TMCMA0J107MTRF [VISHAY]

Solid Tantalum Surface Mount Chip Capacitors;
TMCMA0J107MTRF
型号: TMCMA0J107MTRF
厂家: VISHAY    VISHAY
描述:

Solid Tantalum Surface Mount Chip Capacitors

电容器
文件: 总16页 (文件大小:275K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
TMCM  
Vishay Polytech  
www.vishay.com  
Solid Tantalum Surface Mount Chip Capacitors,  
Molded Case, Extended Range  
FEATURES  
• Small size, suitable for high density packaging  
• Terminations: 100 ꢀ matte tin  
• Qualified to EIA-717  
• MSL level: 1  
• Compatible with “high volume” automatic pick  
and place equipment  
Available  
Available  
• Material categorization:  
PERFORMANCE / ELECTRICAL  
CHARACTERISTICS  
Operating Temperature: -55 °C to +125 °C  
for definitions of compliance please see  
www.vishay.com/doc?99912  
(above 85 °C, voltage derating is required)  
APPLICATIONS  
• Industrial  
• AV equipment  
• General purpose  
Capacitance Range: 0.47 μF to 470 μF  
Capacitance Tolerance: 10 ꢀ, 20 ꢀ  
Voltage Rating: 2.5 VDC to 35 VDC  
ORDERING INFORMATION  
TMCM  
A
0J  
106  
M
TR  
(2)  
F
TYPE  
CASE  
CODE  
DC VOLTAGE  
RATING AT +85 °C  
CAPACITANCE  
(μF)  
CAPACITANCE  
TOLERANCE  
PACKAGING  
POLARITY  
(OPTIONAL)  
TERMINAL  
CODE  
See  
Ratings  
and  
Case  
Codes  
table  
0E = 2.5 V  
0G = 4.0 V  
0J = 6.3 V (7 V)  
1A = 10 V  
This is expressed  
in picofarads.  
The first two  
K = 10 ꢀ  
M = 20 ꢀ  
TR = 7" reel,  
cathodes close  
to perforation  
side  
Halogen-free  
(special order),  
not applicable  
for E case  
F =  
lead (Pb)-free  
terminations  
digits are the  
1C = 16 V  
1D = 20 V  
significant  
figures. The third  
is the number of  
zeros to follow.  
1E = 25 V  
1V = 35 V  
DIMENSIONS in inches [millimeters]  
Anode indication belf mark  
L
A, B, C case  
a
l
l
E case  
l
l
CASE CODE  
EIA SIZE  
L
W
H
l
a
0.126 0.008  
[3.2 0.2]  
0.063 0.008  
[1.6 0.2]  
0.063 0.008  
[1.6 0.2]  
0.028 0.012  
[0.7 0.3]  
0.047 0.008  
[1.2 0.2]  
A
3216-18  
0.138 0.008  
[3.5 0.2]  
0.110 0.008  
[2.8 0.2]  
0.075 0.008  
[1.9 0.2]  
0.030 0.012  
[0.8 0.3]  
0.087 0.008  
[2.2 0.2]  
B
C
E
3528-21  
5832-27  
7343-30  
0.228 0.008  
[5.8 0.2]  
0.126 0.008  
[3.2 0.2]  
0.100 0.008  
[2.5 0.2]  
0.051 0.012  
[1.3 0.3]  
0.087 0.008  
[2.2 0.2]  
0.287 0.008  
[7.3 0.2]  
0.169 0.012  
[4.3 0.3]  
0.112 0.008  
[2.8 0.2]  
0.051 0.012  
[1.3 0.3]  
0.094 0.008  
[2.4 0.2]  
Revision: 26-Oct-17  
Document Number: 40178  
1
For technical questions, contact: polytech@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  
TMCM  
Vishay Polytech  
www.vishay.com  
RATINGS AND CASE CODES  
μF  
0.47  
0.68  
1.0  
1.5  
2.2  
3.3  
4.7  
6.8  
10  
2.5 V  
4.0 V  
6.3 V (7 V)  
10 V  
16 V  
20 V  
25 V  
35 V  
A
A
A
A
A
A
A
A
A
A / B  
A / B  
B
A
A
A
A
A / B  
A / B  
A / B  
B / C  
B / C  
C / E  
C / E  
E
A
A
A
A / B  
A / B  
B
A
A
A
A / B  
C
A
A
A
A / B  
A / B  
C
A
A / B  
A / B  
