The following specifications shall be satisfied when the capacitors are restored to 20℃ after the rated voltage is applied for the specified
time at 125℃.
F60 to H63 (10 to 100V
dc
) : 1,000hours
HA0 to JA0 (10 to 100V
dc
) : 2,000hours
Time
KE0 to MN0 (10 to 100V
dc
) : 5,000hours
KE0 to MN0 (160 to 450V
dc
) : 2,000hours
Capacitance change
≦±30%
of the initial value
D.F. (tanδ)
≦300%
of the initial specified value
Leakage current
≦The
initial specified value
The following specifications shall be satisfied when the capacitors are restored to 20℃ after exposing them for 1,000 hours (500 hours
for 400 to 450V
dc
) at 125℃ without voltage applied. Before the measurement, the capacitor shall be preconditioned by applying voltage
according to Item 4.1 of JIS C 5101-4.
Rated voltage(V
dc
)
10 to 50V
dc
63 to 450V
dc
Capacitance change
of the initial value
≦±30%
≦±30%
of the initial value
D.F. (tanδ)
≦300%
of the initial specified value
≦300%
of the initial specified value
Leakage current
≦The
initial specified value
≦500%
of the initial specified value
Characteristics
Dissipation Factor
(tanδ)
Low Temperature
Characteristics
(Max. Impedance Ratio)
Endurance
Shelf Life
◆DIMENSIONS
[mm]
Code : A
●
Size code : F60 to MN0
Vent
(Except F60 to HA0)
φD±0.5
B±0.2
W
φD±0.5
P
C±0.2
●
Terminal
Code : G(Vibration resistant structure)
●
Size code : HA0 to MN0
Size code
Vent
(Except HA0)
0.3max.
W
F60
F80
H63
HA0
JA0
KE0
KG5
LH0
LN0
MH0
MN0
●
Terminal
0.3max.
L±0.5 (Note)
A±0.2
L±0.5
A±0.2
Note : L±0.3 for F60 and F80
: Dummy terminals
D
6.3
6.3
8
8
10
12.5
12.5
16
16
18
18
L
5.7
7.7
6.3
10.0
10.0
13.5
16.0
16.5
21.5
16.5
21.5
A
6.6
6.6
8.3
8.3
10.3
13.0
13.0
17.0
17.0
19.0
19.0
B
6.6
6.6
8.3
8.3
10.3
13.0
13.0
17.0
17.0
19.0
19.0
C
7.2
7.2
9.0
9.0
11.0
13.7
13.7
18.0
18.0
20.0
20.0
W
0.5 to 0.8
0.5 to 0.8
0.5 to 0.8
0.7 to 1.1
0.7 to 1.1
1.0 to 1.3
1.0 to 1.3
1.0 to 1.3
1.0 to 1.3
1.0 to 1.3
1.0 to 1.3
P
1.9
1.9
2.3
3.1
4.5
4.2
4.2
6.5
6.5
6.5
6.5
◆PART
NUMBERING SYSTEM
E MV H
AAA A AA AAA
M
AAA N
Supplement code
Size code
Capacitance tolerance code
Capacitance code (ex. 4.7µF:4R7,10µF:100)
Taping·Tray code
Terminal code (A, G)
Voltage code (ex. 10V:100,50V:500, 100V: 101)
Series code
Category
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
B±0.2
P
C±0.2
◆MARKING
F60 to JA0
EX) 35V47µF
74H
KE0 to MN0
EX) 16V1,000µF
47
35V
1000
16V
0V
MVH
Please refer to "Product code guide (surface mount type)"
Product specifications in this catalog are subject to change without notice.Request our product specifications before purchase and/or use. Please use our products based on the information contained in this catalog and product specifications.
108
CAT. No. E1001O
SURFACE MOUNT ALUMINUM ELECTROLYTIC CAPACITORS
AIchip
TM
High heat resistance, 125℃
-
MVH
Series
is not solvent resistant (63 to 450V
dc
).
