CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating and operation of the
device at these or any other conditions above those indicated in the operational sections of this specification is not implied.
Device Ratings and Specifications
MAXIMUM RATING (85
o
C)
CONTINUOUS
RMS
VOLTS
DEVICE
MODEL
NUMBER
BRANDING
7V130
10V130
14V130
20V130
7V140
10V140
14V140
20V140
7V150
10V150
14V150
20V150
7V175
10V175
14V175
20V175
7V230
10V230
14V230
20V230
V
M(AC)
(V)
130
130
130
130
140
140
140
140
150
150
150
150
175
175
175
175
230
230
230
230
DC
VOLTS
V
M(DC)
(V)
170
170
170
170
180
180
180
180
200
200
200
200
225
225
225
225
300
300
300
300
ENERGY
2ms
W
TM
(J)
12.5
25
50
100
13.5
27.5
55
110
15
30
60
120
17
35
70
135
20
42
80
160
TRANSIENT
PEAK CURRENT
8 x 20µs
I
TM
I
TM
2 x PULSE 1 x PULSE
(A)
1200
2500
4500
6500
1200
2500
4500
6500
1200
2500
4500
6500
1200
2500
4500
6500
1200
2500
4500
6500
(A)
1750
3500
6000
10000
1750
3500
6000
10000
1750
3500
6000
10000
1750
3500
6000
10000
1750
3500
6000
10000
184
184
184
184
200
200
200
200
216
216
216
216
243
243
243
243
324
324
324
324
SPECIFICATIONS (25
o
C)
VARISTOR
VOLTAGE AT 1mA
DC TEST CURRENT
V
NOM
MIN
(V)
226
226
226
226
240
240
240
240
264
264
264
264
297
297
297
297
396
396
396
396
V
NOM
MAX
MAXIMUM
CLAMPING
VOLTAGE 8 x 20µs
V
C
(V)
340
340
340
340
360
360
360
360
395
395
395
395
455
455
455
455
595
595
595
595
I
PK
(A)
10
25
50
100
10
25
50
100
10
25
50
100
10
25
50
100
10
25
50
100
TYPICAL
CAPACI-
TANCE
f = 1MHz
(pF)
180
450
1000
1900
160
400
900
1750
150
360
800
1600
130
350
700
1400
100
250
550
1100
MODEL
NUMBER
V07E130
V10E130
V14E130
V20E130
V07E140
V10E140
V14E140
V20E140
V07E150
V10E150
V14E150
V20E150
V07E175
V10E175
V14E175
V20E175
V07E230
V10E230
V14E230
V20E230
4-6
UltraMOV Series
Device Ratings and Specifications
CONTINUOUS
RMS
VOLTS
DEVICE
MODEL
NUMBER
BRANDING
7V250
10V250
14V250
20V250
7V275
10V275
14V275
20V275
7V300
10V300
14V300
20V300
7V320
10V320
14V320
20V320
7V385
10V385
14V385
20V385
7V420
10V420
14V420
20V420
7V440
10V440
14V440
20V440
7V460
10V460
14V460
20V460
10V510
14V510
20V510
V
M(AC)
(V)
250
250
250
250
275
275
275
275
300
300
300
300
320
320
320
320
385
385
385
385
420
420
420
420
440
440
440
440
460
460
460
460
510
510
510
DC
VOLTS
V
M(DC)
(V)
320
320
320
320
350
350
350
350
385
385
385
385
420
420
420
420
505
505
505
505
560
560
560
560
585
585
585
585
615
615
615
615
670
670
670
ENERGY
2ms
W
TM
(J)
25
50
100
170
28
55
110
190
30
60
125
250
32
67
136
273
36
75
150
300
40
80
160
320
44
85
170
340
48
90
180
360
80
165
325
(Continued)