A / B  
B / C  
B / C  
B / C / E  
C / E  
E
C / E  
E
15  
A
A / B  
A / B  
A / B  
A / B / C  
A / B / C  
B / C / E  
B / C / E  
C / E  
22  
A / B  
A / B  
A / B  
A / B / C  
A / B / C  
A / B / C / E  
B / C / E  
B / C / E  
C / E  
E
33  
A / B  
A / B  
A / B / C  
A / B / C  
A / B / C / E  
A / B / C / E  
B / C / E  
B / C / E  
C / E  
47  
A / B  
A / B / C  
A / B / C  
A / B / C / E  
A / B / C / E  
A / B / C / E  
B / C / E  
E
E
68  
A / B / C  
A / B / C  
A / B / C / E  
A / B / C / E  
B / C / E  
B / C / E  
E
100  
150  
220  
330  
470  
C / E  
E
E
E
MARKING  
A, B Case  
C, E Case  
Nominal capacitance value (15 μF)  
Anode indication belt mark  
Anode indication belt mark Date code  
+
+
15  
16A  
GA7A  
Simplified code of rated  
voltage (G: 4 V)  
Simplified code of nominal  
capacitance (A7: 10 μF)  
Rated voltage (16 V)  
Date code  
SIMPLIFIED VOLTAGE CODES, CASES A, B  
VOLTAGE CODE  
V
VOLTAGE CODE  
V
CODE  
CODE  
2.5  
e
G
J
16  
20  
25  
35  
C
D
E
V
4.0  
6.3 (7)  
10  
A
SIMPLIFIED CAP CODES, CASES A, B  
CAPACITANCE CODE  
μF  
CAPACITANCE CODE  
μF  
CODE  
CODE  
0.47  
0.68  
1.0  
1.5  
2.2  
3.3  
4.7  
6.8  
10  
S5  
W5  
A6  
E6  
J6  
22  
33  
J7  
N7  
S7  
W7  
A8  
E8  
J8  
47  
68  
100  
150  
220  
330  
470  
N6  
S6  
W6  
A7  
E7  
N8  
S8  
15  
Revision: 26-Oct-17  
Document Number: 40178  
2
For technical questions, contact: polytech@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  
TMCM  
Vishay Polytech  
www.vishay.com  
DATE CODE  
MONTH  
YEAR  
1
A
N
a
2
B
P
b
p
B
P
b
p
3
C
Q
c
4
D
R
d
r
5
E
S
e
s
6
F
T
f
7
G
U
g
8
H
V
h
v
9
J
10  
K
X
k
11  
L
Y
l
12  
M
Z
2013  
2014  
2015  
2016  
2017  
2018  
2019  
2020  
W
j
m
z
n
q
t
u
w
J
x
y
A
N
a
C
Q
c
D
R
d
r
E
S
e
s
F
T
f
G
U
g
H
V
h
v
K
X
k
L
Y
l
M
Z
W
j
m
z
n
q
t
u
w
x
y
Note  
Marking code repeats every four years in alphabetical order (letter of I, i, O, and o are excluded)  
STANDARD RATINGS  
MAX. DCL  
AT +25 °C  
(μA)  
MAX. DF  
AT +25 °C, 120 Hz  
(%)  
MAX. ESR  
MAX. RIPPLE,  
100 kHz IRMS  
(A)  
CAPACITANCE  
(μF)  
CASE  
CODE  
PART NUMBER  
AT +25 °C, 100 kHz  
()  
2.5 VDC AT +85 °C, 1.6 VDC AT +125 °C  
6.8  
10  
A
A
A
A
B
A
B
A
B
A
B
C
A
B
C
A
B
C
E
A
B
C
E
B
C
E
B
C
E
TMCMA0E685(1)TRF  
TMCMA0E106(1)TRF  
TMCMA0E156(1)TRF  
TMCMA0E226(1)TRF  
TMCMB0E226(1)TRF  
TMCMA0E336(1)TRF  
TMCMB0E336(1)TRF  
TMCMA0E476(1)TRF  
TMCMB0E476(1)TRF  
TMCMA0E686(1)TRF  
TMCMB0E686(1)TRF  
TMCMC0E686(1)TRF  
TMCMA0E107(1)TRF  
TMCMB0E107(1)TRF  
TMCMC0E107(1)TRF  
TMCMA0E157(1)TRF  
TMCMB0E157(1)TRF  
TMCMC0E157(1)TRF  
TMCME0E157(1)TRF  
TMCMA0E227(1)TRF  
TMCMB0E227(1)TRF  
TMCMC0E227(1)TRF  
TMCME0E227(1)TRF  
TMCMB0E337(1)TRF  
TMCMC0E337(1)TRF  
TMCME0E337(1)TRF  
TMCMB0E477MTRF  
TMCMC0E477(1)TRF  
TMCME0E477(1)TRF  
0.5  
0.5  
0.5  
0.6  
0.6  
0.8  
0.8  
1.2  
1.2  
1.7  
1.7  
1.7  
5.0  
2.5  
2.5  
7.5  
3.8  
3.8  
3.8  
27.5  
5.5  
5.5  
