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550D187X9006R2 Datasheet(PDF) 6 Page - Vishay Siliconix

Part # 550D187X9006R2
Description  Solid-Electrolyte TANTALEX짰 Capacitors for High Frequency Power Supplies
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Manufacturer  VISHAY [Vishay Siliconix]
Direct Link  http://www.vishay.com
Logo VISHAY - Vishay Siliconix

550D187X9006R2 Datasheet(HTML) 6 Page - Vishay Siliconix

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Document Number: 40017
For technical questions, contact: aluminumcaps4@vishay.com
www.vishay.com
Revision: 28-Aug-08
6
550D
Solid-Electrolyte TANTALEX® Capacitors
for High Frequency Power Supplies
Vishay Sprague
PERFORMANCE CHARACTERISTICS (Continued)
7.1
At + 25 °C, the leakage current shall not exceed the
value listed in the Standard Ratings Table.
7.2
At + 85 °C, the leakage current shall not exceed
10 times the value listed in the Standard Ratings
Table.
7.3
At + 125 °C, the leakage current shall not exceed
15 times the value listed in the Standard Ratings
Table.
8.
Life Test: Capacitors shall withstand rated DC voltage
applied at + 85 °C for 2000 h or rated DC voltage
applied at + 125 °C for 1000 h.
8.1
Following the life test, the dissipation factor shall
meet the initial requirement; the capacitance change
shall not exceed ± 2 %; the leakage current shall not
exceed 125 % of the original requirement.
9.
Shelf Test: Capacitors shall withstand a shelf test for
5000 h at a temperature of + 85 °C, with no voltage
applied.
9.1
Following the shelf test, the leakage current shall
meet the initial requirement; the dissipation factor
shall not exceed 150 % of the initial requirement; the
capacitance change shall not exceed ± 5 %.
10
Vibration Tests: Capacitors shall be subjected to
vibration tests in accordance with the following
criteria.
10.1
Capacitors shall be secured for test by means of a
rigid mounting using suitable brackets.
10.2
Low Frequency Vibration: Vibration shall consist of
a simple harmonic motion having an amplitude of
0.03" (0.76) and a maximum total excursion of 0.06"
(1.52), in a direction perpendicular to the major axis
of the capacitor.
10.2.1 Vibration frequency shall be varied uniformly between
the approximate limits of 10 Hz to 55 Hz during a
period of approximately one minute, continuously for
1 and 1.5 h.
10.2.2 A cathode ray oscilloscope or other comparable
means shall be used in determining electrical
intermittency during the final 30 minutes of the test.
The AC voltage applied shall not exceed 2 volts rms.
10.2.3 Electrical tests shall show no evidence of intermittent
contacts, open circuits or short circuits during these
tests.
10.2.4 Following the low frequency vibration test, capacitors
shall meet the original requirements for leakage
current and dissipation factor; capacitance change
shall not exceed ± 5 % of the original measured
value.
10.3
High Frequency Vibration: Vibration shall consist of
a simple harmonic motion having an amplitude of
0.06" (1.52) ± 10 % maximum total excursion or 20 g
peak, whichever is less.
10.3.1 Vibration Frequency shall be varied logarithmically
from 50 Hz to 2000 Hz and return to 50 Hz during a
cycle period of 20 min.
10.3.2 The vibration shall be applied for 4 h in each of
2 directions, parallel and perpendicular to the major
axis of the capacitors.
10.3.3 Rated DC voltage shall be applied during the
vibration cycling.
10.3.4 A cathode ray oscilloscope or other comparable
means shall be used in determining electrical
intermittency during test. The AC voltage applied
shall not exceed 2 Vrms.
10.3.5 Electrical tests shall show no evidence of intermittent
contacts, open circuits or short circuits during these
tests.
10.3.6 There shall be no mechanical damage to these
capacitors as a result of these tests.
10.3.7 Following
the
high
frequency
vibration
test,
capacitors
shall
meet
the
original
limits
for
capacitance, dissipation factor and leakage current.
11.
Acceleration Test:
11.1
Capacitors shall be rigidly mounted by means of
suitable brackets.
11.2
Capacitors
shall
be
subjected
to
a
constant
acceleration of 100 g for a period of 10 s in each of 2
mutually perpendicular planes.
11.2.1 The direction of motion shall be parallel to and
perpendicular to the cylindrical axis of the capacitors.
11.3
Rated
DC
voltage
shall
be
applied
during
acceleration test.
11.3.1 A cathode ray oscilloscope or other comparable
means shall be used in determining electrical
intermittency during test. The AC voltage applied
shall not exceed 2 Vrms.
11.4
Electrical tests shall show no evidence of intermittent
contacts, open circuits or short circuits during these
tests.
11.5
There shall be no mechanical damage to these
capacitors as a result of these tests.
11.6
Following the acceleration test, capacitors shall meet
the original limits for capacitance, dissipation factor
and leakage current.
12.
Shock Test:
12.1
Capacitors shall be rigidly mounted by means of
suitable brackets. The test load shall be distributed
uniformly on the test platform to minimize the effects
of unbalanced loads.


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