ECA1CAM100X [PANASONIC]

ENGINEERING DRAFT; 工程草案
ECA1CAM100X
型号: ECA1CAM100X
厂家: PANASONIC    PANASONIC
描述:

ENGINEERING DRAFT
工程草案

文件: 总33页 (文件大小:666K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
To: Farnell InOne  
Issue No.  
: CE-AAMX-CEM-1  
Date of Issue : 12 December, 2006  
ENGINEERING DRAFT  
Product Description  
: Aluminum Electrolytic Capacitor  
Customer Part Number  
:
Product Part Number  
: Radial lead type (JIS:04 type) AM series X type  
: Japan, Malaysia  
Country of Origin  
Marking of the Origin  
Applications  
: Printed on the packaging label  
: AUDIO  
: November 9, 2007 from the date issue  
Term of Validity  
These specifications are temporary specifications. Ask factory for technical specifications before purchase  
and / or use.  
Prepared by  
: Engineering Group  
Aluminum Engineering Team  
Capacitor Business Unit  
Panasonic Electronic Devices Co.,Ltd.  
:
Contact Person  
Signature  
Name(Print)  
Title  
25.Kohata-nishinaka..Uji City,  
Kyoto, 611-8585, Japan  
Phone (774)32-1111  
Haruhiko Handa  
: Engineer  
:
Authorized by  
Signature  
Name(Print)  
Title  
Phone :+81-774-33-3209(Direct)  
Hisao Nagara  
: Manager  
Fax  
:+81-774-33-4251  
No.3726636  
CE-AAMX-CEM-1  
Engineering Draft  
Page No.  
Contents  
A type AM series X type  
Contents  
Notice matter  
Scope  
P.1  
P.2  
Parts Number  
P.2  
Parts Lists  
P.3 ~ P.5  
P.6  
Can Size Table  
Dimensions and Appearance  
Constructions  
P.7  
P.8  
Marking  
P.8  
Lot No. System  
P.9 ~ P.10  
P.11  
Standard Rating  
Performance Characteristics  
Other Characteristics  
P.12 ~ P.15  
P.16  
P.17  
Dimensions  
(Snap-in lead formed type)  
P.18 ~ P.21  
P.22 ~ P.24  
P.25 ~ P.27  
P.28 ~ P.31  
Taping Shape and Dimensions  
Taping Specifications  
Package Amount and Shape  
Notes in using Radial lead type  
Aluminum Electrolytic Capacitor  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
1
Engineering Draft  
A type AM series X type  
Notice matter  
Law and regulation which are applied  
This product complies with the RoHS Directive (Restriction of the use of certain Hazardous  
Substances in electrical and electronic equipment (DIRECTIVE 2002/95/EC).  
No Ozone Depleting Chemicals(ODC's), controlled under the Montreal Protocol Agreement,  
are used in producing this product.  
We do not PBBs or PBDEs as brominated flame retardants.  
All the materials that are used for this product are registered as "Known Chemicals" in the Japanese act  
"Law Concerning the Examination and Regulation of Manufacture, etc. of Chemical Substances".  
Export procedure which followed export related regulations, such as foreign exchange and a foreign  
trade method, on the occasion of export of this product .Thank you for your consideration.  
Limitation of a use  
This capacitor is designed to be used for electronics circuits such as audio/visual equipment,  
home appliances, computers and other office equipment, optical equipment, measuring equipment  
and industrial robots.  
High reliability and safety are required [ be / a possibility that incorrect operation of this product may do harm  
to a human life or property ] more. When use is considered by the use, the delivery specifications which  
suited the use separately need to be exchanged.  
Unless otherwise specified, the product shall conform to JIS 5101-4-1  
Country of origin : JAPAN, MALAYSIA  
Manufacturing factory : Panasonic Electronic Devices Yamaguchi Co.,Ltd.  
1285, Aza-Sakutaguchi, Oaza-Asada,Yamaguchi City, Yamaguchi  
753-8536 Japan  
Panasonic Electronic Devices Malaysia Sdn.Bhd.  
No.1 Jalan Jemuju 16/13,40200 Shah Alam,Selangor Darul Ehsan, MALAYSIA  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
2
Engineering Draft  
A type AM series X type  
1. Scope  
Fixed capacitors for use in electronic equipment, Aluminum electrolytic capacitors with non-solid electrolyte.  
2. Parts Number  
E C  
2-1  
A
○○  
2-3  
AM  
2-4  
○○○  
2-5  
X □  
2-4 2-6  
2-2  
2-1 Aluminum Electrolytic Capacitor  
2-2 Type : Radial lead type ( JIS : 04 type )  
2-3 Rated Voltage Code  
Voltage Code  
0J  
1A  
10  
1C  
16  
1E  
25  
1V  
35  
1H  
50  
1J  
63  
2A  
100  
Rated Voktage (V.DC) 6.3  
2-4 AM series X type  
2-5 Capacitance Code : Indicating capacitance in uF by 3 letters.  
The first 2 figures are actual values and the third  
denotes the number of zeros.  
"R" denotes the decimal point and all figures are the  
actual number with "R".  
For example, 1uF is expressed as 010 in this case.  
ex. 0. 1µF 0R1  
, 10µF 100 , 1000µF 102  
2-6 Suffix Code for Appearance Special Code for Appearance  
:
Blank Standard Long Lead  
E
i
Snap-in lead  
Lead taping (2.5mm pitch)  
Lead taping (5.0mm pitch)  
B
Item 9 for snap-in lead,  
Item 10 for lead taping dimensions,  
Item 11 and Item 12 for lead taping specifications.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
3
Engineering Draft  
A type AM series X type  
Parts lists  
Leakage  
Current  
[µA]  
max.  
(After  
2 min.)  
13.8  
Tangent  
Rated Ripple  
Current  
Dim.mm]  
Part No.  
W .V.  
[V.DC]  
Cap.  
[µF]  
of loss  
angle  
max.  
[mA rms]  
max.  
(120Hz) (120Hz)  
(120Hz)  
(20  
)
(20  
)
(85  
)
φD  
5
6.3  
8
10  
10  
12.5  
12.5  
16  
L
φd  
0.5  
0.5  
0.6  
0.6  
0.6  
0.6  
0.6  
0.8  
0.8  
0.8  
ECA0JAM221X  
ECA0JAM471X  
ECA0JAM102X  
ECA0JAM222X  
ECA0JAM332X  
ECA0JAM472X  
ECA0JAM682X  
ECA0JAM103X  
ECA0JAM153X  
ECA0JAM223X  
6.3  
6.3  
6.3  
6.3  
6.3  
6.3  
6.3  
6.3  
6.3  
6.3  
220  
470  
0.28  
0.28  
0.28  
0.30  
0.32  
0.34  
0.38  
0.46  
0.56  
0.70  
240  
380  
580  
890  
11  
29.6  
63.0  
11.2  
11.5  
16  
1000  
2200  
3300  
4700  
6800  
10000  
15000  
22000  
138.6  
207.9  
296.1  
428.4  
630.0  
945.0  
1386.0  
1020  
1170  
1270  
1450  
1700  
1900  
20  
20  
25  
25  
16  
18  
31.5  
35.5  
ECA1AAM331X  
ECA1AAM102X  
ECA1AAM222X  
ECA1AAM332X  
ECA1AAM472X  
ECA1AAM682X  
ECA1AAM103X  
ECA1AAM153X  
10  
10  
10  
10  
10  
10  
10  
10  
330  
1000  
2200  
3300  
4700  
6800  
10000  
15000  
0.24  
0.24  
0.26  
0.28  
0.30  
0.34  
0.42  
0.52  
33.0  
100.0  
220.0  
330.0  
470.0  
680.0  
1000.0  
1500.0  
330  
630  
6.3  
10  
11.2  
12.5  
20  
0.5  
0.6  
0.6  
0.6  
0.6  
0.8  
0.8  
0.8  
920  
10  
1090  
1200  
1400  
1600  
1850  
12.5  
12.5  
16  
16  
18  
20  
25  
25  
31.5  
35.5  
ECA1CAM100X  
ECA1CAM220X  
ECA1CAM330X  
ECA1CAM470X  
ECA1CAM101X  
ECA1CAM221X  
ECA1CAM471X  
ECA1CAM102X  
ECA1CAM222X  
ECA1CAM332X  
ECA1CAM472X  
ECA1CAM682X  
ECA1CAM103X  
16  
16  
16  
16  
16  
16  
16  
16  
16  
16  
16  
16  
16  
10  
22  
0.20  
0.20  
0.20  
0.20  
0.20  
0.20  
0.20  
0.20  
0.22  
0.24  
0.26  
0.30  
0.38  
3.0  
3.5  
30  
75  
5
5
11  
11  
0.5  
0.5  
0.5  
0.5  
0.5  
0.5  
0.6  
0.6  
0.6  
0.6  
0.8  
0.8  
0.8  
33  
5.2  
110  
5
11  
47  
7.5  
130  
5
5
6.3  
8
10  
12.5  
12.5  
16  
16  
18  
11  
11  
100  
16.0  
180  
220  
35.2  
280  
11.2  
11.5  
16  
470  
75.2  
440  
1000  
2200  
3300  
4700  
6800  
10000  
160.0  
352.0  
528.0  
752.0  
1088.0  
1600.0  
680  
1000  
1200  
1360  
1600  
1800  
20  
25  
25  
31.5  
35.5  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
4
Engineering Draft  
A type AM series X type  
Parts lists  
Leakage  
Current  
[µA]  
m ax.  