SPECIFICATIONS (25
o
C)
VARISTOR
VOLTAGE AT 1mA
DC TEST CURRENT
V
NOM
MIN
(V)
351
351
351
351
387
387
387
387
423
423
423
423
459
459
459
459
558
558
558
558
612
612
612
612
643
643
643
643
675
675
675
675
738
738
738
429
429
429
429
473
473
473
473
517
517
517
517
561
561
561
561
682
682
682
682
748
748
748
748
787
787
787
787
825
825
825
825
902
902
902
V
NOM
MAX
MAXIMUM
CLAMPING
VOLTAGE 8 x 20µs
V
C
(V)
650
650
650
650
710
710
710
710
775
775
775
775
840
840
840
840
1025
1025
1025
1025
1120
1120
1120
1120
1180
1180
1180
1180
1240
1240
1240
1240
1355
1355
1355
I
PK
(A)
10
25
50
100
10
25
50
100
10
25
50
100
10
25
50
100
10
25
50
100
10
25
50
100
10
25
50
100
10
25
50
100
25
50
100
TYPICAL
CAPACI-
TANCE
f = 1MHz
(pF)
90
220
500
1000
80
200
450
900
70
180
400
800
65
170
380
750
60
160
360
700
55
140
300
600
50
130
260
500
45
120
220
400
110
200
350
MAXIMUM RATING (85
o
C)
TRANSIENT
PEAK CURRENT
8 x 20µs
I
TM
I
TM
2 x PULSE 1 x PULSE
(A)
1200
2500
4500
6500
1200
2500
4500
6500
1200
2500
4500
6500
1200
2500
4500
6500
1200
2500
4500
6500
1200
2500
4500
6500
1200
2500
4500
6500
1200
2500
4500
6500
2500
4500
6500
(A)
1750
3500
6000
10000
1750
3500
6000
10000
1750
3500
6000
10000
1750
3500
6000
10000
1750
3500
6000
10000
1750
3500
6000
10000
1750
3500
6000
10000
1750
3500
6000
10000
3500
6000
10000
MODEL
NUMBER
V07E250
V10E250
V14E250
V20E250
V07E275
V10E275
V14E275
V20E275
V07E300
V10E300
V14E300
V20E300
V07E320
V10E320
V14E320
V20E320
V07E385
V10E385
V14E385
V20E385
V07E420
V10E420
V14E420
V20E420
V07E440
V10E440
V14E440
V20E440
V07E460
V10E460
V14E460
V20E460
V10E510
V14E510
V20E510
4-7
UltraMOV Series
Device Ratings and Specifications
CONTINUOUS
RMS
VOLTS
DEVICE
MODEL
NUMBER
BRANDING
10V550
14V550
20V550
10V625
14V625
20V625
V
M(AC)
(V)
550
550
550
625
625
625
DC
VOLTS
V
M(DC)
(V)
745
745
745
825
825
825
ENERGY
2ms
W
TM
(J)
90
180
360
100
200
400
(Continued)
SPECIFICATIONS (25
o
C)
VARISTOR
VOLTAGE AT 1mA
DC TEST CURRENT
V
NOM
MIN
(V)
901
901
901
900
900
900
1001
1001
1001
1100
1100
1100
V
NOM
MAX
MAXIMUM
CLAMPING
VOLTAGE 8 x 20µs
V
C
(V)
1500
1500
1500
1650
1650
1650
I
PK
(A)
25
50
100
25
50
100
TYPICAL
CAPACI-
TANCE
f = 1MHz
(pF)
100
180
300
90
160
250
MAXIMUM RATING (85
o
C)
TRANSIENT
PEAK CURRENT
8 x 20µs
I
TM
I
TM
2 x PULSE 1 x PULSE
(A)
2500
4500
6500
2500
4500
6500
(A)
3500
6000
10000
3500
6000
10000
MODEL
NUMBER
V10E550
V14E550
V20E550
V10E625
V14E625
V20E625
NOTE:
1. Average power dissipation of transients should not exceed 0.25W, 0.4W, 0.6W and 1.0W for 7mm, 10mm, 14mm, and 20mm model sizes,
respectively.
