BAS40.../BAS140W
Silicon Schottky Diode • General-purpose diode for high-speed switching • Circuit protection • Voltage clamping • High-level detecting and mixing
BAS140W BAS40-02L
BAS40
3
BAS40-04
3
BAS40-05 BAS40-05W
3
BAS40-06 BAS40-06W
3
1
2
D1
D2
D1
D2
D1
D2
1
2
1
2
1
2
1
2
BAS40-07 BAS40-07W
4 3
D1 D2
1
2
ESD: Electrostatic discharge sensitive device, observe handling precaution!
Type BAS140W BAS40 BAS40-02L* BAS40-04 BAS40-05 BAS40-05W BAS40-06 BAS40-06W BAS40-07 BAS40-07W Package SOD323 SOT23 TSLP-2-1 SOT23 SOT23 SOT323 SOT23 SOT323 SOT143 SOT343 Configuration single single single, leadless series common cathode common cathode common anode common anode parallel pair parallel pair LS(nH) 1.8 1.8 0.4 1.8 1.8 1.4 1.8 1.4 2 1.8 Marking white 4 43s FF 44s 45s 45s 46s 46s 47s 47s
*Preliminary
1
Jan-16-2004
BAS40.../BAS140W
Maximum Ratings at TA = 25°C, unless otherwise specified Parameter Diode reverse voltage Forward current Non-repetitive peak surge forward current t ≤ 10ms Total power dissipation BAS140W, TS ≤ 113°C BAS40, BAS40-07, TS ≤ 81°C BAS40-02L, TS ≤ 127°C BAS40-04, BAS40-06, TS ≤ 56°C BAS40-06W, TS ≤ 106°C BAS40-05, TS ≤ 31°C BAS40-05W, TS ≤ 98°C BAS40-07W, TS ≤ 118°C Junction temperature Operating temperature range Storage temperature Thermal Resistance Parameter Junction - soldering point 1) BAS140W BAS40, BAS40-07 BAS40-02L BAS40-04, BAS40-06 BAS40-06W BAS40-05 BAS40-05W BAS40-07W
1For
Symbol VR IF IFSM Ptot
Value 40 120 200
Unit V mA
mW 250 250 250 250 250 250 250 250
Tj Top Tstg Symbol
RthJS
150 -55 ... 125 -55 ... 150
°C
Value
≤ 150 ≤ 275 ≤ 90 ≤ 375 ≤ 175 ≤ 475 ≤ 205 ≤ 125
Unit K/W
calculation of RthJA please refer to Application Note Thermal Resistance
2
Jan-16-2004
BAS40.../BAS140W
Electrical Characteristics at TA = 25°C, unless otherwise specified Parameter DC Characteristics Breakdown voltage
I (BR) = 10 µA V(BR) IR VF
Symbol min. 40 -
Values typ. max. 1
Unit
V µA mV
Reverse current
VR = 30 V
Forward voltage
I F = 1 mA I F = 10 mA I F = 40 mA
250 350 600
∆ VF
310 450 720 -
380 500 1000 20
Forward voltage matching1)
I F = 10 mA
-
AC Characteristics Diode capacitance VR = 0 , f = 1 MHz Differential forward resistance IF = 10 mA, f = 10 kHz Charge carrier life time IF = 25 mA
1∆V F
CT RF τ rr
-
3 10 -
5 100
pF Ω ps
is the difference between lowest and highest VF in a multiple diode component.
