572D
Vishay Sprague
Solid Tantalum Chip Capacitors
T
ANTAMOUNT
®
,
Low Profile, Conformal Coated, Maximum CV
FEATURES
•
P case offers single-sided lead (Pb)-free
terminations
Wraparound lead (Pb)-free terminations:
Q, S, A, B and T
•
•
•
Images
not to
scale
RoHS
COMPLIANT
P case
top
P case
bottom
B and T
cases
Q, S and
A cases
Low Impedance
8 mm and 12 mm tape and reel packaging available per
EIA-481-1 and reeling per IEC 286-3
7" [178 mm] standard
13" [330 mm] available
PERFORMANCE CHARACTERISTICS
Operating Temperature:
- 55 °C to + 85 °C
(To + 125 °C with voltage derating)
Capacitance Range:
2.2 µF to 220 µF
Capacitance Tolerance:
± 10 %, ± 20 % standard
Voltage Rating:
4 WVDC to 35 WVDC
ORDERING INFORMATION
572D
TYPE
336
CAPACITANCE
X0
CAPACITANCE
TOLERANCE
X0 =
±
20 %
X9 = ± 10 %
6R3
DC VOLTAGE RATING
AT + 85 °C
This is expressed in volts. To
complete the three-digit
block, zeros precede the
voltage rating. A decimal
point is indicated by an "R"
(6R3 = 6.3 volts).
A
CASE CODE
2
TERMINATION
T
REEL SIZE AND
PACKAGING
This is expressed in
picofarads. The first two
digits are the significant
figures. The third is the
number of zeros to
follow.
See Ratings
and Case
Codes Table.
2 = 100 % Tin
T = Tape and Reel
4 = Gold Plated
7" [178 mm] Reel
W = 13" [330 mm] Reel
Note:
Preferred Tolerance and reel sizes are in bold.
We reserve the right to supply higher voltage ratings and tighter capacitance tolerance capacitors in the same case size.
DIMENSIONS
in inches [millimeters]
L
H
A
CASE CODE
P
L (Max.)
0.087 ± 0.012
[2.2 ± 0.3]
W
0.049 ± 0.012
[1.25 ± 0.3]
Single-side electrodes
(Both electrodes at
bottom side only)
W
B
C
D
B
0.031 ± 0.012
[0.8 ± 0.3]
C
0.031 ± 0.012
[0.8 ± 0.3]
D (Ref.)
0.008
[0.2]
H
0.039 ± 0.008
[1.0 ± 0.2]
A
0.024 ± 0.012
[0.6 ± 0.3]
L
H
A
B
C
D
W
CASE CODE
Q
S
A
B
T
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1
L (Max.)
0.126 ± 0.008
[3.2 ± 0.2]
0.126 ± 0.012
[3.2 ± 0.3]
0.126 ± 0.012
[3.2 ± 0.3]
0.130 ± 0.012
[3.3 ± 0.3]
0.138 ± 0.008
[3.5 ± 0.2]
W
0.063 ± 0.008
[1.6 ± 0.2]
0.063 ± 0.012
[1.6 ± 0.3]
0.067 ± 0.012
[1.7 ± 0.3]
0.106 ± 0.012
[2.7 ± 0.3]
0.106 ± 0.008
[2.7 ± 0.2]
H
0.031 ± 0.008
[0.8 ± 0.2]
0.039 ± 0.008
[1.0 ± 0.2]
0.05 ± 0.012
[1.3 ± 0.3]
0.066 ± 0.012
[1.7 ± 0.3]
0.039 ± 0.008
[1.0 ± 0.2]
A
0.031 ± 0.008
[0.8 ± 0.2]
0.031 ± 0.012
[0.8 ± 0.3]
0.031 ± 0.012
[0.8 ± 0.3]
0.031 ± 0.012
[0.8 ± 0.3]
0.031 ± 0.008
[0.8 ± 0.2]
B
0.047 ± 0.008
[1.2 ± 0.2]
0.047 ± 0.012
[1.2 ± 0.3]
0.047 ± 0.012
[1.2 ± 0.3]
0.047 ± 0.012
[1.2 ± 0.3]
0.047 ± 0.008
[1.2 ± 0.2]
C
0.031 ± 0.008
[0.8 ± 0.2]
0.031 ± 0.012
[0.8 ± 0.3]
0.031 ± 0.012
[0.8 ± 0.3]
0.043 ± 0.012
[1.1 ± 0.3]
0.043 ± 0.008
[1.1 ± 0.2]
D (Ref.)
