Conductive Polymer Aluminum Solid Capacitors
Products Catalog
Products Catalog
2019.6
http://industrial.panasonic.com/ww/products/capacitors/polymer-capacitors/os-con
2019
1RWLFHV,WHPVWREHREVHUYHG
ٹ$
SS
OLFDEOHODZVDQGUH
J
XODWLRQV
嵣7KLVSURGXFWFRPSOLHVZLWKWKH5R+6'LUHFWLYH5HVWULFWLRQRIWKHXVHRIFHUWDLQKD]DUGRXVVXEVWDQFHVLQ
HOHFWULFDODQGHOHFWURQLFHTXLSPHQW',5(&7,9((8
嵣1R2]RQH'HSOHWLQJ&KHPLFDOV2'&VFRQWUROOHGXQGHUWKH0RQWUHDO3URWRFRO$JUHHPHQWDUHXVHGLQ
SURGXFLQJWKLVSURGXFW
岜:HGRQRWXVH3%%VRU3%'(VDVEURPLQDWHGIODPHUHWDUGDQWV
嵣([SRUWSURFHGXUHZKLFKIROORZHGH[SRUWUHODWHGUHJXODWLRQVVXFKDVIRUHLJQH[FKDQJHDQGDIRUHLJQWUDGH
PHWKRGRQWKHRFFDVLRQRIH[SRUWRIWKLVSURGXFW
嵣7KHVHSURGXFWVDUHQRWGDQJHURXVJRRGVRQWKHWUDQVSRUWDWLRQDVLGHQWLILHGE\818QLWHG1DWLRQVQXPEHUV
RU81FODVVLILFDWLRQ
ٹ/LPLWHGD
SS
OLFDWLRQV
嵣7KLVFDSDFLWRULVGHVLJQHGWREHXVHGIRUHOHFWURQLFVFLUFXLWVVXFKDVDXGLRYLVXDOHTXLSPHQWKRPH
DSSOLDQFHVFRPSXWHUVDQGRWKHURIILFHHTXLSPHQWRSWLFDOHTXLSPHQWPHDVXULQJHTXLSPHQW
嵣+LJKUHOLDELOLW\DQGVDIHW\DUHUHTXLUHG>EHDSRVVLELOLW\WKDWLQFRUUHFWRSHUDWLRQRIWKLVSURGXFWPD\GRKDUP
岜WRDKXPDQOLIHRUSURSHUW\@PRUH:KHQXVHLVFRQVLGHUHGE\WKHXVHWKHGHOLYHU\VSHFLILFDWLRQVZKLFKVXLWHG
WKHXVHVHSDUDWHO\QHHGWREHH[FKDQJHG
ٹ)RUV
S
HFLILFDWLRQ
嵣7KLVVSHFLILFDWLRQJXDUDQWHHVWKHTXDOLW\DQGSHUIRUPDQFHRIWKHSURGXFWDVLQGLYLGXDOFRPSRQHQWV
%HIRUHXVHFKHFNDQGHYDOXDWHWKHLUFRPSDWLELOLW\ZLWKLQVWDOOHGLQ\RXUSURGXFWV
嵣'RQRWXVHWKHSURGXFWVEH\RQGWKHVSHFLILFDWLRQVGHVFULEHGLQWKLVGRFXPHQW
ٹ8
S
RQD
SS
OLFDWLRQWR
S
URGXFWVZKHUHVDIHW
\
LVUH
J
DUGHGDVLP
S
RUWDQW
,QVWDOOWKHIROORZLQJV\VWHPVIRUDIDLOVDIHGHVLJQWRHQVXUHVDIHW\LIWKHVHSURGXFWVDUHWREHXVHGLQ
HTXLSPHQWZKHUHDGHIHFWLQWKHVHSURGXFWVPD\FDXVHWKHORVVRIKXPDQOLIHRURWKHUVLJQLILFDWLRQGDPDJH
VXFKDVGDPDJHWRYHKLFOHVDXWRPRELOHWUDLQYHVVHOWUDIILFOLJKWVPHGLFDOHTXLSPHQWDHURVSDFHHTXLSPHQW
HOHFWULFKHDWLQJDSSOLDQFHVFRPEXVWLRQJDVHTXLSPHQWURWDWLQJURWDWLQJHTXLSPHQWDQGGLVDVWHUFULPH
SUHYHQWLRQHTXLSPHQW
7KHV\VWHPLVHTXLSSHGZLWKDSURWHFWLRQFLUFXLWDQGSURWHFWLRQGHYLFH
7KHV\VWHPLVHTXLSSHGZLWKDUHGXQGDQWFLUFXLWRURWKHUV\VWHPWRSUHYHQWDQXQVDIHVWDWXVLQWKHHYHQW
RIDVLQJOHIDXOW
ٹ&RQGLWLRQVRIXVH
嵣%HIRUHXVLQJWKHSURGXFWVFDUHIXOO\FKHFNWKHHIIHFWVRQWKHLUTXDOLW\DQGSHUIRUPDQFHDQGGHWHUPLQHG
岜ZKHWKHURUQRWWKH\FDQEHXVHG7KHVHSURGXFWVDUHGHVLJQHGDQGPDQXIDFWXUHGIRUJHQHUDOSXUSRVHDQG
岜VWDQGDUGXVHLQJHQHUDOHOHFWURQLFHTXLSPHQW7KHVHSURGXFWVDUHQRWLQWHQGHGIRUXVHLQWKHIROORZLQJVSHFLDO
岜FRQGLWLRQV
,QOLTXLGVXFKDV:DWHU2LO&KHPLFDOVRU2UJDQLFVROYHQW
,QGLUHFWVXQOLJKWRXWGRRUVRULQGXVW
,QYDSRUVXFKDVGHZFRQGHQVDWLRQZDWHURIUHVLVWLYHHOHPHQWRUZDWHUOHDNDJHVDOW\DLURUDLUZLWKD
KLJKFRQFHQWUDWLRQFRUURVLYHJDVVXFKDV&O+61+62RU12[
,QDQHQYLURQPHQWZKHUHVWURQJVWDWLFHOHFWULFLW\RUHOHFWURPDJQHWLFZDYHVH[LVW
0RXQWLQJRUSODFLQJKHDWJHQHUDWLQJFRPSRQHQWVRULQIODPPDEOHVVXFKDVYLQ\OFRDWHGZLUHVQHDU
WKHVHSURGXFWV
6HDOLQJRUFRDWLQJRIWKHVHSURGXFWVRUDSULQWHGFLUFXLWERDUGRQZKLFKWKHVHSURGXFWVDUHPRXQWHG
ZLWKUHVLQDQGRWKHUPDWHULDO
8VLQJUHVROYHQWZDWHURUZDWHUVROXEOHFOHDQHUIRUIOX[FOHDQLQJDJHQWDIWHUVROGHULQJ,QSDUWLFXODU
ZKHQXVLQJZDWHURUDZDWHUVROXEOHFOHDQLQJDJHQWEHFDUHIXOQRWWROHDYHZDWHUUHVLGXHV
8VLQJLQWKHDWPRVSKHUHZKLFKVWUD\VDFLGRUDONDOLQH
8VLQJLQWKHDWPRVSKHUHZKLFKWKHUHDUHH[FHVVLYHYLEUDWLRQDQGVKRFN
嵣3OHDVHDUUDQJHFLUFXLWGHVLJQIRUSUHYHQWLQJLPSXOVHRUWUDQVLWLRQDOYROWDJH
岜'RQRWDSSO\YROWDJHZKLFKH[FHHGVWKHIXOOUDWHGYROWDJHZKHQWKHFDSDFLWRUVUHFHLYHLPSXOVHYROWDJH
岜LQVWDQWDQHRXVKLJKYROWDJHKLJKSXOVHYROWDJHHWF
嵣2XUSURGXFWVWKHUHLVDSURGXFWDUHXVLQJDQHOHFWURO\WHVROXWLRQ7KHUHIRUHPLVXVHFDQUHVXOWLQUDSLG
岜GHWHULRUDWLRQRIFKDUDFWHULVWLFVDQGIXQFWLRQVRIHDFKSURGXFW(OHFWURO\WHOHDNDJHGDPDJHVSULQWHGFLUFXLWDQG
DIIHFWVSHUIRUPDQFHFKDUDFWHULVWLFVDQGIXQFWLRQVRIFXVWRPHUV\VWHP
1RWLFHV
,WHPVWREHREVHUYHG
-XQ
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
&LUFXLWGHVL
J
Q
3URKLELWHGFLUFXLWV
/HDNDJHFXUUHQWRIWKH26&21PD\LQFUHDVHLQWKHIROORZLQJFRQGLWLRQV
D6ROGHULQJ
E:KHQYROWDJHLVQRWDSSOLHGKLJKWHPSHUDWXUHQRORDGWHVWKLJKWHPSHUDWXUHDQGKLJKKXPLGLW\QRORDG
岜WHVWUDSLGO\FKDQJLQJWHPSHUDWXUHWHVWHWF
$YRLGWKHXVHRIWKH26&21LQWKHIROORZLQJW\SHRIFLUFXLWVEHFDXVHOHDNDJHFXUUHQWPD\LQFUHDVH
D+LJKLPSHGDQFHFLUFXLWV
E&RXSOLQJFLUFXLWV
F7LPHFRQVWDQWFLUFXLWV
G2WKHUFLUFXLWVWKDWDUHVLJQLILFDQWO\DIIHFWHGE\OHDNDJHFXUUHQW
名,I\RXSODQWRXVHRUPRUH26&21VLQDVHULHVFRQQHFWLRQSOHDVHFRQWDFWXVEHIRUHXVH岞
)DLOXUHDQGOLIHVSDQ
7KHIDLOXUHUDWHLVK&RQILGHQFHOHYHOEDVHGRQ-,6&
7KHSURVSHFWLYHIDLOXUHLVQRW]HUR7KHPDLQO\IDLOXUHPRGHVDUHDVIROORZV
&RQWLQJHQF\IDLOXUH
7KHPRVWFRPPRQIDLOXUHPRGHLVDVKRUWFLUFXLW0DLQO\FDXVHGE\WKHVROGHULQJRURSHUDWLQJWHPSHUDWXUH
HQYLURQPHQWDORQJZLWKKHDWVWUHVVHVHOHFWULFDOVWUHVVHVRUPHFKDQLFDOVWUHVVHVDVIROORZV
嵣$SSO\LQJYROWDJHRYHUWKHUDWHGYROWDJH
嵣$SSO\LQJUHYHUVHYROWDJH
嵣([FHVVLYHPHFKDQLFDOVWUHVV
嵣$SSO\LQJUXVKFXUUHQWE\VXGGHQFKDUJHRUGLVFKDUJHRXWRIWKHVSHFLILFDWLRQ
7KHIROORZLQJSKHQRPHQRQLVVHHQZKHQVKRUWFXUUHQWLVDSSOLHGWRWKH26&21
D:KHQFXUUHQWLVUHODWLYHO\ORZDSSUR[$RUOHVVDSSUR[$RUOHVVDSSUR[$RU
OHVV
7KH26&21EHFRPHVKHDWHGEXWQRHIIHFWVDUHYLVLEOHHYHQZKHQWKHFXUUHQWLVFRQWLQRXVO\FDUULHG
E:KHQWKHVKRUWFLUFXLWFXUUHQWVH[FHHGWKHPHQWLRQHGYDOXHDERYH
$IWHULQWHUQDOWHPSHUDWXUHLQFUHDVHVHDOLQJUXEEHUPD\EHWXUQHGRYHU
,QVRPHFDVHVRGRURXVJDVPD\EHSURGXFHG
,QFDVHDVKRUWFLUFXLWRFFXUVHQVXUHVDIHW\E\IXOO\FRQVLGHULQJWKHIROORZLQJV
D,IRGRURXVJDVLVUHOHDVHGWXUQRIIWKHPDLQSRZHURIWKHHTXLSPHQW
,QWKLVFDVHNHHS\RXUIDFHDQGKDQGVDZD\IURPWKHDUHD
E7KRXJKLWGHSHQGVRQWKHFRQGLWLRQVLWWDNHVVHFRQGVWRPLQXWHVEHIRUHRGRUDQWJDVJHQHUDWHV
3URWHFWLYHFLUFXLWVKRXOGRSHUDWHLQWKLVSHULRG
F,IWKHJDVFRPHVLQWRH\HVULQVHLPPHGLDWHO\,IWKHJDVLVLQKDOHGJDUJOHLPPHGLDWHO\
G'RQRWOLFNWKHHOHFWURO\WH,IWKHHOHFWURO\WHWRXFKHVVNLQZDVKLWRIIZLWKVRDSLPPHGLDWHO\
H7KH26&21FRQWDLQVFRPEXVWLEOHVXEVWDQFHV,QFDVHDODUJHFXUUHQWFRQWLQXHVWRIORZDIWHUD
VKRUWFLUFXLWLQWKHZRUVWFDVHWKHVKRUWHGRXWVHFWLRQPD\LJQLWH)RUVDIHW\LQVWDOODUHGXQGDQW
FLUFXLWRUDSURWHFWLYHFLUFXLWHWF
:HDURXWIDLOXUHOLIHWLPH
:KHQOLIHWLPHVSDQH[FHHGHGWKHVSHFLILHGJXDUDQWHHWLPHRIHQGXUDQFHDQGGDPSKHDWHOHFWURO\WH
PLJKWLQVXODWHDQGFDXVHHOHFWULFFKDUDFWHULVWLFFKDQJHG7KLVLVFDOOHGDQRSHQFLUFXLW
7KHHOHFWULFFKDUDFWHULVWLFVRIFDSDFLWDQFHDQG(65PD\SRVVLEO\FKDQJHZLWKLQWKHVSHFLILHGUDQJH
LQVSHFLILFDWLRQVHYHQLILWLVXVHGXQGHUWKHFRQGLWLRQRIWKHUDWHGYROWDJHHOHFWULFDQGPHFKDQLFDO
SHUIRUPDQFH3OHDVHQRWHLWZKHQGHVLJQLQJ
-XQ
岜岜*XLGHOLQHVDQGSUHFDXWLRQVق26&21ك
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
/HDNDJHFXUUHQW
0HFKDQLFDOVWUHVVPD\FDXVH26&21bVOHDNDJHFXUUHQWLQFUHDVHG
,QVXFKDFDVHOHDNDJHFXUUHQWZLOOJUDGXDOO\GHFUHDVHE\DSSO\LQJYROWDJHZLWKLQWKHFDWHJRU\YROWDJHDQG
WKHXSSHUOLPLWRIFDWHJRU\WHPSHUDWXUH
7KHQVHOIKHDOLQJVSHHGRIOHDNDJHFXUUHQWLVIDVWHUZKHQLWLVQHDUWRWKHXSSHUOLPLWRIFDWHJRU\WHPSHUDWXUH
DQGWKHFDWHJRU\YROWDJH
26&21 26&21
OHDNDJHFXUUHQWUHVWRUDWLRQFKDUDFWHULVWLFV OHDNDJHFXUUHQWUHVWRUDWLRQFKDUDFWHULVWLFV
9'&)ق9'&DSSOLHGك 9'&)ق$PELHQWWHPSHUDWXUH٦ك
岜岜岜岜岜岜岜岜岜岜岜ق0HDVXUHGYROWDJHۋك
پ7RPDNHWKHUHFRYHU\RI/&YDOXHVHDV\WRVKRZVDPSOHVWKDW/&YDOXHVKDYH
EHHQLQFUHDVHGRQSXUSRVHDUHXVHGLQWKHWHVW
5DSLGFKDUJHDQGGLVFKDUJHOLPLWDWLRQ
$OORZDQFHRIDODUJHUXVKFXUUHQWWRIORZGXHWRUDSLGFKDUJHDQGGLVFKDUJHPD\UHVXOWLQVKRUWFLUFXLWRU
ODUJHOHDNDJHFXUUHQW7KHSURWHFWLRQFLUFXLWWRPDLQWDLQKLJKUHOLDELOLW\LVUHFRPPHQGHGZKHQUXVKFXUUHQW
WRIORZWRWKH26&21LVLQWKHIROORZLQJFDVHV
3URGXFWVZKLFKWLPHVRIDOORZDEOHULSSOHFXUUHQWLVOHVVWKDQ$,WLVZKHQ$RURYHURIUXVK
FXUUHQWLVDSSOLHG
3URGXFWVZKLFKWLPHVRIDOORZDEOHULSSOHFXUUHQWLV$RURYHU,WLVZKHQUXVKFXUUHQWZKLFKWKH
ILJXUHLVRYHUWLPHVRIDOORZDEOHULSSOHFXUUHQWLVDSSOLHG
0RXQWLQ
J
6ROGHULQJZLWKDVROGHULQJLURQ
:KHQOHDGWHUPLQDOVIRUUDGLDOOHDGW\SHPXVWEHSURFHVVHGEHFDXVHWKHOHDGSLWFKDQGWKH3&%KROHV
GRQRWPDWFKSURFHVVWKHPZLWKRXWDQ\VWUHVVHVWRWKH26&21EHIRUHVROGHULQJ
6ROGHUZLWKRXWDQ\H[FHVVLYHVWUHVVHVWRWKH26&21LWVHOI
:KHQWKH26&21KDVEHHQVROGHUHGRQFHDQGQHHGVWREHUHPRYHGUHPRYHLWDIWHUWKHVROGHUKDV
EHHQFRPSOHWHO\PHOWHG
'RQRWOHWWKHWLSRIWKHVROGHULQJLURQWRXFKWKH26&21LWVHOI
)ORZVROGHULQJ
'RQRWDSSO\IORZVROGHULQJWR26&2160'W\SH
'RQRWVROGHUWKH26&21LWVHOIE\VXEPHUJLQJLWLQPHOWHGVROGHU
6ROGHUWKHRSSRVLWHVLGHWKDWWKH26&21LVPRXQWHGRQ
1RWHWKDWIOX[GRHVQRWDGKHUHWRDQ\ZKHUHH[SHFWWKHOHDGWHUPLQDO
1RWHWKDWRWKHUFRPSRQHQWVGRQRWIDOORYHUDQGWRXFKWKH26&21ZKHQVROGHULQJ
5HIORZVROGHULQJ
'RQRWDSSO\UHIORZVROGHULQJWR26&215DGLDO/HDGW\SH
3OHDVHFRQWDFWXVIRUVHWWLQJ936FRQGLWLRQV
-XQ



