(for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please review our product specifications or consult the approval sheet for product specifications before ordering.
C85E.pdf
Jul.13,2011
Safety Standard Certified
Ceramic Capacitors/
High Voltage
Ceramic Capacitors
Cat.No.C85E-3
!Note
• Please read rating and
!CAUTION
(for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please review our product specifications or consult the approval sheet for product specifications before ordering.
C85E.pdf
Jul.13,2011
EU RoHS Compliant
All the products in this catalog comply with EU RoHS.
EU RoHS is "the European Directive 2011/65/EU 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).
!Note
• Please read rating and
!CAUTION
(for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please review our product specifications or consult the approval sheet for product specifications before ordering.
C85E.pdf
Jul.13,2011
CONTENTS
Part Numbering
1
2
3
4
Type KY (Basic Insulation) -IEC60384-14 Class X1, Y2-
Type KH (Basic Insulation) -IEC60384-14 Class X1, Y2-
Type KX Small Size (Reinforced Insulation) -IEC60384-14 Class X1, Y1-
Type KX (Reinforced Insulation) -IEC60384-14 Class X1, Y1-
Type KY/KH/KX Specifications and Test Methods
1
2
5
7
9
11
13
17
18
21
24
26
29
30
32
34
37
39
42
44
47
49
51
53
55
57
58
60
67
68
69
74
75
76
79
80
2
3
4
5
DEJ Series -Based on the Electrical Appliance and Material Safety Law of Japan-
DEJ Series Specifications and Test Methods
5
Safety Certified Ceramic Capacitors Characteristics Data (Typical Example)
Safety Certified Ceramic Capacitors Packaging
Safety Certified Ceramic Capacitors
!Caution
Safety Certified Ceramic Capacitors Notice
6
DES Series (125°C Guaranteed/Low-dissipation Factor/DC500V-1kV)
DES Series Specifications and Test Methods
6
7
7
DEH Series (125°C Guaranteed/Low-dissipation Factor/DC500V-3.15kV)
DEH Series Specifications and Test Methods
8
8
DEA Series (125°C Guaranteed/Class 1/DC1k-3.15kV)
DEA Series Specifications and Test Methods
9
9
DEB Series (Class 2/DC1k-3.15kV)
DEB Series Specifications and Test Methods
10
10
DEC Series (Class 1, 2/DC6.3kV)
DEC Series Specifications and Test Methods
11
DEF Series (Only for LCD Backlight Inverter Circuit/6.3kVp-p)
DEF Series Specifications and Test Methods
11
High Voltage Ceramic Capacitors Characteristics Data (Typical Example)
High Voltage Ceramic Capacitors Packaging
High Voltage Ceramic Capacitors
!Caution
High Voltage Ceramic Capacitors Notice
12
Type KJ -IEC60384-14 Class X1, Y2-
Type KJ Specifications and Test Methods
12
Safety Certified Ceramic Capacitors for Automotive Characteristics Data (Typical Example)
Safety Certified Ceramic Capacitors for Automotive Packaging
Safety Certified Ceramic Capacitors for Automotive
!Caution
Safety Certified Ceramic Capacitors for Automotive Notice
Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors ISO9000 Certifications
!Note
• Please read rating and
!CAUTION
(for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please review our product specifications or consult the approval sheet for product specifications before ordering.
C85E.pdf
Jul.13,2011
o
Part Numbering
Safety Standard Certified Ceramic Capacitors
(Part Number)
qProduct
ID
Product ID
DE
Safety Standard Certified Ceramic Capacitors/
High Voltage Ceramic Capacitors
DE
q
2
w
E3
e
KH 102 M
r
t
y
N3
u
A
i o
yCapacitance
Tolerance
Code
J
K
M
wSeries
Category
Code
1
2
J
Outline
Safety Standard
Certified
AC250V
(r.m.s.)
