• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
sales representatives or product engineers before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Radial Lead Type
Monolithic Ceramic
Capacitors
C49E.pdf
10.3.8
Cat.No.C49E-20
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
!Note
sales representatives or product engineers before ordering.
• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
C49E.pdf
10.3.8
for EU RoHS Compliant
• All the products in this catalog comply with EU RoHS.
• EU RoHS is "the European Directive 2002/95/EC on the Restriction of the Use
of Certain Hazardous Substances in Electrical and Electronic Equipment".
• For more details, please refer to our website 'Murata's Approach for EU RoHS'
(http://www.murata.com/info/rohs.html).
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
!Note
sales representatives or product engineers before ordering.
• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
C49E.pdf
10.3.8
CONTENTS
Part Numbering2
1
RPE Series (DC25V-DC100V)3
Marking4
Temperature Compensating Type, C0G Characteristics5
High Dielectric Constant Type, X7R Characteristics8
High Dielectric Constant Type, Y5V Characteristics10
Specifications and Test Methods11
2
RPE Series Small Size, Large Capacitance (DC50V)14
Marking14
1
2
3
4
Specifications and Test Methods15
3
RH Series 150 deg. C max. (for Automotive) (DC50V-DC100V)17
Marking18
Specifications and Test Methods20
4
RDE Series (Only for Commercial Use) (DC250V-DC630V)22
Marking23
Specifications and Test Methods25
RPE Series Characteristics Data (Typical Example)27
RPE Series Small Size, Large Capacitance Characteristics Data (Typical Example)
28
RH Series Characteristics Data (Typical Example)29
RDE Series Characteristics Data (Typical Example)30
Packaging31
!Caution33
Notice36
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
!Note
sales representatives or product engineers before ordering.
• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
oPart Numbering
Radial Lead Type Monolithic Ceramic Capacitors
C49E.pdf
10.3.8
(Part Number)
RP
q
E
eR7r1Ht
w
104
K
y
M1
u2i
A03!0A
qProduct ID
wSeries/Terminal
Product IDSeries/Terminal
RP
RH
RD
E
E/D
E
Radial Lead Type Monolithic Ceramic Capacitors 150°C max. (for Automotive) (DC50V-DC100V)
Radial Lead Type Monolithic Ceramic Capacitors (Only for Commercial Use) (DC250V-DC630V)
Radial Lead Type Monolithic Ceramic Capacitors (DC25V-DC100V)
eTemperature Characteristics
Code
5C
F5
L8
R7
Temperature
Characteristics
C0G
Y5V
X8L
X7R
Temperature
Range
25 to 125°C
-30 to 85°C
-55 to 125°C
125 to 150°C
-55 to 125°C
rRated Voltage
Code
1E
1H
2A
2E
2J
Rated Voltage
DC25V
DC50V
DC100V
DC250V
DC630V
tCapacitance
Expressed by three-digit alphanumerics. The unit is pico-farad
(pF). The first and second figures are significant digits, and the
third figure expresses the number of zeros which follow the two
numbers.
If there is a decimal point, it is expressed by the capital letter "R".
In this case, all figures are significant digits.
yCapacitance Tolerance
Code
C
D
J
K
M
Z
Capacitance
Tolerance
±0.25pF
±0.5pF
±5%
±10%
±20%
+80%, -20%
Temperature
Characteristics
C0G
X7R/X8L
X7R
Y5V
Capacitance
Step
V5pF : 1pF Step
6 to 9pF : 1pF Step
U10 : E12 Series
E6 Series
E3 Series
E3 Series
oIndividual Specification Code
Expressed by three-digit alphanumerics
!0Packaging
Code
A
B
Packaging
Ammo Pack
Bulk
o
Capacitance Change or
Temperature Coefficient
0±30ppm/°C
+22, -82%
±15%
+15, -40%
±15%
Operating
Temperature Range
-55 to 125°C
-30 to 85°C
-55 to 150°C
-55 to 125°C
uDimensions (LxW)
Code
1
2
3
4
5
6
7
8
U
5.0g3.5mm or 5.5g4.0mm or 5.7g4.5mm (Depends on Part Number List)
5.0g4.5mm or 5.5g5.0mm (Depends on Part Number List)
Dimensions (LxW)
4.0g3.5mm
7.5g5.0mm
7.5g7.5mm*
10.0g10.0mm
12.5g12.5mm
7.5g5.5mm
7.7g12.5mm*
* DC630V: W+0.5mm
iLead Style
CodeLead StyleLead Spacing
A2
B1
C1
DB
E1/E2
K1
M1/M2
P1
S1/S2
Lead distance between reference and bottom planes.
M1, S1: H
M2, S2: H
E1: H = 17.5±0.5mm
E2: H = 20.0±0.5mm
0 = 16.0±0.5mm
0 = 20.0±0.5mm
Straight Long
Straight Long
Straight Long
Straight Taping
Straight Taping
Inside Crimp
Inside Crimp Taping
Outside Crimp
Outside Crimp Taping
2.5mm
5.0mm
10.0mm
2.5mm
5.0mm
5.0mm
5.0mm
2.5mm
2.5mm
2
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
!Note
sales representatives or product engineers before ordering.
• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
C49E.pdf
10.3.8
Radial Lead Type Monolithic Ceramic Capacitors
RPE Series (DC25V-DC100V)
L max.
■ Features
1. The RPE series capacitors have small dimensions,
large capacitance, and a capacity volume ratio of
10 micro F/cm cubed, close to that of electrolytic
capacitors. These do not have polarity.
2. These have excellent frequency characteristics and
due to these small internal inductance are suitable
for high frequencies.
3. These are not coated with wax so there is no change
in their exterior appearance due to the outflow of
wax during soldering or solvent during cleansing.
4. These are highly inflammable, having
characteristics equivalent to the UL94V-0 standard.
Dimensions code: 2/3
Lead style code: P1
∗
F±0.8
∗ Coating extension does not exceed the end of the lead bend.
· Lead Wire : Solder Coated Copper Wire or
Solder Coated CP Wire
∗ Coating extension does not exceed the end of the lead bend.
· Lead Wire : Solder Coated Copper Wire or
Solder Coated CP Wire
L max.
1.5 max.
T max.
W max.25.0 min.
(in mm)
0.52.55.03.55.0
0.55.05.03.55.0
0.52.56.3
0.55.06.34.55.0
0.55.07.05.07.5
0.55.0-7.57.5
0.55.0-10.010.0
0.510.0-12.512.5
Dimensions code: 5/6/7
Lead style code: B1/C1
F±0.8
· Lead Wire : Solder Coated Copper Wire or
Solder Coated CP Wire
ød : 0.5±0.05
(in mm)
0.55.0-8.510.0
Continued on the following page.
3
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Temperature Compensating TypeHigh Dielectric Constant Type
C49E.pdf
10.3.8
Dimensions
Code
Temp. Char.
Individual
Specification
Code
App
Bpp
2
Zpp
Individual
Specification
Code
Except
App
Bpp
Zpp
3, 4, 8
5, 6, 7
Temperature Characteristics
Nominal Capacitance
Capacitance Tolerance
Rated Voltage
Manufacturer's Identification
C0GX7RY5V
102J222K224Z5A
Marked on both sides
682
M
J5A
M
103
J5A
M
333
J5A
224
M
K5C
M
684
K5C
M
225
K5C
Marked with code (C0G char.: A, X7R char.: C, Y5V char.: F)
A part is omitted (Please refer to the marking example.)
Under 100pF: Actual value 100pF and over: marked with 3 figures
Marked with code
Marked with code (DC25V: 2, DC50V: 5, DC100V: 1)
A part is omitted (Please refer to the marking example.)
Marked with
M
A part is omitted (Please refer to the marking example.)
474
M
Z5F
—
—
4
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Temperature Compensating Type, C0G Characteristics
Part Number
Temp.
Char.
Rated
Voltage
(Vdc)
Capacitance
(pF)
RPE5C1H1R0C2ppB03pC0G501.0 ±0.25pF5.0 x 3.52.52.5P1S1S2
RPE5C1H1R0C2ppB03pC0G501.0 ±0.25pF5.0 x 3.52.55.0K1M1M2
RPE5C1H2R0C2ppB03pC0G502.0 ±0.25pF5.0 x 3.52.52.5P1S1S2
RPE5C1H2R0C2ppB03pC0G502.0 ±0.25pF5.0 x 3.52.55.0K1M1M2
RPE5C1H3R0C2ppB03pC0G503.0 ±0.25pF5.0 x 3.52.52.5P1S1S2
RPE5C1H3R0C2ppB03pC0G503.0 ±0.25pF5.0 x 3.52.55.0K1M1M2
RPE5C1H4R0C2ppB03pC0G504.0 ±0.25pF5.0 x 3.52.52.5P1S1S2
RPE5C1H4R0C2ppB03pC0G504.0 ±0.25pF5.0 x 3.52.55.0K1M1M2
RPE5C1H5R0C2ppB03pC0G505.0 ±0.25pF5.0 x 3.52.52.5P1S1S2
RPE5C1H5R0C2ppB03pC0G505.0 ±0.25pF5.0 x 3.52.55.0K1M1M2
RPE5C1H6R0D2ppB03pC0G506.0 ±0.5pF5.0 x 3.52.52.5P1S1S2
RPE5C1H6R0D2ppB03pC0G506.0 ±0.5pF5.0 x 3.52.55.0K1M1M2
RPE5C1H7R0D2ppZ03pC0G507.0 ±0.5pF5.0 x 3.52.52.5P1S1S2
RPE5C1H7R0D2ppZ03pC0G507.0 ±0.5pF5.0 x 3.52.55.0K1M1M2
RPE5C1H8R0D2ppZ03pC0G508.0 ±0.5pF5.0 x 3.52.52.5P1S1S2
RPE5C1H8R0D2ppZ03pC0G508.0 ±0.5pF5.0 x 3.52.55.0K1M1M2
RPE5C1H9R0D2ppZ03pC0G509.0 ±0.5pF5.0 x 3.52.52.5P1S1S2
RPE5C1H9R0D2ppZ03pC0G509.0 ±0.5pF5.0 x 3.52.55.0K1M1M2
RPE5C1H100J2ppZ03pC0G5010 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H100J2ppZ03pC0G5010 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H120J2ppZ03pC0G5012 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H120J2ppZ03pC0G5012 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H150J2ppZ03pC0G5015 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H150J2ppZ03pC0G5015 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H180J2ppZ03pC0G5018 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H180J2ppZ03pC0G5018 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H220J2ppZ03pC0G5022 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H220J2ppZ03pC0G5022 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H270J2ppZ03pC0G5027 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H270J2ppZ03pC0G5027 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H330J2ppZ03pC0G5033 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H330J2ppZ03pC0G5033 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H390J2ppZ03pC0G5039 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H390J2ppZ03pC0G5039 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H470J2ppZ03pC0G5047 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H470J2ppZ03pC0G5047 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H560J2ppZ03pC0G5056 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H560J2ppZ03pC0G5056 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H680J2ppZ03pC0G5068 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H680J2ppZ03pC0G5068 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H820J2ppZ03pC0G5082 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H820J2ppZ03pC0G5082 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H101J2ppA03pC0G50100 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H101J2ppA03pC0G50100 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H121J2ppA03pC0G50120 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H121J2ppA03pC0G50120 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H151J2ppA03pC0G50150 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H151J2ppA03pC0G50150 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H181J2ppA03pC0G50180 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H181J2ppA03pC0G50180 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H221J2ppA03pC0G50220 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H221J2ppA03pC0G50220 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H271J2ppA03pC0G50270 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H271J2ppA03pC0G50270 ±5%5.0 x 3.52.55.0K1M1M2
Dimensions
LxW
(mm)
Dimension
T
(mm)
Lead
Space F
(mm)
Lead Style
Code
Bulk
Lead Style
Code
Taping (1)
Continued on the following page.