5.5  
16.5  
8.3  
8.3  
58.8  
11.8  
11.8  
6
8
4.0  
2.0  
2.9  
2.0  
1.1  
2.0  
1.1  
2.0  
1.1  
2.0  
1.1  
1.1  
1.1  
1.1  
1.1  
1.8  
1.1  
1.1  
0.3  
1.8  
1.1  
1.1  
0.3  
1.1  
1.1  
0.3  
1.1  
1.1  
0.2  
0.140  
0.197  
0.164  
0.197  
0.295  
0.197  
0.295  
0.197  
0.295  
0.197  
0.295  
0.302  
0.266  
0.295  
0.302  
0.208  
0.295  
0.302  
0.632  
0.208  
0.295  
0.302  
0.632  
0.295  
0.302  
0.632  
0.295  
0.302  
0.775  
15  
8
22  
8
22  
8
33  
8
33  
8
47  
12  
8
47  
68  
18  
8
68  
68  
8
100  
100  
100  
150  
150  
150  
150  
220  
220  
220  
220  
330  
330  
330  
470  
470  
470  
18  
12  
8
30  
18  
8
8
30  
18  
8
8
30  
18  
10  
30  
18  
10  
Note  
Part number definition:  
(1) Tolerance: For 10 ꢀ tolerance, specify “K”; for 20 ꢀ tolerance, change to “M”  
Revision: 26-Oct-17  
Document Number: 40178  
3
For technical questions, contact: polytech@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  
TMCM  
Vishay Polytech  
www.vishay.com  
STANDARD RATINGS  
MAX. DCL  
AT +25 °C  
(μA)  
MAX. DF  
AT +25 °C, 120 Hz  
(%)  
MAX. ESR  
MAX. RIPPLE,  
100 kHz IRMS  
(A)  
CAPACITANCE  
(μF)  
CASE  
CODE  
PART NUMBER  
AT +25 °C, 100 kHz  
()  
4 VDC AT + 85 °C, 2.5 VDC AT +125 °C  
4.7  
6.8  
10  
15  
15  
22  
22  
33  
33  
47  
47  
47  
68  
68  
68  
100  
100  
100  
100  
150  
150  
150  
150  
220  
220  
220  
220  
330  
330  
330  
470  
A
A
A
A
B
A
B
A
B
A
B
C
A
B
C
A
B
C
E
A
B
C
E
A
B
C
E
B
C
E
E
TMCMA0G475(1)TRF  
TMCMA0G685(1)TRF  
TMCMA0G106(1)TRF  
TMCMA0G156(1)TRF  
TMCMB0G156(1)TRF  
TMCMA0G226(1)TRF  
TMCMB0G226(1)TRF  
TMCMA0G336(1)TRF  
TMCMB0G336(1)TRF  
TMCMA0G476(1)TRF  
TMCMB0G476(1)TRF  
TMCMC0G476(1)TRF  
TMCMA0G686(1)TRF  
TMCMB0G686(1)TRF  
TMCMC0G686(1)TRF  
TMCMA0G107(1)TRF  
TMCMB0G107(1)TRF  
TMCMC0G107(1)TRF  
TMCME0G107(1)TRF  
TMCMA0G157(1)TRF  
TMCMB0G157(1)TRF  
TMCMC0G157(1)TRF  
TMCME0G157(1)TRF  
TMCMA0G227MTRF  
TMCMB0G227(1)TRF  
TMCMC0G227(1)TRF  
TMCME0G227(1)TRF  
TMCMB0G337MTRF  
TMCMC0G337(1)TRF  
TMCME0G337(1)TRF  
TMCME0G477(1)TRF  
0.5  
0.5  
0.5  
0.6  
0.6  
0.9  
0.9  
1.3  
1.3  
1.9  
1.9  
1.9  
5.4  
2.7  
2.7  
8.0  
4.0  
4.0  
4.0  
60.0  
6.0  
6.0  
6.0  
88.0  
17.6  
8.8  
8.8  
26.4  
13.2  
13.2  
18.8  
6
6
8
8
8
8
8
8
8
12  
8
8
12  
8
8
30  
12  
8
4.0  
4.0  
2.0  
2.9  
1.7  
1.8  
1.1  
2.0  
1.1  
2.0  
1.1  
1.1  
2.0  
1.1  
1.1  
1.1  
1.1  
1.1  
0.6  
1.8  
1.1  
1.1  
0.3  
1.8  
1.1  
1.1  
0.3  
1.1  
1.1  
0.3  
0.2  
0.140  
0.140  
0.197  
0.164  
0.238  
0.208  
0.295  
0.197  
0.295  
0.197  
0.295  
0.302  
0.197  
0.295  
0.302  
0.266  
0.295  
0.302  
0.447  
0.208  
0.295  
0.302  
0.632  
0.208  
0.295  
0.302  
0.632  
0.295  
0.302  
0.632  
0.775  
8
30  
18  
8
8
30  
18  
12  
8
30  
18  
10  
16  
6.3 VDC (7 VDC) AT + 85 °C, 4 VDC AT +125 °C  
3.3  
4.7  
6.8  
10  
10  
15  
15  
22  
22  
33  
33  
33  
47  
47  
47  
68  
