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Notice for TAIYO YUDEN products 
Please read this notice before using the TAIYO YUDEN products.
REMINDERS
Product information in this catalog is as of October 2012. All of the contents specified herein are subject to change
without notice due to technical improvements, etc. Therefore, please check for the latest information carefully be-
fore practical application or usage of the Products.
Please note that Taiyo Yuden Co., Ltd. shall not be responsible for any defects in products or equipment incorpo-
rating such products, which are caused under the conditions other than those specified in this catalog or individual
specification.
Please contact Taiyo Yuden Co., Ltd. for further details of product specifications as the individual specification is
available.
Please conduct validation and verification of products in actual condition of mounting and operating environment
before commercial shipment of the equipment.
All electronic components or functional modules listed in this catalog are developed, designed and intended for
use in general electronics equipment.(for AV, office automation, household, office supply, information service,
telecommunications, (such as mobile phone or PC) etc.). Before incorporating the components or devices into any
equipment in the field such as transportation,( automotive control, train control, ship control), transportation signal,
disaster prevention, medical, public information network (telephone exchange, base station) etc. which may have
direct influence to harm or injure a human body, please contact Taiyo Yuden Co., Ltd. for more detail in advance.
Do not incorporate the products into any equipment in fields such as aerospace, aviation, nuclear control, subma-
rine system, military, etc. where higher safety and reliability are especially required.
In addition, even electronic components or functional modules that are used for the general electronic equipment,
if the equipment or the electric circuit require high safety or reliability function or performances, a sufficient reliabil-
ity evaluation check for safety shall be performed before commercial shipment and moreover, due consideration to
install a protective circuit is strongly recommended at customer's design stage.
The contents of this catalog are applicable to the products which are purchased from our sales offices or distribu-
tors (so called TAIYO YUDENs official sales channel).
It is only applicable to the products purchased from any of TAIYO YUDEN s ofcial sales channel.
Please note that Taiyo Yuden Co., Ltd. shall have no responsibility for any controversies or disputes that may oc-
cur in connection with a third party's intellectual property rights and other related rights arising from your usage of
products in this catalog. Taiyo Yuden Co., Ltd. grants no license for such rights.
Caution for export
Certain items in this catalog may require specific procedures for export according to Foreign Exchange and For-
eign Trade Control Law of Japan, U.S. Export Administration Regulations, and other applicable regulations.
Should you have any question or inquiry on this matter, please contact our sales staff.
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Thiscatalogcontainsthetypicalspecicationonlyduetothelimitationofspace.Whenyouconsiderthepurchaseofourproducts,pleasecheckourspecication.
Fordetailsofeachproduct(characteristicsgraph,reliabilityinformation,precautionsforuse,andsoon),seeourWebsite(http://www.ty-top.com/).
CERAMIC CAPACITORS
4
MULTILAYER CERAMIC CAPACIT�RS
PARTS NUMBER
J M K 3 1 6 B J 1 0 6 M L T △=Blank space
①Rated voltage
Code Rated voltage[VDC]
P 2.5
A 4
J 6.3
L 10
E 16
T 25
G 35
U 50
H 100
Q 250
S 630
②Series name
Code Series name
M Multilayer ceramic capacitor
V Multilayer ceramic capacitor for high frequency
W LW reverse type multilayer capacitor
③End termination
Code End termination
K Plated
R High Reliability Application
④Dimension(L×W)
Type Dimensions
(L×W)[mm] EIA(inch)
042 0.4×0.2 01005
063 0.6×0.3 0201
105 1.0×0.5 0402
0.52×1.0 0204
107 1.6×0.8 0603
0.8×1.6 0306
212 2.0×1.25 0805
1.25×2.0 0508
316 3.2×1.6 1206
325 3.2×2.5 1210
432 4.5×3.2 1812
Note : ※LW reverse type(□WK) only
⑤Dimension tolerance
Code Type L[mm] W[mm] T[mm]
ALL Standard Standard Standard
A
063 0.6±0.05 0.3±0.05 0.3±0.05
105 1.0±0.10 0.5±0.10 0.5±0.10
107 1.6+0.15/-0.05 0.8+0.15/-0.05 0.8+0.15/-0.05
212 2.0+0.15/-0.05 1.25+0.15/-0.05
0.45±0.05
0.85±0.10
1.25+0.15/-0.05
316 3.2±0.20 1.25±0.20 0.85±0.10
1.6±0.20
325 3.2±0.30 2.5±0.30 2.5±0.30
B
105 1.0+0.15/-0.05 0.5+0.15/-0.05 0.5+0.15/-0.05
107 1.6+0.20/-0 0.8+0.20/-0 0.45±0.05
0.8+0.20/-0
212 2.0+0.20/-0 1.25+0.20/-0 0.85±0.10
1.25+0.20/-0
316 3.2±0.30 1.6±0.30 1.6±0.30
C 105 1.0+0.20/-0 0.5+0.20/-0 0.5+0.20/-0
Note: P.6 Standard external dimensions = Blank space
⑥Temperature characteristics code
■High dielectric type(Excluding Super low distortion multilayer ceramic capacitor(CFCAPTM))
Code Applicable
standard
Temperature
range[℃] Ref. Temp.[℃] Capacitance change Capacitance
tolerance
Tolerance
code
BJ
JIS B -25~+ 85 20 ±10% ±10% K
±20% M
EIA X5R -55~+ 85 25 ±15% ±10% K
±20% M
B7 EIA X7R -55~+125 25 ±15% ±10% K
±20% M
C6 EIA X6S -55~+105 25 ±22% ±10% K
±20% M
C7 EIA X7S -55~+125 25 ±22% ±10% K
±20% M
LD(※) EIA X5R -55~+ 85 25 ±15% ±10% K
±20% M
△F JIS F -25~+ 85 20 +30/-80% +80/-20% Z
EIA Y5V -30~+ 85 25 +22-82% +80/-20% Z
Note : ※.LD Low distortion high value multilayer ceramic capacitor = Blank space
MULTILAYER CERAMIC CAPACITORS
REFLOWWAV E
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Thiscatalogcontainsthetypicalspecicationonlyduetothelimitationofspace.Whenyouconsiderthepurchaseofourproducts,pleasecheckourspecication.
Fordetailsofeachproduct(characteristicsgraph,reliabilityinformation,precautionsforuse,andsoon),seeourWebsite(http://www.ty-top.com/).
CERAMIC CAPACITORS
5
■Temperature compensating type
Code Applicable
standard
Temperature
range[℃] Ref. Temp.[℃] Capacitance change Capacitance
tolerance
Tolerance
code
CH
JIS CH
-55~+125
20
0±60ppm/℃
±0.1pF B
±0.25pF C
±0.5pF D
EIA C0H 25
1pF F
±5% J
±10% K
CJ JIS CJ -55~+125 20 0±120ppm/℃ ±0.25pF C
EIA C0J 25
CK JIS CK -55~+125 20 0±250ppm/℃ ±0.25pF C
EIA C0J 25
UJ
JIS UJ
-55~+125
20
-750±120ppm/℃
±0.25pF C
EIA U2J 25 ±0.5pF D
±5% J
UK JIS UK -55~+125 20 -750±250ppm/ ±0.5pF C
EIA U2K -55~+125 25
SL JIS S -55~+125 20 +350~-1000ppm/℃ ±5% J
⑥Series code
(Super low distortion multilayer ceramic capacitor(CFCAPTM)only)
Code Series code
SD Standard
⑦Nominal capacitance
Code
(example) Nominal capacitance
0R5 0.5pF
010 1pF
100 10pF
101 100p
102 1,000pF
103 10,000pF
104 0.1μF
105 1.0μF
106 10μF
107 100μF
Note : R=Decimal point
⑧Capacitance tolerance
Code Capacitance tolerance
B ±0.1pF
C ±0.25pF
D ±0.5pF
F ±1pF
J ±5%
K ±10%
M ±20%
Z +80/-20%
⑨Thickness
Code Thickness[mm]
C 0.2
D 0.2(Temperature compensating of 042type)
P 0.3
T
K 0.45
V 0.5
W
A 0.8
D 0.85(212type or more)
F 1.15
G 1.25
L 1.6
N 1.9
Y 2.0 max
M 2.5
⑩Special code
Code Special code
Standard
⑪Packaging
Code Packaging
F φ178mm Taping (2mm pitch)
T φ178mm Taping (4mm pitch)
P φ178mm Taping (4mm pitch, 1000 pcs/reel)
325 type(Thickness code M)
W φ178mm Taping(1mm pitch)042type only
⑫Internal code
Code Internal code
Standard
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Thiscatalogcontainsthetypicalspecicationonlyduetothelimitationofspace.Whenyouconsiderthepurchaseofourproducts,pleasecheckourspecication.
Fordetailsofeachproduct(characteristicsgraph,reliabilityinformation,precautionsforuse,andsoon),seeourWebsite(http://www.ty-top.com/).
CERAMIC CAPACITORS
6
STANDARD EXTERNAL DIMENSIONS
LW reverse type
Type( EIA ) Dimension [mm]
T *1 e
□MK042(01005) 0.4±0.02 0.2±0.02 0.2±0.02 C 0.1±0.03
D
□MK063(0201) 0.6±0.03 0.3±0.03 0.3±0.03 P 0.15±0.05
T
□MK105(0402) 1.0±0.05 0.5±0.05
0.2±0.02 C
0.25±0.10 0.3±0.03 P
0.5±0.05 V
□VK105(0402) 1.0±0.05 0.5±0.05 0.5±0.05 W 0.25±0.10
□WK105(0204)※ 0.52±0.05 1.0±0.05 0.3±0.05 P 0.18±0.08
□MK107(0603) 1.6±0.10 0.8±0.10 0.45±0.05 K 0.35±0.25
0.8±0.10 A
□MR107(0603) 1.6±0.10 0.8±0.10 0.8±0.10 0.1~0.6
□WK107(0306)※ 0.8±0.10 1.6±0.10 0.5±0.05 0.25±0.15
□MK212(0805) 2.0±0.10 1.25±0.10
0.45±0.05 K
0.5±0.25 0.85±0.10 D
1.25±0.10 G
□MR212(0805) 2.0±0.10 1.25±0.10 1.25±0.10 0.25~0.75
□WK212(0508)※ 1.25±0.15 2.0±0.15 0.85±0.1 0.3±0.2
□MK316(1206) 3.2±0.15 1.6±0.15
0.85±0.10 D
0.5+0.35/-0.25
1.15±0.10
1.25±0.10 G
1.6±0.20 L
□MR316(1206) 3.2±0.15 1.6±0.15 1.6±0.20 0.25~0.85
□MK325(1210) 3.2±0.30 2.5±0.20
0.85±0.10 D
0.6±0.3
1.15±0.10 F
1.9±0.20 N
1.9+0.1/-0.2 Y
2.5±0.20 M
□MR325(1210) 3.2±0.30 2.5±0.20 1.9±0.20 N 0.3~0.9
2.5±0.20 M
□MK432(1812) 4.5±0.40 3.2±0.30 2.5±0.20 M 0.9±0.6
Note : ※. LW reverse type, *1.Thickness code
STANDARD QUANTITY
Type EIA(inch) Dimension Standard quantity[pcs]
[mm] Code Paper tape Embossed tape
042 01005 0.2 C 40000
D
063 0201 0.3 P 15000
T
105 0402
0.2 C 20000
0.3 P 15000
0.5 V
10000
W
0204 0.30 P
107 0603 0.45 K 4000
0.8 A
0306 0.50 V 4000
212 0805
0.45 K 4000
0.85 D
1.25 G 3000
0508 0.85 D 4000
316 1206
0.85 D 4000
1.15 F 3000
1.25 G
1.6 L 2000
325 1210
0.85 D
2000
1.15 F
1.9 N
2.0 max Y
2.5 M 500(T),1000(P)
432 1812 2.5 M 500
Note : ※.LW Reverse type(□WK)
e
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Thiscatalogcontainsthetypicalspecicationonlyduetothelimitationofspace.Whenyouconsiderthepurchaseofourproducts,pleasecheckourspecication.
