ESDCANxx-2BLY
Datasheet
Automotive dual-line TVS in SOT23-3L for CAN bus
Features
1
3
2
Product status link
ESDCANxx-2BLY
ESDCAN01-2BLY,
ESDCAN24-2BLY,
ESDCAN04-2BLY,
ESDCAN06-2BLY
•
•
•
AEC-Q101 qualified
Dual-line ESD and EOS protection
Breakdown voltage: VBR
•
•
•
–
ESDCAN01-2BLY: 25 V
–
ESDCAN24-2BLY: 27 V
–
ESDCAN04-2BLY: 27.5 V
–
ESDCAN06-2BLY: 38 V
Bidirectional device
Max pulse power up to 230 W (8/20 μs)
Low clamping factor VCL / VBR
•
•
Low leakage current
ECOPACK ROHS compliant component
Complies with the following standards
•
UL94, V0
•
J-STD-020 MSL level 1
•
IPC7531 footprint and JEDEC registered package
•
ISO 16750-2 (Jump start and reversed battery tests)
•
ISO 10605 - C = 150 pF, R = 330 Ω, exceeds level 4:
–
±30 kV (air discharge)
–
±30 kV (contact discharge)
•
ISO 10605 - C = 330 pF, R = 330 Ω exceeds level 4:
–
±30 kV (air discharge)
–
±30 kV (contact discharge)
•
ISO 7637-3:
–
Pulse 3a: -150 V
–
Pulse 3b: +150 V
–
Pulse 2a: +/- 85 V
Applications
Automotive controller area network (CAN) bus lines where electrostatic discharges
and other transients must be suppressed. This product is compliant with most of
automotive interfaces.
Description
The ESDCAN0xx-2BLY are dual-line TVS specifically designed for the protection of
automotive CAN bus lines against electrostatic discharge (ESD).
Its improved parameters make it compliant with all key interfaces in automotive:
CAN-FD, LIN, FlexRay, MOST, SENT, USB, etc.
DS11111 - Rev 3 - April 2019
For further information contact your local STMicroelectronics sales office.
www.st.com
ESDCANxx-2BLY
Characteristics
1
Characteristics
Table 1. Absolute ratings (Tamb = 25 °C)
Symbol
Parameter
Value
Unit
ISO 10605 - C = 150 pF, R = 330 Ω:
VPP
Peak pulse voltage
Contact discharge
30
Air discharge
30
ISO 10605 - C = 330 pF, R = 330 Ω:
ESDCAN24-2BLY
Contact discharge
ESDCAN01-2BLY
30
Air discharge
ESDCAN04-2BLY
30
ESDCAN06-2BLY
22
kV
ISO 10605 - C = 330 pF, R = 330 Ω:
Contact discharge
Air discharge
22
ESDCAN24-2BLY
IPP
Tj
Tstg
ESDCAN01-2BLY
Peak pulse current (8/20 μs)
5.5
ESDCAN04-2BLY
3.7
ESDCAN06-2BLY
3
A
Operating junction temperature range
-40 to +150
°C
Storage temperature range
-55 to +150
°C
Figure 1. Electrical characteristics (definitions)
Ipp
stand-off voltage
DS11111 - Rev 3
page 2/14
ESDCANxx-2BLY
Characteristics
Table 2. Electrical characteristics (values, Tamb = 25 °C)
IRM max. at VRM
VBR at IR
VCLPulse ISO7637-3
3a at -150 V
min.
Min. Max.
Order code
µA
V
V
mA
ESDCAN24-2BLY
0.1
24
27
32
1
-40
ESDCAN01-2BLY
0.1
24
25
30
1
ESDCAN04-2BLY
0.05
25.5
ESDCAN06-2BLY
0.1
35
27.5 30.7
38
42.2
3b at +150 V
max.
V
VCL at IPP (8/20 µs)
Max.
ΔC(1)
αT(2)
Typ. Max. Typ.
Typ.
