595D
Vishay Sprague
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated, Maximum CV
FEATURES
•
New extended range offerings
•
Large capacitance rating range
Pb-free
Available
•
Terminations: Tin (2) standard
•
8 mm, 12 mm tape and reel packaging
COMPLIANT
available per EIA 481-1 and reeling per IEC
286-3. 7" [178 mm] standard. 13" [330 mm] available
•
Case code compatibility with EIA 535BAAC and
CECC30801 molded chips
RoHS*
PERFORMANCE CHARACTERISTICS
Operating Temperature: - 55 °C to + 85 °C
(To + 125 °C with voltage derating)
Capacitance Range: 0.1 µF to 1500 µF
Capacitance Tolerance: ± 10 %, ± 20 % standard
Voltage Rating: 4 WVDC to 50 WVDC
ORDERING INFORMATION
595D
TYPE
106
CAPACITANCE
X0
CAPACITANCE
TOLERANCE
This is expressed in
picofarads. The first two
digits are the significant
figures. The third is the
number of zeros to
follow.
X0 = ± 20 %
X9 = ± 10 %
010
DC VOLTAGE RATING
AT + 85 °C
A
CASE CODE
2
TERMINATION
This is expressed in volts. See Ratings
To complete the three-digit and Case
block, zeros precede the
Codes Table.
voltage rating. A decimal
point is indicated by an "R"
(6R3 = 6.3 volts).
2 = 100 % Tin
4 = Gold Plated
8 = Solder
Plated (60/40)
Special Order
T
PACKAGING
T = Tape and Reel
7" [178 mm] Reel
W = 13" [330 mm] Reel
See Tape and Reel
Specifications.
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.
Voltage substitutions will be marked with the higher voltage rating.
DIMENSIONS in inches [millimeters]
Tantalum Wire
Nib Identifies
Anode (+)
Terminal
W
L
B
D
J
J
A
H
CASE
CODE
T
S
A
B
C
G
H
D
M
R
L (Max.)
W
H
A
B
D (Ref.)
J (Max.)
0.087
[2.2]
0.126 ± 0.008
[3.2 ± 0.2]
0.146
[3.7]
0.158
[4.0]
0.281
[7.1]
0.205 ± 0.016
[5.2 ± 0.4]
0.205 ± 0.016
[5.2 ± 0.4]
0.293
[7.5]
0.129 ± 0.012
[3.3 ± 0.3]
0.283
[7.2]
0.045 ± 0.012
[1.1 ± 0.3]
0.067 ± 0.008
[1.7 ± 0.2]
0.072 ± 0.012
[1.8 ± 0.3]
0.110 + 0.012 - 0.016
[2.8 + 0.3 - 0.4]
0.126 ± 0.012
[3.2 ± 0.3]
0.144 ± 0.016
[3.65 ± 0.4]
0.181 ± 0.016
[4.6 ± 0.4]
0.170 ± 0.012
[4.3 ± 0.3]
0.106 ± 0.012
[2.7 ± 0.3]
0.235 ± 0.012
[6.0 ± 0.3]
0.045 ± 0.012
[1.1 ± 0.3]
0.051 ± 0.008
[1.3 ± 0.2]
0.056 ± 0.012
[1.4 ± 0.3]
0.075 + 0.012 - 0.024
[1.9 + 0.3 - 0.6]
0.098 ± 0.012
[2.5 ± 0.3]
0.087
[2.2] Max
0.078
[2.0] Max
0.110 ± 0.012
[2.8 ± 0.3]
0.067 ± 0.012
[1.7 ± 0.3]
0.136 ± 0.012
[3.5 ± 0.3]
0.016 ± 0.008
[0.4 ± 0.2]
0.031 ± 0.012
[0.80 ± 0.30]
0.031 ± 0.012
[0.80 ± 0.30]
0.031 ± 0.012
[0.80 ± 0.30]
0.051 ± 0.012
[1.3 ± 0.30]
0.051 ± 0.012
[1.3 ± 0.3]
0.051 ± 0.012
[1.3 ± 0.30]
0.051 ± 0.012
[1.3 ± 0.30]
0.031 ± 0.012
[0.80 ± 0.3]
0.051 ± 0.012
[1.3 ± .30]
0.042 ± 0.010
[1.07 ± 0.25]
0.078 ± 0.012
[2.0 ± 0.3]
0.085 ± 0.016
[2.2 ± 0.4]
0.097 ± 0.016
[2.5 ± 0.4]
0.180 ± 0.024
[4.6 ± 0.6]
0.133 ± 0.016
[3.4 ± 0.4]
0.133 ± 0.016
[3.4 ± 0.4]
0.180 ± 0.024
[4.6 ± 0.6]
0.078 ± 0.012
[2.0 ± 0.3]
0.180 ± 0.024
[4.6 ± 0.6]
0.063
[1.6]
0.086
[2.2]
0.115
[2.9]
0.138
[3.5]
0.236
[6.0]
0.173
[4.4]
0.173
[4.4]
0.253
[6.4]
0.095
[2.5]
0.243
[6.2]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
0.004
[0.1]
Note: The anode termination (D less B) will be a minimum of 0.010" (0.3 mm). T Case = 0.005" (0.13 mm) minimum.