   



   
/HDNDJHFXUUHQW$
7LPHK
/HDNDJHFXUUHQW$
7LPHK
٦
٦
٦
9 DSSOLHG
9 DSSOLHG
9 DSSOLHG
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
&DSDFLWRUKDQGOLQJDIWHUVROGHULQJ
'RQRWVXEMHFWWKH26&21WRH[FHVVLYHVWUHVVDVIROORZV
'RQRWWLOWEHQGRUWZLVWWKH26&21
'RQRWPRYHWKH3&%ZLWKKROGLQJWKH26&21LWVHOI
'RQRWKLWWKH26&21ZLWKREMHFWV
:KHQVWDFNLQJ3&%VPDNHVXUHWKDWWKH26&21GRHVQRWWRXFKRWKHU3&%VRUFRPSRQHQWV
&LUFXLWERDUGFOHDQLQJ
&KHFNWKHIROORZLQJLWHPVEHIRUHZDVKLQJ3&ERDUGZLWKWKHVHGHWHUJHQWVKLJKTXDOLW\DOFRKROEDVHG
FOHDQLQJIOXLGVXFKDV3LQHD676FOHDQWKUX+/0.RU7HFKQR&DUH)5:WKURXJK
RUGHWHUJHQWVLQFOXGLQJVXEVWLWXWHIUHRQDV$.$(6RU,3$
8VHLPPHUVLRQRUXOWUDVRQLFZDYHVWRFOHDQZLWKLQPLQXWHV
7KHWHPSHUDWXUHRIWKHFOHDQLQJIOXLGVKRXOGEHOHVVWKDQ&
:DWFKWKHFRQWDPLQDWLRQRIWKHGHWHUJHQWVXFKDVFRQGXFWLYLW\S+VSHFLILFJUDYLW\ZDWHUFRQWHQWHWF
'RQRWVWRUHWKH26&21LQDORFDWLRQVXEMHFWWRJDVHVIURPWKHFOHDQLQJIOXLGRULQDQDLUWLJKWFRQWDLQHU
DIWHUFOHDQLQJ
'U\WKH3&%RU26&21ZLWKKRWDLUWKDWVKRXOGEHOHVVWKDQWKHXSSHUFDWHJRU\WHPSHUDWXUH
3OHDVHQRWHWKDWLQGLFDWLRQPD\GLVDSSHDUZKHQUXEELQJSULQWVLGHDIWHUZDVKLQJGHSHQGLQJRQDFOHDQHU
3OHDVHFRQWDFWXVIRUGHWDLOVDERXWGHWHUJHQWVFOHDQLQJPHWKRGVDQGGHWHUJHQWVRWKHUWKDQWKRVHOLVWHG
DERYH
)L[DWLYHVDQGFRDWLQJPDWHULDOV
6HOHFWWKHDSSURSULDWHFRYHULQJDQGVHDODQWPDWHULDOVIRUWKH26&21,QSDUWLFXODUGRQbWXVHDFHWRQHLQ
WKHIL[DWLYHFRDWLQJDJHQWDQGGLOXHQW
%HIRUHDSSO\LQJWKHIL[DWLYHRUFRDWLQJFRPSOHWHO\UHPRYHDQ\IOX[UHVLGXHDQGIRUHLJQPDWWHUIURPWKH
DUHDZKHUHWKHERDUGDQGWKH26&21ZLOOEHMRLQWHGWRJHWKHU
$OORZDQ\GHWHUJHQWWRGU\EHIRUHDSSO\LQJWKHIL[DWLYHRUFRDWLQJ
3OHDVHFRQWDFWXVIRUWKHIL[DWLYHDQGFRDWLQJKHDWFXULQJFRQGLWLRQV
&DSDFLWRULQVXODWLRQ
%HVXUHWRFRPSOHWHO\VHSDUDWHWKHFDVHQHJDWLYHOHDGWHUPLQDOSRVLWLYHOHDGWHUPLQDODQG3&ERDUGSDWWHUQV
ZLWKHDFKRWKHUGXHWRWKHIROORZLQJUHDVRQV
,QVXODWLRQLVQRWJXDUDQWHHGDWDSDUWRIUHVLQRQWKHVXUIDFHRIDFDVH
,WRIIHUVLQFRQVWDQWUHVLVWDQFHEHWZHHQDFDVHDQGDQHJDWLYHOHDGWHUPLQDODQGLWLVQbWLQVXODWHG
6WRUD
J
H
2SHQWKHEDJVMXVWEHIRUHPRXQWLQJDQGXVHXSDOOSURGXFWVRQFHRSHQHG
)RUNHHSLQJDJRRGVROGHUDELOLW\VWRUHWKH26&21DVIROORZV
7KH-('(&-67'VWDQGDUGLVQRWDSSOLFDEOH
名,QWHOOHFWXDOSURSHUW\ULJKW
:H3DQDVRQLF*URXSDUHSURYLGLQJWKHSURGXFWDQGVHUYLFHWKDWFXVWRPHUVFDQXVHZLWKRXWDQ[LHW\DQGDUH
ZRUNLQJSRVLWLYHO\RQWKHSURWHFWLRQRIRXUSURGXFWVXQGHULQWHOOHFWXDOSURSHUW\ULJKWV
5HSUHVHQWDWLYHSDWHQWVUHODWLQJWR26&21DUHDVIROORZV
863DWHQW 1R1R
:LWKLQGD\VIURPRSHQLQJ
SDFNDJHGZLWKFDUULHUWDSH
:LWKLQGD\VIURPRSHQLQJ
60'W\SH
$IWHUXQVHDOLQJ%HIRUHXQVHDOLQJ
:LWKLQPRQWKVDIWHUVKLSPHQW
-XQ
5DGLDO
OHDGW\SH
%DJSDFNLQJSURGXFW
7DSLQJSURGXFW
:LWKLQPRQWKVDIWHUVKLSPHQW
:LWKLQPRQWKVDIWHUVKLSPHQW
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
60'W
\S
H
ٴٴ
)
&
(
)
(
)
ٴ
ٴ
ٴٴ
&
(
(
6HULHV )HDWXUHV
693'
693&
693%
693$
693)
693*
6;9
693.
69)
/RZSURILOH
/RZ(65
/DUJHFDSDFLWDQFH
*XDUDQWHHGDW٦
+LJKYROWDJH
٦٫5+
/RZ(65
+LJKULSSOHFXUUHQW
&
(
WR
WR
WR
WR
ٴٴٴ
WR
WR
 )
&
(
)
&
&
%











 
 
 
 
 



 




 






















WR
WR
WR
WR
WR
WR


WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR

(
)
%
WR
WR
WR

WR
WR
WR
WR
WR
WR
WR

WR

WR
WR
WR
WR
WR
WR
WR
WR
WR
WR

WR


WR
WR


WR
WR
WR
WR
WR

WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
WR
ٴٴ
/RZ(65
+LJKULSSOHFXUUHQW
٦K
+LJKYROWDJH
/DUJHFDSDFLWDQFH
٦K
ٴٴ
ٴٴٴ
/LQHXS

WR
WR
WR
WR
WR
WR
WR
WRWR
WR
WR
WR
WR
WR
+LJKYROWDJH
/DUJHFDSDFLWDQFH
٦K
6XSHUKLJKYROWDJH
٦K
ٴٴٴ

WR
WR
WR



WR









%
&
(
(

%
WR
6L]H
PP
/RQJOLIH+LJKUHOLDELOLW\
+LJKYROWDJH
WR
WR
WR
WR
WR
WR
WR
WR
WR
WRWR
WR
WR
WR
WR
WR
WR
WR

WR
WR


)
%
&
(
(


)
(
)
(
)
%
&
&



WR
' /
-XQ
+LJKYROWDJH
/DUJHFDSDFLWDQFH
٦K
/DUJHFDS
6PDOOVL]H/RZSURILOH
/RZ(65
6L]HFRGH
5DWHG
FDS
UDQJH
ق)ك
(65
P
5DWHG
YROWDJH
UDQJH
ق9'&ك
&DWHJRU\
WHPUDQJH
ق٦ك
WR
WR WR
WR
WR
WR
WR
WR
WR
WR

WR    )  
 (  
WR
WR
WR
WR

WR
WR
WR 
WR
WR

83*5$'(
83*5$'(
83*5$'(
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
60'W
\S
H

-XQ
WR WR WR WR ) 
693 6WDQGDUG

WR WR WR WR (  
WR WR WR WR ) 
&  
WR WR WR WR (  
WR WR WR WR
 
WR WR WR WR %  
WR WR WR WR $
 
WR WR WR WR (  
ٴWR WR WR WR &
6943 *XDUDQWHHGDW٦
WR WR WR WR &  

WR WR WR WR )  
WR WR WR WR ( 
 
WR WR WR WR %  
WR WR $
WR WR WR WR &
WR WR WR WR &
WR WR
 

6936 /RQJOLIH ٴ
WR WR
WR    ) 
693(
WR WR %  
 
/LQHXS
6HULHV )HDWXUHV
&DWHJRU\
WHPUDQJH
ق٦ك
5DWHG
YROWDJH
UDQJH
ق9'&ك /
(65
P
5DWHG
FDS
UDQJH
ق)ك
6L]HFRGH
6L]H
PP
6PDOOVL]H/RZSURILOH
/DUJHFDS
/RZ(65
+LJKYROWDJH
/RQJOLIH+LJKUHOLDELOLW\
'
6XSHUORZ(65
/DUJHFDSDFLWDQFH ٴٴ
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
5DGLDOOHDGW
\S
H
6(.
WR
WR WR
WR
ٴ
WR WR
WR WR
WR
ٴٴ
WR
WR
WR
WR
6XSHUORZ(65
/DUJHFDSDFLWDQFH
6PDOOVL]H
/RZSURILOH
٦K
WR
6(3*
ٴ
ٴ
6XSHUKLJKYROWDJH
٦K
+LJKYROWDJH
/DUJHFDSDFLWDQFH
٦K
+LJKYROWDJH
/DUJHFDSDFLWDQFH
٦K
ٴ
WR
ٴ
ٴ
ٴٴ
6WDQGDUG
٦K
*XDUDQWHHGDW٦
5DWHG9'&PD[
ٴ



WR WR
(
&  

& 
(
WR
WR
WR
WR WR
WR
WR
WR
WR


&

 
 

& 

 
&
( 


(
)
WR
WR
WR 
WR
WR
WRWR
WR
WR
WR



WR

WR
WR


WR
)
WR WR )
WR
%


)
WR WR

WR WR ( 
WR & 

WR WR ( 
WR (
WR

WR WR (


 
WR WR WR 
WR WR WR WR )
WR WR


(  

WR WR WR WR &


WR WR WR WR ) 
WR WR
-XQ
WR
WR WR
ٴ
WR WR WR WR ( 
(  
WR WR
WR
WR WR ) 

6(3
6(43
6(3&
WR
WR
WR
WR WR
ٴٴٴ ٴ
 
WR
WR
 WR (
WR
6;(
ٴ
6(3) ٴ
WR
6PDOOVL]H
/RZSURILOH
+LJKYROWDJH
/DUJHFDSDFLWDQFH
٦K
ٴ
WR
WR
WR
WR
WR
WR
WR

 

WR WR WR )  
(  
WR  WR
  (  

)  
WR    &  
WR WR WR WR
 
WR WR WR (  
WR WR WR WR (
WR

WR WR WR &  
WR WR WR WR ) 
WR
 
WR WR WR (  
WR WR &  
WR WR WR (
/LQHXS
6HULHV )HDWXUHV
&DWHJRU\
WHPUDQJH
ق٦ك
5DWHG
YROWDJH
UDQJH
ق9'&ك /
WR
(65
P
5DWHG
FDS
UDQJH
ق)ك
6L]HFRGH
6L]H
PP
6PDOOVL]H/RZSURILOH
/DUJHFDS
/RZ(65
+LJKYROWDJH
/RQJOLIH+LJKUHOLDELOLW\
'
6()
WR
WR
WR
ٴ
& 
/RZ(65
+LJKULSSOHFXUUHQW
٦K
ٴٴ
WR 
83*5$'(
83*5$'(
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
ٴ60'W
\S
H

'LDJUDP
693
6WDQGDUG 693$
/RZ (65 693&
/DUJH FDSDFLWDQFH 693)
٦ۗ
693(
6XSHUORZ(65
6936
/RQJOLIH
6943
*XDUDQWHHGDW٦
6;9
693'
73%
WR 
)
9'&
WR  9'&

)
$ VL]H
73%
WR 
)
9'&
WR 9'&

)
% VL]H
73%
WR 
)
9'&
WR 9'&

)
& VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
) VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
ع 
)
9'&
ع 9'&

)
) VL]H
73%
WR 
)
9'&
WR 9'&

)
% VL]H
73%
WR 
)
9'&
WR 9'&

)
& VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
693*
/RZ(65
73%
WR 
)
9'&
WR 9'&

