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TAZB475004C Datasheet(PDF) 35 Page - AVX Corporation

Part # TAZB475004C
Description  Introduction AVX Tantalum
Download  51 Pages
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Manufacturer  AVX [AVX Corporation]
Direct Link  http://www.avx.com
Logo AVX - AVX Corporation

TAZB475004C Datasheet(HTML) 35 Page - AVX Corporation

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34
Technical Summary and
Application Guidelines
Table I: Power Dissipation Ratings (In Free Air)
TAJ/TPS/CWR11
TAJ/TPS/CWR11
TAZ/CWR09
TAZ/CWR09
Series Molded Chip
Series Molded Chip
Series Molded Chip
2.1 RIPPLE RATINGS (A.C.)
In an a.c. application heat is generated within the capacitor
by both the a.c. component of the signal (which will depend
upon the signal form, amplitude and frequency), and by the
d.c. leakage. For practical purposes the second factor is
insignificant. The actual power dissipated in the capacitor is
calculated using the formula:
P =
I 2 R
and
rearranged to I =
(P
R)
.....(Eq. 1)
and substituting
P =
E2 R
Z2
where
I = rms ripple current, amperes
R = equivalent series resistance, ohms
E = rms ripple voltage, volts
P = power dissipated, watts
Z = impedance, ohms, at frequency under
consideration
Maximum a.c. ripple voltage (E
max).
From the previous equation:
E
max =
Z
(P
R)
.....(Eq. 2)
Where P is the maximum permissible power dissipated as
listed for the product under consideration (see tables).
However care must be taken to ensure that:
1. The d.c. working voltage of the capacitor must not be
exceeded by the sum of the positive peak of the applied
a.c. voltage and the d.c. bias voltage.
2. The sum of the applied d.c. bias voltage and the negative
peak of the a.c. voltage must not allow a voltage reversal
in excess of the “Reverse Voltage”.
Historical ripple calculations.
Previous ripple current and voltage values were calculated
using an empirically derived power dissipation required to
give a 10°C rise of the capacitors body temperature from
room temperature, usually in free air. These values are shown
in Table I. Equation 1 then allows the maximum ripple current
to be established, and Equation 2, the maximum ripple
voltage. But as has been shown in the AVX article on thermal
management by I. Salisbury, the thermal conductivity of a
Tantalum chip capacitor varies considerably depending upon
how it is mounted.
Case
Max. power
size
dissipation (W)
A
0.075
B
0.085
C
0.110
D
0.150
E
0.165
M
0.090
N
0.130
R
0.055
S
0.065
T
0.080
V
0.250
Case
Max. power
size
dissipation (W)
A
0.050
B
0.070
C
0.075
D
0.080
E
0.090
F
0.100
G
0.125
H
0.150
Temperature
derating factors
Temp. °C
Factor
+25
1.0
+55
0.90
+85
0.80
+125
0.16
Temperature correction factor
for ripple current
Temp. °C
Factor
+25
1.0
+55
0.95
+85
0.90
+125
0.40
SECTION 2
A.C. OPERATION, RIPPLE VOLTAGE AND RIPPLE CURRENT


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