489D226X0016D1VE3 Vishay, 489D226X0016D1VE3 Datasheet - Page 7

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489D226X0016D1VE3

Manufacturer Part Number
489D226X0016D1VE3
Description
CAPACITOR, TANTALUM, 16V, 22UF
Manufacturer
Vishay
Datasheet

Specifications of 489D226X0016D1VE3

Capacitor Application
General Purpose
Capacitance
22µF
Capacitance Tolerance
± 20%
Voltage Rating
16V
Capacitor Case Style
Radial
No. Of Pins
2
Lead Spacing
2.5mm
Operating Temperature
RoHS Compliant
Operating Temperature Range
-55°C To +85°C
Rohs Compliant
Yes
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7
489D, 499D
Vishay Sprague
GUIDE TO APPLICATION
1.
2.
3.
A-C Ripple Current: The maximum allowable ripple
current shall be determined from the formula:
where,
P =
RESR =
A-C Ripple Voltage: The maximum allowable ripple
voltage shall be determined from the formula:
where,
Z =
AC ripple current or voltage derating factor: If
these capacitors are to be operated at temperatures
above + 25 °C, the permissible rms ripple current or
voltage shall be calculated using the derating factors
in the table below:
TEMPERATURE
V rms
+ 125 °C
+ 25 °C
+ 55 °C
+ 85 °C
I
rms
=
Power Dissipation in Watts at + 25 °C as
given below
The capacitor Equivalent Series
Resistance at the specified frequency.
The capacitor Impedance at the specified
frequency.
=
---------------- -
R ESR
P
--------------- -
R
ESR
P
×
Z
DERATING FACTOR
For technical questions, contact: eurotant@vishay.com
1.0
0.9
0.8
0.4
Resin-Coated, Radial-Lead
Solid Tantalum Capacitors
4.
5.
Power dissipation: Power dissipation will be
affected by the heat sinking capability of the mounting
surface. Non-sinusoidal ripple current may produce
heating effects which differ from those shown in the
following table. It is important that the equivalent I
value be established when calculating permissible
operating levels.
Cleaning: These capacitors are compatible with all
commonly used solvents, such as TES, TMS, Prelete
and Chloretane. Solvents containing methylene
chloride or other epoxy solvents should be avoided
since these will attack the epoxy encapsulation
material.
CASE CODE
M
A
B
C
D
E
H
N
R
F
POWER DISSIPATION
AT + 25 °C (WATTS)
Document Number: 42070
0.080
0.090
0.100
0.110
0.120
0.130
0.140
0.150
0.160
0.180
Revision: 12-Jun-06
RMS

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