*Pb containing terminations are not RoHS compliant, exemptions may apply
www.vishay.com
1
For technical questions, contact: tantalum@vishay.com
Document Number: 40007
Revision: 16-Dec-05
595D
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated,
Maximum CV
Vishay Sprague
RATINGS AND CASE CODES
4V
µF
Std.
6.3 V
Ext.
Std.
10 V
Ext.
Std.
0.10
0.15
0.22
0.33
0.47
0.68
1.0
1.5
2.2
T
3.3
T
4.7
T
6.8
T
10
T
A
A
B
15
A
22
B
A
A
A/S
B
33
B
47
A
A
68
A
A/B
C
100
A/B
C
B/M
120
C
C
D
150
C
B
D
180
D
D
R
220
D
C
D
C/G/H
R
270
D
C
R
330
C*
R
C/D
R
390
D
R
470
R
C
R
D
560
R
680
D
R
1000
R
R
1500
R
*Preliminary values, contact factory for availability.
16 V
Ext.
Std.
20 V
Ext.
Std.
25 V
Ext.
Std.
35 V
Ext.
T
T
T
T
A
T
T
T
A
A
A
B
B
B
C
D
C/D
A
A
B
B
C
C
D
D
R
R
R
D
R
R
A
A
B/M
B
B
C
C
A
A
B
B
A
B
C
A
A
B
B
B
D
C
R
R
D
D
B
B
C
C
D
D
R
R
C
C
D
D
R
Std.
50 V
Ext.
T
A
A
A
B
B
C
C
C
D
D
R
R
A
B
C
D
Std.
T
T
T
A
A
B
B
C
C
C
C
D
R
R
Ext.
A
B
C
D
R
R
R
R
R
R
STANDARD / EXTENDED RATINGS
CAPACITANCE
(µF)
CASE CODE
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)
4 WVDC AT+ 85 °C, SURGE = 5.2 V . . . 2.7 WVDC AT + 125 °C, SURGE = 3.4 V
4.7
T
595D475X_004T2T
0.5
6
7.8
0.06
10
T
595D106X_004T2T
0.5
6
7.8
0.06
15
A
595D156X_004A2T
0.6
6
1.4
0.23
33
A
595D336X_004A2T
1.3
6
1.4
0.23
33
B
595D336X_004B2T
1.3
6
0.47
0.43
47
A
595D476X_004A2T
1.9
6
1.40
0.23
68
A
595D686X_004A2T
2.7
6
1.30
0.24
100
A
595D107X_004A2T
4.0
12
0.60
0.35
100
B
595D107X_004B2T
4.0
8
0.45
0.44
120
C
595D127X_004C2T
4.8
8
0.19
0.76
*Preliminary values, contact factory for availability. For 10 % tolerance, specify "9"; for 20 % tolerance, change to "0". Extended Range ratings in bold print.
Document Number: 40007
Revision: 16-Dec-05
For technical questions, contact: tantalum@vishay.com
www.vishay.com
2
595D
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated,
Maximum CV
Vishay Sprague
STANDARD / EXTENDED RATINGS
CAPACITANCE
(µF)
CASE CODE
PART NUMBER
Max. DCL
at + 25 °C
(µA)
150
150
180
220
220
270
270
330*
390
470
470
680
1000
1500
3.3
6.8
15
22
22
33
33
47
68
68
100
100
100
120
180
220
220
220
220
330
330
330
330
390
470
470
470
560
680
680
1000
1000
Max. DF
at + 25 °C
120 Hz
(%)
4 WVDC AT + 85 °C, SURGE = 5.2 V . . . 2.7 WVDC AT + 125 °C, SURGE = 3.4 V
B
595D157X_004B2T
6.0
8
C
595D157X_004C2T
6.0
8
D
595D187X_004D2T
7.2
8
C
595D227X_004C2T
8.8
8
D
595D227X_004D2T
8.8
8
C
595D277X_004C2T
10.8
8
D
595D277X_004D2T
10.8
8
C*
595D337X_004C2T*
13.2*
8*
D
595D397X_004D2T
15.6
8
C
595D477X_004C2T
18.8
10
R
595D477X_004R2T
18.8
10
D
595D687X_004D2T
27.2
12
R
595D108X_004R2T
40.0
16
R
595D158X_004R2T
60.0
20
6.3 WVDC AT + 85 °C, SURGE = 8 V . . . 4 WVDC AT + 125 °C, SURGE = 5 V
T
595D335X_6R3T2T
0.5
6
T
595D685X_6R3T2T
0.5
6
A
595D156X_6R3A2T
0.9
6
A
595D226X_6R3A2T
1.4
6
B
595D226X_6R3B2T
1.4
6
A
595D336X_6R3A2T
2.1
6
S
595D336X_6R3S2T
2.1
8
A
595D476X_6R3A2T
2.8
6
A
595D686X_6R3A2T
4.3
12
B
595D686X_6R3B2T
4.3
6
B
595D107X_6R3B2T
6.3
8
C
595D107X_6R3C2T
6.3
8
M
595D107X_6R3M2T
6.3
14
C
595D127X_6R3C2T
7.6
8
D
595D187X_6R3D2T
11.3
8
C
595D227X_6R3C2T
13.9
8
D
595D227X_6R3D2T
13.9
8
G
595D227X_6R3G2T
13.9
8
H
595D227X_6R3H2T
13.9
8
C
595D337X_6R3C2T
20.8
8
C
595D337X_6W3C2T
20.8
8
D
595D337X_6R3D2T
20.8
8
R
595D337X_6R3R2T
