NCP3163PWG ON Semiconductor, NCP3163PWG Datasheet - Page 11

IC REG SW DC/DC 3.4A 16SOIC

NCP3163PWG

Manufacturer Part Number
NCP3163PWG
Description
IC REG SW DC/DC 3.4A 16SOIC
Manufacturer
ON Semiconductor
Type
Step-Down (Buck), Step-Up (Boost), Invertingr
Datasheet

Specifications of NCP3163PWG

Internal Switch(s)
Yes
Synchronous Rectifier
No
Number Of Outputs
1
Voltage - Output
Adj to 40V
Current - Output
3.4A
Frequency - Switching
50kHz ~ 300kHz
Voltage - Input
2.5 ~ 40 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
16-SOIC (7.5mm Width) Exposed Pad, 16-eSOIC, 16-HSOIC
Output Voltage
1 V to 40 V
Output Current
3.4 A
Input Voltage
2.5 V to 40 V
Switching Frequency
50 KHz to 1 MHz
Operating Temperature Range
- 40 C to + 85 C
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
NCP3163PWG
Manufacturer:
ON
Quantity:
141
The following Converter Characteristics must be chosen:
NOTES: 1. V
NOTES:
NOTES:
NOTES: 3.
(See Notes 1,2,3)
Calculation
V
V
I pk (Switch)
ripple(pp)
ripple(pp)
I L(avg)
R SC
V out
t on
t off
t on
L
C T
V
2. V
3. The calculated t
I
V
out
out
D
in
I
L
p −
operating input voltage.
sat
F
Nominal operating input voltage.
Desired output voltage.
Desired output current.
Desired peak−to−peak inductor ripple current. For maximum output current it is suggested that
than 10% of the average inductor current I
threshold set by R
proportionally reduce converter output current capability.
Maximum output switch frequency.
Desired peak−to−peak output ripple voltage. For best performance the ripple voltage should be kept to a low value
since it will directly affect line and load regulation. Capacitor C
electrolytic designed for switching regulator applications.
− Output rectifier forward voltage drop. Typical value for 1N5822 Schottky barrier rectifier is 0.5 V.
− Saturation voltage of the output switch, refer to Figures 10 and 11.
32.143 · 10 *6
DI L
f
V
V
on
in
in
ƒ
/t
V
I L(avg) )
* V sat * V out
8
off
ref
Step−Down
* V sat * V out
V out ) V
I pk (Switch)
ƒ
SC
t on
t
1
must not exceed the minimum guaranteed oscillator charge to discharge ratio of 8, at the minimum
off
* 20 @ 10 *12
C O
DI
. If the design goal is to use a minimum inductance value, let
t on
t
0.25
R 2
R 1
I out
off
L
) 1
2
) 1
) (ESR) 2
DI
F
2
L
t on
Figure 22. Design Equations
http://onsemi.com
L(avg)
32.143 · 10 *6
. This will help prevent I
f
11
V out ) V
V
I out
V
I L(avg) )
ƒ
ref
in
V
[
I pk (Switch)
Step−Up
in
* 20 @ 10 *12
DI
t on
t
* V sat
off
t on I out
t on
t
R 2
R 1
0.25
V sat
off
O
L
t on
t
C
off
should be a low equivalent series resistance (ESR)
F
) 1
O
) 1
) 1
V
DI
2
in
L
t on
pk (Switch)
from reaching the current limit
D
I
32.143 · 10 *6
L
= 2(I
L(avg)
f
Voltage−Inverting
I out
V
V
D
). This will
I L(avg) )
ƒ
ref
I
in
L
|V out | ) V
V
[
I pk (Switch)
be chosen to be less
in
* 20 @ 10 *12
* V sat
DI
t on
t
off
t on
t
R 2
R 1
t on I out
off
0.25
* V sat
L
t on
t
off
C
) 1
O
) 1
) 1
DI
2
F
L
t on

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