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PDF DEHR32HxxxKxxx Data sheet ( Hoja de datos )

Número de pieza DEHR32HxxxKxxx
Descripción Capacitor ( Condenser )
Fabricantes Murata Electronics 
Logotipo Murata Electronics Logotipo



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!Note 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.
C84E8.pdf 03.4.21
High Voltage Ceramic Capacitors (DC250V-6.3kV)
HIGH VOLTAGE
CERAMICwww.DataSheet4U.com
CAPACITORS
Murata
Manufacturing Co., Ltd.
Cat.No.C84E-8

1 page




DEHR32HxxxKxxx pdf
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C84E8.pdf 03.4.21
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1 D Characteristics
Part Number
DC Rated
Voltage
(Vdc)
DESD32H101Kppp 500
DESD32H151Kppp 500
DESD32H221Kppp 500
DESD32H331Kppp 500
DESD32H471Kppp 500
DESD32H681Kppp 500
DESD32H102Kppp 500
DESD32H152Kppp 500
DESD32H222Kppp 500
DESD32H332Kppp 500
DESD32H472Kppp 500
DESD33A101Kppp 1000
DESD33A151Kppp 1000
DESD33A221Kppp
www.DDEatSaDS3h3eAe3t43U1K.cpompp
1000
1000
DESD33A471Kppp 1000
DESD33A681Kppp 1000
DESD33A102Kppp 1000
DESD33A152Kppp 1000
DESD33A222Kppp 1000
DESD33A332Kppp 1000
DESD33A472Kppp 1000
Capacitance
(pF)
100 +10,-10%
150 +10,-10%
220 +10,-10%
330 +10,-10%
470 +10,-10%
680 +10,-10%
1000 +10,-10%
1500 +10,-10%
2200 +10,-10%
3300 +10,-10%
4700 +10,-10%
100 +10,-10%
150 +10,-10%
220 +10,-10%
330 +10,-10%
470 +10,-10%
680 +10,-10%
1000 +10,-10%
1500 +10,-10%
2200 +10,-10%
3300 +10,-10%
4700 +10,-10%
Body Dia. D
(mm)
6
6
6
6
6
6
8
9
10
12
14
6
6
6
6
7
8
9
10
12
14
17
Lead Spacing F
(mm)
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
7.5
7.5
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
7.5
7.5
7.5
Body Thickness T
Lead
Package
(mm)
Long Bulk
4.0 A2B
Lead
Package
Short Bulk
J2B
4.0 A2B J2B
4.0 A2B J2B
4.0 A2B J2B
4.0 A2B J2B
4.0 A2B J2B
4.0 A2B J2B
4.0 A2B J2B
4.0 A2B J2B
4.0 A3B J3B
4.0 A3B J3B
4.5 A2B J2B
4.5 A2B J2B
4.5 A2B J2B
4.5 A2B J2B
4.5 A2B J2B
4.5 A2B J2B
4.5 A2B J2B
4.5 A2B J2B
4.5 A3B J3B
4.5 A3B J3B
4.5 A3B J3B
Three blank columns are filled with the lead and packaging codes. Please refer to the 3 columns on the right for the appropriate code.
Lead
Package
Taping
N2A
N2A
N2A
N2A
N2A
N2A
N2A
N2A
N2A
N3A
N7A
N2A
N2A
N2A
N2A
N2A
N2A
N2A
N2A
N3A
N7A
N7A
4