Tangent  
of loss  
Rated Ripple  
Current  
Dim .m m ]  
Part No.  
W .V.  
[V.DC]  
Cap.  
[µF]  
angle  
m ax.  
(120Hz)  
(20)  
0.16  
[m A rm s]  
m ax.  
(120Hz)  
(85)  
180  
(120Hz)  
(20)  
100  
330  
470  
1000  
2200  
3300  
4700  
6800  
(After  
2 m in.)  
25.0  
φD  
6.3  
8
L
φd  
0.5  
0.6  
0.6  
0.6  
0.6  
0.8  
0.8  
0.8  
ECA1EAM 101X  
ECA1EAM 331X  
ECA1EAM 471X  
ECA1EAM 102X  
ECA1EAM 222X  
ECA1EAM 332X  
ECA1EAM 472X  
ECA1EAM 682X  
25  
25  
25  
25  
25  
25  
25  
25  
11.2  
11.5  
12.5  
20  
0.16  
82.5  
390  
0.16  
117.5  
250.0  
550.0  
825.0  
1175.0  
1700.0  
480  
10  
0.16  
850  
10  
12.5  
16  
16  
18  
0.18  
1200  
1300  
1500  
1750  
25  
25  
31.5  
35.5  
0.20  
0.22  
0.26  
ECA1VAM 470X  
ECA1VAM 101X  
ECA1VAM 221X  
ECA1VAM 331X  
ECA1VAM 471X  
ECA1VAM 102X  
ECA1VAM 222X  
ECA1VAM 332X  
ECA1VAM 472X  
35  
35  
35  
35  
35  
35  
35  
35  
35  
47  
0.14  
0.14  
0.14  
0.14  
0.14  
0.14  
0.16  
0.18  
0.20  
16.4  
35.0  
130  
210  
5
6.3  
8
10  
10  
12.5  
16  
16  
18  
11  
11.2  
11.5  
12.5  
16  
0.5  
0.5  
0.6  
0.6  
0.6  
0.6  
0.8  
0.8  
0.8  
100  
220  
77.0  
350  
330  
115.5  
164.5  
350.0  
770.0  
1155.0  
1645.0  
440  
470  
550  
1000  
2200  
3300  
4700  
900  
20  
1250  
1400  
1600  
25  
31.5  
35.5  
ECA1HAM 0R1X  
ECA1HAM R22X  
ECA1HAM R33X  
ECA1HAM R47X  
ECA1HAM 010X  
ECA1HAM 2R2X  
ECA1HAM 3R3X  
ECA1HAM 4R7X  
ECA1HAM 100X  
ECA1HAM 220X  
ECA1HAM 330X  
ECA1HAM 470X  
ECA1HAM 101X  
ECA1HAM 221X  
ECA1HAM 331X  
ECA1HAM 471X  
ECA1HAM 102X  
ECA1HAM 222X  
ECA1HAM 332X  
50  
50  
50  
50  
50  
50  
50  
50  
50  
50  
50  
50  
50  
50  
50  
50  
50  
50  
50  
0.1  
0.22  
0.33  
0.47  
1.0  
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  
0.14  
0.16  
3.0  
3.0  
1.3  
2.9  
4.4  
5
5
5
11  
11  
0.5  
0.5  
0.5  
0.5  
0.5  
0.5  
0.5  
0.5  
0.5  
0.5  
0.5  
0.5  
0.6  
0.6  
0.6  
0.6  
0.6  
0.8  
0.8  
3.0  
5
11  
3.0  
5
11  
3.0  
10  
5
11  
2.2  
3.0  
20  
5
11  
3.3  
3.0  
35  
5
11  
4.7  
3.0  
45  
5
11  
10  
5.0  
65  
5
11  
22  
11.0  
16.5  
23.5  
50.0  
110.0  
165.0  
235.0  
500.0  
1100.0  
1650.0  
100  
110  
130  
250  
400  
500  
650  
1050  
1300  
1500  
5
11  
33  
5
11  
47  
6.3  
8
11.2  
11.5  
12.5  
16  
100  
220  
330  
470  
1000  
2200  
3300  
10  
10  
10  
12.5  
16  
18  
20  
25  
31.5  
35.5  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
5
Engineering Draft  
A type AM series X type  
Parts lists  
Leakage  
Current  
Tangent  
Rated Ripple  
Current  
Dim.mm]  
Part No.  
W .V.  
[V.DC]  
Cap.  
[µF]  
of loss  
angle  
max.  
(120Hz) (120Hz)  
[µA]  
max.  
(After  
2 min.)  
6.3  
[mA rms]  
max.  
(120Hz)  
(85)  
70  
(20)  
10  
(20)  
0.11  
0.11  
0.11  
0.11  
0.11  
0.11  
0.11  
0.11  
0.11  
0.13  
φD  
5
L
φd  
0.5  
0.5  
0.5  
0.5  
0.6  
0.6  
0.6  
0.6  
0.8  
0.8  
ECA1JAM100X  
ECA1JAM220X  
ECA1JAM330X  
ECA1JAM470X  
ECA1JAM101X  
ECA1JAM221X  
ECA1JAM331X  
ECA1JAM471X  
ECA1JAM102X  
ECA1JAM222X  
63  
63  
63  
63  
63  
63  
63  
63  
63  
63  
11  
22  
13.8  
105  
5
11  
33  
20.7  
130  
6.3  
6.3  
8
10  
10  
12.5  
16  
18  
11.2  
11.2  
11.5  
16  
47  
29.6  
160  
100  
220  
330  
470  
1000  
2200  
63.0  
270  
138.6  
207.9  
296.1  
630.0  
1386.0  
450  
550  
20  
750  
20  
1100  
1400  
25  
35.5  
ECA2AAMR47X  
ECA2AAM010X  
ECA2AAM2R2X  
ECA2AAM3R3X  
ECA2AAM4R7X  
ECA2AAM100X  
ECA2AAM220X  
ECA2AAM330X  
ECA2AAM470X  
ECA2AAM101X  
ECA2AAM221X  
ECA2AAM331X  
ECA2AAM471X  
ECA2AAM102X  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
100  
0.47  
1.0  
2.2  
3.3  
4.7  
10  
0.10  
0.10  
0.10  
0.10  
0.10  
0.10  
0.10  
0.10  
0.10  
0.10  
0.10  
0.10  
0.10  
0.10  
3.0  
3.0  
10  
20  
5
5
11  
11  
0.5  
0.5  
0.5  
0.5  
0.5  
0.5  
0.5  
0.6  
0.6  
0.6  
0.6  
0.6  
0.8  
0.8  
3.0  
30  
5
11  
3.3  
4.7  
40  
5
11  
50  
5
11  
10.0  
22.0  
33.0  
47.0  
100.0  
220.0  
330.0  
470.0  
1000.0  
70  
5
11  
22  
115  
145  
180  
350  
550  
700  
900  
1300  
6.3  
8
11.2  
11.5  
11.5  
16  
33  
47  
100  
220  
330  
470  
1000  
8
10  
12.5  
12.5  
16  
18  
20  
25  
25  
35.5  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
6
Engineering Draft  
A type AM series X type  
Capacitance and Can Size Table  
φD×L [mm]  
V.DC  
6.3  
10  
16  
25  
35  
50  
63  
100  
Cap (µF)  
0.1  
5×11  
5×11  
5×11  
5×11  
5×11  
5×11  
5×11  
5×11  
5×11  
5×11  
5×11  
0.22  
0.33  
0.47  
1.0  
5×11  
5×11  
2.2  
5×11  
3.3  
5×11  
4.7  
5×11  
10  
5×11  
5×11  
5×11  
5×11  
6.3×11.2  
5×11  
22  
6.3×11.2  
8×11.5  
8×11.5  
10×16  
12.5×20  
12.5×25  
16×25  
18×35.5  
33  
5×11  
5×11  
47  
5×11  
5×11  
6.3×11.2  
6.3×11.2 6.3×11.2  
100  
6.3×11.2 6.3×11.2  
8×11.5  
10×12.5  
10×16  
8×11.5  
10×16  
10×20  
12.5×20  
16×25  
18×35.5  
220  
5×11  
8×11.5  
6.3×11.2  
330  
8×11.5  
10×12.5  
10×20  
12.5×25  
16×25  
16×31.5  
18×35.5  
10×12.5  
10×16  
470  
6.3×11.2  
8×11.5  
10×16  
8×11.5  
10×16  
12.5×20  
12.5×25  
16×25  
16×31.5  
18×35.5  
10×20  
1000  
2200  
3300  
4700  
6800  
10000  
15000  
22000  
10×12.5  
10×20  
12.5×20  
16×25  
12.5×25  
16×31.5  
18×35.5  
10×20  
12.5×20  
12.5×25  
16×25  
16×31.5  
18×35.5  
12.5×20  
12.5×25  
16×25  
16×31.5  
18×35.5  
16×31.5  
18×35.5  
Please refer to a high-ranking voltage for ""  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
7
Engineering Draft  
A type AM series X type  
3. Dimensions and Appearance  
Body Color (Clear Blue) , Marking (White )  
Standard Long Lead (Suffix : Blank)  
Pressure relief  
φ6.3  
mm]  
φ5φ8  
φd±0.05  
3
min.  
