Datasheet

TYPICAL CHARACTERISTICS
(1) (2)
CHARACTERISTIC DATA ( V
I
= 12 V)
V
O
− Output Voltage Ripple − V
PP
(mV)
I
O
− Output Current − A
0
0
10
20
40
50
30
2 4 6 8 10 12 14 16
V
O
= 1.2 V
V
O
= 5 V
V
O
= 3.3 V
V
O
= 1.8 V
V
O
= 2.5 V
η − Efficiency − %
I
O
− Output Current − A
0
90
2
95
70
65
60
75
85
80
4 6 8
3.3 V
5 V
2.5 V
1.8 V
1.2 V
10 12 14 16
0
0
2
1
4
2
3
6
5
4 6 10 12 14 168
P
D
− OuPower Dissipation − W
I
O
− Output Current − A
V
O
= 1.2 V
V
O
= 5 V
V
O
= 3.3 V
V
O
= 1.8 V
V
O
= 2.5 V
T
A
− Ambient Temperature − °C
I
O
− Output Current − A
40
30
20
70
60
50
90
80
0 161284
V
O
= 3.3 V
Nat Conv
100 LFM
200 LFM
400 LFM
T
A
− Ambient Temperature − °C
I
O
− Output Current − A
20
30
40
50
60
70
80
90
0 4 12 168
Nat Conv
100 LFM
200 LFM
400 LFM
V
O
= 1.2 V
20
30
40
50
60
70
80
90
0 4 12 168
T
A
− AMbient Temperature − °C
I
O
− Output Current − A
V
O
= 5.0 V
Nat Conv
100 LFM
200 LFM
400 LFM
PTH08T220W , PTH08T221W
www.ti.com
................................................................................................................................................... SLTS252K NOVEMBER 2005 REVISED JUNE 2009
EFFICIENCY OUTPUT RIPPLE POWER DISSIPATION
vs vs vs
LOAD CURRENT LOAD CURRENT LOAD CURRENT
Figure 1. Figure 2. Figure 3.
AMBIENT TEMPERATURE AMBIENT TEMPERATURE AMBIENT TEMPERATURE
vs vs vs
LOAD CURRENT LOAD CURRENT LOAD CURRENT
Figure 4. Safe Operating Area Figure 5. Safe Operating Area Figure 6. Safe Operating Area
(1) The electrical characteristic data has been developed from actual products tested at 25C. This data is considered typical for the
converter. Applies to Figure 1 , Figure 2 , and Figure 3 .
(2) The temperature derating curves represent the conditions at which internal components are at or below the manufacturer ' s maximum
operating temperatures. Derating limits apply to modules soldered directly to a 100 mm x 100 mm double-sided PCB with 2 oz. copper.
For surface mount packages (AS and AZ suffix), multiple vias must be utilized. Please refer to the mechanical specification for more
information. Applies to Figure 5 .
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