10D390K [LEIDITECH]
Metal Oxide Varistors;型号: | 10D390K |
厂家: | Leiditech |
描述: | Metal Oxide Varistors |
文件: | 总5页 (文件大小:1151K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
Metal Oxide Varistors
Varistor>10D180~182KJ Series
Applications
• Transistor, diode, IC, thyristor or triac semiconductor protection.
• Surge protection in consumer electronics.
• Surge protection in industrial electronics.
• Surge protection in electronic home appliances, gas and
petroleum appliances.
MOV
• Relay and electromagnetic valve surge absorption.
Features
• Wide operating voltage (V1mA) range from 8V to 1800V.
• Fast responding to transient over-voltage.
• Large absorbing transient energy capability.
• Low clamping ratio and no following-on current.
General Characteristics
General Information
The MOV-10DxxxK Series of 10 mm radial leaded varistor devices
protects against overvoltage transients such as lightning, power
contact and power induction. The metal oxide varistors offer a
choice of varistor voltages from 18 V to 1800 V and Vrms voltages
from 11 V to 1000 V.
The devices have a high current handling, high energy absorption
capability and fast response times to protect against transient
faults up to rated limits.
No Radioactive Material
Storage Temperature: -55ºC to +125ºC
Operating Temperature: -55ºC to +85ºC
Body: Nickel Plated
Leads: Surface-mount, Axial Devices: Tin
Plated
Devices with No Leads: Nickel Plated
Packaging Information
Part Number
10D
Component package
10.0
Quantity
500
Packaging Option
Packaging Specification
BOX
1000
Product Name
1
0
D
4
7
1
K
Varistor Voltage
Tolerance
Disc Diameter
10=10MM
Type
Nominal Varistor Voltage
471=47*101V
D: Disk
K = 10 %
S: Square
All data is subject to change,Please check our data sheets at www.leiditech.com for updates.
MOV 01
(@ TA = 25 °C Unless Otherwise Noted)
Electriacl Characteristics
Maximum
Clamping
Voltage
Typical
Capacitance
(Reference)
Maximum
Allowable Voltage
Withstanding
Surge Current
Maximum Energy Rated
Type Number
Varistor Voltage
(10/1000μs)
Power
I(A)
I(A)
(J)
(J)
Standard
High Surge
VAC(V) VDC(V)
V1mA(V)
IP(A) VC(V)
(W)
@1KHz(pf)
Standard High Surge Standard High Surge
.6)
10D180K
10D220K
10D270K
10D330K
10D390K
10D470K
10D560K
10D680K
10D820K
10D101K
10D121K
10D151K
10D181K
10D201K
10D221K
10D241K
10D271K
10D301K
10D331K
10D361K
10D391K
10D431K
10D471K
10D511K
10D561K
10D621K
10D681K
10D751K
10D781K
10D821K
10D911K
10D102K
10D112K
10D182K
10D180KJ
10D220KJ
10D270KJ
10D330KJ
10D390KJ
10D470KJ
10D560KJ
10D680KJ
10D820KJ
10D101KJ
10D121KJ
10D151KJ
10D181KJ
10D201KJ
10D221KJ
10D241KJ
10D271KJ
10D301KJ
10D331KJ
10D361KJ
10D391KJ
10D431KJ
10D471KJ
10D511KJ
10D561KJ
10D621KJ
10D681KJ
10D751KJ
10D781KJ
10D821KJ
10D911KJ
10D102KJ
10D112KJ
10D182KJ
11
14
18
18(15~21
5
36
500
500
1000
1000
1000
1000
1000
1000
1000
1000
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
3500
2.1
2.5
3.0
5.0
0.05
0.05
0.05
0.05
0.05
0.05
0.05
0.05
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
0.4
5600
4500
3700
3000
2400
2100
1800
1500
1200
1000
830
670
560
500
450
420
370
330
300
280
260
230
210
200
180
160
150
130
130
120
110
14
22(19.5~26)
27(24~30)
5
43
17
22
5
53
500
3.0
6.0
20
26
33(29.5~36.5)
39(35~43)
5
66
500
4.0
7.0
25
31
5
77
500
4.6
9.0
30
38
47(42~54)
5
93
500
5.5
11.0
35
45
56(50~62)
5
100
135
135
165
200
250
300
340
360
395
455
500
550
595
650
710
775
845
925
500
7.0
13.0
15.0
17.0
18.0
21.0
25.0
30.0
35.0
39.0
42.0
49.0
54.0
58.0
65.0
70.0
80.0
85.0
90.0
92.0
95.0
98.0
100.0
105.0
110.0
130.0
140.0
155.0
250.0
40
56
68(61~75)
5
500
8.2
50
65
82(74~90)
25
25
25
25
25
25
25
25
25
25
25
25
25
25
25
25
25
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
12.0
15.0
18.0
22.0
27.0
30.0
32.0
35.0
40.0
40.0
40.0
43.0
47.0
60.0
65.0
70.0
70.0
70.0
70.0
70.0
80.0
85.0
93.0
102.0
115.0
133.0
60
85
100(90~110)
120(108~132)
150(135~165)
180(162~198)
200(180~220)
220(198~242)
240(216~264)
270(243~297)
300(270~330)
330(297~363)
360(324~396)
390(351~429)
430(387~473)
470(423~517)
510(459~561)
560(504~616)
620(558~682)
680(612~748)
750(675~825)
780(702~858)
820(738~902)
910(819~1001)
1000(900~1100)
1100(990~1210)
75
100
125
150
170
180
200
225
250
275
300
320
350
385
415
460
505
560
615
640
670
745
825
895
95
115
130
140
150
175
190
210
230
250
275
300
320
350
385
420
460
485
510
550
625
680
25 1025 2500
25 1120 2500
25 1240 2500
25 1290 2500
25 1355 2500
25 1500 2500
25 1650 2500
25 1815 2500
100
90
1000
1465 1800(1620~1980) 25 2970 2500
70
All data is subject to change,Please check our data sheets at www.leiditech.com for updates.
