© Semiconductor Components Industries, LLC, 1994
September, 2018 − Rev. 13 1Publication Order Number:
BAV70LT1/D
BAV70L, SBAV70L
Dual Switching Diode
Common Cathode
Features
S Prefix for Automotive and Other Applications Requiring Unique
Site and Control Change Requirements; AEC−Q101 Qualified and
PPAP Capable
These Devices are Pb−Free, Halogen Free/BFR Free and are RoHS
Compliant
MAXIMUM RATINGS (EACH DIODE)
Rating Symbol Value Unit
Reverse Voltage VR100 V
Forward Current IF200 mA
Repetitive Peak Forward Current
(Pulse Wave = 1 sec, Duty Cycle = 66%) IFRM 1.5 A
Non−Repetitive Peak Forward Current
(Square Wave, TJ = 25°C prior to surge)
t = 1 ms
t = 10 ms
t = 100 ms
t = 1 ms
t = 10 ms
t = 100 ms
t = 1 s
IFSM
31
16
10
4.5
2.5
1.0
0.5
A
THERMAL CHARACTERISTICS
Characteristic Symbol Max Unit
Total Device Dissipation FR−5 Board
(Note 1)
TA = 25°C
Derate above 25°C
PD225
1.8
mW
mW/°C
Thermal Resistance,
Junction−to−Ambient RqJA 556 °C/W
Total Device Dissipation
Alumina Substrate,
(Note 2) TA = 25°C
Derate above 25°C
PD300
2.4
mW
mW/°C
Thermal Resistance,
Junction−to−Ambient RqJA 417 °C/W
Junction and Storage Temperature TJ, Tstg 55 to
+150 °C
Stresses exceeding those listed in the Maximum Ratings table may damage the
device. If any of these limits are exceeded, device functionality should not be
assumed, damage may occur and reliability may be af fected.
1. FR−5 = 1.0 0.75 0.062 in.
2. Alumina = 0.4 0.3 0.024 in. 99.5% alumina.
MARKING DIAGRAM
Device Package Shipping
ORDERING INFORMATION
For information on tape and reel specifications,
including part orientation and tape sizes, please
refer t o our Tape and Reel Packaging Specification
s
Brochure, BRD8011/D.
1
A4 M G
G
SOT−23 (TO−236)
CASE 318
STYLE 9
BAV70LT1G SOT−23
(Pb−Free) 3,000 / Tape & Reel
BAV70LT3G SOT−23
(Pb−Free) 10,000 / Tape & Ree
l
3
CATHODE
ANODE
1
2
ANODE
*Date Code orientation and/or overbar may
vary depending upon manufacturing location.
A4 = Device Code
M = Date Code*
G= Pb−Free Package
(Note: Microdot may be in either location)
SBAV70LT1G SOT−23
(Pb−Free) 3,000 / Tape & Reel
SBAV70LT3G SOT−23
(Pb−Free) 10,000 / Tape & Ree
l
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BAV70L, SBAV70L
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2
ELECTRICAL CHARACTERISTICS (TA = 25°C unless otherwise noted) (Each Diode)
Characteristic Symbol Min Max Unit
Reverse Breakdown Voltage
(I(BR) = 100 mA) V(BR) 100 V
Reverse Voltage Leakage Current (Note 3)
(VR = 25 V, TJ = 150°C)
(VR = 100 V)
(VR = 70 V, TJ = 150°C)
IR
60
1.0
100
mA
Diode Capacitance
(VR = 0 V, f = 1.0 MHz) CD 1.5 pF
Forward Voltage
(IF = 1.0 mA)
(IF = 10 mA)
(IF = 50 mA)
(IF = 150 mA)
VF
715
855
1000
1250
mV
Reverse Recovery Time RL = 100 W
(IF = IR = 10 mA, IR(REC) = 1.0 mA) (Figure 1) trr 6.0 ns
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product
performance may not be indicated by the Electrical Characteristics if operated under different conditions.