20.8
8
R
595D397X_6R3R2T
24.6
8
D
595D477X_6R3D2T
29.6
8
D
595D477X_6W3D2T
29.6
10
R
595D477X_6R3R2T
29.6
10
R
595D567X_6R3R2T
35.3
10
R
595D687X_6R3R2T
42.8
10
R
595D687X_6W3R2T
42.8
10
R
595D108X_6R3R2T
63.0
16
R
595D108X_6W3R2T
63.0
16
Max. ESR
at + 25 °C
100 kHz
(Ohms)
Max. RIPPLE
100 kHz
Irms
(Amps)
0.45
0.18
0.14
0.18
0.14
0.17
0.13
0.17*
0.13
0.16
0.13
0.13
0.07
0.07
0.44
0.78
1.04
0.78
1.04
0.80
1.07
0.80*
1.07
0.83
1.39
1.07
1.88
1.88
8.5
8.5
1.7
1.7
0.57
1.70
1.30
1.50
0.5
0.55
0.55
0.20
0.40
0.19
0.14
0.18
0.14
0.18
0.18
0.17
0.17
0.14
0.13
0.13
0.13
0.12
0.12
0.11
0.09
0.09
0.07
0.07
0.06
0.06
0.20
0.20
0.37
0.20
0.20
0.22
0.19
0.38
0.39
0.74
0.49
0.76
1.04
0.78
1.04
0.75
0.75
0.80
0.80
1.04
1.39
1.39
1.07
1.44
1.44
1.51
1.66
1.66
1.88
1.88
*Preliminary values, contact factory for availability. For 10 % tolerance, specify "9"; for 20 % tolerance, change to "0". Extended Range ratings in bold print.
www.vishay.com
3
For technical questions, contact: tantalum@vishay.com
Document Number: 40007
Revision: 16-Dec-05
595D
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated,
Maximum CV
Vishay Sprague
STANDARD / EXTENDED RATINGS
CAPACITANCE
(µF)
CASE CODE
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)
10 WVDC AT + 85 °C, SURGE = 13 V . . . 7 WVDC AT + 125 °C, SURGE = 8 V
2.2
4.7
10
15
15
22
33
33
47
68
68
100
120
150
150
180
180
220
220
220
270
330
330
390
470
680
T
595D225X_010T2T
0.5
6
T
595D475X_010T2T
0.5
6
A
595D106X_010A2T
1.0
6
A
595D156X_010A2T
1.5
6
B
595D156X_010B2T
1.5
6
A
595D226X_010A2T
2.2
6
A
595D336X_010A2T
3.3
8
B
595D336X_010B2T
3.3
6
B
595D476X_010B2T
4.7
6
B
595D686X_010B2T
6.8
6
C
595D686X_010C2T
6.8
6
B
595D107X_010B2T
10.0
12
D
595D127X_010D2T
12.0
8
C
595D157X_010C2T
15.0
8
D
595D157X_010D2T
15.0
8
D
595D187X_010D2T
18.0
8
R
595D187X_010R2T
18.0
8
C
595D227X_010C2T
22.0
8
D
595D227X_010D2T
22.0
8
R
595D227X_010R2T
22.0
8
R
595D277X_010R2T
27.0
8
D
595D337X_010D2T
33.0
8
R
595D337X_010R2T
33.0
8
R
595D397X_010R2T
39.0
8
R
595D477X_010R2T
47.0
8
R
595D687X_010R2T
68.0
14
16 WVDC AT + 85 °C, SURGE = 20 V . . . 10 WVDC AT + 125 °C, SURGE = 12 V
8.6
8.6
1.9
1.8
0.67
1.80
3.0
1.90
0.65
0.65
0.24
0.4
0.14
0.22
0.14
0.38
0.13
0.20
0.14
0.13
0.13
0.14
0.13
0.12
0.12
0.09
0.06
0.06
0.19
0.20
0.35
0.20
0.16
0.21
0.35
0.36
0.68
0.46
1.04
0.71
1.04
0.63
1.39
0.74
1.04
1.39
1.39
1.04
1.39
1.44
1.44
1.66
1.5
2.2
3.3
4.7
6.8
10
10
15
15
22
22
33
33
47
47
68
68
100
T
T
T
A
A
A
B
A
B
B
M
B
C
B
C
C
D
C
8.7
8.7
8.6
2.9
2.8
2.5
0.76
2.40
0.75
0.75
0.50
0.72
0.29
0.72
0.28
0.26
0.14
0.27
0.06
0.06
0.06
0.16
0.16
0.17
0.32
0.17
0.33
0.32
0.44
0.33
0.62
0.33
0.63
0.64
1.04
0.64
595D155X_016T2T
595D225X_016T2T
595D335X_016T2T
595D475X_016A2T
595D685X_016A2T
595D106X_016A2T
595D106X_016B2T
595D156X_016A2T
595D156X_016B2T
595D226X_016B2T
595D226X_016M2T
595D336X_016B2T
595D336X_016C2T
595D476X_016B2T
595D476X_016C2T
595D686X_016C2T
595D686X_016D2T
595D107X_016C2T
0.5
0.5
0.5
0.8
1.1
1.6
1.6
2.4
2.4
3.5
3.5
5.3
5.3
7.5
7.5
10.9
10.9
16.0
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
8
*Preliminary values, contact factory for availability. For 10 % tolerance, specify "9"; for 20 % tolerance, change to "0". Extended Range ratings in bold print.
