PESD2ETH1GT-Q [NEXPERIA]

ESD protection for in-vehicle networksProduction;
PESD2ETH1GT-Q
型号: PESD2ETH1GT-Q
厂家: Nexperia    Nexperia
描述:

ESD protection for in-vehicle networksProduction

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中文:  中文翻译
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PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
29 March 2023  
Product data sheet  
1. General description  
Fully OPEN Alliance 100BASE-T1 and 1000BASE-T1 compliant Electrostatic Discharge (ESD)  
protection device in a small SOT23 surface-mounted plastic package, designed to protect two  
automotive in-vehicle network bus lines from the damage caused by ESD and other transients.  
2. Features and benefits  
Fully OPEN Alliance 100BASE-T1 and 1000BASE-T1 compliant  
High trigger voltage: Vt1 = 100 V min.  
Low capacitance: Cd < 2 pF  
ESD protection up to 30 kV (IEC 61000-4-2)  
1000 contact discharges (OPEN Alliance specification) with 15 kV (IEC 61000-4-2)  
Qualified according to AEC-Q101 and recommended for use in automotive applications  
3. Applications  
ESD protection for in-vehicle network lines in automotive environments  
OPEN Alliance 100/1000BASE-T1 Ethernet  
Low-Voltage Differential Signaling (LVDS) automotive  
4. Quick reference data  
Table 1. Quick reference data  
Symbol  
Parameter  
Conditions  
Min  
Typ  
Max  
Unit  
VRWM  
reverse standoff  
voltage  
Tamb = 25 °C  
-
-
24  
V
Cd  
diode capacitance  
trigger voltage  
f = 1 MHz; VR = 0 V; Tamb = 25 °C  
tp = 100 ns; Tamb = 25 °C  
-
1.8  
2
-
pF  
V
Vt1  
[1]  
100  
130  
VESD  
electrostatic discharge IEC 61000-4-2; contact discharge  
[2] [3] 30  
[3] 15  
-
-
-
kV  
kV  
voltage  
1000 contact discharges  
-
(IEC 61000-4-2);  
OPEN Alliance specification  
[1] Non-repetitive current pulse, Transmission Line Pulse (TLP); square pulse; ANSI / ESD STM5.5.1-2008  
[2] Device stressed with ten non-repetitive ESD pulses.  
[3] Measured from pin 1 or 2 to pin 3.  
 
 
 
 
 
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
5. Pinning information  
Table 2. Pinning information  
Pin  
1
Symbol  
Description  
cathode  
Simplified outline  
Graphic symbol  
3
K
2
K
cathode  
K1  
CC  
3
CC  
common cathode  
K2  
1
2
006aaa155  
SOT23  
6. Ordering information  
Table 3. Ordering information  
Type number  
Package  
Name  
Description  
Version  
PESD2ETH1GT-Q  
SOT23  
plastic, surface-mounted package; 3 terminals; 1.9 mm  
pitch; 2.9 mm x 1.3 mm x 1 mm body  
SOT23  
7. Marking  
Table 4. Marking codes  
Type number  
Marking code[1]  
%HK  
PESD2ETH1GT-Q  
[1] % = placeholder for manufacturing site code  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
2 / 18  
 
 
 
 
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
8. Limiting values  
Table 5. Limiting values  
In accordance with the Absolute Maximum Rating System (IEC 60134)  
Symbol  
IPPM  
Tj  
Parameter  
Conditions  
Min  
-
Max  
2.3  
150  
150  
150  
-
Unit  
A
rated peak pulse current tp = 8/20 µs  
junction temperature  
[1] [2]  
-
°C  
°C  
°C  
kV  
kV  
Tamb  
Tstg  
ambient temperature  
-55  
-65  
storage temperature  
VESD  
electrostatic discharge  
voltage  
IEC 61000-4-2; contact discharge  
[3] [2] 30  
[3] [2] 30  
ISO 10605; contact discharge;  
C = 150 pF; R = 330 Ω  
-
ISO 10605; contact discharge;  
C = 330 pF; R = 330 Ω  
[3] [2] 30  
-
-
kV  
kV  
1000 contact discharges (IEC 61000-4-2); [2]  
OPEN Alliance specification  
15  
[1] Device stressed with 8/20 μs exponential decay waveform according to IEC 61000-4-5.  