ESR
Rated ripple
(Ω max./
current
100kHz) (mArms/125℃)
20℃ -40℃ 100kHz 120Hz
33
33
33
47
47
100
100
220
220
330
330
470
10
10
22
33
33
47
47
100
220
330
470
10
22
22
33
33
47
10
22
22
33
47
68
100
220
10
22
33
68
10
22
33
33
47
10
22
22
33
4.7
6.8
10
10
3.3
4.7
10
F80
H63
HA0
HA0
JA0
JA0
KE0
KE0
LH0
KG5
LH0
MH0
F80
H63
HA0
HA0
JA0
HA0
JA0
KE0
KG5
LH0
LN0
HA0
HA0
JA0
HA0
JA0
JA0
HA0
HA0
JA0
JA0
KE0
KG5
LH0
MN0
KE0
LH0
MH0
MN0
KE0
LH0
LN0
MH0
MN0
KG5
LN0
MH0
MN0
KE0
LH0
LN0
MH0
KG5
LH0
MN0
2.0
1.6
0.70
0.70
0.50
0.50
0.23
0.23
0.15
0.18
0.15
0.15
2.0
2.0
0.70
0.70
0.50
0.70
0.50
0.25
0.20
0.18
0.11
0.75
0.75
0.55
0.75
0.55
0.55
0.75
0.75
0.55
0.55
0.33
0.26
0.24
0.16
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
30.0
83
30.0
83
11.0
160
11.0
160
7.5
247
7.5
247
3.5
550
3.5
550
2.3
850
2.7
700
2.3
850
2.3
920
100
60
110
60
35.0
100
35.0
100
25.0
170
35.0
100
25.0
170
12.5
500
10.0
600
9.0
820
5.5 1,100
50.0
70
50.0
70
35.0
115
50.0
70
35.0
115
35.0
115
50.0
70
50.0
70
35.0
115
35.0
115
16.5
450
13.0
550
12.0
650
8.0
950
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
100
180
245
380
100
180
250
245
315
110
200
205
260
70
100
140
135
65
85
145
EMVH500ADA330MF80G
EMVH500ADA330MH63G
EMVH500□DA330MHA0G
EMVH500□DA470MHA0G
EMVH500□DA470MJA0G
EMVH500□DA101MJA0G
EMVH500□RA101MKE0S
EMVH500□RA221MKE0S
EMVH500□DA221MLH0S
EMVH500□RA331MKG5S
EMVH500□DA331MLH0S
EMVH500□DA471MMH0S
EMVH630ADA100MF80G
EMVH630ADA100MH63G
EMVH630□DA220MHA0G
EMVH630□DA330MHA0G
EMVH630□DA330MJA0G
EMVH630□DA470MHA0G
EMVH630□DA470MJA0G
EMVH630□RA101MKE0S
EMVH630□RA221MKG5S
EMVH630□DA331MLH0S
EMVH630□DA471MLN0S
EMVH800□DA100MHA0G
EMVH800□DA220MHA0G
EMVH800□DA220MJA0G
EMVH800□DA330MHA0G
EMVH800□DA330MJA0G
EMVH800□DA470MJA0G
EMVH101□DA100MHA0G
EMVH101□DA220MHA0G
EMVH101□DA220MJA0G
EMVH101□DA330MJA0G
EMVH101□RA470MKE0S
EMVH101□RA680MKG5S
EMVH101□DA101MLH0S
EMVH101□DA221MMN0S
EMVH161□RA100MKE0S
EMVH161□DA220MLH0S
EMVH161□DA330MMH0S
EMVH161□DA680MMN0S
EMVH201□RA100MKE0S
EMVH201□DA220MLH0S
EMVH201□DA330MLN0S
EMVH201□DA330MMH0S
EMVH201□DA470MMN0S
EMVH251□RA100MKG5S
EMVH251□DA220MLN0S
EMVH251□DA220MMH0S
EMVH251□DA330MMN0S
EMVH401□RA4R7MKE0S
EMVH401□DA6R8MLH0S
EMVH401□DA100MLN0S
EMVH401□DA100MMH0S
EMVH451□RA3R3MKG5S
EMVH451□DA4R7MLH0S
EMVH451□DA100MMN0S
Size
code
ESR
Rated ripple
(Ω max./
current
100kHz) (mArms/125℃)
Part No.
WV Cap
(V
dc
) (µF)
Size
code
Part No.
