NCP1406
TYPICAL CHARACTERISTICS
26.0
25.5
25.0
24.5
24.0
100
V
= 25 V
OUT
L1 = 10 mH, Sumida
CMD4D11−100MC
C1 = 10 mF
C2 = 3.3 mF
C3 = 150 pF
90
80
70
60
5.0 V
4.2 V
3.7 V
T
= 25°C
A
Figure 1
V
= 25 V
OUT
2.4 V
L1 = 10 mH, Sumida
CMD4D11−100MC
C1 = 10 mF
C2 = 3.3 mF
C3 = 150 pF
3.7 V
4.2 V
5.0 V
3.0 V
3.0 V
V
IN
= 2.0 V
2.4 V
T
A
= 25°C
Figure 1
V
IN
= 2.0 V
0
5
10
15
20
25
30
0
5
10
15
20
25
30
I , OUTPUT CURRENT (mA)
OUT
I , OUTPUT CURRENT (mA)
OUT
Figure 11. Output Voltage versus Output Current
Figure 12. Efficiency versus Output Current
(VOUT = 25 V, L = 10 ꢀ H)
(VOUT = 25 V, L = 10 ꢀ H)
16.0
15.5
15.0
14.5
14.0
100
90
80
70
60
V
= 15 V
OUT
L1 = 10 mH, Sumida
CMD4D11−100MC
C1 = 10 mF
C2 = 4.7 mF
C3 = 120 pF
5.0 V
4.2 V
3.7 V
3.0 V
T
= 25°C
A
3.7 V
3.0 V
Figure 2
V
= 15 V
OUT
2.4 V
= 2.0 V
L1 = 10 mH, Sumida
CMD4D11−100MC
C1 = 10 mF
C2 = 4.7 mF
C3 = 120 pF
5.0 V
4.2 V
2.4 V
V
IN
V
IN
= 2.0 V
T
A
= 25°C
Figure 2
0
10
20
30
40
50
60
0
10
20
30
40
50
60
I , OUTPUT CURRENT (mA)
OUT
I , OUTPUT CURRENT (mA)
OUT
Figure 13. Output Voltage versus Output Current
Figure 14. Efficiency versus Output Current
(VOUT = 15 V, L = 10 ꢀ H)
(VOUT = 15 V, L = 10 ꢀ H)
9.0
8.5
8.0
7.5
7.0
100
90
80
70
60
V
= 8.0 V
OUT
L1 = 10 mH, Sumida CMD4D11−100MC
C1 = 10 mF
C2 = 4.7 mF
C3 = 20 pF
5.0 V
4.2 V
3.7 V
T
= 25°C
A
4.2 V
5.0 V
3.0 V
2.4 V
Figure 3
3.7 V
V
IN
= 2.0 V
V
= 8.0 V
OUT
L1 = 10 mH, Sumida
CMD4D11−100MC
C1 = 10 mF
2.4 V
3.0 V
C2 = 4.7 mF
C3 = 20 pF
V
= 2.0 V
IN
T
= 25°C
A
Figure 3
0
25
50
75
100
0
25
50
75
100
I , OUTPUT CURRENT (mA)
OUT
I , OUTPUT CURRENT (mA)
OUT
Figure 16. Efficiency versus Output Current
Figure 15. Output Voltage versus Output Current
(VOUT = 8.0 V, L = 10 ꢀ H)
(VOUT = 8.0 V, L = 10 ꢀ H)
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