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CMPWR330SAT Datasheet(PDF) 8 Page - California Micro Devices Corp

Part # CMPWR330SAT
Description  400mA SMARTOR Dual Regulator with V switch?
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Manufacturer  CALMIRCO [California Micro Devices Corp]
Direct Link  http://www.calmicro.com
Logo CALMIRCO - California Micro Devices Corp

CMPWR330SAT Datasheet(HTML) 8 Page - California Micro Devices Corp

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CALIFORNIA MICRO DEVICES
©2001 California Micro Devices Corp. All rights reserved. Smart OR™ is a trademark of California Micro Devices.
3/6/2001
215 Topaz Street, Milpitas, California 95035

Tel: (408) 263-3214
Fax: (408) 263-7846
www.calmicro.com
8
CMPWR330
Typical Thermal Characteristics
The overall junction to ambient thermal resistance (
θ
JA)
for device power dissipation (P
D) consists primarily of
two paths in series. The first path is the junction to the
case (
θ
JC) which is defined by the package style, and the
second path is case to ambient (
θ
CA) thermal resistance
which is dependent on board layout. The final operating
junction temperature for any set of conditions can be
estimated by the following thermal equation:
T
JUNC = TAMB + PD JC ) + PD CA )
= T
AMB + PD JA)
The CMPWR330 uses a thermally enhanced package
where all the GND pins (5 through 8) are integral to the
leadframe. When this package is mounted on a double
sided printed circuit board with two square inches of
copper allocated for “heat spreading”, the resulting
θ
JA is
50°C/W.
Based on a maximum power dissipation of 0.7W
(1.75V x 0.4A) with an ambient of 70°C the resulting
junction temperature will be:
T
JUNC = TAMB + PD JA )
= 70°C + 0.7W (50°C/W)
= 70°C + 35°C = 105°C
Thermal characteristics were measured using a double
sided board with two square inches of copper area
connected to the GND pins for “heat spreading”.
Measurements showing performance up to junction
temperature of 125°C were performed under light load
conditions (5mA). This allows the ambient temperature
to be representative of the internal junction temperature.
Note: The use of multi-layer board construction with
separate ground and power planes will further enhance
the overall thermal performance. In the event of no
copper area being dedicated for heat spreading, a multi-
layer board construction, using only the minimum size
pad layout, will typically provide the CMPWR330 with an
overall
θ
JA of 70°C/W which allows up to 780mW to be
safely dissipated.
Figure 23. V
OUT Variation with TAMB (400mA Load)T
Figure 25. V
AUX Switch Resistance vs TAMB
Figure 24. Select/DeselectThresholdVariation withT
JUNC
20
30
40
50
60
70
Temperature (
˚C)
3.28
3.29
3.30
3.31
3.32
25
50
75
100
125
150
Temperature (
˚C)
VSELECT
VDESELECT
4.20
4.25
4.30
4.35
4.40
4.45
4.50
4.55
20
30
40
50
60
70
Temperature (
˚C)
0.25
0.27
0.29
0.31
0.35
0.33
0.37


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