Murata
Manufacturing Co., Ltd.
Cat.No.C41E-2
High Voltage Ceramic Capacitors DC10-40kV
HIGH VOLTAGE
CERAMIC
CAPACITORS
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1
2
3
CONTENTS
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• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specification or transact the approval sheet for product specification before ordering.
Recycled PaperRecycled Paper
1
2
3
Part Numbering 2
Radial Lead Type DHR Series (DC10-15kV) 3
Specifications and Test Methods 5
Typical Characteristics Data/Packaging 7
DHR Series !Caution/Notice 8
Mold Type DHS N4700 Series (DC10-40kV) 10
Typical Characteristics Data / Specifications and Test Methods 12
Mold Type DHS Z5V Series (DC20-40kV) 13
Typical Characteristics Data 14
Specifications and Test Methods 15
DHS Series !Caution and Notice 16
ISO9000 Certifications 18
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!Note C41E2.pdf 03.4.16
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• 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.
(Global Part Number)
High Voltage Ceramic Capacitors (over 10kV)
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 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.
First three digits of part number (qProduct ID and wSeries Category)
express "Series Name".
2
t
101
y
M
q
DH
u
2B
r
4A
e
B3
w
R
i
B
qProduct ID
Code Temp.
Char. Temp.
Range
B
Z5V
ZM
N4700
B3
F4
4E
T10%
W22%, Y82%
Y4700T1000ppm/D
Y25 to W85D
W10 to W85D
W20 to W85D
Cap. Change
or Temp. Coeff.
eTemperature Characteristics
wSeries Category
rRated Voltage
Rated VoltageCode
4A
4B
4C
4D
4F
4G
DC10kV
DC12kV
DC15kV
DC20kV
DC30kV
DC40kV
yCapacitance Tolerance
uLead Type (DHR Series)
iPackaging
ContentsCode
R
S
Radial Type
Mold Type
Capacitance ToleranceCode
K
M
Z
T10%
T20%
W80%, Y20%
Lead TypeCode
2B
2F Straight Long
Lead Spacing
9.5mm
12.7mm
Lead Diameter
ø0.65mm
ø0.8mm
Product ID
DH High Voltage Ceramic Capacitors (over 10kV)
PackagingCode
BBulk
uBody Diameter and Terminal Type (DHS Series)
Body DiameterCode
C2
D2
H2
L2
N2
R2
T2
CX
DX
HX
LX
NX
RX
TX
20mm
24mm
30mm
38mm
43mm
52mm
60mm
20mm
24mm
30mm
38mm
43mm
52mm
60mm
Terminal Type
ISO M4, P0.7
Tapped Holes
(Metric Screw Thread)
No.8-32, NC-2B
Tapped Holes
(Inch Screw Thread)
o Part Numbering
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1
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High Voltage Ceramic Capacitors DC10-40kV
Radial Lead Type DHR Series (DC10-15kV)
Features
1. Small size
2. Excellent heat-proof, humidity-proof and high-
dielectric strength voltage.
3. Coated with flame-retardant epoxy resin.
Applications
1. Color TV doublers and triplers
2. High voltage DC power supplies (PPCs, X-ray
apparatus, air cleaner, lasers, etc.)
3. Tuning capacitor in focus circuit for display
(in mm)
T max.
φd±0.05
F±2
D max.
4.0 max.
D+1.0 max.
35.0 min.
Marking Temp. Char.
Nominal body dia.
ø8mm
ø9mm and 10mm
ø11mm to 14mm
ø15mm to 18mm
Nominal Capacitance
Capacitance Tolerance
Rated Voltage
Manufacturer's Identification
Manufactured Date
Temperature
Characteristics
Nominal body dia.
ø
8mm
Nominal body dia.
ø
9 and 10mm
Nominal body dia.
ø
11 to 14mm
Nominal body dia.
ø
15mm min.
Omitted
Marked with • (dot)
Marked with code.
Marked with Z.
Under 100pF : Actual value, 100pF and over : Marked with 3 figures.
Marked with code, omitted for nominal body diameter ø8mm and under.
Marked with code.
Marked with , omitted for nominal body diameter ø14mm and under.
Abbreviation, omitted for nominal body diameter ø14mm and under.
(Ex.) 0 0 5 0 : Last numeral in year : Fix No.
: Number in the month
Omitted
Marked with code.
ZM
102KZ
10K
0050
221K
10K•
ZM
471K
10K
B
102MB
10K
0050
221M
10K
101
10K 101
10K
B
471M
10K
1 3
2
1 2 3
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1
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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.
