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Электронный компонент: BAW156

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Mar-10-2004
1
BAW156...
Silicon Low Leakage Diode
Low-leakage applications
Medium speed switching times
Common anode configuration
BAW156
3
1
D 2
2
D 1
Type
Package
Configuration
Marking
BAW156
SOT23
common anode
JZs
Maximum Ratings
at T
A
= 25C, unless otherwise specified
Parameter
Symbol
Value
Unit
Diode reverse voltage
V
R
80
V
Peak reverse voltage
V
RM
85
Forward current
I
F
200
mA
Non-repetitive peak surge forward current
t
= 1 s
t
= 1 s
I
FSM
4.5
0.5
A
Total power dissipation
T
s
31C
P
tot
250
mW
Junction temperature
T
j
150
C
Storage temperature
T
stg
-65 ... 150
Thermal Resistance
Parameter
Symbol
Value
Unit
Junction - soldering point
1)
BAW156
R
thJS
360
K/W
1
For calculation of R
thJA
please refer to Application Note Thermal Resistance
Mar-10-2004
2
BAW156...
Electrical Characteristics at T
A
= 25C, unless otherwise specified
Parameter
Symbol
Values
Unit
min.
typ.
max.
DC Characteristics
Breakdown voltage
I
(BR)
= 100 A
V
(BR)
85
-
-
V
Reverse current
V
R
= 75 V
V
R
= 75 V, T
A
= 150 C
I
R
-
-
-
-
5
80
nA
Forward voltage
I
F
= 1 mA
I
F
= 10 mA
I
F
= 50 mA
I
F
= 150 mA
V
F
-
-
-
-
-
-
-
-
900
1000
1100
1250
mV
AC Characteristics
Diode capacitance
V
R
= 0 V, f = 1 MHz
C
T
-
2
-
pF
Reverse recovery time
I
F
= 10 mA, I
R
= 10 mA, measured at I
R
= 1mA,
R
L
= 100
t
rr
-
0.6
1.5
s
Test circuit for reverse recovery time
EHN00019
F
D.U.T.
Oscillograph
Pulse generator: t
p
= 10
s, D = 0.05, t
r
= 0.6ns,
R
i
= 50
Oscillograph: R = 50
, t
r
= 0.35ns, C
1pF
Mar-10-2004
3
BAW156...
Reverse current I
R
=
(T
A
)
V
R
= 70V
10
10
10
10
BAW 156
EHB00106
nA
10
10
2
1
0
-1
-2
-3
max
typ
R
0
C
T
50
100
A
150
Forward Voltage V
F
=
(T
A
)
I
F
= Parameter
0
0.5
1.0
1.5
0
50
100
150
BAW 156
EHB00109
V
T
A
V
F
C
150 mA
50 mA
10 mA
1 mA
0.1 mA
F
=
Forward current I
F
=
(V
F
)
T
A
= 25C
0
0
EHB00107
BAW 156
0.5
1.0
V
1.5
50
100
mA
150
F
F
V
max
typ
Forward current I
F
=
(T
S
)
BAW156
0
15
30
45
60
75
90 105 120 C
150
TS
0
25
50
75
100
125
150
175
200
mA
250
IF
Mar-10-2004
4
BAW156...
Permissible Puls Load R
thJS
=
(t
p
)
10
-7
10
-6
10
-5
10
-4
10
-3
10
-2
10
0
s
T
P
-1
10
0
10
1
10
2
10
3
10
R
thJS
D = 0,5
0,2
0,1
0,05
0,02
0,01
0,005
0
Permissible Pulse Load
I
Fmax
/ I
FDC
=
(t
p
)
10
-6
10
-5
10
-4
10
-3
10
-2
10
0
s
T
P
0
10
1
10
2
10
-
I
Fmax
/
I
FDC
D = 0
0.005
0.01
0.02
0.05
0.1
0.2
0.5