Lead Style
Code
Taping (2)
1
5
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RPE5C1H331J2ppA03pC0G50330 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H331J2ppA03pC0G50330 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H391J2ppA03pC0G50390 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H391J2ppA03pC0G50390 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H471J2ppA03pC0G50470 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H471J2ppA03pC0G50470 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H561J2ppA03pC0G50560 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H561J2ppA03pC0G50560 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H681J2ppA03pC0G50680 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H681J2ppA03pC0G50680 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H821J2ppA03pC0G50820 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H821J2ppA03pC0G50820 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H102J2ppA03pC0G501000 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C1H102J2ppA03pC0G501000 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C1H122J2ppA03pC0G501200 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C1H122J2ppA03pC0G501200 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H152J2ppA03pC0G501500 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C1H152J2ppA03pC0G501500 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H182J2ppC03pC0G501800 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C1H182J2ppA03pC0G501800 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H222J2ppC03pC0G502200 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C1H222J2ppA03pC0G502200 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H272J2ppC03pC0G502700 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C1H272J2ppA03pC0G502700 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H332J2ppC03pC0G503300 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C1H332J2ppA03pC0G503300 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H392J2ppC03pC0G503900 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C1H392J2ppA03pC0G503900 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H472J2ppC03pC0G504700 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C1H472J2ppA03pC0G504700 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H562J2ppC03pC0G505600 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C1H562J2ppA03pC0G505600 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H682J2ppC03pC0G506800 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H822J2ppC03pC0G508200 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H103J2ppC03pC0G5010000 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C1H123J4ppF03pC0G5012000 ±5%7.5 x 5.03.155.0K1M1M2
RPE5C1H153J4ppF03pC0G5015000 ±5%7.5 x 5.03.155.0K1M1M2
RPE5C1H183J5ppX03pC0G5018000 ±5%7.5 x 7.54.05.0B1E1E2
RPE5C1H223J6ppF12pC0G5022000 ±5%10.0 x 10.04.05.0B1E1E2
RPE5C1H273J6ppF12pC0G5027000 ±5%10.0 x 10.04.05.0B1E1E2
RPE5C1H333J6ppF03pC0G5033000 ±5%10.0 x 10.04.05.0B1E1E2
RPE5C1H393J6ppF03pC0G5039000 ±5%10.0 x 10.04.05.0B1E1E2
RPE5C1H473J7ppF03pC0G5047000 ±5%12.5 x 12.55.010.0C1--
RPE5C1H563J7ppF03pC0G5056000 ±5%12.5 x 12.55.010.0C1--
RPE5C1H683J7ppF03pC0G5068000 ±5%12.5 x 12.55.010.0C1--
RPE5C2A1R0C2ppB03pC0G1001.0 ±0.25pF5.0 x 3.52.52.5P1S1S2
RPE5C2A1R0C2ppB03pC0G1001.0 ±0.25pF5.0 x 3.52.55.0K1M1M2
RPE5C2A2R0C2ppB03pC0G1002.0 ±0.25pF5.0 x 3.52.52.5P1S1S2
RPE5C2A2R0C2ppB03pC0G1002.0 ±0.25pF5.0 x 3.52.55.0K1M1M2
RPE5C2A3R0C2ppB03pC0G1003.0 ±0.25pF5.0 x 3.52.52.5P1S1S2
RPE5C2A3R0C2ppB03pC0G1003.0 ±0.25pF5.0 x 3.52.55.0K1M1M2
RPE5C2A4R0C2ppB03pC0G1004.0 ±0.25pF5.0 x 3.52.52.5P1S1S2
RPE5C2A4R0C2ppB03pC0G1004.0 ±0.25pF5.0 x 3.52.55.0K1M1M2
RPE5C2A5R0C2ppB03pC0G1005.0 ±0.25pF5.0 x 3.52.52.5P1S1S2
RPE5C2A5R0C2ppB03pC0G1005.0 ±0.25pF5.0 x 3.52.55.0K1M1M2
RPE5C2A6R0D2ppB03pC0G1006.0 ±0.5pF5.0 x 3.52.52.5P1S1S2
RPE5C2A6R0D2ppB03pC0G1006.0 ±0.5pF5.0 x 3.52.55.0K1M1M2
Continued on the following page.
6
Lead Style
Code
Taping (2)
C49E.pdf
10.3.8
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RPE5C2A7R0D2ppZ03pC0G1007.0 ±0.5pF5.0 x 3.52.52.5P1S1S2
RPE5C2A7R0D2ppZ03pC0G1007.0 ±0.5pF5.0 x 3.52.55.0K1M1M2
RPE5C2A8R0D2ppZ03pC0G1008.0 ±0.5pF5.0 x 3.52.52.5P1S1S2
RPE5C2A8R0D2ppZ03pC0G1008.0 ±0.5pF5.0 x 3.52.55.0K1M1M2
RPE5C2A9R0D2ppZ03pC0G1009.0 ±0.5pF5.0 x 3.52.52.5P1S1S2
RPE5C2A9R0D2ppZ03pC0G1009.0 ±0.5pF5.0 x 3.52.55.0K1M1M2
RPE5C2A100J2ppZ03pC0G10010 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A100J2ppZ03pC0G10010 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A120J2ppZ03pC0G10012 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A120J2ppZ03pC0G10012 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A150J2ppZ03pC0G10015 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A150J2ppZ03pC0G10015 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A180J2ppZ03pC0G10018 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A180J2ppZ03pC0G10018 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A220J2ppZ03pC0G10022 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A220J2ppZ03pC0G10022 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A270J2ppZ03pC0G10027 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A270J2ppZ03pC0G10027 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A330J2ppZ03pC0G10033 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A330J2ppZ03pC0G10033 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A390J2ppZ03pC0G10039 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A390J2ppZ03pC0G10039 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A470J2ppZ03pC0G10047 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A470J2ppZ03pC0G10047 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A560J2ppZ03pC0G10056 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A560J2ppZ03pC0G10056 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A680J2ppZ03pC0G10068 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A680J2ppZ03pC0G10068 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A820J2ppZ03pC0G10082 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A820J2ppZ03pC0G10082 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A101J2ppA03pC0G100100 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A101J2ppA03pC0G100100 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A121J2ppA03pC0G100120 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A121J2ppA03pC0G100120 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A151J2ppA03pC0G100150 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A151J2ppA03pC0G100150 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A181J2ppA03pC0G100180 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A181J2ppA03pC0G100180 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A221J2ppA03pC0G100220 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A221J2ppA03pC0G100220 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A271J2ppA03pC0G100270 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A271J2ppA03pC0G100270 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A331J2ppA03pC0G100330 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A331J2ppA03pC0G100330 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A391J2ppA03pC0G100390 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A391J2ppA03pC0G100390 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A471J2ppA03pC0G100470 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A471J2ppA03pC0G100470 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A561J2ppA03pC0G100560 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A561J2ppA03pC0G100560 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A681J2ppA03pC0G100680 ±5%5.0 x 3.52.52.5P1S1S2
RPE5C2A681J2ppA03pC0G100680 ±5%5.0 x 3.52.55.0K1M1M2
RPE5C2A821J2ppA03pC0G100820 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C2A821J2ppA03pC0G100820 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C2A102J2ppA03pC0G1001000 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C2A102J2ppA03pC0G1001000 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C2A122J2ppA03pC0G1001200 ±5%5.0 x 3.53.152.5P1S1S2
Continued on the following page.
Lead Style
Code
Taping (2)
C49E.pdf
10.3.8
1
7
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RPE5C2A122J2ppA03pC0G1001200 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C2A152J2ppA03pC0G1001500 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C2A152J2ppA03pC0G1001500 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C2A182J2ppD03pC0G1001800 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C2A182J2ppD03pC0G1001800 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C2A222J2ppD03pC0G1002200 ±5%5.0 x 3.53.152.5P1S1S2
RPE5C2A222J2ppD03pC0G1002200 ±5%5.0 x 3.53.155.0K1M1M2
RPE5C2A272J3ppD03pC0G1002700 ±5%5.0 x 4.53.152.5P1S1S2
RPE5C2A272J3ppD03pC0G1002700 ±5%5.0 x 4.53.155.0K1M1M2
RPE5C2A332J3ppD03pC0G1003300 ±5%5.0 x 4.53.152.5P1S1S2
RPE5C2A332J3ppD03pC0G1003300 ±5%5.0 x 4.53.155.0K1M1M2
RPE5C2A392J3ppD03pC0G1003900 ±5%5.0 x 4.53.152.5P1S1S2
RPE5C2A392J3ppD03pC0G1003900 ±5%5.0 x 4.53.155.0K1M1M2
RPE5C2A472J4ppX03pC0G1004700 ±5%7.5 x 5.02.55.0K1M1M2
RPE5C2A562J4ppF03pC0G1005600 ±5%7.5 x 5.03.155.0K1M1M2
RPE5C2A682J4ppF03pC0G1006800 ±5%7.5 x 5.03.155.0K1M1M2
RPE5C2A822J5ppX03pC0G1008200 ±5%7.5 x 7.54.05.0B1E1E2
RPE5C2A103J5ppX03pC0G10010000 ±5%7.5 x 7.54.05.0B1E1E2
RPE5C2A123J5ppX03pC0G10012000 ±5%7.5 x 7.54.05.0B1E1E2
RPE5C2A153J6ppX13pC0G10015000 ±5%10.0 x 10.04.05.0B1E1E2
RPE5C2A183J6ppX13pC0G10018000 ±5%10.0 x 10.04.05.0B1E1E2
RPE5C2A223J6ppX03pC0G10022000 ±5%10.0 x 10.04.05.0B1E1E2
RPE5C2A273J6ppX03pC0G10027000 ±5%10.0 x 10.04.05.0B1E1E2
RPE5C2A333J6ppF03pC0G10033000 ±5%10.0 x 10.04.05.0B1E1E2
RPE5C2A393J7ppX03pC0G10039000 ±5%12.5 x 12.55.010.0C1--
RPE5C2A473J7ppF03pC0G10047000 ±5%12.5 x 12.55.010.0C1--
RPE5C2A563J7ppF03pC0G10056000 ±5%12.5 x 12.55.010.0C1--
Two blank columns are filled with the lead style code. Please refer to the 3 columns on the right for the appropriate code.
The last blank column is filled with the packaging code. (B: bulk, A: ammo pack)
Lead Style
Code
Taping (2)
C49E.pdf
10.3.8
High Dielectric Constant Type, X7R Characteristics
Part Number
Temp.
Char.
Rated
Voltage
(Vdc)
Capacitance
RPER71E474K2ppA03pX7R250.47µF ±10%5.0 x 3.53.155.0K1M1M2
RPER71E684K2ppC03pX7R250.68µF ±10%5.0 x 3.53.155.0K1M1M2
RPER71E105K2ppC03pX7R251.0µF ±10%5.0 x 3.53.155.0K1M1M2
RPER71E155K3ppC07pX7R251.5µF ±10%5.0 x 4.53.155.0K1M1M2
RPER71E225K3ppC07pX7R252.2µF ±10%5.0 x 4.53.155.0K1M1M2
RPER71H221K2ppA03pX7R50220pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H221K2ppA03pX7R50220pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H331K2ppA03pX7R50330pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H331K2ppA03pX7R50330pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H471K2ppA03pX7R50470pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H471K2ppA03pX7R50470pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H681K2ppA03pX7R50680pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H681K2ppA03pX7R50680pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H102K2ppA03pX7R501000pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H102K2ppA03pX7R501000pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H152K2ppA03pX7R501500pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H152K2ppA03pX7R501500pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H222K2ppA03pX7R502200pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H222K2ppA03pX7R502200pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H332K2ppA03pX7R503300pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H332K2ppA03pX7R503300pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H472K2ppA03pX7R504700pF ±10%5.0 x 3.52.52.5P1S1S2
8
Dimensions
LxW
(mm)
Dimension
T
(mm)
Lead
Space F
(mm)
Lead Style
Code
Bulk
Lead Style
Code
Taping (1)
Continued on the following page.