0.008
[0.2]
0.008
[0.2]
0.008
[0.2]
0.008
[0.2]
0.008
[0.2]
For technical questions, contact: tantalum@vishay.com
Document Number: 40064
Revision: 30-Mar-06
572D
Solid Tantalum Chip Capacitors
Vishay Sprague
®
, Low Profile, Conformal Coated, Maximum CV
TANTAMOUNT
RATINGS AND CASE CODE
µF
STD
4V
EXT
STD
6.3 V
EXT
STD
10 V
EXT
STD
16 V
EXT
STD
A
P
B
A
P/Q/S
Q/S
S
A/T
B
A
S*
A*
B
A/T*/S*
25 V
EXT
Q
S
A
STD
B*
35 V
EXT
2.2
4.7
6.8
10
15
22
33
P
47
68
100
220
B/B**/T/S*
* Contact factory for availability
B
STANDARD / EXTENDED RATINGS
CAPACITANCE
CASE CODE
(µF)
PART NUMBER
MAX. DCL
AT + 25 °C
(µA)
MAX. DF
AT + 25 °C
120 Hz (%)
MAX. ESR
AT + 25 °C
100 kHz (Ohms)
MAX. RIPPLE
100 kHz
Irms (Amps)
0.13
0.63
0.63
0.37
0.26*
0.29
0.13
0.17
0.24
0.22
0.25
0.26
0.36
0.45
0.36
0.63
0.09
0.29
0.23*
0.28*
0.45
0.22
0.45
0.22*
0.24*
0.10
0.18
0.12
0.15
0.22*
4 WVDC AT + 85 °C, SURGE = 5.2 V . . . 2.7 WVDC AT + 125 °C, SURGE = 3.4 V
572D336X_004P2_001**
1.32
14
1.5
572D227X_004B2_
8.8
16
0.2
572D227X_004B2_001**
8.8
16
0.2
572D227X_004T2_
8.8
26
0.6
572D227X_004S2_*
8.8*
25*
0.8*
6.3 WVDC AT 85 °C, SURGE = 8 V . . . 4 WVDC AT + 125 °C, SURGE = 5 V
33
A
572D336X_6R3A2_
2.1
8
0.8
33
P
572D336XO6R3P2_
2.1
14
1.5
33
Q
572D336X_6R3Q2_
2.1
10
2.0
33
S
572D336X_6R3S2_
2.1
10
1.0
47
Q
572D476X_6R3Q2_
3.0
10
1.1
47
S
572D476X_6R3S2_
3.0
10
0.9
68
S
572D686X06R3S2_
4.3
12
0.9
100
A
572D107X_6R3A2_
6.3
14
0.5
100
B
572D107X_6R3B2_
6.3
14
0.4
100
T
572D107X_6R3T2_
6.3
14
0.5
220
B
572D227X_6R3B2_
13.9
16
0.2
10 WVDC AT + 85 °C, SURGE = 13 V . . . 7 WVDC AT + 125 °C, SURGE = 8 V
10
P
572D106X_010P2_
1.0
8
3.0
33
A
572D336X_010A2_
3.3
10
0.8
33*
S*
572D336X_010S2_*
3.3*
10*
1.1*
47*
A*
572D476X_010A2_*
4.7*
10*
0.8*
100
B
572D107X_010B2_
10
14
0.4
16 WVDC AT + 85 °C, SURGE = 20 V . . . 10 WVDC AT + 125 °C, SURGE = 12 V
22
A
572D226X_016A2_
3.5
8
1.4
22
B
572D226X_016B2_
3.5
6
0.5
22*
S*
572D226X_016S2_*
3.5*
8*
1.4*
22*
T*
572D226X_016T2_*
3.5*
8*
1.4*
25 WVDC AT + 85 °C, SURGE = 32 V . . . 17 WVDC AT + 125 °C, SURGE = 20 V
2.2
Q
572D225X_025Q2_
0.65
6
5.0
4.7
A
572D475X_025A2_
1.2
6
2.0
4.7
S
572D475X_025S2_
1.2
8
4.0
10
A
572D106X_025A2_
2.5
10
3.5
35 WVDC AT + 85 °C, SURGE = 46 V . . . 23 WVDC AT + 125 °C, SURGE = 28 V
4.7*
B*
572D475X_035B2_*
1.7*
6*
1.6*
** = 1.7 mm Max. height, 572D227X_004B2_001 and 1.0 mm Max. height, 572D336X_004P2_001
For 10 % tolerance, specify "9"; For 20 % tolerance change to "0".