ZM Characteristics
Part Number Rated Voltage
(kV) Capacitance
(pF) Body Dia. D
(mm) Lead Spacing F
(mm) Body Thickness T
(mm) Lead Dia. ød
(mm)
DHR4E4A101K2BB DC10 100 +10, -10% 8.0 9.5 7.0 0.65
DHR4E4A151K2BB DC10 150 +10, -10% 8.0 9.5 7.0 0.65
DHR4E4A221K2BB DC10 220 +10, -10% 9.0 9.5 7.0 0.65
DHR4E4A331K2BB DC10 330 +10,-10% 10.0 9.5 7.0 0.65
DHR4E4A471K2BB DC10 470 +10, -10% 12.0 9.5 7.0 0.65
DHR4E4A681K2BB DC10 680 +10, -10% 13.0 9.5 7.0 0.65
DHR4E4A102K2BB DC10 1000 +10, -10% 15.0 9.5 7.0 0.65
DHR4E4B101K2BB DC12 100 +10, -10% 8.0 9.5 7.3 0.65
DHR4E4B151K2BB DC12 150 +10, -10% 9.0 9.5 7.3 0.65
DHR4E4B221K2BB DC12 220 +10, -10% 9.0 9.5 7.3 0.65
DHR4E4B331K2BB DC12 330 +10, -10% 11.0 9.5 7.3 0.65
DHR4E4B471K2BB DC12 470 +10, -10% 12.0 9.5 7.3 0.65
DHR4E4B681K2BB DC12 680 +10, -10% 14.0 9.5 7.3 0.65
DHR4E4B102K2BB DC12 1000 +10, -10% 16.0 9.5 7.3 0.65
DHR4E4C101K2BB DC15 100 +10, -10% 8.0 9.5 8.2 0.65
DHR4E4C151K2BB DC15 150 +10, -10% 9.0 9.5 8.2 0.65
DHR4E4C221K2BB DC15 220 +10, -10% 10.0 9.5 8.2 0.65
DHR4E4C331K2BB DC15 330 +10, -10% 12.0 9.5 8.2 0.65
DHR4E4C471K2BB DC15 470 +10, -10% 13.0 9.5 8.2 0.65
DHR4E4C681K2BB DC15 680 +10, -10% 15.0 9.5 8.2 0.65
DHR4E4C102K2FB DC15 1000 +10, -10% 18.0 12.7 8.2 0.8
B Characteristics
Part Number Rated Voltage
(kV) Capacitance
(pF) Body Dia. D
(mm) Lead Spacing F
(mm) Body Thickness T
(mm) Lead Dia. ød
(mm)
DHRB34A101M2BB DC10 100 +20, -20% 8.0 9.5 7.0 0.65
DHRB34A151M2BB DC10 150 +20, -20% 8.0 9.5 7.0 0.65
DHRB34A221M2BB DC10 220 +20, -20% 9.0 9.5 7.0 0.65
DHRB34A331M2BB DC10 330 +20, -20% 10.0 9.5 7.0 0.65
DHRB34A471M2BB DC10 470 +20, -20% 12.0 9.5 7.0 0.65
DHRB34A681M2BB DC10 680 +20, -20% 13.0 9.5 7.0 0.65
DHRB34A102M2BB DC10 1000 +20, -20% 15.0 9.5 7.0 0.65
DHRB34B101M2BB DC12 100 +20, -20% 8.0 9.5 7.7 0.65
DHRB34B151M2BB DC12 150 +20, -20% 9.0 9.5 7.5 0.65
DHRB34B221M2BB DC12 220 +20, -20% 9.0 9.5 7.5 0.65
DHRB34B331M2BB DC12 330 +20, -20% 11.0 9.5 7.5 0.65
DHRB34B471M2BB DC12 470 +20, -20% 12.0 9.5 7.5 0.65
DHRB34B681M2BB DC12 680 +20, -20% 14.0 9.5 7.5 0.65
DHRB34B102M2BB DC12 1000 +20, -20% 16.0 9.5 7.5 0.65
DHRB34C101M2BB DC15 100 +20, -20% 8.0 9.5 8.5 0.65
DHRB34C151M2BB DC15 150 +20, -20% 9.0 9.5 8.2 0.65
DHRB34C221M2BB DC15 220 +20, -20% 10.0 9.5 8.2 0.65
DHRB34C331M2BB DC15 330 +20, -20% 12.0 9.5 8.2 0.65
DHRB34C471M2BB DC15 470 +20, -20% 13.0 9.5 8.2 0.65
DHRB34C681M2BB DC15 680 +20, -20% 15.0 9.5 8.2 0.65
DHRB34C102M2FB DC15 1000 +20, -20% 18.0 12.7 8.2 0.8
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This catalog has only typical specifications. Therefore, you are requested to approve our product specifications or to transact the approval sheet for product specificaions before ordering.
