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High Surge High Voltage Ceramic Transient Voltage Suppressors 3225 MLV Chip Multilayer Varistors MVR1210-431G 1210 431V

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Aolittel Technology Co.,Ltd

High Surge High Voltage Ceramic Transient Voltage Suppressors 3225 MLV Chip Multilayer Varistors MVR1210-431G 1210 431V

Country/Region china
City & Province dongguan guangdong
Categories Electrical Plugs & Sockets
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Product Details

 

High Surge High Voltage Ceramic Transient Voltage Suppressors 3225 MLV Chip Multilayer Varistors MVR1210-431G 1210 431V

 

 

Description

 

Multilayer Chip Varistors (MLV) are Transient Voltage Suppressors (TVS) which manufactured from semicon ductingceramics by the highly advanced multilayer formation technologies, which can offer rugged protection, excellent transient energy absorption and internal heat dissipation. The devices are leadless chip form, eliminating lead inductance and guaranteeing a faster speed of response time of less than 0.5ns, which makes the m fast enough to ensure reliable protection against ESD pulse and other specific transient events. These transient suppression devices are significantly smaller footprints and lower profiles than traditional zener diodes or radial MOVs.

 

Sizes  ApplicationStandardEnergy Level
1206, 1210, 1812, 2220, 3220AutomotiveAEC-Q200Load Dump: 1.5 - 50 J (10 times)
1206, 1210, 1812, 2220Industrial ControlIEC61000-4-5Surge Current: 3000A (8/20 µs)
1210, 1812, 2220, 3220Lighting & Power SuppliesIEC61000-4-5Breakdown Voltage: 470V / Surge: 800A

 

 

 

Size(mm)

 

TypeLength(L)Width(W)High(H)Termination(L1)
12103.20±0.202.50±0.201.40(max)0.40±0.20

 

 

Electrical Performances

 

Part
Number
Working
Breakdown
Clamping
Peak Current
Voltage
Voltage
Voltage
AC
DC
@ 1mA DC
8/20uS
8/20uS(A) Ip(MAX)
VAC
VDC
VB
VC
0603
0805
1206
1210
1812
2220
3220
MVR1210-3R0G
1.4
2
3
2.4~3.6
9
20
 
 
 
 
 
 
MVR1210-5R0G
2.4
3.3
5
4.0~6.0
12
20
60
80
 
 
 
 
MVR1210-8R0G
4
5.5
8
7.0~10.5
14
20
60
80
250
400
 
 
MVR1210-120G
7
9
12
10~14
24
20
60
80
250
400
800
 
MVR1210-180G
11
14
18
15.5~21
30
20
80
100
250
400
800
500
MVR1210-240G
14
18
24
22-27
38
20
80
100
250
500
1200
500
MVR1210-270G
17
22
27
24~30
42
20
80
100
250
500
1200
500
MVR1210-330G
20
26
33
29~36
54
20
80
100
250
500
1200
500
MVR1210-390G
24
30
39
35~42
65
20
80
100
250
500
1200
500
MVR1210-470G
28
36
47
42~52
77
20
80
100
250
500
1200
500
MVR1210-560G
35
45
56
50~62
90
 
80
100
250
500
1200
500
MVR1210-680G
40
56
68
60~75
110
 
 
100
250
500
1200
500
MVR1210-820G
50
65
82
73~91
135
 
 
80
200
300
800
500
MVR1210-101G
60
85
100
90~110
165
 
 
80
200
300
800
500
MVR1210-121G
75
100
120
108~132
200
 
 
 
200
300
500
500
MVR1210-151G
95
125
150
135~165
250
 
 
 
 
300
500
500
MVR1210-181G
115
150
180
162~198
300
 
 
 
 
 
500
500
MVR1210-201G
130
170
205
184~226
340
 
 
 
 
 
 
500
MVR1210-221G
140
180
220
198~242
360
 
 
 
 
 
 
500
MVR1210-241G
150
200
240
216~264
395
 
 
 
 
 
 
500
MVR1210-271G
175
225
270
243~297
455
 
 
 
 
 
 
500
MVR1210-361G
230
300
360
324~396
595
 
 
 
 
 
 
500
MVR1210-391G
250
320
390
351~429
650
 
 
 
 
 
 
500
MVR1210-431G
275
350
430
387~473
710
 
 
 
 
 
 
400
MVR1210-471G
300
385
470
423~517
775
 
 
 
 
 
 
400

 

 

Features & Benefits

 

• Full range from 0402 to 3220 series

• Bidirectional clamping, high energy

• Suitable for ESD Protection

• Low capacitance design (2.5pf) for fast data transmission

• Array type design

• Very low leakage current

• Good solderability

 • Surface mount form factor

• Operating ambient temperature of:

• Short response time

• AEC-Q200 grades available

• Operating voltage (up to 300VAC/385VDC)

• Compact footprint

• High voltage and current surge withstanding capability

• Low clamping Voltage

• Low leakage current 

 

 

Applications

 

• Automotive electronics

• Telecommunications infrastructure

• I/O ports & controllers

• LED Lighting ballast

• Medical instruments

• Industrial & commercial power system protection

• ESD protection • Load dump and jump start protection

• Voltage surge protection

• Industrial Equipment

• Power Supplies

• Base Stations

 

 

Product Checklist

 

• What is the operating voltage of the system to be protected?

• What is the maximum transient voltage that the protected system can withstand?

• What overvoltages can the system be exposed to? Wave shape? Amplitude? Duration? Is the surge repeatable or not? How much power would be dissipated?

• What are the operational conditions of your application? Do you have a specification available?

• Does the application have size constraints? If so, what are they?

 

 

Information for Designer

 

When selecting the TVS for designing within the circuit, some characteristic parameter should be considered carefully to meet the circuit condition. The following guideline are recommended.

1. The surge handling ability of the selected TVS should meet the need of dissipating the expected transient surge current of the protected circuit.

2. The clamping voltage of the selected TVS should be less than the maximum allowed operating voltage of the protected circuit.

3. In high speed data transmission situation. the capacitance of the selected TVS should be considered.

4. The special requests of the TVS’s capacitance such as ESD prevention are available, please contact with us.

5. While choosing the TVS, the working voltage of the TVS should be greater than or equal to the normal operating voltage of the circuit.

6. Protection Principle : When the voltage increase above the threshold of the varistor, the suppressor draws a rapidly increasing current. The the overvoltage is considerably attenuated.

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