68  
68  
68  
100  
A
A
A
A
B
A
B
A
B
A
B
C
A
B
C
A
B
C
E
A
TMCMA0J335(1)TRF  
TMCMA0J475(1)TRF  
TMCMA0J685(1)TRF  
TMCMA0J106(1)TRF  
TMCMB0J106(1)TRF  
TMCMA0J156(1)TRF  
TMCMB0J156(1)TRF  
TMCMA0J226(1)TRF  
TMCMB0J226(1)TRF  
TMCMA0J336(1)TRF  
TMCMB0J336(1)TRF  
TMCMC0J336(1)TRF  
TMCMA0J476(1)TRF  
TMCMB0J476(1)TRF  
TMCMC0J476(1)TRF  
TMCMA0J686(1)TRF  
TMCMB0J686(1)TRF  
TMCMC0J686(1)TRF  
TMCME0J686(1)TRF  
TMCMA0J107MTRF  
0.5  
0.5  
0.5  
0.7  
0.7  
1.1  
1.1  
1.5  
1.5  
2.3  
2.3  
2.3  
5.9  
3.3  
3.3  
8.6  
4.8  
4.8  
4.8  
31.5  
6
6
6
8
8
8
8
8
8
10  
8
8
12  
8
8
20  
10  
8
8
30  
4.0  
4.0  
4.0  
2.9  
1.7  
4.0  
1.7  
1.8  
1.1  
2.0  
1.1  
1.1  
1.8  
1.1  
1.1  
2.0  
1.1  
1.1  
0.6  
1.8  
0.140  
0.140  
0.140  
0.164  
0.238  
0.140  
0.238  
0.208  
0.295  
0.197  
0.295  
0.302  
0.208  
0.295  
0.302  
0.197  
0.295  
0.302  
0.447  
0.208  
Note  
Part number definition:  
(1) Tolerance: For 10 ꢀ tolerance, specify “K”; for 20 ꢀ tolerance, change to “M”  
Revision: 26-Oct-17  
Document Number: 40178  
4
For technical questions, contact: polytech@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  
TMCM  
Vishay Polytech  
www.vishay.com  
STANDARD RATINGS  
MAX. DCL  
AT +25 °C  
(μA)  
MAX. DF  
AT +25 °C, 120 Hz  
(%)  
MAX. ESR  
MAX. RIPPLE,  
100 kHz IRMS  
(A)  
CAPACITANCE  
(μF)  
CASE  
CODE  
PART NUMBER  
AT +25 °C, 100 kHz  
()  
6.3 VDC (7 VDC) AT + 85 °C, 4 VDC AT +125 °C  
100  
100  
100  
150  
150  
150  
220  
220  
220  
330  
330  
470  
B
C
E
B
C
E
B
C
E
C
E
E
TMCMB0J107(1)TRF  
TMCMC0J107(1)TRF  
TMCME0J107(1)TRF  
TMCMB0J157(1)TRF  
TMCMC0J157(1)TRF  
TMCME0J157(1)TRF  
TMCMB0J227MTRF  
TMCMC0J227(1)TRF  
TMCME0J227(1)TRF  
TMCMC0J337MTRF  
TMCME0J337(1)TRF  
TMCME0J477(1)TRF  
7.0  
7.0  
12  
8
1.1  
1.1  
0.6  
1.1  
1.1  
0.3  
1.1  
1.1  
0.3  
1.1  
0.2  
0.3  
0.295  
0.302  
0.447  
0.295  
0.302  
0.632  
0.295  
0.302  
0.632  
0.302  
0.775  
0.632  
7.0  
8
18.9  
10.5  
10.5  
27.7  
15.4  
15.4  
23.1  
23.1  
32.9  
20  
10  
8
30  
18  
10  
30  
16  
20  
10 VDC AT + 85 °C, 6.3 VDC AT +125 °C  
2.2  
3.3  
4.7  
6.8  
6.8  
10  
A
A
A
A
B
A
B
A
B
A
B
C
A
B
C
A
B
C
E
B
C
E
B
C
E
C
E
E
E
TMCMA1A225(1)TRF  
TMCMA1A335(1)TRF  
TMCMA1A475(1)TRF  
TMCMA1A685(1)TRF  
TMCMB1A685(1)TRF  
TMCMA1A106(1)TRF  
TMCMB1A106(1)TRF  
TMCMA1A156(1)TRF  
TMCMB1A156(1)TRF  
TMCMA1A226(1)TRF  
TMCMB1A226(1)TRF  
TMCMC1A226(1)TRF  
TMCMA1A336(1)TRF  
TMCMB1A336(1)TRF  
TMCMC1A336(1)TRF  
TMCMA1A476MTRF  
TMCMB1A476(1)TRF  
TMCMC1A476(1)TRF  
TMCME1A476(1)TRF  
TMCMB1A686(1)TRF  
TMCMC1A686(1)TRF  
TMCME1A686(1)TRF  
TMCMB1A107MTRF  
TMCMC1A107(1)TRF  
TMCME1A107(1)TRF  
TMCMC1A157MTRF  
TMCME1A157(1)TRF  
TMCME1A227(1)TRF  
TMCME1A337(1)TRF  
0.5  
0.5  
6
6
4.4  
4.0  
4.0  
4.0  
2.8  
2.9  
1.7  
2.9  
1.7  
2.4  
1.1  
1.7  
2.0  
1.1  
1.1  
2.6  
1.1  
1.1  
0.9  
1.1  
1.1  
0.6  
1.7  
1.1  
0.6  
1.1  
0.3  