Fordetailsofeachproduct(characteristicsgraph,reliabilityinformation,precautionsforuse,andsoon),seeourWebsite(http://www.ty-top.com/).
CERAMIC CAPACITORS
14
PARTS NUMBER
【Temperature Characteristic BJ : B/X5R】 0.85mm thickness(D)
HALT
Rated voltage x
TMK325 BJ106[]D-T 25 B X5R 10 μ ±10,±20 5 150 0.85±0.10 R
EMK325 BJ106[]D-T B X5R 10 μ ±10,±20 5 150 0.85±0.10 R
EMK325 BJ226MD-T B X5R 22 μ ±20 10 150 0.85±0.10 R
LMK325 BJ335[]D-T B X5R 3.3 μ ±10,±20 3.5 200 0.85±0.10 R
LMK325 BJ475[]D-T B X5R 4.7 μ ±10,±20 5 200 0.85±0.10 R
LMK325 BJ106[]D-T B X5R 10 μ ±10,±20 5 150 0.85±0.10 R
【Temperature Characteristic C6 : X6S】 2.5mm thickness(M
HALT
Rated voltage x
JMK325AC6107MM-T 6.3 X6S 100 μ ±20 10 150 2.5±0.30 R
【Temperature Characteristic B7 : X7R】 2.5mm thickness(M)
HALT
Rated voltage x
UMK325 B7475[]M-T X7R 4.7 μ ±10,±20 5 150 2.5±0.20 R
UMK325AB7106[]M-T X7R 10 μ ±10,±20 10 150 2.5±0.30 R
TMK325AB7106MM-T X7R 10 μ ±20 10 150 2.5±0.30 R
TMK325 B7226[]M-TR X7R 22 μ ±10,±20 10 150 2.5±0.20 R
EMK325 B7226[]M-TR 16 X7R 22 μ ±10,±20 10 150 2.5±0.20 R
LMK325 B7476[]M-TR 10 X7R 47 μ ±10,±20 10 150 2.5±0.20 R
JMK325 B7476[]M-TR 6.3 X7R 47 μ ±10,±20 10 200 2.5±0.20 R
【Temperature Characteristic B7 : X7R】 1.9mm thickness(N)
HALT
Rated voltage x
UMK325 B7475[]N-TR 50 X7R 4.7 μ ±10,±20 10 150 1.9±0.20 R
TMK325 B7335[]N-T X7R 3.3 μ ±10,±20 3.5 200 1.9±0.20 R
TMK325 B7475[]N-T X7R 4.7 μ ±10,±20 3.5 150 1.9±0.20 R
TMK325 B7106[]N-TR X7R 10 μ ±10,±20 10 150 1.9±0.20 R
EMK325 B7475[]N-T X7R 4.7 μ ±10,±20 3.5 200 1.9±0.20 R
EMK325 B7106[]N-T X7R 10 μ ±10,±20 3.5 150 1.9±0.20 R
LMK325 B7106[]N-T 10 X7R 10 μ ±10,±20 3.5 200 1.9±0.20 R
【Temperature Characteristic F : F/Y5V】 1.9mm thickness(N)
HALT
Rated voltage x
EMK325 F226ZN-T 16 F Y5V 22 μ +80/-20 16 200 1.9±0.20 R
LMK325 F226ZN-T 10 F Y5V 22 μ +80/-20 16 200 1.9±0.20 R
JMK325 F476ZN-T 6.3 F Y5V 47 μ +80/-20 16 200 1.9±0.20 R
Multila�er Ceramic Capacitors(Temperature compensating t�pe
042TYPE
【Temperature Characteristic C△ : C△/C0△】 0.2mm thickness(C,D)
HALT
Rated voltage x
EMK042 CK0R4CD-W CK C0K 0.4 p ±0.25pF 408 200 0.2±0.02 R
EMK042 CK0R5CD-W CK C0K 0.5 p ±0.25pF 410 200 0.2±0.02 R
EMK042 CK0R6CD-W CK C0K 0.6 p ±0.25pF 412 200 0.2±0.02 R
EMK042 CK0R7CD-W CK C0K 0.7 p ±0.25pF 414 200 0.2±0.02 R
EMK042 CKR75CD-W CK C0K 0.75 p ±0.25pF 415 200 0.2±0.02 R
EMK042 CK0R8CD-W CK C0K 0.8 p ±0.25pF 416 200 0.2±0.02 R
EMK042 CK0R9CD-W CK C0K 0.9 p ±0.25pF 418 200 0.2±0.02 R
EMK042 CK010CD-W CK C0K 1 p ±0.25pF 420 200 0.2±0.02 R
EMK042 CK1R1CD-W CK C0K 1.1 p ±0.25pF 422 200 0.2±0.02 R
EMK042 CK1R2CD-W CK C0K 1.2 p ±0.25pF 424 200 0.2±0.02 R
EMK042 CK1R3CD-W CK C0K 1.3 p ±0.25pF 426 200 0.2±0.02 R
EMK042 CK1R4CD-W CK C0K 1.4 p ±0.25pF 428 200 0.2±0.02 R
EMK042 CK1R5CD-W CK C0K 1.5 p ±0.25pF 430 200 0.2±0.02 R
EMK042 CK1R6CD-W CK C0K 1.6 p ±0.25pF 432 200 0.2±0.02 R
EMK042 CK1R7CD-W CK C0K 1.7 p ±0.25pF 434 200 0.2±0.02 R
EMK042 CK1R8CD-W CK C0K 1.8 p ±0.25pF 436 200 0.2±0.02 R
EMK042 CK1R9CD-W CK C0K 1.9 p ±0.25pF 438 200 0.2±0.02 R
EMK042 CK020CD-W CK C0K 2 p ±0.25pF 440 200 0.2±0.02 R
EMK042 CK2R1CD-W CK C0K 2.1 p ±0.25pF 442 200 0.2±0.02 R
EMK042 CK2R2CD-W CK C0K 2.2 p ±0.25pF 444 200 0.2±0.02 R
EMK042 CK2R3CD-W CK C0K 2.3 p ±0.25pF 446 200 0.2±0.02 R
EMK042 CK2R4CD-W CK C0K 2.4 p ±0.25pF 448 200 0.2±0.02 R
EMK042 CK2R5CD-W CK C0K 2.5 p ±0.25pF 450 200 0.2±0.02 R
EMK042 CK2R6CD-W CK C0K 2.6 p ±0.25pF 452 200 0.2±0.02 R
EMK042 CK2R7CD-W CK C0K 2.7 p ±0.25pF 454 200 0.2±0.02 R
EMK042 CK2R8CD-W CK C0K 2.8 p ±0.25pF 456 200 0.2±0.02 R
EMK042 CK2R9CD-W CK C0K 2.9 p ±0.25pF 458 200 0.2±0.02 R
EMK042 CJ030CD-W CJ C0J 3 p ±0.25pF 460 200 0.2±0.02 R
EMK042 CJ3R1CD-W CJ C0J 3.1 p ±0.25pF 462 200 0.2±0.02 R
EMK042 CJ3R2CD-W CJ C0J 3.2 p ±0.25pF 464 200 0.2±0.02 R
EMK042 CJ3R3CD-W CJ C0J 3.3 p ±0.25pF 466 200 0.2±0.02 R
EMK042 CJ3R4CD-W CJ C0J 3.4 p ±0.25pF 468 200 0.2±0.02 R
EMK042 CJ3R5CD-W CJ C0J 3.5 p ±0.25pF 470 200 0.2±0.02 R
EMK042 CJ3R6CD-W CJ C0J 3.6 p ±0.25pF 472 200 0.2±0.02 R
EMK042 CJ3R7CD-W CJ C0J 3.7 p ±0.25pF 474 200 0.2±0.02 R
EMK042 CJ3R8CD-W CJ C0J 3.8 p ±0.25pF 476 200 0.2±0.02 R
EMK042 CJ3R9CD-W CJ C0J 3.9 p ±0.25pF 478 200 0.2±0.02 R
Rated voltage [V]
Rated voltage [V]
Rated voltage [V]
Thickness
*3
[mm]
Thickness
*3
[mm]
Thickness
*3
[mm]
Capacitance
[F]
Part number 1 Part number 2 Rated voltage [V]
Temperature
characteristics
Part number 1 Part number 2
Part number 1 Part number 2 Capacitance
[F]
Capacitance
tolerance [%]
Temperature
characteristics
Soldering
R:Reflow
W:Wave
Temperature
characteristics
Capacitance
[F]
Capacitance
tolerance [%]
Capacitance
tolerance [%]
tanδ
[%]
Soldering
R:Reflow
W:Wave
tanδ
[%]
Soldering
R:Reflow
W:Wave
Soldering
R:Reflow
W:Wave
Thickness
*3
[mm]
Thickness
*3
[mm]
tanδ
[%]
Part number 1 Part number 2 Temperature
characteristics
Capacitance
[F]
Temperature
characteristics
Capacitance
[F]
Capacitance
[F]
Capacitance
tolerance [%]
tanδ
[%]
Soldering
R:Reflow
W:Wave
Soldering
R:Reflow
W:Wave
Thickness
*3
[mm]
Part number 1 Part number 2
Temperature
characteristics
tanδ
[%]
Part number 1 Part number 2
Q
Capacitance
tolerance [%]
Rated voltage [V]
Capacitance
tolerance [%]
16
10
50
Rated voltage [V]
16
16
25
25
1
3
Thiscatalogcontainsthetypicalspecicationonlyduetothelimitationofspace.Whenyouconsiderthepurchaseofourproducts,pleasecheckourspecication.
Fordetailsofeachproduct(characteristicsgraph,reliabilityinformation,precautionsforuse,andsoon),seeourWebsite(http://www.ty-top.com/).