Document Number: 40007
Revision: 16-Dec-05
For technical questions, contact: tantalum@vishay.com
www.vishay.com
4
595D
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated,
Maximum CV
Vishay Sprague
STANDARD / EXTENDED RATINGS
CAPACITANCE
(µF)
CASE CODE
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)
16 WVDC AT + 85 °C, SURGE = 20 V . . . 10 WVDC AT + 125 °C, SURGE = 12 V
100
D
595D107X_016D2T
16.0
8
0.14
1.04
120
R
595D127X_016R2T
19.2
8
0.14
1.34
150
D
595D157X_016D2T
24.0
8
0.14
1.04
150
R
595D157X_016R2T
24.0
8
0.13
1.39
180
R
595D187X_016R2T
28.8
8
0.13
1.39
220
R
595D227X_016R2T
35.2
8
0.12
1.44
330
R
595D337X_016R2T
52.8
14
0.11
1.51
0.05
20 WVDC AT + 85 °C, SURGE = 26 V . . . 13 WVDC AT + 125 °C, SURGE = 16 V
0.68
T
595D684X_020T2T
0.5
4
10.8
1.0
T
595D105X_020T2T
0.5
4
9.0
0.06
2.2
A
595D225X_020A2T
0.5
6
3.8
0.14
0.14
3.3
A
595D335X_020A2T
0.7
6
3.8
4.7
A
595D475X_020A2T
0.9
6
3.1
0.15
4.7
B
595D475X_020B2T
0.9
6
0.95
0.29
6.8
A
595D685X_020A2T
1.4
6
3.0
0.15
6.8
B
595D685X_020B2T
1.4
6
0.95
0.29
10
B
595D106X_020B2T
2.0
6
1.0
0.28
15
B
595D156X_020B2T
3.0
6
1.0
0.28
22
B
595D226X_020B2T
4.4
6
0.90
0.31
22
C
595D226X_020C2T
4.4
6
0.38
0.54
47
C
595D476X_020C2T
9.4
6
0.35
0.56
47
D
595D476X_020D2T
9.4
6
0.19
0.89
100
D
595D107X_020D2T
20.0
8
0.18
0.91
100
R
595D107X_020R2T
20.0
8
0.14
1.34
120
R
595D127X_020R2T
24.0
8
0.14
1.34
150
R
595D157X_020R2T
30.0
8
0.14
1.34
25 WVDC AT + 85 °C, SURGE = 32 V . . . 17 WVDC AT + 125 °C, SURGE = 20 V
0.47
T
595D474X_025T2T
0.5
4
13.5
0.05
1.5
A
595D155X_025A2T
0.5
6
3.8
0.14
2.2
A
595D225X_025A2T
0.6
6
3.8
0.14
0.21
3.3
B
595D335X_025B2T
0.8
6
1.9
6.8
B
595D685X_025B2T
1.7
6
1.5
0.23
10
B
595D106X_025B2T
2.5
6
1.5
0.23
10
C
595D106X_025C2T
2.5
6
0.57
0.44
15
C
595D156X_025C2T
3.8
6
0.56
0.44
22
C
595D226X_025C2T
5.5
6
0.50
0.47
22
D
595D226X_025D2T
5.5
6
0.28
0.73
33
C
595D336X_025C2T
8.3
6
0.45
0.49
33
D
595D336X_025D2T
8.3
6
0.27
0.75
47
D
595D476X_025D2T
11.8
6
0.26
0.76
47
R
595D476X_025R2T
11.8
6
0.20
1.12
68
D
595D686X_025D2T
17.0
8
0.26
0.76
68
R
595D686X_025R2T
17.0
6
0.20
1.12
100
R
595D107X_025R2T
25.0
8
0.20
1.12
*Preliminary values, contact factory for availability. For 10 % tolerance, specify "9"; for 20 % tolerance, change to "0". Extended Range ratings in bold print.
