INFINEON BAS3010B-03W

BAS3010B...
Medium Power AF Schottky Diode
• Forward current: 1 A
• Reverse voltage: 30 V
• Low forward voltage, low reverse current
• For high efficiency DC/DC conversion,
fast switching, protection and
clamping applications
• Pb-free (RoHS compliant) package 1)
• Qualified according AEC Q101
BAS3010B-03W
Type
BAS3010B-03W
Package
SOD323
Configuration
single
Marking
2/ red
Maximum Ratings at TA = 25°C, unless otherwise specified
Parameter
Symbol
Diode reverse voltage2)
VR
30
V
Forward current 2)
IF
1
A
Average rectified forward current (50/60Hz, sinus) I FAV
Repetitive peak forward current
I FRM
Value
Unit
1
3.5
(tp ≤ 1 ms, D ≤ 0.5)
Non-repetitive peak surge forward current
I FSM
10
Junction temperature
Tj
150
Operating temperature range
T op
-65 ... 125
Storage temperature
T stg
-65 ... 150
(t ≤ 10 ms)
°C
1Pb-containing
2
package may be available upon special request
For TA > 25°C the derating of VR and IF has to be considered. Please refer to the attached curves.
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BAS3010B...
Thermal Resistance
Parameter
Symbol
Junction - soldering point 1)
RthJS
Value
Unit
≤ 82
K/W
Electrical Characteristics at TA = 25°C, unless otherwise specified
Parameter
Symbol
Values
min.
typ. max.
DC Characteristics
Reverse current2)
IR
VR = 5 V
-
-
5
VR = 10 V
-
-
10
VR = 30 V
-
-
20
Forward voltage2)
Unit
µA
mV
VF
IF = 1 mA
-
230
280
IF = 10 mA
-
300
350
IF = 100 mA
-
360
420
IF = 500 mA
-
420
480
IF = 1 A
-
480
550
-
33
40
AC Characteristics
Diode capacitance
CT
pF
VR = 5 V, f = 1 MHz
1For
calculation of RthJA please refer to Application Note Thermal Resistance
2Pulsed
test: tp = 300 µs; D = 0.01
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BAS3010B...
Diode capacitance CT = ƒ (VR)
f = 1MHz
Reverse current IR = ƒ (TA)
VR = Parameter
10 -2
120
A
pF
80
IR
CT
10 -3
10 -4
60
10 -5
VR = 30 V
20 V
10 V
5V
40
10 -6
20
0
0
5
10
15
20
V
10 -7
0
30
25
50
75
°C
100
VR
Reverse current IR = ƒ(VR)
Forward Voltage VF = ƒ (TA)
IF = Parameter
TA = Parameter
10 -2
0.6
A
V
10 -3
IF = 1 A
500 mA
100 mA
10 mA
0.5
TA = 125 °C
VF
0.45
IR
150
TA
10 -4
0.4
TA = 85 °C
0.35
10 -5
0.3
0.25
10 -6
0.2
TA = 25 °C
0.15
10 -7
0
5
10
15
20
V
0.1
-50
30
VR
-25
0
25
50
75
100
°C
150
TA
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BAS3010B...
Forward current IF = ƒ (VF)
Permissible Reverse voltage VR = ƒ (TA)
tp = Parameter, Duty cycle < 0.01
Device mounted on PCB with Rth = 160 k/W
0
10
35
A
tp=300µs
V
tp=100ms
IF
V Rmax
10 -1
25
20
10
-2
DC
125 °C
85 °C
25 °C
-40 °C
15
10
10 -3
5
10 -4
0
0.1
0.2
0.3
0.4
V
0
0
0.6
VF
25
50
75
100
°C
150
TA
Forward current IF = ƒ (T S)
1200
mA
IF
800
600
400
200
0
0
15
30
45
60
75
90 105 120 °C
150
TS
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Package SOD323
BAS3010B...
Package Outline
0.9 +0.2
-0.1
+0.2
1.25 -0.1
0 ±0.05
A
1.7 +0.2
-0.1
Cathode
marking
0.45 ±0.15
2.5 ±0.2
2
1
0.3 +0.1
-0.05
+0.05
0.3 -0.2
0.15 +0.1
-0.06
0.25 M A
0.8
1.7
0.8
Foot Print
0.6
Marking Layout (Example)
BAR63-03W
Type code
Cathode marking
Laser marking
Standard Packing
Reel ø180 mm = 3.000 Pieces/Reel
Reel ø330 mm = 10.000 Pieces/Reel
0.2
2
2.9
8
4
Cathode
marking
0.65
1.35
5
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BAS3010B...
Edition 2006-02-01
Published by
Infineon Technologies AG
81726 München, Germany
© Infineon Technologies AG 2007.
All Rights Reserved.
Attention please!
The information given in this dokument shall in no event be regarded as a guarantee
of conditions or characteristics (“Beschaffenheitsgarantie”). With respect to any
examples or hints given herein, any typical values stated herein and/or any information
regarding the application of the device, Infineon Technologies hereby disclaims any
and all warranties and liabilities of any kind, including without limitation warranties of
non-infringement of intellectual property rights of any third party.
Information
For further information on technology, delivery terms and conditions and prices
please contact your nearest Infineon Technologies Office ( www.infineon.com).
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Due to technical requirements components may contain dangerous substances.
For information on the types in question please contact your nearest
Infineon Technologies Office.
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systems with the express written approval of Infineon Technologies, if a failure of
such components can reasonably be expected to cause the failure of that
life-support device or system, or to affect the safety or effectiveness of that
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Life support devices or systems are intended to be implanted in the human body,
or to support and/or maintain and sustain and/or protect human life. If they fail,
it is reasonable to assume that the health of the user or other persons
may be endangered.
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