* L  
φD±0.5  
φ10≦  
14min.  
* L16:L±1.0  
L20:L±2.0  
[mm]  
18  
Body Dia. φD  
Lead Space F  
Lead Dia. φd  
5
6.3  
2.5  
0.5  
8
10  
12.5  
5.0  
16  
7.5  
0.8  
2.0  
0.5  
3.5  
0.6  
5.0  
0.6  
7.5  
0.6  
0.8  
Please refer to L dimension on the parts number lists table.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
8
Engineering Draft  
A type AM series X type  
4. Constructions  
4-1 Inside Construction  
3 Aluminum can  
2 Sleeve  
4 Sealing rubber  
Pressure relief  
diaφ6.3  
1 Lead wire  
Inside unit  
Aluminum lead  
5 Separator, 67 Anode and  
cathode foil, 8 Electrolyte)  
4-2 Construction Parts  
Parts  
Parts  
Materials  
Materials  
1 Lead Wire  
Solid tinned copper weld 5 Separator  
steel wire  
Manila hemp  
2 Sleeve  
Thermoplastic Resin  
6 Anode Foil  
High purity  
Aluminum foil  
Aluminum foil  
Main Solvent Ethleneglycol  
3 Aluminum Can Aluminum  
4 Sealing Rubber Synthetic rubber  
(EPT/IIR)  
7 Cathode Foil  
8 Electrolyte  
MainSolute Ammoniumsalt  
5. Marking  
Markings indicated on the products :  
a) Rated Voltage.  
b) Capacitance  
c) Negative Polarity  
d) Manufacturer’s Trademark  
e) Upper Category Temperature  
f ) Series Code  
g) Lot No. (It indicates to Lot No. System)  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
9
Engineering Draft  
Radial lead type Lot No. System  
JAPAN PRODUCTS  
Lot number is indicated on a sleeve in following manner.  
eg. For 04 type, expressed in 3 figures, 4 figures, or 5 figures.  
(a)  
(a)  
(b)  
(b)  
(c)  
(c)  
(a)sequential alphabet for each lot  
(b)month (1 to 9 and O for October, N for November, D for December)  
(c)sequential alphabet for  
(d)  
As for the display contents of 4 figures, there are 2 kinds  
(1) (a) last number of year  
(b) month (1 to 9 and O for October, N for November, D for December)  
(c) week (1 to 5 and A to E)  
(d) line code in alphabet (A to Z)  
(2) (a) last number of year  
(b) month (1 to 9 and O for October, N for November, D for December)  
(c) line code in alphabet (Ato Z)  
(d) production date  
(a)  
(b)  
(a) last 2 digit of year  
(b) numerical indication of week (ninth week of 1992=09)  
(a)  
(b)  
(c)  
(d)  
-
(a) last number of year  
(b) month (1 to 9 and O for October, N for November, D for December)  
(c) week (1 to 5 and A to E)  
(d) line code  
production year  
1:2001  
production month  
7:July  
production week  
A,1: first week  
production date  
1:January  
2:February  
3:March  
4:April  
A=1 date 1=27 date  
2:2002  
8:August  
B,2:second week B=2  
C,3: third week C=3  
D,4: forth week  
2=28  
3=29  
4=30  
5=31  
3:2003  
9:September  
4:2004  
O:October  
ꢀꢀꢀ~  
5:May  
N:November  
D:December  
E,5: fifth week  
Y=25  
Z=26  
Indicating with the 6:June  
last digit or the  
last 2 digits of a  
year.  
* Lot number can be written in both horizontal and vertical directions.  
* Manufacturing country for certain products may not be indicated.  
Letters and marks are also used to distinguish different lines, machines  
and shifts operation.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
10  
Engineering Draft  
Radial lead type Lot No. System  
MALAYSIA PRODUCTS  
Lot number is indicated on a sleeve in following manner.  
eg. For 04 type, expressed in 4 figures, or 5 figures.  
(a)  
(a)  
(b)  
(b)  
(c)  
(c)  
(a) last number of year  
(b) month (1 to 9 and O for October, N for November, D for December)  
(c) line code in alphabet (A to Z)  
(b)  
(a)  
(a) last number of year and line code in alphabet (A to Z)  
(b) month (1 to 9 and O for October, N for November, D for December)  
and production date  
(a)  
(b)  
(c)  
(d)  
(d)  
(a) last number of year  
(b) month (1 to 9 and O for October, N for November, D for December)  
(c) week (Greece number)  
(d) line code  
production year  
1:2001  
production month  
production week  
production date  
: first week  
1:January 7:July  
A,1: first week  
1:1date  
B:11date  
C:12date  
:second week  
: third week  
: forth week  
: fifth week  
2:2002  
2:February 8:August  
B,2:second week 2:2date  
3:2003  
3:March  
4:April  
5:May  
9:September  
C,3: third week  
D,4: forth week  
E,5: fifth week  
3:3date  
4:2004  
O:October  
U:30date  
V:31date  
ꢀꢀꢀ~  
N:November  
D:December  
9:9date  
Indicating with the 6:June  
last digit or the  
last 2 digits of a  
year.  
A:10date  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
11  
Engineering Draft  
A type AM series X type  
6. Standard Ratings  
No.  
Item  
Ratings  
-40℃ ~ +85℃  
1 Category Temperature Range  
2 Rated Voltage Range  
3 Capacitance Range  
4 Capacitance Tolerance  
5 Surge Voltage  
6.3 V.DC 100 V.DC  
0.1 µF 22000 µF  
± 20%  
(120Hz 20)  
(120Hz 20)  
R.V.  
S.V.  
6.3  
8
10  
13  
16  
20  
25  
32  
35  
44  
50  
63  
63  
79  
100  
125  
(V.DC)  
6 Rated Ripple Current  
Parts Lists and Table3  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
12  
Engineering Draft  
A type AM series X type  
7. Performance Characteristics  
No  
Item  
Performance Characteristics  
I = 0. 01CV or 3µA, whichever is  
greater.  
Test  
Series Resistor  
: 1000±10Ω  
1 Leakage Current  
Applied Voltage : Rated voltage  
Measuring  
: After 2 minutes  
I : Leakage current C : Capacitance  
V : Rated voltage  
Within the specified capacitance  
tolerance.  
Measuring Frequency  
Measuring Circuit  
Measuring Voltage  
: 120 Hz±20%  
2 Capacitance  
: Equivalent series circuit  
: +1. 5V. DC +2 V. DC  
( 0.5V for AC.)  
Measuring Frequency  
Measuring Circuit  
Measuring Voltage  
: 120 Hz±20%  
3 Tangent of Loss  
Angle  
Less than the table 1 value of item 8.  
: Equivalent series circuit  
: +1. 5V. DC +2 V. DC  
( 0.5V for AC.)  
(tanδ)  
Added 0. 02 per 1000µF for items with  
over 1000µF.  
4 Characteristics at Step 2  
High and Low  
Temperature  
Impedance Ratio :  
Step  
Test Temperature ()  
Time  
Ratio for the value in step 1 shall be  
less than the value from table 2 in  
item 8.  