[2] Measured from pin 1 or 2 to pin 3.  
[3] Device stressed with ten non-repetitive ESD pulses.  
001aaa630  
I
PP  
120  
100 %  
90 %  
100 % I ; 8 µs  
PP  
I
PP  
(%)  
80  
-t  
e
50 % I ; 20 µs  
PP  
40  
10 %  
t
t = 0.6 ns to 1 ns  
r
0
0
10  
20  
30  
40  
30 ns  
60 ns  
t (µs)  
001aaa631  
Fig. 2. ESD pulse waveform according to  
IEC 61000-4-2  
Fig. 1. 8/20 µs pulse waveform according to  
IEC 61000-4-5  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
3 / 18  
 
 
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
9. Characteristics  
Table 6. Characteristics  
Symbol  
Parameter  
Conditions  
Min  
Typ  
Max  
Unit  
VRWM  
reverse standoff  
voltage  
Tamb = 25 °C  
-
-
24  
V
Vh  
holding voltage  
trigger voltage  
tp = 100 ns; Tamb = 25 °C  
[1]  
[1]  
28  
-
-
V
Vt1  
100  
130  
1
-
V
IRM  
reverse leakage current VRWM = 24 V; VR = 0 V; Tamb = 25 °C  
-
-
-
-
-
100  
nA  
pF  
%
%
Ω
Cd  
diode capacitance  
f = 1 MHz; VR = 0 V; Tamb = 25 °C  
1.8  
0.5  
0.5  
0.6  
2
-
ΔCd/Cd  
diode capacitance  
matching  
[2]  
[2]  
[1]  
f = 1 MHz; VR = 2.5 V; Tamb = 25 °C  
IR = 40 A; tp = 100 ns; Tamb = 25 °C  
-
Rdyn  
dynamic resistance  
-
[1] Non-repetitive current pulse, Transmission Line Pulse (TLP); square pulse; ANSI / ESD STM5.5.1-2008  
[2] ΔCd is the difference of the capacitance measured between pin 1 and pin 3 and the capacitance measured between pin 2 and pin 3.  
001aaa193  
I
1.2  
reverse  
P
PP  
P
PP(25°C)  
I
R
dyn  
=
V/ I  
0.8  
V
V
0.4  
V
V
t1  
h
forward  
0
0
50  
100  
150  
200  
T (°C)  
j
aaa-030568  
Fig. 4. Relative variation of peak pulse power as a  
function of junction temperature; typical values  
Fig. 3. V-I characteristics for a bidirectional ESD  
protection diode  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
4 / 18  
 
 
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
aaa-035221  
aaa-035222  
90  
10  
PP  
I
I
PP  
(A)  
(A)  
70  
-10  
50  
30  
-30  
-50  
-70  
-90  
10  
-10  
0
40  
80  
120  
160  
-160  
-120  
-80  
-40  
0
V
(V)  
V
(V)  
CL  
CL  
Transmission Line Pulse (TLP);  
tp = 100 ns; tr = 1 ns  
Transmission Line Pulse (TLP);  
tp = 100 ns; tr = 1 ns  
Fig. 5. Dynamic resistance with positive clamping;  
typical values  
Fig. 6. Dynamic resistance with negative clamping;  
typical values  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
5 / 18  
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
10. Application information  
In the „IEEE 100BASE-T1 EMC Test Specification for ESD suppression devices1document  
(further referred as OPEN Alliance 100BASE-T1 specification), the OPEN Alliance describes four  
different tests to ensure compliance of ESD suppressor devices and PHYs which are compliant  
according to the document “Transceiver EMC Test Specification”. This device passes all tests as  
shown on figures 6 to 16. Furthermore, it complies with the requirements mentioned in Section 2.2.  