C
pF
10-4/°C
30
0.1
9
-
30
0.1
9
3
17
19
0.1
9
3
13
15
0.1
9
V
A
pF
40
43
5
-
-35
35
40
5
1
-35
35
43
1
-44
44
59
1. ΔC : capacitance variation between IO1 and IO2 versus GND
2. to calculate VBR versus Tj: VBR at Tj = VBR at 25 °C x (1 + αT x (Tj - 25) )
DS11111 - Rev 3
page 3/14
ESDCANxx-2BLY
Characteristics (curves)
1.1
Characteristics (curves)
Figure 2. Maximum peak current versus initial junction temperature
Ipp (A)
6
8/20 µs
ESDCAN24-2BLY
ESDCAN01-2BLY
ESDCAN04-2BLY
ESDCAN06-2BLY
5
4
3
2
1
0
Tj (°C)
0
25
50
Figure 3. Maximum peak pulse current versus exponential
pulse duration
10
IPP (A)
75
100
125
150
175
200
Figure 4. Clamping voltage versus peak pulse current
10
Ipp (A)
Tj initial = 25 °C
ESDCAN24-2BLY
ESDCAN01-2BLY
ESDCAN04-2BLY
ESDCAN06-2BLY
1
1
8/20 µs
ESDCAN24-2BLY
ESDCAN01-2BLY
ESDCAN04-2BLY
ESDCAN06-2BLY
0.1
0.01
DS11111 - Rev 3
t p (ms)
0.1
1
0.1
20
V CL (V)
25
30
35
40
45
50
55
60
65
70
page 4/14
ESDCANxx-2BLY
Characteristics (curves)
Figure 5. Junction capacitance versus reverse voltage
C (pF)
100
Figure 6. Leakage current versus junction temperature
100.0
f = 1 MHz
Vosc = 30 mVRMS
Tj = 25 °C
ESDCAN24-2BLY
ESDCAN01-2BLY
ESDCAN04-2BLY
ESDCAN06-2BLY
IR (nA)
10.0
10
1.0
VR = VRM
ESDCAN24-2BLY
ESDCAN01-2BLY
ESDCAN04-2BLY
ESDCAN06-2BLY
0.1
1
VR (V)
0
5
10
15
20
25
30
35
40
Figure 7. Response to ISO 10605 -C = 150 pF, R = 330 Ω
(-8 kV contact)
0.0
25
Tj (°C)
50
75
100
125
150
Figure 8. Response to ISO 10605 - C = 150 pF, R = 330 Ω
(+8 kV contact )
Figure 9. Response to ISO 7637-3 Pulse 3a: -150 V
DS11111 - Rev 3
page 5/14
ESDCANxx-2BLY
Characteristics (curves)
Figure 10. Response to ISO 7637-3 Pulse 3b : +150 V
Figure 11. Response to ISO 7637-3 pulse 2a: -85 V
Figure 12. Response to ISO 7637-3 pulse 2a: +85 V
DS11111 - Rev 3
page 6/14
ESDCANxx-2BLY
Characteristics (curves)
Figure 13. S21 attenuation
Figure 14. TLP
I (A)
25
20
15
10
5
0
-5
ESDCAN24-2BLY
ESDCAN01-2BLY
ESDCAN04-2BLY
ESDCAN06-2BLY
-10
-15
-20
V (V)
-60
DS11111 - Rev 3
-50
-40
-30
-20
-10
-25
0
10
20
30
40
50
60
page 7/14
ESDCANxx-2BLY
Package information
2
Package information
In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK packages,
depending on their level of environmental compliance. ECOPACK specifications, grade definitions and product
status are available at: www.st.com. ECOPACK is an ST trademark.
2.1
SOT23-3L package information
Figure 15. SOT23-3L package outline
D
0.25
Gauge plane
A
a
A1
Seating plane
L
L1
B
3
E
H
1
2
e
S
c
e1
PROJECTION
Table 3. SOT23-3L package mechanical data
Dimensions
Ref.
Inches(1)
Millimeters
Min.
Typ.
Max.
Min.
Typ.
Max.