Lead Style
Taping (2)
Code
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RPER71H472K2ppA03pX7R504700pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H682K2ppA03pX7R506800pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H682K2ppA03pX7R506800pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H103K2ppA03pX7R5010000pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H103K2ppA03pX7R5010000pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H153K2ppA03pX7R5015000pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H153K2ppA03pX7R5015000pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H223K2ppA03pX7R5022000pF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H223K2ppA03pX7R5022000pF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H333K2ppA03pX7R5033000pF ±10%5.0 x 3.53.152.5P1S1S2
RPER71H333K2ppA03pX7R5033000pF ±10%5.0 x 3.53.155.0K1M1M2
RPER71H473K2ppA03pX7R5047000pF ±10%5.0 x 3.53.152.5P1S1S2
RPER71H473K2ppA03pX7R5047000pF ±10%5.0 x 3.53.155.0K1M1M2
RPER71H683K2ppA03pX7R5068000pF ±10%5.0 x 3.53.152.5P1S1S2
RPER71H683K2ppA03pX7R5068000pF ±10%5.0 x 3.53.155.0K1M1M2
RPER71H104K2ppA03pX7R500.10µF ±10%5.0 x 3.53.152.5P1S1S2
RPER71H104K2ppA03pX7R500.10µF ±10%5.0 x 3.53.155.0K1M1M2
RPER71H154K2ppC03pX7R500.15µF ±10%5.0 x 3.53.152.5P1S1S2
RPER71H154K2ppC03pX7R500.15µF ±10%5.0 x 3.53.155.0K1M1M2
RPER71H224K2ppC03pX7R500.22µF ±10%5.0 x 3.53.152.5P1S1S2
RPER71H224K2ppC03pX7R500.22µF ±10%5.0 x 3.53.155.0K1M1M2
RPER71H334K2ppC03pX7R500.33µF ±10%5.0 x 3.52.52.5P1S1S2
RPER71H334K2ppC03pX7R500.33µF ±10%5.0 x 3.52.55.0K1M1M2
RPER71H474K2ppC03pX7R500.47µF ±10%5.0 x 3.53.152.5P1S1S2
RPER71H474K2ppC03pX7R500.47µF ±10%5.0 x 3.53.155.0K1M1M2
RPER71H684K3ppC03pX7R500.68µF ±10%5.0 x 4.53.152.5P1S1S2
RPER71H684K3ppC03pX7R500.68µF ±10%5.0 x 4.53.155.0K1M1M2
RPER71H105K3ppC07pX7R501.0µF ±10%5.0 x 4.53.152.5P1S1S2
RPER71H105K3ppC07pX7R501.0µF ±10%5.0 x 4.53.155.0K1M1M2
RPER71H155K8ppC03pX7R501.5µF ±10%7.5 x 5.54.05.0K1M1M2
RPER71H225K8ppC03pX7R502.2µF ±10%7.5 x 5.54.05.0K1M1M2
RPER71H335K5ppC03pX7R503.3µF ±10%7.5 x 7.55.05.0B1E1E2
RPER71H475K5ppC03pX7R504.7µF ±10%7.5 x 7.54.05.0B1E1E2
RPER72A221K2ppB03pX7R100220pF ±10%5.0 x 3.52.52.5P1S1S2
RPER72A221K2ppB03pX7R100220pF ±10%5.0 x 3.52.55.0K1M1M2
RPER72A331K2ppB03pX7R100330pF ±10%5.0 x 3.52.52.5P1S1S2
RPER72A331K2ppB03pX7R100330pF ±10%5.0 x 3.52.55.0K1M1M2
RPER72A471K2ppB03pX7R100470pF ±10%5.0 x 3.52.52.5P1S1S2
RPER72A471K2ppB03pX7R100470pF ±10%5.0 x 3.52.55.0K1M1M2
RPER72A681K2ppB03pX7R100680pF ±10%5.0 x 3.52.52.5P1S1S2
RPER72A681K2ppB03pX7R100680pF ±10%5.0 x 3.52.55.0K1M1M2
RPER72A102K2ppA03pX7R1001000pF ±10%5.0 x 3.52.52.5P1S1S2
RPER72A102K2ppA03pX7R1001000pF ±10%5.0 x 3.52.55.0K1M1M2
RPER72A152K2ppA03pX7R1001500pF ±10%5.0 x 3.52.52.5P1S1S2
RPER72A152K2ppA03pX7R1001500pF ±10%5.0 x 3.52.55.0K1M1M2
RPER72A222K2ppA03pX7R1002200pF ±10%5.0 x 3.52.52.5P1S1S2
RPER72A222K2ppA03pX7R1002200pF ±10%5.0 x 3.52.55.0K1M1M2
RPER72A332K2ppA03pX7R1003300pF ±10%5.0 x 3.52.52.5P1S1S2
RPER72A332K2ppA03pX7R1003300pF ±10%5.0 x 3.52.55.0K1M1M2
RPER72A472K2ppA03pX7R1004700pF ±10%5.0 x 3.52.52.5P1S1S2
RPER72A472K2ppA03pX7R1004700pF ±10%5.0 x 3.52.55.0K1M1M2
RPER72A682K2ppA03pX7R1006800pF ±10%5.0 x 3.52.52.5P1S1S2
RPER72A682K2ppA03pX7R1006800pF ±10%5.0 x 3.52.55.0K1M1M2
RPER72A103K2ppA03pX7R10010000pF ±10%5.0 x 3.53.152.5P1S1S2
RPER72A103K2ppA03pX7R10010000pF ±10%5.0 x 3.53.155.0K1M1M2
RPER72A153K2ppA03pX7R10015000pF ±10%5.0 x 3.53.152.5P1S1S2
RPER72A153K2ppA03pX7R10015000pF ±10%5.0 x 3.53.155.0K1M1M2
Continued on the following page.
Lead Style
Code
Taping (2)
C49E.pdf
10.3.8
1
9
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RPER72A223K2ppA03pX7R10022000pF ±10%5.0 x 3.53.152.5P1S1S2
RPER72A223K2ppA03pX7R10022000pF ±10%5.0 x 3.53.155.0K1M1M2
RPER72A333K2ppC03pX7R10033000pF ±10%5.0 x 3.53.152.5P1S1S2
RPER72A333K2ppC03pX7R10033000pF ±10%5.0 x 3.53.155.0K1M1M2
RPER72A473K2ppC03pX7R10047000pF ±10%5.0 x 3.53.152.5P1S1S2
RPER72A473K2ppC03pX7R10047000pF ±10%5.0 x 3.53.155.0K1M1M2
RPER72A683K3ppC07pX7R10068000pF ±10%5.0 x 4.53.152.5P1S1S2
RPER72A683K3ppC07pX7R10068000pF ±10%5.0 x 4.53.155.0K1M1M2
RPER72A104K3ppC07pX7R1000.10µF ±10%5.0 x 4.53.152.5P1S1S2
RPER72A104K3ppC07pX7R1000.10µF ±10%5.0 x 4.53.155.0K1M1M2
RPER72A154K8ppC03pX7R1000.15µF ±10%7.5 x 5.54.05.0K1M1M2
RPER72A224K8ppC03pX7R1000.22µF ±10%7.5 x 5.54.05.0K1M1M2
RPER72A334K5ppC03pX7R1000.33µF ±10%7.5 x 7.54.05.0B1E1E2
RPER72A474K8ppC03pX7R1000.47µF ±10%7.5 x 5.54.05.0K1M1M2
RPER72A684K6ppF14pX7R1000.68µF ±10%10.0 x 10.04.05.0B1E1E2
RPER72A105K5ppC03pX7R1001.0µF ±10%7.5 x 7.54.05.0B1E1E2
RPER72A155K7ppF03pX7R1001.5µF ±10%12.5 x 12.55.010.0C1--
RPER72A225K7ppF03pX7R1002.2µF ±10%12.5 x 12.55.010.0C1--
Two blank columns are filled with the lead style code. Please refer to the 3 columns on the right for the appropriate code.
The last blank column is filled with the packaging code. (B: bulk, A: ammo pack)
Lead Style
Code
Taping (2)
C49E.pdf
10.3.8
High Dielectric Constant Type, Y5V Characteristics
Part Number
Temp.
Char.
Rated
Voltage
(Vdc)
Capacitance
RPEF51H102Z2ppA03pY5V501000pF +80/-20%5.0 x 3.52.52.5P1S1S2
RPEF51H102Z2ppA03pY5V501000pF +80/-20%5.0 x 3.52.55.0K1M1M2
RPEF51H222Z2ppA03pY5V502200pF +80/-20%5.0 x 3.52.52.5P1S1S2
RPEF51H222Z2ppA03pY5V502200pF +80/-20%5.0 x 3.52.55.0K1M1M2
RPEF51H472Z2ppA03pY5V504700pF +80/-20%5.0 x 3.52.52.5P1S1S2
RPEF51H472Z2ppA03pY5V504700pF +80/-20%5.0 x 3.52.55.0K1M1M2
RPEF51H103Z2ppA03pY5V5010000pF +80/-20% 5.0 x 3.52.52.5P1S1S2
RPEF51H103Z2ppA03pY5V5010000pF +80/-20% 5.0 x 3.52.55.0K1M1M2
RPEF51H223Z2ppA03pY5V5022000pF +80/-20% 5.0 x 3.52.52.5P1S1S2
RPEF51H223Z2ppA03pY5V5022000pF +80/-20% 5.0 x 3.52.55.0K1M1M2
RPEF51H473Z2ppA03pY5V5047000pF +80/-20% 5.0 x 3.52.52.5P1S1S2
RPEF51H473Z2ppA03pY5V5047000pF +80/-20% 5.0 x 3.52.55.0K1M1M2
RPEF51H104Z2ppA03pY5V500.10µF +80/-20%5.0 x 3.52.52.5P1S1S2
RPEF51H104Z2ppA03pY5V500.10µF +80/-20%5.0 x 3.52.55.0K1M1M2
RPEF51H224Z2ppA03pY5V500.22µF +80/-20%5.0 x 3.53.152.5P1S1S2
RPEF51H224Z2ppA03pY5V500.22µF +80/-20%5.0 x 3.53.155.0K1M1M2
RPEF51H474Z2ppC03pY5V500.47µF +80/-20%5.0 x 3.53.152.5P1S1S2
RPEF51H474Z2ppC03pY5V500.47µF +80/-20%5.0 x 3.53.155.0K1M1M2
Two blank columns are filled with the lead style code. Please refer to the 3 columns on the right for the appropriate code.
The last blank column is filled with the packaging code. (B: bulk, A: ammo pack)
Dimensions
LxW
(mm)
Dimension
T
(mm)
Lead
Space F
(mm)
Lead Style
Code
Bulk
Lead Style
Code
Taping (1)
Lead Style
Code
Taping (2)
10
Approx. 2mm
Metal balls
Continued on the following page.
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Char. X7R : -55 to +125˚C
Char. Y5V : -30 to +85˚C–
The rated voltage is defined as the maximum voltage
which may be applied continuously to the capacitor.
See previous pages
When AC voltage is superimposed on DC voltage, V
or V
, whichever is larger, should be maintained
0-P
within the rated voltage range.
No defects or abnormalitiesVisual inspection
See previous pagesVisual inspection, Vernier Caliper
The capacitors should not be damaged when DC
voltages of 300%* of the rated voltage are applied
No defects or abnormalities
between the terminals for 1 to 5 sec.