of „IEEE 100BASE-T1 EMC Test Specification for ESD suppression devices“.  
common  
100 nF  
mode choke  
100BASE-T1  
transceiver  
BI_DA+  
BI_DA-  
100 nF  
according  
to OPEN  
alliance  
according  
to OPEN  
alliance  
1 kΩ  
1 kΩ  
this device  
100 kΩ  
4.7 nF  
aaa-030093  
Fig. 7. Application diagram  
The return loss and insertion loss are evaluated using the differential S-parameters Sdd11 and  
Sdd21. These measurements replace the requirement for a certain capacitance value. To ensure  
symmetry, the differential to common mode rejection is evaluated using the S-parameter Ssd21. This  
measurement replaces the requirement for a matching of the capacitances per line. To ensure that  
the device does not degrade and changes behavior after repetitive ESD events, the S-parameter  
measurements are repeated after discharging 20 times ±8 kV ESD on signal lines 1 and 2, with  
C = 150 pF, R = 330 Ω according to ISO 10605. Subsequently, the S-parameters are measured  
again and compared to the original data.  
aaa-030065  
aaa-030089  
(1)  
0
-15  
S
dd11  
S
(dB)  
dd11  
(dB)  
-25  
FAIL  
-20  
(1)  
(2)  
-35  
-45  
-55  
-65  
-40  
-60  
-80  
PASS  
(2)  
6
7
8
9
6
7
8
9
10  
10  
10  
10  
10  
10  
10  
10  
f (Hz)  
f (Hz)  
(1) limit according to OPEN Alliance 100BASE-T1  
specification  
This device  
(1) before repetitive ESD event  
(2) after 20 times ±8 kV ESD  
(2) this device  
Fig. 8. Return loss  
Fig. 9. Return loss  
1 OPEN Alliance: "IEEE 100BASE-T1 EMC Test Specification for ESD suppression devices", version 1.0  
rev. draft, December 10, 2018  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
6 / 18  
 
 
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
aaa-030066  
aaa-030090  
1
1
S
(dB)  
dd21  
PASS  
FAIL  
(2)  
(1)  
S
(dB)  
dd21  
(2)  
0
-1  
(1)  
-1  
-2  
-3  
-4  
-3  
-5  
10  
6
7
8
9
6
7
8
9
10  
10  
10  
10  
10  
10  
10  
f (Hz)  
f (Hz)  
(1) limit according to OPEN Alliance 100BASE-T1  
specification  
This device  
(1) before repetitive ESD event  
(2) after 20 times ±8 kV ESD  
(2) this device  
Fig. 10. Insertion loss  
Fig. 11. Insertion loss  
aaa-030067  
aaa-030091  
-40  
0
S
S
cd21  
sd21  
(dB)  
(dB)  
(1)  
(2)  
-60  
-30  
FAIL  
(1)  
(2)  
-80  
-60  
PASS  
-100  
-90  
10  
6
7
8
9
6
7
8
9
10  
10  
10  
10  
10  
10  
10  
f (Hz)  
f (Hz)  
(1) limit according to OPEN Alliance 100BASE-T1  
specification  
This device  
(1) before repetitive ESD event  
(2) after 20 times ±8 kV ESD  
(2) this device  
Fig. 12. Differential to common mode rejection  
Fig. 13. Differential to common mode rejection  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
7 / 18  
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
To predict if the ESD suppressor device would protect a PHY of a certain robustness class  
(Class I (JEDEC-HBM 4 kV) and Class II (JEDEC-HBM 2 kV)), the ESD discharge current is  
measured in a reference circuit according to OPEN Alliance 100BASE-T1 specification for ±4 kV  
and ±6 kV according to IEC 61000-4-2 with C = 150 pF and R = 330 Ω. Unlike in the OPEN  
Alliance 100BASE-T1 specification of October 29 2017, the „Transceiver Simulation network“ is  
implemented with 2 Ω and 50 Ω resistors.  
