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BUF04701 датащи(PDF) 19 Page - Texas Instruments

номер детали BUF04701
подробное описание детали  Multi-Channel LCD Gamma Correction Buffer
PDF  30 Pages
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производитель  TI2 [Texas Instruments]
домашняя страница  https://www.ti.com
Logo TI2 - Texas Instruments

BUF04701 датащи(HTML) 19 Page - Texas Instruments

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T
T
-
MAX
A
qJA
(
(
P =
D
(a)SideView
(b)EndView
(c)BottomView
DIE
DIE
Thermal
Pad
BUF07703
BUF06703
BUF05703
www.ti.com
SBOS269C – MARCH 2003 – REVISED APRIL 2010
GENERAL PowerPAD DESIGN
soldering operations. This makes the soldering of
CONSIDERATIONS
vias that have plane connections easier. In this
application, however, low thermal resistance is
The BUF07703 is available in the thermally enhanced
desired for the most efficient heat transfer.
PowerPAD family of packages. These packages are
Therefore,
the
holes
under
the
BUF07703
constructed using a downset leadframe upon which
PowerPAD package must make their connection
the die is mounted; see Figure 42(a) and (b). This
to the internal ground plane with a complete
arrangement results in the lead frame being exposed
connection around the entire circumference of the
as a thermal pad on the underside of the package;
plated-through hole.
see Figure 42(c). Due to this thermal pad having
6. The
top-side
solder
mask
must
leave
the
direct thermal contact with the die, excellent thermal
terminals of the package and the thermal pad
performance is achieved by providing a good thermal
area with its five holes (dual) or nine holes (quad)
path away from the thermal pad.
exposed. The bottom-side solder mask must
The PowerPAD package allows for both assembly
cover the five or nine holes of the thermal pad
and thermal management in one manufacturing
area. This prevents solder from being pulled
operation. During the surface-mount solder operation
away from the thermal pad area during the reflow
(when the leads are being soldered), the thermal pad
process.
can also be soldered to a copper area underneath the
7. Apply solder paste to the exposed thermal pad
package. Through the use of thermal paths within this
area and all of the IC terminals.
copper area, heat can be conducted away from the
8. With these preparatory steps in place, the
package
into
either
a
ground
plane
or
other
BUF07703 IC is simply placed in position and run
heat-dissipating device. Although there are many
through the solder reflow operation as any
ways to properly heatsink the PowerPAD package,
standard surface-mount component. This results
the
following
steps
illustrate
the
recommended
in a part that is properly installed.
approach.
1. Prepare the PCB with a top-side etch pattern,
For a given qJA, the maximum power dissipation is
(see Pin Configurations). There must be etching
calculated by the following formula:
for the leads as well as etch for the thermal pad.
2. Place 18 holes in the area of the thermal pad.
These holes must be 13 mils in diameter. Keep
them small, so that solder wicking through the
Where:
holes is not a problem during reflow.
•
PD = maximum power dissipation (W)
3. Additional vias may be placed anywhere along
•
TMAX = absolute maximum junction temperature
the thermal plane outside of the thermal pad
(+150°C)
area. This helps dissipate the heat generated by
•
TA = free-ambient air temperature (°C)
the BUF07703 IC. These additional vias may be
•
qJA = qJC + qCA
larger than the 13-mil diameter vias directly under
•
qJC = thermal coefficient from junction to case
the thermal pad. They can be larger because
(°C/W)
they are not in the thermal pad area to be
•
qCA = thermal coefficient from case-to-ambient air
soldered, so that wicking is not a problem.
(°C/W)
4. Connect all holes to the internal ground plane.
This lower thermal resistance enables the BUF07703
5. When connecting these holes to the ground
to deliver maximum output currents even at high
plane, do not use the typical web or spoke via
ambient temperatures.
connection methodology. Web connections have
a high thermal resistance connection that is
useful for slowing the heat transfer during
Note:
The thermal pad is electrically isolated from all terminals in the package.
Figure 42. Views of Thermally-Enhanced DGN Package
Copyright © 2003–2010, Texas Instruments Incorporated
19
Product Folder Link(s): BUF07703 BUF06703 BUF05703



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