)
% VL]H
73%
9'&

)
& VL]H
73%
9'&

)
& VL]H
73%
WR 
)
9'&
WR 9'&

)
% VL]H
73%
WR 
)
9'&
WR 9'&

)
& VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR  9'&

)
) VL]H
73%
WR 
)
9'&
WR  9'&

)
% VL]H
73%
WR 
)
9'&
WR  9'&

)
& VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%
9'&

)
) VL]H
73%
WR 
)
9'&

)
% VL]H
73%
9'&
WR  9'&


)
& VL]H
73%

9'&

)
& VL]H
73%
9'&

)
) VL]H
73%
WR 
)
9'&
WR 9'&

)
$ VL]H
73%
WR 
)
9'&
WR  9'&

)
% VL]H
73%
WR 
)
9'&
WR 9'&

)
& VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR  9'&

)
) VL]H
73%
WR 
)
9'&
WR 9'&

)
& VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
) VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
) VL]H
73%

9'&

)
& VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%

9'&

)
) VL]H
73%

9'&

)
( VL]H
69)
٦ K
73%
WR 
)
9'&
WR 9'&

)
% VL]H
73%
WR 
)
9'&
WR 9'&

)
& VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
9'&

)
) VL]H
693.
73%
WR 
)
9'&
WR 9'&

)
% VL]H
73%
WR 
)
9'&
WR 9'&

)
& VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
) VL]H
693%
/RZSURILOH
73%
ع 
)
9'&
ع 9'&

)
& VL]H
73%
9'&

)
& VL]H
+LJK ULSSOHFXUUHQW
/RZ (65
+LJK YROWDJH
/DUJHFDSDFLWDQFH
73%
9'&

)
) VL]H
73%

9'&


)
) VL]H
٦ۗ
6XSHUKLJKYROWDJH
+LJKULSSOHFXUUHQW +LJKYROWDJH
/DUJHFDSDFLWDQFH
/DUJHFDSDFLWDQFH
*XDUDQWHHGDW٦
+LJKYROWDJH
٦ K
/DUJHFDSDFLWDQFH
+LJKYROWDJH
83*5$'(
83*5$'(
73%
WR 
)
9'&
WR 9'&

)
) VL]H
73%
WR 
)
9'&
WR 9'&

)
) VL]H
83*5$'(
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
ٴ5DGLDOOHDGW
\S
H
'LDJUDP

6(3
6WDQGDUG 6(3&
6(3) 6(43 6;(
73%
WR 
)
9'&
WR 9'&

)
& VL]H
73%
WR 
)
9'&
WR 9'&

)
) VL]H
73%
WR 
)
9'&
WR 9'&

)
) VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%

9'&


)
& VL]H
73%
WR 
)
9'&
WR  9'&

)
& VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%
WR 
)
9'&
WR  9'&

)
) VL]H
6()
73%
WR 
)
9'&
WR 9'&

)
& VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%
WR 
)
9'&

)
% VL]H
73%
9'&

)
& VL]H
73%
WR 
)

9'&

)
& VL]H
73%
WR 
)
9'&
WR  9'&

)
& VL]H
73%
WR 
)
9'&
WR 9'&

)
& VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%
WR 
)
9'&
WR  9'&

)
) VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
) VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
) VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
) VL]H
6(3*
73%
9'&

)
& VL]H
73%
9'&

)
& VL]H
73%
9'&

)
( VL]H
6(.
73%
WR 
)
9'&
WR 9'&

)
& VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
( VL]H
73%
WR 
)
9'&
WR 9'&

)
) VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%
9'&


)
( VL]H
73%
WR 
)
9'&
WR  9'&

)
( VL]H
73%
WR 
)
9'&
WR  9'&

)
) VL]H
73%
WR 
)
9'&
WR  9'&

)
) VL]H
٦ۗ
6XSHUORZ(65
/DUJHFDSDFLWDQFH
٦ۗ
+LJKYROWDJH
/DUJHFDSDFLWDQFH
٦ۗ
*XDUDQWHHGDW٦
+LJKYROWDJH
٦ۗ
6XSHU KLJK YROWDJH
٦ۗ
+LJK YROWDJH
/DUJH FDSDFLWDQFH
/RZ (65
+LJK ULSSOH FXUUHQW
٦ۗ
+LJK YROWDJH
/DUJH FDSDFLWDQFH
73%
9'&

)
( VL]H
83*5$'(
83*5$'(
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
ٶ
3DUWQXPEHUV
\
VWHP
嵣6XUIDFHPRXQWW\SH
嵣5DGLDOOHDGW\SH
پ岜&RGHLVXVHGIRU9SURGXFWVRI%&&((DQG)VL]HLQ6(3&VHULHV
&D
S
DFLWDQFHWROHUDQFH
&DSDFLWDQFHWROHUDQFH 7DSLQJRUIRUPLQJ
RIWHUPLQDOFRGH
7DSLQJRIOHDG
WHUPLQDOZLUHSURFHVV
FRGH
1RQHVXIIL[IRU
UHJXODULHQGWKOHDG
W\SHSURGXFWV
6HULHV 5DWHGFDSDFLWDQFH
 
  6(43  
  6(3  
  6(3&  
  6(3)  
 6(3*  
  6;(  
 5پ 6()  5 ٫ 0
 6(.  
5DWHGYROW &RGH 6HULHV 5DWHGFDS &RGH &DS
WRUHUDQFH &RGH
ق9'& ق)
5DWHGYROWD
J
H5DWHGFD
S
DFLWDQFH
5DWHGYROWDJH
&DS
WRUHUDQFH
6HULHV
69)
693.
6;9
693*
693)
693$
693%
693&
693'
693(
6936
6943
693
5DWHGFDS
ق)






 5

٫ 0
6HULHV
&RGH&RGH&RGH
5DWHGYROW
5
5





 

ق9'&
([SODQDWLRQRISDUWQXPEHUV
 
 
 





 
 
 693 5 0
 6(3&  07
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
ٶ5HFRPPHQGDEOHUHIORZVROGHULQJ
ٴ6ROGHULQJZLWKDVROGHULQJLURQ
7LSRIDVROGHULQ
J
LURQ ؟٦٦
:RUNLQ
J
WLPH ؟VHFPD[
ٴ)ORZVROGHULQJ
؟:KHQVROGHULQJWLPHVWRWDOLPPHUVLRQWLPHVKRXOGEHVHFRUOHVV
/DQGSDWWHUQ
6ROGHULQJFRQGLWLRQ
&RUOHVV
&&RUOHVV
7HPSHUDWXUH
0RXQWLQJVSHFLILFDWLRQV
DPELHQWWHP
S
HUDWXUH
3UHKHDWLQJ


7LPH )ORZQXPEHU
6L]HFRGH DE
VHFRUOHVV WLPHVRUOHVV
WLPHVHFRUOHVV
$
%







8QLWPP




F
)
&
&
&
&
(
(
(
)
)



%
&











 














٦
٦
٦
V PD[
7LPHقVHFك
ٛ 3HDNWHPSHUDWXUH٦OHDGIUHHUHIORZVROGHULQJSURILOH ٜ
5HIORZF\FOHPD[
F
E
D
٦
٦
٦
 V PD[
 VPD[
 V PD[
٦
٦
٦
V PD[
7LPHقVHFك
ٛ 3HDNWHPSHUDWXUH٦OHDGIUHHUHIORZVROGHULQJSURILOH ٜ
٦
٦
٦
V PD[
 V PD[
 V PD[
5HIORZF\FOHPD[
7HPSHUDWXUHRQWKH
VXUIDFHRIFDSDFLWRU
7HPSHUDWXUHRQWKH
VXUIDFHRIFDSDFLWRU
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
ٶ60'W\SH
ٴ7DSLQJ
&DUULHUWD
S
H
5HHO
ٴ0LQLPXPSDFNLQJTXDQWLW\DQGZHLJKW
  
6L]HFRGH
$
%%&&&&
&((()))
)  


6L]HFRGH $ % :
$   
%

 
 
7\SLFDOZHLJKWJ

: :
 

)   
)   
(   
(   
)   
 
(   
&   
&   
&   
W 7
    
    
) ( 3
 
    
    
  
 
    
    
  
 
    
 
    
    
  
 
)
4XDQWLW\SFV5HHO




6L]HFRGH
$
%
%
&
&
&
&
&
 
 
 
 

 
 
 
3DFNLQJVSHFLILFDWLRQV
 
 
(
(
(
)
  
 
%   
&   
& 

:
3$
ٕ
(
)

3RODULW\
'LUHFWLRQRIXQUHHOLQJ

7
%
W




:
 
:
5
'LUHFWLRQRIXQUHHOLQJ
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
ٶ5DGLDOOHDGW\SH
ٴ/HDGWHUPLQDOSURFHVV
$
SS
OLFDWLRQV
پ7KHIROORZLQJWDEOHLVDVWDQGDUGVSHFLILFDWLRQ3OHDVHFRQWDFWXVVHSDUDWHO\FRQFHUPLQJVSHFLILFDWLRQVH[FHSWIRUWKDWPHQWLRQHGEHORZ
%HFDXVHRIDOLPLWRQWKHOHQJWKRIDPRGHOQDPHWKHSDUWRISURFHVVQDPHFKDQJHVWR6IURP766'IURP76IURP&
3OHDVHFRQWDFWXVIRUGHWDLOV
/HDGWHUPLQDOFXWWLQ
J
8QLW؟PP
8QLW؟PP
/HDGWHUPLQDOWD
S
LQ
J



&RGH :

 
 
 
766
6    
   

&RGH
76'    
   

7
W



 
 
    
 
  
 
 
   
:
:ڬPLQ



⒝PD[ /PD[
:PD[ + 'ڬ

    


   
 
岜岜) 3 3ڬ 3 3 ۗ
6HULHV 1RWSURFHVVHG 6WUDLJKWFXW
%DJSDFNHGSURGXFWOHDGWHUPLQDOFXWWLQJ
/HDGWHUPLQDOFXWWLQJFRGH 'LPHQVLRQV
6L]HFGH
76
'
6(36(436(3&
))
(
%&&&&(((
&
س&
س&

&
 %
س
7DSLQJFRGH )VL]H 6L]HFRGH' 7DSLQJ
))) PP7
) PP (
766
6
) PP
) PP
) PP
%
&&&&
(((



7
76'
766
6
3DFNLQJVSHFLILFDWLRQV
3URFHVVQDPHV
6WUDLJKW
FXW
6L]HFRGH'
%
&&&&
((((
)) )VL]H
6L]HFRGH

((((
&
/
))

&&&&
7
76ق'
766ق6
7DSLQJ
6()6(.
6(3)6;(6(3*
t
H
W
0
W
Δh
テー
W
2
W
1
φD
0
P
0
P
1
F
P
2
P
L

ٕ
t
W2
W
1
W
0
W
H
P0φD0
P2P
L
P
1
F
テー
Δh
t
W
2
W
1
W
0
W
H
P
0
φD
0
P
2
P
L
P
1
F
Δh
テー 台紙
/
)
+ROGGRZQ &DUULHU
+ROGGRZQ &DUULHU
+ROGGRZQ &DUULHU
&RQGXFWLYH3RO\PHU$OXPLQXP6ROLG&DSDFLWRUV
ٴ0LQLPXPSDFNLQJTXDQWLW\DQGZHLJKW
名3OHDVHFRQWDFWXV




) 
) 