CERAMIC CAPACITORS
15
PARTS NUMBER
HALT
Rated voltage x
EMK042 CH040CD-W CH C0H 4 p ±0.25pF 480 200 0.2±0.02 R
EMK042 CH4R1CD-W CH C0H 4.1 p ±0.25pF 482 200 0.2±0.02 R
EMK042 CH4R2CD-W CH C0H 4.2 p ±0.25pF 484 200 0.2±0.02 R
EMK042 CH4R3CD-W CH C0H 4.3 p ±0.25pF 486 200 0.2±0.02 R
EMK042 CH4R4CD-W CH C0H 4.4 p ±0.25pF 488 200 0.2±0.02 R
EMK042 CH4R5CD-W CH C0H 4.5 p ±0.25pF 490 200 0.2±0.02 R
EMK042 CH4R6CD-W CH C0H 4.6 p ±0.25pF 492 200 0.2±0.02 R
EMK042 CH4R7CD-W CH C0H 4.7 p ±0.25pF 494 200 0.2±0.02 R
EMK042 CH4R8CD-W CH C0H 4.8 p ±0.25pF 496 200 0.2±0.02 R
EMK042 CH4R9CD-W CH C0H 4.9 p ±0.25pF 498 200 0.2±0.02 R
EMK042 CH050CD-W CH C0H 5 p ±0.25pF 500 200 0.2±0.02 R
EMK042 CH5R1DD-W CH C0H 5.1 p ±0.5pF 502 200 0.2±0.02 R
EMK042 CH5R2DD-W CH C0H 5.2 p ±0.5pF 504 200 0.2±0.02 R
EMK042 CH5R3DD-W CH C0H 5.3 p ±0.5pF 506 200 0.2±0.02 R
EMK042 CH5R4DD-W CH C0H 5.4 p ±0.5pF 508 200 0.2±0.02 R
EMK042 CH5R5DD-W CH C0H 5.5 p ±0.5pF 510 200 0.2±0.02 R
EMK042 CH5R6DD-W CH C0H 5.6 p ±0.5pF 512 200 0.2±0.02 R
EMK042 CH5R7DD-W CH C0H 5.7 p ±0.5pF 514 200 0.2±0.02 R
EMK042 CH5R8DD-W CH C0H 5.8 p ±0.5pF 516 200 0.2±0.02 R
EMK042 CH5R9DD-W CH C0H 5.9 p ±0.5pF 518 200 0.2±0.02 R
EMK042 CH060DD-W CH C0H 6 p ±0.5pF 520 200 0.2±0.02 R
EMK042 CH6R1DD-W CH C0H 6.1 p ±0.5pF 522 200 0.2±0.02 R
EMK042 CH6R2DD-W CH C0H 6.2 p ±0.5pF 524 200 0.2±0.02 R
EMK042 CH6R3DD-W CH C0H 6.3 p ±0.5pF 526 200 0.2±0.02 R
EMK042 CH6R4DD-W CH C0H 6.4 p ±0.5pF 528 200 0.2±0.02 R
EMK042 CH6R5DD-W CH C0H 6.5 p ±0.5pF 530 200 0.2±0.02 R
EMK042 CH6R6DD-W CH C0H 6.6 p ±0.5pF 532 200 0.2±0.02 R
EMK042 CH6R7DD-W CH C0H 6.7 p ±0.5pF 534 200 0.2±0.02 R
EMK042 CH6R8DD-W CH C0H 6.8 p ±0.5pF 536 200 0.2±0.02 R
EMK042 CH6R9DD-W CH C0H 6.9 p ±0.5pF 538 200 0.2±0.02 R
EMK042 CH070DD-W CH C0H 7 p ±0.5pF 540 200 0.2±0.02 R
EMK042 CH7R1DD-W CH C0H 7.1 p ±0.5pF 542 200 0.2±0.02 R
EMK042 CH7R2DD-W CH C0H 7.2 p ±0.5pF 544 200 0.2±0.02 R
EMK042 CH7R3DD-W CH C0H 7.3 p ±0.5pF 546 200 0.2±0.02 R
EMK042 CH7R4DD-W CH C0H 7.4 p ±0.5pF 548 200 0.2±0.02 R
EMK042 CH7R5DD-W CH C0H 7.5 p ±0.5pF 550 200 0.2±0.02 R
EMK042 CH7R6DD-W CH C0H 7.6 p ±0.5pF 552 200 0.2±0.02 R
EMK042 CH7R7DD-W CH C0H 7.7 p ±0.5pF 554 200 0.2±0.02 R
EMK042 CH7R8DD-W CH C0H 7.8 p ±0.5pF 556 200 0.2±0.02 R
EMK042 CH7R9DD-W CH C0H 7.9 p ±0.5pF 558 200 0.2±0.02 R
EMK042 CH080DD-W CH C0H 8 p ±0.5pF 560 200 0.2±0.02 R
EMK042 CH8R1DD-W CH C0H 8.1 p ±0.5pF 562 200 0.2±0.02 R
EMK042 CH8R2DD-W CH C0H 8.2 p ±0.5pF 564 200 0.2±0.02 R
EMK042 CH8R3DD-W CH C0H 8.3 p ±0.5pF 566 200 0.2±0.02 R
EMK042 CH8R4DD-W CH C0H 8.4 p ±0.5pF 568 200 0.2±0.02 R
EMK042 CH8R5DD-W CH C0H 8.5 p ±0.5pF 570 200 0.2±0.02 R
EMK042 CH8R6DD-W CH C0H 8.6 p ±0.5pF 572 200 0.2±0.02 R
EMK042 CH8R7DD-W CH C0H 8.7 p ±0.5pF 574 200 0.2±0.02 R
EMK042 CH8R8DD-W CH C0H 8.8 p ±0.5pF 576 200 0.2±0.02 R
EMK042 CH8R9DD-W CH C0H 8.9 p ±0.5pF 578 200 0.2±0.02 R
EMK042 CH090DD-W CH C0H 9 p ±0.5pF 580 200 0.2±0.02 R
EMK042 CH9R1DD-W CH C0H 9.1 p ±0.5pF 582 200 0.2±0.02 R
EMK042 CH9R2DD-W CH C0H 9.2 p ±0.5pF 584 200 0.2±0.02 R
EMK042 CH9R3DD-W CH C0H 9.3 p ±0.5pF 586 200 0.2±0.02 R
EMK042 CH9R4DD-W CH C0H 9.4 p ±0.5pF 588 200 0.2±0.02 R
EMK042 CH9R5DD-W CH C0H 9.5 p ±0.5pF 590 200 0.2±0.02 R
EMK042 CH9R6DD-W CH C0H 9.6 p ±0.5pF 592 200 0.2±0.02 R
EMK042 CH9R7DD-W CH C0H 9.7 p ±0.5pF 594 200 0.2±0.02 R
EMK042 CH9R8DD-W CH C0H 9.8 p ±0.5pF 596 200 0.2±0.02 R
EMK042 CH9R9DD-W CH C0H 9.9 p ±0.5pF 598 200 0.2±0.02 R
EMK042 CH100DD-W CH C0H 10 p ±0.5pF 600 200 0.2±0.02 R
EMK042 CH110JD-W CH C0H 11 p ±5% 620 200 0.2±0.02 R
EMK042 CH120JD-W CH C0H 12 p ±5% 640 200 0.2±0.02 R
EMK042 CH130JD-W CH C0H 13 p ±5% 660 200 0.2±0.02 R
EMK042 CH150JD-W CH C0H 15 p ±5% 700 200 0.2±0.02 R
EMK042 CH160JC-W CH C0H 16 p ±5% 720 200 0.2±0.02 R
EMK042 CH180JC-W CH C0H 18 p ±5% 760 200 0.2±0.02 R
EMK042 CH200JC-W CH C0H 20 p ±5% 800 200 0.2±0.02 R
EMK042 CH220JC-W CH C0H 22 p ±5% 840 200 0.2±0.02 R
EMK042 CH240JC-W CH C0H 24 p ±5% 880 200 0.2±0.02 R
EMK042 CH270JC-W CH C0H 27 p ±5% 940 200 0.2±0.02 R
EMK042 CH300JC-W CH C0H 30 p ±5% 1000 200 0.2±0.02 R
EMK042 CH330JC-W CH C0H 33 p ±5% 1000 200 0.2±0.02 R
EMK042 CH360JC-W CH C0H 36 p ±5% 1000 200 0.2±0.02 R
EMK042 CH390JC-W CH C0H 39 p ±5% 1000 200 0.2±0.02 R
EMK042 CH430JC-W CH C0H 43 p ±5% 1000 200 0.2±0.02 R
EMK042 CH470JC-W CH C0H 47 p ±5% 1000 200 0.2±0.02 R
EMK042 CH510JC-W CH C0H 51 p ±5% 1000 200 0.2±0.02 R
EMK042 CH560JC-W CH C0H 56 p ±5% 1000 200 0.2±0.02 R
EMK042 CH620JC-W CH C0H 62 p ±5% 1000 200 0.2±0.02 R
EMK042 CH680JC-W CH C0H 68 p ±5% 1000 200 0.2±0.02 R
EMK042 CH750JC-W CH C0H 75 p ±5% 1000 200 0.2±0.02 R
EMK042 CH820JC-W CH C0H 82 p ±5% 1000 200 0.2±0.02 R
EMK042 CH910JC-W CH C0H 91 p ±5% 1000 200 0.2±0.02 R
EMK042 CH101JC-W CH C0H 100 p ±5% 1000 200 0.2±0.02 R
Capacitance
[F]
Capacitance
tolerance [%] Q
Soldering
R:Reflow
W:Wave
Part number 1 Part number 2 Rated voltage [V] Temperature
characteristics
Thickness
*3
[mm]
16
1
3
Thiscatalogcontainsthetypicalspecicationonlyduetothelimitationofspace.Whenyouconsiderthepurchaseofourproducts,pleasecheckourspecication.
Fordetailsofeachproduct(characteristicsgraph,reliabilityinformation,precautionsforuse,andsoon),seeourWebsite(http://www.ty-top.com/).