www.vishay.com
5
For technical questions, contact: tantalum@vishay.com
Document Number: 40007
Revision: 16-Dec-05
595D
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated,
Maximum CV
Vishay Sprague
STANDARD / EXTENDED RATINGS
CAPACITANCE
(µF)
CASE CODE
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)
35 WVDC AT + 85 °C, SURGE = 46 V . . . 23 WVDC AT + 125 °C, SURGE = 28 V
0.33
T
595D334X_035T2T
0.5
4
14.4
0.05
0.47
A
595D474X_035A2T
0.5
4
4.3
0.13
0.68
A
595D684X_035A2T
0.5
4
4.2
0.13
1.0
A
595D105X_035A2T
0.5
4
4.1
0.13
1.5
A
595D155X_035A2T
0.5
6
3.8
0.14
1.5
B
595D155X_035B2T
0.5
6
2.8
0.17
2.2
B
595D225X_035B2T
0.8
6
2.3
0.19
3.3
C
595D335X_035C2T
1.2
6
0.75
0.38
4.7
B
595D475X_035B2T
1.6
6
2.2
0.19
4.7
C
595D475X_035C2T
1.6
6
0.66
0.41
6.8
C
595D685X_035C2T
2.4
6
0.63
0.42
10
D
595D106X_035D2T
3.5
6
0.43
0.59
15
C
595D156X_035C2T
5.3
6
0.60
0.43
15
D
595D156X_035D2T
5.3
6
0.41
0.60
22
D
595D226X_035D2T
7.7
6
0.32
0.68
22
R
595D226X_035R2T
7.7
6
0.28
0.94
33
R
595D336X_035R2T
11.6
6
0.28
0.94
47
R
595D476X_035R2T
16.5
6
0.28
0.94
50 WVDC AT + 85 °C, SURGE = 65 V . . . 33 WVDC AT + 125 °C, SURGE = 38 V
0.10
T
595D104X_050T2T
0.5
4
22.5
0.04
0.15
T
595D154X_050T2T
0.5
4
18.0
0.04
0.22
T
595D224X_050T2T
0.5
4
15.3
0.04
0.33
A
595D334X_050A2T
0.5
4
8.1
0.09
0.47
A
595D474X_050A2T
0.5
4
7.2
0.10
0.68
A
595D684X_050A2T
0.5
4
6.1
0.11
0.68
B
595D684X_050B2T
0.5
4
5.4
0.12
1.0
B
595D105X_050B2T
0.5
4
5.0
0.13
1.5
C
595D155X_050C2T
0.8
6
1.8
0.25
2.2
B
595D225X_050B2T
1.1
6
3.2
0.16
2.2
C
595D225X_050C2T
1.1
6
1.7
0.25
3.3
C
595D335X_050C2T
1.7
6
1.6
0.26
4.7
C
595D475X_050C2T
2.4
6
1.4
0.28
6.8
C
595D685X_050C2T
3.4
6
1.3
0.29
6.8
D
595D685X_050D2T
3.4
6
0.82
0.43
10
D
595D106X_050D2T
5.0
6
0.80
0.43
10
R
595D106X_050R2T
5.0
6
0.65
0.62
15
R
595D156X_050R2T
7.5
6
0.40
0.79
22
R
595D226X_050R2T
11.0
6
0.39
0.80
*Preliminary values, contact factory for availability. For 10 % tolerance, specify "9"; for 20 % tolerance, change to "0". Extended Range ratings in bold print.
Document Number: 40007
Revision: 16-Dec-05
For technical questions, contact: tantalum@vishay.com
www.vishay.com
6
595D
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated,
Maximum CV
Vishay Sprague
TYPICAL CURVES AT + 25 °C, IMPEDANCE AND ESR VS. FREQUENCY
"T" Case
"A" Case
IMPEDANCE
10000
IMPEDANCE
1000
ESR
ESR
100
OHMS
OHMS
1000
0.1µF, 50 VDC
100
1 µF, 35 VDC
10
3.3µF, 6.3 VDC
15 µF, 6.3 VDC
1.0
10
0.1
1.0
100
1K
10K
100K
1M
10M
100
1K
10K
100K
1M
10M
FREQUENCY IN HERTZ
FREQUENCY IN HERTZ
"B" Case
"C" Case
1000
IMPEDANCE
ESR
OHMS
OHMS
10
IMPEDANCE
100
ESR
100
2.2µF, 35 VDC
10
10 µF, 25 VDC
1.0
100 µF, 6.3 VDC
1
0.1
22 µF, 6.3 VDC
0.1
100
0.01
1K
10K
100K
FREQUENCY IN HERTZ
1M
10M
100
1K
10K
100K
"D" Case
10M
"R" Case
100
100
IMPEDANCE
10
IMPEDANCE
10
ESR
OHMS
OHMS
1M
FREQUENCY IN HERTZ
1.0
22 µF, 25 VDC
1.0
0.1
0.01
1K
10K
100K
1M
10M
100
1K
FREQUENCY IN HERTZ
www.vishay.com
7
33 µF, 35 VDC
390 µF, 6.3 VDC
220 µF, 6.3 VDC
0.1
0.01
100
ESR
For technical questions, contact: tantalum@vishay.com
10K
100K
1M
10M
FREQUENCY IN HERTZ
Document Number: 40007
Revision: 16-Dec-05
595D
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated,
Maximum CV
Vishay Sprague
PERFORMANCE CHARACTERISTICS
1.
Operating Temperature: Capacitors are designed to
operate over the temperature range of
- 55 °C to + 85 °C.
6.
Dissipation Factor: The dissipation factor,
determined from the expression 2πfRC, shall not
exceed values listed in the Standard Ratings Table.
1.1
Capacitors may be operated to + 125 °C with voltage
derating to two-thirds the + 85 °C rating.
6.1
Measurements shall be made by the bridge method
at, or referred to, a frequency of 120 Hz and a
temperature of + 25 °C.
7.
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.
+ 85 °C RATING
Surge
Working
Voltage
Voltage
(V)
(V)
4 .0
5.2
6.3
8.0
10
13
16
20
20
26
25
32
35
46
50
65
3.
3.1
3.2
DC Working Voltage: The DC working voltage is the
maximum operating voltage for continuous duty at the
rated temperature.
TYPICAL LEAKAGE CURRENT FACTOR RANGE
100
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.
+ 125 °C
+ 85 °C
10
+ 55 °C
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 %.
4.
Capacitance Tolerance: The capacitance of all
capacitors shall be within the specified tolerance
limits of the normal rating.
4.1
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 %.
5.