(



( 
( 
( 

&DVHVL]H6L]HFRGH
%
& 
& 



& 
&
3DFNLQJVSHFLILFDWLRQV
7\SLFDOZHLJKWJ



4XDQWLW\SFV%DJ



3URFHVVHGW\SHGLVFUHWHOHDGWHUPLQDOV









7\SLFDOZHLJKWJ




=LJ]DJSDFNWDSLQJW\SH


4XDQWLW\SFV%DJ











Conductive Polymer Aluminum Solid Capacitors
● High voltage (50 V.DC max.)
● Large capacitance (1000 μF max.)
● 125 ℃ 1000 h
● RoHS compliance, Halogen free
Unit:mm
*1:±0.5
DC leakage current
Capacitance tolerance
Nominal cap.range (μF)
Marking
Capacitance change
Dissipation factor (tanδ)
DC leakage current
Endurance
Dissipation factor (tan δ)
Please see the attached characteristics list
Please see the attached characteristics list
±20 % (120 Hz / +20 ℃)
+125 ℃ 1000 h, rated voltage applied
Within ±20 % of the initial value
≦ 200 % of the initial limit
Within the initial limit
Dimensions (not to scale)
27 to 82
10 to 180
18 to 270
39 to 560
1000
68 to 1000
Surface Mount Type
–55 ℃ to +125 ℃
Size code
Features
Specifications
Rated voltage range (V.DC)
Category temp. range
B6
C6
E7
E12
F10
F12
16 to 25
16 to 50
16
16 to 50
SVF
series
B6
5.0
5.9
5.3
11.9
8.3
8.3
E7
8.0
6.9
8.3
8.3
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
21-Jun-19
Should a safety concern arise regarding this product, please be sure to contact us immediately.
+60 ℃, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
Dissipation factor (tanδ)
≦ 150 % of the initial limit
DC leakage current
Within the initial limit (after voltage processing)
Size
φD±0.5 L
+0.1
W±0.2 H±0.2 C±0.2 RP±0.2
code
-0.4
E12
8.0
3.2
F12
10.0
12.6
10.3
10.3
11.0
0.8 to 1.1
4.6
9.0
0.8 to 1.1
F10
10.0
10.0*1
10.3
10.3
11.0
0.8 to 1.1
4.6
3.2
1.4
C6
6.3
5.9
6.6
6.6
7.3
0.6 to 0.8
2.1
5.3
6.0
0.6 to 0.8
9.0
0.6 to 0.8
UPGRADE
Polarity marking
R. capacitance
F)
Series
R. voltage
V.DC)
Lot No.
L
R
0.2 max
φD
C
P
H
W
Conductive Polymer Aluminum Solid Capacitors
*1: Ripple current (100 kHz / +105 °C < Tx ≦ +125 °C) /Allowable ripple current (100 kHz / Tx ≦ +105 °C)
*2: ESR(100 kHz to 300 kHz / +20 ℃)
*3: tan δ (120 Hz / +20 ℃)
*4: After 2 minutes
・ Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
21-Jun-19
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Characteristics list
18
2600
2800
4000
Frequency correction factor for ripple current
35
30
20
120
390
82
4400
Rated
volt.
(V.DC)
Rated
cap.
(±20 %)
(μF)
Case size
Size
code
82
Specifications Standard(Reel size : φ380)
(mm)
φD L
Ripple
current*1
(mA r.m.s.)
tan δ*3 LC*4
(μA) Part number
Min.
Packaging
Q'ty
(pcs)
Allowable
ripple
current*1
(mA r.m.s.)
ESR*2
(mΩ)
0.12
262
16SVF82M
1500
180
6.3
5.9
C6
1040
0.12
576
16SVF180M
1000
27
22
5.0
5.9
B6
940
3000
3300
270
8.0
6.9
E7
1040
0.12
864
16SVF270M
1000
22
3300
560
8.0
11.9
E12
1560
0.12
1792
16SVF560M
400
14
4950
10.0
10.0
F10
1350
0.12
3200
16SVF1000MX
500
16
4300
3200
16SVF1000M
400
56
5.0
5.9
B6
880
0.12
224
20SVF56M
1500
12
30
0.12
5400
2800
10.0
12.6
F12
1700
480
20SVF120M
1000
180
8.0
6.9
E7
1010
0.12
720
20SVF180M
1000
25
25
0.12
3200
3200
6.3
5.9
C6
1010
27
5.0
5.9
B6
770
0.12
135
25SVF27M
1500
40
2450
400
560
10.0
12.6
F12
1700
0.12
2240
20SVF560M
400
1560
20SVF390M
12
14
0.12
5400
4950
11.9
E12
1560
8.0
1000
56
6.3
5.9
880
0.12
280
25SVF56M
1000
47
6.3
5.9
0.12
235
25SVF47M
30
30
2800
2800
880
1000
100
8.0
6.9
1010
0.12
500
25SVF100M
1000
24
8.0
0.12
410
28
25SVF82M
3000
3200
6.9
940
400
330
10.0
12.6
F12
1580
0.12
1650
25SVF330M
400
16
14
180
8.0
11.9
E12
1470
0.12
900
25SVF180M
4650
5000
50SVF10M
1000
18
1000
39
8.0
6.9
E7
880
0.12
273
35SVF39M
1000
22
6.3
5.9
C6
820
0.12
154
35SVF22M
82
8.0
11.9
10
6.3
5.9
C6
790
2500
40
0.12
100
35SVF82M
400
120
10.0
12.6
F12
1390
0.12
840
35SVF120M
400
E12
1260
0.12
574
E12
1200
3800
25
0.12
390
50SVF39M
400
8.0
6.9
E7
850
2700
35
0.12
180
50SVF18M
Coefficient
0.05
0.3
0.7
1
Frequency(f)
120 Hz ≦ f< 1 kHz
1 kHz ≦ f< 10 kHz
10 kHz ≦ f< 100 kHz
16
1000
20
25
C6
E7
35
50
100 kHz ≦ f< 500 kHz
50SVF68M
400
68
10.0
12.6
F12
1350
4300
20
0.12
680
1000
39
8.0
11.9
NEW
Conductive Polymer Aluminum Solid Capacitors
● High voltage (50 V.DC max.)
● 125 ℃ 1000 h
● RoHS compliance, Halogen free
Unit:mm
DC leakage current
Capacitance tolerance
Nominal cap.range
Marking
Capacitance change
Dissipation factor (tanδ)
DC leakage current
Endurance
Dissipation factor (tan δ)
Please see the attached characteristics list
Please see the attached characteristics list
±20 % (120 Hz / +20 ℃)
+125 ℃ 1000 h, rated voltage applied
Within ±20 % of the initial value
≦ 200 % of the initial limit
Within the initial limit
Dimensions (not to scale)
Surface Mount Type
E7
E12
F12
–55 ℃ to +125 ℃
120 μF to 1200 μF
68 μF to 680 μF
33 μF to 330 μF
22 μF to 220 μF
10 μF to 100 μF
C6
Size code
B6
Features
Specifications
Rated voltage range
Category temp. range
16 V.DC to 50 V.DC
SVPK
series
B6
5.0
5.9
5.3
11.9
8.3
8.3
E7
8.0
6.9
8.3
8.3
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
01-Nov-18
Should a safety concern arise regarding this product, please be sure to contact us immediately.
+60 ℃, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
Dissipation factor (tanδ)
≦ 150 % of the initial limit
DC leakage current
Within the initial limit (after voltage processing)
Size
φD±0.5 L
+0.1
W±0.2 H±0.2 C±0.2 RP±0.2
code
-0.4
E12
8.0
3.2
F12
10.0
12.6
10.3
10.3
11.0
0.8 to 1.1
4.6
9.0
0.8 to 1.1
3.2
1.4
C6
6.3
5.9
6.6
6.6
7.3
0.6 to 0.8
2.1
5.3
6.0
0.6 to 0.8
9.0
0.6 to 0.8
Polarity marking
R. capacitance
F)
Series
R. voltage
V.DC)
Lot No.
L
R
0.2 max
φD
C
P
H
W
Conductive Polymer Aluminum Solid Capacitors
*1: Ripple current (100 kHz / +105 °C < Tx ≦ +125 °C) /Allowable ripple current (100 kHz / Tx ≦ +105 °C)
*2: ESR(100 kHz to 300 kHz / +20 ℃)
*3: tan δ (120 Hz / +20 ℃)
*4: After 2 minutes
・ Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
01-Nov-18
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Characteristics list
80
3060
4000
4400
Frequency correction factor for ripple current
25
20
18
20
68
220
680
270
1750
Rated
volt.
(V.DC)
16
Rated
cap.
(±20 %)
(μF)
Case size
Size
code
100
12.6
F12
1700
960
11.9
E12
1470
5.0
5.9
B6
8.0
6.9
E7
10.0
880
1010
2600
3060
3060
3200
4650
5000
2600
2950
3000
3300
3300
4950
5400
2800
3200
3200
5400
4950
2720
20SVPK680M
0.12
450
25SVPK90M
0.12
1350
35
25
25
24
16
25SVPK270M
12
0.12
Specifications Standard(Reel size : φ380)
(mm)
φD L
Ripple
current*1
(mA r.m.s.)
tan δ*3 LC*4
(μA) Part number
Min.
Packaging
Q'ty
(pcs)
Allowable
ripple
current*1
(mA r.m.s.)
ESR*2
(mΩ)
0.12
320
16SVPK100M
1500
220
6.3
5.9
C6
1040
0.12
704
16SVPK220M
1000
27
22
5.0
5.9
B6
940
330
8.0
6.9
E7
1040
0.12
1056
16SVPK330M
1000
22
680
8.0
11.9
E12
1560
0.12
2176
16SVPK680M
400
14
1200
10.0
12.6
F12
1700
0.12
3840
16SVPK1200M
400
12
272
20SVPK68M
1500
150
6.3
5.9
C6
1010
0.12
600
20SVPK150M
1000
30
25
0.12
880
20SVPK220M
1000
470
8.0
11.9
E12
1560
0.12
1880
20SVPK470M
400
25
14
0.12
400
25
33
5.0
5.9
B6
820
0.12
165
25SVPK33M
1500
82
6.3
5.9
C6
960
0.12
410
25SVPK82M
1000
90
6.3
5.9
C6
1000
120
8.0
6.9
E7
1010
0.12
600
25SVPK120M
1000
400
470
10.0
12.6
F12
1590
0.12
2350
25SVPK470M
400
14
8.0
35
22
5.0
5.9
B6
820
0.12
154
35SVPK22M
82
8.0
6.9
E7
960
0.12
574
35SVPK82M
330
10.0
12.6
F12
1390
0.12
2310
1500
47
6.3
5.9
C6
930
0.12
329
35SVPK47M
1000
35
27
1000
180
8.0
11.9
E12
1260
0.12
1260
35SVPK180M
400
35SVPK330M
400
50
10
5.0
5.9
B6
550
0.12
100
50SVPK10M
1500
22
6.3
5.9
C6
820
2600
35
0.12
220
50SVPK22M
1000
33
1000
68
8.0
11.9
E12
1200
3800
25
0.12
680
50SVPK68M
400
8.0
6.9
E7
850
2700
35
0.12
330
50SVPK33M
50SVPK120M
400
120
10.0
12.6
F12
1350
4300
20
0.12
1200
100 kHz ≦ f< 500 kHz
Coefficient
0.05
0.3
0.7
1
Frequency(f)
120 Hz ≦ f< 1 kHz
1 kHz ≦ f< 10 kHz
10 kHz ≦ f< 100 kHz
Conductive Polymer Aluminum Solid Capacitors
● Super high voltage (100 V.DC max.)
● RoHS compliance, Halogen free
Unit:mm
DC leakage current
Capacitance tolerance
Nominal cap.range
Marking
Capacitance change
Dissipation factor (tanδ)
DC leakage current
Endurance
Dissipation factor (tan δ)
Please see the attached characteristics list
Please see the attached characteristics list
±20 % (120 Hz / +20 ℃)
+125 ℃ 1000 h, rated voltage applied
Within ±20 % of the initial value
≦ 200 % of the initial limit
Within the initial limit
Dimensions (not to scale)
6.8 μF to 18 μF
15 μF to 39 μF
15 μF to 56 μF
18 μF to 100 μF
Surface Mount Type
–55 ℃ to +125 ℃
Size code
Features
Specifications
SXV
series
Rated voltage range
Category temp. range
63 V.DC to 100 V.DC
E7
F8
E12
F12
E7
8.0
6.9
8.3
12.6
10.3
10.3
E12
8.0
11.9
8.3
8.3
F12
10.0
F8
10.0
7.9
10.3
10.3
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
21-Jun-19
Should a safety concern arise regarding this product, please be sure to contact us immediately.
+60 ℃, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
Dissipation factor (tanδ)
≦ 150 % of the initial limit
DC leakage current
Within the initial limit (after voltage processing)
Size
φD±0.5 L
+0.1
W±0.2 H±0.2 C±0.2 RP±0.2
code
-0.4
4.6
11.0
0.8 to 1.1
3.2
3.2
11.0
0.6 to 0.8
4.6
8.3
9.0
0.6 to 0.8
9.0
0.8 to 1.1
UPGRADE
Polarity marking
R. capacitance
F)
Series
R. voltage
V.DC)
Lot No.
L
R
0.2 max
φD
C
P
H
W
Conductive Polymer Aluminum Solid Capacitors
*1: Ripple current (100 kHz / +105 °C < Tx ≦ +125 °C) /Allowable ripple current (100 kHz / Tx ≦ +105 °C)
*2: ESR(100 kHz to 300 kHz / +20 ℃)
*3: tan δ (120 Hz / +20 ℃)
*4: After 2 minutes
・ Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
63 39
80
27
100
15
18
Should a safety concern arise regarding this product, please be sure to contact us immediately.
21-Jun-19
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
6.9
E7
10.0
1030
340
2490
3100
3100
1100
2000
2350
3000
2350
1100
Characteristics list
3000
3000
Frequency correction factor for ripple current
30
30
68
12
Rated
volt.
(V.DC)
Rated
cap.
(±20 %)
(μF)
Case size
Size
code
18
7.9
F8
660
980
7.9
F8
630
10.0
12.6
F12
8.0
Specifications Standard(Reel size : φ380)
(mm)
φD L
Ripple
current*1
(mA r.m.s.)
tan δ*3 LC*4
(μA) Part number
Min.
Packaging
Q'ty
(pcs)
Allowable
ripple
current*1
(mA r.m.s.)
ESR*2
(mΩ)
0.12
56
63SXV18M
1000
33
8.0
11.9
E12
930
0.12
104
63SXV33M
400
60
25
8.0
6.9
E7
340
2950
8.0
11.9
E12
930
0.12
122
63SXV39M
400
25
2950
10.0
7.9
F8
690
0.12
122
63SXV39MX
500
50
2190
56
8.0
11.9
E12
930
0.12
176
63SXV56M
400
25
2950
214
63SXV68M
400
100
10.0
12.6
F12
1030
0.12
315
63SXV100M
400
25
25
0.12
3280
3280
48
80SXV12M
1000
8.0
11.9
E12
780
0.12
108
80SXV27M
400
60
35
0.12
1100
2490
500
33
8.0
11.9
E12
780
0.12
132
80SXV33M
400
108
80SXV27MX
35
55
0.12
2080
47
10.0
12.6
F12
980
0.12
980
80SXV47M
400
28
56
10.0
12.6
F12
400
6.8
8.0
6.9
E7
340
0.12
34
100SXV6R8M
1000
0.12
224
80SXV56M
28
60
500
8.0
11.9
E12
730
0.12
75
100SXV15M
400
40
10.0
0.12
75
60
100SXV15MX
400
8.0
11.9
E12
730
0.12
90
100SXV18MX
400
30
40
10.0
12.6
F12
940
0.12
90
100SXV18M
400
27
10.0
12.6
F12
940
0.12
135
100SXV27M
400
22
10.0
12.6
F12
940
0.12
110
100SXV22M
100 kHz ≦ f< 500 kHz
Coefficient
0.05
0.3
0.7
1
Frequency(f)
120 Hz ≦ f< 1 kHz
1 kHz ≦ f< 10 kHz
10 kHz ≦ f< 100 kHz
NEW
NEW
NEW
NEW
NEW
NEW
NEW
NEW
NEW
NEW
NEW
NEW
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
+
fD
L
P
R
C
W
H
0.2 max.
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Surface Mount Type
Series : SVPG
Low profi le (Height 4.5 mm max.)
Low ESR (8 mΩ to 30 mΩ)
RoHS compliance, Halogen free
Size code B45 C8 C10
Category temperature range
–55 °C to +105 °C
Rated voltage range 16 V.DC to 25 V.DC 16 V.DC
Rated capacitance range 15 µF to 47 µF 270 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+105 °C, 5000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Marking
Unit : mm
Size
code
fD±0.5 L +0.1 W±0.2 H±0.2 C±0.2 R P±0.2
B45 5.0 4.4 5.3 5.3 6.0 0.6 to 0.8 1.4
C8 6.3 7.9 6.6 6.6 7.3 0.6 to 0.8 2.1
C10 6.3 9.9 6.6 6.6 7.3 0.6 to 0.8 2.1
−0.4
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications Standard (Reel size : f380)
fDL
Ripple 1
current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA) Part number
Min.
Packaging Q'ty
(pcs)
SVPG
16