1
2
3
4
5
20± 2  
-25±3, -40±3  
20± 2  
*
*
ꢀꢀ15 minutes  
Step 4  
Leakage Current :  
85± 2  
20± 2  
2 hours  
500% of the value of item 7. 1.  
Capacitance Change :  
Impedance should be measured at the frequency  
Within ±25% of the value in step 1 of 120 Hz±10%.  
Tangent of Loss Angle (tanδ):  
the value of item 7. 3.  
* Capacitors should be stored at each  
temperature until measured impedance or  
capacitance is stabilized.  
5 Surge  
Leakage Current :  
Test Temperature : 15℃ ~ 35℃  
the value of item 7.1.  
Capacitance Change :  
Within ±15% of the initially  
measured value.  
100 ± 50  
R =  
Series Protective Resistance :  
C  
Tangent of Loss Angle (tanδ):  
the value of item 7. 3.  
Appearance :  
R = Series protective resistance (k)  
C =Capacitance (µF)  
Test Voltage  
: Surge voltage item 6. 5  
Applied Voltage : 1000 cycles of 30s±5s  
“ON” and 5 min. 30 s "OFF"  
No significant change can be  
observed.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
13  
Engineering Draft  
A type AM series X type  
No  
Item  
Performance Characteristics  
Test  
6 Robustness of  
Terminations  
Tensile  
Diameter [mm]  
φ0.5  
Pull Strength  
5 N  
φ0.6 φ0.8  
10 N  
There is no damage or breakage after Applied above steady pull axially for a 10s±1s  
Bending test.  
Diameter [mm]  
φ0.5  
φ0.6 φ0.8  
Static Load  
2.5 N  
5 N  
At first, a capacitor is placed in vertical position  
with the weight specified above being applied to  
one of leads. Then the capacitor is slowly  
rotated 90°to horizontal position and  
subsequently returned to vertical position.  
The above bending procedure takes for 2s 3s  
An additional bending is done in the opposite  
direction.  
7 Vibration  
Capacitance :  
Frequency  
: 10 Hz 55 Hz  
Measured value is to be stabilized  
(1 minute per cycle.)  
during test. (Measured several times Total Amplitude : 1. 5 mm  
within 30 min.  
Direction and Duration of Vibration :  
before completion of test)  
Appearance :  
It is done in the X, Y, Z axis direction for 2  
hours each, with a total of 6 hours.  
No significant change can be  
observed.  
Mounting Method :  
The capacitor shall be fixed with its lead wires  
at the point of 4 mm from the bottom of  
capacitor body. The capacitor with diameter  
greater than 12. 5 mm or longer than 25 mm  
must be fixed in place with a bracket.  
Capacitance Change :  
Within ±5% of the initially  
measured value.  
8 Solderability  
More than 3/4 of the terminal surface  
shall be covered with new solder.  
Solder Type  
Solder Temperatur
e
: 235±5℃  
Immersing Time : 2s±0. 5s  
: H60A, H60S, or H63A (JIS Z3282)  
Immersing Depth : 1. 5mm 2. 0mm from the root.  
Flux  
: Approx. 25% rosin (JIS K5902)  
in ETHANOL (JIS K8101)  
9 Resistance to Leakage Current :  
Soldering Heat  
Solder Type  
: H60A, H60S, or H63A (JIS Z3282)  
the value of item 7.1.  
Solder Temperature: 260±5℃  
Capacitance Change :  
Within ±10% of the initially  
measured value.  
Immersing Time  
: 10s±1s  
Immersing Depth : 1. 5mm 2. 0mm from the root.  
Tangent of Loss Angle (tanδ):  
the value of item 7. 3.  
Appearance :  
No significant change can be  
observed.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
14  
Engineering Draft  
A type AM series X type  
No  
10 Solvent  
Resistance of  
Item  
Performance Characteristics  
Test  
: Isopropyl Alcohol  
: 20 25  
There shall be no damage and legible  
marking. Marking can be easily  
comprehended.  
Class of Reagent  
Test Temperature  
Immersing Time  
~  
Marking  
: 30s±5s  
11 Pressure Relief  
( More than  
Pressure relief shall be operated without  
any hazardous expulsion or emission of  
flame.  
No emission of gas after 30 minutes of  
the voltage application also meets the  
specification.  
AC Current Method  
R
A
φ6. 3 diameter  
products )  
A.C.  
V
Cx  
Power supply  
50Hz or 60Hz  
A
R :Seri es resister  
:A.C. ammeter  
:A.C. voltmeter  
Cx :Tested capacitor  
V
Applied Voltage :  
AC voltage equals to rated W. V. × 0. 7 or  
250 V (rms), whichever is smaller.  
Capacitance  
(µF)  
DC Resistance  
()  
1000±100  
100±10  
10±1  
1
1
10  
100  
1000  
10000  
10  
100  
1±0.1  
1000  
0.1±0.01  
*
10000  
* When capacitance is over 10000µF,the value  
of series resistance equals to the half of the  
tested capacitor’s impedance.  
Reverse Voltage Method  
A
D.C.  
Power supply  
Cx  
A
:D.C. ammeter Cx :Tested capacitor  
Nominal Diameter [mm]  
DC Current (A)  
1 (const)  
22.4  
22.4  
10 (const)  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
15  
Engineering Draft  
A type AM series X type  
No  
Item  
Performance Characteristics  
Test  
12 Damp Heat  
Leakage Current :  
Test Temperature  
Relative Humidity  
Test Duration  
: 40±2℃  
: 90% 95%  
: 240hours ±8hours  
(Steady state)  
the value of item 7.1.  
Capacitance Change :  
Within ±20% of the initially  
measured value.  
After subjected to the test, capacitors shall  
be left for 2 hours at room temperature and  
room humidity prior to the measurement.  
Tangent of Loss Angle (tanδ):  
120% the value of item 7. 3.  
Appearance :  
No significant change can be  
observed.  
13 Endurance  
Leakage Current :  
Test Temperature : 85±2℃  
: 2000 +720 hours  
Test Duration  
the value of item 7.1.  
Capacitance Change :  
Within ±20% of the initially  
measured value.  
Applied Voltage : Rated voltage  
After subjected to the test, capacitors shall be left at  
room temperature and room humidity for 2 hours prior  
Tangent of Loss Angle (tanδ):  
150% of the value of item 7. 3. to the measurement.  
Appearance :  
No significant change can be  
observed.  
14 Shelf Life  
Leakage Current :  
Test Temperature  
Test Duration  
: 85±2℃  
: 1000 +480 hours  
the value of item 7.1.  
Capacitance Change :  
Within ±20% of the initially  
measured value.  
After subjected to the test with no voltage applied,  
capacitors shall undergo voltage treatment* and  
Tangent of Loss Angle (tanδ):  
150% of the value of item 7. 3. be left for 2 hours at room temperature and  
Appearance :  
humidity prior to the measurement.  
No significant change can be  
observed.  
* Voltage treatment : The rated voltage shall be applied to the capacitors, which are connected to series protective  
resistors (1000±10), for 30 minutes as a posttest treatment (performing discharge).  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
16  
Engineering Draft  
A type AM series X type  
8. Other Characteristics  
Table 1. Tangent of Loss Angle(tanδ)  
V.DC  
D.F.  
6.3  
10  
16  
0.20  
25  
0.16  
35  
0.14  
50  
0.12  
63  
0.11  
100  
0.10  
0.28  
0.24  
Added 0. 02 per 1000µF for items with over 1000µF items.  
Table 2.Characteristics at low temperature Impedance ratio (at 120 Hz)  
V.DC  
6.3  
5
10  
4
16  
3
25  
2
35  
2
50  
2
3
63  
2
3
100  
2
3
Z(-25)/Z(20)  
Z(-40)/Z(20)  
12  
10  
8
5
4
-25℃:Added 0.5 per 1000µF for items with over 1000µF items.  
-40℃:Added 1.0 per 1000µF for items with over 1000µF items.  
Table 3.Frequency Correction Factor of Rated Ripple Current  
Frequency(Hz)  
50,60  
0.7  
120  
1
1k  
10k~  
1.7  
Coefficient  
1.3  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
17  
Engineering Draft  
A type AM series X type  
9. Snap-In Lead Formed Type ( Part No. Suffix : E )  
φ5φ8  
φd  
H2  
φD±0.5  
H3  
H1  
φ10φ18  
φd  
H2  
H1  
φD±0.5  
* Direction of bending is random.  