A
0.89
1.25
0.0350
0.050
A1
0.00
0.15
0.0000
0.006
B
0.30
0.51
0.011
0.021
C
0.085
0.20
0.003
0.008
D
2.75
3.04
0.108
0.120
E
1.20
1.75
0.047
0.069
e
0.85
0.95
1.05
0.033
0.037
0.042
e1
1.70
1.90
2.10
0.066
0.075
0.083
H
2.10
3.00
0.082
0.119
L
0.25
0.61
0.009
0.025
L1
0.55
0.022
S
0.35
0.65
0.013
0.026
a
0°
8°
0°
8°
1. Dimension in inches are given for reference only.
DS11111 - Rev 3
page 8/14
ESDCANxx-2BLY
SOT23-3L package information
Figure 16. SOT23-3L marking
Figure 17. SOT23-3L footprint in mm
2.43
1.90
0.95
1.37
XXXX
1.01
0.69
0.540
3.10
1.08
1.01
XXXX : Marking
0.53
Figure 18. Package orientation in reel
Figure 19. Tape and reel orientation
Pin 1 located according to EIA-481
Note:
Pocket dimensions are not on scale
Pocket shape may vary depending on package
Figure 20. 7'' reel dimension values
Figure 21. Inner box dimension values
30
Ø 180 max
14.4
2±0.5
Ø 13
Ø 60
Ø 20.2 min
205
205
DS11111 - Rev 3
page 9/14
ESDCANxx-2BLY
SOT23-3L package information
Figure 22. Tape outline
Table 4. Tape dimension values
Dimensions
Millimeters
Ref.
DS11111 - Rev 3
Min.
Typ.
Max.
D0
1.45
1.5
1.6
D1
1
F
3.45
3.5
3.55
K0
1.3
1.4
1.5
P0
3.9
4.0
4.1
P1
3.9
4.0
4.1
P2
1.95
2.0
2.05
W
7.9
8
8.3
page 10/14
ESDCANxx-2BLY
Reflow profile
3
Reflow profile
Figure 23. ST ECOPACK® recommended soldering reflow profile for PCB mounting
250
240-245 °C
Temperature (°C)
-2 °C/s
2 - 3 °C/s
60 sec
(90 max)
200
-3 °C/s
150
-6 °C/s
100
0.9 °C/s
50
Time (s)
0
Note:
DS11111 - Rev 3
30
60
90
120
150
180
210
240
270
300
Minimize air convection currents in the reflow oven to avoid component movement. Maximum soldering profile
corresponds to the latest IPC/JEDEC J-STD-020.
page 11/14
ESDCANxx-2BLY
Ordering information
4
Ordering information
Figure 24. Ordering information scheme
Table 5. Ordering information
Order code
Marking(1)
ESDCAN24-2BLY
EL24
ESDCAN01-2BLY
EN24
ESDCAN04-2BLY
EC24
ESDCAN06-2BLY
EC35
Package
Weight
Base qty.
Delivery mode
SOT23-3L
9.8 mg
3000
Tape and reel
1. The marking can be rotated by multiples of 90° to differentiate assembly location
DS11111 - Rev 3
page 12/14
ESDCANxx-2BLY
Revision history
Table 6. Document revision history
Date
Revision
13-Jul-2015
1
Changes
First issue.
Added RPN ESDCAN04-2BLY and ESDCAN06-2BLY.
04-Oct-2018
2
Updated cover page, Section 1 Characteristics and Section
1.1 Characteristics (curves).
Added Packing information.
05-Apr-2019
DS11111 - Rev 3
3
Added typical pitch in Table 3 and updated Figure 17.
page 13/14
ESDCANxx-2BLY
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products are sold pursuant to ST’s terms and conditions of sale in place at the time of order acknowledgement.
Purchasers are solely responsible for the choice, selection, and use of ST products and ST assumes no liability for application assistance or the design of
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Resale of ST products with provisions different from the information set forth herein shall void any warranty granted by ST for such product.
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Information in this document supersedes and replaces information previously supplied in any prior versions of this document.
© 2019 STMicroelectronics – All rights reserved
DS11111 - Rev 3
page 14/14
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