!Note C41E2.pdf 03.4.16
No.
1
Item
Operating Temperature Range
Specifications
-25 to +100˚C
Testing Method
2 Capacitance Within the specified tolerance. The capacitance should be measured at 20°C with 1±0.2kHz
and AC 5V(r.m.s.) max.
3 Dissipation Factor (D.F.) Same condition as capacitance.
4Insulation
Resistance (I.R.) Between
Lead Wires 10000Mmin. The insulation resistance should be measured with DC1000V
within 60±5 sec. of charging.
5Dielectric
Strength
Between
Lead Wires
Body Insulation
No failure.
No failure.
The capacitor should not be damaged when DC voltage of
150% of the rated voltage is applied between the lead wires for
60±5 sec. in insulating liquid or gas.
(Charge/Discharge currentV50mA)
The capacitor is placed in the container with
metal balls of diameter 1mm so that each
lead wire, shortcircuited, is kept
approximately 2mm off the metal balls as
shown in the figure at right, and DC voltage
of 3kV is applied for 10 sec. between
capacitor lead wires and metal balls.
(Charge/Discharge currentV50mA)
ZM
B1.0% max.
2.5% max.
6 Temperature Characteristics
The capacitance measurement should be made at each step
specified in table.
Capacitance change from the value of step 3 should not
exceed the limit specified.
Approx. 2mm
Metal balls
Temp. Char.
ZM
B
Temp. Coefficient or
Max. Cap. Change
-4700±1000ppm/˚C
±10% Step
Char.
ZM
B
1 2 3 4 5
20±2˚C
-25±3˚C 20±2˚C
20±2˚C 85±2˚C
85±2˚C 20±2˚C
20±2˚C
7 Soldering Effect
Appearance
Capacitance
Change
Dielectric Strength
(Between
Lead Wires)
No marked defect.
Within ±10%
No failure.
The lead wires should be immersed into the melted solder of
350±10˚C up to about 1.5 to 2.0mm from the main body for
3.5±0.5 sec.
Post-treatment: Capacitor should be stored for 24±2 hrs. at
*room condition.
8
Humidity
(Under
Steady
State)
Appearance
Capacitance
Change
D.F.
I.R.
Dielectric Strength
(Between
Lead Wires)
No marked defect.
Within ±10%
5000Mmin.
No failure.
Set the capacitor for 240±8 hrs. at 40±2˚C in 90 to 95% relative
humidity.
Post-treatment: Capacitor should be stored for 1 to 2 hrs. at
*room condition.
ZM
B1.5% max.
4.0% max.
ZM
B1.5% max.
4.0% max.
9 Life
Appearance
Capacitance
Change
D.F.
I.R.
Dielectric Strength
(Between
Lead Wires)
No marked defect.
Within ±10%
5000Mmin.
No failure
Apply a DC voltage of 125% of the rated voltage for 1000
+48
-0
hrs. in silicon oil at 85±2˚C.
Post-treatment: Capacitor should be stored for 24±2 hrs. at
*room condition.
(Charge/Discharge currentV50mA)
Continued on the following page.
(Note) Tests for Dielectric Strength (between lead wires), Charge Discharge Test, Humidity, Temperature Cycle and Life should be performed with
specimens having molded resin (MR1023C : made by Murata) extending over 3mm on all the surface.
* "room condition" Temperature: 15 to 35D, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
Specifications and Test Methods
5
1
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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.
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This catalog has only typical specifications. Therefore, you are requested to approve our product specifications or to transact the approval sheet for product specificaions before ordering.
!Note C41E2.pdf 03.4.16
No. Item Specifications Testing Method
10 Charge
Discharge
Test
Appearance
Capacitance
Change
D.F.
I.R.
Dielectric Strength
(Between
Lead Wires)
No marked defect.
Within ±10%
5000Mmin.
No failure.
Charge discharge test should be measured in the following test
circuit and cycle.
Applied voltage : Rated voltage
Cycle time : 20000 cycle
Post-treatment : Capacitor should be stored for 4 hrs. at *room
condition.
<Circuit> <Cycle>
Cx : specimen
R1: circuit protective resistor (300k)
C0: supplied energy for Cx. C0.
=
.10Cx
R2: current limitting resistor (E/10)
E : direct-current voltage source
ZM
B1.5% max.
4.0% max.
E
R1
R2
SW
C0CX
1 12
Charge Discharge
(sec.)