Extended range ratings are in bold print.
33
220
220
220
220*
P
B
B
T
S
Document Number: 40064
Revision: 30-Mar-06
For technical questions, contact: tantalum@vishay.com
www.vishay.com
2
572D
Vishay Sprague
Solid Tantalum Chip Capacitors
TANTAMOUNT
®
, Low Profile, Conformal Coated, Maximum CV
TYPICAL CURVES AT + 25 °C, IMPEDANCE AND ESR VS FREQUENCY
"B" case
1000.0
100.0
__ __ __
__
IMPEDANCE
ESR
OHMS
10.0
1.0
100 µF - 10 VDC
0.1
220 µF - 6 VDC
0.0
100
1k
10 k
100 k
1M
FREQUENCY IN Hz
"P" case
1000.0
100.0
__ __ __
__
IMPEDANCE
ESR
OHMS
10.0
33 µF - 6 VDC
1.0
10 µF - 10 VDC
0.1
100
1k
10 k
100 k
1M
FREQUENCY IN Hz
"Q" case
1000.0
__
100.0
__ __ __
IMPEDANCE
ESR
OHMS
10.0
1.0
47 µF - 6 VDC
33 µF - 6 VDC
1k
10 k
100 k
1M
0.1
100
FREQUENCY IN Hz
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For technical questions, contact: tantalum@vishay.com
Document Number: 40064
Revision: 30-Mar-06
572D
Solid Tantalum Chip Capacitors
Vishay Sprague
®
, Low Profile, Conformal Coated, Maximum CV
TANTAMOUNT
PERFORMANCE CHARACTERISTICS
1.
1.1
Operating Temperature:
Capacitors are designed to
operate over the temperature range - 55 °C to + 85 °C.
Capacitors may be operated to + 125 °C with voltage
derating to two-thirds the + 85 °C rating.
+ 85 °C RATING
WORKING
VOLTAGE (V)
4.0
6.3
10
16
20
25
SURGE
VOLTAGE (V)
5.2
8.0
13
20
26
32
+ 125 °C RATING
WORKING
VOLTAGE (V)
2.7
4.0
7.0
10
13
17
SURGE
VOLTAGE (V)
3.4
5.0
8.0
12
16
20
6.
Dissipation Factor:
The dissipation factor,
determined from the expression 2πfRC, shall not
exceed values listed in the Standard Ratings Table.
Measurements shall be made by the bridge method
at, or referred to, a frequency of 120 Hz and a
temperature of + 25 °C.
Leakage Current:
Capacitors shall be stabilized at
the rated temperature for 30 minutes. Rated voltage
shall be applied to capacitors for 5 minutes using a
steady source of power (such as a regulated power
supply) with 1000 ohm resistor connected in series
with the capacitor under test to limit the charging
current. Leakage current shall then be measured.
Note that the leakage current varies with temperature
and applied voltage. See graph below for the
appropriate adjustment factor.
6.1
7.
2.
DC Working Voltage:
The DC working voltage is the
maximum operating voltage for continuous duty at the
rated temperature.
Surge Voltage:
The surge DC rating is the maximum
voltage to which the capacitors may be subjected
under any conditions, including transients and peak
ripple at the highest line voltage.
Surge Voltage Test:
Capacitors shall withstand the
surge voltage applied in series with a 33 ohm ± 5 %
resistor at the rate of one-half minute on, one-half
minute off, at + 85 °C, for 1000 successive test
cycles.