[mm]  
φD  
H1±0.5  
H2  
H3 max. F±0.5  
P
E max. φd±0.05  
P.W.B  
φ
t
5
6.3  
8
4.5  
4.5  
4.5  
4.5  
4.5  
4.5  
4.5  
2.7  
2.7  
2.7  
2.7  
2.7  
2.7  
2.7  
2.5  
2.5  
5.0  
5.0  
5.0  
5.0  
5.0  
7.5  
7.5  
1.00  
1.00  
1.00  
1.00  
1.00  
0.90  
0.90  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
0.50  
0.50  
0.60  
0.60  
0.60  
0.80  
0.80  
0.9  
1.0  
1.0  
1.0  
1.0  
1.1  
1.1  
1.6  
1.6  
1.6  
1.6  
1.6  
1.6  
1.6  
2.5  
10  
-ꢀ  
-ꢀ  
-ꢀ  
-ꢀ  
12.5  
16  
18  
* The lead forming dimensions above shall only be subjected to our outgoing inspection and  
not to the customer's incoming inspection.  
Due to the application of mechanical stress during transportation, actual dimensions might  
not meet the specification.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
18  
Engineering Draft  
A type AM series X type  
10. Lead Taping  
10-1. Lead Taping ( Body Diameter φ5 φ6. 3 ) The Suffix of Taping Part Number : i  
1) Applicable Range  
This specification is applied to products, which are Aluminum Electrolytic Capacitors (JIS04 type)  
that taped with single tape.  
2) Taping Shape & Dimensions  
φ5  
φ6.3  
P  
φD  
h  
P  
φD  
h  
P2  
P
P2  
P
P1  
F
P1  
F
φd  
φD0  
P0  
φd  
φD0  
P0  
[mm]  
Item  
Body diameter  
Body length  
Lead wire diameter  
Body pitch  
Feed hole pitch *1  
Symbol  
φD  
L
Dimensions  
Tolerance  
Remarks  
5
6.3  
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
11.0 11.2  
0.5  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
φd  
±0.05 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±1.0 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±0.2 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
P
12.7  
P0  
12.7  
Specified by the contact surface between  
tape & lead  
Hole center to lead  
P1  
P2  
F
5.1  
6.35  
2.5  
±0.5  
±1.00  
±0.5  
Feed hole center  
to product center  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
Specified by the contact surface between  
tape & lead  
Lead to lead distance  
Mount tape  
W
18.0  
6.0 ≦  
9.0  
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
+0.75  
Adhesive tape  
W0  
W1  
W2  
Hole position  
Adhesive tape slipping  
Height of product  
from the center  
0 1.5  
H
18.50  
-0.50  
±0.2  
Feed hole diameter  
Inclination of body  
Inclination of body  
Total tape thickness  
φD0  
h  
P  
t
4.0  
1.0 ≧  
1.0 ≧  
0.6  
Specified by the top of an aluminum can  
Specified by the top of an aluminum can  
±0.3 CP wire is excluded  
*1 Cumulative deviation of “feed hole pitch” shall be less than 1 mm in 20 sections.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
19  
Engineering Draft  
A type AM series X type  
10-2. Lead Taping ( Body Diameter φ5 φ8 ) The Suffix of Taping Part Number : B  
1) Applicable Range  
This specification is applied to products, which are Aluminum Electrolytic Capacitors (JIS04 type)  
that taped with single tape.  
2) Taping Shape & Dimensions  
φ5,φ6.3  
φ8  
P  
h  
φD  
φD  
P  
h  
P2  
P
P2  
P
P1  
F
F
P1  
φd  
φD0  
P0  
φd  
φD0  
P0  
[mm]  
Item  
Symbol  
φD  
L
Dimensions  
6.3  
Tolerance  
Remarks  
Body diameter  
5
8
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
Body length  
11.0 11.5  
0.5  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
Lead wire diameter  
Body pitch  
φd  
0.6  
±0.05 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±1.0 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±0.2 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
P
12.7  
Feed hole pitch *1  
P0  
12.7  
Specified by the contact surface between  
tape & lead  
Hole center to lead  
P1  
P2  
F
3.85  
6.35  
5.0  
±0.5  
Feed hole center  
to product center  
±1.00  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
+0.8 Specified by the contact surface between  
-0.2 tape & lead  
Lead to lead distance  
Mount tape  
Adhesive tape  
Hole position  
W
18.0  
6.0 ≦  
9.0  
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
+0.75  
W0  
W1  
W2  
Adhesive tape slipping  
Height of product  
0 1.5  
H
18.5  
20.0  
-0.50  
from the center  
±0.5  
Lead wire clinch height  
Feed hole diameter  
Inclination of body  
Inclination of body  
Total tape thickness  
H0  
φD0  
h  
P  
t
16.0  
4.0  
±0.2  
1.0 ≧  
1.0 ≧  
0.6  
Specified by the top of an aluminum can  
Specified by the top of an aluminum can  
±0.3 CP wire is excluded  
*1 Cumulative deviation of “feed hole pitch” shall be less than 1 mm in 20 sections.  
*2 Lead forming angle  
A=90°min  
A
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
20  
Engineering Draft  
A type AM series X type  
10-3. Lead Taping ( Body Diameter φ10 ,φ12.5 ) The Suffix of Taping Part Number : B  
1) Applicable Range  
This specification is applied to products, which are Aluminum Electrolytic Capacitors (JIS04 type)  
that taped with single tape.  
2) Taping Shape & Dimensions  
φD  
P  
h  
P2  
P
P1  
F
φd  
φD0  
P0  
[mm]  
Item  
Body diameter  
Body length  
Symbol  
φD  
L
Dimensions  
Tolerance  
Remarks  
10  
12.5  
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
12.5 25.0  
Lead wire diameter  
Body pitch  
φd  
0.60  
±0.05 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±1.0 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±0.2 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
P
12.7  
15.0  
15.0  
Feed hole pitch *1  
P0  
12.7  
3.85  
Specified by the contact surface between  
tape & lead  
Hole center to lead  
P1  
P2  
F
5.00  
±0.5  
Feed hole center  
to product center  
6.35  
7.50  
±1.00  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
+0.8 Specified by the contact surface between  
-0.20 tape & lead  
Lead to lead distance  
5.0  
Mount tape  
W
18.0  
6.0 ≦  
9.0  
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
+0.75  
Adhesive tape  
W0  
W1  
W2  
Hole position  
Adhesive tape slipping  
Height of product  
from the center  
0 1.5  
H
18.50  
-0.50  
±0.2  
Feed hole diameter  
Inclination of body  
Inclination of body  
Total tape thickness  
φD0  
h  
P  
t
4.0  
1.0 ≧  
1.0 ≧  
0.6  
Specified by the top of an aluminum can  
Specified by the top of an aluminum can  
±0.3 CP wire is excluded  
*1 Cumulative deviation of “feed hole pitch” shall be less than 1 mm in 20 sections.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
21  
Engineering Draft  
A type AM series X type  
10-4. Lead Taping ( Body Diameter φ16 ) The Suffix of Taping Part Number : B  
1) Applicable Range  
This specification is applied to products, which are Aluminum Electrolytic Capacitors (JIS04 type)  
that taped with single tape.  
2) Taping Shape & Dimensions  
P  
h  
P
P2  
φD  
F
P1  
φd  
φD0  
P0  
[mm]  
Item  
Body diameter  
Body length  
Symbol  
φD  
L
Dimensions  
16  
Tolerance  
Remarks  
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
25.0  
Lead wire diameter  
Body pitch  
φd  
0.80  
±0.05 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±1.0 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±0.2 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
P
30.0  
Feed hole pitch *1  
P0  
15.0  
Specified by the contact surface between  
tape & lead  
Hole center to lead  
P1  
P2  
F
3.75  
±0.5  
±1.00  
±0.5  
Feed hole center  
to product center  
7.5  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
Specified by the contact surface between  
tape & lead  
Lead to lead distance  
7.5  
Mount tape  
W
18.0  
6.0 ≦  
9.0  
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
±0.5 ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
ꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀꢀ  
+0.75  
Adhesive tape  
W0  
W1  
W2  
Hole position  
Adhesive tape slipping  
Height of product  
from the center  
0 1.5  
H
18.50  
-0.50  
±0.2  
Feed hole diameter  
Inclination of body  
Inclination of body  
Total tape thickness  
φD0  
h  
P  
t
4.0  
2.0 ≧  
1.3 ≧  
0.6  
Specified by the top of an aluminum can  
Specified by the top of an aluminum can  
±0.3 CP wire is excluded  
*1 Cumulative deviation of “feed hole pitch” shall be less than 1 mm in 20 sections.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
22  
Engineering Draft  
A type AM series X type  
11. Taping Method  
11-1 The capacitors shall be placed vertically on the base tape, and their lead wires are fixed with  
the adhesive tape. In addition, the direction of polarity is standardized as the base tape  
is situated underneath of an adhesive tape, and lead wires with the same polarity are placed on  
the right hand side (the direction of polarity for bipolar products is not specified).  
