ESD24VS2U-E6433 [INFINEON]

Trans Voltage Suppressor Diode, 24V V(RWM), Bidirectional,;
ESD24VS2U-E6433
型号: ESD24VS2U-E6433
厂家: Infineon    Infineon
描述:

Trans Voltage Suppressor Diode, 24V V(RWM), Bidirectional,

二极管
文件: 总10页 (文件大小:621K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
ESD24VS2U  
Silicon TVS diodes  
ESD / transient protection of automotive CAN/LIN  
bus networks / transceivers, industrial bus  
systems and power supply lines according to:  
IEC61000-4-2 (ESD): ±±3kV (air / contact)  
IEC61000-4-4 (EFT): 80 A (5/50 ns)  
IEC61000-4-5 (surge): 5 A (8/20µs)  
ISO7637-2: Pulse 1 (max. 50 V),  
Pulse 2 (max. 125 V), Pulse 3a, b (max.800 V)  
Max. working voltage: 24 V  
Low capacitance: 24 pF typ.  
Low clamping voltage: < 41 V  
Extremely low reverse current: < 1 nA typ.  
Pb-free (RoHS compliant) package  
Applications  
Low and High-Speed CAN  
Fault Tolerant CAN  
Industrial control networks  
12/24 V DC power supply lines  
ESD24VS2U  
3
D
2
D
1
1
2
Type  
ESD24VS2U  
Package  
SOT23  
Configuration  
2 lines, uni-directional*  
Marking  
EUs  
* 1 line, bi-directional between pins 1 and 2, if pin 3 is not connested  
2011-06-17  
1
ESD24VS2U  
Maximum Ratings at T = 25°C, unless otherwise specified  
A
Parameter  
ESD contact discharge  
Peak pulse current (t = 8 / 20 µs)  
Peak pulse power (t = 8 / 20 µs)  
Symbol  
Value  
30  
5
230  
Unit  
kV  
A
1)  
V
ESD  
2)  
I
p
pp  
2)  
W
P
p
pk  
°C  
Operating temperature range  
Storage temperature  
T
-55...150  
-65...150  
op  
T
stg  
Electrical Characteristics at T = 25°C, unless otherwise specified  
A
Parameter  
Symbol  
Values  
Unit  
min.  
typ. max.  
Characteristics  
-
26  
-
-
24  
32  
V
Reverse working voltage  
Breakdown voltage  
V
V
RWM  
(BR)  
I
= 1 mA  
(BR)  
-
<1  
10  
nA  
V
Reverse current  
I
R
V = 24 V  
R
Clamping voltage  
V
CL  
2)  
2)  
I
= 1 A, t = 8 / 20 µs)  
-
-
30  
36  
34  
41  
PP  
p
I
= 5 A, t = 8 / 20 µs)  
PP  
p
3)  
pF  
Line capacitance  
C
T
V = 0 V, f = 1 MHz, (pins 1 to 2, pin 3 n.c.)  
-
-
24  
48  
28  
52  
R
V = 0 V, f = 1 MHz, (pins 1 or 2 to 3)  
R
1
V
according to IEC61000-4-2. Device stressed with 10 positive / negative ESD pulses.  
according to IEC61000-4-5. Non-repetitive current pulse.  
ESD  
2
3
I
pp  
Total capacitance line to ground (per linie)  
2011-06-17  
2
ESD24VS2U  
Power derating curve P = ƒ (T )  
Clamping voltage, V = ƒ(I )  
cl pp  
pk  
A
t = 8 / 20 µs  
p
6
110  
A
5
90  
80  
70  
60  
50  
40  
30  
20  
10  
0
pins 1/2 to 3 (uni-directional)  
pins 1 to 2 (bi-directional)  
4.5  
4
3.5  
3
2.5  
2
1.5  
1
0.5  
0
°C  
V
0
25  
50  
75  
100  
150  
2
6
10 14 18 22 26 30 34  
40  
T
V
A
cl  
Reverse current I = ƒ(V )  
Breakdown voltage V = ƒ(I )  
BR R  
R
R
T = Parameter, pins 1 / 2 to 3  
T = Parameter, pins 1 to 2  
A
A
( uni-directional )  
( bi-directional )  
10 -8  
1
A
150°C  
mA  
10 -9  
- 40°C  
25°C  
125°C  
125°C  
150°C  
10 -10  
0
-0.5  
-1  
85°C  
10 -11  
25°C  
10 -12  
V
V
0
4
8
12  
16  
24  
-35  
-25  
-15  
-5  
5
15  
35  
V
V
BR  
R
2011-06-17  
3
ESD24VS2U  
Line capacitance C = ƒ (V )  
T
R
f = 1MHz  
50  
pF  
40  
35  
30  
25  
20  
15  
pins 1/2 to 3 (uni-directional)  
pins 1 to 2 (bi-directional)  
10  
0
V
4
8
12  
16  
24  
V
R
2011-06-17  
4
ESD24VS2U  
Application example ESD24VS2U ( uni-directional )  