(Charge/Discharge current V 50mA)
*250% for char. X7R, Y5V
The capacitor is placed in a
container with metal balls of 1mm
diameter so that each terminal,
short-circuited, is kept
approximately 2mm from the balls
No defects or abnormalities
as shown in the figure, and 250%
of the rated DC voltage is
impressed for 1 to 5 sec. between
capacitor terminals and metal
balls. (Charge/Discharge current
V 50mA)
C V 0.047µF : 10,000MΩ min.
C G 0.047µF : 500MΩ • µF min.
C : Nominal capacitance
Within the specified tolerance
The insulation resistance should be measured with a
DC voltage not exceeding the rated voltage at normal
temperature and humidity and within 2 min. of charging.
(Charge/Discharge current V 50mA)
The capacitance, Q/D.F. should be measured at 25˚C
at the frequency and voltage shown in the table.
Test Method
1
P-P
8 Q/Dissipation Factor (D.F.)
Capacitance
Change
Capacitance
Temperature
9
Characteristics
Temperature
Coefficient
Capacitance
Drift
30pF min. : Q U 1,000
30pF max. : Q U 400+20C
C : Nominal capacitance (pF)
Within the specified tolerance
(Table A on last column)
Within the specified tolerance
(Table A on last column)
Within T0.2% or T0.05pF
(whichever is larger)
Char. X7R : 0.025 max.
Char. Y5V : 0.05 max.
Within the specified tolerance
(Table B on last column)
Capacitance
Item
Frequency
Voltage
1000pF and
below
more than
1000pF
1T0.1MHz1T0.1kHz
AC0.5 to 5V
(r.m.s.)
AC1T0.2V
(r.m.s.)
The capacitance change should be measured after 5
min. at each specified temperature stage.
(1) Temperature Compensating Type
The temperature coefficient is determined using the
capacitance measured in step 3 as a reference. When
cycling the temperature sequentially from step 1
through 5 (-55 to +125˚C) the capacitance should be
within the specified tolerance for the temperature
coefficient and capacitance change as shown in Table
A. The capacitance drift is calculated by dividing the
differences between the maximum and minimum
measured values in step 1, 3 and 5 by the cap. value in
step 3.
Step
1
2
3
4
5
Temperature (˚C)
-25±2
-55±3
-25±2
125±3
-25±2
(2) High Dielectric Constant Type
The ranges of capacitance change compared with the
25˚C value over the temperature ranges as shown in
Table B should be within the specified ranges.
11
F
Continued from the preceding page.
Continued on the following page.
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
As in the figure, fix the capacitor body, apply the force
gradually to each lead in the radial direction of the
capacitor until reaching 10N and then keep the force
applied for 10T1 sec.
10
Tensile
Strength
Terminal
Strength
Termination not to be broken or loosened
Each lead wire should be subjected to a force of 2.5N
Bending
Strength
Termination not to be broken or loosened
and then bent 90˚ at the point of egress in one
direction. Each wire is then returned to the original
position and bent 90˚ in the opposite direction at the
rate of one bend per 2 to 3 sec.
No defects or abnormalities
Within the specified tolerance
30pF min. : Q U 1,000
30pF max. : Q U 400+20C
C : Nominal capacitance (pF)
Char. X7R : 0.025 max.
Char. Y5V : 0.05 max.
The capacitor is soldered securely to a supporting
terminal and a 10 to 55Hz vibration of 1.5mm peak-
peak amplitude is applied for 6 hrs. total, 2 hrs. in each
mutually perpendicular direction. Allow 1 min. to cycle
the frequency from 10Hz to 55Hz and the converse.
Vibration
11
Resistance
Appearance
Capacitance
Q/D.F.
The terminal of a capacitor is dipped into a 25% ethanol
(JIS-K-8101) solution of rosin (JIS-K-5902) and
12 Solderability of Leads
Lead wire should be soldered with uniform coating on the axial
direction over 3/4 of the circumferential direction.
then into molten solder for 2T0.5 sec. In both cases the
depth of dipping is up to about 1.5mm to 2mm from the
terminal body.
Temp. of solder : 245T5˚C Lead Free Solder (Sn-3.0Ag-0.5Cu)
Temp. of solder : 235T5˚C H60A or H63A Eutectic Solder
No defects or abnormalitiesThe lead wire is immersed in the melted solder 1.5mm
Within T2.5% or T0.25pF
(whichever is larger)
Char. X7R : Within T7.5%
Char. Y5V : Within T20%
to 2mm from the main body at 350T10˚C for 3.5T0.5
sec. The specified items are measured after 24T2 hrs.
(temperature compensating type) or 48T4 hrs. (high
dielectric type).
• Initial measurement for high dielectric constant type
No defects
The capacitors are heat treated for 1 hr. at 150
allowed to set at room temperature for 48T4 hrs., and
W 0
Y10
˚C,
Resistance
to
13
Soldering
Heat
Appearance
Capacitance
Change
Dielectric
Strength
(Between
Terminals)
given an initial measurement.
First, repeat the following temperature/time cycle 5
times :
lowest operating temperature T3˚C/30T3 min.
ordinary temperature/3 min. max.
highest operating temperature T3˚C/30T3 min.
ordinary temperature/3 min. max.
Next, repeat twice the successive cycles of immersion,
each cycle consisting of immersion in a fresh water at
W5
65
˚C for 15 min. and immersion in a saturated
Y0
aqueous solution of salt at 0T3˚C for 15 min.
The capacitor is then promptly washed in running
water, dried with a drying cloth, and allowed to sit at
Temperature
and
14
Immersion
Cycle
Appearance
Capacitance
Change
Q/D.F.
Insulation
Resistance
No defects or abnormalities
Within T5% or T0.5pF
(whichever is larger)
30pF min. : Q U 350
10pF to 30pF : Q U 275+5C/2
10pF max. : Q U 200+10C
C : Nominal capacitance (pF)
1,000MΩ or 50MΩ • µF min.
(whichever is smaller)
Char. X7R : Within T12.5%
Char. Y5V : Within T30%
Char. X7R : 0.05 max.
Char. Y5V : 0.075 max.
room temperature for 24T2 hrs. (temperature
Dielectric
Strength
(Between
Terminals)
No defects or abnormalities
compensating type) or 48T4 hrs. (high dielectric type).
• Initial measurement for high dielectric constant type
The capacitors are heat treated for 1 hr. at
W 0
150
˚C, allowed to sit at room temperature for 48
Y10
T4 hrs., and given an initial measurement.
12
Continued from the preceding page.
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
10pF to 30pF : Q U 275+5C/2
10pF max. : Q U 200+10C
C : Nominal capacitance (pF)
Char. X7R : Within T12.5%
Char. Y5V : Within T30%
Char. X7R : 0.05 max.
Char. Y5V : 0.075 max.
Set the capacitor for 500
95% humidity. Remove and set for 24T2 hrs.
(temperature compensating type) and 48T4 hrs. (high
dielectric constant type) at room temperature, then
measure.
1,000MΩ or 50MΩ • µF min.
(whichever is smaller)
No defects or abnormalities
Within T7.5% or T0.75pF
(whichever is larger)
30pF min. : Q U 200
30pF max. : Q U 100+10C/3
C : Nominal capacitance (pF)
500MΩ or 25MΩ • µF min.
Char. X7R : Within T12.5%
Char. Y5V : Within T30%
Char. X7R : 0.05 max.
Char. Y5V : 0.075 max.
Apply the rated voltage for 500
in 90 to 95% humidity. Remove and set for 24T2 hrs.
(temperature compensating type) and 48T4 hrs. (high
dielectric constant type) at room temperature, then
measure.
(Charge/Discharge current V 50mA)
(whichever is smaller)
No defects or abnormalitiesApply 200% of the rated voltage for 1000
Within T3% or T0.3pF
(whichever is larger)
30pF min. : Q U 350
10pF to 30pF : Q U 275+5C/2
10pF max. : Q U 200+10C
C : Nominal capacitance (pF)
Char. X7R : Within T12.5%
Char. Y5V : Within T30%
Char. X7R : 0.04 max.
Char. Y5V : 0.075 max.
the maximum operating temperature. Remove and set
for 24T2 hrs. (temperature compensating type) and 48
T4 hrs. (high dielectric constant type) at room
temperature, then measure.
(Charge/Discharge current V 50mA)
• Initial measurement for high dielectric constant type
A voltage treatment should be given to the capacitor in
1,000MΩ or 50MΩ • µF min.
(whichever is smaller)
which a DC voltage of 200% of the rated voltage is
applied for 1 hr. at the maximum operating temperature
T3˚C. Then set for 48T4 hrs. at room temperature and
conduct initial measurement.
No defects or abnormalities
The capacitor should be fully immersed, unagitated, in
reagent at 20 to 25˚C for 30T5 sec. and then remove
gently. Marking on the surface of the capacitor should
Legible
immediately be visually examined.
Reagent:
• Isopropyl alcohol
Test Method
W24
hrs. at 40T2˚C in 90 to
Y 0
W24
Y 0
hrs. at 40T2˚C and
W48
Y 0
1
hrs. at
Table A
Nominal Values
Char.
(ppm/˚C) *1
C0G
0T30
*1: Nominal values denote the temperature coefficient within a range of
25 to 125˚C
Capacitance Change from 25˚C (%)
-55˚C-30˚C-10˚C
Max.Max.Max.Min.Min.Min.
0.58-0.240.40-0.170.25-0.11
Table B
Char.Temp. Range
X7R
Y5V
-55 to +125˚C
-30 to +185˚C
Reference Temp.
25˚C
Cap. Change Rate
Within
T 15%
W22
Within
Y82
%
13
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
1. The RPE series capacitors have small dimensions,
large capacitance, and a capacity volume ratio of
∗
W max.25.0 min.
W1 max.
10 micro F/cm cubed, close to that of electrolytic
capacitors. These do not have polarity.
2. These have excellent frequency characteristics and
ød : 0.5±0.05
due to these small internal inductance are suitable
for high frequencies.
3. These are not coated with wax so there is no change
in their exterior appearance due to the outflow of
wax during soldering or solvent during cleansing.
Dimensions code: 2/3
Lead style code: K1
F±0.8
∗ Coating extension does not exceed the end of the lead bend.
· Lead Wire : Solder Coated Copper Wire or
Solder Coated CP Wire
(in mm)
4. These are highly inflammable, having
characteristics equivalent to the UL94V-0 standard.
■ Dimensions
5. We design capacitors in much more compact size than
current RPE Series, having reduces the diameter
by 70% max.
Dimensions and
Lead Style Code
2K1/2M10.5
3K1/3M10.5
5.5
5.5
Dimensions (mm)
6.0
4.0
7.5
5.0
T
Depends on
Part Number
List
5.0
5.0
dW1WL
F
■ Marking
Dimensions
Code
Rated Voltage
Temp. Char.
DC50V
X7R
225
2
3
Temperature Characteristics
Nominal Capacitance
Capacitance Tolerance
Rated Voltage
Manufacturer's Identification
Part Number
RPER71H105K2ppC60pX7R501.0 ±10%5.5 x 4.03.155.0K1M1-
RPER71H155K2ppC60pX7R501.5 ±10%5.5 x 4.03.155.0K1M1-
RPER71H225K2ppC60pX7R502.2 ±10%5.5 x 4.03.155.0K1M1-
RPER71H335K3ppC60pX7R503.3 ±10%5.5 x 5.04.05.0K1M1-
RPER71H475K3ppC60pX7R504.7 ±10%5.5 x 5.04.05.0K1M1-
Two blank columns are filled with the lead style code. Please refer to the 3 columns on the right for the appropriate code.
The last blank column is filled with the packaging code. (B: bulk, A: ammo pack)
Temp.
Char.
