MIC5209-2.5BS Micrel Inc, MIC5209-2.5BS Datasheet - Page 11

IC REG LDO 500MA 2.5V LN SOT223

MIC5209-2.5BS

Manufacturer Part Number
MIC5209-2.5BS
Description
IC REG LDO 500MA 2.5V LN SOT223
Manufacturer
Micrel Inc
Datasheet

Specifications of MIC5209-2.5BS

Mounting Type
Surface Mount
Regulator Topology
Positive Fixed
Voltage - Output
2.5V
Voltage - Input
Up to 16V
Voltage - Dropout (typical)
0.35V @ 500mA
Number Of Regulators
1
Current - Output
500mA
Operating Temperature
-40°C ~ 125°C
Package / Case
SOT-223 (3 leads + Tab), SC-73, TO-261
No. Of Pins
3
Voltage Regulator Type
LDO Linear
Output Current Max
500mA
Peak Reflow Compatible (260 C)
No
Current Rating
500mA
Output Voltage Max
2.5V
Leaded Process Compatible
No
Rohs Compliant
No
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Current - Limit (min)
-
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant, Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MIC5209-2.5BS
Manufacturer:
MIC
Quantity:
4 245
Part Number:
MIC5209-2.5BS
Manufacturer:
MICREL/麦瑞
Quantity:
20 000
Considering worst case tolerances, the power dissipation
could be as high as:
Using the maximum junction temperature of 125°C and a θ
of 8°C/W for the SOT-223, 25°C/W for the SO-8, or 2°C/W
for the TO-263 package, the following worst-case heat-sink
thermal resistance (θ
Table 2 and Figure 6 show that the Slot-1 power supply ap-
plication can be implemented with a minimum footprint layout.
June 2006
T
T
T
T
θ
θ
θ
θ
A
A
A
A
JA
SA
SA
SA
SA
SA
SA
SA
SA
SA
Table 2. Maximum Allowable Thermal Resistance
(limit)
(limit)
SOT-223
SOT-223
SOT-223
SO-8
SO-8
SO-8
TO-263-5
TO-263-5
TO-263-5
(V
[(3.6V – 2.375V) × 320mA] + (3.6V × 4mA)
P
θ
θ
SA
SA
SA
D
JA
IN(max)
= 407mW
= θ
= θ
=
JA
JA
JA
T
T
– V
J(max)
J(max
J(max
= θ
= θ
209°C/W
209°C/W
201°C/W
201°C/W
201°C/W
184°C/W
184°C/W
184°C/W
207°C/W
207°C/W
207°C/W
40°C
40°C
40°C
OUT(max)
JC
P
P
D
D
D
SA
) requirements are:
T
T
A
A
A
) × I
184°C/W
184°C/W
176°C/W
176°C/W
176°C/W
159°C/W
159°C/W
159°C/W
182°C/W
182°C/W
182°C/W
50°C
50°C
50°C
OUT
+ V
160°C/W
160°C/W
152°C/W
152°C/W
152°C/W
135°C/W
135°C/W
135°C/W
158°C/W
158°C/W
158°C/W
IN(max)
60°C
60°C
60°C
× I
GND
123°C/W
123°C/W
121°C/W
121°C/W
121°C/W
115°C/W
115°C/W
115°C/W
98°C/W
98°C/W
98°C/W
75°C
75°C
75°C
JC
11
Figure 6 shows the necessary copper pad area to obtain
specifi c heat sink thermal resistance (θ
values in Table 2 require much less than 500mm
according to Figure 6, and can easily be accomplished with
the minimum footprint.
Figure 6. PCB Heat Sink Thermal Resistance
70
60
50
40
30
20
10
0
0
COPPER HEAT SINK AREA (mm
COPPER HEAT SINK AREA (mm
COPPER HEAT SINK AREA (mm )
2000
4000
SA
) values. The θ
6000
2
2
M9999-060906
2
of copper,
SA

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