Solvent resistant type (see PRECAUTIONS AND GUIDELINES)
●
RoHS Compliant
◆SPECIFICATIONS
Items
Category
Temperature Range
Rated Voltage Range
Capacitance Tolerance
Leakage Current
-40 to +85℃
6.3 to 100V
dc
±20%
(M)
(at 20℃, 120Hz)
I=0.06CV or 10µA, whichever is greater. (at 20℃ after 2 minutes)
I=0.03CV or 3µA, whichever is greater. (at 20℃ after 5 minutes)
Where, I : Max. leakage current (µA), C : Nominal capacitance (µF), V : Rated voltage (V)
6.3V 10V 16V 25V 35V 50V 63V 80V 100V
Rated voltage (V
dc
)
0.24 0.24 0.20 0.20 0.16 0.14 0.12 0.12 0.10
tan (Max.)
δ
When nominal capacitance exceeds 1,000µF, add 0.02 to the value above for each 1,000µF increase.
(at 20℃, 120Hz)
6.3V 10V 16V 25V 35V 50V 63V 80V 100V
Rated voltage (V
dc
)
2
2
2
2
2
2
2
3
4
Z(-25℃)/Z(+20℃)
3
3
3
3
3
6
4
8
10
Z(-40℃)/Z(+20℃)
(at 120Hz)
The following specifications shall be satisfied when the capacitors are restored to 20℃ after the rated voltage is applied for 2,000 hours
at 85℃, however the polarization shall be reversed every 250 hours.
Rated voltage
6.3 to 16V
dc
25 to 100V
dc
Capacitance change
≦±25%
of the initial value
≦±20%
of the initial value
D.F. (tan )
δ
≦150%
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 at 85℃ 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
6.3 to 16V
dc
25 to 100V
dc
Capacitance change
≦±25%
of the initial value
≦±20%
of the initial value
D.F. (tan )
δ
≦150%
of the initial specified value
Leakage current
≦The
initial specified value
Characteristics
Dissipation Factor
(tan )
δ
Low Temperature
Characteristics
(Max. Impedance Ratio)
Endurance
Shelf Life
◆DIMENSIONS
[mm]
●
Terminal
Code : E
F
±
0.5
F
±
0.5
φd
φ
D
φ
d
Sleeve (PET : Black)
φD'
F
φ
D'
5
0.5
2.0
6.3
0.5
2.5
L'
Vent
(exceptφ5)
15min.
4min.
(φ5 to
φ10)
(φ12.5 to
φ18)
L'
10 12.5
8
0.6 0.6 0.6
3.5 5.0 5.0
φ
D+0.5max.
L+1.5max.
16
0.8
7.5
18
0.8
7.5
Gas escape end seal
◆PART
NUMBERING SYSTEM
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
B SME
AAA
E
AA AAA
M
AAA N
Supplement code
Size code
Capacitance tolerance code
Capacitance code (ex. 1.0
µ
F:1R0,10
µ
F:100,100
µ
F:101)
Lead forming·taping code
Terminal code
Voltage code (ex. 6.3V:6R3,16V:160,100V:101)
Series code
Category
Please refer to "Product code guide (radial lead 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.
(1/2)
CAT. No. E1001M
MINIATURE ALUMINUM ELECTROLYTIC CAPACITORS
Bi-polar, 85℃
SME
-
BP
WV
(V
dc
)
Cap
(µF)
33
47
100
220
330
470
1,000
2,200
3,300
4,700
6,800
22
33
47
100
220
330
470
1,000
2,200
3,300
4,700
10
22
33
47
100
220
330
470
1,000
2,200
3,300
10
22
33
47
100
220
330
470
1,000
2,200
4.7
10
22
33
47
Case size
φ
D×L(mm)
5×11
5×11
6.3×11
8×11.5
8×11.5
10×12.5
10×20
12.5×25
16×25
16×31.5
18×35.5
5×11
5×11
5×11
6.3×11
8×11.5
10×16
10×16
12.5×20
16×25
16×31.5
18×35.5
5×11
5×11
5×11
6.3×11
8×11.5
10×12.5
10×16
10×20
12.5×25
16×31.5
18×35.5
5×11
6.3×11
6.3×11
6.3×11
8×11.5
10×16
12.5×20
12.5×20
16×25
18×35.5
5×11
5×11
6.3×11
8×11.5
8×11.5
Series
◆STANDARD
RATINGS
Rated ripple
current
tan
δ
(mArms/
85℃,120Hz)
0.24
0.24
0.24
0.24
0.24
0.24
0.24
0.26
0.28
0.30
0.34
0.24
0.24
0.24
0.24
0.24
0.24
0.24
0.24
0.26
0.28
0.30
0.20
0.20
0.20
0.20
0.20
0.20
0.20
0.20
0.20
0.22
0.24
0.20
0.20
0.20
0.20
0.20
0.20
0.20
0.20
0.20
0.22
0.16
0.16
0.16
0.16
0.16
64
76
125
215
265
370
650
1,160
1,570
2,020
2,600
57
64
76
125
215
345
410
720
1,280
1,690
2,160
42
57
70
95
160
275
375
485
855
1,510
1,980
42
65
80
95
160
305
450
540
950
1,620
34
43
73
100
120
Part No.
