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PDF ECJ3xxxxx Data sheet ( Hoja de datos )

Número de pieza ECJ3xxxxx
Descripción (ECJ Series) Multilayer Ceramic Chip Capacitors
Fabricantes Panasonic 
Logotipo Panasonic Logotipo



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Multilayer
Ceramic
Capacitors
( )Large
Capacitance
Multilayer Ceramic Chip Capacitors
(Large Capacitance)
Series:ECJ
n Features
l Small and Large capacitance Multilayer Ceramic
Chip Capacitor by Panasonic creative material
technology and high precision lamination technology
l Low ESR, Low ESL and excellent High-frequency
l Optimal to change from TANTALUM CHIP CAPACI-
TORS and ALUMINUM ELECTROLYTIC CAPACI-
TORS
n Precaution for Handling
See Page 44 to 48
n Explanation of Part Numbers
n Recommended Applications
l Class 2 (Hi-K Type)
á Power supply circuit decoupling applications
Power supply circuit of the High-speed LSI
Smoothing circuit of DC-DC converters
n Packaging method
See Page 82
ECJ 2 FB0 J 1 0 6M
Product Code
(ECJ:Multilayer Ceramic
Chip Capacitors)
Packaging
Styles Code
Rated Voltage
Size Code
Temperature
Characteristics Code
Nominal Capacitance
Capacitance
Tolerance
n Construction
n Dimensions in mm (not to scale)
Code
1
Size code
(EIA)
Type“11”
(0603)
2 Type“12”
(0805)
3 Type“13”
(1206)
4
Type“23”
(1210)
5
Type“34”
(1812)
No Name
1 Ceramic dielectric
2 Internal electrode
3 Substrate electrode
Terminal
4 Intermediate electrode
electrode
5 External electrode
L
1.6±0.1
2.0±0.1
2.00±0.15
2.0±0.2
3.20±0.15
3.2±0.2
3.2±0.3
4.5±0.4
W
0.8±0.1
1.25±0.10
1.25±0.15
1.25±0.20
1.60±0.15
1.6±0.2
2.5±0.2
2.5±0.3
3.2±0.3
T
0.8±0.1
0.85±0.10
1.25±0.10
1.25±0.15
1.25±0.20
0.85±0.10
1.15±0.10
1.6±0.2
2.0±0.2
2.5±0.3
2.5±0.3
3.2±0.3
Unit : mm
L1, L2
0.3±0.2
0.50±0.25
0.6±0.3
0.6±0.3
0.9±0.6
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ECJ3xxxxx pdf
Multilayer
Ceramic
Capacitors
( )Large
Capacitance
Item
Loading
Under
Damp
Heat
Loading at
High
Temperature
Specification
Appearance:no mechanical damage
Capacitance Change:
Temp. Char. B, X7R, X5R: within ±12.5 %
F, Y5V: within ±30 %
tand:
Rated
Voltage
50V
25V
16V
10V
6.3V
Temperature Characteristics
B, X7R, X5R
F, Y5V
0.05max.
0.1max.
0.05max.
0.1max.
0.075max.
0.15max.
( ) (TypeÒ13Ó:C=4.7µF
TypeÒ23Ó, Ò34Ó
TypeÒ12Ó:C>1µF
TypeÒ13Ó:C=4.7µF
TypeÒ23Ó, Ò34Ó
0.05max.
0.15max.
0.075max.
0.2max.
( ) (TypeÒ12Ó: C=1µF
TypeÒ13Ó:C>4.7µF
TypeÒ23Ó, Ò34Ó
TypeÒ11Ó: C=1µF
TypeÒ12Ó:C=4.7µF
TypeÒ13Ó:C=10µF
0.125max.
TypeÒ23Ó, Ò34Ó
(TypeÒ11Ò: C=1µF)
0.075max.
0.15max.
0.125max.
0.3max.
(TypeÒ11Ó: C=1µF)
TypeÒ11Ó: C=2.2µF
( ) (0.15max.
TypeÒ23Ó:C=22µF
TypeÒ34Ó
TypeÒ12Ó:C=10µF
TypeÒ13Ó:C=22µF
TypeÒ23Ó, Ò34Ó
0.075max.
0.3max.
0.125max.
(TypeÒ11Ó: C=1µF)
0.15max.
TypeÒ11Ó, C=2.2µF
( )TypeÒ12Ó, C>4.7µF
TypeÒ13Ó, C=22µF
TypeÒ23Ó, Ò34Ó
)
)
)
IR:25/C (MW) min.
Note:DC10V, DC6.3V;5/C (MW)min.(C:Nominal cap. in µF)
Appearance:no mechanical damage
Capacitance Change:
Temp. Char. B, X7R, X5R: within ±12.5 %
F, Y5V: within ±30 %
tand:
Rated
Temperature Characteristics
Voltage
B, X7R, X5R
F, Y5V
50V
0.05max.
0.1max.
0.05max.
0.1max.
0.075max.
0.15max.
( ) ( )25V
TypeÒ13Ó:C=4.7µF
TypeÒ23Ó, Ò34Ó
TypeÒ12Ó:C>1µF
TypeÒ13Ó:C=4.7µF
TypeÒ23Ó, Ò34Ó
0.05max.
0.15max.
0.075max.
0.2max.
( ) ( )16V
TypeÒ12Ó: C=1µF
TypeÒ13Ó:C>4.7µF
TypeÒ23Ó, Ò34Ó
TypeÒ11Ó: C=1µF
TypeÒ12Ó:C=4.7µF
TypeÒ13Ó:C=10µF
0.125max.
TypeÒ23Ó, Ò34Ó
(TypeÒ11Ò: C=1µF)
0.075max.
0.15max.
0.125max.
0.3max.
( ) ( )10V
(TypeÒ11Ó: C=1µF)
0.15max.
TypeÒ23Ó:C=22µF
TypeÒ34Ó
TypeÒ11Ó: C=2.2µF
TypeÒ12Ó:C=10µF
TypeÒ13Ó:C=22µF
TypeÒ23Ó, Ò34Ó
0.075max.
0.3max.
0.125max.
(TypeÒ11Ó: C=1µF)
0.15max.
6.3V
TypeÒ11Ó, C=2.2µF
( )TypeÒ12Ó, C>4.7µF
TypeÒ13Ó, C=22µF
TypeÒ23Ó, Ò34Ó
IR:50/C (MW) min.
Note:DC10V, DC6.3V;10/C (MW)min.(C:Nominal cap. in µF)
Test Method
Preconditioning:
Voltage Treatment
Temperature:40±2 ûC
Relative humidity:90 to 95 %
Applied voltage:Rated voltage
Test period:500+24/0 h
Recovery(Standard condition):48 ± 4h
Preconditioning:
Voltage Treatment
Temperature:
Maximum operation temp. ±3 ûC
Applied voltage:Rated voltage´200%
Test period:1000+48/0 h
Recovery(Standard condition):48 ± 4h
Note 1) Heat treatment:1 h of heat treatment at 150+0/Ð10ûC followed by 48±4 h recovery under the standead condition.
Note 2) Voltage treatment:1 h of voltage treatment under the specified temperature and voltage for testing followed by 48 ±4 h of recovery under
the standead condition.

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