IR3856WMTR1PBF International Rectifier, IR3856WMTR1PBF Datasheet - Page 29

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IR3856WMTR1PBF

Manufacturer Part Number
IR3856WMTR1PBF
Description
IC REG SYNC BUCK 6A 17-QFN
Manufacturer
International Rectifier
Series
SupIRBuck™r
Type
Step-Down (Buck)r
Datasheet

Specifications of IR3856WMTR1PBF

Internal Switch(s)
Yes
Synchronous Rectifier
Yes
Number Of Outputs
1
Voltage - Output
0.7 ~ 14.4 V
Current - Output
6A
Frequency - Switching
225kHz ~ 1.65MHz
Voltage - Input
1.5 ~ 16 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
17-PowerVQFN
Power - Output
1.3W
Part Status
Active
Package
PQFN / 4 x 5
Circuit
Single Output
Iout (a)
6
Switch Freq (khz)
0 - 750
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
Server Storage
Yes
Routers Switches
Yes
Base Station Telecom
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
IR3856WMTR1PBFTR
Resistors Rt, Rocset,
and SS capacitor
should be placed as
close as possible to
their pins.
Layout Considerations
The layout is very important when designing high
frequency switching converters. Layout will affect
noise pickup and can cause a good design to
perform with less than expected results.
Make
components in the top layer with wide, copper
filled areas or polygons. In general, it is desirable
to make proper use of power planes and
polygons
dissipation.
The inductor, output capacitors and the IR3856W
should be as close to each other as possible.
This helps to reduce the EMI radiated by the
power traces due to the high switching currents
through them. Place the input capacitor directly at
the Vin pin of IR3856W.
The feedback part of the system should be kept
away from the inductor and other noise sources.
The
capacitors for Vcc should be close to their
respective pins. It is important to place the
feedback
resistors and compensation components close to
Fb and Comp pins.
Rev 8.0
Compensation parts
should be placed as close
as possible to
the Comp
critical
all
pin.
for
components
the
bypass
power
connections
components
distribution
AGnd
including
Vout
Fig. 26a. IRDC3856W demo-board layout
considerations – Top Layer
for
the
and
such
feedback
power
heat
PGnd
as
AGnd
The connection between the OCSet resistor and
the Sw pin should not share any trace with the
connection between the bootstrap capacitor and
the Sw pin. Instead, it is recommended to use a
Kelvin connection of the trace from the OCSet
resistor and the trace from the bootstrap
capacitor at the Sw pin.
In a multilayer PCB use one layer as a power
ground plane and have a control circuit ground
(analog ground), to which all signals are
referenced. The goal is to localize the high
current path to a separate loop that does not
interfere with the more sensitive analog control
function. These two grounds must be connected
together on the PC board layout at a single point.
The Power QFN is a thermally enhanced
package. Based on thermal performance it is
recommended to use at least a 4-layers PCB. To
effectively remove heat from the device the
exposed pad should be connected to the ground
plane using vias. Figure 26 illustrates the
implementation of the layout guidelines outlined
above, on the IRDC3856W 4 layer demoboard.
AGnd
Vin
Vin
Vin
IR3856WMPbF
PGnd
Vout
Vin
PGnd
All bypass caps
should be placed as
close as possible to
their connecting
pins.
PD-97506
Vout
29

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