◆STANDARD
RATINGS
WV Cap
(V
dc
) (µF)
10
16
25
35
50
100
100
220
220
220
330
330
470
1,000
2,200
2,200
3,300
4,700
47
100
220
220
330
470
680
680
1,000
2,200
33
47
47
100
100
100
220
220
330
330
470
470
680
680
1,000
10
22
33
33
47
47
47
100
100
220
330
330
470
470
680
10
10
22
22
F80
H63
F80
H63
HA0
HA0
JA0
JA0
KE0
LH0
MH0
MH0
MN0
F60
HA0
HA0
JA0
JA0
KE0
KE0
LH0
MH0
MH0
F60
F80
H63
F80
H63
HA0
HA0
JA0
JA0
KE0
KE0
LH0
LH0
MH0
MN0
F60
F60
F80
H63
F80
H63
HA0
HA0
JA0
JA0
KE0
LH0
KG5
LH0
MH0
F60
H63
F80
H63
20℃ -40℃ 100kHz 120Hz
0.90
14.0
110
-
EMVH100ADA101MF80G
0.90
14.0
110
EMVH100ADA101MH63G
-
0.90
14.0
110
EMVH100ADA221MF80G
-
0.90
14.0
110
EMVH100ADA221MH63G
-
0.40
6.0
220
EMVH100□DA221MHA0G
-
0.40
6.0
220
EMVH100□DA331MHA0G
-
0.30
4.5
296
EMVH100□DA331MJA0G
-
0.30
4.5
296
EMVH100□DA471MJA0G
-
0.14
2.1
750
EMVH100□RA102MKE0S
-
0.10
1.5 1,000
EMVH100□DA222MLH0S
-
0.10
1.5 1,200
EMVH100□DA222MMH0S
-
0.10
1.5 1,200
EMVH100□DA332MMH0S
-
0.058
0.87 1,550
EMVH100□DA472MMN0S
-
EMVH160ADA470MF60G
1.6
24.0
69
-
0.40
6.0
220
EMVH160□DA101MHA0G
-
0.40
6.0
220
EMVH160□DA221MHA0G
-
0.30
4.5
296
EMVH160□DA221MJA0G
-
0.30
4.5
296
EMVH160□DA331MJA0G
-
0.14
2.1
750
EMVH160□RA471MKE0S
-
0.14
2.1
750
EMVH160□RA681MKE0S
-
0.10
1.5 1,000
EMVH160□DA681MLH0S
-
0.10
1.5 1,200
EMVH160□DA102MMH0S
-
0.10
1.5 1,200
EMVH160□DA222MMH0S
-
EMVH250ADA330MF60G
1.6
24.0
69
-
0.90
14.0
110
EMVH250ADA470MF80G
-
0.90
14.0
110
EMVH250ADA470MH63G
-
0.90
14.0
110
EMVH250ADA101MF80G
-
0.90
14.0
110
EMVH250ADA101MH63G
-
0.40
6.0
220
EMVH250□DA101MHA0G
-
0.40
6.0
220
EMVH250□DA221MHA0G
-
0.30
4.5
296
EMVH250□DA221MJA0G
-
0.30
4.5
296
EMVH250□DA331MJA0G
-
0.14
2.1
750
EMVH250□RA331MKE0S
-
0.14
2.1
750
EMVH250□RA471MKE0S
-
0.10
1.5 1,000
EMVH250□DA471MLH0S
-
0.10
1.5 1,000
EMVH250□DA681MLH0S
-
0.10
1.5 1,200
EMVH250□DA681MMH0S
-
0.058
0.87 1,550
EMVH250□DA102MMN0S
-
EMVH350ADA100MF60G
1.6
24.0
69
-
1.6
24.0
69
EMVH350ADA220MF60G
-
0.90
14.0
110
EMVH350ADA330MF80G
-
0.90
14.0
110
EMVH350ADA330MH63G
-
0.90
14.0
110
EMVH350ADA470MF80G
-
0.90
14.0
110
EMVH350ADA470MH63G
-
0.40
6.0
220
EMVH350□DA470MHA0G
-
0.40
6.0
220
EMVH350□DA101MHA0G
-
0.30
4.5
296
EMVH350□DA101MJA0G
-
0.30
4.5
296
EMVH350□DA221MJA0G
-
0.14
2.1
750
EMVH350□RA331MKE0S
-
0.10
1.5 1,000
EMVH350□DA331MLH0S
-
0.11
1.5
900
EMVH350□RA471MKG5S
-
0.10
1.5 1,000
EMVH350□DA471MLH0S
-
0.10
1.5 1,200
EMVH350□DA681MMH0S
-
EMVH500ADA100MF60G
2.8
42.0
51
-
1.6
30.0
83
EMVH500ADA100MH63G
-
2.0
30.0
83
EMVH500ADA220MF80G
-
1.6
30.0
83
EMVH500ADA220MH63G
-
50
63
80
100
160
200
250
400
450
□
: Enter the appropriate terminal code.