Note that the leakage current varies with temperature
and applied voltage. See graph below for the
appropriate adjustment factor.
Leakage Current Factor
2.
+ 125 °C RATING
Surge
Working
Voltage
Voltage
(V)
(V)
2.7
3.4
4.0
5.0
7.0
8.0
10
12
13
16
17
20
23
28
33
38
Capacitance Change With Temperature: The
capacitance change with temperature shall not
exceed the following percentage of the capacitance
measured at + 25 °C:
- 55 °C
+ 85 °C
+ 125 °C
- 10 %
+ 10 %
+ 12 %
Document Number: 40007
Revision: 16-Dec-05
+ 25 °C
1.0
0 °C
0.1
- 55 °C
0.01
0.001
0
10
20
30 40 50 60 70 80
Percent of Rated Voltage
90 100
7.1
At + 25 °C, the leakage current shall not exceed the
value listed in the Standard Ratings Table.
7.2
At + 85 °C, the leakage current shall not exceed 10
times the value listed in the Standard Ratings Table.
7.3
At + 125 °C, the leakage current shall not exceed 12
times the value listed in the Standard Ratings Table.
For technical questions, contact: tantalum@vishay.com
www.vishay.com
8
595D
Vishay Sprague
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated,
Maximum CV
PERFORMANCE CHARACTERISTICS (Continued)
GUIDE TO APPLICATION
8.
ESR
1.
8.1
ESR (Equivalent Series Resistance) shall not
exceed the values listed in the Ratings Table.
Measurement shall be made by the bridge method at
a frequency of 100 kHz and a temperature of + 25 °C.
Standard Conditions, for example; output filters
9.
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.
9.1
Following the life test, the dissipation factor and
leakage current 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.
Recommended rated working voltage guidelines:
(- 55 °C to + 85 °C)
Capacitor Voltage Rating (V)
4.0
6.3*
10
16
20
25
35
50
Severe Conditions, for example; input filters
Capacitor Voltage Rating (V)
4.0
6.3*
10
16
20
25
35
50
10.
Humidity Test: Capacitors shall withstand 1000
hours at + 40 °C, 90 % to 95 % relative humidity, with
no voltage applied.
10.1
Following the Humidity Test, capacitance change
shall not exceed ± 10 % of the initial value, dissipation
factor shall not exceed 150 % of the initial
requirement at + 25 °C.
11.
Solderability: Capacitors will meet the solderability
requirements of ANSI/J-STD-002, Test B, Category
3.
12.
Resistance to Soldering Heat: Capacitors mounted
on a substrate will withstand + 260 °C for 5 seconds.
12.1
Following the resistance to soldering heat test,
capacitance, dissipation factor and DC leakage
current shall meet the initial requirement.
13.
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 date code are indicated on the reels.
where,
P=
14.
Terminal Strength: per IEC-384-3, minimum of 5N
shear force.
RESR =
15.
Enviromental: Mercury, CFC and ODS materials are
not used in the manufacture of these capacitors.
16.
Flammability: Encapsulent materials meet UL94 V0.
17.
Capacitor Failure Mode: The predominant failure
mode for solid tantalum capacitors is increased
leackage 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 current is caused by a
breakdown in the Ta2O5 dielectric. For additional
information on leakage failure of solid tantalum
capacitors, refer to Vishay Sprague technical paper:
“Leakage Failure Mode in Solid Tantalum Chip
Capacitors.”
www.vishay.com
9
Operating Voltage (V)
2.5
3.6
6.0
10
12
15
24
28
Operating Voltage (V)
2.5
3.3
5.0
8.0
10
12
15
24
*For typical wireless applications, Vishay offers 6.3 V Rated
Voltage capacitors with 4.5 V Operation Voltage capability.
Part number indicator is a “W” in place of “R” within the DC
Voltage Rating Identifier.
Example: 595D477X_6W3D2T
Contact factory for availability.
2.
A-C Ripple Current: The maximum allowable ripple
current shall be determined from the formula:
I rms =
3.
P
---------------R ESR
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
RESR =
Resistance at the specified frequency.
Z=
The capacitor impedance at the specified
frequency.
For technical questions, contact: tantalum@vishay.com
Document Number: 40007
Revision: 16-Dec-05
595D
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated,
Maximum CV
Vishay Sprague
GUIDE TO APPLICATION (Continued)
The sum of the peak AC voltage plus the applied DC
voltage shall not exceed the DC voltage rating of the
capacitor.
3.2
The sum of the negative peak AC voltage plus the
applied DC voltage shall not allow a voltage reversal
exceeding 10 % of the DC working voltage at + 25 °C.
4.
Reverse Voltage: These capacitors are capable of
withstanding peak voltages in the reverse direction
equal to 10 % of the DC rating at + 25 °C and 5 % of
the DC rating at + 85 °C.
5.
Temperature Derating: 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 as shown:
6.
Temperature
Derating Factor
+ 25 °C
1.0
+ 85 °C
0.9
+ 125 °C
0.4
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. It is
important that the equivalent Irms value be
established when calculating permissible operating
levels. (Power dissipation calculated using + 25 °C
temperature rise.)
as high as practical. The flux (in the paste) must be
active enough to remove the oxides formed on the
metallization prior to the exposure to soldering heat.