47 5.0 4.4 B45 3200 25 0.12 150 16SVPG47M 2500
270 6.3 7.9 C8 5080 10 0.12 864 16SVPG270MX 900
6.3 9.9 C10 5800 8 0.12 864 16SVPG270M 500
20 33 5.0 4.4 B45 3000 27 0.12 132 20SVPG33M 2500
25 15 5.0 4.4 2800 30 0.12 75 25SVPG15M 2500
1 Ripple current (100 kHz/ +105 °C ), 2 ESR (100 kHz to 300 kHz/+20 °C) 3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Features
Speci cations
Dimensions (not to scale)
Characteristics list
Frequency correction factor for ripple current
Externals of fi gure are the reference.
NEW
Nov. 201702
Conductive Polymer Aluminum Solid Capacitors
● High voltage (50 V.DC max.)
● Large capacitance (1000 μF max.)
● 105 ℃ 5000 h
● RoHS compliance, Halogen free
Unit:mm
*1:±0.5
DC leakage current
Capacitance tolerance
Nominal cap.range (μF
Marking
Capacitance change
Dissipation factor (tanδ)
DC leakage current
Endurance
Dissipation factor (tan δ)
Please see the attached characteristics list
Please see the attached characteristics list
±20 % (120 Hz / +20 ℃)
+105 ℃ 5000 h, rated voltage applied
Within ±20 % of the initial value
≦ 150 % of the initial limit
Within the initial limit
Dimensions (not to scale)
27 to 82
10 to 180
18 to 270
560
39 to 560
1000
68 to 1000
Surface Mount Type
–55 ℃ to +105 ℃
Size code
Features
Specifications
Rated voltage range (V.DC)
Category temp. range
B6
C6
E7
E10
E12
F10
F12
16 to 25
16 to 50
16
16 to 50
16
16 to 50
SVPF
series
B6
5.0
5.9
5.3
10.0*1
8.3
8.3
E7
8.0
6.9
8.3
8.3
6.6
C6
6.3
5.9
6.6
F12
10.0
12.6
10.3
10.3
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
21-Jun-19
Should a safety concern arise regarding this product, please be sure to contact us immediately.
+60 ℃, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
Dissipation factor (tanδ)
≦ 150 % of the initial limit
DC leakage current
Within the initial limit (after voltage processing)
Size
φD±0.5 L
+0.1
W±0.2 H±0.2 C±0.2 RP±0.2
code
-0.4
E10
8.0
11.0
0.8 to 1.1
4.6
9.0
0.8 to 1.1
F10
10.0
10.0*1
10.3
10.3
11.0
0.8 to 1.1
4.6
E12
8.0
11.9
8.3
8.3
7.3
0.6 to 0.8
2.1
5.3
6.0
0.6 to 0.8
9.0
0.6 to 0.8
9.0
0.8 to 1.1
3.2
3.2
1.4
3.2
UPGRADE
Polarity marking
R. capacitance
F)
Series
R. voltage
V.DC)
Lot No.
L
R
0.2 max
φD
C
P
H
W
Conductive Polymer Aluminum Solid Capacitors
*1: Ripple current (100 kHz / +105 °C)
*2: ESR(100 kHz to 300 kHz / +20 ℃)
*3: tan δ (120 Hz / +20 ℃)
*4: After 2 minutes
・ Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Characteristics list
0.12
14
35
30
Frequency correction factor for ripple current
0.12
0.12
0.12
56
180
56
20
Rated
volt.
(V.DC)
Rated
cap.
(±20 %)
(μF)
Case size
Size
code
82
(mm)
φD L
Ripple
current*1
(mA r.m.s.)
tan δ*3 LC*4
(μA)
ESR*2
(mΩ)
Should a safety concern arise regarding this product, please be sure to contact us immediately.
21-Jun-19
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
262
180
6.3
5.9
C6
3300
576
0.12
0.12
5.0
5.9
B6
3000
27
22
8.0
10.0
E10
3900
1792
560
10.0
12.6
F12
5400
2240
0.12
12
120
6.3
5.9
C6
3200
480
0.12
25
1560
0.12
0.12
720
14
25
6.9
E7
47
6.3
5.9
2800
235
27
5.0
5.9
135
0.12
0.12
40
30
2450
82
8.0
6.9
3000
410
0.12
6.3
280
0.12
30
28
5.9
2800
100
8.0
6.9
3200
500
24
16
39
8.0
6.9
E7
2800
273
22
6.3
5.9
C6
2600
154
330
10.0
12.6
F12
5000
1650
12.6
F12
4400
18
0.12
840
82
8.0
11.9
120
10.0
E12
4000
574
100 kHz ≦ f< 500 kHz
18
8.0
6.9
E7
2700
35
0.12
180
4300
20
0.12
680
50SVPF68M
25
0.12
390
50SVPF39M
400
68
10.0
12.6
F12
6.3
5.9
C6
2500
Coefficient
0.05
0.3
0.7
1
Frequency(f)
120 Hz ≦ f< 1 kHz
1 kHz ≦ f< 10 kHz
10 kHz ≦ f< 100 kHz
400
50
50SVPF10M
1000
50SVPF18M
1000
39
8.0
11.9
E12
3800
16SVPF1000MX
500
16SVPF1000M
400
10.0
12.6
F12
5400
3200
0.12
0.12
3200
16
12
10.0
10.0
F10
4300
16SVPF82M
1500
16SVPF180M
1000
16SVPF270M
1000
560
16SVPF560MX
500
16SVPF560M
400
8.0
11.9
E12
4950
1792
0.12
14
0.12
18
270
8.0
6.9
E7
16
1000
3200
8.0
0.12
224
30
5.0
5.9
B6
2800
3300
864
0.12
22
25SVPF330M
400
180
8.0
11.9
E12
4650
900
20
20SVPF56MX
1500
20SVPF120M
1000
20SVPF180M
1000
20SVPF390M
400
20SVPF560M
400
390
8.0
11.9
E12
4950
25SVPF56M
1000
E7
25SVPF82M
1000
25SVPF100M
1000
25SVPF180M
400
0.12
0.12
40
0.12
100
10
Specifications
Min.
Packaging
Q'ty
(pcs)
Part number
Standard(Reel size : φ380
35
35SVPF22M
1000
35SVPF39M
1000
35SVPF82M
400
35SVPF120M
400
25
B6
25SVPF27MX
1500
C6
25SVPF47M
1000
NEW
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
+
fD
L
P
R
C
W
H
0.2 max.
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Surface Mount Type
Series : SVPA
Externals of fi gure are the reference.
Low ESR (18 mΩ max.)
High ripple (4240 mA.r.m.s.)
RoHS compliance, Halogen free
Marking
Unit : mm
Size
code
fD±0.5 L +0.1 W±0.2 H±0.2 C±0.2 R P±0.2
B6 5.0 5.9 5.3 5.3 6.0
0.6 to 0.8
1.4
C6 6.3 5.9 6.6 6.6 7.3
0.6 to 0.8
2.1
E7 8.0 6.9 8.3 8.3 9.0
0.6 to 0.8
3.2
F8 10.0 7.9 10.3 10.3 11.0
0.6 to 0.8
4.6
−0.4
Size code B6 C6 E7 F8
Category temperature range
–55 °C to +105 °C
Rated voltage range 2.5 V.DC to 20 V.DC 2.5 V.DC to 16 V.DC
Rated capacitance range 10 µF to 82 µF 22 µF to 180 µF 47 µF to 330 µF 180 µF to 820 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+105 °C, 2000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Dimensions (not to scale)
Features
Speci cations
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
1 Ripple current (100 kHz/ +105 °C ), 2 ESR (100 kHz/+20 °C) 3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications Standard (Reel size : f380)
fDL
Ripple 1
current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA) Part number
Min.
Packaging Q'ty
(pcs)
SVPA
2.5
82 5.0 5.9 B6 1970 30 0.12 300
2R5SVPA82MAA
1500
180 6.3 5.9 C6 2690 20 0.12 300
2R5SVPA180MAA
1000
330 8.0 6.9 E7 3370 20 0.12 500
2R5SVPA330MAA
1000
820 10.0 7.9 F8 4240 19 0.12 500
2R5SVPA820M
500
4.0
68 5.0 5.9 B6 1970 30 0.12 300
4SVPA68MAA
1500
150 6.3 5.9 C6 2570 22 0.12 300
4SVPA150MAA
1000
270 8.0 6.9 E7 3220 22 0.12 500
4SVPA270MAA
1000
680 10.0 7.9 F8 4130 20 0.12 544
4SVPA680M
500
6.3
47 5.0 5.9 B6 1970 30 0.12 300 6SVPA47MAA 1500
120 6.3 5.9 C6 2570 22 0.12 300 6SVPA120MAA 1000
220 8.0 6.9 E7 3220 22 0.12 500 6SVPA220MAA 1000
470 10.0 7.9 F8 4130 20 0.12 592 6SVPA470M 500
10
68 6.3 5.9 C6 2200 30 0.12 300 10SVPA68MAA 1000
150 8.0 6.9 E7 2760 30 0.12 500 10SVPA150MAA 1000
330 10.0 7.9 F8 3770 24 0.12 660 10SVPA330M 500
16
39 6.3 5.9 C6 2040 35 0.12 300 16SVPA39MAA 1000
6.3 5.9 2460 24 0.12 300 16SVPA39MAAY 1000
82 8.0 6.9 E7 2760 30 0.12 262 16SVPA82MAA 1000
180 10.0 7.9 F8 3430 29 0.12 576 16SVPA180M 500
20
10 5.0 5.9 B6 1700 40 0.12 80 20SVPA10M 1500
22 6.3 5.9 C6 2040 35 0.12 88 20SVPA22M 1000
47 8.0 6.9 E7 2630 33 0.12 188 20SVPA47M 1000
Frequency correction factor for ripple current
Characteristics list
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
+
fD
L
P
R
C
W
H
0.2 max.
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Surface Mount Type
Series : SVPB
Externals of fi gure are the reference.
Low profi le (Height 5 mm max.)
RoHS compliance, Halogen free
Unit : mm
Size
code
fD±0.5 L +0.1 W±0.2 H±0.2 C±0.2 R P±0.2
C5 6.3 4.9 6.6 6.6 7.3 0.6 to 0.8 2.1
C55 6.3 5.4 6.6 6.6 7.3 0.6 to 0.8 2.1
−0.4
Size code C5 C55
Category temperature range
–55 °C to +105 °C
Rated voltage range 2.5 V.DC to 20 V.DC 20 V.DC
Rated capacitance range 15 µF to 120 µF 22 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+105 °C, 1000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value (±30 % for C5 size)
tan d< 150 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
1 Ripple current (100 kHz/ +105 °C ), 2 ESR (100 kHz to 300 kHz/+20 °C) 3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications Standard (Reel size : f380)
fDL
Ripple 1
current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA) Part number
Min.
Packaging Q'ty
(pcs)
SVPB
2.5 120 6.3 4.9
C5
1670 40 0.12 120 2R5SVPB120M 1300
4.0 100 6.3 4.9 1670 40 0.12 160 4SVPB100M 1300
6.3 82 6.3 4.9 1670 40 0.12 207 6SVPB82M 1300
10 56 6.3 4.9 1670 40 0.12 224 10SVPB56M 1300
16 33 6.3 4.9 1670 40 0.12 211 16SVPB33M 1300
20 15 6.3 4.9 2000 45 0.12 120 20SVPB15M 1300
22 6.3 5.4 C55 2000 35 0.12 88 20SVPB22M 1000
Frequency correction factor for ripple current
Marking Dimensions (not to scale)
Features
Speci cations
Characteristics list
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
+
fD
L
P
R
C
W
H
0.2 max.
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Surface Mount Type
Series : SVPC
Low ESR (9 mΩ to 30 mΩ)
Large capacitance (2700 F max.)
RoHS compliance, Halogen free
Size code B6 C6 E7 E12 F12
Category temperature range
–55 °C to +105 °C
Rated voltage range 2.5 V.DC to 16 V.DC 2.5 V.DC
Rated capacitance range 39 µF to 180 µF 68 µF to 560 µF 120 µF to 680 µF 270 µF to 1500 µF 2700 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+105 °C, 2000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Marking
Unit : mm
Size
code
fD±0.5 L +0.1 W±0.2 H±0.2 C±0.2 R P±0.2
B6 5.0 5.9 5.3 5.3 6.0
0.6 to 0.8
1.4
C6 6.3 5.9 6.6 6.6 7.3
0.6 to 0.8
2.1
E7 8.0 6.9 8.3 8.3 9.0
0.6 to 0.8
3.2
E12 8.0 11.9 8.3 8.3 9.0
0.8 to 1.1
3.2
F12 10.0 12.6 10.3 10.3 11.0
0.8 to 1.1
4.6
−0.4
Features
Speci cations
Dimensions (not to scale)
Externals of fi gure are the reference.
Feb. 201703
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications Standard (Reel size : f380)
fDL
Ripple 1
current
(mAr.m.s.)
ESR
tan d 2LC 3
(µA) Part number
Min.
Packaging Q'ty
(pcs)
100 kHz/20 °C
(mΩ max.)
300 kHz/20 °C
(mΩ max.)
SVPC
2.5
180
5.0 5.9
B6
1970 30 26 0.12 300 2R5SVPC180M 1500
5.0 5.9 2200 24 20 0.12 300 2R5SVPC180MY 1500
5.0 5.9 2800 19 16 0.12 300 2R5SVPC180MV 1500
390 6.3 5.9
C6
2410 25 22 0.12 300 2R5SVPC390M 1000
6.3 5.9 3160 15 13 0.12 300 2R5SVPC390MV 1000
560 6.3 5.9 3500 16 14 0.12 300 2R5SVPC560M 1000
680 8.0 6.9 E7 3370 20 17 0.12 500 2R5SVPC680M 1000
820 8.0 11.9 E12 5380 9 8 0.15 500 2R5SVPC820M 400
1500 8.0 11.9 5150 10 9 0.15 750 2R5SVPC1500M 400
2700 10.0 12.6 F12 5070 12 10 0.15 1350 2R5SVPC2700M 400
4.0
150
5.0 5.9
B6
1970 30 26 0.12 300 4SVPC150M 1500
5.0 5.9 2240 23 20 0.12 300 4SVPC150MY 1500
5.0 5.9 2730 20 17 0.12 300 4SVPC150MV 1500
330
6.3 5.9
C6
2320 27 23 0.12 300 4SVPC330M 1000
6.3 5.9 2630 21 18 0.12 300 4SVPC330MY 1000
6.3 5.9 3160 15 13 0.12 300 4SVPC330MV 1000
560 8.0 6.9 E7 3220 22 19 0.12 500 4SVPC560M 1000
8.0 11.9
E12
5380 9 8 0.15 500 4SVPC560MX 400
1200 8.0 11.9 4700 12 10 0.15 960 4SVPC1200M 400
1500 8.0 11.9 4700 12 10 0.15 1200 4SVPC1500M 400
6.3
100 5.0 5.9
B6
1970 30 26 0.12 300 6SVPC100M 1500
5.0 5.9 2150 25 21 0.12 300 6SVPC100MY 1500
120 5.0 5.9 2660 21 18 0.12 300 6SVPC120MV 1500
220 6.3 5.9
C6
2320 27 23 0.12 300 6SVPC220M 1000
6.3 5.9 3160 15 13 0.12 300 6SVPC220MV 1000
330 6.3 5.9 3390 17 15 0.12 415 6SVPC330M 1000
390 8.0 6.9 E7 3220 22 19 0.12 491 6SVPC390M 1000
820 8.0 11.9 E12 4700 12 10 0.15 1033 6SVPC820M 400
10
68 5.0 5.9 B6 1970 30 26 0.12 300 10SVPC68M 1500
5.0 5.9 2540 23 20 0.12 300 10SVPC68MV 1500
120 6.3 5.9 C6 2320 27 23 0.12 300 10SVPC120M 1000
6.3 5.9 2600 22 19 0.12 300 10SVPC120MV 1000
270 8.0 6.9 E7 3220 22 19 0.12 500 10SVPC270M 1000
330 8.0 6.9 3460 19 17 0.12 660 10SVPC330M 1000
16
39 5.0 5.9 B6 1820 35 30 0.12 300 16SVPC39M 1500
5.0 5.9 2350 27 23 0.12 300 16SVPC39MV 1500
68 6.3 5.9
C6
2200 30 26 0.12 300 16SVPC68M 1000
6.3 5.9 2440 25 22 0.12 300 16SVPC68MV 1000
100 6.3 5.9 2490 24 23 0.12 300 16SVPC100M 1000
120 8.0 6.9 E7 2900 27 23 0.12 500 16SVPC120M 1000
150 8.0 6.9 3220 22 21 0.12 500 16SVPC150M 1000
270 8.0 11.9 E12 4070 16 14 0.15 864 16SVPC270M 400
1 Ripple current (100 kHz/ +105 °C ), 2 tan d (120 Hz/+20 °C) 3 After 2 minutes
Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Frequency correction factor for ripple current
Characteristics list
Feb. 201703
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
+
fD
L
P
R
C
W
H
0.2 max.
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Surface Mount Type
Series : SVPD
125 °C 2000 h
Guaranteed at 85 °C 85 %
RoHS compliance, Halogen free
Features
Unit : mm
Size
code
fD±0.5 L +0.1 W±0.2 H±0.2 C±0.2 R P±0.2
C6 6.3 5.9 6.6 6.6 7.3
0.6 to 0.8
2.1