aaa-030068  
aaa-030071  
5
1
(1)  
I
I
ESD  
(A)  
ESD  
(A)  
(2)  
(3)  
3
1
-1  
-3  
-5  
(3)  
(2)  
(1)  
-1  
40  
90  
140  
190  
40  
90  
140  
190  
t (ns)  
t (ns)  
(1) this device  
(2) limit Class II  
(3) limit Class I  
(1) this device  
(2) limit Class II  
(3) limit Class I  
Fig. 14. ESD discharge current at +4 kV  
Fig. 15. ESD discharge current at -4 kV  
aaa-030070  
aaa-030069  
5
1
I
I
(1)  
ESD  
(A)  
ESD  
(A)  
(2)  
(3)  
3
1
-1  
(3)  
(2)  
(1)  
-3  
-1  
-5  
40  
90  
140  
190  
40  
90  
140  
190  
t (ns)  
t (ns)  
(1) this device  
(2) limit Class II  
(3) limit Class I  
(1) this device  
(2) limit Class II  
(3) limit Class I  
Fig. 16. ESD discharge current at +6 kV  
Fig. 17. ESD discharge current at -6 kV  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
8 / 18  
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
To ensure that the ESD suppressor device is not impacting the EMC performance of the complete  
module, the RF clamping test as defined in the OPEN Alliance specification is applied. First a  
measurement at a reference power level of 25 dBm is conducted in an environment defined by  
the OPEN Alliance 100BASE-T1 specification. Next, the power is increased to 33 dBm (Class I),  
36 dBm (Class II), and 39 dBm (Class III). No change in the measured common mode rejection  
indicates that the ESD suppressor device is not impacting the modules EMC performance.  
aaa-030872  
0
S
sd21  
(dB)  
-20  
(1)  
(2)  
(3)  
(4)  
-40  
-60  
10  
6
7
8
9
10  
10  
10  
f (Hz)  
According to OPEN Alliance 100BASE-T1 specification  
Common mode rejection for:  
(1) reference  
(2) Class I  
(3) Class II  
(4) Class III  
Fig. 18. RF Clamping Test  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
9 / 18  
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
For 1000BASE-T1, there is no published document on the requirements for external ESD  
suppressor devices. However, a similar requirement specification is in preparation at the time the  
present document is created. To support the conformity of this device with the to-be-published  
requirement specification of OPEN Alliance for 1000BASE-T1, results of tests adapted from OPEN  
Alliance specification for 100BASE-T1 are shown. In this tests, limits are adapted to the current  
state of the art and the common-mode choke is selected in compliance with the published OPEN  
Alliance document “IEEE 1000BASE-T1 EMC Test Specification for Common Mode Chokes  
Version 1.0” as of January 16, 2018.  
The following graphs show the S-parameters with adapted limit lines. ESD damage test results of  
100BASE-T1 are also valid for 1000BASE-T1.  
aaa-030813  
aaa-030814  
0
1
S
(dB)  
PASS  
FAIL  
dd11  
(2)  
(1)  
S
(dB)  
dd21  
FAIL  
-20  
(1)  
-1  
PASS  
(2)  
-40  
-60  
-80  
-3  
-5  
6
7
8
9
6
7
8
9
10  
10  
10  
10  
10  
10  
10  
10  
f (Hz)  
f (Hz)  
(1) limit according to state of the art  
for 1000BASE-T1  
(1) limit according to state of the art  
for 1000BASE-T1  
(2) this device  
(2) this device  
Fig. 19. Return loss  
Fig. 20. Insertion loss  
aaa-030815  
-40  
S
sd21  
(dB)  
FAIL  
-60  
(1)  
(2)  
-80  
PASS  
-100  
6
7
8
9
10  
10  
10  
10  
f (Hz)  
(1) limit according to state of the art for 1000BASE-T1  
(2) this device  
Fig. 21. Differential to common mode rejection  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
10 / 18  
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
The following graphs show the discharge current measurements, with a 1000BASE-T1 compliant  
common-mode choke.  
