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ACE527H датащи(PDF) 12 Page - ACE Technology Co., LTD.

номер детали ACE527H
подробное описание детали  Low Noise, High PSRR LDO Regulator
PDF  16 Pages
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производитель  ACE [ACE Technology Co., LTD.]
домашняя страница  http://www.ace-ele.com
Logo ACE - ACE Technology Co., LTD.

ACE527H датащи(HTML) 12 Page - ACE Technology Co., LTD.

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ACE527H
Low Noise, High PSRR LDORegulator
VER 1.3
12
For DFN1.6x1.6-
6L package, the thermal resistance θ
JA is 150 ℃/W on the standard JEDEC 51-3 single
layer thermal test board. The maximum power dissipation at TA= 25℃ can be calculated as:
Because of the small size of the TSOT23-5 package, it is very important to use a good thermal PC board
layout to maximize the allowable power dissipation. The thermal path for the heat generated by the IC is
from the die to the copper lead frame, through the package (especially the ground lead), to the PCB board
cooper. The PC board copper. The PCB board copper is the heat sink. The footprint copper pads should be
as wide as possible and expand out to larger copper areas to spread and dissipate the heat to the
surrounding ambient. Feed through via to inner or backside copper layer are also useful in improving the
overall thermal performance of the LDO regulator. Other heat sources on the board, not related to the LDO
regulator, must also be considered when designing a PC board layout because they will affect overall
temperature rise and the maximum allowable power dissipation. The following table lists thermal resistance
for several different board sizes and copper areas. All measurements were taken in still air on 3/32" FR-4
board with the device mounted on topside.
Table 1. Measured Thermal Resistance (2-Layer Board)
Copper Area(mm2)
Board Area (mm2)
θ
JA (℃/W)
Top Side
Back Side
2500
2500
2500, 2-Layer
125
1000
2500
2500, 2-Layer
125
225
2500
2500, 2-Layer
130
100
2500
2500, 2-Layer
135
50
2500
2500, 2-Layer
150
Layout Considerations
Careful PCB Layout is necessary for better performance. The following guidelines should be followed for
good PCB layout.
Place the input and output capacitors as close as possible to the IC.
Keep VIN and VOUT trace as possible as short and wide.
Use a large PCB ground plane for maximum thermal dissipation.



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