0.2  
0.3  
0.133  
0.140  
0.140  
0.140  
0.185  
0.164  
0.238  
0.164  
0.238  
0.180  
0.295  
0.243  
0.197  
0.295  
0.302  
0.173  
0.295  
0.302  
0.365  
0.295  
0.302  
0.447  
0.238  
0.302  
0.447  
0.302  
0.632  
0.775  
0.632  
0.5  
6
0.7  
6
0.7  
6
1.0  
8
10  
1.0  
8
15  
1.5  
8
15  
1.5  
8
22  
4.4  
12  
8
22  
2.2  
22  
2.2  
8
33  
6.6  
18  
8
33  
3.3  
33  
3.3  
8
47  
9.4  
20  
10  
8
47  
4.7  
47  
4.7  
47  
4.7  
8
68  
6.8  
18  
8
68  
6.8  
68  
6.8  
8
100  
100  
100  
150  
150  
220  
330  
20.0  
10.0  
10.0  
15.0  
15.0  
22.0  
33.0  
30  
10  
8
18  
8
12  
30  
Note  
Part number definition:  
(1) Tolerance: For 10 ꢀ tolerance, specify “K”; for 20 ꢀ tolerance, change to “M”  
Revision: 26-Oct-17  
Document Number: 40178  
5
For technical questions, contact: polytech@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  
TMCM  
Vishay Polytech  
www.vishay.com  
STANDARD RATINGS  
MAX. DCL  
AT +25 °C  
(μA)  
MAX. DF  
AT +25 °C, 120 Hz  
(%)  
MAX. ESR  
MAX. RIPPLE,  
100 kHz IRMS  
(A)  
CAPACITANCE  
(μF)  
CASE  
CODE  
PART NUMBER  
AT +25 °C, 100 kHz  
()  
16 VDC AT + 85 °C, 10 VDC AT +125 °C  
1.5  
2.2  
3.3  
4.7  
4.7  
6.8  
6.8  
10  
A
A
A
A
B
A
B
A
B
A
B
C
A
B
C
B
C
E
B
C
E
C
E
C
E
TMCMA1C155(1)TRF  
TMCMA1C225(1)TRF  
TMCMA1C335(1)TRF  
TMCMA1C475(1)TRF  
TMCMB1C475(1)TRF  
TMCMA1C685(1)TRF  
TMCMB1C685(1)TRF  
TMCMA1C106(1)TRF  
TMCMB1C106(1)TRF  
TMCMA1C156(1)TRF  
TMCMB1C156(1)TRF  
TMCMC1C156(1)TRF  
TMCMA1C226MTRF  
TMCMB1C226(1)TRF  
TMCMC1C226(1)TRF  
TMCMB1C336(1)TRF  
TMCMC1C336(1)TRF  
TMCME1C336(1)TRF  
TMCMB1C476MTRF  
TMCMC1C476(1)TRF  
TMCME1C476(1)TRF  
TMCMC1C686(1)TRF  
TMCME1C686(1)TRF  
TMCMC1C107MTRF  
TMCME1C107(1)TRF  
0.5  
0.5  
0.5  
0.8  
0.8  
1.1  
1.1  
1.6  
1.6  
2.4  
2.4  
2.4  
7.0  
3.5  
3.5  
5.3  
5.3  
5.3  
7.5  
7.5  
7.5  
10.9  
10.9  
16.0  
16.0  
6
6
6.6  
6.6  
4.0  
4.0  
2.8  
4.0  
2.8  
2.9  
1.7  
2.9  
1.7  
1.7  
2.9  
1.7  
1.1  
1.1  
1.1  
0.9  
1.7  
2.2  
0.9  
1.1  
0.6  
1.7  
0.6  
0.109  
0.109  
0.140  
0.140  
0.185  
0.140  
0.185  
0.164  
0.238  
0.164  
0.238  
0.243  
0.164  
0.238  
0.302  
0.295  
0.302  
0.365  
0.238  
0.213  
0.365  
0.302  
0.447  
0.243  
0.447  
6
6
6
6
6
8
10  
8
15  
12  
8
15  
15  
8
22  
16  
8
22  
22  
8
33  
12  
8
33  
33  
8
47  
20  
8
47  
47  
8
68  
20  
8
68  
100  
100  
20  
8
20 VDC AT + 85 °C, 13 VDC AT +125 °C  
1.0  
1.5  
2.2  
3.3  
3.3  
4.7  
4.7  
6.8  
10  
A
A
A
A
B
A
B
B
B
C
B
C
B
C
E
C
E
E
E
TMCMA1D105(1)TRF  
TMCMA1D155(1)TRF  
TMCMA1D225(1)TRF  
TMCMA1D335(1)TRF  
TMCMB1D335(1)TRF  
TMCMA1D475(1)TRF  
TMCMB1D475(1)TRF  
TMCMB1D685(1)TRF  
TMCMB1D106(1)TRF  
TMCMC1D106(1)TRF  
TMCMB1D156(1)TRF  
TMCMC1D156(1)TRF  
TMCMB1D226(1)TRF  
TMCMC1D226(1)TRF  
TMCME1D226(1)TRF  
TMCMC1D336(1)TRF  
TMCME1D336(1)TRF  
TMCME1D476(1)TRF  
TMCME1D686(1)TRF  
0.5  
0.5  
0.5  
0.7  
0.7  
0.9  
0.9  
1.4  