3. For each individual diode while second diode is unbiased.
Notes: 1. A 2.0 kW variable resistor adjusted for a Forward Current (IF) of 10 mA.
Notes: 2. Input pulse is adjusted so IR(peak) is equal to 10 mA.
Notes: 3. tp » trr
+10 V 2.0 k
820
W
0.1 mF
D.U.T.
VR
100 mH
0.1 mF
50 W OUTPUT
PULSE
GENERATOR
50 W INPUT
SAMPLING
OSCILLOSCOPE
trtpt
10%
90%
IF
IR
trr t
iR(REC) = 1.0 mA
OUTPUT PULSE
(IF = IR = 10 mA; MEASURED
at iR(REC) = 1.0 mA)
IF
INPUT SIGNAL
Figure 1. Recovery Time Equivalent Test Circuit
BAV70L, SBAV70L
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3
VF, FORWARD VOLTAGE (V)
VR, REVERSE VOLTAGE (V)
Figure 2. Forward Voltage Figure 3. Leakage Current
Figure 4. Capacitance
Curves Applicable to Each Anode
0.01
0.1
1
10
100
0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0
TA = 85°C
TA = 55°C
TA = 25°C
TA = −40°C
TA = −55°C
TA = 150°C
I
F
, FORWARD CURRENT (mA)
0.001
0.01
0.1
1.0
10
0 1020304050607
0
VF, REVERSE VOLTAGE (V)
IR, REVERSE CURRENT (mA)
TA = 85°C
TA = 55°C
TA = 125°CTA = 125°C
TA = 150°C
TA = 25°C
0.48
0.5
0.52
0.54
0.56
0.58
0.6
012345678
Cd, DIODE CAPACITANCE (pF)
BAV70L, SBAV70L
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4
PACKAGE DIMENSIONS
SOT−23 (TO−236)
CASE 318−08
ISSUE AS
D
A1
3
12
NOTES:
1. DIMENSIONING AND TOLERANCING PER ASME Y14.5M, 1994.
2. CONTROLLING DIMENSION: MILLIMETERS.
3. MAXIMUM LEAD THICKNESS INCLUDES LEAD FINISH.
MINIMUM LEAD THICKNESS IS THE MINIMUM THICKNESS OF
THE BASE MATERIAL.
4. DIMENSIONS D AND E DO NOT INCLUDE MOLD FLASH,
PROTRUSIONS, OR GATE BURRS.
SOLDERING FOOTPRINT*
VIEW C
L
0.25
L1
e
EE
b
A
SEE VIEW C
DIM
AMIN NOM MAX MIN
MILLIMETERS
0.89 1.00 1.11 0.035
INCHES
A1 0.01 0.06 0.10 0.000
b0.37 0.44 0.50 0.015
c0.08 0.14 0.20 0.003
D2.80 2.90 3.04 0.110
E1.20 1.30 1.40 0.047
e1.78 1.90 2.04 0.070
L0.30 0.43 0.55 0.012
0.039 0.044
0.002 0.004
0.017 0.020
0.006 0.008
0.114 0.120
0.051 0.055
0.075 0.080
0.017 0.022
NOM MAX
L1
H
2.10 2.40 2.64 0.083 0.094 0.104
HE0.35 0.54 0.69 0.014 0.021 0.027
c0 −−− 10 0 −−− 10
T°°°°
T
3X
TOP VIEW
SIDE VIEW END VIEW
2.90
0.80
DIMENSIONS: MILLIMETERS
0.90
PITCH
3X
3X 0.95
RECOMMENDED
STYLE 9:
PIN 1. ANODE
2. ANODE
3. CATHODE
*For additional information on our Pb−Free strategy and soldering
details, please download the ON Semiconductor Soldering and
Mounting Techniques Reference Manual, SOLDERRM/D.
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P
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BAV70LT1/D
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