2
11 Temperature
Cycle
Appearance
Capacitance
Change
D.F.
I.R.
Dielectric Strength
(Between
Lead Wires)
No marked defect.
Within ±10%
5000Mmin.
No failure.
Temperature cycle should be measured in the following test.
Cycle time : 5 cycle
Post-treatment : Capacitor should be stored for 4 hrs. at *room
condition.
ZM
B1.5% max.
4.0% max.
12 Strength
of Lead
Pull
Bending
Lead wire should not be cut off.
Capacitor should not be broken. Each lead wire should be subjected to 5N of weight and bent
90˚ at the point of egress, in one direciton, then returned to its
original position and bent 90˚ in the opposite direction at the
rate of one bend in 2 to 3 sec.
As shown in the figure at right, fix the body of the
capacitor and apply a tensile weight gradually to
each lead wire in the radial direction of the
capacitor up to 10N and keep it for 10±1 sec.
W
13 Solderability of Leads Lead wire should be soldered with
uniform coating on the axial direction
over 3
4
– of the circumferential direction.
The lead wire of a capacitor should be dipped into a 25%
methanol solution of rosin and then into molten solder of
235±5˚C for 2±0.5 sec. In both cases the depth of dipping is up
to about 1.5 to 2.0mm from the root of lead wires.
(Note) Tests for Dielectric Strength (between lead wires), Charge Discharge Test, Humidity, Temperature Cycle and Life should be performed with
specimens having molded resin (MR1023C : made by Murata) extending over 3mm on all the surface.
* "room condition" Temperature: 15 to 35D, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
Continued from the preceding page.
Specifications and Test Methods
6
1
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This catalog has only typical specifications. Therefore, you are requested to approve our product specifications or to transact the approval sheet for product specificaions before ordering.
!Note C41E2.pdf 03.4.16
Typical Characteristics Data/Packaging
7
1
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Cap.-Temp. Char.
ZM Characteristics
40
20
0
-20
-40
Cap. Change (%)
-40 -20 0 20
Temperature (˚C)
40 60 80 100
B Characteristics
20
10
0
-10
-20
Cap. Change (%)
-40 -20 0 20
Temperature (˚C)
40 60 80 100
Cap.-DC Bias Char.
ZM Characteristics
20
10
0
-10
-20
-30
-40
Cap. Change (%)
0 10864 14122
DC-BIAS (kV)
16
DC15kV
DC10kV
DC12kV
B Characteristics
20
0
-40
-20
-60
-80
Cap. Change (%)
0 10864 14122
DC-BIAS (kV)
16
DC15kV
DC10kV
DC12kV
Packaging Styles
Bulk
Polyethylene Bag
Minimum Quantity (Order in Sets Only)
Minimum Order Quantity
200 (pcs.)
200 (pcs.)
• "Minimum Quantity" means the number 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.)
Example
FBT (HV) Anode of CRT
DHR Capacitor
(GND)
DHR
Capacitor
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!Note C41E2.pdf 03.4.16
DHR Series !Caution/Notice
8
1
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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.
!Caution (Rating)
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 Vo-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.
Voltage
Positional
Measurement
DC Voltage DC+AC Voltage AC Voltage Pulse Voltage (1) Pulse Voltage (2)
V0-p V0-p Vp-p Vp-p Vp-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 high-
frequency current, pulse current or similar current, it may
self-generate heat due to dielectric loss. The applied
voltage load should be such that the capacitor's self-
generated heat is within 10°C at an atmosphere
temperature of 25°C. When measuring, use a
thermocouple of small thermal capacity-K of ø0.1mm in
conditions where the capacitor is not affected by radiant
heat from other components or surrounding ambient
fluctuations. 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.)
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.
2. Operating Temperature and Self-generated Heat
!Caution (Storage and Operation 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.
The capacitor is designed to be used in insulating
media, such as epoxy resin, silicone oil, etc.
There must be 3mm or more of insulating media for
each direction of the capacitor.
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 -10 to 40 degrees
centigrade and 15 to 85%. Use capacitors within 6
months.
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.
Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this PDF catalog to prevent smoking and/or burning, etc.
This catalog has only typical specifications. Therefore, you are requested to approve our product specifications or to transact the approval sheet for product specificaions before ordering.
!Note C41E2.pdf 03.4.16
DHR Series !Caution/Notice
9
1
!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 approve our product specifications or transact the approval sheet for product specifications before ordering.
!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.
When soldering capacitor with a soldering iron, it
should be performed in following conditions.
Temperature of iron-tip: 400 degrees C. max.
Soldering iron wattage: 50W max.