E7 8.0 6.9 8.3 8.3 9.0
0.6 to 0.8
3.2
F8 10.0 7.9 10.3 10.3 11.0
0.6 to 0.8
4.6
E12 8.0 11.9 8.3 8.3 9.0
0.8 to 1.1
3.2
F12 10.0 12.6 10.3 10.3 11.0
0.8 to 1.1
4.6
−0.4
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications Standard (Reel size : f380)
fDL
Ripple 1
current
(mAr.m.s.)
Allowable
1
ripple current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA) Part number
Min.
Packaging Q'ty
(pcs)
SVPD
10 56 6.3 5.9 C6 538 1700 45 0.12 112 10SVPD56M 1000
16 82 8.0 6.9 E7 670 2120 40 0.12 262 16SVPD82M 1000
25
10 6.3 5.9 C6 474 1500 65 0.10 50 25SVPD10M 1000
22 8.0 6.9 E7 580 1835 48 0.10 110 25SVPD22M 1000
39 10.0 7.9 F8 664 2100 45 0.10 195 25SVPD39M 500
47 8.0 11.9 E12 943 2980 30 0.12 235 25SVPD47M 400
82 10.0 12.6 F12 1202 3800 28 0.12 410 25SVPD82M 400
35
8.2 8.0 6.9 E7 400 1300 70 0.10 57 35SVPD8R2M 1000
18 10.0 7.9 F8 550 1800 60 0.10 126 35SVPD18M 500
22 8.0 11.9 E12 700 2300 50 0.12 154 35SVPD22M 400
47 10.0 12.6 F12 1150 3650 30 0.12 329 35SVPD47M 400
1 Ripple current (100 kHz/ +105 °C < Tx < 125 °C), Allowable ripple current (100 kHz / Tx < 105 °C)
2 ESR (100 kHz to 300 kHz/+20 °C) 3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Size code C6 E7 F8 E12 F12
Category temperature range
–55 °C to +125 °C
Rated voltage range
10 V.DC to 25 V.DC 16 V.DC to 35 V.DC
25 V.DC to 35 V.DC
Rated capacitance range 10 µF to 56 µF 8.2 µF to 82 µF 18 µF to 39 µF 22 µF to 47 µF 47 µF to 82 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+125 °C, 2000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 200 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+85 °C, 85 % to 90 %, 1000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 200 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Speci cations
Marking Dimensions (not to scale)
Frequency correction factor for ripple current
Externals of fi gure are the reference.
Characteristics list
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
+
fD
L
P
R
C
W
H
0.2 max.
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Surface Mount Type
Series : SVPE
Super low ESR (8 mΩ to 18 mΩ)
Large capacitance (1200 F max.)
RoHS compliance, Halogen free
Size code B6 C6 C10 F12
Category temperature range
–55 °C to +105 °C
Rated voltage range 2.5 V.DC to 6.3 V.DC 2.5 V.DC to 10 V.DC 2 V.DC to 16 V.DC 16 V.DC
Rated capacitance range 150 µF to 390 µF 220 µF to 390 µF 180 µF to 1200 µF 470 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+105 °C, 2000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Marking
Unit : mm
Size
code
fD±0.5 L +0.1 W±0.2 H±0.2 C±0.2 R P±0.2
B6 5.0 5.9 5.3 5.3 6.0
0.6 to 0.8
1.4
C6 6.3 5.9 6.6 6.6 7.3
0.6 to 0.8
2.1
C10 6.3 9.9 6.6 6.6 7.3
0.6 to 0.8
2.1
F12 10.0 12.6 10.3 10.3 11.0
0.8 to 1.1
4.6
−0.4
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications Standard (Reel size : f380)
fDL
Ripple 1
current
(mAr.m.s.)
ESR
tan d 2LC 3
(µA) Part number
Min.
Packaging Q'ty
(pcs)
100 kHz/20 °C
(mΩ max.)
300 kHz/20 °C
(mΩ max.)
SVPE
2 1200 6.3 9.9 C10 5230 8 8 0.12 500
2SVPE1200M
500
2.5
270 5.0 5.9
B6
3860 10 9 0.12 500
2R5SVPE270M
1500
330 5.0 5.9 3150 15 13 0.12 500
2R5SVPE330M
1500
5.0 5.9 3860 10 9 0.12 500
2R5SVPE330MY
1500
390 5.0 5.9 3860 10 9 0.12 700
2R5SVPE390MX
1500
6.3 5.9 C6 3900 10 9 0.12 500
2R5SVPE390M
1000
6.3
150 5.0 5.9
B6
3520 12 10 0.12 500
6SVPE150M
1500
180 5.0 5.9 3150 15 13 0.12 500
6SVPE180M
1500
220 5.0 5.9 3150 15 13 0.12 500
6SVPE220MW
1500
6.3 5.9 C6 3900 10 9 0.12 500
6SVPE220M
1000
10 220 6.3 5.9 2700 20 18 0.12 500
10SVPE220M
1000
16 180 6.3 9.9 C10 4460 11 10 0.12 576
16SVPE180M
500
470 10.0 12.6 F12 6100 10 9 0.12 1504
16SVPE470M
400
1 Ripple current (100 kHz/ +105 °C ), 2 tan d (120 Hz/+20 °C) 3 After 2 minutes
Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Dimensions (not to scale)
Features
Speci cations
Frequency correction factor for ripple current
Externals of fi gure are the reference.
Characteristics list
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
+
fD
L
P
R
C
W
H
0.2 max.
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Surface Mount Type
Series : SVPS
105 °C 5000 h
RoHS compliance, Halogen free
Features
Size code A5 B6 C6 E7 F8
Category temperature range
–55 °C to +105 °C
Rated capacitance range 4 V.DC to 10 V.DC 4 V.DC to 16 V.DC 4 V.DC to 20 V.DC 4 V.DC to 25 V.DC 4 V.DC to 16 V.DC
Rated capacitance range 10 µF to 33 µF 22 µF to 68 µF 22 µF to 150 µF 10 µF to 270 µF 100 µF to 680 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+105 °C, 5000 h, rated voltage applied (25 V.DC 20 V.DC applied)
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Marking Dimensions (not to scale)
Unit : mm
Size
code
fD±0.5 L +0.1 W±0.2 H±0.2 C±0.2 R P±0.2
A5 4.0 5.4 4.3 4.3 5.0
0.6 to 0.8
1.0
B6 5.0 5.9 5.3 5.3 6.0
0.6 to 0.8
1.4
C6 6.3 5.9 6.6 6.6 7.3
0.6 to 0.8
2.1
E7 8.0 6.9 8.3 8.3 9.0
0.6 to 0.8
3.2
F8 10.0 7.9 10.3 10.3 11.0
0.6 to 0.8
4.6
−0.4
Speci cations
Externals of fi gure are the reference.
Feb. 201702
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications Standard (Reel size : f380)
fDL
Ripple 1
current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA) Part number
Min.
Packaging Q'ty
(pcs)
SVPS
4.0
33 4.0 5.4 A5 740 200 0.15 66 4SVPS33M 2000
68 5.0 5.9 B6 1970 30 0.12 300 4SVPS68M 1500
150 6.3 5.9 C6 2570 22 0.12 300 4SVPS150M 1000
270 8.0 6.9 E7 3220 22 0.12 500 4SVPS270M 1000
680 10.0 7.9 F8 4130 20 0.12 544 4SVPS680M 500
6.3
22 4.0 5.4 A5 740 200 0.12 69.3 6SVPS22M 2000
47 5.0 5.9 B6 1970 30 0.12 300 6SVPS47M 1500
120 6.3 5.9 C6 2570 22 0.12 300 6SVPS120M 1000
220 8.0 6.9 E7 3220 22 0.12 500 6SVPS220M 1000
470 10.0 7.9 F8 4130 20 0.12 592 6SVPS470M 500
10
10 4.0 5.4 A5 700 220 0.10 50 10SVPS10M 2000
15 4.0 5.4 740 200 0.10 75 10SVPS15M 2000
33 5.0 5.9 B6 1100 70 0.12 165 10SVPS33M 1500
68 6.3 5.9 C6 2200 30 0.12 300 10SVPS68M 1000
150 8.0 6.9 E7 2760 30 0.12 500 10SVPS150MX 1000
10.0 7.9 F8 3020 30 0.12 300 10SVPS150M 500
330 10.0 7.9 3770 24 0.12 660 10SVPS330M 500
16
22 5.0 5.9 B6 1060 90 0.10 176 16SVPS22M 1500
39 6.3 5.9 C6 2460 24 0.12 300 16SVPS39M 1000
82 8.0 6.9 E7 2760 30 0.12 262 16SVPS82M 1000
100 10.0 7.9 F8 2670 35 0.12 320 16SVPS100M 500
180 10.0 7.9 3430 29 0.12 576 16SVPS180M 500
20 22 6.3 5.9 C6 1450 60 0.10 88 20SVPS22M 1000
47 8.0 6.9 E7 1890 45 0.12 188 20SVPS47M 1000
25 10 8.0 6.9 1500 60 0.10 125 25SVPS10M 1000
1 Ripple current (100 kHz/ +105 °C ),
: The surface temperature of aluminum case top must not exceed 105 °C. A rise in temperature due to self-heating by ripple current should be factored in.
2 ESR (100 kHz to 300 kHz/+20 °C) 3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Frequency correction factor for ripple current
Characteristics list
Feb. 201702
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
+
fD
L
P
R
C
W
H
0.2 max.
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Surface Mount Type
Series : SVQP
125 °C 1000 h
RoHS compliance, Halogen free
Speci cations
Features
Size code C6 E7
Category temperature range
–55 °C to +125 °C
Rated voltage range 4 V.DC to 20 V.DC 6.3 V.DC to 20 V.DC
Rated capacitance range 22 µF to 150 µF 47 µF to 220 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+125 °C, 1000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 200 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Marking
Unit : mm
Size
code
fD±0.5 L +0.1 W±0.2 H±0.2 C±0.2 R P±0.2
C6 6.3 5.9 6.6 6.6 7.3 0.6 to 0.8 2.1
E7 8.0 6.9 8.3 8.3 9.0 0.6 to 0.8 3.2
−0.4
1 Ripple current (100 kHz/ +105 °C < Tx < 125 °C), Allowable ripple current (100 kHz / Tx < 105 °C)
2 ESR (100 kHz to 300 kHz/+20 °C) 3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications Standard (Reel size : f380)
fDL
Ripple 1
current
(mAr.m.s.)
Allowable
1
ripple current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA) Part number
Min.
Packaging Q'ty
(pcs)
SVQP
4.0 150 6.3 5.9
C6
572 1810 40 0.12 300 4SVQP150M 1000
6.3
82 6.3 5.9 538 1700 45 0.12 258 6SVQP82M 1000
100 6.3 5.9 572 1810 40 0.12 315 6SVQP100M 1000
220 8.0 6.9 E7 810 2560 35 0.12 693 6SVQP220M 1000
10
56 6.3 5.9 C6 538 1700 45 0.12 280 10SVQP56M 1000
120 8.0 6.9 E7 810 2560 35 0.12 600 10SVQP120M 1000
150 8.0 6.9 810 2560 35 0.12 750 10SVQP150M 1000
16 39 6.3 5.9 C6 512 1620 50 0.10 312 16SVQP39M 1000
82 8.0 6.9 E7 670 2120 40 0.12 656 16SVQP82M 1000
20 22 6.3 5.9 C6 459 1450 60 0.10 220 20SVQP22M 1000
47 8.3 6.9 E7 598 1890 45 0.12 470 20SVQP47M 1000
Dimensions (not to scale)
Externals of fi gure are the reference.
Frequency correction factor for ripple current
Characteristics list
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
+
fD
L
P
R
C
W
H
0.2 max.
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Surface Mount Type
Series : SVP
Standard
Wealth models
RoHS compliance, Halogen free
Features
Size code A5 B6 C6 E7 F8 E12 F12
Category temperature range
–55 °C to +105 °C
Rated voltage range
4 V.DC to 16 V.DC 4 V.DC to 20 V.DC
2.5 V.DC to 20 V.DC
4 V.DC to 20 V.DC 2.5 V.DC to 20 V.DC
Rated capacitance range
3.3 µF to 33 µF 10 µF to 68 µF
22 µF to 220 µF 33 µF to 330 µF 56 µF to 680 µF
100 µF to 680 µF
150 µF to 1500 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+105 °C, 2000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Unit : mm
Size
code
fD±0.5 L +0.1 W±0.2 H±0.2 C±0.2 R P±0.2
A5 4.0 5.4 4.3 4.3 5.0
0.6 to 0.8
1.0
B6 5.0 5.9 5.3 5.3 6.0
0.6 to 0.8
1.4
C6 6.3 5.9 6.6 6.6 7.3
0.6 to 0.8
2.1
E7 8.0 6.9 8.3 8.3 9.0
0.6 to 0.8
3.2
F8 10.0 7.9 10.3 10.3 11.0
0.6 to 0.8
4.6
E12 8.0 11.9 8.3 8.3 9.0
0.8 to 1.1
3.2
F12 10.0 12.6 10.3 10.3 11.0
0.8 to 1.1
4.6
−0.4
Speci cations
Externals of fi gure are the reference.
Marking Dimensions (not to scale)
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
1 Ripple current (100 kHz/ +105 °C ), 2 ESR (100 kHz to 300 kHz/+20 °C) 3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications Standard (Reel size : f380)
fDL
Ripple 1
current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA) Part number
Min.
Packaging Q'ty
(pcs)
SVP
2.5
220 6.3 5.9 C6 2390 23 0.12 110 2R5SVP220M 1000
680 8.0 11.9 E12 4520 13 0.15 340 2R5SVP680M 400
1500 10.0 12.6 F12 5440 12 0.18 750 2R5SVP1500M 400
4.0
33 4.0 5.4 A5 740 200 0.15 66 4SVP33M 2000
39 5.0 5.9 B6 1100 70 0.12 78 4SVP39M 1500
68 5.0 5.9 1400 60 0.12 136 4SVP68M 1500
150 6.3 5.9 C6 1810 40 0.12 120 4SVP150MX 1000
330 8.0 6.9 E7 2560 35 0.12 264 4SVP330M 1000
560 8.0 11.9 E12 4520 13 0.15 448 4SVP560M 400
680 10.0 7.9 F8 3700 25 0.12 544 4SVP680M 500
1200 10.0 12.6 F12 5440 12 0.18 960 4SVP1200M 400
6.3
22 4.0 5.4 A5 740 200 0.12 69.3 6SVP22M 2000
47 5.0 5.9 B6 1100 70 0.12 148 6SVP47M 1500
82 6.3 5.9
C6
1700 45 0.12 103 6SVP82M 1000
100 6.3 5.9 1810 40 0.12 126 6SVP100M 1000
120 6.3 5.9 2780 17 0.12 151 6SVP120MV 1000
220 8.0 6.9 E7 2560 35 0.12 277 6SVP220MX 1000
10.0 7.9
F8
3700 25 0.12 277 6SVP220M 500
330 10.0 7.9 3700 25 0.12 416 6SVP330M 500
470 10.0 7.9 3700 25 0.12 592 6SVP470MX 500
8.0 11.9 E12 4210 15 0.15 592 6SVP470M 400
820 10.0 12.6 F12 5440 12 0.15 775 6SVP820M 400
10
4.7 4.0 5.4
A5
670 240 0.08 23.5 10SVP4R7M 2000
6.8 4.0 5.4 670 240 0.09 34 10SVP6R8M 2000
10 4.0 5.4 700 220 0.10 50 10SVP10M 2000
15 4.0 5.4 740 200 0.10 75 10SVP15M 2000
33 5.0 5.9 B6 1100 70 0.12 165 10SVP33M 1500
47 6.3 5.9 C6 1620 50 0.12 94 10SVP47M 1000
56 6.3 5.9 1700 45 0.12 112 10SVP56M 1000
120 8.0 6.9 E7 2560 35 0.12 240 10SVP120M 1000
150 8.0 6.9 2560 35 0.12 300 10SVP150MX 1000
10.0 7.9
F8
3020 30 0.12 300 10SVP150M 500
270 10.0 7.9 3700 25 0.12 540 10SVP270M 500
330 10.0 7.9 3700 25 0.12 660 10SVP330MX 500
8.0 11.9 E12 3950 17 0.15 660 10SVP330M 400
560 10.0 12.6 F12 5230 13 0.15 840 10SVP560M 400
16
3.3 4.0 5.4 A5 660 260 0.07 26.4 16SVP3R3M 2000
15 5.0 5.9 B6 1020 120 0.10 120 16SVP15M 1500
22 5.0 5.9 1060 90 0.10 176 16SVP22M 1500
39 6.3 5.9 C6 1620 50 0.10 125 16SVP39M 1000
56 8.0 6.9 E7 1890 45 0.12 179 16SVP56M 1000
82 8.0 6.9 2120 40 0.12 262 16SVP82M 1000
100 10.0 7.9
F8
2670 35 0.12 320 16SVP100M 500
150 10.0 7.9 3020 30 0.12 480 16SVP150M 500
