592D106X9016C2T Vishay Sprague, 592D106X9016C2T Datasheet - Page 10

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592D106X9016C2T

Manufacturer Part Number
592D106X9016C2T
Description
Single Components, Passive Components, Capacitors
Manufacturer
Vishay Sprague
Datasheet
PERFORMANCE CHARACTERISTICS (Continued)
8.1
9.
9.1
10.
10.1
11.
12.
12.1
13.
14.
15.
16.
17.
Document Number: 40004
Revision: 01-Dec-05
The Equivalent Series Resistance shall not exceed
the value listed in the Standard Ratings Table.
Life Test: Capacitors shall withstand rated DC
voltage applied at + 85 °C for 2000 hours or derated
DC voltage applied at + 125 °C for 1000 hours.
Following the life test, the dissipation factor and
leakage shall meet the initial requirement; the
capacitance change shall not exceed ± 10 % of the
initial value; the leakage current shall not exceed
125 % of the initial requirement
Humidity Test: Capacitors shall withstand 1000
hours at + 40 °C, 90 % to 95 % relative humidity, with
no voltage applied
Following the humidity test, capacitance change shall
not exceed ± 10 % of the initial value, dissipation
factor shall not exceed 150 % of the initial
requirement; leakage current shall not exceed 200 %
of the initial requirement at + 25 °C
Solderability: Capacitors will meet the solderability
requirements of ANSI/J-STD-002, Test B, Category 3.
Resistance to Soldering Heat: Capacitors mounted
on a substrate will withstand + 260 °C for 10 seconds.
Following the resistance to soldering heat test,
capacitance, dissipation factor and DC leakage
current shall meet the initial requirement.
Marking: The small body area of these capacitors
does not allow elaborate marking schemes. All
required information is present on the carton or
package in which the parts are shipped; in addition,
part number, quantity and data code are indicated on
the reels.
Terminal Strength: Per IEC-384-3, minimum of 5N
shear force.
Environmental: Mercury, CFC and ODS materials
are not used in the manufacture of these capacitors.
Flammability: Encapsulant materials meet UL94 V0
Capacitor Failure Mode: The predominant failure
mode for solid tantalum capacitors is increased
leakage current resulting in a shorted circuit.
Capacitor failure may result from excess forward or
reverse DC voltage, surge current, ripple current,
thermal shock or excessive temperature.
The increase in leakage is caused by a breakdown of
the Ta
leakage failure of solid tantalum chip capacitors, refer
to Vishay Sprague Technical Paper, “Leakage Failure
Mode in Solid Tantalum Chip Capacitors“.
2
O
5
dielectric. For additional information on
For technical questions, contact: tantalum@vishay.com
Conformal Coated, Maximum CV
Solid Tantalum Chip Capacitors
TANTAMOUNT®, Low Profile,
GUIDE TO APPLICATION
1.
Standard Conditions, for example; output filters
Severe Conditions, for example; input filters
*For typical wireless applications, Vishay offers 6.3 V Rated
Voltage capacitors with 4.5 V Operating Voltage capability.
Part number indicator is a “W” in place of “R” within the DC
Voltage Rating identifier.
Example; 592D107X_6W3C2_15H.
Contact factory for availability
**592D228X_6R3X2T21H
• A-C Ripple Current: The maximum allowable ripple
3.
current shall be determined from the formula:
CAPACITOR VOLTAGE
CAPACITOR VOLTAGE
Recommended rated working voltage guidelines:
(- 55 °C to + 85 °C)
where,
P =
R
A-C Ripple Voltage: The maximum allowable ripple
voltage shall be determined from the formula:
or, from the formula:
where,
P =
R
Z =
ESR
ESR
RATING (V)
RATING (V)
6.3**
6.3**
=
=
6.3*
6.3*
I
4.0
4.0
10
16
20
25
35
50
10
16
20
25
35
50
V
rms
V
rms
rms
given in the table in Paragraph Number 6
(Power Dissipation)
The capacitor Equivalent Series
Resistance at the specified frequency.
given in the table in Paragraph Number 6
(Power Dissipation).
The capacitor Equivalent Series
Resistance at the specified frequency.
frequency.
Power Dissipation in Watts at + 25 °C as
Power Dissipation in Watts at + 25 °C as
The capacitor impedance at the specified
=
=
=
Z
--------------- -
R
I
rms
ESR
P
--------------- -
R
ESR
×
P
Z
OPERATING VOLTAGE (V)
OPERATING VOLTAGE (V)
Vishay Sprague
4.1**
4.1**
2.5
3.6
6.0
2.5
3.3
5.0
8.0
10
12
15
24
28
10
12
15
24
www.vishay.com
592D
10

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