series
×
I (
LOAD
P
conduction
(max)
P
Doc ID 15281 Rev 4
DHighSide
2
Capacitor value (µF)
=
Δ
2
I
R
L
150 to 330
150 to 470
DSon
)
=
×
P
t
on
conduction
×
×
V
V
f
IN
sw
OUT
min
+
+
×
V
P
I
IN
LOAD
switching
×
Rated voltage (V)
I (
LOAD
(max)
2.5 to 6.3
2.5 to 6.3
(max)
2
2
+
Δ
2
I
L
)
×
ESR max (mΩ)
t
off
35 to 65
7 to 15
×
f
sw
PM6686

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