2.0  
2.0  
3.0  
3.0  
4.4  
4.4  
4.4  
6.6  
6.6  
9.4  
13.6  
4
6
6
6
6
6
6
6
8
8
8
8
8
8
8
8
8
8
8
6.6  
4.4  
4.4  
4.0  
3.9  
4.0  
2.8  
2.2  
2.2  
1.7  
1.1  
1.7  
1.7  
1.7  
0.9  
1.0  
0.9  
0.9  
0.5  
0.109  
0.133  
0.133  
0.140  
0.157  
0.140  
0.185  
0.209  
0.209  
0.243  
0.295  
0.243  
0.238  
0.243  
0.365  
0.316  
0.365  
0.365  
0.490  
10  
15  
15  
22  
22  
22  
33  
33  
47  
68  
Note  
Part number definition:  
(1) Tolerance: For 10 ꢀ tolerance, specify “K”; for 20 ꢀ tolerance, change to “M”  
Revision: 26-Oct-17  
Document Number: 40178  
6
For technical questions, contact: polytech@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  
TMCM  
Vishay Polytech  
www.vishay.com  
STANDARD RATINGS  
MAX. DCL  
AT +25 °C  
(μA)  
MAX. DF  
AT +25 °C, 120 Hz  
(%)  
MAX. ESR  
MAX. RIPPLE,  
100 kHz IRMS  
(A)  
CAPACITANCE  
(μF)  
CASE  
CODE  
PART NUMBER  
AT +25 °C, 100 kHz  
()  
25 VDC AT + 85 °C, 16 VDC AT +125 °C  
0.68  
1.0  
1.5  
2.2  
2.2  
3.3  
3.3  
4.7  
4.7  
6.8  
6.8  
10  
A
A
A
A
B
A
B
A
B
B
C
B
C
C
E
C
E
E
E
TMCMA1E684(1)TRF  
TMCMA1E105(1)TRF  
TMCMA1E155(1)TRF  
TMCMA1E225(1)TRF  
TMCMB1E225(1)TRF  
TMCMA1E335(1)TRF  
TMCMB1E335(1)TRF  
TMCMA1E475MTRF  
TMCMB1E475(1)TRF  
TMCMB1E685(1)TRF  
TMCMC1E685(1)TRF  
TMCMB1E106(1)TRF  
TMCMC1E106(1)TRF  
TMCMC1E156(1)TRF  
TMCME1E156(1)TRF  
TMCMC1E226(1)TRF  
TMCME1E226(1)TRF  
TMCME1E336(1)TRF  
TMCME1E476(1)TRF  
0.5  
0.5  
0.5  
0.6  
0.6  
0.8  
0.8  
1.2  
1.2  
1.7  
1.7  
2.5  
2.5  
3.8  
3.8  
5.5  
5.5  
8.3  
11.8  
4
4
6
6
6
6
6
6
6
8
8
8
8
8
8
8
8
8
8
9.7  
6.6  
4.4  
4.4  
3.9  
2.8  
3.9  
6.6  
2.8  
2.8  
1.7  
2.2  
1.7  
1.7  
0.9  
1.1  
0.9  
0.9  
0.9  
0.090  
0.109  
0.133  
0.133  
0.157  
0.167  
0.157  
0.109  
0.185  
0.185  
0.243  
0.209  
0.243  
0.243  
0.365  
0.302  
0.365  
0.365  
0.365  
10  
15  
15  
22  
22  
33  
47  
35 VDC AT + 85 °C, 22 VDC AT +125 °C  
0.47  
0.68  
1.0  
1.5  
1.5  
2.2  
2.2  
3.3  
4.7  
6.8  
10  
A
A
A
A
B
A
B
B
C
C
C
E
E
E
TMCMA1V474(1)TRF  
TMCMA1V684(1)TRF  
TMCMA1V105(1)TRF  
TMCMA1V155(1)TRF  
TMCMB1V155(1)TRF  
TMCMA1V225MTRF  
TMCMB1V225(1)TRF  
TMCMB1V335(1)TRF  
TMCMC1V475(1)TRF  
TMCMC1V685(1)TRF  
TMCMC1V106(1)TRF  
TMCME1V106(1)TRF  
TMCME1V156(1)TRF  
TMCME1V226(1)TRF  
0.5  
0.5  
0.5  
0.5  
0.5  
0.8  
0.8  
1.2  
1.6  
2.4  
3.5  
3.5  
5.3  
7.7  
4
4
4
6
6
8
6
6
6
6
8
8
8
8
16.5  
9.7  
6.6  
4.4  
3.9  
4.4  
5.5  
3.9  
2.8  
1.7  
1.7  
1.1  
0.9  
0.9  
0.069  
0.090  
0.109  
0.133  
0.157  
0.133  
0.132  
0.157  
0.189  
0.243  
0.243  
0.330  
0.365  
0.365  
10  
15  
22  
Note  
Part number definition:  
(1) Tolerance: For 10 ꢀ tolerance, specify “K”; for 20 ꢀ tolerance, change to “M”  
RECOMMENDED VOLTAGE DERATING GUIDELINES (for temperature below +85 °C)  
CAPACITOR VOLTAGE RATING  
OPERATING VOLTAGE  
2.5  
4.0  
1.2  
2.0  
6.3 (7.0)  
10  
3.1 (3.5)  
5.0  
16  
8.0  
20  
10.0  