WV
(V
dc
)
Cap
(µF)
Case size
φ
D×L(mm)
10×16
12.5×20
12.5×20
12.5×25
16×31.5
5×11
5×11
5×11
5×11
6.3×11
8×11.5
8×11.5
10×12.5
10×20
12.5×25
16×25
16×31.5
5×11
6.3×11
6.3×11
8×11.5
10×12.5
10×16
12.5×20
16×25
16×31.5
18×35.5
5×11
6.3×11
6.3×11
8×11.5
10×16
10×16
10×20
12.5×25
16×31.5
18×35.5
5×11
6.3×11
6.3×11
6.3×11
8×11.5
10×16
12.5×20
12.5×20
16×25
18×35.5
Rated ripple
current
tan
δ
(mArms/
85℃,120Hz)
0.16
0.16
0.16
0.16
0.16
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.14
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.12
0.10
0.10
0.10
0.10
0.10
0.10
0.10
0.10
0.10
0.10
230
410
505
655
1,140
17
25
27
34
52
89
105
150
265
480
650
835
28
34
57
95
135
180
320
575
655
965
29
39
47
65
125
150
195
350
615
755
21
34
39
47
71
135
220
240
425
720
Part No.
6.3
10
16
25
35
BSME6R3E□□330ME11D
BSME6R3E□□470ME11D
BSME6R3E□□101MF11D
BSME6R3E□□221MHB5D
BSME6R3E□□331MHB5D
BSME6R3E□□471MJC5S
BSME6R3E□□102MJ20S
BSME6R3E□□222MK25S
BSME6R3E□□332ML25S
BSME6R3E□□472MLN3S
BSME6R3E□□682MMP1S
BSME100E□□220ME11D
BSME100E□□330ME11D
BSME100E□□470ME11D
BSME100E□□101MF11D
BSME100E□□221MHB5D
BSME100E□□331MJ16S
BSME100E□□471MJ16S
BSME100E□□102MK20S
BSME100E□□222ML25S
BSME100E□□332MLN3S
BSME100E□□472MMP1S
BSME160E□□100ME11D
BSME160E□□220ME11D
BSME160E□□330ME11D
BSME160E□□470MF11D
BSME160E□□101MHB5D
BSME160E□□221MJC5S
BSME160E□□331MJ16S
BSME160E□□471MJ20S
BSME160E□□102MK25S
BSME160E□□222MLN3S
BSME160E□□332MMP1S
BSME250E□□100ME11D
BSME250E□□220MF11D
BSME250E□□330MF11D
BSME250E□□470MF11D
BSME250E□□101MHB5D
BSME250E□□221MJ16S
BSME250E□□331MK20S
BSME250E□□471MK20S
BSME250E□□102ML25S
BSME250E□□222MMP1S
BSME350E□□4R7ME11D
BSME350E□□100ME11D
BSME350E□□220MF11D
BSME350E□□330MHB5D
BSME350E□□470MHB5D
100
220
35
330
470
1,000
1.0
2.2
3.3
4.7
10
22
50
33
47
100
220
330
470
3.3
4.7
10
22
33
63
47
100
220
330
470
2.2
3.3
4.7
10
22
80
33
47
100
220
330
1.0
2.2
3.3
4.7
10
100
22
33
47
100
220
BSME350E□□101MJ16S
BSME350E□□221MK20S
BSME350E□□331MK20S
BSME350E□□471MK25S
BSME350E□□102MLN3S
BSME500E□□1R0ME11D
BSME500E□□2R2ME11D
BSME500E□□3R3ME11D
BSME500E□□4R7ME11D
BSME500E□□100MF11D
BSME500E□□220MHB5D
BSME500E□□330MHB5D
BSME500E□□470MJC5S
BSME500E□□101MJ20S
BSME500E□□221MK25S
BSME500E□□331ML25S
BSME500E□□471MLN3S
BSME630E□□3R3ME11D
BSME630E□□4R7MF11D
BSME630E□□100MF11D
BSME630E□□220MHB5D
BSME630E□□330MJC5S
BSME630E□□470MJ16S
BSME630E□□101MK20S
BSME630E□□221ML25S
BSME630E□□331MLN3S
BSME630E□□471MMP1S
BSME800E□□2R2ME11D
BSME800E□□3R3MF11D
BSME800E□□4R7MF11D
BSME800E□□100MHB5D
BSME800E□□220MJ16S
BSME800E□□330MJ16S
BSME800E□□470MJ20S
BSME800E□□101MK25S
BSME800E□□221MLN3S
BSME800E□□331MMP1S
BSME101E□□1R0ME11D
BSME101E□□2R2MF11D
BSME101E□□3R3MF11D
BSME101E□□4R7MF11D
BSME101E□□100MHB5D
BSME101E□□220MJ16S
BSME101E□□330MK20S
BSME101E□□470MK20S
BSME101E□□101ML25S
BSME101E□□221MMP1S
□□
: Enter the appropriate lead forming or taping code.
