NCP1422EVB ON Semiconductor, NCP1422EVB Datasheet - Page 12

EVAL BOARD FOR NCP1422

NCP1422EVB

Manufacturer Part Number
NCP1422EVB
Description
EVAL BOARD FOR NCP1422
Manufacturer
ON Semiconductor
Datasheets

Specifications of NCP1422EVB

Design Resources
NCP1422 EVB BOM NCP1422EVB Gerber Files NCP1422EVB Schematic
Main Purpose
DC/DC, Step Up
Outputs And Type
1, Non-Isolated
Voltage - Output
3.3 ~ 5 V
Current - Output
800mA
Voltage - Input
2.5V, 3.6V
Regulator Topology
Boost
Frequency - Switching
1.2MHz
Board Type
Fully Populated
Utilized Ic / Part
NCP1422
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For Use With/related Products
NCP1422
Other names
NCP1422EVBOS
mF in order to achieve the specified ripple level at the
conditions stated. Practically, a capacitor that is one level
larger is used to accommodate factors not taken into
account in the calculations. Therefore, a capacitor value of
22 mF is selected. The NCP1422 is internally compensated
for most applications, but in case additional compensation
Table 1. Suggestions for Passive Components
From the previous calculations, you need at least 18.75
12
10
8
6
4
2
0
1.8
Output Current
Figure 24. Suggested Inductance of V
800 mA
250 mA
2.0
2.2
INPUT VOLTAGE (V)
I
OUT
= 700 mA
2.4
Figure 26. Suggested Capacitance for Output Capacitor
40
35
30
25
20
15
10
5
0
100
Sumida CR43, CR54,CDRH6D28 series
2.6
200
OUT
Sumida CR32 series
2.8
300
OUTPUT CURRENT (mA)
= 3.3 V
http://onsemi.com
Inductors
NCP1422
400
3.0
12
V
OUT−RIPPLE
500
is required, the capacitor C4 can be used as external
compensation adjustment to improve system dynamics.
external parts for NCP1422 in different input voltage and
output current conditions, values of inductance and
capacitance are suggested in Figures 24, 25 and 26.
12
In order to provide an easy way for customers to select
9
6
3
0
2.2
Figure 25. Suggested Inductance of V
600
= 45 mA
2.5
700
2.8
INPUT VOLTAGE (V)
800
100
I
25
33
50
OUT
= 700 mA
3.1
Panasonic ECJ series
Panasonic ECJ series
Kemet TL494 series
Kemet TL494 series
Capacitors
3.4
OUT
3.7
= 5.0 V
4.0

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