Contents
IEC60384-14 Class X1, Y1
IEC60384-14 Class X1, Y2
-Products based on the
Electrical Appliance and
Material Safety Law of Japan-
Code
uLead
Style
Lead
Style
Dimensions (mm)
Lead
Spacing
5
Vertical
Crimp
Long
7.5
10
10
5
Vertical
Crimp
Short
Straight Long
Straight Short
7.5
10
10
7.5
7.5
5
Vertical
Crimp
Taping
7.5
10
10
7.5
Straight Taping
7.5
ø0.6W0.1,
Y0.05
ø0.6T0.05
ø0.6T0.05
ø0.6T0.05
ø0.6W0.1,
Y0.05
ø0.6T0.05
ø0.6T0.05
Y
Y
12.7
15
25.4
25.4
30
15
ø0.6T0.05
Y
ø0.6W0.1,Y0.05
ø0.6T0.05
Y
Lead Diameter
Pitch of
Components
Z
Capacitance Tolerance
T5%
T10%
T20%
W80%, Y20%
A2
A3
A4
A5
B2
B3
B4
B5
For Electrical Appliance and Material Safety Law of Japan, the first
three digits (qProduct ID and
wSeries
Category) express "Series
Name."
For Safety Certified Capacitors, the first three digits express product
code. The fourth figure expresses certified type shown in
rSafety
Standard Certified Type column.
eTemperature
Characteristics
Code
B3
E3
F3
1X
Temperature
Characteristics
B
E
F
SL
Cap. Change
or Temp. Coeff.
T10%
W20%,Y55%
W30%,Y80%
W350
to
Y1000ppm/D W20
to
W85D
Y25
to
W85D
Temperature
Range
C3
D3
N2
N3
N4
N5
N7
P3
rRated
Voltage/Safety Standard Certified Type
Code
E2
KH
KY
KX
tCapacitance
Expressed by three figures. The unit is pico-farad (pF). The first
and second figures are significant digits, and the third figure
expresses the number of zeros that follow the two numbers.
Rated Voltage
AC250V
X1, Y2; AC250V, (Safety Standard Certified Type KH)
X1, Y2; AC250V, (Safety Standard Certified Type KY)
X1, Y1; AC250V, (Safety Standard Certified Type KX)
iPackaging
Code
A
B
oIndividual
Specification Code
For part number that cannot be identified without "Individual
Specification," it is added at the end of part number, expressed
by three-digit alphanumerics.
Packaging
Ammo Pack Taping
Bulk
2
!Note
• Please read rating and
!CAUTION
(for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please review our product specifications or consult the approval sheet for product specifications before ordering.
C85E.pdf
Jul.13,2011
High Voltage Ceramic Capacitors (500V-6.3kV)
(Part Number)
qProduct
ID
Product ID
DE
High Voltage Ceramic Capacitors (500V-6.3kV) /
Safety Standard Certified Ceramic Capacitors
DE
q
B
w
B3
e
3A
r
102
t
K
y
N2
u
A
i o
yCapacitance
Tolerance
Code
C
D
J
wSeries
Category
Code
A
B
C
H
S
F
High Voltage
Outline
Contents
Class 1 (Char. SL) DC1-3.15kV Rated
Class 2 DC1-3.15kV Rated
Class 1, 2 DC6.3kV Rated
High Temperature Guaranteed,
Low-dissipation Factor (Char. R, C)
High Temperature Guaranteed,
Low-dissipation Factor (Char. D)
LCD Backlight Inverter Circuit
Code
uLead
Style
Lead
Style
Vertical
Crimp
Long
Vertical
Crimp
Short
Dimensions (mm)
Lead
Spacing
5
7.5
10
5
7.5
10
5
Straight
Long
7.5
10
7.5
5
Straight
Short
Vertical
Crimp
Taping
Straight
Taping
7.5
7.5
5
7.5
7.5
5
7.5
ø0.6T0.05
ø0.6T0.05
ø0.5T0.05
ø0.6T0.05
ø0.5T0.05
ø0.5T0.05
ø0.6T0.05
ø0.5T0.05
12.7
15
30
12.7
15
Y
Y
ø0.6T0.05
Y
ø0.6T0.05
Y
Lead Diameter
Pitch of
Components
K
Z
Capacitance Tolerance
T0.25pF
T0.5pF
T5%
T10%
W80%, Y20%
A2
A3
A4
B2/J2
B3/J3
B4
C1
The first three digits (qProduct ID and
wSeries
Category) express
"Series Name."
eTemperature
Characteristics
Code
B3
E3
F3
C3
R3
D3
1X
2C
rRated
Voltage
Code
2H
3A
3D
3F
3J
LH
tCapacitance
Expressed by three figures. The unit is pico-farad (pF). The first
and second figures are significant digits, and the third figure
expresses the number of zeros that follow the two numbers.
