BAT240...
High Voltage Schottky Diode
•
Rectifier Schottky diode for telecommunication
and industrial applications
•
High reverse voltage: 240 V
•
For power supply applications
•
For clamping and protection in
high voltage applications
•
Pb-free (RoHS compliant) package
1)
•
Qualified according AEC Q101
BAT240A
!
,
,
ESD
(Electrostatic
discharge)
sensitive device, observe handling precaution!
Type
BAT240A
Parameter
Diode reverse voltage
2)
Forward current
2)
Non-repetitive peak surge forward current
(t
≤
10ms)
Total power dissipation
T
S
≤
28°C
Junction temperature
Operating temperature range
Storage temperature
1
Pb-containing
2
For
Package
SOT23
Configuration
half bridge
Symbol
V
R
I
F
I
FSM
P
tot
T
j
T
op
T
stg
Value
240
400
1
400
150
-55 ... 125
-55 ... 150
Marking
4Ms
Unit
V
mA
A
mW
°C
Maximum Ratings
at
T
A
= 25°C, unless otherwise specified
package may be available upon special request
TA > 25 °C the derating of VR and IF has to be considered. Please refer to the attached curves.
1
2007-10-04
BAT240...
Thermal Resistance
Parameter
Junction - soldering point
1)
Symbol
R
thJS
Value
≤
305
Unit
K/W
Electrical Characteristics
at
T
A
= 25°C, unless otherwise specified
Parameter
Symbol
Values
Unit
min.
typ. max.
DC Characteristics
240
-
-
V
Breakdown voltage
V
(BR)
I
(BR)
= 500 µA
Reverse current
V
R
= 100 V
V
R
= 200 V
Forward voltage
I
F
= 10 mA
I
F
= 20 mA
I
F
= 50 mA
I
F
= 100 mA
I
F
= 200 mA
I
F
= 400 mA
V
F
0.25
0.29
0.35
-
-
-
0.325
0.37
0.47
0.58
0.72
0.9
0.36
0.41
0.52
-
-
-
I
R
-
-
1
5
10
-
V
µA
AC Characteristics
Diode capacitance
V
R
= 10 V,
f
= 1 MHz
V
R
= 5 V,
f
= 1 MHz
1
For
C
T
-
-
11
15
15
20
pF
calculation of
R
thJA
please refer to Application Note Thermal Resistance
2
2007-10-04
BAT240...
Permissible Reverse voltage
V
R
=
ƒ
(T
A
)
t
p
= Parameter, Duty cycle < 0.01
Device mounted on PCB with
R
th = 160 k/W
300
450
mA
V
DC
100ms
300µs
Forward current
I
F
=
ƒ
(T
S
)
350
V
Rmax
200
300
I
F
250
150
200
100
150
100
50
50
0
0
0
0
20
40
60
80
100
120
°C
150
15
30
45
60
75
90 105 120
°C
150
T
A
T
S
Permissible Puls Load
R
thJS
=
ƒ
(t
p
)
Permissible Pulse Load
I
Fmax
/
I
FDC
=
ƒ
(t
p
)
10
3
K/W
10
3
-
10
2
I
Fmax
/I
FDC
R
thJS
10
2
10
1
10
0
0.5
0.2
0.1
0.05
0.02
0.01
0.005
D=0
D=0
0.005
0.01
0.02
0.05
0.1
0.2
0.5
10
1
10
-1 -6
10
10
-5
10
-4
10
-3
10
-2
s
10
0
10
0 -6
10
10
-5
10
-4
10
-3
10
-2
s
10
0
t
p
t
p
4
2007-10-04