180 10.0 7.9 3020 30 0.12 576 16SVP180MX 500
8.0 11.9 E12 3640 20 0.15 576 16SVP180M 400
330 10.0 12.6 F12 4720 16 0.15 792 16SVP330M 400
20
10 5.0 5.9 B6 1020 120 0.10 100 20SVP10M 1500
22 6.3 5.9 C6 1450 60 0.10 88 20SVP22M 1000
27 6.3 5.9 1450 60 0.10 108 20SVP27M 1000
33 8.0 6.9 E7 1890 45 0.12 132 20SVP33M 1000
47 8.0 6.9 1890 45 0.12 188 20SVP47M 1000
56 10.0 7.9 F8 2400 40 0.12 224 20SVP56M 500
68 10.0 7.9 2400 40 0.12 272 20SVP68M 500
100 8.0 11.9 E12 3320 24 0.15 400 20SVP100M 400
150 10.0 12.6 F12 4320 20 0.15 600 20SVP150M 400
Frequency correction factor for ripple current
Characteristics list
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
fd±0.05
L max.
15 min. 4 min.
19 min.
fD±0.5
F
+
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Radial Lead Type
Series : SEF
High voltage (35 V.DC max.)
Large capacitance (1000 F max.)
RoHS compliance, Halogen free
Marking Dimensions (not to scale)
Unit : mm
Size
code
fD±0.5
L max. F
±0.5
fd±0.05
C6 6.3 6.0 2.5 0.5
E7 8.0 7.0 3.5 0.5
E12 8.0 12.0 3.5 0.6
F13 10.0 13.0 5.0 0.6
1 Ripple current (100 kHz/ +105 °C < Tx < +125 °C) /Allowable ripple current (100 kHz/ Tx < +105 °C), 2 ESR (100 kHz to 300 kHz/+20 °C)
3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Flow conditions” and “Taping specifications”.
Frequency correction factor for ripple current
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+125 °C, 1000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 200 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Size code C6 E7 E12 F13
Category temperature range
–55 °C to +125 °C
Rated voltage range 16 V.DC to 35 V.DC
Rated capacitance range 22 µF to 180 µF 39 µF to 270 µF 82 µF to 560 µF 120 µF to 1000 µF
Features
Externals of fi gure are the reference.
Speci cations
Characteristics list
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications
Part number
fDL
Ripple 1
current
(mAr.m.s.)
Allowable
1
ripple current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA)
SEF
16
180 6.3 6.0 C6 1040 3300 22 0.12 576 16SEF180M
270 8.0 7.0 E7 1040 3300 22 0.12 864 16SEF270M
560 8.0 12.0 E12 1560 4950 14 0.12 1792 16SEF560M
1000 10.0 13.0 F13 1700 5400 12 0.12 3200 16SEF1000M
20
120 6.3 6.0 C6 1010 3200 25 0.12 480 20SEF120M
180 8.0 7.0 E7 1010 3200 25 0.12 720 20SEF180M
390 8.0 12.0 E12 1560 4950 14 0.12 1560 20SEF390M
560 10.0 13.0 F13 1700 5400 12 0.12 2240 20SEF560M
25
56 6.3 6.0 C6 880 2800 30 0.12 280 25SEF56M
82 8.0 7.0 E7 940 3000 28 0.12 410 25SEF82M
180 8.0 12.0 E12 1470 4650 16 0.12 900 25SEF180M
330 10.0 13.0 F13 1580 5000 14 0.12 1650 25SEF330M
35
22 6.3 6.0 C6 820 2600 35 0.12 154 35SEF22M
39 8.0 7.0 E7 880 2800 30 0.12 273 35SEF39M
82 8.0 12.0 E12 1260 4000 20 0.12 574 35SEF82M
120 10.0 13.0 F13 1390 4400 18 0.12 840 35SEF120M
Oct. 201600
NEW
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
fd±0.05
L max.
15 min. 4 min.
19 min.
fD±0.5
F
+
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
High voltage (50 V.DC max.)
RoHS compliance, Halogen free
125 °C 1000 h
Features
Radial Lead Type
Series : SEK
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+125 °C, 1000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 200 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Speci cations
Size code C6 E7 E12 F13
Category temperature range
–55 °C to +125 °C
Rated voltage range 25 V.DC to 50 V.DC
Rated capacitance range 22 μF to 82 μF 33 μF to 120 μF 68 μF to 270 μF 120 μF to 470 μF
Marking Dimensions (not to scale)
Unit : mm
Size
code
fD±0.5
L max. F
±0.5
fd±0.05
C6 6.3 6.0 2.5 0.5
E7 8.0 7.0 3.5 0.5
E12 8.0 12.0 3.5 0.6
F13 10.0 13.0 5.0 0.6
1 Ripple current (100 kHz/ +105 °C < Tx < +125 °C) /Allowable ripple current (100 kHz/ Tx < +105 °C), 2 ESR (100 kHz to 300 kHz/+20 °C)
3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Flow conditions” and “Taping specifications”.
Frequency correction factor for ripple current
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Externals of fi gure are the reference.
Characteristics list
Series
Rated
voltage
(V.DC)
Rated
capacitance
(μF)
Case size (mm)
Size
code
Specifications
Part number
fDL
Ripple 1
current
(mAr.m.s.)
Allowable
1
ripple current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(μA)
SEK
25
82 6.3 6.0 C6 960 3060 25 0.12 410 25SEK82M
120 8.0 7.0 E7 1010 3200 24 0.12 600 25SEK120M
270 8.0 12.0 E12 1470 4650 16 0.12 1350 25SEK270M
470 10.0 13.0 F13 1590 5000 14 0.12 2350 25SEK470M
35
47 6.3 6.0 C6 930 2950 27 0.12 329 35SEK47M
82 8.0 7.0 E7 960 3060 25 0.12 574 35SEK82M
180 8.0 12.0 E12 1260 4000 20 0.12 1260 35SEK180M
330 10.0 13.0 F13 1390 4400 18 0.12 2310 35SEK330M
50
22 6.3 6.0 C6 820 2600 35 0.12 220 50SEK22M
33 8.0 7.0 E7 850 2700 35 0.12 330 50SEK33M
68 8.0 12.0 E12 1200 3800 25 0.12 680 50SEK68M
120 10.0 13.0 F13 1350 4300 20 0.12 1200 50SEK120M
Oct. 201700
Conductive Polymer Aluminum Solid Capacitors
Radial Lead Type
● High ripple current (6100 mA r.m.s. max.)
● RoHS compliance, Halogen free
・E13 size ・C9、C10、E9 size
C9、C10、E9 size flat rubber is used.
Unit:mm
*1: Ripple curren(100 kHz / +105 ℃) *2: ESR(100 kHz / +20 ℃)
*3: tan δ (120 Hz / +20 ℃)
*4: After 2 minutes
・Please refer to each page in this catarog for “Flow conditions” and “Taping specifications”.
Frequency correction factor for ripple current
Frequency(f)
120 Hz ≦ f< 1 kHz
1 kHz ≦ f< 10 kHz
10 kHz ≦ f< 100 kHz
100 kHz ≦ f< 500 kHz
Coefficient
0.05
0.3
0.7
1
16SEPG560M
1504
16SEPG270W
6.3
9.9
C10
5800
8
0.12
864
16SEPG270M
16SEPG470M
8.0
12.9
E13
6100
8
0.12
1792
16
270
6.3
8.9
C9
5040
10
0.12
864
470
8.0
8.9
E9
5400
8
0.12
560
Rated
volt.
(V.DC)
Rated
cap.
(±20 %)
(μF)
Case size
Size
code
Specifications
Part number
(mm)
φD L
Ripple
current *1
(mA r.m.s.)
ESR*2
(mΩ) tan δ*3 LC*4
(μA)
Characteristics list
13.0
0.6
0.5
0.6
0.6
2.5
2.5
3.5
3.5
8.0
C9
C10
E9
E13
16 V.DC
Within ±20 % of the initial value
470 μF
560 μF
270 μF
–55 ℃ to +105 ℃
9.0
10.0
9.0
6.3
6.3
8.0
Dimensions (not to scale)
Size code
Capacitance tolerance
Rated cap. range
Dissipation factor (tan δ)
DC leakage current
±20 % (120 Hz / +20 ℃)
+105 ℃ 5000 h, rated voltage applied
≦ 200 % of the initial limit
Within the initial limit
Capacitance change
Size code
Features
Specifications
C9
C10
E9
SEPG
series
E13
Please see the attached characteristics list
Please see the attached characteristics list
Damp heat
(Steady State)
Marking
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
01-Feb-19
Should a safety concern arise regarding this product, please be sure to contact us immediately.
≦ 150 % of the initial limit
Within the initial limit (after voltage processing)
Capacitance change
Dissipation factor (tan δ)
DC leakage current
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Within ±20 % of the initial value
φd±0.05
F±0.5
L max.
φD±0.5
Rated voltage range
Category temp. range
Endurance
Dissipation factor (tan δ)
Leakage current
UPGRADE
Polarity
marking()
R. capacitance
F)
Series
R.voltage
V.DC)
Lot No.
15 min.
4min.
19 min.
L
ΦD±0.5
F
Φd
15 min.
4min.
19 min.
L
ΦD±0.5
F
Φd
NEWNEW
Conductive Polymer Aluminum Solid Capacitors
Radial Lead Type
● Super high voltage (100 V.DC max.)
● RoHS compliance, Halogen free
Unit:mm
±20 % (120 Hz / +20 ℃)
+125 ℃ 1000 h, rated voltage applied
Within ±20 % of the initial value
≦ 200 % of the initial limit
Endurance
SXE
series
Dimensions (not to scale)
6.8 μF to 18 μF
15 μF to 39 μF
15 μF to 56 μF
Within the initial limit
–55 ℃ to +125 ℃
Size code
Features
Specifications
Rated voltage range
Category temp. range
63 V.DC to 100 V.DC
E7
F8
E12
F13
18 μF to 100 μF
DC leakage current
Capacitance tolerance
Nominal cap.range
Marking
Capacitance change
Dissipation factor (tanδ)
DC leakage current
Dissipation factor (tan δ)
Please see the attached characteristics list
Please see the attached characteristics list
17-May-19
Should a safety concern arise regarding this product, please be sure to contact us immediately.
+60 ℃, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
Dissipation factor (tanδ)
≦ 150 % of the initial limit
DC leakage current
Within the initial limit (after voltage processing)
E12
8.0
12.0
F13
10.0
13.0
5.0
0.60
3.5
0.60
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
φd±0.05
E7
8.0
7.0
3.5
0.45
Damp heat
(Steady state)
Size code
φD±0.5
L max.
F±0.5
F8
10.0
8.0
5.0
0.50
UPGRADE
Polarity marking (−)
R. capacitance
F)
Series
R. voltage
V.DC)
Lot No.
15 min. 4min.
19 min.
Lmax.
φD±0.5
F
φd±0.05
Conductive Polymer Aluminum Solid Capacitors
*1: Ripple current (100 kHz / +105 °C < Tx ≦ +125 °C) /Allowable ripple current (100 kHz / Tx ≦ +105 °C)
*2: ESR(100 kHz to 300 kHz / +20 ℃)
*3: tan δ (120 Hz / +20 ℃)
*4: After 2 minutes
・ Please refer to each page in this catarog for “Reflow conditions” and “Taping specifications”.
690
930
1030
1030
340
780
Ripple
current*1
(mA r.m.s.)
Allowable
ripple
current*1
(mA r.m.s.)
Specifications
LC*4
(μA)
tan δ*3
ESR*2
(mΩ)
60
25
25
50
25
25
25
60
35
0.12
0.12
0.12
2950
3280
3280
1100
2490
630
730
940
730
980
980
340
3100
3100
1100
2080
2490
660
780
0.12
0.12
0.12
0.12
0.12
104
122
122
176
214
315
48
108
108
80SXE47M
80SXE56M
100SXE6R8M
100SXE15MX
100SXE15M
100SXE18M
100SXE18MX
100SXE22M
90
90
980
224
34
100SXE27M
63SXE39M
63SXE39MX
63SXE56M
63SXE68M
63SXE100M
80SXE12M
80SXE27M
80SXE27MX
80SXE33M
27
10.0
13.0
F13
110
135
0.12
0.12
30
30
3000
3000
940
940
100 kHz ≦ f< 500 kHz
Coefficient
0.05
0.3
0.7
1
Frequency(f)
120 Hz ≦ f< 1 kHz
1 kHz ≦ f< 10 kHz
10 kHz ≦ f< 100 kHz
0.12
0.12
30
40
10.0
13.0
F13
22
10.0
13.0
F13
8.0
12.0
E12
3000
2350
8.0
12.0
E12
10.0
75
75
0.12
0.12
60
40
2000
2350
56
10.0
13.0
F13
6.8
8.0
7.0
E7
47
10.0
13.0
F13
100
10.0
13.0
F13
56
8.0
12.0
E12
33
8.0
12.0
E12
63SXE18M
63SXE33M
56
(mm)
φD L
10.0
8.0
F8
8.0
12.0
E12
8.0
12.0
E12
Part number
0.12
1100
2950
2950
2190
340
930
930
Characteristics list
Frequency correction factor for ripple current
68
12
Rated
volt.
(V.DC)
Rated
cap.
(±20 %)
(μF)
Case size
Size
code
18
8.0
F8
8.0
F8
10.0
13.0
F13
8.0
63
8.0
7.0
E7
33
39
8.0
80
27
100
15
18
Should a safety concern arise regarding this product, please be sure to contact us immediately.
21-Jun-19
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
7.0
E7
10.0
0.12
0.12
0.12
28
28
60
12.0
E12
132
0.12
0.12
55
35
NEW
NEW
NEW
NEW
NEW
NEW
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
fd±0.05
L max.
15 min. 4 min.
19 min.
fD±0.5
F
+
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Radial Lead Type
Series : SEPF
High voltage (35 V.DC max.)
Large capacitance (1000 F max.)
RoHS compliance, Halogen free
Marking Dimensions (not to scale)
Unit : mm
32SEPF68M : 0.6±0.05
Size code
fD±0.5
L max. F
±0.5
fd±0.05
C55 6.3 5.5 2.5 0.45
C6 6.3 6.0 2.5 0.5
E7 8.0 7.0 3.5 0.5
E12 8.0 12.0 3.5 0.6
F13 10.0 13.0 5.0 0.6
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications
Part number
fDL
Ripple 1
current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA)
SEPF
16
150 6.3 5.5 C55 2590 30 0.12 480 16SEPF150M
180 6.3 6.0 C6 3300 22 0.12 576 16SEPF180M
270 8.0 7.0 E7 3300 22 0.12 864 16SEPF270M
560 8.0 12.0 E12 4950 14 0.12 1792 16SEPF560M
1000 10.0 13.0 F13 5400 12 0.12 3200 16SEPF1000M
20
120 6.3 6.0 C6 3200 25 0.12 480 20SEPF120M
180 8.0 7.0 E7 3200 25 0.12 720 20SEPF180M
390 8.0 12.0 E12 4950 14 0.12 1560 20SEPF390M
560 10.0 13.0 F13 5400 12 0.12 2240 20SEPF560M
25
56 6.3 6.0 C6 2800 30 0.12 280 25SEPF56M
82 8.0 7.0 E7 3000 28 0.12 410 25SEPF82M
180 8.0 12.0 E12 4650 16 0.12 900 25SEPF180M
330 10.0 13.0 F13 5000 14 0.12 1650 25SEPF330M
32 22 6.3 5.5 C55 2400 35 0.12 140 32SEPF22M
68 8.0 7.0 E7 3200 25 0.10 435 32SEPF68M
35
22 6.3 6.0 C6 2600 35 0.12 154 35SEPF22M
39 8.0 7.0 E7 2800 30 0.12 273 35SEPF39M
82 8.0 12.0 E12 4000 20 0.12 574 35SEPF82M
120 10.0 13.0 F13 4400 18 0.12 840 35SEPF120M
1 Ripple current (100 kHz/ +105 °C ), 2 ESR (100 kHz to 300 kHz/+20 °C) 3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Flow conditions” and “Taping specifications”.
Frequency correction factor for ripple current