Rated Voltage
DC500V
DC1kV
DC2kV
DC3.15kV
DC6.3kV
6.3kVp-p
Temperature
Characteristics
B
E
F
C
R
D
SL
CH
Cap. Change
or Temp. Coeff.
T10%
W20%,Y55%
W30%,Y80%
T20%
W15%,Y30%
T15%
W15%,Y30%
W20%,Y30%
0T60ppm/D
Y25
to
W85D
W85
to
W125D
Y25
to
W85D
W85
to
W125D
Y25
to
W125D
W20
to
W85D
Y25
to
W85D
Temperature
Range
C3
C4
CD
D1
D3
DD
N2
N3
N7
P2
P3
W350
to
Y1000ppm/D W20
to
W85D
iPackaging
Code
A
B
oIndividual
Specification Code
For part number that cannot be identified without "Individual
Specification," it is added at the end of part number, expressed
Hello everyone: I want to study the method ofusing a multiplier to measure the phase difference between two sine waves. I read in some op amp books that after sending two signals with the same frequen...
This week, we recommend a development board for the mobile station: TI SimpleLink CC2650 module (development board number: 93) . This development board is now in the mobile station, waiting for EE net...
Hello, I am the person who sent you an email some time ago asking about the CNC flash light circuit. I would like to ask if I can add your QQ. My QQ is 59576621. I have something I would like to consu...
[size=4]I'm currently looking at some stuff from Tiva[/size] [size=4]It's an upgrade from 430[/size] [size=4]STM32 has a huge number of developers and materials in China[/size] [size=4]Compared with S...
The most significant feature of IPS panels is that both electrodes are located on the same surface, unlike other LCD panels, which have electrodes arranged on top and bottom surfaces in a three-dim...[Details]
Current Development Status of DVR Market
A DVR, or digital video recorder, uses a hard disk for recording, unlike traditional analog video recorders. It's often called a DVR because it's a com...[Details]
On August 18th, Galaxis, a specialist in integrated intelligent intralogistics robotics, officially unveiled its next-generation, ultra-narrow aisle forklift mobile robot, the "VFR Ultra-Narrow Ser...[Details]
A half-bridge is an inverter topology for converting DC to AC. A typical half-bridge circuit consists of two controller switches, a three-wire DC power supply, two feedback diodes, and two capacito...[Details]
Based on the commutation technology, thyristor rectifiers are classified into two main types. Line-commutated and force-commutated inverters are commonly used, while other commutated inverters, nam...[Details]
Reflow soldering is one of the most commonly used methods in electronics manufacturing, allowing for the soldering of large numbers of components in a relatively short time. However, any experience...[Details]
Puttshack's Trackaball uses the Nordic nRF54L15 system-on-chip (SoC) to monitor sensors and enable Bluetooth low energy connectivity, while the nPM2100 power management integrated circuit (PMIC) ...[Details]
"I want to ask why there are so many manufacturers making mobile phone CPUs, but only Intel and AMD make computer CPUs?"
The progress of domestic PC CPU production has disappointed many ...[Details]
Compiled from semiengineering
The industry is increasingly concerned about power consumption in AI, but there are no simple solutions. This requires a deep understanding of software and ...[Details]
introduction
The widespread use of air conditioner communication circuits began with the rise of household inverter air conditioners. With China's energy conservation and emission reduction in...[Details]
On August 20, it was reported that the specifications of Intel's upcoming Panther Lake mobile processor appeared on the Intel GFX CI website, which mainly focuses on Intel's open source Linux drive...[Details]
0 Introduction
With a rapidly aging population, a young couple is now required to care for an increasing number of elderly people, leading to a growing difficulty in providing care for them. E...[Details]
We know that the power output by the engine does not directly act on the wheels to drive the car, but needs to pass through a series of power transmission mechanisms. So how is the power transmitte...[Details]
Chip architecture licensing company ARM has hired Amazon's AI chip chief Rami Sinno to help advance its plan to develop its own complete chip, people familiar with the matter said, according to Reu...[Details]
Abstract: This design uses field-effect transistors to create a tube-like audio power amplifier. The preamplifier uses a single Class A transistor, while the power stage utilizes Class AB push-pull...[Details]