IR3842WMTR1PBF International Rectifier, IR3842WMTR1PBF Datasheet - Page 19

IC REG SYNC BUCK 4A 15-QFN

IR3842WMTR1PBF

Manufacturer Part Number
IR3842WMTR1PBF
Description
IC REG SYNC BUCK 4A 15-QFN
Manufacturer
International Rectifier
Series
SupIRBuck™r
Type
Step-Down (Buck)r
Datasheet

Specifications of IR3842WMTR1PBF

Internal Switch(s)
Yes
Synchronous Rectifier
Yes
Number Of Outputs
1
Voltage - Output
0.7 ~ 14.4 V
Current - Output
4A
Frequency - Switching
225kHz ~ 1.65MHz
Voltage - Input
1.5 ~ 16 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
15-PowerVQFN
Power - Output
640mW
Primary Input Voltage
16V
No. Of Outputs
1
Output Voltage
14.4V
Output Current
4A
No. Of Pins
15
Operating Temperature Range
-40°C To +125°C
Output Voltage Adjustable Max, Vout
14.4V
Rohs Compliant
Yes
Part Status
Preferred
Package
PQFN / 5 x 6
Circuit
Single Output
Iout (a)
4
Switch Freq (khz)
250 - 1500
Input Range (v)
1.5 - 16
Output Range (v)
0.7 - 0.9*Vin
Ocp Otp Uvlo Pre-bias Soft Start And
PGOOD + EN + SEQ + OVD
Design Tool
Yes
Server Storage
Yes
Routers Switches
Yes
Base Station Telecom
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
IR3842WMTR1PBFTR
V
the voltage Vc across C6 remains approximately
unchanged and the voltage at the Boot pin
becomes
A bootstrap capacitor of value 0.1uF is suitable
for most applications.
Input Capacitor Selection
The ripple current generated during the on time of
the upper MOSFET should be provided by the
input capacitor. The RMS value of this ripple is
expressed by:
Where:
D is the Duty Cycle
I
current.
Io is the output current.
For I
Ceramic capacitors are recommended due to
their peak current capabilities. They also feature
low ESR and ESL at higher frequency which
enables better efficiency. For this application, it is
advisable to have 2x10uF 25V ceramic capacitors
C3216X5R1E106M from TDK. In addition to
these, although not mandatory, a 1X330uF, 25V
SMD capacitor EEV-FK1E331P may also be
used as a bulk capacitor and is recommended if
the input power supply is not located close to the
converter.
RMS
Boot
Rev 11.0
I
D =
RMS
o
Fig. 12. Bootstrap circuit to generate
is the RMS value of the input capacitor
=4A and D = 0.15, the I
V
V
=
V
in
o
in
I
o
..........
+
V
D
cc
..........
(
1
Vc voltage
V
D
D
..........
)
..........
..........
..........
..........
..
RMS
(13)
= 1.43 A.
....(12)
..........
..........
(11)
Inductor Selection
The inductor is selected based on output power,
operating frequency and efficiency requirements.
A low inductor value causes large ripple current,
resulting in the smaller size, faster response to a
load transient but poor efficiency and high output
noise. Generally, the selection of the inductor
value can be reduced to the desired maximum
ripple current in the inductor
point is usually found between 20% and 50%
ripple of the output current.
For the buck converter, the inductor value for the
desired
determined using the following relation:
Where:
If
calculated to be 1.59μH. Select L=1.5 μH.
The
compact, low profile inductor suitable for this
application
.
V
in
L
Δi ≈ 40%(I
=
V
(
MPO104-1R5
V
V
V
o
F
D
Δi
Δt
in
in
o
s
=
=
=
operating
=
=
=
=
L
Duty
V
Switching
Inductor
Output
Turn
Maximum
o
Δ
Δ
)
t
i
cycle
o
;
V
on
), then the output inductor is
IR3842WMPbF
in
Δ
Voltage
t
ripple
time
V
=
Δ
frequency
ripple
o
from
input
i
D
*
F
current
s
F
1
s
voltage
Delta
..........
current
( i
Δ
)
. The optimum
..........
provides
can
..........
19
be
.
a
(14)

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