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LTM4627EVPBF 数据表(PDF) 18 Page - Linear Technology

部件名 LTM4627EVPBF
功能描述  15A DC/DC 關Module Regulator
PDF  28 Pages
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制造商  LINER [Linear Technology]
网页  http://www.linear.com
标志 LINER - Linear Technology

LTM4627EVPBF 数据表(HTML) 18 Page - Linear Technology

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LTM4627
18
4627f
Figure 7. 1.2VOUT Power Loss
Figure 8. 3.3VOUT Power Loss
0
0.5
1.5
4627 F07
2.0
3.0
2.5
1.0
0 12 3 4 5 6
8
7
9 10 11 12 13 14 15
OUTPUT CURRENT (A)
5VIN TO 1.2VOUT POWER LOSS
12VIN TO 1.2VOUT POWER LOSS
0
1
3
4627 F08
4
6
5
2
0 12 3 4 5 6 7 8 9 10 11 12 13 14 15
OUTPUT CURRENT (A)
5VIN TO 3.3VOUT POWER LOSS
12VIN TO 3.3VOUT POWER LOSS
APPLICATIONS INFORMATION
Figure 10. 5VIN to 1.2VOUT with Heat Sink
0
2
6
4627 F10
8
16
14
12
10
4
0 LFM
200 LFM
400 LFM
40
50
60
70
80
90 100 110 120 130
AMBIENT TEMPERATURE (°C)
Figure 9. 5VIN to 1.2VOUT No Heat Sink
0
2
6
4627 F09
8
16
14
12
10
4
0 LFM
200 LFM
400 LFM
50
40
60
70
80
90 100 110 120 130
AMBIENT TEMPERATURE (°C)
nal module loss as ambient temperature is increased.
The monitored junction temperature of 120°C minus
the ambient operating temperature specifies how much
module temperature rise can be allowed. As an example in
Figure 11 the load current is derated to ~12A at ~80°C with
no air or heat sink and the power loss for the 12V to 1.2V
at 12A output is about 2.8W. The 2.8W loss is calculated
with the ~2.35W room temperature loss from the 12V to
1.2V power loss curve at 12A, and the 1.2 multiplying
factor at 80°C ambient. If the 80°C ambient temperature
is subtracted from the 120°C junction temperature, then
the difference of 40°C divided by 2.8W equals a 14°C/W
θJA thermal resistance. Table 2 specifies a 13°C/W value
which is very close. Table 2 and Table 3 provide equivalent
thermal resistances for 1.2V and 3.3V outputs with and
without airflow and heat sinking. The derived thermal re-
sistances in Tables 2 and 3 for the various conditions can
be multiplied by the calculated power loss as a function
of ambient temperature to derive temperature rise above
ambient, thus maximum junction temperature. Room
temperature power loss can be derived from the efficiency
curves in the Typical Performance Characteristics section
and adjusted with the above ambient temperature multipli-
cative factors. The printed circuit board is a 1.6mm thick
four layer board with two ounce copper for the two outer
layers and one ounce copper for the two inner layers. The
PCB dimensions are 95mm
× 76mm. The BGA heat sinks
are listed in Table 4.



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