Rated
Voltage
Marked with code (X7R char.: C)
Marked with 3 figures
Marked with code
Marked with code (DC50V: 5)
Marked with
Capacitance
(Vdc)
(µF)
M
Dimensions
LxW
(mm)
Dimension
(mm)
M
K5C
M
475
K5C
T
Lead
Space F
(mm)
Lead Style
Code
Bulk
Lead Style
Code
Taping (1)
Lead Style
Code
Taping (2)
14
The capacitor should be firmly soldered to the
supporting lead wire and vibrated at a frequency range
of 10 to 55Hz, 1.5mm in total amplitude, with about a 1
minute rate of vibration change from 10Hz to 55Hz and
back to 10Hz. Apply for a total of 6 hrs., 2 hrs. each in 3
mutually perpendicular directions.
10
Vibration
Resistance
Appearance
No defects or abnormalities
As in the figure, fix the capacitor body, apply the force
gradually to each lead in the radial direction of the
capacitor until reaching 10N and then keep the force
applied for 10T1 sec.
9
Terminal
Strength
Tensile
Strength
Termination not to be broken or loosened
The capacitance change should be measured after
5 min. at each specified temperature stage.
8
Capacitance
Temperature
Characteristics
Within T15%
7 Dissipation Factor (D.F.)
0.025 max.
The capacitance/D.F. should be measured at the
frequency of 1T0.1kHz and a voltage of
AC1T0.2V(r.m.s.)
6 Capacitance
Within the specified tolerance
The insulation resistance should be measured with a
DC voltage not exceeding the rated voltage at normal
temperature and humidity and within 2 min. of
charging.
(Charge/Discharge current V 50mA)
5
Insulation
Resistance
Between
Terminals
500MΩ · µF min.
The capacitor should not be damaged when DC
voltage of 250% of the rated voltage is applied
between the terminations for 1 to 5 sec.
(Charge/Discharge current V 50mA)
4
Dielectric
Strength
Between
Terminals
No defects or abnormalities
Visual inspection, Vernier Caliper
3 Dimension and Marking
See previous pages
Visual inspection
2 Appearance
No defects or abnormalities
–
1
Operating Temperature
Range
-55 to +125˚C
No.Test MethodSpecificationsItem
Continued on the following page.
D.F.
0.025 max.
Capacitance
Within the specified tolerance
Each lead wire should be subjected to a force of 2.5N
and then bent 90˚ at the point of egress in one
direction. Each wire is then returned to the original
position and bent 90˚ in the opposite direction at the
rate of one bend per 2 to 3 sec.
Bending
Strength
Termination not to be broken or loosened
The capacitor is placed in a
container with metal balls of 1mm
diameter so that each terminal,
short-circuit, is kept approximately
2mm from the balls as shown in
the figure, and 250% of the rated
DC voltage is impressed for 1 to 5
sec. between capacitor terminals
and metal balls.
(Charge/Discharge current
V 50mA)
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
The capacitor should be fully immersed, unagitated, in
reagent at 20 to 25 ˚C for 30T5 sec. and then remove
gently. Marking on the surface of the capacitor should
immediately be visually examined.
Reagent :
• Isopropyl alcohol
17
Solvent
Resistance
Appearance
No defects or abnormalities
Apply a DC voltage of 150% of the rated voltage for
1000
WY48
0
hrs. at the maximum operating temperature.
Remove and set for 48T4 hrs. at room temperature,
then measure.
(Charge/Discharge current V 50mA)
• Pretreatment
Apply test voltage for 1 hr., at test temperature. Remove
and set for 48T4 hrs. at room temperature.
16
High
Temperature
Load
Appearance
No defects or abnormalities
Apply the rated voltage at 40T2˚C and relative humidity
of 90 to 95% for 500
WY24
0
hrs. Remove and set for
48T4 hrs. at room temperature, then measure.
(Charge/Discharge current V 50mA)
15
Humidity
Load
Appearance
No defects or abnormalities
Set the capacitor at 40T2˚C and relative humidity of 90
to 95% for 500
WY24
0
hrs. Remove and set for 48T4 hrs.
at room temperature, then measure.
14
Humidity
(Steady
State)
Appearance
No defects or abnormalities
The capacitor should be subjected to 200 temperature
cycles.
13
Temperature
Cycle
Appearance
No defects or abnormalities
The lead wire is immersed in the melted solder 1.5 to
2mm from the main body at 350T10˚C for 3.5T0.5 sec.
The specified items are measured after 48T4 hrs.
• Pretreatment
Perform a heat treatment at 150+0/-10˚C for 1 hr., and
then let sit at room temperature for 48T4 hrs.
12
Resistance
to
Soldering
Heat
Appearance
No defects or abnormalities
The terminal of a capacitor is dipped into a solution of
ethanol (JIS-K-8101) and rosin (JIS-K-5902) (25% rosin
in weight proportion) and then into molten solder (JISZ-3282) for 2T0.5 sec. In both cases the depth of
dipping is up to about 1.5 to 2mm from the terminal
body.
Temp. of solder: 245T5˚C Lead Free Solder (Sn-3.0Ag-0.5Cu)
235T5˚C H60A or H63A Eutectic Solder
11 Solderability of Leads
Lead wire should be soldered with uniform coating on the axial
direction over 3/4 of the circumferential direction.
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RH Series 150 deg. C max. (for Automotive) (DC50V-DC100V)
■ Features
1. Small size and large capacitance
2. Low ESR and ESL suitable for high frequency
3. Applied maximum temperature up to 150 deg. C
Note: Maximum accumulative time to 150 deg. C
is within 2000 hours.
4. Coated with epoxy (LxW=4.0x3.5mm) or
silicone (LxW=4.0x3.5mm over) resin which is
suitable for heat cycle.
5. The RH series meet AEC-Q200 reguirements.
C49E.pdf
10.3.8
3
Dimensions code: 1
Lead style code: A2
Dimensions code: 1
Lead style code: K1
L max.
1.5 max.
F±0.8
· Lead Wire : Solder Coated Copper Wire or
Solder Coated CP Wire
∗
F±0.8
∗ Coating extension does not exceed the end of the lead bend.
· Lead Wire : Solder Coated Copper Wire or
Solder Coated CP Wire
T max.
W max.25.0 min.
ød : 0.5±0.05
T max.L max.
W max.25.0 min.
W1 max.
ød : 0.5±0.05
(in mm)
(in mm)
Dimensions code: 2
Lead style code: A2
Dimensions code: 2
Lead style code: K1
L max.
1.5 max.
F±0.8
· Lead Wire : Solder Coated Copper Wire or
Solder Coated CP Wire
∗
F±0.8
∗ Coating extension does not exceed the end of the lead bend.
· Lead Wire : Solder Coated Copper Wire or
Solder Coated CP Wire
T max.
W max.25.0 min.
ød : 0.5±0.05
T max.L max.
W max.25.0 min.
W1 max.
ød : 0.5±0.05
(in mm)
(in mm)
■ Dimensions
Dimensions and
Lead Style Code
1A2/1DB
1K1/1M1
2A2/2DB
2K1/2M1
Dimensions (mm)
LWW1TFd
4.0
4.0
5.7
5.7
3.5
3.5
4.5
4.5
-
5.0
-
7.0
See
the individual
product
specifications
2.5
5.0
2.5
5.0
0.5
0.5
0.5
0.5
Continued on the following page.
17
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Marked with code (X8L char.: 8)
Marked with 3 figures
Marked with code
Marked with code (DC50V: 5, DC100V: 1)
A part is omitted (Please refer to the marking example.)
Marked with
M
A part is omitted (Please refer to the marking example.)
(Vdc)
Capacitance
8
104K
105
M
K58
Dimensions
LxW
(mm)
Dimension
T
(mm)
Lead
Space F
(mm)
Lead Style
Code
Bulk
8
103K
104
M
K18
Lead Style
Code
Taping (1)
Lead Style
Code
Taping (2)
RHEL81H102K1ppA03pX8L501000pF ±10%4.0 x 3.52.52.5A2DB-
RHEL81H102K1ppA03pX8L501000pF ±10%4.0 x 3.52.55.0K1M1-
RHEL81H152K1ppA03pX8L501500pF ±10%4.0 x 3.52.52.5A2DB-
RHEL81H152K1ppA03pX8L501500pF ±10%4.0 x 3.52.55.0K1M1-
RHEL81H222K1ppA03pX8L502200pF ±10%4.0 x 3.52.52.5A2DB-
RHEL81H222K1ppA03pX8L502200pF ±10%4.0 x 3.52.55.0K1M1-
RHEL81H332K1ppA03pX8L503300pF ±10%4.0 x 3.52.52.5A2DB-
RHEL81H332K1ppA03pX8L503300pF ±10%4.0 x 3.52.55.0K1M1-
RHEL81H472K1ppA03pX8L504700pF ±10%4.0 x 3.52.52.5A2DB-
RHEL81H472K1ppA03pX8L504700pF ±10%4.0 x 3.52.55.0K1M1-
RHEL81H682K1ppA03pX8L506800pF ±10%4.0 x 3.52.52.5A2DB-
RHEL81H682K1ppA03pX8L506800pF ±10%4.0 x 3.52.55.0K1M1-
RHEL81H103K1ppA03pX8L5010000pF ±10%4.0 x 3.52.52.5A2DB-
RHEL81H103K1ppA03pX8L5010000pF ±10%4.0 x 3.52.55.0K1M1-
RHEL81H153K1ppA03pX8L5015000pF ±10%4.0 x 3.52.52.5A2DB-
RHEL81H153K1ppA03pX8L5015000pF ±10%4.0 x 3.52.55.0K1M1-
RHEL81H223K1ppA03pX8L5022000pF ±10%4.0 x 3.52.52.5A2DB-
RHEL81H223K1ppA03pX8L5022000pF ±10%4.0 x 3.52.55.0K1M1-
RHEL81H333K1ppA03pX8L5033000pF ±10%4.0 x 3.53.152.5A2DB-
RHEL81H333K1ppA03pX8L5033000pF ±10%4.0 x 3.53.155.0K1M1-
RHEL81H473K1ppA03pX8L5047000pF ±10%4.0 x 3.53.152.5A2DB-
RHEL81H473K1ppA03pX8L5047000pF ±10%4.0 x 3.53.155.0K1M1-
RHEL81H683K1ppA03pX8L5068000pF ±10%4.0 x 3.53.152.5A2DB-
RHEL81H683K1ppA03pX8L5068000pF ±10%4.0 x 3.53.155.0K1M1-
RHEL81H104K1ppA03pX8L500.10µF ±10%4.0 x 3.53.152.5A2DB-
RHEL81H104K1ppA03pX8L500.10µF ±10%4.0 x 3.53.155.0K1M1-
RHDL81H154K2ppC03pX8L500.15µF ±10%5.7 x 4.54.52.5A2DB-
RHDL81H154K2ppC03pX8L500.15µF ±10%5.7 x 4.54.55.0K1M1-
RHDL81H224K2ppC03pX8L500.22µF ±10%5.7 x 4.54.52.5A2DB-
RHDL81H224K2ppC03pX8L500.22µF ±10%5.7 x 4.54.55.0K1M1-
RHDL81H334K2ppC03pX8L500.33µF ±10%5.7 x 4.54.52.5A2DB-
RHDL81H334K2ppC03pX8L500.33µF ±10%5.7 x 4.54.55.0K1M1-
RHDL81H474K2ppC03pX8L500.47µF ±10%5.7 x 4.54.52.5A2DB-
RHDL81H474K2ppC03pX8L500.47µF ±10%5.7 x 4.54.55.0K1M1-
RHDL81H684K2ppC03pX8L500.68µF ±10%5.7 x 4.54.52.5A2DB-
RHDL81H684K2ppC03pX8L500.68µF ±10%5.7 x 4.54.55.0K1M1-
RHDL81H105K2ppC03pX8L501.0µF ±10%5.7 x 4.54.52.5A2DB-
RHDL81H105K2ppC03pX8L501.0µF ±10%5.7 x 4.54.55.0K1M1-
Continued on the following page.