8.2
Soldering: Capacitors can be attached by
conventional soldering techniques, vapor phase
convection, infrared reflow, wave soldering and hot
plate methods. The Soldering Profile charts show
typical recomended time/temperature conditions for
soldering. Preheating is recommended to reduce
thermal stress. The recommended maximum preheat
rate is 2 °C per second. Attachment with a soldering
iron is not recommended due to the difficulty of
controlling temperature and time at temperature. The
soldering iron must never come in contact with the
capacitor.
RECOMMENDED REFLOW SOLDERING PROFILE
Recommended Pb Free Reflow Soldering Profile
245 °C
TEMPERATURE (°C)
3.1
10 sec
217 °C
200 °C
60 sec
150 °C
60 - 150 sec
Preheat
25 °C
TIME (SECONDS)
0.030
S
0.060
A
0.075
B
0.085
M
0.095
C
0.110
D
0.150
G
0.115
H
0.125
R
0.250
Printed Circuit Board Materials: The capacitors are
compatible with most commonly used printed circuit
board materials (alumina substrates, FR4, FR5, G10,
PTFE-fluorocarbon and porcelanized steel). If your
desired board material is not shown there please
contact the Tantalum Marketing Department for
assistance in determining compatibility.
8.
Attachment:
8.1
Solder Paste: The recommended thickness of the
solder paste after application is 0.007" ± 0.001"
[0.178 mm ± 0.025 mm]. Care should be exercised in
selecting the solder paste. The metal purity should be
Document Number: 40007
Revision: 16-Dec-05
Recommended Pb Free Reflow Soldering Profile
260 °C
TEMPERATURE (°C)
T
Large Case Codes: D, R
10 sec
217 °C
200 °C
60 sec
150 °C
60 - 150 sec
Preheat
25 °C
TIME (SECONDS)
Large Case Codes: B, C
Recommended SnPb Reflow Soldering Profile
225 °C
TEMPERATURE (°C)
7.
Case Code
Maximum Permissible Power
Dissipation at
+ 25 °C (watts) in Free Air
150 °C
10 sec
183 °C
60 sec
100 °C
60 - 90 sec
Preheat
25 °C
For technical questions, contact: tantalum@vishay.com
TIME (SECONDS)
All Case Codes
www.vishay.com
10
595D
Vishay Sprague
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated,
Maximum CV
GUIDE TO APPLICATION (Continued)
9.
REFLOW SOLDER PASTE*
Recommended Mounting Pad Geometries: The nib must
have sufficient clearance to avoid electrical contact with
other components. The width dimension indicated is the
same as the maximum width of the capacitor. This is to
minimize lateral movement.
10.
in inches [millimeters]
B
C
Cleaning (Flux Removal) After Soldering: The 595D is
compatible with all commonly used solvents such as TES,
TMS, Prelete, Chlorethane, Terpene and aqueous cleaning
media. However, CFC/ODS products are not used in the
production of these devices and are not recommended.
Solvents containing methylene chloride or other epoxy
solvents should be avoided since these will attack the epoxy
encapsulation material.
B
A
* Pads for B, C and D case codes are otherwise pad compatible
with Type 293D, B, C and D case codes respectively.
CASE
CODE
WIDTH
(A)
PAD METALLIZATION
(B)
SEPARATION
(C)
T
0.055 [1.5]
0.030 [0.7]
0.025 [0.6]
S
0.067 [1.7]
0.032 [0.8]
0.043 [1.1]
A
0.82 [2.1]
0.065 [1.7]
0.050[1.3]
B
0.120 [3.0]
0.065 [1.7]
0.065 [1.7]
C
0.136 [3.5]
0.090 [2.3]
0.120 [3.1]
0.145 [3.7]
D
0.180 [4.6]
0.090 [2.3]
G
0.156 [4.05]
0.090 [2.3]
0.082 [2.1]
H
0.196 [5.0]
0.090 [2.3]
0.082 [2.1]
M
0.110 [2.8]
0.013 [1.1]
0.052 [1.3]
R
0.245 [6.3]
0.090 [2.3]
0.145 [3.7]
TAPE AND REEL PACKAGING in inches [millimeters]
Top Cover
Tape Thickness
Standard orientation is
with the cathode (-)
nearest to the sprocket
holes per EIA-481-1 and
IEC 286-3.
R
Min.
Carrier
Bending Radius
(Note 2)
Embossment
Units Per Reel
Case Code
Tape Width
Component Pitch
T
S
A
B
C
D
G
H
R
M
8 mm
8 mm
8 mm
12 mm
12 mm
12 mm
12 mm
12 mm
12 mm
12 mm
4 mm
4 mm
4 mm
4 mm
8 mm
8 mm
8 mm
8 mm
8 mm
4 mm
www.vishay.com
11
7“ [178] Reel
13“ [330] Reel
2500
2500
2000
2000
500
500
500
500
600
2000
10000
10000
9000
8000
3000
2500
2500
2500
2500
8000
For technical questions, contact: tantalum@vishay.com
Document Number: 40007
Revision: 16-Dec-05
595D
Solid Tantalum Chip Capacitors
TANTAMOUNT® Conformal Coated,
Maximum CV
Vishay Sprague
TAPE AND REEL PACKAGING in inches [millimeters]
Note: Metric dimensions will govern. Dimensions in inches are rounded and for reference only.
0.157 ± 0.004
[4.0 ± 0.10]
T2
Max.
Deformation
Between
Embossments
0.024
[0.600]
Max.