aaa-030632  
aaa-030633  
6
2
I
I
ESD  
(A)  
ESD  
(A)  
(1)  
4
2
0
0
(3)  
(2)  
(2)  
(3)  
-2  
-4  
-6  
(1)  
-2  
40  
90  
140  
190  
40  
90  
140  
190  
t (ns)  
t (ns)  
(1) this device  
(2) limit Class II  
(3) limit Class I  
(1) this device  
(2) limit Class II  
(3) limit Class I  
Fig. 22. ESD discharge current at +4 kV  
Fig. 23. ESD discharge current at -4 kV  
aaa-030634  
aaa-030635  
6
2
I
I
ESD  
(A)  
ESD  
(A)  
(1)  
4
2
0
0
(3)  
(2)  
(2)  
(3)  
-2  
-4  
-6  
(1)  
-2  
40  
40  
90  
140  
190  
90  
140  
190  
t (ns)  
t (ns)  
(1) this device  
(2) limit Class II  
(3) limit Class I  
(1) this device  
(2) limit Class II  
(3) limit Class I  
Fig. 24. ESD discharge current at +6 kV  
Fig. 25. ESD discharge current at -6 kV  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
11 / 18  
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
aaa-030636  
aaa-030637  
6
2
0
I
I
ESD  
(A)  
ESD  
(A)  
(1)  
4
2
0
(3)  
(2)  
(2)  
(3)  
-2  
-4  
-6  
(1)  
-2  
40  
90  
140  
190  
40  
90  
140  
190  
t (ns)  
t (ns)  
(1) this device  
(2) limit Class II  
(3) limit Class I  
(1) this device  
(2) limit Class II  
(3) limit Class I  
Fig. 26. ESD discharge current at +8 kV  
Fig. 27. ESD discharge current at -8 kV  
aaa-030638  
aaa-030639  
6
2
I
I
ESD  
(A)  
ESD  
(A)  
(1)  
4
2
0
0
(3)  
(2)  
(2)  
(3)  
-2  
-4  
-6  
(1)  
-2  
40  
90  
140  
190  
40  
90  
140  
190  
t (ns)  
t (ns)  
(1) this device  
(2) limit Class II  
(3) limit Class I  
(1) this device  
(2) limit Class II  
(3) limit Class I  
Fig. 28. ESD discharge current at +15 kV  
Fig. 29. ESD discharge current at -15 kV  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
12 / 18  
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
The following graph shows the RF clamping test with a 1000BASE-T1 compliant common-mode  
choke.  
aaa-030640  
0
S
sd21  
(dB)  
(1)  
-20  
(2)  
(3)  
(4)  
-40  
-60  
10  
6
7
8
9
10  
10  
10  
f (Hz)  
According to state of the art for 1000BASE-T1  
Common mode rejection for:  
(1) reference  
(2) Class I  
(3) Class II  
(4) Class III  
Fig. 30. RF Clamping Test  
11. Test information  
Quality information  
This product has been qualified in accordance with the Automotive Electronics Council (AEC)  
standard Q101 - Stress test qualification for discrete semiconductors, and is suitable for use in  
automotive applications.  
©
PESD2ETH1GT-Q  
All information provided in this document is subject to legal disclaimers.  