CERAMIC CAPACITORS
16
PARTS NUMBER
063TYPE
【Temperature Characteristic C△ : C△/C0△】 0.3mm thickness(T)
HALT
Rated voltage x
UMK063 CK0R2CT-F CK C0K 0.2 p ±0.25pF 404 200 0.3±0.03 R
UMK063 CK0R3CT-F CK C0K 0.3 p ±0.25pF 406 200 0.3±0.03 R
UMK063 CK0R4CT-F CK C0K 0.4 p ±0.25pF 408 200 0.3±0.03 R
UMK063 CK0R5CT-F CK C0K 0.5 p ±0.25pF 410 200 0.3±0.03 R
UMK063 CK0R6CT-F CK C0K 0.6 p ±0.25pF 412 200 0.3±0.03 R
UMK063 CK0R7CT-F CK C0K 0.7 p ±0.25pF 414 200 0.3±0.03 R
UMK063 CKR75CT-F CK C0K 0.75 p ±0.25pF 415 200 0.3±0.03 R
UMK063 CK0R8CT-F CK C0K 0.8 p ±0.25pF 416 200 0.3±0.03 R
UMK063 CK0R9CT-F CK C0K 0.9 p ±0.25pF 418 200 0.3±0.03 R
UMK063 CK010CT-F CK C0K 1 p ±0.25pF 420 200 0.3±0.03 R
UMK063 CK1R1CT-F CK C0K 1.1 p ±0.25pF 422 200 0.3±0.03 R
UMK063 CK1R2CT-F CK C0K 1.2 p ±0.25pF 424 200 0.3±0.03 R
UMK063 CK1R3CT-F CK C0K 1.3 p ±0.25pF 426 200 0.3±0.03 R
UMK063 CK1R4CT-F CK C0K 1.4 p ±0.25pF 428 200 0.3±0.03 R
UMK063 CK1R5CT-F CK C0K 1.5 p ±0.25pF 430 200 0.3±0.03 R
UMK063 CK1R6CT-F CK C0K 1.6 p ±0.25pF 432 200 0.3±0.03 R
UMK063 CK1R7CT-F CK C0K 1.7 p ±0.25pF 434 200 0.3±0.03 R
UMK063 CK1R8CT-F CK C0K 1.8 p ±0.25pF 436 200 0.3±0.03 R
UMK063 CK1R9CT-F CK C0K 1.9 p ±0.25pF 438 200 0.3±0.03 R
UMK063 CK020CT-F CK C0K 2 p ±0.25pF 440 200 0.3±0.03 R
UMK063 CK2R1CT-F CK C0K 2.1 p ±0.25pF 442 200 0.3±0.03 R
UMK063 CK2R2CT-F CK C0K 2.2 p ±0.25pF 444 200 0.3±0.03 R
UMK063 CK2R3CT-F CK C0K 2.3 p ±0.25pF 446 200 0.3±0.03 R
UMK063 CK2R4CT-F CK C0K 2.4 p ±0.25pF 448 200 0.3±0.03 R
UMK063 CK2R5CT-F CK C0K 2.5 p ±0.25pF 450 200 0.3±0.03 R
UMK063 CK2R6CT-F CK C0K 2.6 p ±0.25pF 452 200 0.3±0.03 R
UMK063 CK2R7CT-F CK C0K 2.7 p ±0.25pF 454 200 0.3±0.03 R
UMK063 CK2R8CT-F CK C0K 2.8 p ±0.25pF 456 200 0.3±0.03 R
UMK063 CK2R9CT-F CK C0K 2.9 p ±0.25pF 458 200 0.3±0.03 R
UMK063 CJ030CT-F CJ C0J 3 p ±0.25pF 460 200 0.3±0.03 R
UMK063 CJ3R1CT-F CJ C0J 3.1 p ±0.25pF 462 200 0.3±0.03 R
UMK063 CJ3R2CT-F CJ C0J 3.2 p ±0.25pF 464 200 0.3±0.03 R
UMK063 CJ3R3CT-F CJ C0J 3.3 p ±0.25pF 466 200 0.3±0.03 R
UMK063 CJ3R4CT-F CJ C0J 3.4 p ±0.25pF 468 200 0.3±0.03 R
UMK063 CJ3R5CT-F CJ C0J 3.5 p ±0.25pF 470 200 0.3±0.03 R
UMK063 CJ3R6CT-F CJ C0J 3.6 p ±0.25pF 472 200 0.3±0.03 R
UMK063 CJ3R7CT-F CJ C0J 3.7 p ±0.25pF 474 200 0.3±0.03 R
UMK063 CJ3R8CT-F CJ C0J 3.8 p ±0.25pF 476 200 0.3±0.03 R
UMK063 CJ3R9CT-F CJ C0J 3.9 p ±0.25pF 478 200 0.3±0.03 R
UMK063 CH040CT-F CH C0H 4 p ±0.25pF 480 200 0.3±0.03 R
UMK063 CH4R1CT-F CH C0H 4.1 p ±0.25pF 482 200 0.3±0.03 R
UMK063 CH4R2CT-F CH C0H 4.2 p ±0.25pF 484 200 0.3±0.03 R
UMK063 CH4R3CT-F CH C0H 4.3 p ±0.25pF 486 200 0.3±0.03 R
UMK063 CH4R4CT-F CH C0H 4.4 p ±0.25pF 488 200 0.3±0.03 R
UMK063 CH4R5CT-F CH C0H 4.5 p ±0.25pF 490 200 0.3±0.03 R
UMK063 CH4R6CT-F CH C0H 4.6 p ±0.25pF 492 200 0.3±0.03 R
UMK063 CH4R7CT-F CH C0H 4.7 p ±0.25pF 494 200 0.3±0.03 R
UMK063 CH4R8CT-F CH C0H 4.8 p ±0.25pF 496 200 0.3±0.03 R
UMK063 CH4R9CT-F CH C0H 4.9 p ±0.25pF 498 200 0.3±0.03 R
UMK063 CH050CT-F CH C0H 5 p ±0.25pF 500 200 0.3±0.03 R
UMK063 CH5R1DT-F CH C0H 5.1 p ±0.5pF 502 200 0.3±0.03 R
UMK063 CH5R2DT-F CH C0H 5.2 p ±0.5pF 504 200 0.3±0.03 R
UMK063 CH5R3DT-F CH C0H 5.3 p ±0.5pF 506 200 0.3±0.03 R
UMK063 CH5R4DT-F CH C0H 5.4 p ±0.5pF 508 200 0.3±0.03 R
UMK063 CH5R5DT-F CH C0H 5.5 p ±0.5pF 510 200 0.3±0.03 R
UMK063 CH5R6DT-F CH C0H 5.6 p ±0.5pF 512 200 0.3±0.03 R
UMK063 CH5R7DT-F CH C0H 5.7 p ±0.5pF 514 200 0.3±0.03 R
UMK063 CH5R8DT-F CH C0H 5.8 p ±0.5pF 516 200 0.3±0.03 R
UMK063 CH5R9DT-F CH C0H 5.9 p ±0.5pF 518 200 0.3±0.03 R
UMK063 CH060DT-F CH C0H 6 p ±0.5pF 520 200 0.3±0.03 R
UMK063 CH6R1DT-F CH C0H 6.1 p ±0.5pF 522 200 0.3±0.03 R
UMK063 CH6R2DT-F CH C0H 6.2 p ±0.5pF 524 200 0.3±0.03 R
UMK063 CH6R3DT-F CH C0H 6.3 p ±0.5pF 526 200 0.3±0.03 R
UMK063 CH6R4DT-F CH C0H 6.4 p ±0.5pF 528 200 0.3±0.03 R
UMK063 CH6R5DT-F CH C0H 6.5 p ±0.5pF 530 200 0.3±0.03 R
UMK063 CH6R6DT-F CH C0H 6.6 p ±0.5pF 532 200 0.3±0.03 R
UMK063 CH6R7DT-F CH C0H 6.7 p ±0.5pF 534 200 0.3±0.03 R
UMK063 CH6R8DT-F CH C0H 6.8 p ±0.5pF 536 200 0.3±0.03 R
UMK063 CH6R9DT-F CH C0H 6.9 p ±0.5pF 538 200 0.3±0.03 R
UMK063 CH070DT-F CH C0H 7 p ±0.5pF 540 200 0.3±0.03 R
UMK063 CH7R1DT-F CH C0H 7.1 p ±0.5pF 542 200 0.3±0.03 R
UMK063 CH7R2DT-F CH C0H 7.2 p ±0.5pF 544 200 0.3±0.03 R
UMK063 CH7R3DT-F CH C0H 7.3 p ±0.5pF 546 200 0.3±0.03 R
UMK063 CH7R4DT-F CH C0H 7.4 p ±0.5pF 548 200 0.3±0.03 R
UMK063 CH7R5DT-F CH C0H 7.5 p ±0.5pF 550 200 0.3±0.03 R
UMK063 CH7R6DT-F CH C0H 7.6 p ±0.5pF 552 200 0.3±0.03 R
UMK063 CH7R7DT-F CH C0H 7.7 p ±0.5pF 554 200 0.3±0.03 R
UMK063 CH7R8DT-F CH C0H 7.8 p ±0.5pF 556 200 0.3±0.03 R
UMK063 CH7R9DT-F CH C0H 7.9 p ±0.5pF 558 200 0.3±0.03 R
UMK063 CH080DT-F CH C0H 8 p ±0.5pF 560 200 0.3±0.03 R
UMK063 CH8R1DT-F CH C0H 8.1 p ±0.5pF 562 200 0.3±0.03 R
UMK063 CH8R2DT-F CH C0H 8.2 p ±0.5pF 564 200 0.3±0.03 R
UMK063 CH8R3DT-F CH C0H 8.3 p ±0.5pF 566 200 0.3±0.03 R
UMK063 CH8R4DT-F CH C0H 8.4 p ±0.5pF 568 200 0.3±0.03 R
UMK063 CH8R5DT-F CH C0H 8.5 p ±0.5pF 570 200 0.3±0.03 R
UMK063 CH8R6DT-F CH C0H 8.6 p ±0.5pF 572 200 0.3±0.03 R
Capacitance
[F]
Thickness
*3
[mm]
Temperature
characteristics
Part number 1 Part number 2
Soldering
R:Reflow
W:Wave
QRated voltage [V]
50
Capacitance
tolerance [%]
1
3
Thiscatalogcontainsthetypicalspecicationonlyduetothelimitationofspace.Whenyouconsiderthepurchaseofourproducts,pleasecheckourspecication.
Fordetailsofeachproduct(characteristicsgraph,reliabilityinformation,precautionsforuse,andsoon),seeourWebsite(http://www.ty-top.com/).
