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 BAV199...
Silicon Low Leakage Diode * Low-leakage applications * Medium speed switching times * Series pair configuration
BAV199 BAV199F
3
D1
D2
1
2
Type BAV199 BAV199F*
* Preliminary
Package SOT23 TSFP-3
Configuration series series
Marking JYs JYs
Maximum Ratings at TA = 25C, unless otherwise specified Parameter Symbol VR VRM IF I FSM Value Unit
Diode reverse voltage Peak reverse voltage Forward current Non-repetitive peak surge forward current
t = 1 s t=1s
80 85 200 4.5 0.5
V mA A
Total power dissipation BAV199, TS 31C BAV199F, TS tbd Junction temperature Storage temperature
Ptot
mW 330 250
Tj T stg
150 -65 ... 150
C
1
Mar-10-2004
BAV199...
Thermal Resistance Parameter
Symbol RthJS
Value 360 tbd
Unit
Junction - soldering point1) BAV199 BAV199F
K/W
Electrical Characteristics at TA = 25C, unless otherwise specified Symbol Values Unit Parameter min. typ. max. DC Characteristics 85 V Breakdown voltage V(BR) I(BR) = 100 A Reverse current VR = 75 V VR = 75 V, TA = 150 C Forward voltage IF = 1 mA IF = 10 mA IF = 50 mA IF = 150 mA AC Characteristics Diode capacitance VR = 0 V, f = 1 MHz Reverse recovery time IF = 10 mA, IR = 10 mA, measured at IR = 1mA , RL = 100 Test circuit for reverse recovery time
D.U.T.
IR VF CT t rr 2 0.6 900 1000 1100 1250 1.5 5 80
nA
mV
pF s
Pulse generator: tp = 10s, D = 0.05, tr = 0.6ns, Ri = 50
Oscillograph
F
Oscillograph: R = 50, tr = 0.35ns, C 1pF
EHN00019
1For
calculation of RthJA please refer to Application Note Thermal Resistance
2
Mar-10-2004
BAV199...
Reverse current IR = (TA) VR = 70V
10 2
BAV 199 EHB00085
Forward Voltage VF = (TA) IF = Parameter
1.5 V
max
BAV 199 EHB00088
R
nA 10 1
VF
1.0
10 0
F = 150 mA
50 mA 10 mA
10 -1
typ
1 mA 0.1 mA 0.5
10-2
10-3
0
50
100 TA
C
150
0
0
50
100 TA
C
150
Forward current IF = (VF) TA = 25C
150
BAV 199 EHB00086
Forward current IF = (T S) BAV199
250
mA
F
mA
200 175
IF
100
150 125 100
typ
max
50
75 50 25
0
0
0.5
1.0
V VF
1.5
0 0
15
30
45
60
75
90 105 120 C
TS
150
3
Mar-10-2004
BAV199...
Permissible Puls Load RthJS = (tp) Permissible Pulse Load IFmax / I FDC = (t p)
10 3 10 2
10 2
I Fmax/IFDC
-
10 1
10 0
D = 0,5 0,2 0,1 0,05 0,02 0,01 0,005 0
10 1
D=0 0.005 0.01 0.02 0.05 0.1 0.2 0.5
RthJS
10 -1 -7 10
10
-6
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
TP
TP
4
Mar-10-2004


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