(Examples)  
*Polarity direction  
φ5 φ12.5 : Negative polarity on the right.  
φ16  
: Positive polarity on the right.  
11-2  
11-3  
After taping, there shall be no more than three blank spaces without lead wires on the base tape.  
The number of blank spaces within a packing unit (an inner carton) is not restricted, however,  
the specified packing quantity must be satisfied.  
The connection method is as follows. The portion shall meet the general taping specification.  
The position of connection shall not be restricted.  
Connecting point  
Base  
Adhesive tape  
Connect with the  
adhesive tape  
Note ) When connecting two base tapes, they shall not be piled on top of each other.  
Base tapes shall not be connected with each other by using staples.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
23  
Engineering Draft  
A type AM series X type  
11-4 In case of removing the products after taping, lead wires shall be cut or the capacitor  
shall be pulled out.  
The length of remaining lead wire shall be less than 2.0 mm from the upper edge of  
the base tape.  
Lead wire  
Base  
2mm max.  
Adhesive  
tape  
11-5 Tensile strength of lead wire after taping (specified for the positive lead wire only) :  
Fix the tape as below and pull the positive lead wire to the vertical direction by using the  
push pull scale.  
The tensile strength shall be greater than 2. 94 N.  
Push pull scale  
Lead wire  
Fixed  
After continuously storing in an atmosphere of 40±2and 90% 98% for 250 hours,  
the taped products shall meet the specification above, and there shall be no inclination  
of the capacitors or covering of holes with the adhesive.  
11-6 The leader is the spot where more than 4pcs capacitors are lacked at the both ends of taping. (φ10)  
Example-1  
Example-2  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
24  
Engineering Draft  
A type AM series X type  
12. Packing Method  
12-1 Taped products shall be packed in an inner carton ( the smallest packing unit ) in the zigzag pattern.  
In an inner carton, the lead wires with positive polarity are not to be placed on the top of lead wires  
with negative polarity and vice versa (however, the last sentence does not apply to bipolar products).  
(Examples)  
No unit at  
Inner packing  
case  
The corner.  
φ10  
φ16  
φ4  
φ8  
12-2 Polarity identifications on an inner carton shall match the polarity of products situated inside  
the inner carton.  
12-3 Inner cartons shall be handled as follows.  
* No more than 10 inner cartons shall be piled on top of each other.  
* In case of situating cartons in upright position, the indication of polarity shall be faced upward.  
* The products shall be handled with care.  
< Right >  
< Wrong>  
×
×
12-4 The inner cartons shall be packed in a cardboard box for transportation.  
Products with various part numbers can be packed in an outer carton upon request.  
However, each inner carton (the smallest packing unit) shall only contain products  
with the same part number.  
12-5 The shape & dimensions of inner cartons shall be as follows.  
[mm]  
(c)  
Can size  
(a)  
(b)  
(b)  
φD  
L
φ5 φ8  
~ 11.5  
340  
340  
340  
340  
340  
340  
55  
55  
62  
65  
66  
66  
320  
320  
320  
320  
330  
330  
φ10  
16  
20  
20  
25  
25  
φ12.5  
(c)  
φ16  
Note : The dimensions listed above are subject to  
change without notice, depending on the  
auto-insert machine.  
(a)  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
25  
Engineering Draft  
Radial lead type  
Package Amount and Shape  
Label information on the packing box.  
The label has following information in English  
a) Rated Voltage, Capacitance  
b ) Manufacturer’s Trademark  
c ) Part Number  
Package Label Example  
Long lead , Lead formed Outer Box  
d) Packing Quantity  
e) Serial No.  
f ) Manufacturer’s Name  
g ) Country of Origin  
Long lead , Lead formed  
(Unit:pcs)  
Long lead  
Packaging  
Quantity per box Quantity  
Lead formed  
Can size Packaging  
Quantity  
Packaging Packaging  
Contents of label description  
(1) Customer Part No.  
(2) Quantity  
Quantity per box  
φ5x11  
200  
200  
200  
200  
200  
100  
50  
10000  
5000  
4000  
2000  
2000  
1000  
500  
200  
10000  
5000  
4000  
2000  
1000  
500  
(3) Rated Capacitance  
(4) Voltage  
φ6.3x11.2  
φ8x11.5  
200  
200  
200  
200  
100  
50  
(5) Can Size  
(6) Product Part No.  
φ10x12.5  
φ10x20  
φ12.5x20  
φ12.5x25  
φ16x25  
<JAPAN PRODUCTS>  
Customer Part No.  
G
(1)  
(3N)1  
(1)  
(2)  
108010  
φ16x31.5  
φ18x31.5  
φ18x40  
200  
(3N)2  
Y5201R41A001  
FIXED ALUMINIUM ELECTROLYTIC CAPACITOR  
(3) uF (4) V  
(5) φ  
(6)  
Package Material  
Long lead  
×
(2)  
Serial No. Y5201R41A001  
Panasonic Electronic Devices Co.,Ltd.  
Lead formed  
Inner  
Vinyl bag  
Card board  
MADE IN JAPAN  
EIAJ C-3 001  
Outer  
<MALAYSIA PRODUCTS>  
Production month  
G
(1)  
(3N)1 (1)  
(2)  
108010  
(3) uF  
(4) V  
(3N)2 D0002R03D428  
(5) φ  
X
L
FIXED ALUMINIUM ELECTROLYTIC CAPACITOR  
(6)  
Serial No.  
D0002R03D428  
(2)  
Panasonic Electronic Devices (M) Sdn.Bhd.  
EIAJ-C3 PEDMA(SA) Made in Malaysia  
PCS.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
26  
Engineering Draft  
Radial lead type  
Package Amount and Shape  
Label information on the packing box.  
The label has following information in English  
a) Rated Voltage, Capacitance  
b) Manufacturer’s Trademark  
c ) Part Number  
d) Packing Quantity  
e) Serial No.  
f ) Manufacturer’s Name  
g) Country of Origin  
Taping (Unit:pcs)  
Box  
Can size Packaging  
Quantity  
Packaging  
Quantity per box  
10000  
φ5  
2000  
2000  
1000  
500  
φ6.3  
φ8  
φ10  
φ12.5  
φ16  
10000  
5000  
2000  
500  
2000  
250  
1000  
Package Label Example  
Taping Outer Box  
or  
Contents of label description  
(1) Customer Part No.  
(2) Quantity  
(3) Rated Capacitance  
(4) Voltage  
(5) Can Size  
(6) Product Part No.  
JAPAN PRODUCTS>  
MALAYSIA PRODUCTS>  
Customer Part No.  
Customer Part No.  
Production month  
G
G
(1)  
(3N)1  
(1)  
(3N)1  
(1)  
(2)  
108010  
(1)  
(2)  
108010  
(3) uF  
(4) V  
X L  
(3N)2  
D0002R03D428  
(3N)2  
Y5201R41A001  
(5) φ  
Serial No.  
D0002R03D428  
(2)  
FIXED ALUMINIUM ELECTROLYTIC CAPACITOR  
(6)  
FIXED ALUMINIUM ELECTROLYTIC CAPACITOR  
(3) uF (4) V  
(5) φ  
(6)  
×
Panasonic Electronic Devices (M) Sdn.Bhd.  
EIAJ-C3 PEDMA(SA) Made in Malaysia  
PCS  
(2)  
Serial No. Y5201R41A001  
Panasonic Electronic Devices Co.,Ltd.  
MADE IN JAPAN  
EIAJ C-3 001  
Package Material  
Taping  
Card board  
Card board  
Inner  
Outer  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
27  
Engineering Draft  
Radial lead type  
Package Amount and Shape  
Taping Inner Box  
Contents of label description  
(1) Customer Part No.  
(2) Quantity  
(3) Rated Capacitance  
(4) Voltage  
(5) Can Size  
(6) Product Part No.  
JAPAN PRODUCTS>  
MALAYSIA PRODUCTS>  
Customer Part No.  
Customer Part No.  
Production month  
(2)  
(1)  
G
(3) uF (4) V  
(5) φ ×  
Serial No. Y5201R41A001  
G
(1)  
(3N)1  
(3N)1  
(3N)2  
(1)  
(2)  
(1)  
(3) uF  
(4) V  
X L  
Y5201R41A001  
108010  
(3N)2  
D0002R03D428  
108010  
(5) φ  
Serial No.  
D0002R03D428  
(2)  
(2)  
PCS.  
