NCP3127CRAGEVB ON Semiconductor, NCP3127CRAGEVB Datasheet - Page 9

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NCP3127CRAGEVB

Manufacturer Part Number
NCP3127CRAGEVB
Description
BOARD EVALUATION NCP3127 CERAMIC
Manufacturer
ON Semiconductor
Series
-r
Datasheet

Specifications of NCP3127CRAGEVB

Design Resources
NCP3127 Schematic NCP3127 BOM
Main Purpose
DC/DC, Step Down
Outputs And Type
1, Non-Isolated
Power - Output
-
Voltage - Output
Adj down to 0.8V
Current - Output
2A
Voltage - Input
4.5 ~ 13.2 V
Regulator Topology
Buck
Frequency - Switching
350kHz
Board Type
Fully Populated
Utilized Ic / Part
NCP3127
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
NCP3127CRAGEVBOS
MOSFET
Design Procedure
important to collect as much information as possible about
the behavior of the input and output before starting the
design.
tool available online under the design tools section of the
NCP3127 product page. The tool allows you to capture your
design point and optimize the performance of your regulator
based on your design criteria.
are LC filtered to produce a lower DC output voltage V
The output voltage can be changed by modifying the on time
relative to the switching period T or switching frequency.
The ratio of high side switch on time to the switching period
is called duty ratio D. Duty ratio can also be calculated using
Low Side
PHASE
VOCTH
Table 4. DESIGN PARAMETERS
Current
Input voltage
Output voltage
Input ripple voltage
Output ripple voltage
Output current rating
Operating frequency
When starting the design of a buck regulator, it is
ON Semiconductor has a Microsoft Excel® based design
The buck converter produces input voltage V
Drive
BG
0 V
Design Parameter
+
Figure 20. Current Limit Trip
VOCTH
(V
(V
(V
(V
(I
(F
OUT
SW
IN
OUT
INRIPPLE
OUTRIPPLE
)
)
)
BG
)
)
)
10.8 V to 13.2 V
Example Value
350 kHz
300 mV
40 mV
IN
3.3 V
2 A
APPLICATION SECTION
pulses that
Current
Flow
http://onsemi.com
OUT
.
9
V
the High Side Switch Voltage Drop V
D
F
T
T
T
V
V
V
V
Inductor Selection
rule of thumb for the design where the percentage of ripple
current in the inductor should be between 10% and 40%.
When using ceramic output capacitors, the ripple current can
be greater because the ESR of the output capacitor is smaller,
thus a user might select a higher ripple current. However,
F
D +
D +
SW
OFF
ON
SW
OUT
HSD
IN
LSD
OUT
When selecting an inductor, the designer can employ a
+ 1
T
V
, V
T
ON
IN
T
V
IN
* V
OUT
and (1 * D) +
, the Low Side Switch Voltage Drop V
HSD
) V
) V
= Duty cycle
= Switching frequency
= Switching period
= High side switch off time
= High side switch on time
= High side switch voltage drop
= Input voltage
= Low side switch voltage drop
= Output voltage
LSD
LSD
T
[ D +
OFF
T
V
V
OUT
IN
HSD
³ 27.5% +
.
LSD
(eq. 2)
(eq. 3)
(eq. 4)
3.3 V
12 V
, and

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