Conformal Coated Guide
www.vishay.com
Vishay Sprague
Revision: 11-Apr-16
2
Document Number: 40150
For technical questions, contact: tantalum@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
SOLID ELECTROLYTE TANTALUM CAPACITORS
Solid electrolyte capacitors contain manganese dioxide,
which is formed on the tantalum pentoxide dielectric layer
by impregnating the pellet with a solution of manganous
nitrate. The pellet is then heated in an oven, and the
manganous nitrate is converted to manganese dioxide.
The pellet is next coated with graphite, followed by a layer
of metallic silver, which provides a conductive surface
between the pellet and the can in which it will be enclosed.
After assembly, the capacitors are tested and inspected to
assure long life and reliability. It offers excellent reliability
and high stability for consumer and commercial electronics
with the added feature of low cost.
Surface mount designs of “Solid Tantalum” capacitors use
lead frames or lead frameless designs as shown in the
accompanying drawings.
TANTALUM CAPACITORS FOR ALL DESIGN
CONSIDERATIONS
Solid electrolyte designs are the least expensive for a given
rating and are used in many applications where their very
small size for a given unit of capacitance is of importance.
They will typically withstand up to about 10 % of the rated
DC working voltage in a reverse direction. Also important
are their good low temperature performance characteristics
and freedom from corrosive electrolytes.
Vishay Sprague patented the original solid electrolyte
capacitors and was the first to market them in 1956. Vishay
Sprague has the broadest line of tantalum capacitors and
has continued its position of leadership in this field. Data
sheets covering the various types and styles of Vishay
Sprague capacitors for consumer and entertainment
electronics, industry, and military applications are available
where detailed performance characteristics must be
specified.
TYPE 195D, 572D, 591D, 592D / W, 594D,
595D, 695D, T95, 14002
TYPE 597D / T97 / 13008
Cathode Termination
(Silver + Ni/Sn/Plating)
Encapsulation
Anode Termination
(Silver + Ni/Sn/Plating)
Sintered Tantalum
Pellet
MnO
2
/Carbon/Silver
Coating
Sponge Teflon/Epoxy Tower
Cathode Termination
(Silver + Ni/Sn/Plating)
Encapsulation
Anode Termination
(Silver + Ni/Sn/Plating)
Sponge Teflon/Epoxy Tower
Sintered Tantalum
Pellet
MnO
2
/Carbon/Silver
Coating
Silver Epoxy
TYPE 194D
TYPE T96
TYPE T98
Encapsulation
SnPb or Gold Plated Ni Anode
End Cap Termination
Sponge Teflon
Anode Backfill
MnO
2
/Carbon/
Silver Coating
Sintered Tantalum
Pellet
Conductive Silver
Epoxy Adhesive
Cathode
Backfill
SnPb or Gold Plated Ni Cathode
End Cap Termination
Cathode Termination
(Silver + Ni/Sn or
Ni/SnPb Plating)
Encapsulation
Anode Termination
(Silver + Ni/Sn or
Ni/SnPb Plating)
Epoxy Tower/
Sponge Teflon
Sintered Tantalum
Pellet
MnO
2
/Carbon/
Silver Coating
Intermediate
Cathode
Silver
Fuse
Cathode Termination
(Silver + Ni/Sn or
Ni/SnPb Plating)
Encapsulation
Anode Termination
(Silver + Ni/Sn or
Ni/SnPb Plating)
Epoxy Tower/
Sponge Teflon
Sintered Tantalum
Pellet
MnO
2
/Carbon/
Silver Coating
Intermediate
Cathode
Silver
Fuse
Conformal Coated Guide
www.vishay.com
Vishay Sprague
Revision: 11-Apr-16
3
Document Number: 40150
For technical questions, contact: tantalum@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
COMMERCIAL PRODUCTS
SOLID TANTALUM CAPACITORS - CONFORMAL COATED
SERIES 592W 592D 591D 595D 594D
PRODUCT IMAGE
TYPE Surface mount T
ANTAMOUNT™ chip, conformal coated
FEATURES
Low profile, robust
design for use in
pulsed applications
Low profile,
maximum CV
Low profile, low ESR,
maximum CV
Maximum CV
Low ESR,
maximum CV
TEMPERATURE
RANGE
-55 °C to +125 °C
(above 40 °C, voltage
deratig is required)
-55 °C to +125 °C (above 85 °C, voltage derating is required)
CAPACITANCE
RANGE
330 µF to 2200 µF 1 µF to 2200 µF 1 µF to 1500 µF 0.1 µF to 1500 µF 1 µF to 1500 µF