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Size code C55 C6 E7 E12 F13
Category temperature range
–55 °C to +105 °C
Rated voltage range
16 V.DC to 32 V.DC
16 V.DC to 35 V.DC
Rated capacitance range 22 µF to 150 µF 22 µF to 180 µF 39 µF to 270 µF 82 µF to 560 µF 120 µF to 1000 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+105 °C, 5000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Features
Externals of fi gure are the reference.
Speci cations
Characteristics list
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
fd
L
15 min. 4 min.
19 min.
fD
F
+
fd
L
15 min. 4 min.
19 min.
fD
F
+
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Radial Lead Type
Series : SEPC
Super low ESR (5 mΩ to 24 mΩ)
Large capacitance (2700 F max.)
RoHS compliance, Halogen free
Speci cations
Features
Size code B9 C55 C6 C9 E7 E9 E12 E13 F13
Category temperature range
–55 °C to +105 °C
Rated voltage range (V.DC)
2.5 6.3 2.5 to 16 6.3 to 16 2.5 to 16 16 2.5 to 6.3 2.5 to 16
Rated capacitance range (F)
100 to 560
220
100 to 560 100 to 820
150 to 1000 180 to 1000
180 to 270 470 to 820
470 to 2700
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+105 °C, 5000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Marking
Unit : mm
1 2SEPC390M, 2SEPC560M : 0.5±0.05
2 16SEPC150MD, 10SEPC270M : 0.45±0.05
B9, C55, C6, C9, E7, E9 size flat rubber is used.
B9, C55, C6, C9, E7, E9 Size
E12, E13, F13 Size
Size code
fD±0.5
L max. F
±0.5
fd±0.05
B9 5.0 9.0 2.0 0.6
C55 6.3 5.5 2.5 0.45
C6 6.3 6.0 2.5 0.45
1
C9 6.3 9.0 2.5 0.6
E7 8.0 7.0 3.5 0.6
2
E9 8.0 9.0 3.5 0.6
E12 8.0 12.0 3.5 0.6
E13 8.0 13.0 3.5 0.6
F13 10.0 13.0 5.0 0.6
Dimensions (not to scale)
Externals of fi gure are the reference.
Feb. 201702
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications
Part number
fDL
Ripple 1
current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA)
SEPC
2.5
100 5.0 9.0 B9 4180 7 0.10 500 2SEPC100MZ
330 5.0 9.0 4180 7 0.10 500 2SEPC330MZ
390 6.3 6.0 C6 3900 10 0.12 500 2SEPC390M
470 5.0 9.0 B9 4180 7 0.10 500 2SEPC470MZ
560
5.0 9.0 4180 7 0.10 500 2SEPC560MZ
6.3 6.0 C6 3900 10 0.12 500 2SEPC560M
6.3 9.0 C9 5600 7 0.10 500 2SEPC560MW
8.0 9.0 E9 4700 8 0.10 280 2SEPC560MX
820
6.3 9.0 C9 5600 7 0.10 500 2SEPC820MW
8.0 7.0 E7 5300 8 0.10 500 2SEPC820MD
8.0 9.0 E9 6100 7 0.10 500 2SEPC820MX
8.0 9.0 7200 5 0.10 500 2SEPC820MY
8.0 13.0 E13 6100 7 0.10 500 2R5SEPC820M
1000 8.0 9.0 E9 6100 7 0.10 500 2SEPC1000MX
2700 10.0 13.0 F13 5560 10 0.10 1350 2SEPC2700M
4.0
560
6.3 9.0 C9 5600 7 0.10 500 4SEPC560MW
8.0 9.0 E9 6100 7 0.10 500 4SEPC560MX
8.0 13.0 E13 6100 7 0.10 500 4SEPC560M
680 8.0 13.0 6100 7 0.10 544 4SEPC680M
820 10.0 13.0 F13 6640 7 0.10 656 4SEPC820M
6.3
220 6.3 5.5 C55 2980 18 0.12 280 6SEPC220M
470
6.3 9.0 C9 5600 7 0.10 592 6SEPC470MW
8.0 9.0 E9 5700 8 0.10 592 6SEPC470MX
8.0 13.0 E13 5700 8 0.10 592 6SEPC470M
560 6.3 9.0 C9 5600 7 0.10 705 6SEPC560MW
8.0 9.0 E9 6100 7 0.10 705 6SEPC560MX
680 10.0 13.0 F13 6640 7 0.10 857 6SEPC680M
1000 8.0 7.0 E7 3530 18 0.10 1260 6SEPC1000MD
1500 10.0 13.0 F13 5560 10 0.10 1890 6SEPC1500M
10 270 8.0 7.0 E7 3220 22 0.12 500 10SEPC270MD
16
100 6.3 6.0 C6 2490 24 0.10 320 16SEPC100M
6.3 9.0 C9 4680 10 0.10 500 16SEPC100MW
150 8.0 7.0 E7 3220 22 0.12 500 16SEPC150MD
180 8.0 9.0 E9 5000 10 0.10 576 16SEPC180MX
8.0 12.0 E12 4360 16 0.10 576 16SEPC180M
220 8.0 7.0 E7 4150 13 0.10 500 16SEPC220MD
270 8.0 9.0 E9 5000 10 0.10 864 16SEPC270MX
8.0 12.0 E12 5000 11 0.10 864 16SEPC270M
470 10.0 13.0 F13 6100 10 0.10 1504 16SEPC470M
1 Ripple current (100 kHz/ +105 °C ), 2 ESR (100 kHz to 300 kHz/+20 °C) 3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Flow conditions” and “Taping specifications”.
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Frequency correction factor for ripple current
Characteristics list
Feb. 201702
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
fd
L
15 min. 4 min.
19 min.
fD
F
+
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Radial Lead Type
Series : SEQP
Externals of fi gure are the reference.
High voltage (32 V.DC max.)
125 °C 1000 h
RoHS compliance, Halogen free
Features
Size code C6 E7 F8 E12 F13
Category temperature range
–55 °C to +125 °C
Rated voltage range 4 V.DC to 20 V.DC 4 V.DC to 32 V.DC 4 V.DC to 20 V.DC
Rated capacitance range 22 µF to 150 µF 6.8 µF to 330 µF 15 µF to 680 µF 18 µF to 560 µF 150 µF to 1200 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+125 °C, 1000 h/+105 °C, 5000 h, rated voltage applied
Capacitance change
Within ±20 % of the initial value
tan d< 200 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Unit : mm
Size code fD±0.5 L max. F±0.5 fd±0.05
C6 6.3 6.0 2.5 0.45
E7 8.0 7.0 3.5 0.45
F8 10.0 8.0 5.0 0.50
E12 8.0 12.0 3.5 0.60
F13 10.0 13.0 5.0 0.60
Marking Dimensions (not to scale)
Speci cations
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
Characteristics list
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications
Part number
fDL
Ripple 1
current
(mAr.m.s.)
Allowable
1
ripple current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA)
SEQP
4.0
150 6.3 6.0 C6 572 1810 40 0.12 300 4SEQP150M
330 8.0 7.0 E7 810 2560 35 0.12 660 4SEQP330M
560 8.0 12.0 E12 1430 4520 13 0.15 448 4SEQP560M
680 10.0 8.0 F8 1170 3700 25 0.12 544 4SEQP680M
1200 10.0 13.0 F13 1721 5440 12 0.18 960 4SEQP1200M
6.3
82 6.3 6.0 C6 537 1700 45 0.12 258 6SEQP82M
150 8.0 7.0 E7 810 2560 35 0.12 472 6SEQP150M
330 10.0 8.0 F8 1170 3700 25 0.12 416 6SEQP330M
470 8.0 12.0 E12 1332 4210 15 0.15 592 6SEQP470M
820 10.0 13.0 F13 1721 5440 12 0.15 775 6SEQP820M
10
56 6.3 6.0 C6 537 1700 45 0.12 280 10SEQP56M
120 8.0 7.0 E7 810 2560 35 0.12 600 10SEQP120M
270 10.0 8.0 F8 1170 3700 25 0.12 540 10SEQP270M
330 8.0 12.0 E12 1250 3950 17 0.15 660 10SEQP330M
560 10.0 13.0 F13 1655 5230 13 0.15 840 10SEQP560M
16
39 6.3 6.0 C6 512 1620 50 0.10 312 16SEQP39M
82 8.0 7.0 E7 670 2120 40 0.12 656 16SEQP82M
150 10.0 8.0 F8 955 3020 30 0.12 480 16SEQP150M
180 8.0 12.0 E12 1151 3640 20 0.15 576 16SEQP180M
330 10.0 13.0 F13 1493 4720 16 0.15 792 16SEQP330M
20
22 6.3 6.0 C6 458 1450 60 0.10 220 20SEQP22M
47 8.0 7.0 E7 598 1890 45 0.12 470 20SEQP47M
68 10.0 8.0 F8 759 2400 40 0.12 272 20SEQP68M
100 8.0 12.0 E12 1050 3320 24 0.15 400 20SEQP100M
150 10.0 13.0 F13 1367 4320 20 0.15 600 20SEQP150M
32
6.8 8.0 7.0 E7 440 1400 100 0.10 44 32SEQP6R8M
15 10.0 8.0 F8 560 1800 80 0.10 96 32SEQP15M
18 8.0 12.0 E12 790 2500 50 0.12 115 32SEQP18M
1 Ripple current (100 kHz/ +105 °C < Tx < 125 °C), Allowable ripple current (100 kHz / Tx < 105 °C)
2 ESR (100 kHz to 300 kHz/+20 °C) 3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Flow conditions” and “Taping specifications”.
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Frequency correction factor for ripple current
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
fd
L
15 min. 4 min.
19 min.
fD
F
+
Lot. No.
Polarity marking (−)
Series
R. Capacitance
R. Voltage
Radial Lead Type
Series : SEP
Externals of fi gure are the reference.
Standard
105 °C 3000 h
RoHS compliance, Halogen free
Speci cations
Features
Size code C6 E7 F8 E12 F13
Category temperature range
–55 °C to +105 °C
Rated voltage range 4 V.DC to 20 V.DC 2.5 V.DC to 20 V.DC
Rated capacitance range 22 µF to 150 µF 33 µF to 330 µF 56 µF to 680 µF 100 µF to 680 µF 150 µF to 1500 µF
Capacitance tolerance ±20 % (120 Hz / + 20 °C)
Leakage current Please see the attached characteristics list
Dissipation factor (tan d) Please see the attached characteristics list
Endurance
+105 °C, 3000 h, rated voltage applied (2.5 V.DC 2000 h applied)
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit
Damp heat
(Steady State)
+60 °C, 90 % to 95 %, 1000 h, No-applied voltage
Capacitance change
Within ±20 % of the initial value
tan d< 150 % of the initial limit
DC leakage current Within the initial limit (after voltage processing)
Marking
Unit : mm
Size code fD±0.5 L max. F±0.5 fd±0.05
C6 6.3 6.0 2.5 0.45
E7 8.0 7.0 3.5 0.45
F8 10.0 8.0 5.0 0.50
E12 8.0 12.0 3.5 0.60
F13 10.0 13.0 5.0 0.60
Dimensions (not to scale)
Nov. 201501
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Conductive Polymer Aluminum Solid Capacitors
1 Ripple current (100 kHz/ +105 °C ), 2 ESR (100 kHz to 300 kHz/+20 °C) 3 tan d (120 Hz/+20 °C) 4 After 2 minutes
Please refer to each page in this catarog for “Flow conditions” and “Taping specifications”.
Frequency 120 Hz < f < 1 kHz 1 kHz < f < 10 kHz 10 kHz < f < 100 kHz 100 kHz < f < 500 kHz
Coeffi cient 0.05 0.3 0.7 1
Series
Rated
voltage
(V.DC)
Rated
capacitance
(µF)
Case size (mm)
Size
code
Specifications
Part number
fDL
Ripple 1
current
(mAr.m.s.)
ESR 2
(mΩ max.)
tan d 3LC 4
(µA)
SEP
2.5 680 8.0 12.0 E12 4520 13 0.15 340 2R5SEP680M
1500 10.0 13.0 F13 5440 12 0.18 750 2R5SEP1500M
4.0
100 6.3 6.0 C6 1810 40 0.12 200 4SEP100M
150 6.3 6.0 1810 40 0.12 300 4SEP150M
220 8.0 7.0 E7 2560 35 0.12 440 4SEP220M
330 8.0 7.0 2560 35 0.12 660 4SEP330M
470 10.0 8.0 F8 3700 25 0.12 376 4SEP470M
560 8.0 12.0 E12 4520 13 0.15 448 4SEP560M
680 10.0 8.0 F8 3700 25 0.12 544 4SEP680M
1200 10.0 13.0 F13 5440 12 0.18 960 4SEP1200M
6.3
82 6.3 6.0 C6 1700 45 0.12 258 6SEP82M
150 8.0 7.0 E7 2560 35 0.12 472 6SEP150M
330 10.0 8.0 F8 3700 25 0.12 416 6SEP330M
470 8.0 12.0 E12 4210 15 0.15 592 6SEP470M
820 10.0 13.0 F13 5440 12 0.15 775 6SEP820M
10
56 6.3 6.0 C6 1700 45 0.12 280 10SEP56M
120 8.0 7.0 E7 2560 35 0.12 600 10SEP120M
270 10.0 8.0 F8 3700 25 0.12 540 10SEP270M
330 8.0 12.0 E12 3950 17 0.15 660 10SEP330M
560 10.0 13.0 F13 5230 13 0.15 840 10SEP560M
16
39 6.3 6.0 C6 1620 50 0.10 312 16SEP39M
82 8.0 7.0 E7 2120 40 0.12 656 16SEP82M
150 10.0 8.0 F8 3020 30 0.12 480 16SEP150M
180 8.0 12.0 E12 3640 20 0.15 576 16SEP180M
330 10.0 13.0 F13 4720 16 0.15 792 16SEP330M
20
22 6.3 6.0 C6 1450 60 0.10 220 20SEP22M
33 8.0 7.0 E7 1890 45 0.12 330 20SEP33M
47 8.0 7.0 1890 45 0.12 470 20SEP47M
56 10.0 8.0
F8
2400 40 0.12 224 20SEP56M
68 10.0 8.0 2400 40 0.12 272 20SEP68M
100 10.0 8.0 2570 35 0.12 400 20SEP100MX
8.0 12.0 E12 3320 24 0.15 400 20SEP100M
150 10.0 13.0 F13 4320 20 0.15 600 20SEP150M
Frequency correction factor for ripple current
Characteristics list
Nov. 201501
Pleasecontact Factory
CAUTION AND WARNING
TheinformationinthiscatalogisvalidasofJune2019.
1. The electronic components contained in this catalog are designed and produced for use in home electric appliances, office equipment,
information equipment,communications equipment, and other general purpose electronic devices.
Before use of any of these components for equipment that requires a high degree of safety, such as medical instruments, aerospace equipment,
disaster-prevention equipment, security equipment, vehicles (automobile, train, vessel),
please be sure to contact our sales representative corporation.
2. When applying one of these components for equipment requiring a high degree of safety, no matter what sort of application it might be, be sure to
install a protective circuit or redundancy arrangement to enhance the safety of your equipment. In addition, please carry out the safety test on your
own responsibility.
3. When using our products, no matter what sort of equipment they might be used for, be sure to make a written agreement on the specifications with
us in advance.
4. Technical information contained in this catalog is intended to convey examples of typical performances and or applications and is not
intended to make any warranty with respect to the intellectual property rights or any other related rights of our company or any third parties nor
grant any license under such rights.
5. In order to export products in this catalog, the exporter may be subject to the export license requirement under the Foreign Exchange and
Foreign Trade Law of Japan.
6. No ozone-depleting substances (ODSs) under the Montreal Protocol are used in the manufacturing processes of Automotive & Industrial Systems
Company, Panasonic Corporation.
Device Solutions Business Division
Industrial Solutions Company