MOV 02
Electrical Rating
ltem
Test Condition / Description
Requirement
The voltage between two terminals with the specified measuring
current 1mA.DC applied is call Vb.
Varistor Voltage
Maximum
Allowable
Voltage
The recommended maximum sine wave voltage (RMS) or the
maximum DC voltage can be applied continuously.
To meet
the specified
value
The maximum average power that can be applied within the specified
ambient temperature.
Rated Wattaget
IEnergy
The maximum energy within the varistor voltage change of ±10% when one
impulse of10/1000μsec. or 2 msec. is applied.
Withstanding
Surge
The maximum current within the varistor voltage change of ±10% with the
standard impulse current (8/20μsec.) applied one time.
Current
The change of Vb shall be measured after the impulse listed below is
applied 10,000 times continuously with the interval of ten seconds at room
temperature.
180K to 680K
820K to 751K
180K to 680K
820K to 821K
180K to 680K
820K to 182K
180K to 680K
820K to 182K
180K to 680K
820K to 182K
10A (8/20μsec.)
20A (8/20μsec.)
25A (8/20μsec.)
50A (8/20μsec.)
50A (8/20μsec.)
100A (8/20μsec.)
75A (8/20μsec.)
150A (8/20μsec.)
100A (8/20μsec.)
200A (8/20μsec.)
5D series
7Dseries
Vb
_
<+10%
Vb
Surge Life
10D series
14D series
20D series
All data is subject to change,Please check our data sheets at www.leiditech.com for updates.
MOV 03
Current Energy and Power Dissipation Ratings
device. The operating values of a MOV need to be derated
at high temperatures as shown above. Because varistors
only dissipate a relatively small amount of average power
they are not suitable for repetitive applications that involve
substantial amounts of average power dissipation.
Should transients occur in rapid succession, the average
times the number of pulses per second. The power so
developed must be within the specifications shown on the
Device Ratings and Specifications Table for the specific
Figure 1A - Power Derating for Epoxy Coated
Figure 1B - Power Derating for Pholenic Coated
100
90
80
70
60
50
40
30
20
10
0
100
90
80
70
60
50
40
30
20
10
0
-55 50
60
70
80
90 100 110 120 130 140 150
o
-55
50
60
70
80
90 100 110 120 130 140 150
o
AMBIENTTEMPERATURE ( C)
AMBIENTTEMPERATURE ( C)
Peak Pulse CurrentTestWaveform
100
90
01
T1
T2
50
Example
8µ
µs Current Waveform:
1
20µ
2
10
O
T
TIME
1
T
1
Figure 2
T
2
All data is subject to change,Please check our data sheets at www.leiditech.com for updates.
MOV 04
Package Dimensions
H1
L1
K<3.0
K<3.0
d1
d
D1
D1
Unit:mm
TABLE 2
TABLE 1
Model
180K
220K
270K
330K
390K
470K
560K
680K
820K
101K
121K
151K
181K
201K
T(max.)
4.5
Model
221K
241K
271K
301K
331K
361K
391K
431K
471K
511K
561K
621K
681K
751K
T(max.)
4.5
Symbol
H(max.)
H1(max.)
L(min.)
Dimensions
12.0
4.6
4.6
13.5
4.7
4.9
20.0
4.9
5.0
L1(min.)
D(max.)
D1(±0.8)
T(max.)
d(±0.05)
d1(±0.4)
15.0
4.8
5.1
9.0
4.9
5.2
7.5
5.0
5.4
TABLE 2
0.7
5.2
5.7
4.1
6.0
1.2
4.3
6.2
4.5
6.5
4.8
6.4
4.3
6.5
4.4
6.5
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SHANGHAI LEIDITECH ELECTRONICS CO.,LTD
Tel: +86- 021 50828806
Fax: +86- 021 50477059-8008
Email: sale1@leiditech.com
Website: http://www.leiditech.com
All data is subject to change,Please check our data sheets at www.leiditech.com for updates.
MOV 05
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