◆RATED
RIPPLE CURRENT MULTIPLIERS
●
Frequency
Capacitance (µF)
Multipliers
50
0.65
0.75
0.80
0.85
120
1.00
1.00
1.00
1.00
300
1.35
1.25
1.15
1.03
1k
1.75
1.50
1.30
1.05
10k
2.30
1.75
1.40
1.08
100k
2.50
1.80
1.50
1.08
Frequency (Hz)
1.0 to 4.7
10 to 47
100 to 1,000
2,200 to
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.
[i=s] This post was last edited by zhangdaijinqf on 2016-3-9 10:59 [/i] I received a "lucky bag" from the forum this morning, which is an NXP LPC1500 evaluation board! Thank you forum!! Here are the p...
I used the file generated by evc4.0 to open it directly with vs2005. After modification, I used the deployment function and the program executed normally. However, after copying the generated exe file...
What are EMI, EMS and EMC? There are many abbreviations in the field of electrical interference. EMI (Electro Magnetic Interference) literally means electromagnetic interference. This is a compound wo...
Is there a big difference between automotive embedded systems and aerospace embedded systems? I think automotive electronics can be regarded as the basis for learning aerospace electronics. If you are...
TI's Jim MacDonlad demonstrates TI digital power solutions, especially PMBus. TI provides power designers with a wide range of processors, controllers and drivers, as well as module solutions to help ...
"Have you set your calendar reminder?"
On August 24, Nvidia Robotics' official account posted a photo of a black gift box on a social media platform, with an attached greeting card sig...[Details]
Ever since the Tesla fire incident, electric cars, already known for their poor reputation, have been subjected to even more scathing criticism. Despite this, many people are still willing to buy t...[Details]
Based on a survey of more than ten intelligent robot companies, this article sorts out and analyzes the current development status of the intelligent industry and the challenges and differences it ...[Details]
Industrial computers with GPUs leverage powerful parallel processing to build deep learning models to analyze and respond to optical inputs. The systems develop an understanding of visual data to i...[Details]
According to Nikkei, a survey found that global electric vehicle battery supply is expected to reach more than three times the required quantity due to
cooling
demand for electric vehicles,...[Details]
Tiantai Robot's official Weibo account announced on the evening of August 20 that Tiantai Robot Co., Ltd., together with strategic partners including Shandong Future Robot Technology Co., Ltd., Sha...[Details]
A tubular motor is an electric motor that is typically used to control the movement of machines and equipment. Tubular motors are generally divided into two categories: linear tubular motors and ro...[Details]
A scale, a large, ground-mounted scale, is typically used to measure the tonnage of truck cargo. It's the primary weighing device used in factories, mines, and businesses for bulk cargo measurement...[Details]
The range of an electric vehicle is crucial to the driving experience, and range anxiety is a common headache when driving an electric vehicle. Although the latest electric vehicles can achieve a r...[Details]
Summer is the peak season for buying and using air conditioners. Do you pay attention to the energy efficiency of your air conditioner? Did you buy a DC inverter air conditioner? Do you know the re...[Details]
High-definition media consumption is experiencing a dual growth: an increase in the number of consumers and a transition to higher-definition content. This growth is driven by increasingly widespre...[Details]
With the prevalence of online conferencing, live streaming, and voice communication in gaming, high-quality audio input devices are becoming increasingly important. To this end, XMOS, an expert in ...[Details]
introduction
The OMAP-L138 dual-core processor is a new generation of low-power single-chip systems (SoCs) from TI. It is widely used in communications, industrial, medical diagnostic, and aud...[Details]
Since the beginning of the 21st century, with the rapid development of my country's urban and rural economies and the improvement of people's living standards, more and more people have begun to ow...[Details]
Cadence and NVIDIA Collaborate to Revolutionize Power Analysis Technology, Accelerating Development of Billion-Gate AI Designs
Cadence's new Palladium Dynamic Power Analysis applicat...[Details]