Following the surge voltage test, the dissipation factor
and the leakage current shall meet the initial
requirements; the capacitance shall not have
changed more than ± 10 %.
Capacitance Tolerance:
The capacitance of all
capacitors shall be within the specified tolerance
limits of the normal rating.
Capacitance measurements shall be made by means
of polarized capacitance bridge. The polarizing voltage
shall be of such magnitude that there shall be no
reversal of polarity due to the AC component. The
maximum voltage applied to capacitors during
measurement shall be 2 volts rms at 120 Hz at + 25 °C.
If the AC voltage applied is less than one-half volt rms,
no DC bias is required. Accuracy of the bridge shall be
within ± 2 %.
Capacitance Change With Temperature:
The
capacitance change with temperature shall not
exceed the following percentage of the capacitance
measured at + 25 °C:
- 55 °C
- 10 %
+ 85 °C
+ 10 %
+ 125 °C
+ 12 %
TYPICAL LEAKAGE CURRENT FACTOR RANGE
100
3.
+ 125 °C
3.1
10
+ 85 °C
+ 55 °C
Leakage Current Factor
1.0
+ 25 °C
3.2
0 °C
0.1
- 55 °C
4.
4.1
0.01
0.001
0 10 20 30 40 50 60 70 80 90 100
Percent of Rated Voltage
7.1
7.2
7.3
8.
At + 25 °C,
the leakage current shall not exceed the
value listed in the Standard Ratings Table.
At + 85 °C,
the leakage current shall not exceed 10
times the value listed in the Standard Ratings Table.
At + 125 °C,
the leakage current shall not exceed 12
times the value listed in the Standard Ratings Table.
Equivalent Series Resistance:
Measurements shall
be made by the bridge method at, or referred to, a
frequency of 100 kHz and a temperature of + 25 °C.
5.
Document Number: 40064
Revision: 30-Mar-06
For technical questions, contact: tantalum@vishay.com
www.vishay.com
4
572D
Vishay Sprague
Solid Tantalum Chip Capacitors
TANTAMOUNT
®
, Low Profile, Conformal Coated, Maximum CV
GUIDE TO APPLICATION
1.
Recommended rated working voltage guidelines:
(- 55 °C to + 85 °C)
CAPACITOR VOLTAGE
RATING (V)
4
6.3
10
16
20
25
35
50
PERFORMANCE CHARACTERISTICS
(Continued)
8.1
9.
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. For rating 10 µF, 25 V A-case, allow
capacitance change to ± 15 % following 125 °C life test,
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 currrent 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 5 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
2
O
5
dielectric. For additional information on
leakage failure of solid tantalum chip capacitors, refer
to Vishay Sprague Technical Paper, “Leakage Failure
Mode in Solid Tantalum Chip Capacitors.
Standard Conditions, for example; output filters
OPERATING VOLTAGE (V)
2.5
3.6
6
10
12
15
24
28
9.1
10.
Severe Conditions, for example; input filters
CAPACITOR VOLTAGE
RATING (V)
4
6.3
10
16
20
25
35
50
OPERATING VOLTAGE (V)
2.5
3.3
5
8
10
12
15
24
10.1
11.
12.
12.1
2.
A-C Ripple Current:
The maximum allowable ripple
current shall be determined from the formula:
I
rms
=
where,
P=
P
---------------
-
R
ESR
13.
R
ESR
=
3.
14.
15.
16.
17.
Power Dissipation in Watts at + 25 °C as
given in the table in Paragraph Number 6
(Power Dissipation)
The capacitor Equivalent Series
Resistance at the specified frequency.
A-C Ripple Voltage:
The maximum allowable ripple
voltage shall be determined from the formula:
P
V
rms
=
Z ---------------
-
R
ESR
or, from the formula:
V
rms
=
I
rms
×
Z
where,
P=
Power Dissipation in Watts at + 25 °C as
given in the table in Paragraph Number 6
(Power Dissipation).
The capacitor Equivalent Series
Resistance at the specified frequency.
The capacitor impedance at the specified
frequency.
R
ESR
=
Z=
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5
For technical questions, contact: tantalum@vishay.com
Document Number: 40064
Revision: 30-Mar-06