CERAMIC CAPACITORS
17
PARTS NUMBER
HALT
Rated voltage x
UMK063 CH8R7DT-F CH C0H 8.7 p ±0.5pF 574 200 0.3±0.03 R
UMK063 CH8R8DT-F CH C0H 8.8 p ±0.5pF 576 200 0.3±0.03 R
UMK063 CH8R9DT-F CH C0H 8.9 p ±0.5pF 578 200 0.3±0.03 R
UMK063 CH090DT-F CH C0H 9 p ±0.5pF 580 200 0.3±0.03 R
UMK063 CH9R1DT-F CH C0H 9.1 p ±0.5pF 582 200 0.3±0.03 R
UMK063 CH9R2DT-F CH C0H 9.2 p ±0.5pF 584 200 0.3±0.03 R
UMK063 CH9R3DT-F CH C0H 9.3 p ±0.5pF 586 200 0.3±0.03 R
UMK063 CH9R4DT-F CH C0H 9.4 p ±0.5pF 588 200 0.3±0.03 R
UMK063 CH9R5DT-F CH C0H 9.5 p ±0.5pF 590 200 0.3±0.03 R
UMK063 CH9R6DT-F CH C0H 9.6 p ±0.5pF 592 200 0.3±0.03 R
UMK063 CH9R7DT-F CH C0H 9.7 p ±0.5pF 594 200 0.3±0.03 R
UMK063 CH9R8DT-F CH C0H 9.8 p ±0.5pF 596 200 0.3±0.03 R
UMK063 CH9R9DT-F CH C0H 9.9 p ±0.5pF 598 200 0.3±0.03 R
UMK063 CH100DT-F CH C0H 10 p ±0.5pF 600 200 0.3±0.03 R
UMK063 CH110JT-F CH C0H 11 p ±5% 620 200 0.3±0.03 R
UMK063 CH120JT-F CH C0H 12 p ±5% 640 200 0.3±0.03 R
UMK063 CH130JT-F CH C0H 13 p ±5% 660 200 0.3±0.03 R
UMK063 CH150JT-F CH C0H 15 p ±5% 700 200 0.3±0.03 R
UMK063 CH160JT-F CH C0H 16 p ±5% 720 200 0.3±0.03 R
UMK063 CH180JT-F CH C0H 18 p ±5% 760 200 0.3±0.03 R
UMK063 CH200JT-F CH C0H 20 p ±5% 800 200 0.3±0.03 R
UMK063 CH220JT-F CH C0H 22 p ±5% 840 200 0.3±0.03 R
UMK063 CH240JT-F CH C0H 24 p ±5% 880 200 0.3±0.03 R
UMK063 CH270JT-F CH C0H 27 p ±5% 940 200 0.3±0.03 R
UMK063 CH300JT-F CH C0H 30 p ±5% 1000 200 0.3±0.03 R
UMK063 CH330JT-F CH C0H 33 p ±5% 1000 200 0.3±0.03 R
UMK063 CH360JT-F CH C0H 36 p ±5% 1000 200 0.3±0.03 R
UMK063 CH390JT-F CH C0H 39 p ±5% 1000 200 0.3±0.03 R
UMK063 CH430JT-F CH C0H 43 p ±5% 1000 200 0.3±0.03 R
UMK063 CH470JT-F CH C0H 47 p ±5% 1000 200 0.3±0.03 R
UMK063 CH510JT-F CH C0H 51 p ±5% 1000 200 0.3±0.03 R
UMK063 CH560JT-F CH C0H 56 p ±5% 1000 200 0.3±0.03 R
UMK063 CH620JT-F CH C0H 62 p ±5% 1000 200 0.3±0.03 R
UMK063 CH680JT-F CH C0H 68 p ±5% 1000 200 0.3±0.03 R
UMK063 CH750JT-F CH C0H 75 p ±5% 1000 200 0.3±0.03 R
UMK063 CH820JT-F CH C0H 82 p ±5% 1000 200 0.3±0.03 R
UMK063 CH910JT-F CH C0H 91 p ±5% 1000 200 0.3±0.03 R
UMK063 CH101JT-F CH C0H 100 p ±5% 1000 200 0.3±0.03 R
TMK063 CH111JT-F CH C0H 110 p ±5% 1000 200 0.3±0.03 R
TMK063 CH121JT-F CH C0H 120 p ±5% 1000 200 0.3±0.03 R
TMK063 CH131JT-F CH C0H 130 p ±5% 1000 200 0.3±0.03 R
TMK063 CH151JT-F CH C0H 150 p ±5% 1000 200 0.3±0.03 R
TMK063 CH181JT-F CH C0H 180 p ±5% 1000 200 0.3±0.03 R
TMK063 CH201JT-F CH C0H 200 p ±5% 1000 200 0.3±0.03 R
TMK063 CH221JT-F CH C0H 220 p ±5% 1000 200 0.3±0.03 R
【Temperature Characteristic U△ : U△/U2△】 0.3mm thickness(T
HALT
Rated voltage x
TMK063 UK0R5CT-F UK U2K 0.5 p ±0.25pF 410 200 0.3±0.03 R
TMK063 UK010CT-F UK U2K 1 p ±0.25pF 420 200 0.3±0.03 R
TMK063 UK1R5CT-F UK U2K 1.5 p ±0.25pF 430 200 0.3±0.03 R
TMK063 UK020CT-F UK U2K 2 p ±0.25pF 440 200 0.3±0.03 R
TMK063 UK030CT-F UK U2K 3 p ±0.25pF 460 200 0.3±0.03 R
TMK063 UJ040CT-F UJ U2J 4 p ±0.25pF 480 200 0.3±0.03 R
TMK063 UJ050CT-F UJ U2J 5 p ±0.25pF 500 200 0.3±0.03 R
TMK063 UJ060DT-F UJ U2J 6 p ±0.5pF 520 200 0.3±0.03 R
TMK063 UJ070DT-F UJ U2J 7 p ±0.5pF 540 200 0.3±0.03 R
TMK063 UJ080DT-F UJ U2J 8 p ±0.5pF 560 200 0.3±0.03 R
TMK063 UJ090DT-F UJ U2J 9 p ±0.5pF 580 200 0.3±0.03 R
TMK063 UJ100DT-F UJ U2J 10 p ±0.5pF 600 200 0.3±0.03 R
TMK063 UJ120JT-F UJ U2J 12 p ±5% 640 200 0.3±0.03 R
TMK063 UJ150JT-F UJ U2J 15 p ±5% 700 200 0.3±0.03 R
105TYPE
【Temperature Characteristic C△ : C△/C0△】 0.5mm thickness(V)
HALT
Rated voltage x
UMK105 CK0R5CV-F CK C0K 0.5 p ±0.25pF 410 200 0.5±0.05 R
UMK105 CK010CV-F CK C0K 1 p ±0.25pF 420 200 0.5±0.05 R
UMK105 CK1R5CV-F CK C0K 1.5 p ±0.25pF 430 200 0.5±0.05 R
UMK105 CK020CV-F CK C0K 2 p ±0.25pF 440 200 0.5±0.05 R
UMK105 CJ030CV-F CJ C0J 3 p ±0.25pF 460 200 0.5±0.05 R
UMK105 CH040CV-F CH C0H 4 p ±0.25pF 480 200 0.5±0.05 R
UMK105 CH050CV-F CH C0H 5 p ±0.25pF 500 200 0.5±0.05 R
UMK105 CH060DV-F CH C0H 6 p ±0.5pF 520 200 0.5±0.05 R
UMK105 CH070DV-F CH C0H 7 p ±0.5pF 540 200 0.5±0.05 R
UMK105 CH080DV-F CH C0H 8 p ±0.5pF 560 200 0.5±0.05 R
UMK105 CH090DV-F CH C0H 9 p ±0.5pF 580 200 0.5±0.05 R
UMK105 CH100DV-F CH C0H 10 p ±0.5pF 600 200 0.5±0.05 R
UMK105 CH120JV-F CH C0H 12 p ±5% 640 200 0.5±0.05 R
UMK105 CH150JV-F CH C0H 15 p ±5% 700 200 0.5±0.05 R
UMK105 CH180JV-F CH C0H 18 p ±5% 760 200 0.5±0.05 R
UMK105 CH220JV-F CH C0H 22 p ±5% 840 200 0.5±0.05 R
UMK105 CH270JV-F CH C0H 27 p ±5% 940 200 0.5±0.05 R
UMK105 CH330JV-F CH C0H 33 p ±5% 1000 200 0.5±0.05 R
UMK105 CH390JV-F CH C0H 39 p ±5% 1000 200 0.5±0.05 R
25
25
Rated voltage [V] Capacitance
[F]
Thickness
*3
[mm]
Thickness
*3
[mm]
Soldering
R:Reflow
W:Wave
Soldering
R:Reflow
W:Wave
Part number 2Part number 1
Part number 1
Temperature
characteristics
Rated voltage [V]
Thickness
*3
[mm]
Soldering
R:Reflow
W:Wave
Capacitance
tolerance [%]
Capacitance
tolerance [%]
Capacitance
[F]
Q
Q
Temperature
characteristics
Part number 1
Part number 2
50
Part number 2 Rated voltage [V] Temperature
characteristics
Capacitance
[F]
Capacitance
tolerance [%] Q
50
1
3
Thiscatalogcontainsthetypicalspecicationonlyduetothelimitationofspace.Whenyouconsiderthepurchaseofourproducts,pleasecheckourspecication.
Fordetailsofeachproduct(characteristicsgraph,reliabilityinformation,precautionsforuse,andsoon),seeourWebsite(http://www.ty-top.com/).
CERAMIC CAPACITORS
18
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
c_mlcc_pack_e-01
Multilayer Ceramic Capacitors
PACKAGING
①Minimum Quantity
Taped package
Type(EIA) Thickness Standard quantity [pcs]
mm code Paper tape Embossed tape
□MK042(01005) 0.2 C, D 40000
□MK063(0201) 0.3 P, T 15000
□WK105(0204) 0.3 P 10000
□MK105(0402)
0.2 C 20000
0.3 P 15000
0.5 V 10000
□VK105(0402) 0.5 W
□MK107(0603)
□WK107(0306)
□MR107(0603)
0.45 K 4000
0.5 V 4000
0.8 A
4000
□MK212(0805)
□WK212(0508)
□MR212(0805)
0.45 K
0.85 D
1.25 G 3000
□MK316(1206)
□MR316(1206)
0.85 D 4000
1.15 F
3000
1.25 G
1.6 L
2000
□MK325(1210)
□MR325(1210)
0.85 D
1.15 F
1.9 N
2.0max. Y
2.5 M 500(T), 1000(P)
□MK432(1812) 2.5 M 500
Note : LW Reverse type.
②Taping material
※No bottom tape for pressed carrier tape
Card board carrier tape
Embossed tape
Chip filled
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
c_mlcc_pack_e-01
③Representative taping dimensions
Paper Tape(8mm wide)
●Pressed carrier tape( 2mm pitch)
Type(EIA) Chip Cavity Insertion Pitch Tape Thicknes
T1
□MK063(0201) 0.37 0.67
2.0±0.05
0.45max. 0.42max.
□WK105(0204)
0.65 1.15
□MK105(0402) (*1 C) 0.4max. 0.3max.
□MK105(0402) (*1 P) 0.45max. 0.42max.
Note *1 Thickness, C:0.2mm ,P:0.3mm. LW Reverse type. Unit:mm
●Punched carrier tape (2mm pitch)
Type(EIA) Chip Cavity Insertion Pitch Tape Thickness
□MK105 (0402)
□VK105 (0402) 0.65 1.15 2.0±0.05 0.8max.
