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T25D226M050HSS View Datasheet(PDF) - Vishay Semiconductors

Part Name
Description
Manufacturer
T25D226M050HSS Datasheet PDF : 8 Pages
1 2 3 4 5 6 7 8
www.vishay.com
T25
Vishay
CAPACITOR PERFORMANCE CHARACTERISTICS
ITEM
CONDITION
Surge voltage
85 °C, 1000 successive test cycles at 1.3 of rated
voltage in series with a 1 kresistor at the rate of 30 s
ON, 30 s OFF, MIL-PRF-55365
Life test at +85 °C
2000 h application of rated voltage at 85 °C,
MIL-STD-202 method 108
Life test at +125 °C
1000 h application of 2/3 rated voltage at 125 °C,
MIL-STD-202 method 108
POST TEST PERFORMANCE
Capacitance change
Dissipation factor
Leakage current
Within ± 10 % of initial
Not to exceed initial
Not to exceed initial
Capacitance changeWithin ± 10 % of initial
Leakage current
Not to exceed 125 % of initial
Capacitance changeWithin ± 20 % of initial
Leakage current
Not to exceed 125 % of initial
CAPACITOR ENVIRONMENTAL CHARACTERISTICS
ITEM
CONDITION
Moisture resistance MIL-STD-202, method 106, at rated voltage.
Thermal shock
Salt atmosphere
(corrosion)
Capacitors are subjected to 6 cycles per MIL-STD-202
method 107 of the following:
-55 °C (+0 °C, -6 °C) for 30 min, then
+25 °C (+3 °C, -3 °C) for 5 min, then
+85 °C (+4 °C, -5 °C) for 40 min, then
+125 °C (+4 °C, -0 °C) for 30 min, then
+25 °C (+3 °C, -3 °C) for 5 min
Test per MIL-202, method 101, condition B (48 h).
5 % salt solution applying.
POST TEST PERFORMANCE
Capacitance change
Cap. 600 μF
Cap. > 600 μF
Dissipation factor
Leakage current
Within ± 10 % of initial value
Within ± 20 % of initial value
Initial specified value or less
Initial specified value or less
Capacitance change
Cap.
Dissipation factor
Leakage current
Within ± 15 % of initial
Initial specified value or less
Initial specified value multiplied
by 12 or less
No harmful or extensive corrosion, = 90 % protection of
exposed metallic surfaces by finish, markings legible,
= 10 % corrosion of the terminal hardware or mounting.
MECHANICAL PERFORMANCE CHARACTERISTICS
TEST CONDITION CONDITION
Shear test
Apply a pressure load of 5 N for 10 s ± 1 s horizontally
to the center of capacitor side body.
AEC-Q200-006
Vibration
MIL-STD-202, method 204, condition D,
10 Hz to 2000 Hz, 20 g peak
Shock
(specified pulse)
MIL-STD-202, method 213, condition I,
100 g peak
Resistance to
soldering heat
MIL-STD-202, method 210, condition J,
except with only one heat cycle.
Solderability
Resistance to solvent
MIL-STD-202, method 208, ANSI/J-STD-002, test B.
Applies only to solder and tin plated terminations.
Does not apply to gold terminations.
MIL-STD-202, method 215
Sleeving
Seal
MIL-PRF-39003, paragraph 3.22:
apply a DC potential of 2000 V.
MIL-STD-202, method 112, condition A or D
POST TEST PERFORMANCE
There shall be no visual damage when viewed at 20 x
magnification and the component shall meet the original
electrical requirements.
There shall be no mechanical or visual damage to
capacitors post-conditioning.
Capacitance change
Dissipation factor
Leakage current
Within ± 10 % of initial
Initial specified value or less
Initial specified value or less
There shall be no mechanical or visual damage to
capacitors post-conditioning.
Capacitance change
Dissipation factor
Leakage current
Within ± 10 % of initial
Initial specified value or less
Initial specified value or less
There shall be no mechanical or visual damage to
capacitors post-conditioning.
All terminations shall exhibit a continuous solder coating
free from defects for a minimum of 95 % of the critical area
of any individual lead.
Marking has to remain legible, no degradation of the can
material.
Maximum leakage of 20 μA is allowed between the
capacitor case and the fixture.
There shall be no visual leakage.
Revision: 12-Nov-2019
5
Document Number: 40171
For technical questions, contact: tantalum@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000

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