18
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RHEL82A102K1ppA03pX8L1001000pF ±10%4.0 x 3.52.52.5A2DB-
RHEL82A102K1ppA03pX8L1001000pF ±10%4.0 x 3.52.55.0K1M1-
RHEL82A152K1ppA03pX8L1001500pF ±10%4.0 x 3.52.52.5A2DB-
RHEL82A152K1ppA03pX8L1001500pF ±10%4.0 x 3.52.55.0K1M1-
RHEL82A222K1ppA03pX8L1002200pF ±10%4.0 x 3.52.52.5A2DB-
RHEL82A222K1ppA03pX8L1002200pF ±10%4.0 x 3.52.55.0K1M1-
RHEL82A332K1ppA03pX8L1003300pF ±10%4.0 x 3.52.52.5A2DB-
RHEL82A332K1ppA03pX8L1003300pF ±10%4.0 x 3.52.55.0K1M1-
RHEL82A472K1ppA03pX8L1004700pF ±10%4.0 x 3.52.52.5A2DB-
RHEL82A472K1ppA03pX8L1004700pF ±10%4.0 x 3.52.55.0K1M1-
RHEL82A682K1ppA03pX8L1006800pF ±10%4.0 x 3.52.52.5A2DB-
RHEL82A682K1ppA03pX8L1006800pF ±10%4.0 x 3.52.55.0K1M1-
RHEL82A103K1ppA03pX8L10010000pF ±10%4.0 x 3.53.152.5A2DB-
RHEL82A103K1ppA03pX8L10010000pF ±10%4.0 x 3.53.155.0K1M1-
RHEL82A153K1ppA03pX8L10015000pF ±10%4.0 x 3.53.152.5A2DB-
RHEL82A153K1ppA03pX8L10015000pF ±10%4.0 x 3.53.155.0K1M1-
RHEL82A223K1ppA03pX8L10022000pF ±10%4.0 x 3.53.152.5A2DB-
RHEL82A223K1ppA03pX8L10022000pF ±10%4.0 x 3.53.155.0K1M1-
RHDL82A333K2ppC03pX8L10033000pF ±10%5.7 x 4.54.52.5A2DB-
RHDL82A333K2ppC03pX8L10033000pF ±10%5.7 x 4.54.55.0K1M1-
RHDL82A473K2ppC03pX8L10047000pF ±10%5.7 x 4.54.52.5A2DB-
RHDL82A473K2ppC03pX8L10047000pF ±10%5.7 x 4.54.55.0K1M1-
RHDL82A683K2ppC03pX8L10068000pF ±10%5.7 x 4.54.52.5A2DB-
RHDL82A683K2ppC03pX8L10068000pF ±10%5.7 x 4.54.55.0K1M1-
RHDL82A104K2ppC03pX8L1000.10µF ±10%5.7 x 4.54.52.5A2DB-
RHDL82A104K2ppC03pX8L1000.10µF ±10%5.7 x 4.54.55.0K1M1-
Two blank columns are filled with the lead style code. Please refer to the 3 columns on the right for the appropriate code.
The last blank column is filled with the packaging code. (B: bulk, A: ammo pack)
Lead Style
Code
Taping (2)
C49E.pdf
10.3.8
3
19
The capacitor should be firmly soldered to the
supporting lead wire and vibrated at a frequency range
of 10 to 2000Hz, 1.5mm in total amplitude, with about
a 20 min. rate of vibration change from 10Hz to
2000Hz and back to 10Hz. Apply for a total of 6 hrs.,
2 hrs. each in 3 mutually perpendicular directions.
10
Vibration
Resistance
Appearance
No defects or abnormalities
Continued on the following page.
D.F.0.025 max.
Capacitance
Within the specified tolerance
As in the figure, fix the capacitor body, apply the force
gradually to each lead in the radial direction of the
capacitor until reaching 10N and then keep the force
applied for 10T1 sec.
9
Terminal
Strength
Tensile
Strength
Termination not to be broken or loosened
The capacitance change should be measured after
5 min. at each specified temperature stage.
8
Capacitance
Temperature
Characteristics
Within T15% (Temp. Range: -55 to +125°C)
Within +15/-40% (Temp. Range: +125 to +150°C)
Each lead wire should be subjected to a force of 2.5N
and then bent 90˚ at the point of egress in one
direction. Each wire is then returned to the original
position and bent 90˚ in the opposite direction at the
rate of one bend per 2 to 3 sec.
Bending
Strength
Termination not to be broken or loosened
7 Dissipation Factor (D.F.)0.025 max.
The capacitance/D.F. should be measured at the
frequency of 1T0.1kHz and a voltage of
AC1T0.2V(r.m.s.)
6 CapacitanceWithin the specified tolerance
5
Insulation
Resistance
The insulation resistance should be measured at
150±3°C with a DC voltage not exceeding the rated
voltage at normal temperature and humidity and within
2 min. of charging.
(Charge/Discharge current V 50mA)
High
Temperature
CV0.047µF: 100MΩ min.
C>0.047µF: 5MΩ · µF min.
C: Nominal capacitance
The insulation resistance should be measured at
25±3°C with a DC voltage not exceeding the rated
voltage at normal temperature and humidity and within
2 min. of charging.
(Charge/Discharge current V 50mA)
Room
Temperature
CV0.047µF: 10,000MΩ min.
C>0.047µF: 500MΩ · µF min.
C: Nominal capacitance
The capacitor should not be damaged when DC
voltage of 250% of the rated voltage is applied
between the terminations for 1 to 5 sec.
(Charge/Discharge current V 50mA)
4
Dielectric
Strength
Between
Terminals
No defects or abnormalities
Visual inspection, Vernier Caliper3 Dimension and MarkingSee previous pages
Visual inspection2 AppearanceNo defects or abnormalities
–1
Operating Temperature
Range
-55 to +150˚C
No.Test MethodSpecificationsItem
The capacitor is placed in a
container with metal balls of 1mm
diameter so that each terminal,
short-circuit, is kept approximately
2mm from the balls as shown in
the figure, and 250% of the rated
DC voltage is impressed for 1 to 5
sec. between capacitor terminals
and metal balls.
(Charge/Discharge current
V 50mA)
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
The capacitor should be fully immersed, unagitated, in
reagent at 20 to 25 ˚C for 30T5 sec. and then remove
gently. Marking on the surface of the capacitor should
immediately be visually examined.
Reagent :
• Isopropyl alcohol
17
Solvent
Resistance
Appearance
No defects or abnormalities
MarkingLegible
Apply a DC voltage of 150% of the rated voltage for
1000
WY48
0
hrs. at the maximum operating temperature.
Remove and set for 48T4 hrs. at room temperature,
then measure.
(Charge/Discharge current V 50mA)
• Pretreatment
Apply test voltage for 1 hr., at test temperature. Remove
and set for 48T4 hrs. at room temperature.
16
High
Temperature
Load
Appearance
No defects or abnormalities except color change of outer coating
Insulation
Resistance
1,000MΩ or 50MΩ · µF min. (whichever is smaller)
D.F.0.04 max.
Capacitance
Change
Within T12.5%
Apply the rated voltage at 85T2˚C and relative humidity
of 85±2% for 500
WY24
0
hrs. Remove and set for 48T4
hrs. at room temperature, then measure.
(Charge/Discharge current V 50mA)
15
Humidity
Load
Appearance
No defects or abnormalities
Insulation
Resistance
500MΩ or 25MΩ · µF min. (whichever is smaller)
D.F.0.05 max.
Capacitance
Change
Within T12.5%
Set the capacitor at 85T2˚C and relative humidity of 85
±2% for 500
WY24
0
hrs. Remove and set for 48T4 hrs. at
room temperature, then measure.
14
Humidity
(Steady
State)
Appearance
No defects or abnormalities
The capacitor should be subjected to 1000 temperature
cycles.
The capacitors are heat treated for 1hr. at 150+0/-10°C,
allowed to sit at room temperature for 48±4 hrs., and
given an initial measurement.
13
Temperature
Cycle
Appearance
No defects or abnormalities except color change of outer coating
The lead wire is immersed in the melted solder 1.5 to
2mm from the main body at 270T5˚C for 3T0.5 sec.
The specified items are measured after 48T4 hrs.
• Pretreatment
Perform a heat treatment at 150+0/-10˚C for 1 hr., and
then let sit at room temperature for 48T4 hrs.
12
Resistance
to
Soldering
Heat
Appearance
No defects or abnormalities
The terminal of a capacitor is dipped into a solution of
ethanol (JIS-K-8101) and rosin (JIS-K-5902) (25% rosin
in weight proportion) and then into molten solder (JISZ-3282) for 2T0.5 sec. In both cases the depth of
dipping is up to about 1.5 to 2mm from the terminal
body.
Temp. of solder: 245T5˚C Lead Free Solder (Sn-3.0Ag-0.5Cu)
235T5˚C H60A or H63A Eutectic Solder
11 Solderability of Leads
Lead wire should be soldered with uniform coating on the axial
direction over 3/4 of the circumferential direction.
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RDE Series (Only for Commercial Use) (DC250V-DC630V)
C49E.pdf
10.3.8
T max.L max.
■ Features
1. Small size and large capacitance
2. Low ESR characteristics for high frequency
3. Coated with epoxy resin whose flammability is
equivalent to UL94V-0
∗
W max.25.0 min.
W1 max.
ød : 0.5±0.05
■ Applications
General electronic equipment
(Do not use for Automotive related Power train and
Safety Equipment.)
Dimensions code: 2/3/8
Lead style code: K1
F±0.8
∗ Coating extension does not exceed the end of the lead bend.
· Lead Wire : Solder Coated Copper Wire or
Solder Coated CP Wire
L max.
T max.
(in mm)
4
W max.25.0 min.
ød : 0.5±0.05
(in mm)
Dimensions code: 5
Lead style code: B1
1.5 max.
F±0.8
· Lead Wire : Solder Coated Copper Wire or
Solder Coated CP Wire
■ Dimensions
Dimensions and
Lead Style Code
2K1/2M1
3K1/3M1
5B1/5E1
8K1/8M1
UB1/UE1
*DC630V: W+0.5mm
Dimensions (mm)
LWW1TFd
5.0
5.0
7.5
7.5
7.7
3.5
4.5
7.5*
5.5
12.5*
5.0
6.3
-
8.0
-
See
the individual
product
specifications
5.0
5.0
5.0
5.0
5.0
0.5
0.5
0.5
0.5
0.5
Dimensions code: U
Lead style code: B1
L max.
W max.
2.0 max.
25.0 min.
F±0.8
· Lead Wire : Solder Coated Copper Wire or
Solder Coated CP Wire
Continued on the following page.
T max.
ød : 0.5±0.05
(in mm)
22
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Marked with code (X7R char.: C)
Marked with 3 figures
Marked with code
Marked with code (DC250V: 4, DC630V: 7)
A part is omitted (Please refer to the marking example.)
Marked with
M
A part is omitted (Please refer to the marking example.)