Nexperia B.V. 2023. All rights reserved  
Product data sheet  
29 March 2023  
13 / 18  
 
Nexperia  
PESD2ETH1GT-Q  
ESD protection for in-vehicle networks  
12. Package outline  
Plastic surface-mounted package; 3 leads  
SOT23  
B
D
A
E
X
H
E
v
A
3
Q
A
A
1
c
1
2
e
1
b
w
B
L
p
p
e
detail X  
0
1
2 mm  
scale  
Dimensions (mm are the original dimensions)  
Unit  
A
A
b
c
D
E
e
e
1
H
E
L
p
Q
v
w
1
p
max 1.1 0.1 0.48 0.15 3.0 1.4  
nom  
2.5 0.45 0.55  
2.1 0.15 0.45  
mm  
1.9 0.95  
0.2 0.1  
0.9  
0.38 0.09 2.8 1.2  
min  
sot023_po  
References  
Outline  
version  
European  
projection  
Issue date  
IEC  
JEDEC  
JEITA  
14-06-19  
14-09-22  
SOT23  
TO-236AB  
Fig. 31. Package outline SOT23  
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ESD protection for in-vehicle networks  
13. Soldering  
3.3  
2.9  
1.9  
solder lands  
solder resist  
2
3
1.7  
solder paste  
occupied area  
0.6  
0.7  
(3×)  
(3×)  
Dimensions in mm  
0.5  
(3×)  
0.6  
(3×)  
1
sot023_fr  
Fig. 32. Reflow soldering footprint for SOT23  
2.2  
1.2  
(2×)  
1.4  
(2×)  
solder lands  
solder resist  
2.6  
4.6  
occupied area  
Dimensions in mm  
1.4  
preferred transport direction during soldering  
2.8  
4.5  
sot023_fw  
Fig. 33. Wave soldering footprint for SOT23  
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ESD protection for in-vehicle networks  
14. Revision history  
Table 7. Revision history  
Data sheet ID  
Release date  
Data sheet status  
Change notice  
Supersedes  
PESD2ETH1GT-Q v.1 20230329  
Product data sheet  
-
-
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ESD protection for in-vehicle networks  
equipment, nor in applications where failure or malfunction of an Nexperia  
product can reasonably be expected to result in personal injury, death or  
severe property or environmental damage. Nexperia and its suppliers accept  
no liability for inclusion and/or use of Nexperia products in such equipment or  
applications and therefore such inclusion and/or use is at the customer's own  
risk.  
15. Legal information  
Data sheet status  
Quick reference data — The Quick reference data is an extract of the  
product data given in the Limiting values and Characteristics sections of this  
document, and as such is not complete, exhaustive or legally binding.  
Document status Product  
Definition  
[1][2]  
status [3]  
Applications — Applications that are described herein for any of these  
products are for illustrative purposes only. Nexperia makes no representation  
or warranty that such applications will be suitable for the specified use  
without further testing or modification.  
Objective [short]  
data sheet  
Development  
This document contains data from  
the objective specification for  
product development.  
Preliminary [short]  
data sheet  
Qualification  
Production  
This document contains data from  
the preliminary specification.  
Customers are responsible for the design and operation of their applications  
and products using Nexperia products, and Nexperia accepts no liability for  
any assistance with applications or customer product design. It is customer’s  
sole responsibility to determine whether the Nexperia product is suitable  
and fit for the customer’s applications and products planned, as well as  
for the planned application and use of customer’s third party customer(s).  
Customers should provide appropriate design and operating safeguards to  
minimize the risks associated with their applications and products.  
Product [short]  
data sheet  
This document contains the product  
specification.  
[1] Please consult the most recently issued document before initiating or  
completing a design.  
[2] The term 'short data sheet' is explained in section "Definitions".  
[3] The product status of device(s) described in this document may have  
changed since this document was published and may differ in case of  
multiple devices. The latest product status information is available on  
the internet at https://www.nexperia.com.  
Nexperia does not accept any liability related to any default, damage, costs  
or problem which is based on any weakness or default in the customer’s  
applications or products, or the application or use by customer’s third party  
customer(s). Customer is responsible for doing all necessary testing for the  
customer’s applications and products using Nexperia products in order to  
avoid a default of the applications and the products or of the application or  
use by customer’s third party customer(s). Nexperia does not accept any  
liability in this respect.  
Definitions  
Draft — The document is a draft version only. The content is still under  
internal review and subject to formal approval, which may result in  
modifications or additions. Nexperia does not give any representations or  
warranties as to the accuracy or completeness of information included herein  
and shall have no liability for the consequences of use of such information.  
Limiting values — Stress above one or more limiting values (as defined in  
the Absolute Maximum Ratings System of IEC 60134) will cause permanent  
damage to the device. Limiting values are stress ratings only and (proper)  
operation of the device at these or any other conditions above those  
given in the Recommended operating conditions section (if present) or the  
Characteristics sections of this document is not warranted. Constant or  
repeated exposure to limiting values will permanently and irreversibly affect  
the quality and reliability of the device.  