VOLTAGE RANGE 6 V to 10 V 4 V to 50 V 4 V to 50 V 4 V to 50 V 4 V to 50 V
CAPACITANCE
TOLERANCE
± 20 % ± 10 %, ± 20 % ± 10 %, ± 20 % ± 10 %, ± 20 % ± 10 %, ± 20 %
LEAKAGE
CURRENT
0.01 CV or 0.5 A, whichever is greater
DISSIPATION
FACTOR
14 % to 45 % 4 % to 50 % 4 % to 50 % 4 % to 20 % 4 % to 20 %
CASE CODES C, M, X S, A, B, C, D, R, M, X A, B, C, D, R, M
T, S, A, B, C,
D, G, M, R
B, C, D, R
TERMINATION 100 % matte tin 100 % matte tin standard, tin / lead and gold plated available
SOLID TANTALUM CAPACITORS - CONFORMAL COATED
SERIES 597D 572D 695D 195D 194D
PRODUCT IMAGE
TYPE T
ANTAMOUNT™ chip, conformal coated
FEATURES
Ultra low ESR,
maximum CV,
multi-anode
Low profile,
maximum CV
Pad compatible with
194D and CWR06
US and European
case sizes
Industrial version of
CWR06 / CWR16
TEMPERATURE
RANGE
-55 °C to +125 °C (above 85 °C, voltage derating is required)
CAPACITANCE
RANGE
10 µF to 1500 µF 2.2 µF to 220 µF 0.1 µF to 270 µF 0.1 µF to 330 µF 0.1 µF to 330 µF
VOLTAGE RANGE 4 V to 75 V 4 V to 35 V 4 V to 50 V 2 V to 50 V 4 V to 50 V
CAPACITANCE
TOLERANCE
± 10 %, ± 20 %
LEAKAGE
CURRENT
0.01 CV or 0.5 A, whichever is greater
DISSIPATION
FACTOR
6 % to 20 % 6 % to 26 % 4 % to 8 % 4 % to 8 % 4 % to 10 %
CASE CODES V, D, E, R, F, Z, M, H P, Q, S, A, B, T A, B, D, E, F, G, H
C, S, V, X, Y, Z, R,
A, B, D, E, F, G, H
A, B, C, D, E, F, G, H
TERMINATION
100 % matte tin
standard, tin / lead
solder plated
available
100 % matte tin
standard, gold plated
available
100 % matte tin standard,
tin / lead and gold plated available
Gold plated standard;
tin / lead solder plated
and hot solder
dipped available
Conformal Coated Guide
www.vishay.com
Vishay Sprague
Revision: 11-Apr-16
4
Document Number: 40150
For technical questions, contact: tantalum@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
HIGH RELIABILITY PRODUCTS
SOLID TANTALUM CAPACITORS - CONFORMAL COATED
SERIES CWR06 CWR16 CWR26 13008 14002
PRODUCT IMAGE
TYPE T
ANTAMOUNT™ chip, conformal coated
FEATURES
MIL-PRF-55365/4
qualified
MIL-PRF-55365/13
qualified
MIL-PRF-55365/13
qualified
DLA approved
TEMPERATURE RANGE -55 °C to +125 °C (above 85 °C, voltage derating is required)
CAPACITANCE RANGE 0.10 µF to 100 µF 0.33 µF to 330 µF 10 µF to 100 µF 10 µF to 1500 µF 4.7 µF to 680 µF
VOLTAGE RANGE 4 V to 50 V 4 V to 35 V 15 V to 35 V 4 V to 63 V 4 V to 50 V
CAPACITANCE TOLERANCE
± 5 %, ± 10 %,
± 20 %
± 5 %, ± 10 %,
± 20 %
± 5 %, ± 10 %,
± 20 %
± 10 %, ± 20 % ± 10 %, ± 20 %
LEAKAGE CURRENT 0.01 CV or 1.0 A, whichever is greater 0.01 CV or 0.5 A, whichever is greater
DISSIPATION FACTOR 6 % to 10 % 6 % to 10 % 6 % to 12 % 6 % to 20 % 6 % to 14 %
CASE CODES
A, B, C, D, E, F, G,
H
A, B, C, D, E, F, G,
H
F, G, H
V, E, F, R, Z, D, M,
H, N
B, C, D, R
TERMINATION Gold plated; tin / lead; tin / lead solder fused Tin / lead
SOLID TANTALUM CAPACITORS - CONFORMAL COATED
SERIES T95 T96 T97 T98
PRODUCT IMAGE
TYPE T
ANTAMOUNT™ chip, Hi-Rel COTS, conformal coated
FEATURES High reliability
High reliability,
built in fuse
High reliability,
ultra low ESR,
multi-anode
High reliability,
ultra low ESR, built in
fuse, multi-anode
TEMPERATURE RANGE -55 °C to +125 °C (above 85 °C, voltage derating is required)
CAPACITANCE RANGE 0.15 µF to 680 µF 10 µF to 680 µF 10 µF to 1500 µF 10 µF to 1500 µF
VOLTAGE RANGE 4 V to 50 V 4 V to 50 V 4 V to 75 V 4 V to 75 V
CAPACITANCE TOLERANCE ± 10 %, ± 20 % ± 10 %, ± 20 % ± 10 %, ± 20 % ± 10 %, ± 20 %
LEAKAGE CURRENT 0.01 CV or 0.5 A, whichever is greater
DISSIPATION FACTOR 4 % to 14 % 6 % to 14 % 6 % to 20 % 6 % to 10 %
CASE CODES A, B, C, D, R, S, V, X, Y, Z R V, E, F, R, Z, D, M, H, N V, E, F, R, Z, M, H
TERMINATION 100 % matte tin, tin / lead

592D226X9016D2T15H

Mfr. #:
Manufacturer:
Vishay
Description:
Tantalum Capacitors - Solid SMD 22uF 16volts 10% D case Conformal
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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