M
104
K7C
M
474
M7C
4
23
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RDER72E102K2ppA11pX7R2501000pF ±10%5.0 x 3.53.155.0K1M1-
RDER72E152K2ppA11pX7R2501500pF ±10%5.0 x 3.53.155.0K1M1-
RDER72E222K2ppA11pX7R2502200pF ±10%5.0 x 3.53.155.0K1M1-
RDER72E332K2ppA11pX7R2503300pF ±10%5.0 x 3.53.155.0K1M1-
RDER72E472K2ppA11pX7R2504700pF ±10%5.0 x 3.53.155.0K1M1-
RDER72E682K2ppA11pX7R2506800pF ±10%5.0 x 3.53.155.0K1M1-
RDER72E103K2ppA11pX7R25010000pF ±10%5.0 x 3.53.155.0K1M1-
RDER72E153K2ppC11pX7R25015000pF ±10%5.0 x 3.53.155.0K1M1-
RDER72E223K2ppC11pX7R25022000pF ±10%5.0 x 3.53.155.0K1M1-
RDER72E333K2ppC11pX7R25033000pF ±10%5.0 x 3.53.155.0K1M1-
RDER72E473K2ppC11pX7R25047000pF ±10%5.0 x 3.53.155.0K1M1-
RDER72E683K3ppC11pX7R25068000pF ±10%5.0 x 4.53.155.0K1M1-
RDER72E104K3ppC11pX7R2500.10µF ±10%5.0 x 4.53.155.0K1B1-
RDER72E154K8ppC11pX7R2500.15µF ±10%7.5 x 5.53.155.0K1M1-
RDER72E224K8ppC11pX7R2500.22µF ±10%7.5 x 5.53.155.0K1M1-
RDER72E334K5ppC13pX7R2500.33µF ±10%7.5 x 7.54.05.0B1E1-
RDER72E474K5ppC13pX7R2500.47µF ±10%7.5 x 7.54.05.0B1E1-
RDER72E105MUppC13pX7R2501.0µF ±20%7.7 x 12.54.05.0B1E1-
4
RDER72J102K2ppC11pX7R6301000pF ±10%5.0 x 3.53.155.0K1M1-
RDER72J152K2ppC11pX7R6301500pF ±10%5.0 x 3.53.155.0K1M1-
RDER72J222K2ppC11pX7R6302200pF ±10%5.0 x 3.53.155.0K1M1-
RDER72J332K2ppC11pX7R6303300pF ±10%5.0 x 3.53.155.0K1M1-
RDER72J472K2ppC11pX7R6304700pF ±10%5.0 x 3.53.155.0K1M1-
RDER72J682K2ppC11pX7R6306800pF ±10%5.0 x 3.53.155.0K1M1-
RDER72J103K2ppC11pX7R63010000pF ±10%5.0 x 3.53.155.0K1M1-
RDER72J153K2ppC11pX7R63015000pF ±10%5.0 x 3.53.155.0K1M1-
RDER72J223K3ppC11pX7R63022000pF ±10%5.0 x 4.53.155.0K1M1-
RDER72J333K3ppC11pX7R63033000pF ±10%5.0 x 4.53.155.0K1M1-
RDER72J473K3ppC11pX7R63047000pF ±10%5.0 x 4.53.155.0K1M1-
RDER72J683K8ppC11pX7R63068000pF ±10%7.5 x 5.53.155.0K1M1-
RDER72J104K8ppC11pX7R6300.10µF ±10%7.5 x 5.53.155.0K1M1-
RDER72J154K5ppC13pX7R6300.15µF ±10%7.5 x 8.04.05.0B1E1-
RDER72J224K5ppC13pX7R6300.22µF ±10%7.5 x 8.04.05.0B1E1-
RDER72J474MUppC13pX7R6300.47µF ±20%7.7 x 13.04.05.0B1E1-
Two blank columns are filled with the lead style code. Please refer to the 3 columns on the right for the appropriate code.
The last blank column is filled with the packaging code. (B: bulk, A: ammo pack)
24
The capacitor should be firmly soldered to the
supporting lead wire and vibrated at a frequency range
of 10 to 55Hz, 1.5mm in total amplitude, with about a 1
minute rate of vibration change from 10Hz to 55Hz and
back to 10Hz. Apply for a total of 6 hrs., 2 hrs. each in 3
mutually perpendicular directions.
10
Vibration
Resistance
Appearance
No defects or abnormalities
As in the figure, fix the capacitor body, apply the force
gradually to each lead in the radial direction of the
capacitor until reaching 10N and then keep the force
applied for 10T1 sec.
9
Terminal
Strength
Tensile
Strength
Termination not to be broken or loosened
The capacitance change should be measured at each
specified temperature stage.
• Pretreatment
Perform a heat treatment at 150+0/-10˚C for 1 hr., and
then let sit at room temperature for 24T2 hrs.
8
Capacitance
Temperature
Characteristics
Within T15%
7 Dissipation Factor (D.F.)
0.025 max.
The capacitance/D.F. should be measured at the
frequency of 1T0.1kHz and a voltage of
AC1T0.2V(r.m.s.)
6 Capacitance
Within the specified tolerance
The insulation resistance should be measured with
DC500T50V (DC250T25V in case of rated voltage:
DC250V) at normal temperature and humidity and
within 2 min. of charging.
(Charge/Discharge current V 50mA)
5
Insulation
Resistance
Between
Terminals
CF0.01µF : 10,000MΩ min.
CU0.01µF : 100MΩ · µF min.
C : Nominal capacitance
The capacitor should not be damaged when voltage in
Table is applied between the terminations for 1 to 5
sec. (Charge/Discharge current V 50mA)
4
Dielectric
Strength
Between
Terminals
No defects or abnormalities
Visual inspection, Vernier Caliper
3 Dimension and Marking
See previous pages
Visual inspection
2 Appearance
No defects or abnormalities
–
1
Operating Temperature
Range
-55 to +125˚C
No.Test MethodSpecificationsItem
Continued on the following page.
D.F.
0.025 max.
Capacitance
Within the specified tolerance
Each lead wire should be subjected to a force of 2.5N
and then bent 90˚ at the point of egress in one
direction. Each wire is then returned to the original
position and bent 90˚ in the opposite direction at the
rate of one bend per 2 to 3 sec.
Bending
Strength
Termination not to be broken or loosened
The capacitor is placed in a
container with metal balls of 1mm
diameter so that each terminal,
short-circuit, is kept approximately
2mm from the balls as shown in
the figure, and 200% of the rated
DC voltage is impressed for 1 to 5
sec. between capacitor terminals
and metal balls.
(Charge/Discharge current
V 50mA)
200% of the rated voltage
150% of the rated voltage
DC250V
DC630V
Temperature (˚C)Step
25T2
-55T3
25T2
125T3
25T2
1
2
3
4
5
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
The capacitor should be fully immersed, unagitated, in
reagent at 20 to 25˚C for 30T5 sec. and then remove
gently. Marking on the surface of the capacitor should
immediately be visually examined.
Reagent:
• Isopropyl alcohol
17
Solvent
Resistance
Appearance
No defects or abnormalities
Apply voltage in Table for 1000
WY48
0
hrs. at the
maximum operating temperature. Remove and set for
24T2 hrs. at room temperature, then measure.
(Charge/Discharge current V 50mA)
• Pretreatment
Apply test voltage for 1 hr., at test temperature. Remove
and set for 24T2 hrs. at room temperature.
16
High
Temperature
Load
Appearance
No defects or abnormalities
Apply the rated voltage at 40T2˚C and relative humidity
of 90 to 95% for 500
WY24
0
hrs. Remove and set for
24T2 hrs. at room temperature, then measure.
(Charge/Discharge current V 50mA)
15
Humidity
Load
Appearance
No defects or abnormalities
Set the capacitor at 40T2˚C and relative humidity of 90
to 95% for 500
WY24
0
hrs. Remove and set for 24T2 hrs.
at room temperature, then measure.
14
Humidity
(Steady
State)
Appearance
No defects or abnormalities
First, repeat 5 cycles according to the 4 heat
treatments listed in the following table. Next, repeat
twice the successive cycles of immersion, each cycle
consisting of immersion in fresh water at 65+5/-0˚C for
15 min. and immersion in a saturated aqueous solution
of salt at 0T3˚C for 15 min. The capacitor is then
promptly washed in running water, dried with a drying
cloth, and allowed to sit at room temperature for 24T2
hrs.
• Pretreatment
Perform a heat treatment at 150+0/-10˚C for 1 hr., and
then let sit at room temperature for 24T2 hrs.
13
Temperature
and
Immersion
Cycle
Appearance
No defects or abnormalities
The lead wire is immersed in the melted solder 1.5 to
2mm from the main body at 350T10˚C for 3.5T0.5 sec.
The specified items are measured after 24T2 hrs.
• Pretreatment
Perform a heat treatment at 150+0/-10˚C for 1 hr., and
then let sit at room temperature for 24T2 hrs.
12
Resistance
to
Soldering
Heat
Appearance
No defects or abnormalities
The terminal of a capacitor is dipped into a solution of
ethanol (JIS-K-8101) and rosin (JIS-K-5902) (25% rosin
in weight proportion) and then into molten solder (JISZ-3282) for 2T0.5 sec. In both cases the depth of
dipping is up to about 1.5 to 2mm from the terminal
body.
Temp. of solder: 245T5˚C Lead Free Solder (Sn-3.0Ag-0.5Cu)
235T5˚C H60A or H63A Eutectic Solder
11 Solderability of Leads
Lead wire should be soldered with uniform coating on the axial
direction over 3/4 of the circumferential direction.
150% of the rated voltage
120% of the rated voltage
DC250V
DC630V
1Step
Min.
Operating
Temp. T3
30T3
2
Room
Temp.
3 max.
3
Max.
Operating
Temp. T3
30T3
4
Room
Temp.
3 max.
Temp.
(˚C)
Time
(min.)
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RPE Series Small Size, Large Capacitance Characteristics Data (Typical Example)
C49E.pdf
10.3.8
■ Capacitance - Temperature Characteristics
20
15
10
5
0
-5
-10
Capacitance Change (%)
-15
-20
-75-50-250255075100125150
Temperature (°C)
■ Capacitance - DC Voltage Characteristics
20
0
-20
-40
-60
Capacitance Change (%)
-80
01020304050
DC Voltage (V)
■ Impedance - Frequency Characteristics
4
100
10
1
0.1
Impedance (Ω)
0.01
4.7µF
1.0µF
2.2µF
0.001
0.11101001000
Frequency (MHz)
28
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RH Series Characteristics Data (Typical Example)
C49E.pdf
10.3.8
■ Capacitance - Temperature Characteristics
10
0
-10
-20
-30
-40
Capacitance Change (%)
-50
-60
-75-50-250255075100125150
Temperature (°C)
1kHz, AC1V(r.m.s.) without DC bias
■ Capacitance Change - Aging
10
0
-10
-20
-30
Capacitance Change (%)
-40
25°C, 1kHz, AC1V(r.m.s.) without DC bias
■ Capacitance - DC Voltage Characteristics
10
0
-10
-20
-30
-40
Capacitance Change (%)
-50
-60
0102030405060708090100
50V
DC Voltage (V)
25°C, 1kHz, AC1V(r.m.s.)
■ Impedance - Frequency Characteristics
10
1000pF
1
Impedance (Ω)
0.1
0.1µF
1µF
0.01µF
100V
4
-50
10100100010000100000
Pass Time (Hr)
0.01
11000
10
Frequency (MHz)
100
29
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
RDE Series Characteristics Data (Typical Example)
C49E.pdf
10.3.8
■ Capacitance - Temperature Characteristics
40
30
20
10
0
−10
−20
Capacitance Change (%)
−30
−40
−60−40−20020406080100120140
Temperature (°C)
■ Capacitance Change - Aging
4
+10
0
−10
−20
−30
Capacitance Change (%)
−40
−50
100010010000
Pass Time (Hr)
■ Capacitance - DC Voltage Characteristics
+20
0
−20
−40
−60
−80
Capacitance Change (%)
−100
0100200300400500600700
X7R 250V
DC Voltage (V)
1kHz, AC1V (r.m.s.)
X7R 630V
■ Capacitance - Resonant Frequency
1000
100
10
ø0.5
Resonant Frequency (MHz)
1
l
100pF0.1µF0.01µF
1000pF10pF1µF
Capacitance
l=5mm
■ Impedance - Frequency Characteristics
10
1000pF
1
Impedance (Ω)
0.1
0.01
0.1µF
1µF
11000
0.01µF
10
Frequency (MHz)
100
30
Two types of packaging for monolithic ceramic capacitors are available.
