T210A103J075PS Kemet Corp., T210A103J075PS Datasheet - Page 20

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T210A103J075PS

Manufacturer Part Number
T210A103J075PS
Description
GR500 High Reliability Solid Tantalum Capacitors; Capacitance: 0.01uF; Voltage: 75V; Tolerance: ±5%; Body Size: 0.250" x 0.125" Lead Style: Axial; Body Style: Hermetically-Sealed; Features: P Failure Rate
Manufacturer
Kemet Corp.
Datasheet
18
4.5.10 Vibration (see 3.5.11)—Capacitors shall be tested as
specified in MIL-STD-202. Method 204. The following
details apply:
4.5.11 Thermal shock and immersion (see 3.5.13).
4.5.11.1 Thermal shock—Capacitors shall be tested as
specified in MIL-STD-2t)2, Method 107. The following
details apply:
4.5.11.2 Immersion—Capacitors shall be tested as specified
in MIL-STD-202, Method 104. The following details apply:
4.5.12 Solderability (see 3.5.13)—Capacitors shall be
tested as specified in MIL-STD-202. Method 208. The fol-
lowing details apply:
4.5.13 Terminal strength (see 3.5.14)
4.5.13.1 Pull—Capacitors shall be tested as specified in
MIL-STD-202, Method 211. The following details apply:
4.5.13.2 Twist—Capacitors shall he tested as specified in
MIL-STD-202, Method 211. The following details apply:
c) Applied voltage during shock—dc rated voltage.
d) Monitoring during shock—electrical discontinuities of
e) Visual examination after test—no indication of
a) Test condition letter—B (Except. # cycles = 10)
b) Measurements before and after test—not applicable.
a) Test condition letter—B
b) Measurements after tests dc leakage, capacitance and
c) Visual examination after test
a) Number of leads tested-2
b) Depth of immersion in flux and solder within
a) Test condition letter—A
b) The body of the capacitor shall be secured.
c) Applied force—3 pounds.
a) Test condition letter—D
b) Rotations—3
a) Test condition letter—D (20 g)
b) Mounting—Capacitor bodies shall be rigidly mounted
c) Applied voltage during vibration—dc rated voltage.
d) Monitoring during last cycle—electrical discontinuities
e) Visual examination after test—no indication of mechan-
case, tubulation or seal.
500 microseconds or greater duration.
mechanical damage arcing or breakdown.
and leads attached to supported terminals. Lead length
between capacitor body and supporting terminals shall
be approximately
of 500 microseconds or greater duration
ical damage, arcing, or breakdown.
dissipation factor (see 4.5.4, 4.5.5, 4.5.6) shall be as
specified in detailed specification within 4 hours after
removal from the final immersion bath.
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
GR500 GRADED RELIABILITY SPECIFICATION (Continued)
3
/
8
inch.
1
/
8
inch of
GR500 GRADED RELIABILITY SPECIFICATIONS
4.5.14 Moisture resistance (see 3.5.15)—Capacitors shall
be tested as specified in MIL-STD-202, Method 106 (less
Step 7b). The following details apply:
4.5.15 Case insulation (see 3.5.16)
4.5.15.1 Case insulation dielectric strength—Capacitors
shall be placed in a V-block. A dc potential of 2000 volts
(applied at the rate of 500 volts/second) shall be applied
between the V-block and capacitor case for a period 1
minute ±5 seconds. A maximum leakage current of 20
microamps will be allowed.
4.5.15.2 Case insulation resistance—Capacitors shall be
placed in a V-block as specified in 4.5.16.1. The insulation
resistance shall be measured with a polarizing voltage of 500
±50 volts dc for 1 minute +0,-15 seconds. The capacitor
shall be moved in the block and the measurement repeated
five times.
4.5.16 Temperature stability (see 3.5.17)—DC leakage,
capacitance, and dissipation factor (see 4.5.4, 4.5.5, and
4.5.6) shall be measured at the temperatures specified in
Table 5, except that the dc leakage measurements at -55°C
(step 2) are not required. However, after the measurements
of capacitance and dissipation factor have been made at the
-55°C temperature (step 2), rated voltage shall be applied for
a minimum of 5 minutes. The capacitors shall be stabilized
at each temperature. Thermal stability shall be considered
acceptable when ∆C = ≥0.2% between two successive mea-
surements taken at 15 minute intervals.
4.5.17 Surge Current—Capacitors shall be subjected to 10
consecutive cycles of surge current at -55°C, +85°C. Rated
voltage ± 2% shall be applied for 4 ± 1 seconds, the capaci-
Step
a) Applied voltage—none
b) Measurement after test—dc leakage, capacitance and
c) Visual examination after test—no indication of deleteri-
TABLE 5 — Temperature Stability Test Conditions
1
2
3
4
5
6
ous corrosion.
dissipation factor (see 4.5.4, 4.5.5 and 4.5.6) shall be
measured within 2 to 6 hours after removal from the
humidity chamber.
Test Temperature (C)
+25(±2)
-55(+0, -3)
+25(±2)
+85(+4, -0)
+125(+4, -0)
+25(±2)
DC leakage, DF per tables,
∆Cap ± 10% DF per tables
∆Cap ± 12% DC leakage,
∆Cap + 8% DC leakage,
∆Cap ± 2% DC leakage.
∆Cap ±2%
DF per table
DF per table
DF per table
Per tables
Limits

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