Short data sheet — A short data sheet is an extract from a full data sheet  
with the same product type number(s) and title. A short data sheet is  
intended for quick reference only and should not be relied upon to contain  
detailed and full information. For detailed and full information see the relevant  
full data sheet, which is available on request via the local Nexperia sales  
office. In case of any inconsistency or conflict with the short data sheet, the  
full data sheet shall prevail.  
Terms and conditions of commercial sale — Nexperia products are  
sold subject to the general terms and conditions of commercial sale, as  
published at http://www.nexperia.com/profile/terms, unless otherwise agreed  
in a valid written individual agreement. In case an individual agreement is  
concluded only the terms and conditions of the respective agreement shall  
apply. Nexperia hereby expressly objects to applying the customer’s general  
terms and conditions with regard to the purchase of Nexperia products by  
customer.  
Product specification — The information and data provided in a Product  
data sheet shall define the specification of the product as agreed between  
Nexperia and its customer, unless Nexperia and customer have explicitly  
agreed otherwise in writing. In no event however, shall an agreement be  
valid in which the Nexperia product is deemed to offer functions and qualities  
beyond those described in the Product data sheet.  
No offer to sell or license — Nothing in this document may be interpreted  
or construed as an offer to sell products that is open for acceptance or the  
grant, conveyance or implication of any license under any copyrights, patents  
or other industrial or intellectual property rights.  
Disclaimers  
Export control — This document as well as the item(s) described herein  
may be subject to export control regulations. Export might require a prior  
authorization from competent authorities.  
Limited warranty and liability — Information in this document is believed  
to be accurate and reliable. However, Nexperia does not give any  
representations or warranties, expressed or implied, as to the accuracy  
or completeness of such information and shall have no liability for the  
consequences of use of such information. Nexperia takes no responsibility  
for the content in this document if provided by an information source outside  
of Nexperia.  
Translations — A non-English (translated) version of a document is for  
reference only. The English version shall prevail in case of any discrepancy  
between the translated and English versions.  
In no event shall Nexperia be liable for any indirect, incidental, punitive,  
special or consequential damages (including - without limitation - lost  
profits, lost savings, business interruption, costs related to the removal  
or replacement of any products or rework charges) whether or not such  
damages are based on tort (including negligence), warranty, breach of  
contract or any other legal theory.  
Trademarks  
Notice: All referenced brands, product names, service names and  
trademarks are the property of their respective owners.  
Notwithstanding any damages that customer might incur for any reason  
whatsoever, Nexperia’s aggregate and cumulative liability towards customer  
for the products described herein shall be limited in accordance with the  
Terms and conditions of commercial sale of Nexperia.  
Right to make changes — Nexperia reserves the right to make changes  
to information published in this document, including without limitation  
specifications and product descriptions, at any time and without notice. This  
document supersedes and replaces all information supplied prior to the  
publication hereof.  
Suitability for use in automotive applications — This Nexperia product  
has been qualified for use in automotive applications. Unless otherwise  
agreed in writing, the product is not designed, authorized or warranted to  
be suitable for use in life support, life-critical or safety-critical systems or  
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ESD protection for in-vehicle networks  
Contents  
1. General description......................................................1  
2. Features and benefits.................................................. 1  
3. Applications.................................................................. 1  
4. Quick reference data....................................................1  
5. Pinning information......................................................2  
6. Ordering information....................................................2  
7. Marking..........................................................................2  
8. Limiting values............................................................. 3  
9. Characteristics..............................................................4  
10. Application information............................................. 6  
11. Test information........................................................13  
12. Package outline........................................................ 14  
13. Soldering................................................................... 15  
14. Revision history........................................................16  
15. Legal information......................................................17  
© Nexperia B.V. 2023. All rights reserved  
For more information, please visit: http://www.nexperia.com  
For sales office addresses, please send an email to: salesaddresses@nexperia.com  
Date of release: 29 March 2023  
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