MLVA02V05C064-R [COOPER]
Multilayer varistor ESD suppressor;型号: | MLVA02V05C064-R |
厂家: | COOPER BUSSMANN, INC. |
描述: | Multilayer varistor ESD suppressor |
文件: | 总5页 (文件大小:386K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
Technical Data 10493
Effective February 2016
MLVA-R
Multilayer varistor ESD suppressor
Applications
HALOGEN
•
ESD port protection for mobile/smart phones
HF
Pb
FREE
•
Game console ESD port protection
•
Set-top-boxes
•
Tablets, notebooks, netbooks, laptops
•
Media players
•
Digital cameras
•
Medical equipment
•
Computers and peripherals ESD port protection
•
Consumer electronics
Product description
•
Three compact footprint options 0201
(0603 metric), 0402 (1005 metric), and
0603 (1608 metric)
•
Zinc oxide ceramic chip
•
Provides Electro Static Discharge (ESD)
protection with fast response time (<1 ns)
allowing equipment to pass IEC 61000-4-2
Level 4 test
•
0402 and 0603 meet IEC 61000-4-4 and
61000-4-5
•
Compact footprint utilizes less board space
•
Low and stable leakage current reduces
power consumption
•
Low clamping voltage
•
Wide operating voltage range: 5.5 Vdc to
26 Vdc
•
Halogen free, lead free, RoHS compliant
MLVA-R
Technical Data 10493
Effective February 2016
Multilayer varistor ESD suppressor
Product specifications
Working voltage1, 2
Varistor
voltage3
(V)
Clamping
voltage4
(V)
Peak
current6
(A)
Transient
energy7
(J)
Capacitance5
(pF) typical
Part number8
Package size
(Vrms
)
(VDC)
MLVA02V05C033-R
MLVA02V05C047-R
MLVA02V05C064-R
MLVA04V05C270-R
MLVA04V09C130-R
MLVA04V18C085-R
MLVA06V05C270-R
MLVA06V09C210-R
MLVA06V18C150-R
MLVA06V26C100-R
0201 (0603 metric)
0201 (0603 metric)
0201 (0603 metric)
0402 (1005 metric)
0402 (1005 metric)
0402 (1005 metric)
0603 (1608 metric)
0603 (1608 metric)
0603 (1608 metric)
0603 (1608 metric)
–
5.5
5.5
5.5
5.5
9
8–14
30
26
26
28
41
54
31
41
54
70
33
–
–
–
8–14
47
–
–
–
8–14
64
–
–
4
8–18
270
130
85
20
20
20
30
30
30
30
0.05
0.05
0.05
0.1
0.1
0.1
0.1
7
11.5–21.5
23–33
8–18
14
4
18
5.5
9
270
210
150
100
7
11.5–21.5
23–33
32–42
14
20
18
26
1. Working voltage Vrms: Maximum AC operating voltage the device can maintain and not exceed
10 μA leakage current.
6. Peak current: Maximum peak current which may be applied with 8/20 μs waveform without
device failure.
2. Working voltage VDC: Maximum DC operating voltage the device can maintain and not exceed
10 μA leakage current
7. Transient energy: Maximum energy which may be dissipated with 10/1000 μs waveform without
device failure.
3. Varistor voltage: Voltage across the device measured at 1 mA DC current
4. Clamping voltage: Maximum peak voltage across the device with 8/20 μs waveform and
1 A pulse current
8. Part Number Definition: MLVAxxVxxCxxx
MLVA xx= Product code and size
Vxx= Working DC voltage
5. Capacitance test parameters: Zero volt bias, 1.0 MHz, 1.0 Vrms
Cxxx= Capacitance value
-R suffix= RoHS compliant.
Dimensions—mm
Part number
A
B
C
D
E
F
G
H
MLVA02V05C033-R
MLVA02V05C047-R
MLVA02V05C064-R
MLVA04V05C270-R
MLVA04V09C130-R
MLVA04V18C085-R
MLVA06V05C270-R
MLVA06V09C210-R
MLVA06V18C150-R
MLVA06V26C100-R
0.60 0.05
0.60 0.05
0.60 0.05
0.95 0.15
0.95 0.15
0.95 0.15
1.60 0.15
1.60 0.15
1.60 0.15
1.60 0.15
0.30 0.05
0.30 0.05
0.30 0.05
0.50 0.10
0.50 0.10
0.50 0.10
0.80 0.10
0.80 0.10
0.80 0.10
0.80 0.10
0.30 0.05
0.30 0.05
0.30 0.05
0.50 0.10
0.50 0.10
0.50 0.10
0.80 0.10
0.80 0.10
0.80 0.10
0.80 0.10
0.20 0.10
0.20 0.10
0.20 0.10
0.25 0.15
0.25 0.15
0.25 0.15
0.30 0.20
0.30 0.20
0.30 0.20
0.30 0.20
0.30
0.30
0.30
0.51
0.51
0.51
0.50
0.50
0.50
0.50
0.80
0.80
0.80
1.73
1.73
1.73
2.54
2.54
2.54
2.54
0.25
0.25
0.25
0.61
0.61
0.61
1.02
1.02
1.02
1.02
0.30
0.30
0.30
0.51
0.51
0.51
0.76
0.76
0.76
0.76
www.eaton.com/elx
2
MLVA-R
Technical Data 10493
Effective February 2016
Multilayer varistor ESD suppressor
Environmental data
Operating temperature: - 40 °C to +85 °C
Storage temperature (component): +5 °C to +40 °C
Full load volatge: +85 °C at working voltage for 1000 hours
Varistor voltage typical < 10% change
Thermal shock: 5 cycles, - 40 °C to +85 °C, 30 minute dwell time
Varistor voltage typical < 10% change
Humidity bias: +40 °C, 90% relative humidity, at working voltage for 1000 hours