Power Dissipation Ratings
Should transients occur in rapid succession, the average
power dissipation is the energy (watt-seconds) per pulse
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
device. Furthermore, the operating values need to be
derated at high temperatures as shown in Figure 1. Because
varistors can only dissipate a relatively small amount of
average power they are, therefore, not suitable for repetitive
applications that involve substantial amounts of average
Previously, when calculating the altitude by air pressure, the microcontroller was used to achieve automatic zeroing.
https://en.eeworld.com/bbs/thread-1091978-1-1.html
In fact, LPS22HH itself has an ...
[i=s]This post was last edited by gmchen on 2022-2-17 14:29[/i]1. Mission
Design and make a simple spectrum analyzer. The local oscillator of the spectrum analyzer is made of a phase-locked loop. The ...
Teach you how to learn STM32-M4 series video : https://training.eeworld.com.cn/course/4931This video will guide you to learn the various functions of STM32F4 from the basics to the advanced, and start...
Today I took some time to dig out an unused STM32F030Disco core board. Here is the packaging of this core board:Open the package and take out the core board. The package also comes with a perforated b...
[i=s]This post was last edited by yangjiaxu on 2020-9-6 09:54[/i]The mysterious express arrived yesterday. After all, I haven’t shopped online for a long time, so I thought it was a surprise. Sure eno...
With the rapid development of global industrialization, the application of instruments in various industries is becoming more and more extensive, especially the integrated electromagnetic flowmeter, ...[Details]
In the previous article, our Linux was able to boot, but when identifying NAND, it failed to obtain the clock source, resulting in the failure of subsequent partitioning.
We found from t...[Details]
As LED backlight sources with higher lifespan and production technology requirements are gradually introduced into the TV field, TV manufacturers have also begun to vigorously develop this technolo...[Details]
Liquid crystal display (LCD) is a commonly used display screen that is often used in many electronic products to display information in text or image format. LCD is used to display characters such as...[Details]
The fastest unicorn born this year
Recently, a piece of news shocked the entire AI circle.
According to the Financial Times, citing people familiar with the matter, World Labs, founde...[Details]
Shortly after the elderly activating their social security cards sparked public outrage, another piece of news about an elderly man who was refused to pay his medical insurance bill in cash in the ...[Details]
This article will introduce solutions to software development issues in multi-device environments that require coordinated operation . The evolution of architecture and in-vehicle software The a...[Details]
OFweek Cup · OFweek 2023 China
Robot
Industry Annual Selection (abbreviated as OFweek Robot Awards 2023) is jointly organized by OFweek, China's high-tech industry portal, and its authorita...[Details]
1 Introduction
RFID (Radio Frequency Identification Technology) has shown great development potential and application space due to its characteristics of high-speed moving object recognition, ...[Details]
Since the launch of the ubiquitous power Internet of Things construction, the company has acted quickly and actively explored and practiced. All work is proceeding as planned and key tasks are bein...[Details]
Shell has partnered with charging provider IONITY to build the first fast charging station in France with a charging power of up to 350KW.
By 2020, 400 such charging stations wil...[Details]
In mid-February, Intel acquired Tower Semiconductor for $4.5 billion, bringing this wave of semiconductor mergers and acquisitions to a high profile. The news was sudden, but not surprising. In the e...[Details]
Recently, Musk, known as "Iron Man", suddenly announced that he was planning to privatize Tesla at a price of $420 per share.
The reason is that they feel that the ups and downs of the sto...[Details]
From the design to the purchase of electronic products, passive components play a supporting role, accounting for about 10% of the material cost of the entire electronic product, but there ...[Details]
For vehicle-mounted controllers, there are usually strict standards for CAN cycle fluctuations. The national standards are as follows. Based on the national standards, each OEM has slight diffe...[Details]