5 Page





DEHR32HxxxKxxx arduino
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C84E8.pdf 03.4.21
TThhisisccaatatalologghhaassoonnlylytytyppiciacal sl pspeecicficfiactaiotinosn.sTbheecraeufosree,thyeorueaisrenroeqsupeascteedfotrodaeptapirloevdesopuercpifircoadtuiocntss.pTehceifirceafotioren,spoleratosetranpsparocvt ethoeuarppprroodvuacltsshpeeectifoicraptiroondsucotrstrpaencsifaiccatitohnesabpepfororevaolrsdheerientgf.or product specifications before ordering.
Specifications and Test Methods
No. Item
Specifications
Testing Method
1 Operating Temperature Range
2 Appearance and Dimensions
2
3 Marking
Between Lead
Wires
4
Dielectric
Strength
Body Insulation
www.DataSheet4U.com
5
Insulation
Resistance (I.R.)
Between Lead
Wires
6 Capacitance
7 Dissipation Factor (D.F.)
8 Temperature Characteristics
-25 to +125°C
No marked defect on appearance form
and dimensions are within specified
range.
To be easily legible.
No failure.
No failure.
Char. R[DC1 to 3.15kV], Char. C
: 10000Mmin.
Char. R[DC250V] : 1000Mmin.
Within specified tolerance.
Char. R[DC250V] : 0.4% max.
Char. R[DC1 to 3.15kV] : 0.2% max.
Char. C : 0.3% max.
T. C.
R
C
Temp. char.
-25 to +85°C +85 to +125°C
Within ±15%
Within ±20%
Within +15/-30%
The capacitor should be visually inspected for evidence of
defect. Dimensions should be measured with slide calipers.
The capacitor should be visually inspected.
The capacitor should not be damaged when DC voltage of
200% of the rated voltage (DC1 to 3.15kV) or DC voltage of
250% of the rated voltage (DC250V, DC500V) is applied
between the lead wires for 1 to 5 sec.
(Charge/Discharge current V 50mA.)
The capacitor is placed in the container with
metal balls of diameter 1mm so that each
lead wire, shortcircuited, is kept about 2mm
off the metal balls as shown in the figure at
right, and AC1250V (r.m.s.) <50/60Hz> is
applied for 1 to 5 sec. between capacitor
lead wires and metal balls.
(Charge/Discharge current V 50mA.)
About 2mm
Metal balls
The insulation resistance should be measured with
DC500±50V (Char. R[DC 250V]: DC100±15V) within 60±5 sec.
of charging.
The capacitance should be measured at 20°C with 1±0.2kHz
and AC5V(r.m.s.) max.
The dissipation factor should be measured at 20°C with
1±0.2kHz and AC5V(r.m.s.) max.
The capacitance measurement should be made at each step
specified in Table.
Pre-treatment : Capacitor should be stored at 125±3°C for 1 hr., then placed at
*1room condition for 24±2 hrs. before measurements.
Step
12345
Temp.(°C) 20±2 -25±3 20±2 125±2 20±2
Pull
9 Strength of Lead
Bending
Lead wire should not be cut off.
Capacitor should not be broken.
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 (5N for
lead diameter 0.5mm), and keep it for 10±1
sec.
W
Each lead wire should be subjected to 5N (2.5N for lead
diameter 0.5mm) of weight and bent 90° at the point of egress,
in one direction, then returned to its original position and bent
90° in the opposite direction at the rate of one bend in 2 to 3
sec.
10
Vibration
Resistance
Appearance
Capacitance
D.F.
No marked defect.
Within specified tolerance.
Char. R[DC250V] : 0.4% max.
Char. R[DC1 to 3.15kV] : 0.2% max.
Char. C : 0.3% max.
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.
11 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 ethanol
solution of 25wt% 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 2mm from the root of lead wires.
Appearance
Capacitance
Change
No marked defect.
Within ±10%
12 Soldering Effect
Dielectric Strength
(Between Lead
Wires)
Per item 4.
The lead wire should be immersed into the melted solder of
350±10°C up to about 1.5 to 2mm from the main body for
3.5±0.5 sec.
Pre-treatment :
Capacitor should be stored at 125±3°C for 1 hr., then placed
at *room condition for 24±2 hrs. before initial measurements.
Post-treatment :
Capacitor should be stored for 24±2 hrs. at *room condition.
Measurement order :
Dielectric strength -> Pre-treatment -> Capacitance ->
Soldering effect test -> Post-treatment ->
Capacitance Dielectric strength (Char. R[DC250V])
* "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
Continued on the following page.
10

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