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LP38512 Datasheet, PDF (12/16 Pages) Texas Instruments – 1.5A Fast-Transient Response Low-Dropout Linear Voltage Regulator with Error Flag
FIGURE 2. ERROR Flag Operation, biased from VIN
20183034
POWER DISSIPATION/HEATSINKING
A heatsink may be required depending on the maximum pow-
er dissipation (PD(MAX)), maximum ambient temperature
(TA(MAX)) of the application, and the thermal resistance (θJA)
of the package. Under all possible conditions, the junction
temperature (TJ) must be within the range specified in the
Operating Ratings. The total power dissipation of the device
is given by:
PD = ( (VIN−VOUT) x IOUT) + (VIN x IGND)
(1)
where IGND is the operating ground current of the device
(specified under Electrical Characteristics).
The maximum allowable junction temperature rise (ΔTJ) de-
pends on the maximum expected ambient temperature (TA
(MAX)) of the application, and the maximum allowable junction
temperature (TJ(MAX)):
ΔTJ = TJ(MAX)− TA(MAX)
(2)
The maximum allowable value for junction to ambient Ther-
mal Resistance, θJA, can be calculated using the formula:
θJA = ΔTJ / PD(MAX)
(3)
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FIGURE 3. θJA vs Copper (1 Ounce) Area for TO-263
package
As shown in the figure, increasing the copper area beyond 1
square inch produces very little improvement. The minimum
value for θJA for the TO-263 package mounted to a two-layer
PCB is 32°C/W.
Figure 4 shows the maximum allowable power dissipation for
TO-263 packages for different ambient temperatures, assum-
ing θJA is 35°C/W and the maximum junction temperature is
125°C.
HEATSINKING TO-263 PACKAGE
The TO-263 and the TO-263 THIN packages use the copper
plane on the PCB as a heatsink. The tab, or DAP, of these
packages are soldered to the copper plane for heat sinking.
Figure 3 shows a curve for the θJA of TO-263 package for
different copper area sizes, using a typical PCB with 1 ounce
copper and no solder mask over the copper area for heat
sinking.
20183036
FIGURE 4. Maximum Power Dissipation vs Ambient
Temperature for TO-263 Package
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