Unit:mm
●Punched carrier tape (4mm pitch)
Type(EIA) Chip Cavity Insertion Pich Tape Thickness
□MK107(0603)
□WK107(0306)
□MR107(0603)
1.0 1.8
4.0±0.1
1.1max.
□MK212(0805)
□WK212(0508) 1.65 2.4 1.1max.
□MK316(1206) 2.0 3.6
Note:Taping size might be different depending on the size of the product. LW Reverse type. Unit:mm
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
c_mlcc_pack_e-01
Embossed tape(4mm wide)
Type(EIA) Chp Cavity Insertion Pitch Tape Thickness
K T
□MK042(01005) 0.23 0.43 1.0±0.02 0.5max. 0.25max.
Unit:mm
Embossed tape(8mm wide)
Type(EIA) Chip Cavity Insertion Pitch Tape Thickness
K T
□WK107(0306) 1.0 1.8
4.0±0.1
1.3max. 0.25±0.1
□MK212(0805)
□MR212(0805) 1.65 2.4
3.4max. 0.6max.
□MK316(1206)
□MR316(1206)
2.0 3.6
□MK325(1210)
□MR325(1210)
2.8 3.6
Note: LW Reverse type. Unit:mm
Embossed tape(12mm wide)
Type(EIA) Chip Cavity Insertion Pitch Tape Thickness
K T
□MK432(1812) 3.7 4.9 8.0±0.1 4.0max. 0.6max.
Unit:mm
④Trailer and Leader
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
c_mlcc_pack_e-01
⑤Reel size
A B C D E R
φ178±2.0 φ50min. φ13.0±0.2 φ21.0±0.8 2.0±0.5 1.0
T W
4mm wide tape 1.5max. 5±1.0
8mm wide tape 2.5max. 10±1.5
12mm wide tape 2.5max. 14±1.5 Unit:mm
⑥Top Tape Strength
The top tape requires a peel-off force of 0.1 to 0.7N in the direction of the arrow as illustrated below.
⑦Bulk Cassette
The exchange of individual specification is necessary.
Please contact Taiyo Yuden sales channels.
Unit:mm
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
c_mlcc_reli_e-01
Super Low Distortion Multilayer Ceramic Capacitors , Medium-High Voltage Multilayer Ceramic Capacitors and
High Reliability Application Multilayer Ceramic Capacitors are noted separately.
Multilayer Ceramic Capacitors
RELIABILITY DATA
1.Operating Temperature Range
Specified
Value
Temperature
Compensating(Class1)
Standard -55 to +125℃
High Frequency Type
High Permittivity (Class2)
Specification Temperature Range
BJ B -25 to +85℃
X5R -55 to +85℃
B7 X7R -55 to +125℃
C6 X6S -55 to +105℃
C7 X7S -55 to +125℃
LD(※) X5R -55 to +85℃
F F -25 to +85℃
Y5V -30 to +85℃
Note: ※LD Low distortion high value multilayer ceramic capacitor
2. Storage Conditions
Specified
Value
Temperature
Compensating(Class1)
Standard -55 to +125℃
High Frequency Type
High Permittivity (Class2)
Specification Temperature Range
BJ B -25 to +85℃
X5R -55 to +85℃
B7 X7R -55 to +125℃
C6 X6S -55 to +105℃
C7 X7S -55 to +125℃
LD(※) X5R -55 to +85℃
F F -25 to +85℃
Y5V -30 to +85℃
Note: ※LD Low distortion high value multilayer ceramic capacitor
3. Rated Voltage
Specified
Value
Temperature
Compensating(Class1)
Standard 50VDC, 25VDC, 16VDC
High Frequency Type 50VDC, 16VDC
High Permittivity (Class2) 50VDC, 35VDC, 25VDC, 16VDC, 10VDC, 6.3VDC, 4VDC, 2.5VDC
4. Withstanding Voltage (Between terminals)
Specified
Value
Temperature
Compensating(Class1)
Standard
No breakdown or damage
High Frequency Type
High Permittivity (Class2)
Test
Methods and
Remarks
Class 1 Class 2
Applied voltage Rated volta×3 Rated voltage×2.5
Duration 1 to 5 sec.
Charge/discharge current 50mA max.
5. Insulation Resistance
Specified
Value
Temperature
Compensating(Class1)
Standard 10000 MΩ min.
High Frequency Type
High Permittivity (Class2) Note 1 C≦0.047μF : 10000 MΩ min.
C>0.047μF : 500MΩ・μF
Test
Methods and
Remarks
Applied voltage : Rated voltage
Duration : 60±5 sec.
Charge/discharge current : 50mA max.
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
c_mlcc_reli_e-01
6. Capacitance (Tolerance)
Specified
Value
Temperature
Compensating(Class1)
Standard
C□
U□
SL
0.2pF≦C≦5pF : ±0.25pF
0.2pF≦C≦10pF : ±0.5pF
C>10pF : ±5% or ±10%
High Frequency Type CH
RH
0.3pF≦C≦2pF : ±0.1pF
C>2pF : ±5%
High Permittivity (Class2)
BJ, B7, C6, C7, LD(※) : ±10% or ±20%,
F : +80/-20%
Note: ※LD Low distortion high value multilayer ceramic capacitor
Test
Methods and
Remarks
Class 1 Class 2
Standard High Frequency Type C≦10μF C>10μF
Preconditioning None Thermal treatment (at 150℃ for 1hr) Note 2
Measuring frequency 1MHz±10% 1kHz±10% 120±10Hz
Measuring voltage Note 0.5 to 5Vrms 1±0.2Vrms 0.5±0.1rms
Bias application one
7. Q or Dissipation Factor
Specified
Value
Temperature
Compensating(Class1)
Standard C<30pF : Q≧400+20C
C≧30pF : Q≧1000CNominal capacitance)
High Frequency Type Refer to detailed specification
High Permittivity (Class2) Note 1 BJ, B7, C6, C7:2.5% max., F:7% max.
Test
Methods and
Remarks
Class 1 Class 2
Standard High Frequency Type C≦10μF C>10μF
Preconditioning None Thermal treatment (at 150℃ for 1hr) Note 2
Measuring frequey 1MHz±10% 1GHz 1kHz±10% 120±10Hz
Measuring voltage Note 1 0.5 to 5Vrms 1±0.2Vrms 0.5±0.1Vrms
Bias application None
High Frequency Type
Measuring equipment : HP4291A
Measuring jig : HP16192A
8. Temperature Characteristic (Without voltage application)
Specified
Value
Temperature
Compensating(Class1)
Standard
Temperature Characteristic [ppm/℃] Tolerance [ppm/℃]
C□ : 0 CH, CJ, CK H : ±60
J : ±120
K : ±250
U□ : -750 UJ, UK
SL : +350 to -1000
High Frequency Type
Temperature Characteristic [ppm/℃] Tolerance [ppm/℃]
C□ : 0 CH H : ±60
R□ : -220 RH
High Permittivity (Class2)
Specification Capacitance
change
Reference
temperature Temperature Range
BJ B ±10% 20℃ -25 to +85℃
X5R ±15% 25℃ -55 to +85℃
B7 X7R ±15% 25℃ -55 to +125℃
C6 X6S ±22% 25℃ -55 to +105℃
C7 X7S ±22% 25℃ -55 to +125℃
LD(※) X5R ±15% 25℃ -55 to +85℃
F F +30/-80% 20℃ -25 to +85℃
Y5V +22/-82% 25℃ -30 to +85℃
Note : ※LD Low distortion high value multilayer ceramic capacitor
Test
Methods and
Remarks
Class 1
Capacitance at 20℃ and 85℃ shall be measured in thermal equilibrium, and the temperature characteristic shall be calculated from the
following equation.
(C85-C20 ×106(ppm/℃)
C20×△T △T=65
Class 2
Capacitance at each step shall be measured in thermal equilibrium, and the temperature characteristic shall be calculated from the following
equation.
Step B、F X5R、X7R、X6S、X7S、Y5V
1 Minimum operating temperature
2 20℃ 25℃
3 Maximum operating temperature
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
c_mlcc_reli_e-01
(C-C2 ×100(%)
C2
C :Capacitance in Step 1 or Step 3
C2 :Capacitance in Step 2
9. Deflection
Specified
Value
Temperature
Compensating(Class1)
Standard Appearance : No abnormality
Capacitance change : Within ±5% or ±0.5 pF, whichever is larger.
High Frequency Type Appearance : No abnormality
Cpaitance change : Within±0.5 pF
High Permittivity (Class2)
Appearance : No abnormality
Capacitance change : Within ±12.5%(BJ, B7, C6, C7,LD(※))
Within ±30%(F)
Note: ※LD Low distortion high value multilayer ceramic capacitor
Test
Methods and
Remarks
Multilayer Ceramic Capacitors
042, 063, 105 Type The other types
Board Glass epoxy-resin substrate
Thickness 0.8mm 1.6mm
Warp 1mm
Duration 10 sec.
105 Type thickness, C: 0.2mm ,P: 0.3mm.
Capacitance measurement shall be conducted
with the board bent
10. Body Strength
Specified
Value
Temperature
Compensating(Class1)
Standard
High Frequency Type No mechanical damage.
High Permittivity (Class2)
Test
Methods and
Remarks
High Frequency Type
Applied force : 5N
Duration : 10 sec.
11. Adhesive Strength of Terminal Electrodes
Specified
Value
Temperature
Compensating(Class1)
Standard
No terminal separation or its indication.
High Frequency Type
High Permittivity (Class2)
Test
Methods and
Remarks
Multilayer Ceramic Capacitors
042, 063 Type 105 Type or more
Applied force 2N 5N
Duration 30±5 sec.
12. Solderability
Specified
Value
Temperature
Compensating(Class1)
Standard
At least 95% of terminal electrode is covered by new solder.
High Frequency Type
High Permittivity (Class2)
Test
Methods and
Remarks
Eutectic solder Lead-free solder
Solder type H60A or H63A Sn-3.0Ag-0.5Cu
Solder temperature 230±5℃ 245±3℃
Duration 4±1 sec.
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
c_mlcc_reli_e-01
13. Resistance to Soldering
Specified
Value
Temperature
Compensating(Class1)
Standard
Appearance : No abnormlty
Capacitance change : Within ±2.5% or ±0.25pF, whichever is larger.
Q : Initial value
Insulation resistance : Initial value
Withstanding voltage (between terminals) : No abnormality
High Frequency Type
Appearance : No abnormality
Capacitancecange : Within ±2.5%
Q : Initial value
Insulation resistance : Initial value
Withstanding voltage (between terminals) : No abnormality
High Permittivity (Class2) Note 1
Appearance : No abnormality
Capactace change : Within ±7.5%(BJ, B7, C6, C7, LD(※))
Within ±20%(F)
Dissipation factor : Initial value
Insulation resistance : Initial value
Withstanding voltage (between terminals): No abnormality
Note: ※LD Low distortion high value multilayer ceramic capacitor
Test
Methods and
Remarks
lss 1
042, 063 Type 105 Type
Preconditioning None
Preheating 150℃, 1 to 2 min. 80 to 100℃, 2 to 5 min.