3
Jan-16-2004
BAS40.../BAS140W
Diode capacitance CT = ƒ (VR) f = 1MHz
BAS 40... EHB00040
Forward resistance rf = ƒ (I F) f = 10 kHz
10 3 rf Ω
BAS 40... EHB00041
5 CT pF 4
10 2
3
2
10 1
1
0
0
10
20
V VR
30
10 3 0.1
1
10
mA 100
ΙF
Reverse current IR = ƒ(VR) TA = Parameter
BAS 40... EHB00039
Forward current IF = ƒ (VF) TA = Parameter
10 2
BAS 40... EHB00038
10 3
ΙR
µA 10 2 TA = 150 C
ΙF
mA 10 1
10 1 85 C 10 0
10 0
TA = -40 ˚C 25 ˚C 85 ˚C 150 ˚C
10 -1
10
-1
25 C 10 -2 0 10 20 30 V VR 40
10-2 0.0
0.5
1.0
V VF
1.5
4
Jan-16-2004
BAS40.../BAS140W
Forward current IF = ƒ (T S) BAS140W
140
mA
Forward current IF = ƒ (T S) BAS40, BAS40-07
140
mA
100
100
IF
80
IF
80 60 60 40 40 20 20 0 0 90 105 120 °C 0 0
15
30
45
60
75
150
15
30
45
60
75
90 105 120 °C
150
TS
TS
Forward current IF = ƒ (T S) BAS40-02L
140
mA
Forward current IF = ƒ (T S) BAS40-04, BAS40-06
140
mA
100
100
IF
80
IF
80 60 60 40 40 20 20 0 0 90 105 120 °C 0 0
15
30
45
60
75
150
15
30
45
60
75
90 105 120 °C
150
TS
TS
5
Jan-16-2004
BAS40.../BAS140W
Forward current IF = ƒ (T S) BAS40-06W
140
mA
Forward current IF = ƒ (T S) BAS40-05
140
mA
100
100
IF
80
IF
80 60 60 40 40 20 20 0 0 90 105 120 °C 0 0
15
30
45
60
75
150
15
30
45
60
75
90 105 120 °C
150
TS
TS
Forward current IF = ƒ (T S) BAS40-05W
140
mA
Forward current IF = ƒ (T S) BAS40-07W
140
mA
100
100
IF
80
IF
80 60 60 40 40 20 20 0 0 90 105 120 °C 0 0
15
30
45
60
75
150
15
30
45
60
75
90 105 120 °C
150
TS
TS
6
Jan-16-2004
BAS40.../BAS140W
Permissible Puls Load RthJS = ƒ (tp) BAS140W Permissible Pulse Load IFmax / I FDC = ƒ (t p) BAS140W
5 K/W
BAS 140W EHD07165
R thJS
Ι F max Ι F DC
10 2 5
BAS 140W
EHD07166
tp tp D= T T
10 2 5 D= 0.5 0.2 0.1 0.05 0.02 0.01 0.005 0 tp tp D= T 10 0 10 -6 10
-5
10 1 5
10 1 5
D= 0 0.005 0.01 0.02 0.05 0.1 0.2 0.5
T
-3
10
-4
10
10
-2
s tp
10
0
10 0 10 -6
10 -5
10 -4
10 -3
10 -2
s tp
10 0
Permissible Puls Load RthJS = ƒ (tp) BAS40-02L
10 2
Permissible Pulse Load IFmax / I FDC = ƒ (t p)
10 1
BAS40-02L
IFmax/IFDC
K/W
RthJS
10 1
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 0 -6 10
10
-5
10
-4
10
-3
10
-2
10
-1
s
10
1
10 0 -6 10
10
-5
10
-4
10
-3
10
-2
s
10
0
tp
tp
7
Jan-16-2004
BAS40.../BAS140W
Permissible Puls Load RthJS = ƒ (tp) BAS40-06W
10 3
Permissible Pulse Load IFmax / I FDC = ƒ (t p)
10 2
BAS40-06W
K/W
10 2
I Fmax/IFDC
-
RthJS
10 1
10 1
0.5 0.2 0.1 0.05 0.02 0.01 0.005 D=0
-5 -4 -3 -2 0
D=0 0.005 0.01 0.02 0.05 0.1 0.2 0.5
10 0 -6 10
10
10
10
10
s
10
10 0 -6 10
10
-5
10
-4
10
-3
10
-2
s
10
0
tp
tp
Permissible Puls Load RthJS = ƒ (tp) BAS40-05W
10 3
Permissible Pulse Load IFmax / I FDC = ƒ (t p)
10 2
BAS40-05W
K/W
RthJS
10 2
IFmax/IFDC
-
10 1
10
1
0.5 0.2 0.1 0.05 0.02 0.01 0.005 D=0
10
-5
D=0 0.005 0.01 0.02 0.05 0.1 0.2 0.5
10 0 -6 10
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
8
Jan-16-2004
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