12V / 24V DC power supply line protection  
ESD  
sensitive  
circuit  
2
1
The protection diode should be placed very  
close to the location where the ESD or other  
transients can occur to keep loops and  
inductances as small as possible. Pin 3  
should be connected directly to a ground  
plane on the board.  
3
Application example ESD24VS2U ( bi-directional )  
Single Wire CAN and LIN bus protection  
CAN Bus  
CAN line  
CAN  
transceiver  
I/O  
1
3
Pin 2 (or pin 1) should be  
connected directly to a ground  
plane on the board. Pin 3 is  
not connected.  
2
2011-06-17  
5
ESD24VS2U  
Clamping voltage according to ISO 7637-2: Pulse 1  
Ri = 10 Ohm, td = 2 ms, 5000 pulses  
Open circuit voltage: -50 V  
With connected diode: -34.8 V  
2011-06-17  
6
ESD24VS2U  
Clamping voltage according to ISO 7637-2: Pulse 2a  
Ri = 10 Ohm, td = 2 us, 4000 pulses, 60 min  
With connected diode: 36.0 V  
Open circuit voltage: 125 V  
2011-06-17  
7
ESD24VS2U  
Clamping voltage according to ISO 7637-2: Pulse 3  
Ri = 50 Ohm, td = 100 ns, 10 min  
Open circuit voltage: 800 V  
With connected diode: 40.0 V  
2011-06-17  
8
Package SOT23  
ESD24VS2U  
Package Outline  
0.1  
1
0.1 MAX.  
0.1  
2.9  
B
3
1
2
1)  
+0.1  
0.4  
A
-0.05  
0.08...0.15  
0...8˚  
C
0.95  
1.9  
0.25 B C  
1) Lead width can be 0.6 max. in dambar area  
M
M
0.2  
A
Foot Print  
0.8  
0.8  
1.2  
Marking Layout (Example)  
Manufacturer  
2005, June  
Date code (YM)  
EH  
s
Pin 1  
BCW66  
Type code  
Standard Packing  
Reel ø180 mm = 3.000 Pieces/Reel  
Reel ø330 mm = 10.000 Pieces/Reel  
4
0.2  
0.9  
1.15  
3.15  
Pin 1  
2011-06-17  
9
ESD24VS2U  
Edition 2009-11-16  
Published by  
Infineon Technologies AG  
81726 Munich, Germany  
2009 Infineon Technologies AG  
All Rights Reserved.  
Legal Disclaimer  
The information given in this document shall in no event be regarded as a guarantee  
of conditions or characteristics. With respect to any examples or hints given herein,  
any typical values stated herein and/or any information regarding the application of  
the device, Infineon Technologies hereby disclaims any and all warranties and  
liabilities of any kind, including without limitation, warranties of non-infringement of  
intellectual property rights of any third party.  
Information  
For further information on technology, delivery terms and conditions and prices,  
please contact the nearest Infineon Technologies Office (<www.infineon.com>).  
Warnings  
Due to technical requirements, components may contain dangerous substances.  
For information on the types in question, please contact the nearest Infineon  
Technologies Office.  
Infineon Technologies components may be used in life-support devices or systems  
only with the express written approval of Infineon Technologies, if a failure of such  
components can reasonably be expected to cause the failure of that life-support  
device or system or to affect the safety or effectiveness of that device or system.  
Life support devices or systems are intended to be implanted in the human body or  
to support and/or maintain and sustain and/or protect human life. If they fail, it is  
reasonable to assume that the health of the user or other persons may be  
endangered.  
2011-06-17  
10  

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