FIXED ALUMINIUM ELECTROLYTIC CAPACITOR  
(6)  
FIXED ALUMINIUM ELECTROLYTIC CAPACITORS  
(6)  
Panasonic Electronic Devices Co.,Ltd. EIAJ C-3 MADE IN JAPAN 001  
Panasonic Electronic Devices (M) Sdn.Bhd  
EIAJ-C3 PEDMA(SA) Made in Malaysia  
PCS.  
Storage  
1. With respect to the handling method, follow Item 12-3 in this specification.  
2. Products shall be out of direct sun light. In addition, the temperature and humidity shall be normal.  
Minimum order quantity  
The order shall be placed with a multiple of the inner carton quantity.  
Examples : φ5 φ6. 3  
φ8  
: minimum 2000 pcs  
: minimum 1000 pcs  
φ10 φ12. 5 : minimum  
500 pcs  
250 pcs  
φ16  
: minimum  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
28  
Engineering Draft  
Application Guidelines  
* This specification guarantees the quality and performance of the product as individual components.  
Before use, check and evaluate their compatibility with installed in your products.  
* Do not use the products beyond the specifications described in this document.  
* Install the following systems for a failsafe design to ensure safety if these products are to be used in equipment where a defect in these  
products may cause the loss of human life or other signification damage, such as damage to vehicles (automobile, train, vessel), traffic  
lights, medical equipment, aerospace equipment, electric heating appliances, combustion/ gas equipment, rotating equipment, and  
disaster/crime prevention equipment.  
The system is equipped with a protection circuit and protection device.  
The system is equipped with a redundant circuit or other system to prevent an unsafe status in the event of a single fault.  
* Before using the products, carefully check the effects on their quality and performance, and determined whether or not they can be used.  
These products are designed and manufactured for general-purpose and standard use in general electronic equipment.  
These products are not intended for use in the following special conditions.  
1. In liquid, such as Water, Oil, Chemicals, or Organic solvent  
2. In direct sunlight, outdoors, or in dust  
3. In vapor, such as dew condensation water of resistive element, or water leakage, salty air, or air with a high concentration corrosive  
gas, such as Cl2, H2S, NH3, SO2, or NO2  
4. In an environment where strong static electricity or electromagnetic waves exist  
5. Mounting or placing heat-generating components or inflammables, such as vinyl-coated wires, near these products  
6. Sealing or coating of these products or a printed circuit board on which these products are mounted, with resin and other material  
7. Using resolvent, water or water-soluble cleaner for flux cleaning agent after soldering.  
(In particular, when using water or a water-soluble cleaning agent, be careful not to leave water residues)  
* Please arrange circuit design for preventing impulse or transitional voltage.  
Do not apply voltage, which exceeds the full rated voltage when the capacitors receive impulse voltage, instantaneous high voltage,  
high pulse voltage etc.  
* Electrolyte is used in the products. Therefore, misuse can result in rapid deterioration of characteristics and functions of each product.  
Electrolyte leakage damages printed circuit and affects performance, characteristics, and functions of customer system.  
1. Circuit Design  
1.1 Operating Temperature and Frequency  
Electrical parameters for electrolytic capacitors are normally specified at 20 temperature and 120 Hz frequency.  
These parameters vary with changes in temperature and frequency. Circuit designers should take these changes into consideration.  
(1) Effects of operating temperature on electrical parameters  
a) At higher temperatures, leakage current and capacitance increase while equivalent series resistance (ESR) decreases.  
b) At lower temperatures, leakage current and capacitance decrease while equivalent series resistance (ESR) increases.  
(2) Effects of frequency on electrical parameters  
a) At higher frequencies, capacitance and impedance decrease while tanδ increases.  
b) At lower frequencies, heat generated by ripple current will rise due to an increase in equivalent series resistance (ESR).  
1.2 Operating Temperature and Life Expectancy  
(1) Expected life is affected by operating temperature. Generally, each 10 reduction in temperature will double the expected life.  
Use capacitors at the lowest possible temperature below the upper category temperature.  
(2) If operating temperatures exceed the upper category limit, rapid deterioration of electrical parameter will occur and irreversible damage  
will result.  
Check for the maximum capacitor operating temperatures including ambient temperature, internal capacitor temperature rise due to  
ripple current, and the effects of radiated heat from power transistors, IC's or resistors.  
Avoid placing components, which could conduct heat to the capacitor from the back side of the circuit board.  
(3) The formula for calculating expected life at lower operating temperatures is as follows ;  
T1-T2  
10  
L2=L1x2  
L1  
L2  
T1  
T2  
:
:
:
:
Guaranteed life (h) at temperature, T1 ℃  
Expected life (h) at temperature, T2 ℃  
Upper category temperature ()  
Actual operating temperature, ambient temperature + temperature rise due to ripple current heating()  
(4) Please use according to the lifetime as noted in this specification. Using products beyond end of the lifetime may change characteristics rapidly,  
short-circuit, operate pressure relief vent, or leak electrolyte.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
29  
Engineering Draft  
Application Guidelines  
1.3 Common Application Conditions to Avoid  
The following misapplication load conditions will cause rapid deterioration of a capacitor’s electrical parameters.  
In addition, rapid heating and gas generation within the capacitor can occur, causing the pressure relief vent to operate and resultant leakage  
of electrolyte. Under extreme conditions, explosion and fire ignition could result.  
The leaked electrolyte is combustible and electrically conductive.  
(1) Reverse Voltage  
DC capacitors have polarity. Verify correct polarity before insertion. For circuits with changing or uncertain polarity, use DC bipolar  
capacitors. DC bipolar capacitors are not suitable for use in AC circuits.  
(2) Charge / Discharge Applications  
Standard capacitors are not suitable for use in repeating charge/discharge applications. For charge/ discharge applications, consult us  
with your actual application condition.  
(3) Over voltage  
Do not apply voltages exceeding the maximum specified rated voltage. Voltages up to the surge voltage rating are acceptable for  
short periods of time.  
Ensure that the sum of the DC voltage and the superimposed AC ripple voltage does not exceed the rated voltage.  
(4) Ripple Current  
Do not apply ripple currents exceeding the maximum specified value. For high ripple current applications, use a capacitor designed for  
high ripple currents. In addition, consult us if the applied ripple current is to be higher than the maximum specified value.  
Ensure that rated ripple currents that superimposed on low DC bias voltages do not cause reverse voltage conditions.  
1.4 Using Two or More Capacitors in Series or Parallel  
(1) Capacitors Connected in Parallel  
The circuit resistance can closely approximate the series resistance of the capacitor, causing an imbalance of ripple current loads within  
the capacitors. Careful wiring methods can minimize the possible application of an excessive ripple current to a capacitor.  
(2) Capacitors Connected in Series  
Differences in normal DC leakage current among capacitors can cause voltage imbalances.  
The use of voltage divider shunt resistors with consideration to leakage currents can prevent capacitor voltage imbalances.  
1.5 Capacitor Mounting Considerations  
(1) Double-Sided Circuit Boards  
Avoid wiring pattern runs, which pass between the mounted capacitor and the circuit board. When dipping into a solder bath,  
an excess solder may deposit under the capacitor by capillary action, causing short circuit between anode and cathode terminals.  
(2) Circuit Board Hole Positioning  
The vinyl sleeve of the capacitor can be damaged if solder passes through a lead hole into the subsequently processed parts.  
Special care when locating hole positions in proximity to capacitors is recommended.  
(3) Circuit Board Hole Spacing  
The spacing of circuit board holes should match the lead wire spacing of capacitors within the specified tolerances.  
Incorrect spacing can cause an excessive lead wire stress during the insertion process.  
This may result in premature capacitor failure due to the short or open circuit, increased leakage current, or electrolyte leakage.  
(4) Clearance for Case Mounted Pressure Relief  
Capacitors with case mounted pressure relief require sufficient clearance to allow proper pressure relief operation.  
The minimum clearances are dependent of capacitor diameters as follows.  
Dia. 6. 3 mm Dia. 16 mm : 2 mm minimum, Dia. 18 mm Dia. 35 mm : 3 mm minimum, Dia 40 mm or greater : 5 mm minimum.  
(5) Clearance for Seal Mounted Pressure Relief  
Provide a hole on a circuit board to relieve gas when a pressure relief of a capacitor is situated underneath of the circuit board.  
(6) Wiring Near the Pressure Relief  
Avoid locating high voltage, high current wiring, or circuit board paths above the pressure relief .  
Flammable, high temperature gas that exceeds 100 may be released and could dissolve the wire insulation and ignite.  
(7) Circuit Board Patterns Under the Capacitor  
Avoid circuit board runs underneath the capacitor, as an electrical short can occur due to an electrolyte leakage.  
(8) Screw Terminal Capacitor Mounting  
Do not orient the capacitor with the screw terminal side of the capacitor facing downward.  