Soldering time: 3.5 sec. max.
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.
!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.
Notice (Soldering and Mounting)
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.
Do not vibrate the PCB/PWB directly.
Excessive ultrasonic cleaning may lead to fatigue
destruction of the lead wires.
Notice (Rating)
Capacitance change of capacitor
1. Class 1 capacitors
Capacitance might change a little depending on the
surrounding temperature or an applied voltage.
Please contact us if you intend to use this product
in a strict time constant circuit.
2. Class 2 and 3 capacitors
Class 2 and 3 capacitors with temperature
characteristics B, E and F 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.
So, it is not likely to be suitable for use in a
time constant circuit. Please contact us if you
need detailed information.
Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this PDF catalog to prevent smoking and/or burning, etc.
This catalog has only typical specifications. Therefore, you are requested to approve our product specifications or to transact the approval sheet for product specificaions before ordering.
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• 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.
High Voltage Ceramic Capacitors DC10-40kV
Mold Type DHS N4700 Series (DC10-40kV)
Murata's high voltage ceramic capacitors, DHS N4700
series, are designed to meet the stringent requirements of
high voltage applications.
These capacitors are especially appropriate for applications
which require a low dissipation factor and a small voltage
coefficient.
Features
1. Epoxy resin encapsulated
2. Small size
3. Low dissipation factor and low heating value
4. Linear temperature characteristic
5. Low DC, AC-voltage coefficient
Applications
• Gas laser
• DC HV power supplies
• Lightning arresters, voltage distribution systems
• Electron microscopes, synchroscopes
• Electrostatic coating machines
DC Rated
Voltage (kV) Depth of tapped holes
(mm)
10, 15
20, 30
40
4
6
8
L±1.5
øD±1.5
(H)
(in mm)
DHS4E4A561KC2B
DHS4E4A122KH2B
DHS4E4A282KL2B
DHS4E4A502KR2B
DHS4E4A802KT2B
DHS4E4C371KC2B
DHS4E4C112KH2B
DHS4E4C192KL2B
DHS4E4C342KR2B
DHS4E4C532KT2B
560
1200
2800
5000
8000
370
1100
1900
3400
5300
±10
±20
±20
±10
10
15
ISO M4, P0.7
(Metric Screw Thread)
No.8-32, NC-2B
(Inch Screw Thread)
No.8-32, NC-2B
(Inch Screw Thread)
ISO M4, P0.7
(Metric Screw Thread)
20
30
38
52
60
20
30
38
52
60
16
18
12
14
20
30
38
52
60
20
30
38
52
60
DHS4E4A561MCXB
DHS4E4A122MHXB
DHS4E4A282MLXB
DHS4E4A502MRXB
DHS4E4A802MTXB
DHS4E4C371MCXB
DHS4E4C112MHXB
DHS4E4C192MLXB
DHS4E4C342MRXB
DHS4E4C532MTXB
560
1200
2800
5000
8000
370
1100
1900
3400
5300
Continued on the following page.
Part Number Capacitance
(pF) Capacitance
Tolerance (%) DC Rated
Voltage (kV) Terminal Type
(Screw Thread Type)
Dimensions (mm)
DLH
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DHS4E4G141KC2B
DHS4E4G441KH2B
DHS4E4G701KL2B
DHS4E4G132KR2B
DHS4E4G202KT2B
140
440
700
1300
2000
±20
±20
±10
40
No.8-32, NC-2B
(Inch Screw Thread)
No.8-32, NC-2B
(Inch Screw Thread)
ISO M4, P0.7
(Metric Screw Thread)
20
30
38
52
60 36 32
20
30
38
52
60
20
30
38
52
60
DHS4E4F191MCXB
DHS4E4F591MHXB
DHS4E4F941MLXB
DHS4E4F172MRXB
DHS4E4F272MTXB
DHS4E4G141MCXB
DHS4E4G441MHXB
DHS4E4G701MLXB
DHS4E4G132MRXB
DHS4E4G202MTXB
190
590
940
1700
2700
140
440
700
1300
2000
Part Number Capacitance
(pF) Capacitance
Tolerance (%) DC Rated
Voltage (kV) Terminal Type
(Screw Thread Type)
Dimensions (mm)
DL H
Continued from the preceding page.