◆RATED
RIPPLE CURRENT MULTIPLIERS
・Frequency
Multipliers
Rated voltage (V
dc
)
Size code
F60 to JA0
10 to 100
KE0 to MN0
Capacitance(µF)
Frequency(Hz)
160 to 450
KE0 to MN0
10
22 to 470
47 to 100
220 to 470
680 to 1,000
2,200 to 3,300
4,700
3.3 to 33
47 to 68
120
0.66
0.93
0.40
0.50
0.60
0.75
0.85
1.00
1.00
1k
0.86
0.97
0.75
0.85
0.87
0.90
0.95
1.50
1.30
10k
0.93
1.00
0.90
0.94
0.95
0.95
0.98
1.75
1.40
100k
1.00
1.00
1.00
1.00
1.00
1.00
1.00
1.80
1.50
The endurance of capacitors is reduced with internal
heating produced by ripple current at the rate of halving
the lifetime with every 5℃ rise.
When long life performance is required in actual use, the
rms ripple current has to be reduced.
Product specifications in this catalog are subject to change without notice.Request our product specifications before purchase and/or use. Please use our products based on the information contained in this catalog and product specifications.
[font=Verdana]Reposted from Zhou Ligong Forum[/font] [font=Verdana][/font] [font=Verdana]I have been learning UCOS for a while, and always wanted to find a transplantation case to try running it[/font...
First of all, this is not an advertisement.
Customers often mention that when winter comes, there is gas inside the camera housing. When the infrared light is turned on, the gas hits the glass and pro...
I am developing and testing TFT LCD screens recently. At first, I compiled the CE system with a 3.5-inch 320*240 resolution. The text can be displayed completely. Later, I changed to a 4.3-inch 480*27...
Abstract: The basic requirements for the matching of ballasts and fluorescent lamps are proposed, and their shortcomings are pointed out. The influence of electronic ballasts on the operation of fluor...
I have three things on hand, which I don't need for the time being, but I'm here to respond to the EE solicitation order... 1 A MAXIM anemometer. It was the prize for the emergency light last time. Th...
I want to make a hardware system with a console port, and control it through a PC. I see that switches usually use RJ45 as the console port. I don't know much about hardware, so I'd like to ask some l...
Traditional broadcasting systems generally need to be operated manually at a fixed time, and can only realize one-way broadcasting with few functions. Traditional bell ringing equipment has a singl...[Details]
1. Circuit composition
The whole circuit consists of two parts:
1. Power saving control circuit
As shown in the figure below. Including delay circuit and drive circuit.
(1) Delay ci...[Details]
1. Introduction
With the growth of parking demand, the scale of parking lots is becoming larger and larger. A lot of research has been done on intelligent parking lots in China, but most of th...[Details]
Converged processors meet scalability requirements
In current embedded system design, solutions based on MCU, DSP, FPGA and ASIC account for more than 90% of the market share. These solutions ...[Details]
Instrument stepper motor
The stepper motor is an open-loop control element that converts electrical pulse signals into angular displacement or linear displacement. In the case of non...[Details]
Vertical cavity surface emitting lasers (VCSELs) are gradually replacing traditional edge emitting lasers, especially in low bandwidth and short-distance communication systems where cost factors ar...[Details]
Aromatic gases are widely present in food, medicine, cosmetics and various daily chemical products, such as snacks, liquor, spices, Chinese herbal medicines, plasters, perfumes, soaps, shampoos, et...[Details]
Abstract: Aiming at the needs of coal-rock acoustic emission signal monitoring system, a data acquisition circuit with 24-bit resolution and 16-channel synchronous data acquisition function is desi...[Details]
0 Introduction
High-precision current source can provide high-precision current supply for precision instruments, and is suitable for automatic measurement tasks of various resistors in semico...[Details]
The serial interface real-time clock chip DS1302 launched by Dallas Company in the United States can trickle charge the backup battery of the clock chip. Due to the main features of the chip such a...[Details]
Temperature compensated quartz crystal oscillator (TCXO) is widely used as a high-precision frequency source in communication systems, radar navigation systems, precision measurement and control sy...[Details]
1 Development of LED Film and Television Lighting
1.1 The significance of developing film and television lighting
Lighting power consumption accounts for a large proportion of the total p...[Details]
introduction
When it comes to the production of mobile phone lithium-ion batteries, the first thing that comes to mind is Japan's industrialized mechanical assembly line, NOKIO, MOTOLROLA's st...[Details]
At present, with the diversification of portable products and the almost harsh requirements for audio and video parts, the power consumption requirements of the whole machine have been raised to a ...[Details]
Mobile phones, MP3s, tablet computers, laptops, digital cameras, handheld game consoles, navigation devices, etc., all these mobile devices are powered by mobile batteries, and the battery life is ...[Details]