DEBB33A682KN7A Murata Electronics North America, DEBB33A682KN7A Datasheet - Page 15

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DEBB33A682KN7A

Manufacturer Part Number
DEBB33A682KN7A
Description
CAP 1000VDC
Manufacturer
Murata Electronics North America
Series
DEBr
Datasheets

Specifications of DEBB33A682KN7A

Voltage - Rated
1000V (1kV)
Lead Style
*
Capacitance
6800pF
Tolerance
±10%
Temperature Coefficient
B
Mounting Type
*
Operating Temperature
-25°C ~ 85°C
Features
High Voltage
Applications
General Purpose
Package / Case
*
Size / Dimension
*
Thickness
*
Lead Spacing
*
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Ratings
-
!Note
Operating Temperature Range: -25 to +125 C (-25 to +85 C for UL standards )
No.
*
1
2
3
4
5
6
7
8
Safety Standard Certified Type KY/KH/KX Specifications and Test Methods
1
"C" expresses nominal capacitance value (pF).
Appearance and Dimensions
Marking
Capacitance
Dissipation Factor (D.F.)
Q
Insulation Resistance (I.R.)
Dielectric
Strength
Temperature Characteristics
Solderability of Leads
• 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.
Item
Between Lead
Wires
Body
Insulation
No visible defect, and dimensions are within
specified range.
To be easily legible
Within specified tolerance
10000M min.
No failure
No failure
Lead wire should be soldered with uniform coating
on the axial direction over 3/4 of the circumferential
direction.
(Temp. range: -25 to +85 C)
(Temp. range: +20 to +85 C)
Char.
Char.
Char.
B, E
SL
SL
F
B
E
F
Temperature Coefficient
QU400+20C*
QU1000
Capacitance Change
+350 to -1000ppm/ C
Specifications
Specifications
Within 10%
Within
Within
D.F.V2.5%
D.F.V5.0%
Type KY/KH/KX Specifications and Test Methods
+20
–55
+30
–80
1
(CF30pF)
(CU30pF)
%
%
The capacitor should be visually inspected for evidence of
defect.
Dimensions should be measured with slide calipers.
The capacitor should be visually inspected.
The capacitance, dissipation factor and Q should be measured
at 20˚C with 1 0.1kHz (char. SL: 1 0.1MHz) and AC5V(r.m.s.)
max.
The insulation resistance should be measured with
The voltage should be applied to the capacitor through a
resistor of 1M .
The capacitor should not be damaged when the test voltages
from Table 1 are applied between the lead wires for 60 sec.
First, the terminals of the capacitor
should be connected together. Then,
as shown in the figure at right, a metal
foil should be closely wrapped around
the body of the capacitor to the
distance of about 3 to 6mm from
each terminal.
Then, the capacitor should be inserted
into a container filled with metal balls
of about 1mm diameter. Finally, AC
voltage from Table 2 is applied for 60 sec. between the
capacitor lead wires and metal balls.
The capacitance measurement should be made at each step
specified in Table 3.
The lead wire of a capacitor should be dipped into molten
solder for 2 0.5 sec.
The depth of immersion is up to about 1.5 to 2.0mm from the
root of lead wires.
Temp. of solder: Lead Free Solder (Sn-3Ag-0.5Cu) 245 5 C
DC500 50V within 60 5 sec. of charging.
Type
Type
Step
KH
KH
KY
KX
KY
KX
1
2
3
4
5
H63 Eutectic Solder 235 5 C
<Table 2>
For lead spacing F=7.5mm AC2600V(r.m.s.)
For lead spacing F=5mm AC2000V(r.m.s.)
<Table 3>
AC2600V(r.m.s.)
AC2600V(r.m.s.)
AC4000V(r.m.s.)
Temperature (ºC)
Test Voltage
Test Method
-25 2
20 2
20 2
85 2
20 2
<Table 1>
Continued on the following page.
AC2600V(r.m.s.)
AC4000V(r.m.s.)
Test Voltage
Metal
Foil
about
3 to 6mm
Metal
Balls
13
C85E.pdf
Jul.13,2011
4

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