0.059 + 0.004 - 0.0
[1.5 + 0.10 - 0.0]
Top
Cover
Tape
B1 Max.
(Note 6)
A0
K0
0.030 [0.75]
Min. (Note 3)
B0
Top
Cover
Tape
Center Lines
of Cavity
0.004 [0.10]
For Tape Feeder
Max.
Reference only
including draft.
Concentric around B0
(Note 5)
10 Pitches Cumulative
Tolerance on Tape
± 0.008 [0.200]
Embossment
0.069 ± 0.004
0.079 ± 0.002
[1.75 ± 0.10]
[2.0 ± 0.05]
20˚
F
0.030 [0.75]
Min. (Note 4)
W
Maximum
Component
Rotation
(Side or Front Sectional Vie w )
P1
USER DIRECTION OF FEED
Maximum
Cavity Size
(Note 1)
D1 Min. For Components
0.079 x 0.047 [2.0 x 1.2] and Larger
.
(Note 5)
Cathode (-)
Anode (+)
DIRECTION OF FEED
20˚ Maximum
Component Rotation
Typical
Component
Cavity
Center Line
B0
A0
Tape
0.039 [1.0]
Max.
0.9843 [250.0]
Typical
Component
Center Line
8 mm
12 mm
B1 (Max.)
(Note 6)
0.179
[4.55]
0.323
[8.2]
0.323
[8.2]
D1 (Min.)
(Note 5)
0.039
[1.0]
0.059
[1.5]
0.059
[1.5]
F
0.138 ± 0.002 0.157 ± 0.004
[3.5 ± 0.05]
[4.0 ± 0.10]
0.217 ± 0.002 0.157 ± 0.004
[5.5 ± 0.05]
[4.0 ± 0.10]
0.453 ± 0.004 0.315 ± 0.004
[11.5 ± 0.03]
[8.0 ± 0.10]
Tape with components shall pass around radius "R" without
damage. The minimum trailer length may require additional
length to provide R minimum for 12 mm embossed tape for
reels with hub diameters approaching N minimum.
Document Number: 40007
Revision: 16-Dec-05
R (Min.)
(Note 2)
0.984
[25.0]
1.181
[30.0]
1.181
[30.0]
P1
12 mm
Double Pitch
Notes:
1.
A0B0K0 are determined by the maximum dimensions to the
ends of the terminals extending from the component body
and/or the body dimensions of the component. The
clearance between the ends of the terminals or body of the
component to the sides and depth of the cavity (A0B0K0)
must be within 0.002" [0.05 mm] minimum and 0.020" [0.50
mm] maximum. The clearance allowed must also prevent
rotation of the component within the cavity of not more than
20 degrees.
2.
The most efficient packaging quantities are full reel
increments on a given reel diameter. The quantities
shown allow for the sealed empty pockets required to
be in conformance with EIA-481-1. Reel size and
packaging orientation must be specified in the Vishay
Sprague part number.
Camber
(Top View)
Allowable Camber to be 0.039/3.937 [1/100]
Non-Cumulative Over 9.843 [250.0]
(Top View)
Tape Size
Tape and Reel Specifications: All case sizes are
available on plastic embossed tape per EIA-481-1.
Tape reeling per IEC 286-3 is also available. Standard
reel diameter is 7" [178mm]. 13" [330mm] reels are
available and recommended as the most cost effective
packaging method.
3.937 [100.0]
0.039 [1.0]
Max.
T2 (Max.)
W
A0B0K0
0.098
[2.5]
0.256
[6.5]
0.256
[6.5]
0.315 + 0.012 - 0.004
[8.0 + 0.3 - 0.1]
0.472 ± 0.012
[12.0 ± 0.30]
0.945 ± 0.012
[24.0 ± 0.30]
(Note 1)
3.
This dimension is the flat area from the edge of the sprocket
hole to either the outward deformation of the carrier tape
between the embossed cavities or to the edge of the cavity
whichever is less.
4.
This dimension is the flat area from the edge of the carrier
tape opposite the sprocket holes to either the outward
deformation of the carrier tape between the embossed
cavity or to the edge of the cavity whichever is less.
5.
The embossment hole location shall be measured from the
sprocket hole controlling the location of the embossment.
Dimensions of embossment location and hole location shall
be applied independent of each other.
6.
B1 dimension is a reference dimension for tape feeder
clearance only.
For technical questions, contact: tantalum@vishay.com
www.vishay.com
12
Legal Disclaimer Notice
Vishay
Notice
Specifications of the products displayed herein are subject to change without notice. Vishay Intertechnology, Inc.,
or anyone on its behalf, assumes no responsibility or liability for any errors or inaccuracies.
Information contained herein is intended to provide a product description only. No license, express or implied, by
estoppel or otherwise, to any intellectual property rights is granted by this document. Except as provided in Vishay's
terms and conditions of sale for such products, Vishay assumes no liability whatsoever, and disclaims any express
or implied warranty, relating to sale and/or use of Vishay products including liability or warranties relating to fitness
for a particular purpose, merchantability, or infringement of any patent, copyright, or other intellectual property right.
The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications.
Customers using or selling these products for use in such applications do so at their own risk and agree to fully
indemnify Vishay for any damages resulting from such improper use or sale.
Document Number: 91000
Revision: 08-Apr-05
www.vishay.com
1