DHS4E4D281KC2B
DHS4E4D881KH2B
DHS4E4D142KL2B
DHS4E4D252KR2B
DHS4E4D402KT2B
280
880
1400
2500
4000
±20
±10
20
No.8-32, NC-2B
(Inch Screw Thread)
ISO M4, P0.7
(Metric Screw Thread)
20
30
38
52
60 24 20
20
30
38
52
60
DHS4E4D281MCXB
DHS4E4D881MHXB
DHS4E4D142MLXB
DHS4E4D252MRXB
DHS4E4D402MTXB
280
880
1400
2500
4000
DHS4E4F191KC2B
DHS4E4F591KH2B
DHS4E4F941KL2B
DHS4E4F172KR2B
DHS4E4F272KT2B
190
590
940
1700
2700
±10
30
ISO M4, P0.7
(Metric Screw Thread)
20
30
38
52
60 28 24
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Typical Characteristics Data / Specifications and Test Methods
–30
–40 –20 0 20 40 60 80 100
–20 1
0
2
3
–10
0
10
20
30
Temperature (°C)
Capacitance Change (%)
Dissipation Factor (%)
Dissipation Factor
Capacitance
100806040200
–20
–10
0
DC Rated Voltage (%)
Capacitance Change (%)
Capacitance
Frequency (kHz)
1000100101
–6
–4
–2
0
Capacitance Change (%)
0
2
4
6
Dissipation Factor (%)
Capacitance
Dissipation Factor
Temperature Characteristic Typical Voltage Coefficient
Frequency Characteristic
ItemNo Specifications Testing Method
Operating Temperature Range
Capacitance
Temperature Characteristics
Dissipation Factor (D.F.)
Dielectric
Strength
Insulation Resistance (I.R.)
Strength of
Terminal
Life
Humidity
(Under Steady
State)
1
2
3
4
5
6
7
8
9
Between Terminal
Torque Strength
Appearance
Capacitance Change
D.F.
I.R.
Appearance
Capacitance Change
D.F.
I.R.
-20 to +85°C
Within the specified
tolerance.
Temperature coefficient
-4700±1000ppm/°C
(Temp. range: +20 to +85°C)
0.3% max.
No failure.
10000M min.
Capacitor should not be
broken.
No marked defect.
Within ±5%
1.0% max.
1000M min.
No marked defect.
Within ±5%
1.0% max.
1000M min.
The capacitance should be measured at 20°C with 1±0.1kHz
and AC 1 to 5V(r.m.s.).
The capacitance measurement should be made at each step
specified in table.
Capacitance change from the value of step 3 should not exceed the
limit specified.
The dissipation factor should be measured at 20°C with 1±0.1kHz
and AC 1 to 5V(r.m.s.).
The capacitor should not be damaged when DC voltage of 150% of
the rated voltage is applied between the terminals for 60±5 sec. in
insulating liquid or gas.
(Charge/Discharge current V 50mA)
The insulation resistance should be measured with DC1000V within
60±5 sec. of charging.
When mounting the capacitor on equipment, be sure to mount
them within the torque strength values shown in the table below.
Apply a DC voltage of 125% of the rated voltage for 100+24/-0 hrs. in
silicon oil at 85±2°C.
Post-treatment: Capacitor should be stored for 24 hrs. at *room
condition. (Charge/Discharge current V 50mA)
Set the capacitor for 100+24/-0 hrs. at 40±2°C in 90 to 95% relative
humidity. Post-treatment: Capacitor should be stored for 24 hrs. at
*room condition.
* "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
Step
Temp. (°C) 1
2
3
20±24
85±25
20±2
Terminal Type
ISO M4, No.8-32 torque (N·m)
1.5
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3
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High Voltage Ceramic Capacitors DC10-40kV
Mold Type DHS Z5V Series (DC20-40kV)
Features
1. Epoxy resin encapsulated
2. Small size
3. Highly reliable internal construction
4. Wide selection of values
5. Up to DC 40kV working voltage
Applications
• Electrostatic coating machines
• Electron microscopes, synchroscopes
• CRT power supplies
• Lightning arrester voltage distribution systems
• DC HV power supplies
No.8-32, NC-2B
(Inch Screw Thread)
No.8-32, NC-2B
(Inch Screw Thread)
No.8-32, NC-2B
(Inch Screw Thread)
DHSF44D601ZD2B
DHSF44D102ZH2B
DHSF44D242ZN2B
DHSF44D332ZR2B
DHSF44D482ZT2B
DHSF44F461ZD2B
DHSF44F781ZH2B
DHSF44F182ZN2B
DHSF44F252ZR2B
DHSF44F362ZT2B