12.5  
17.5  
25  
35  
Revision: 26-Oct-17  
Document Number: 40178  
7
For technical questions, contact: polytech@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  
TMCM  
Vishay Polytech  
www.vishay.com  
POWER DISSIPATION  
CASE CODE  
MAXIMUM PERMISSIBLE POWER DISSIPATION AT +25 °C (W) IN FREE AIR  
A
B
C
E
0.078  
0.096  
0.100  
0.120  
STANDARD PACKAGING QUANTITY  
CASE CODE  
UNITS PER 7" REEL  
A
B
C
E
2000  
2000  
500  
500  
PERFORMANCE CHARACTERISTICS  
ITEM  
CONDITION  
POST TEST PERFORMANCE  
Specified  
initial value  
-55 °C  
+85 °C  
+125 °C  
Capacitance  
change  
-
-10 ꢀ to 0 ꢀ  
0 ꢀ to +10 ꢀ  
0 ꢀ to +12 ꢀ  
4
6
9
7
9
10  
12  
14  
16  
20  
34  
36  
60  
8
10  
12  
14  
16  
20  
22  
24  
40  
8
10  
12  
14  
18  
20  
22  
30  
10  
Temperature  
characteristics  
Measure the specified  
characteristics in each stage  
Dissipation  
factor (ꢀ)  
12  
16  
18  
20  
30  
Refer to  
1000 ꢀ  
specified initial  
value or less  
1250 ꢀ  
specified initial  
value or less  
Leakage  
current  
Standard  
Ratings  
table  
-
Capacitance change  
Dissipation factor  
Leakage current  
Within 5 ꢀ of initial value  
Solder dip: 260 °C 5 °C  
A, B case: 10 s 1 s  
Solder heat  
resistance  
Shall not exceed initial specified value  
Shall not exceed initial specified value  
Within 10 ꢀ of initial value  
C, E case: 5 s 0.5 s  
Reflow 260 °C, 10 s 1 s  
Capacitance change  
Dissipation factor  
Leakage current  
Moisture  
resistance  
no load  
Leave at 40 °C and  
90 ꢀ to 95 ꢀ RH for 500 h  
Shall not exceed initial specified value  
Shall not exceed initial specified value  
Within 10 ꢀ of initial value  
Capacitance change  
Dissipation factor  
Leakage current  
High  
temperature  
load  
85 °C. The rated voltage is  
applied for 2000 h  
Shall not exceed initial specified value  
Shall not exceed 125 ꢀ of initial specified value  
Leave at -55 °C, normal  
Capacitance change  
Dissipation factor  
Leakage current  
Within 10 ꢀ of initial value  
temperature, 125 °C, and  
Thermal  
shock  
normal temperature for 30 min,  
3 min, 30 min, and 3 min. Repeat  
this operation 5 times running  
Shall not exceed initial specified value  
Shall not exceed initial specified value  
Capacitance change  
Dissipation factor  
Leakage current  
Within 10 ꢀ of initial value  
Moisture  
resistance  
load  
Leave at 40 °C and 90 ꢀ to  
95 ꢀ RH. The rated voltage  
applied for 500 h  
Shall not exceed 150 ꢀ of initial specified value  
Shall not exceed 200 ꢀ of initial specified value  
85 °C. The rated voltage is  
applied through a protective  
resistor of 1 /V  
Failure rate  
1 ꢀ/1000 h  
Note  
Test conditions per JIS C5101-1  
Revision: 26-Oct-17  
Document Number: 40178  
8
For technical questions, contact: polytech@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  
Molded Guide  
Vishay Polytech  
www.vishay.com  
Guide for Tantalum and Niobium  