Tighten the terminal and mounting bracket screws within the torque range specified in the specification.  
1.6 Electrical Isolation of the Capacitor  
Completely isolate the capacitor as follows.  
(1) Between the cathode and the case (except for axially leaded B types) and between the anode terminal and other circuit paths.  
(2) Between the extra mounting terminals (on T types) and the anode terminal, cathode terminal, and other circuit paths.  
1.7 Capacitor Sleeve  
The vinyl sleeve or laminate coating is intended for marking and identification purposes and is not meant to electrically insulate the capacitor.  
The sleeve may split or crack if immersed into solvents such as toluene or xylene and then subsequently exposed to high temperatures.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
30  
Engineering Draft  
Application Guidelines  
2. Capacitor Handling Techniques  
2.1 Considerations Before Using  
(1) Capacitors have a finite life. Do not reuse or recycle capacitors from used equipment.  
(2) Transient recovery voltage may be generated in the capacitor due to dielectric absorption.  
If required, this voltage can be discharged with a resistor with a value of about 1k.  
(3) Capacitors stored for a long period of time may exhibit an increase in leakage current.  
This can be corrected by gradually applying rated voltage in series with a resistor of approximately 1k.  
(4) If capacitors are dropped, they can be damaged mechanically or electrically. Avoid using dropped capacitors.  
(5) Dented or crushed capacitors should not be used. The seal integrity can be damaged and loss of electrolyte/shortened life can result.  
2.2 Capacitor Insertion  
(1) Verify the correct capacitance and rated voltage of the capacitor.  
(2) Verify the correct polarity of the capacitor before insertion.  
(3) Verify the correct hole spacing before insertion (land pattern size on chip type) to avoid stress on the terminals.  
(4) Ensure that the lead clinching operation done by auto insertion equipments does not stress the capacitor leads where they enter the seal of  
the capacitor.  
For chip type capacitors, excessive mounting pressure can cause high leakage current, short circuit, or disconnection.  
2.3 Manual Soldering  
(1) Apply soldering conditions (temperature and time) based on the specification, or do not exceed temperature of 350 for 3  
seconds or less.  
(2) If lead wires must be modified to meet terminal board hole spacing, avoid stress on the lead wire where it enters the capacitor seal.  
(3) If a soldered capacitor must be removed and reinserted, avoid excessive stress on the capacitor leads.  
(4) Avoid physical contacts between the tip of the soldering iron and capacitors to prevent melting of the vinyl sleeve.  
2.4 Flow Soldering  
(1) Do not immerse the capacitor body into the solder bath as excessive internal pressure could result.  
(2) Apply proper soldering conditions (temperature, time, etc.). Do not exceed the specified limits.  
(3) Do not allow other parts or components to touch the capacitor during soldering.  
2.5 Other Soldering Considerations  
Rapid temperature rise during the preheat operation and resin bonding operation can cause cracking of the capacitor’s vinyl sleeve.  
For heat curing, do not exceed 150 for the maximum time of 2 minutes.  
2.6 Capacitor Handling after Soldering  
(1) Avoid moving the capacitor after soldering to prevent excessive stress on the lead wires where they enter the seal.  
(2) Do not use the capacitor as a handle when moving the circuit board assembly.  
(3) Avoid striking the capacitor after assembly to prevent failure due to excessive shock.  
2.7 Circuit Board Cleaning  
(1) Circuit boards can be immersed or ultrasonically cleaned using suitable cleaning solvents for up to 5 minutes  
and up to 60 maximum temperatures. The boards should be thoroughly rinsed and dried.  
The use of ozone depleting cleaning agents is not recommended for the purpose of protecting our environment.  
(2) Avoid using the following solvent groups unless specifically allowed in the specification ;  
Halogenated cleaning solvents : except for solvent resistant capacitor types, halogenated solvents can permeate the seal and cause  
internal capacitor corrosion and failure.  
For solvent resistant capacitors, carefully follow the temperature and time requirements based on the  
specification. 1-1-1 trichloroethane should never be used on any aluminum electrolytic capacitor.  
Alkaline solvents  
: could react and dissolve the aluminum case.  
Petroleum based solvents : deterioration of the rubber seal could result.  
Xylene  
: deterioration of the rubber seal could result.  
Acetone  
: removal of the ink markings on the vinyl sleeve could result.  
(3) A thorough drying after cleaning is required to remove residual cleaning solvents that may be trapped between the capacitor and the circuit  
board. Avoid drying temperatures, which exceed the Upper category temperature of the capacitor.  
(4) Monitor the contamination levels of the cleaning solvents during use in terms of electrical conductivity, pH, specific gravity, or water content.  
Chlorine levels can rise with contamination and adversely affect the performance of the capacitor.  
(5) Depending on the cleaning method, the marking on a capacitor may be erased or blurred.  
Please consult us if you are not certain about acceptable cleaning solvents or cleaning methods.  
2.8 Mounting Adhesives and Coating Agents  
When using mounting adhesives or coating agents to control humidity, avoid using materials containing halogenated solvents.  
Also, avoid the use of chloroprene based polymers.  
Harden on dry adhesive or coating agents well lest the solvent should be left.  
After applying adhesives or coatings, dry thoroughly to prevent residual solvents from being trapped between the capacitor and the circuit  
board.  
2.9 Fumigation  
In exporting electronic appliances with aluminum electrolytic capacitors, in some cases fumigation treatment using such halogen  
compound as methyl bromide is conducted for wooden boxes.  
If such boxes are not dried well, the halogen left in the box is dispersed while transported and enters in the capacitors inside.  
This possibly causes electrical corrosion of the capacitors. Therefore, after performing fumigation and drying make sure that no halogen  
is left.  
Don’t perform fumigation treatment to the whole electronic appliances packed in a box.  
Panasonic Electronic Devices Co.,Ltd.  
CE-AAMX-CEM-1  
31  
Engineering Draft  
Application Guidelines  
3. Precautions for using capacitors  
3.1 Environmental Conditions  
Capacitors should not be stored or used in the following environments.  
(1) Exposure to temperatures above the upper category or below the lower category temperature of the capacitor.  
(2) Direct contact with water, salt water, or oil.  
(3) High humidity conditions where water could condense on the capacitor.  
(4) Exposure to toxic gases such as hydrogen sulfide, sulfuric acid, nitric acid, chlorine, Chlorine compound, Bromine, Bromine compound or  
ammonia.  
(5) Exposure to ozone, radiation, or ultraviolet rays.  
(6) Vibration and shock conditions exceeding specified requirements.  
3.2 Electrical Precautions  
(1) Avoid touching the terminals of a capacitor as a possible electric shock could result. The exposed aluminum case is not insulated and  
could also cause electric shock if touched.  
(2) Avoid short circuiting the area between the capacitor terminals with conductive materials including liquids such as acids or alkaline solutions.  
4. Emergency Procedures  
(1) If the pressure relief of the capacitor operates, immediately turn off the equipment and disconnect from the power source.  
This will minimize an additional damage caused by the vaporizing electrolyte.  
(2) Avoid contact with the escaping electrolyte gas, which can exceed 100 temperatures.  
If electrolyte or gas enters the eye, immediately flush the eye with large amounts of water.  
If electrolyte or gas is ingested by mouth, gargle with water.  
If electrolyte contacts the skin, wash with soap and water.  
5. Long Term Storage  
Leakage current of a capacitor increases with long storage times. The aluminum oxide film deteriorates as a function of temperature and time.  
If used without reconditioning, an abnormally high current will be required to restore the oxide film.  
This surge current could cause the circuit or the capacitor to fail. After one year, a capacitor should be reconditioned by applying the rated  
voltage in series with a 1000 current limiting resistor for a time period of 30 minutes.  
5.1 Environmental Conditions  
(1) Exposure to temperatures above the upper category or below the lower category temperature of the capacitor.  
(2) Direct contact with water, salt water, or oil.  
(3) High humidity conditions where water could condense on the capacitor.  
(4) Exposure to toxic gases such as hydrogen sulfide, sulfuric acid, nitric acid, chlorine, Chlorine compound, Bromine, Bromine compound or  
ammonia.  
(5) Exposure to ozone, radiation, or ultraviolet rays.  
(6) Vibration and shock conditions exceeding specified requirements.  
6. Capacitor Disposal  
When disposing capacitors, use one of the following methods.  
(1) Incinerate after crushing the capacitor or puncturing the can wall (to prevent explosion due to internal pressure rise).  
(2) Dispose as solid waste.  
NOTE : Local laws may have specific disposal requirements which must be followed.  
Panasonic Electronic Devices Co.,Ltd.  

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