DHSF44G341ZD2B
DHSF44G571ZH2B
DHSF44G132ZN2B
DHSF44G192ZR2B
DHSF44G272ZT2B
600
1000
2400
3300
4800
460
780
1800
2500
3600
340
570
1300
1900
2700
+80, -20
20
30
40
ISO M4, P0.7
(Metric Screw Thread)
ISO M4, P0.7
(Metric Screw Thread)
ISO M4, P0.7
(Metric Screw Thread)
24
30
43
52
60
24
30
43
52
60
24
30
43
52
60
26
34
41
24
32
39
24
30
43
52
60
24
30
43
52
60
24
30
43
52
60
DHSF44D601ZDXB
DHSF44D102ZHXB
DHSF44D242ZNXB
DHSF44D332ZRXB
DHSF44D482ZTXB
DHSF44F461ZDXB
DHSF44F781ZHXB
DHSF44F182ZNXB
DHSF44F252ZRXB
DHSF44F362ZTXB
DHSF44G341ZDXB
DHSF44G571ZHXB
DHSF44G132ZNXB
DHSF44G192ZRXB
DHSF44G272ZTXB
600
1000
2400
3300
4800
460
780
1800
2500
3600
340
570
1300
1900
2700
Part Number Capacitance
(pF) Capacitance
Tolerance (%) DC Rated
Voltage (kV) Terminal Type
(Screw Thread Type)
Dimensions (mm)
DL H
L±1.5
øD±1.5
(H)
(in mm)
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Typical Characteristics Data
Dissipation Factor and Capacitance-Temperature Life
Dissipation Factor and Capacitance-Frequency Humidity
Typical Voltage Coefficient
–60 –40 –20 0 20 40 60 80 100 120 140
–80
–60
–40
–20
0
+20
2.0
1.0
0
Temperature (°C)
Capacitance Change (%)
Dissipation Factor (%)
Dissipation Factor
Capacitance
1kHz 10kHz 100kHz 1MHz
–4
–2
+2
0
2.0
1.0
0
Frequency
Capacitance Change (%)
Dissipation Factor (%)
Dissipation Factor
Capacitance Change
0 20 40 60 80 100
+10
0
–10
–20
–30
–40
–50
2.0
1.0
0
DC Rated Voltage (%)
Capacitance Change (%)
Dissipation Factor (%)
Dissipation Factor
Capacitance
0 2000 4000
20
10
0
–10
–20
2.0
1.0
0
Time (h)
Capacitance Change (%)
Dissipation Factor (%)
D.F.
C
Life Capacitance & D.F. VS Time
Test Voltage : DC 15kV
Temp. : 85°C
0 100 200 300 400
20
10
0
–10
–20
2.0
1.0
0
Time (h)
Capacitance Change (%)
Dissipation Factor (%)
D.F.
C
Humidity Capacitance & D.F. VS Cycles
Test Voltage : DC 15kV
Temp. : 60°C
Relative Humidity : 90-95%
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Specifications and Test Methods
ItemNo Specifications Testing Method
Operating Temperature Range
Capacitance
Temperature Characteristics
Dissipation Factor (D.F.)
Dielectric
Strength
Insulation Resistance (I.R.)
Strength of
Terminal
Life
Humidity
(Under Steady
State)
1
2
3
4
5
6
7
8
9
Between Terminal
Torque Strength
Appearance
Capacitance Change
D.F.
I.R.
Appearance
Capacitance Change
D.F.
I.R.
-20 to +85°C
Within the specified
tolerance.
Capacitance change
+22%/-82%
(Temp. range: +10 to +85°C)
1.5% max.
No failure.
10000M min.
Capacitor should not be
broken.
No marked defect.
Within ±20%
5.0% max.
1000M min.
No marked defect.
Within ±20%
5.0% max.
1000M min.
The capacitance should be measured at 25°C with 1±0.1kHz
and AC 1 to 5V (r.m.s.).
The capacitance measurement should be made at each step
specified in table.
Capacitance change from the value of step 3 should not exceed the
limit specified.
The dissipation factor should be measured at 25°C with 1±0.1kHz
and AC 1 to 5V (r.m.s.).
The capacitor should not be damaged when DC voltage of 150% of
the rated voltage is applied between the terminals for 60±5 sec. in
insulating liquid or gas.
(Charge/Discharge current V 50mA)
The insulation resistance should be measured with DC1000V within
60±5 sec. of charging.
When mounting the capacitors on equipment, be sure to mount
them within the torque strength values shown in the table below.
Apply a DC voltage of 125% of the rated voltage for 100+24/-0 hrs. in
silicon oil at 85±2°C.
Post-treatment: Capacitor should be stored for 24 hrs. at *room
condition. (Charge/Discharge current V 50mA)
Set the capacitor for 100+24/-0 hrs. at 40±2°C in 90 to 95% relative
humidity. Post-treatment: Capacitor should be stored for 24 hrs. at
*room condition.