150 to 200℃, 2 to 5 min.
Solder temp. 270±5℃
Duration 3±0.5 sec.
Recovery 6 to 24 hrs (Standard condition) Noe 5
Class 2
042、063 Type 105, 107, 212 Type 316, 325 Type
Preconditioning Thermal treatment (at 150℃ for 1 hr) Note 2
Preheating 150℃, 1 to 2 min. 80 to 100℃, 2 to 5 min.
150 to 200℃, 2 to 5 min.
80 to 100℃, 5 to 10 min.
150 to 200℃, 5 to 10 min.
Solder temp. 270±5℃
Duration 3±0.5 sec.
Recovery 24±2 hrs (Standard condition) Note 5
14. Temperature Cycle (Thermal Shock)
Specified
Value
Temperature
Compensating(Class1)
Standard
Appearance : No abnormality
Capacitance change : Within ±2.5% or ±0.25pF, whichever is larger.
Q : Initial value
Insulation resistance : Initial value
Withstanding voltage (between terminals) : No abnormality
High Frequency Type
Appearance : No abnormality
Capacitance change : Within ±0.25pF
Q : Initial value
Insulation resistance : Initial value
Withstanding voltage (between terminals) : No abnormality
High Permittivity (Class2) Note 1
Appearance : No abnormality
Capacitance change : Within ±7.5% (BJ, B7, C6, C7, LD(※))
Within ±20% (F)
Dissipation factor : Initial value
Insulation resistance : Initial value
Withstanding voltage (between terminals) : No abnormality
Note: ※LD Low distortion high value multilayer ceramic capacitor
Test
Methods and
Remarks
Class 1 Class 2
Preconditioning None Thermal treatment (at 150℃ for 1 hr)
Note 2
1 cycle
Step Temperature(℃) Time(min.)
1 Minimum operating temperature 30±3
2 Normal temperature 2 to 3
3 Maximum operating temperature 30±3
4 Normal temperature 2 to 3
Number of cycles 5 times
Recovery 6 to 24 hrs (Standard condition) Note 5 24±2 hrs (Standard condition) Note 5
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
c_mlcc_reli_e-01
15. Humidity (Steady State)
Specified
Value
Temperature
Compensating(Class1)
Standard
Appearance : No abnormality
Capacitance change : Within ±5% or ±0.5pF, whichever is larger.
Q : C<10pF : Q≧200+10C
10≦C<30pF : Q≧275+2.5C
C≧30pF:Q≧350(C:Nominal capacitance)
Insulation resistance : 1000 MΩ min.
High Frequency Type
Appearance : No abnormality
Capacitance change : Within ±0.5pF,
Insulation resistance : 1000 MΩ min.
High Permittivity (Class2) Note 1
Appearance : No abnormality
Capacitance change : Within ±12.5% (BJ, B7, C6, C7, LD(※))
Within ±30% (F)
Dissipation factor : 5.0% max.(BJ, B7, C6, C7, LD(※))
11.0% max.(F)
Insulation resistance : 50 MΩμF or 1000 MΩ whichever is smaller.
Note: ※LD Low distortion high value multilayer ceramic capacitor
Test
Methods and
Remarks
Class 1 Class 2
Standard High Frequency Type All items
Preconditioning None Thermal treatment( at 150℃ for 1 hr) Note 2
Temperature 40±2℃ 60±2℃ 40±2℃
Humidity 90 to 95%RH 90 to 95%RH
Duration 500+24/-0 hrs 500+24/-0 hrs
Recovery 6 to 24 hrs (Standard condition) Note 5 24±2 hrs (Standard condition) Note 5
16. Humidity Loading
Specified
Value
Temperature
Compensating(Class1)
Standard
Appearance : No abnormality
Capacitance change : Within ±7.5% or ±0.75pF, whichever is larger.
Q : C<30pF:Q≧100+10C/3
C≧30pF:Q≧200 (C:Nominal capacitance)
Insulation resistance : 500 MΩ min.
High Frequency Type
Appearance : No abnormality
Capacitance change : C≦2pF:Within ±0.4 pF
C>2pF:Within ±0.75 pF
CNominal capacitance)
Insulation resistance : 500 MΩ min.
High Permittivity (Class2) Note 1
Appearance : No abnormality
Capacitance change : Within ±12.5% (BJ, B7, C6, C7, LD(※))
Within ±30% (F)
Dissipation factor : 5.0% max. (BJ, B7, C6, C7, LD(※))
11.0% max. (F)
Insulation resistance : 25 MΩμF or 500 MΩ, whichever is smaller.
Note: ※LD Low distortion high value multilayer ceramic capacitor
Test
Methods and
Remarks
Class 1 Class 2
Standard High Frequency Type All items
Preconditioning None Voltage treatment
(Rated voltage are applied for 1 hour at 40℃) Note 3
Temperature 40±2℃ 60±2℃ 40±2℃
Humidity 90 to 95%RH 90 to 95%RH
Duration 500+24/-0 hrs 500+24/-0 hrs
Applied voltage Rated voltage Rated voltage
Charge/discharge
current 50mA max. 50mA max.
Recovery 6 to 24 hrs (Standard condition) Note 5 24±2 hrs(Standard condition) Note 5
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
c_mlcc_reli_e-01
17. High Temperature Loading
Specified
Value
Temperature
Compensating(Class1)
Standard
Appearance : No abnormality
Capacitance change : Within ±3% or ±0.3pF, whichever is larger.
Q : C<10pF: Q≧200+10C
10≦C<30pF:Q≧275+2.5C
C≧30pF: Q≧350(C:Nominal capacitance)
Insulation resistance : 1000 MΩ min.
High Frequency Type
Appearance : No abnormality
Capacitance change : Within ±3% or ±0.3pF, whichever is larger.
Insulation resistance : 1000 MΩ min.
High Permittivity (Class2) Note 1
Appearance : No abnormality
Capacitance change : Within ±12.5% (BJ, B7, C6, C7, LD(※))
Within ±30% (F)
Dissipation factor : 5.0% max.(BJ, B7, C6, C7, LD(※))
11.0% max.(F)
Insulation resistance : 50 MΩμF or 1000 MΩ, whichever is smaller.
Note: ※LD Low distortion high value multilayer ceramic capacitor
Test
Methods and
Remarks
Class 1 Class 2
Standard High Frequency Type BJ, LD(※), F C6 B7, C7
Preconditioning None Voltage treatment(Twice the rated voltage shall be applied for
1 hour at 85℃, 105℃ or 125℃) Note 3, 4
Temperature Maximum operating temperature Maximum operating temperature
Duration 1000+48/-0 hrs 1000+48/-0 hrs
Applied voltage Rated voltage×2 Rated voltage×2 Note 4
Charge/discharge
current 50mA max. 50mA max.
Recovery 6 to 24hr (Standard condition) Note 5 24±2 hrs (Standard condition) Note 5
Note: ※LD Low distortion high value multilayer ceramic capacitor
Note 1 The figures indicate typical specifications. Please refer to individual specifications in detail.
Note 2 Thermal treatment : Initial value shall be measured after test sample is heat-treated at 150+0/-10℃ for an hour and kept at room temperature for
24±2hours.
Note 3 Voltage treatment : Initial value shall be measured after test sample is voltage-treated for an hour at both the temperature and voltage specified in
the test conditions, and kept at room temperature for 24±2hours.
Note 4 150% of rated voltage is applicable to some items. Please refer to their specifications for further information.
Note 5 Standard condition: Temperature: 5 to 35℃, Relative humidity: 45 to 85 % RH, Air pressure: 86 to 106kPa When there are questions concerning
measurement results, in order to provide correlation data, the test shall be conducted under the following condition.
Temperature: 20±2℃, Relative humidity: 60 to 70 % RH, Air pressure: 86 to 106kPa Unless otherwise specified, all the tests are conducted under the
"standard condition".
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
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High Reliability Application Multilayer Ceramic Capacitors are noted separately.
Precautions on the use of Multilayer Ceramic Capacitors
PRECAUTIONS
1. Circuit Design
Precautions
◆Verification of operating environment, electrical rating and performance
1. A malfunction of equipment in fields such as medical, aerospace, nuclear control, etc. may cause serious harm to human life or have
severe social ramifications.
Therefore, any capacitors to be used in such equipment may require higher safety and reliability, and shall be clearly differentiated from
them used in general purpose applications.
◆Operating Voltage (Verification of Rated voltage)
1. The operating voltage for capacitors must always be their rated voltage or less.
If an AC voltage is loaded on a DC voltage, the sum of the two peak voltages shall be the rated voltage or less.
For a circuit where an AC or a pulse voltage may be used, the sum of their peak voltages shall also be the rated voltage or less.
2. Even if an applied voltage is the rated voltage or less reliability of capacitors may be deteriorated in case that either a high frequency AC
voltage or a pulse voltage having rapid rise time is used in a circuit.
2. PCB Design
Precautions
◆Pattern configurations (Design of Land-patterns)
1. When capacitors are mounted on PCBs, the amount of solder used (size of fillet) can directly affect the capacitor performance.
Therefore, the following items must be carefully considered in the design of land patterns:
(1)Excessive solder applied can cause mechanical stresses which lead to chip breaking or cracking. Therefore, please consider
appropriate land-patterns for proper amount of solder.
(2)When more than one component are jointly soldered onto the same land, each component's soldering point shall be separated by
solder-resist.
◆Pattern configurations (Capacitor layout on PCBs)
After capacitors are mounted on boards, they can be subjected to mechanical stresses in subsequent manufacturing processes (PCB
cutting, board inspection, mounting of additional parts, assembly into the chassis, wave soldering of the boards, etc.). For this reason, land
pattern configurations and positions of capacitors shall be carefully considered to minimize stresses.
Technical
considerations
◆Pattern configurations (Design of Land-patterns)
The following diagrams and tables show some examples of recommended land patterns to prevent excessive solder amounts.
(1)Recommended land dimensions for typical chip capacitors
●Multilayer Ceramic Capacitors : Recommended land dimensions
(unit: mm)
Wave-soldering
Type 107 212 316 325
Size L 1.6 2.0 3.2 3.2
W 0.8 1.25 1.6 2.5
A 0.8 to 1.0 1.0 to 1.4 1.8 to 2.5 1.8 to 2.5
B 0.5 to 0.8 0.8 to 1.5 0.8 to 1.7 0.8 to 1.7
C 0.6 to 0.8 0.9 to 1.2 1.2 to 1.6 1.8 to 2.5
Land patterns for PCBs
Reflow-soldering
Type 042 063 105 107 212 316 325 432
Size L 0.4 0.6 1.0 1.6 2.0 3.2 3.2 4.5
W 0.2 0.3 0.5 0.8 1.25 1.6 2.5 3.2
A 0.15 to 0.25 0.20 to 0.30 0.45 to 0.55 0.8 to 1.0 0.8 to 1.2 1.8 to 2.5 1.8 to 2.5 2.5 to 3.5
B 0.15 to 0.20 0.20 to 0.30 0.40 to 0.50 0.6 to 0.8 0.8 to 1.2 1.0 to 1.5 1.0 to 1.5 1.5 to 1.8
C 0.15 to 0.30 0.25 to 0.40 0.45 to 0.55 0.6 to 0.8 0.9 to 1.6 1.2 to 2.0 1.8 to 3.2 2.3 to 3.5
Note:Recommended land size might be different according to the allowance of the size of the product.