Varistor voltage typical < 10% change
Resistance to solder heat: 260 °C 5 °C for 10 seconds 1 second
Packaging information—mm
(Drawing not to scale)
Supplied in tape and reel packaging
15 000 parts per 7.0” diameter reel: MLVA02V05C033-R, MLVA02V05C047-R, MLVA02V05C064-R
10 000 parts per 7.0” diameter reel: MLVA04V05C270-R, MLVA04V09C130-R, MLVA04V18C085-R
Part number
A
B
C
MLVA02V05C033-R
MLVA02V05C047-R
MLVA02V05C064-R
MLVA04V05C270-R
MLVA04V09C130-R
MLVA04V18C085-R
0.37
0.37
0.37
0.58
0.58
0.58
0.69
0.69
0.69
1.20
1.20
1.20
0.42
0.42
0.42
0.60
0.60
0.60
Supplied in tape and reel packaging
4 000 parts per 7.0” diameter reel
MLVA06V05C270-R, MLVA06V09C210-R, MLVA06V18C150-R, MLVA06V26C100-R
www.eaton.com/elx
3
MLVA-R
Technical Data 10493
Effective February 2016
Multilayer varistor ESD suppressor
Wave solder profile
Reflow soldering not recommended
tp
Tp
First Wave
Second Wave
Tsmax
Tstyp
Tsmin
Preheat area
Cool down area
Time
Reference EN 61760-1:2006
Profile Feature
Standard SnPb Solder
Lead (Pb) Free Solder
100°C
Preheat
• Temperature min. (T
)
100°C
smin
• Temperature typ. (T
)
120°C
120°C
styp
• Temperature max. (T
)
130°C
130°C
smax
) (t )
• Time (T
smin
to T
70 seconds
150°C max.
235°C – 260°C
70 seconds
150°C max.
250°C – 260°C
smax
s
D
preheat to max Temperature
Peak temperature (T )*
P
Time at peak temperature (t )
p
10 seconds max
5 seconds max each wave
10 seconds max
5 seconds max each wave
Ramp-down rate
~ 2 K/s min
~3.5 K/s typ
~5 K/s max
~ 2 K/s min
~3.5 K/s typ
~5 K/s max
Time 25°C to 25°C
Manual solder
4 minutes
4 minutes
350°C, 4-5 seconds (by soldering iron), generally manual hand soldering is not recommended.
www.eaton.com/elx
4
MLVA-R
Technical Data 10493
Effective February 2016
Multilayer varistor ESD suppressor
Solder reflow profile
TP
Table 1 - Standard SnPb Solder (T )
c
TC -5°C
tP
Volume
mm3
Volume
Max. Ramp Up Rate = 3°C/s
Max. Ramp Down Rate = 6°C/s
Package
mm3
Thickness
<350
≥350
TL
<2.5mm)
235°C
220°C
220°C
220°C
Preheat
t
≥2.5mm
Tsmax
Table 2 - Lead (Pb) Free Solder (T )
c
Volume
Volume
Volume
mm3
Package
mm3
mm3
Tsmin
Thickness
<350
350 - 2000
>2000
ts
<1.6mm
260°C
260°C
250°C
260°C
250°C
245°C
260°C
245°C
245°C
1.6 – 2.5mm
>2.5mm
25°C
Time 25°C to Peak
Time
Reference JDEC J-STD-020D
Profile Feature
Standard SnPb Solder
100°C
Lead (Pb) Free Solder
150°C
Preheat and Soak • Temperature min. (T
)
smin
• Temperature max. (T
)
150°C
200°C
smax
• Time (T
smin
to T
) (t )
smax
60-120 Seconds
3°C/ Second Max.
60-120 Seconds
3°C/ Second Max.
s
Average ramp up rate T
smax
to T
p
Liquidous temperature (Tl)
Time at liquidous (t )
183°C
60-150 Seconds
217°C
60-150 Seconds
L
Peak package body temperature (T )*
Table 1
Table 2
P
Time (t )** within 5 °C of the specified classification temperature (T )
20 Seconds**
6°C/ Second Max.
6 Minutes Max.
30 Seconds**
6°C/ Second Max.
8 Minutes Max.
p
c
Average ramp-down rate (T to T
p
)
smax
Time 25°C to Peak Temperature
* Tolerance for peak profile temperature (T ) is defined as a supplier minimum and a user maximum.
p
** Tolerance for time at peak profile temperature (t ) is defined as a supplier minimum and a user maximum.
p
Life Support Policy: Eaton does not authorize the use of any of its products for use in life support devices or systems without the express written
approval of an officer of the Company. Life support systems are devices which support or sustain life, and whose failure to perform, when properly
used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in significant injury to the user.
Eaton reserves the right, without notice, to change design or construction of any products and to discontinue or limit distribution of any products. Eaton also
reserves the right to change or update, without notice, any technical information contained in this bulletin.
Eaton
Electronics Division
1000 Eaton Boulevard
Cleveland, OH 44122
United States
www.eaton.com/elx
© 2016 Eaton
All Rights Reserved
Printed in USA
Eaton is a registered trademark.
Publication No. 10493 BU-MC16005
February 2016
All other trademarks are property
of their respective owners.
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