* "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
Step
Temp. (°C) 1
25±22
-20±33
25±24
85±25
25±2
Terminal Type
ISO M4, No.8-32 torque (N·m)
1.5
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Caution
1. Operating voltage
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 Vo-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.
2. Operating temperature and self-generated heat
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 high-frequency current,
pulse current or similar current, it may self-generate heat
due to dielectric loss. The applied voltage load should be
such that the capacitor's self-generated heat is within
10°C at an atmosphere temperature of 25°C.
When measuring, use a thermocouple of small thermal
capacity-K of ø0.1mm in conditions where the capacitor
is not affected by radiant heat from other components or
surrounding ambient fluctuations.
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.)
3. Installation
Installation torque should not exceed the torque strength
values in "Specifications and Test Methods".
Do not use a screw with a thread depth greater than
specified.
Avoid installation in which any bending torque is applied
to the capacitor terminal.
Do not rework or resolder the terminal.
4. 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 –10 to 40°C and 15 to 85%. Use
capacitors within 6 months.
5. Vibration and impact
Do not expose a capacitor 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.
DHS Series !Caution and Notice
Pulse Voltage (2)Pulse Voltage (1)AC VoltageDC+AC VoltageDC Voltage
Positional
Measurement
Voltage
Vo-p Vo-p Vp-p Vp-p Vp-p
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DHS Series !Caution and Notice
Notice
Capacitance change of capacitor
Class 1 capacitors
Capacitance might change a little depending on the
surrounding temperature or an applied voltage.
Please contact us if you intend to use this product in a
strict time constant circuit.
Class 2 and 3 capacitors
Class 2 and 3 capacitors with temperature characteristics
B, E and F 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. So, it is
not likely to be suitable for use in a time constant circuit.
Please contact us if you need detailed information.
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2
3
4
18
1
2
3
4
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ISO9000 Certifications
Izumo Murata Manufacturing Co., Ltd.
Plant
Feb. 1. '00
Certified Date
Underwriters Laboratories Inc.
Organization
A5587
Registration No.
ISO9001
Murata Electronics (Thailand), Ltd. Apr. 8. '02 Underwriters Laboratories Inc. A6279 ISO9001
Applied standard
Manufacturing plants which produce the products in this catalog have obtained the ISO9000 quality system certificate.
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!Note C41E2.pdf 03.4.16
Note:
1. Export Control
<
For customers outside Japan
>
No muRata products should be used or sold, through any channels, for use in the design, development, production, utilization, maintenance or operation of, or
otherwise contribution to (1) any weapons (Weapons of Mass Destruction (nuclear, chemical or biological weapons or missiles) or conventional weapons) or (2)
goods or systems specially designed or intended for military end-use or utilization by military end-users.
<
For customers in Japan
>
For products which are controlled items subject to the “Foreign Exchange and Foreign Trade Law” of Japan, the export license specified by the law is required
for export.
2. Please contact our sales representatives or product engineers before using the products in this catalog for the applications listed below, which require especially
high reliability for the prevention of defects which might directly damage a third party's life, body or property, or when one of our products is intended for use in
applications other than those specified in this catalog.
qAircraft equipment wAerospace equipment
eUndersea equipment rPower plant equipment
tMedical equipment yTransportation equipment (vehicles, trains, ships, etc.)
uTraffic signal equipment iDisaster prevention / crime prevention equipment
oData-processing equipment !0 Application of similar complexity and/or reliability requirements to the applications listed above
3. Product specifications in this catalog are as of April 2003. They are subject to change or our products in it may be discontinued without advance notice. Please
check with our sales representatives or product engineers before ordering. If there are any questions, please contact our sales representatives or product
engineers.
4. Please read rating and CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
5. 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.
6. Please note that unless otherwise specified, we shall assume no responsibility whatsoever for any conflict or dispute that may occur in connection with the effect
of our and/or a third party's intellectual property rights and other related rights in consideration of your use of our products and/or information described or
contained in our catalogs. In this connection, no representation shall be made to the effect that any third parties are authorized to use the rights mentioned
above under licenses without our consent.
7. No ozone depleting substances (ODS) under the Montreal Protocol are used in our manufacturing process.
International Division
3-29-12, Shibuya, Shibuya-ku, Tokyo 150-0002, Japan
Phone: 81-3-5469-6123 Fax: 81-3-5469-6155 E-mail: intl@murata.co.jp
Head Office
1-10-1, Higashi Kotari, Nagaokakyo-shi, Kyoto 617-8555, Japan
Phone: 81-75-951-9111
http://www.murata.com/
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