●LWDC: Recommended land dimensions for reflow-soldering
(unit: mm)
Type 105 107 212
Size L 0.52 0.8 1.25
W 1.0 1.6 2.0
A 0.18 to 0.22 0.25 to 0.3 0.5 to 0.7
B 0.2 to 0.25 0.3 to 0.4 0.4 to 0.5
C 0.9 to 1.1 1.5 to 1.7 1.9 to 2.1
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
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(2)Examples of good and bad solder application
Items Not eommended Recommended
Mixed mounting of SMD and
leaded components
Component placement close to
the chassis
Hand-soldering of leaded
Components near mounted
components
Horizontal component
placement
◆Pattern configurations (Capacitor layout on PCBs)
1-1. The following is examples of good and bad capacitor layouts ; capacitors shall be located to minimize any possible mechanical
stresses from board warp or deflection.
Items Not recommended Recommended
Deflection of board
1-2. The amount of mechanical stresses given will vary depending on capacitor layout. Please refer to diagram below.
1-3. When PCB is split, the amount of mechanical stress on the capacitors can vary according to the method used. The following methods
are listed in order from least stressful to most stressful: push-back, slit, V-grooving, and perforation. Thus, please consider the PCB,
split methods as well as chip location.
3. Mounting
Precautions
◆Adjustment of mounting machine
1. When capacitors are mounted on PCB, excessive impact load shall not be imposed on them.
2. Maintenance and inspection of mounting machines shall be conducted periodically.
◆Selection of Adhesives
1. When chips are attached on PCBs with adhesives prior to soldering, it may cause capacitor characteristics degradation unless the
following factors are appropriately checked : size of land patterns, type of adhesive, amount applied, hardening temperature and
hardening period. Therefore, please contact us for further information.
Technical
considerations
◆Adjustment of mounting machine
1. When the bottom dead center of a pick-up nozzle is too low, excessive force is imposed on capacitors and causes damages. To avoid
this, the following points shall be considerable.
(1)The bottom dead center of the pick-up nozzle shall be adjusted to the surface level of PCB without the board deflection.
(2)The pressure of nozzle shall be adjusted between 1 and 3 N static loads.
(3)To reduce the amount of deflection of the board caused by impact of the pick-up nozzle, supporting pins or back-up pins shall be
used on the other side of the PCB. The following diagrams show some typical examples of good and bad pick-up nozzle
placement:
Place the product at a right
angle to the direction of the
anticipated mechanical
stress.
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
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Items Not recommended Recommended
Single-sided mounting
Double-sided mounting
2. As the alignment pin is worn out, adjustment of the nozzle height can cause chipping or cracking of capacitors because of mechanical
impact on the capacitors.
To avoid this, the monitoring of the width between the alignment pins in the stopped position, maintenance, check and replacement of
the pin shall be conducted periodically.
◆Selection of Adhesives
Some adhesives may cause IR deterioration. The different shrinkage percentage of between the adhesive and the capacitors may result in
stresses on the capacitors and lead to cracking. Moreover, too little or too much adhesive applied to the board may adversely affect
components. Therefore, the following precautions shall be noted in the application of adhesives.
(1)Required adhesive characteristics
a. The adhesive shall be strong enough to hold parts on the board during the mounting & solder process.
b. The adhesive shall have sufficient strength at high temperatures.
c. The adhesive shall have good coating and thickness consistency.
d. The adhesive shall be used during its prescribed shelf life.
e. The adhesive shall harden rapidly.
f. The adhesive shall have corrosion resistance.
g. The adhesive shall have excellent insulation characteristics.
h. The adhesive shall have no emission of toxic gasses and no effect on the human body.
(2)The recommended amount of adhesives is as follows;
[Recommended condition]
Figure 212/316 case sizes as examples
a 0.3mm min
b 100 to 120μm
c Adhesives shall not contact land
Amount adhesive
After capacitors are bonded
4. Soldering
Precautions
◆Selection of Flux
Since flux may have a significant effect on the performance of capacitors, it is necessary to verify the following conditions prior to use;
(1)Flux used shall be less than or equal to 0.1 wt%( in Cl equivalent) of halogenated content. Flux having a strong acidity content shall
not be applied.
(2)When shall capacitors are soldered on boards, the amount of flux applied shall be controlled at the optimum level.
(3)When water-soluble flux is used, special care shall be taken to properly clean the boards.
◆Soldering
Temperature, time, amount of solder, etc. shall be set in accordance with their recommended conditions.
Sn-Zn solder paste can adversely affect MLCC reliability.
Please contact us prior to usage of Sn-Zn solder.
Technical
considerations
◆Selection of Flux
1-1. When too much halogenated substance(Chlorine, etc.) content is used to activate flux, or highly acidic flux is used, it may lead to
corrosion of terminal electrodes or degradation of insulation resistance on the surfaces of the capacitors.
1-2. Flux is used to increase solderability in wave soldering. However if too much flux is applied, a large amount of flux gas may be emitted
and may adversely affect the solderability. To minimize the amount of flux applied, it is recommended to use a flux-bubbling system.
1-3. Since the residue of water-soluble flux is easily dissolved in moisture in the air, the residues on the surfaces of capacitors in high
humidity conditions may cause a degradation of insulation resistance and reliability of the capacitors. Therefore, the cleaning
methods and the capability of the machines used shall also be considered carefully when water-soluble flux is used.
◆Soldering
Ceramic chip capacitors are susceptible to thermal shock when exposed to rapid or concentrated heating or rapid cooling.
Therefore, the soldering must be conducted with great care so as to prevent malfunction of the components due to excessive thermal
shock.
Preheating : Capacitors shall be preheated sufficiently, and the temperature difference between the capacitors and solder shall be within
100 to 130℃.
Cooling : The temperature difference between the capacitors and cleaning process shall not be greater than 100℃.
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
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[Reflow soldering]
【Recommended conditions for eutectic
soldering】
【Recommended condition for Pb-free
soldering】
Caution
The ideal condition is to have solder mass(filletcontrolled to 1/2 to 1/3 of the
thickness of a capacitor.
②Because excessive dwell times can adversely affect solderability, soldering duration shall
be kept as close to recommended times as possible.
[Wave soldering]
【Recommended conditions for eutectic
soldering】
【Recommended condition for Pb-free
soldering】
Caution
①Wave soldering must not be applied to capacitors designated as for reflow soldering only.
[Hand soldering]
【Recommended conditions for eutectic
soldering】
【Recommended condition for Pb-free
soldering】
⊿T
316type or less ⊿T≦150℃
⊿T
325type or more ⊿T≦130℃
Caution
①Use a 50W soldering iron with a maximum tip diameter of 1.0 mm.
②The soldering iron shall not directly touch capacitors.
5. Cleaning
Precautions
◆Cleaning conditions
1. When PCBs are cleaned after capacitors mounting, please select the appropriate cleaning solution in accordance with the intended use
of the cleaning. (e.g. to remove soldering flux or other materials from the production process.)
2. Cleaning condition shall be determined after it is verified by using actual cleaning machine that the cleaning process does not affect
capacitor's characteristics.
Technical
considerations
1. The use of inappropriate cleaning solutions can cause foreign substances such as flux residue to adhere to capacitors or deteriorate
their outer coating, resulting in a degradation of the capacitor's electrical properties (especially insulation resistance).
2. Inappropriate cleaning conditions( insufficient or excessive cleaning) may adversely affect the performance of the capacitors.
In the case of ultrasonic cleaning, too much power output can cause excessive vibration of PCBs which may lead to the
cracking of capacitors or the soldered portion, or decrease the terminal electrodes' strength. Therefore, the following conditions shall
be carefully checked;
Ultrasonic output : 20 W/ or less
Ultrasonic frequency : 40 kHz or less
Ultrasonic washing period : 5 min. or less
This catalog contains the typical specification only due to the limitation of space. When you consider the purchase of our products, please check our specification.
For details of each product (characteristics graph, reliability information, precautions for use, and so on), see our Web site (http://www.ty-top.com/) .
c_mlcc_prec_e-01
6. Resin coating and mold
Precautions
1. With some type of resins, decomposition gas or chemical reaction vapor may remain inside the resin during the hardening period or
while left under normal storage conditions resulting in the deterioration of the capacitor's performance.
2. When a resin's hardening temperature is higher than capacitor's operating temperature, the stresses generated by the excessive heat
may lead to damage or destruction of capacitors.
The use of such resins, molding materials etc. is not recommended.
7. Handling
Precautions
◆Splitting of PCB
1. When PCBs are split after components mounting, care shall be taken so as not to give any stresses of deflection or twisting to the board.
2. Board separation shall not be done manually, but by using the appropriate devices.
◆Mechanical considerations
Be careful not to subject capacitors to excessive mechanical shocks.
(1)If ceramic capacitors are dropped onto a floor or a hard surface, they shall not be used.
(2)Please be careful that the mounted components do not come in contact with or bump against other boards or components.
8. Storage conditions
Precautions
◆Storage
1. To maintain the solderability of terminal electrodes and to keep packaging materials in good condition, care must be taken to control
temperature and humidity in the storage area. Humidity should especially be kept as low as possible.
・Recommended conditions
Ambient temperature : Below 30℃
Humidity : Below 70% RH
The ambient temperature must be kept below 40℃. Even under ideal storage conditions, solderability of capacitor is deteriorated as
time passes, so capacitors shall be used within 6 months from the time of delivery.
・Ceramic chip capacitors shall be kept where no chlorine or sulfur exists in the air.
2. The capacitance values of high dielectric constant capacitors will gradually decrease with the passage of time, so care shall be
taken to design circuits . Even if capacitance value decreases as time passes, it will get back to the initial value by a heat treatment at
150℃ for 1hour.
Technical
considerations
If capacitors are stored in a high temperature and humidity environment, it might rapidly cause poor solderability due to terminal oxidation and
quality loss of taping/packaging materials. For this reason, capacitors shall be used within 6 months from the time of delivery. If exceeding the
above period, please check solderability before using the capacitors.
※RCR-2335B(Safety Application Guide for fixed ceramic capacitors for use in electronic equipment)is published by JEITA.
Please check the guide regarding precautions for deflection test, soldering by spot heat, and so on.