1. Bulk Packaging
Minimum Quantity
*1
2. Tape Carrier Packaging
(1) Dimensions of Ammo Pack
(2) Minimum Quantity
*1
1
2
3
4
5
6
8
7
U
Dimensions Code
Minimum Quantity (pcs./Bag)
500
100
200
Dimensions (LZW)
4.0Z3.5mm
5.0Z3.5mm or 5.5Z4.0mm or 5.7Z4.5mm (Depends on Part Number List)
5.0Z4.5mm or 5.5Z5.0mm (Depends on Part Number List)
7.5Z5.0mm
7.5Z7.5mm (DC630V: 7.5Z8.0mm)
10.0Z10.0mm
7.5Z5.5mm
12.5Z12.5mm
7.7Z12.5mm (DC630V: 7.7Z13.0mm)
1
2
3
4
5
8
6
U
Dimensions Code
Minimum Quantity (pcs./Ammo Pack)
2000
*2
2000
*2
1500
1000
Dimensions (LZW)
4.0Z3.5mm
5.0Z3.5mm or 5.5Z4.0mm or 5.7Z4.5mm (Depends on Part Number List)
5.0Z4.5mm or 5.5Z5.0mm (Depends on Part Number List)
7.5Z5.0mm
7.5Z7.5mm (DC630V: 7.5Z8.0mm)
7.5Z5.5mm
10.0Z10.0mm
7.7Z12.5mm (DC630V: 7.7Z13.0mm)
340 max.
240 max.
51 max.
(in mm)
Please order with an integral multiple of the minimum quantity above.
Please order with an integral multiple of the minimum quantity above.
*2 1500 pcs. for RPER71H335K5ppC03A, RPER71H475K5ppC03A,
RPER72A105K5ppC03A, RPER71H335K3M1C60A, RPER71H475K3M1C60A and RDE Series, RHD Series
(Two blank columns are filled with the lead style code.)
*1 "Minimum Quantity" means the numbers of units of each delivery or order. The quantity should be an integral multiple of the "minimum quantity". (Please note that the actual
delivery quantity in a package may change sometimes.)
Continued on the following page.
Packaging
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Packaging
C49E.pdf
10.3.8
4
31
Inside Crimp Taping
Outside Crimp Taping
Straight Taping
Continued from the preceding page.
1M1
2M1
2M2
3M1
3M2
4M1
4M2
8M1
8M2
Dimensions and Lead style code
Dimensions (LZW)
4.0Z3.5mm
5.0Z3.5mm or 5.5Z4.0mm or 5.7Z4.5mm
(Depends on Part Number List)
5.0Z4.5mm or 5.5Z5.0mm
(Depends on Part Number List)
7.5Z5.0mm
7.5Z5.5mm
Pitch of Component
Pitch of Sprocket Hole
Lead Spacing
Length from Hole Center to
Component Center
Length from Hole Center to
Lead
Body Dimension
Deviation Along Tape, Left
or Right Defect
Carrier Tape Width
Position of Sprocket Hole
Lead Distance between
Reference and Bottom Plane
For Straight Lead Type
Diameter of Sprocket Hole
Lead Diameter
Total Tape Thickness
Total Thickness of Tape
and Lead Wire
Body Thickness
Deviation Across Tape
Portion to Cut in Case of
Defect
Protrusion Length
Hold Down Tape Width
Hold Down Tape Position
Coating Extension
Item
Dimensions (mm)
12.7T1.0
12.7T0.2
2.5 (DB) (S1) (S2)
5.0
6.35T1.3
3.85T0.7
5.1T0.7 (DB) (S1) (S2)
T2.0
18.0T0.5
9.0
16.0T0.5 (M1) (S1)
20.0T0.5 (M2) (S2)
20T0.5 (E2), 17.5T0.5 (E1), 16T0.5 (DB)
4.0T0.1
0.5T0.05
0.6T0.3
1.5 max.
Depends on Part Number List
1.0 max. (RHD Series: 1.5 max.)
1.0 max. (RHD Series: 1.5 max.)
0.5 max.
9.5 min.
1.5T1.5
254T1.5 Total length of components pitch Z 20
Depends on Part Number List
Code
P
P
0
F
P
2
P1
∆S
W
W
1
H0
H
D
0
d
t
1
t2
T
∆h1
∆h2
L
R
W
0
W2
1DB
2DB
5E1
5E2
6E1
6E2
UE1
Dimensions and Lead style code
Dimensions (LZW)
4.0Z3.5mm
5.7Z4.5mm
7.5Z7.5mm
(DC630V: 7.5Z8.0mm)
10.0Z10.0mm
7.7Z12.5mm
(DC630V: 7.7Z13.0mm)
2S1
2S2
3S1
3S2
Dimensions and Lead style code
Dimensions (LZW)
5.0Z3.5mm
5.0Z4.5mm
W0.4
Y0.2
W0.6
Y0.2
W0
Y0.5
W0
Y1.0
11.0
Depends on Dimensions
W
W
1
W
2
W
0
øD0
H
Direction of feed
ød
P
0
P2P
R
L
P1
F
∆h1∆h2
0
T max.
t1
t2
W
W
1
W
2
W
0
øD0
H0
Direction of feed
ød
P
0
P2
P
R
L
P1
F
W
W
1
W
2
W
0
øD0
H0
Direction of feed
ødP
0
R
L
P2
P1 F
P
∆S
Taping Dimensions
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Packaging
C49E.pdf
10.3.8
4
32
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
!Caution
■ !Caution (Storage and Operating Condition)
Operating and storage environment
The insulating coating of capacitors does not form a
perfect seal; therefore, do not use or store
capacitors in a corrosive atmosphere, especially
where chloride gas, sulfide gas, acid, alkali, salt
or the like are present. And avoid exposure to
moisture. Before cleaning, bonding or molding this
product, verify that these processes do not affect
product quality by testing the performance of a
cleaned, bonded or molded product in the intended
equipment. Store the capacitors where the
temperature and relative humidity do not exceed 5
to 40 degrees centigrade and 20 to 70%.
Use capacitors within 6 months after delivered.
FAILURE TO FOLLOW THE ABOVE CAUTIONS MAY
RESULT, WORST CASE, IN A SHORT CIRCUIT
AND CAUSE FUMING OR PARTIAL DISPERSION
WHEN THE PRODUCT IS USED.
C49E.pdf
10.3.8
4
33
When DC-rated capacitors are to be used in AC or ripple
current circuits, be sure to maintain the Vp-p value of the
applied voltage or the V
0-p which contains DC bias within
the rated voltage range.
When the voltage is applied to the circuit, starting or
stopping may generate irregular voltage for a transit
period because of resonance or switching. Be sure to
use a capacitor with a rated voltage range that includes
these irregular voltages.
When DC-rated capacitors are to be used in input circuits
from commercial power source (AC filter), be sure to use
Safety Recognized Capacitors because various
regulations on withstand voltage or impulse withstand
established for each equipment should be taken into
considerations.
Voltage
Positional
Measurement
DC VoltageDC+AC VoltageAC VoltagePulse Voltage (1)Pulse Voltage (2)
V0-pV0-pVp-pVp-pVp-p
1. Operating Voltage
Keep the surface temperature of a capacitor below the
upper limit of its rated operating temperature range. Be
sure to take into account the heat generated by the
capacitor itself. When the capacitor is used in a highfrequency current, pulse current or similar current, it may
have self-generated heat due to dielectric loss. In case of
"High Dielectric Constant Type Capacitors (X7R/X8L/Y5V/
Z5U char.)", applied voltage load should be such that
self-generated heat is within 20 °C under the condition
where the capacitor is subjected at an atmosphere
temperature of 25 °C. Please contact us if self-generated
heat occurs with "Temperature Compensating Type
Capacitors (C0G char.)". When measuring, use a
thermocouple of small thermal capacity -K of ø0.1mm
under conditions where the capacitor is not affected by
radiant heat from other components or wind from
surroundings. Excessive heat may lead to deterioration of
the capacitor's characteristics and reliability. (Never
attempt to perform measurement with the cooling fan
running. Otherwise, accurate measurement cannot be
ensured.)
2. Operating Temperature and Self-generated Heat
Be sure to provide an appropriate fail-safe function on
your product to prevent a second damage that may be
caused by the abnormal function or the failure of our
product.
FAILURE TO FOLLOW THE ABOVE CAUTIONS MAY
RESULT, WORST CASE, IN A SHORT CIRCUIT
AND CAUSE FUMING OR PARTIAL DISPERSION
WHEN THE PRODUCT IS USED.
3. Fail-Safe
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
!Caution
■ !Caution (Rating)
C49E.pdf
10.3.8
4
34
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
!Caution
■ !Caution (Soldering and Mounting)
1. Vibration and impact
Do not expose a capacitor or its leads to
excessive shock or vibration during use.
2. Soldering
When soldering this product to a PCB/PWB, do not
exceed the solder heat resistance specification of
the capacitor. Subjecting this product to excessive
heating could melt the internal junction solder and
may result in thermal shocks that can crack the
ceramic element.
3. Bonding, resin molding and coating
In case of bonding, molding or coating this product,
verify that these processes do not affect the
quality of capacitor by testing the performance of
the bonded, molded or coated product in the
intended equipment.
In case the amount of application, dryness/
hardening conditions of adhesives and molding resins
containing organic solvents (ethyl acetate, methyl
ethyl ketone, toluene, etc.) are unsuitable, the
outer coating resin of a capacitor may be damaged
by the organic solvents and may result, worst case,
in a short circuit.
The variation in thickness of adhesive or molding
resin or coating may cause an outer coating resin
cracking and/or ceramic element cracking of a
capacitor in a temperature cycling.
4. Treatment after bonding, resin molding and coating
When the outer coating is hot (over 100 degrees
centigrade) after soldering, it becomes soft and fragile.
So please be careful not to give it mechanical stress.
FAILURE TO FOLLOW THE ABOVE CAUTIONS MAY
RESULT, WORST CASE, IN A SHORT CIRCUIT
AND CAUSE FUMING OR PARTIAL DISPERSION
WHEN THE PRODUCT IS USED.
C49E.pdf
10.3.8
4
■ !Caution (Handling)
Vibration and impact
Do not expose a capacitor or its leads to excessive
shock or vibration during use.
FAILURE TO FOLLOW THE ABOVE CAUTIONS MAY
RESULT, WORST CASE, IN A SHORT CIRCUIT
AND CAUSE FUMING OR PARTIAL DISPERSION
WHEN THE PRODUCT IS USED.
35
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Notice
■ Notice (Rating)
Capacitance change of capacitor
In case of X7R/X8L/Y5V char.
Capacitors have an aging characteristic, whereby
the capacitor continually decreases its capacitance
slightly if the capacitor is left on for a long
time. Moreover, capacitance might change greatly
depending on the surrounding temperature or an
applied voltage.
■ Notice (Soldering and Mounting)
1. Cleaning (ultrasonic cleaning)
To perform ultrasonic cleaning, observe the following
conditions.
Rinse bath capacity : Output of 20 watts per liter or less.
Rinsing time : 5 min. maximum.
4
Do not vibrate the PCB/PWB directly.
Excessive ultrasonic cleaning may lead to fatigue
destruction of the lead wires.
C49E.pdf
10.3.8
2. Soldering and Mounting
(1) Allowable Conditions for Soldering Temperature and Time
300
280
270
260
240
Soldering Temp. (˚C)
220
qw
5101520
Accumulated Immersion Time (sec.)
Dimensions Code
1, 2 (F: 2.5mm)
q
2 (F: 5.0mm), 3, 4, 8
w
5, 6, 7, U
e
e
Perform soldering within tolerance range (shaded portion).
(2) Insertion of the Lead Wire
· When soldering, insert the lead wire into the PCB without
mechanically stressing the lead wire.
· Insert the lead wire into the PCB with a distance appropriate
to the lead space.
36
• This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
!Note
sales representatives or product engineers before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
C49E.pdf
10.3.8
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