Solid Electrolyte Chip Capacitors  
Rating for rating, tantalum capacitors tend to have as much  
as three times better capacitance / volume efficiency than  
aluminum electrolytic capacitors. An approximation of the  
capacitance / volume efficiency of other types of capacitors  
may be inferred from the following table, which shows the  
dielectric constant ranges of the various materials used in  
each type. Note that tantalum pentoxide has a dielectric  
constant of 26, some three times greater than that of  
aluminum oxide. This, in addition to the fact that extremely  
thin films can be deposited during the electrolytic process  
mentioned earlier, makes the tantalum capacitor extremely  
efficient with respect to the number of microfarads available  
per unit volume. The capacitance of any capacitor is  
determined by the surface area of the two conducting  
plates, the distance between the plates, and the dielectric  
constant of the insulating material between the plates.  
INTRODUCTION  
Tantalum electrolytic capacitors are the preferred choice in  
applications where volumetric efficiency, stable electrical  
parameters, high reliability, and long service life are primary  
considerations. The stability and resistance to elevated  
temperatures of the tantalum / tantalum oxide / manganese  
dioxide system make solid tantalum capacitors an  
appropriate choice for today's surface mount assembly  
technology.  
Vishay Sprague has been a pioneer and leader in this field,  
producing a large variety of tantalum capacitor types for  
consumer, industrial, automotive, military, and aerospace  
electronic applications.  
Tantalum is not found in its pure state. Rather, it is  
commonly found in a number of oxide minerals, often in  
combination with Columbium ore. This combination is  
known as “tantalite” when its contents are more than  
one-half tantalum. Important sources of tantalite include  
Australia, Brazil, Canada, China, and several African  
countries. Synthetic tantalite concentrates produced from  
tin slags in Thailand, Malaysia, and Brazil are also a  
significant raw material for tantalum production.  
Electronic applications, and particularly capacitors,  
consume the largest share of world tantalum production.  
Other important applications for tantalum include cutting  
tools (tantalum carbide), high temperature super alloys,  
chemical processing equipment, medical implants, and  
military ordnance.  
COMPARISON OF CAPACITOR  
DIELECTRIC CONSTANTS  
e
DIELECTRIC  
DIELECTRIC CONSTANT  
Air or vacuum  
Paper  
1.0  
2.0 to 6.0  
2.1 to 6.0  
2.2 to 2.3  
2.7 to 2.8  
3.8 to 4.4  
4.8 to 8.0  
5.1 to 5.9  
5.4 to 8.7  
8.4  
Plastic  
Mineral oil  
Silicone oil  
Quartz  
Vishay Sprague is a major user of tantalum materials in the  
form of powder and wire for capacitor elements and rod and  
sheet for high temperature vacuum processing.  
Glass  
Porcelain  
Mica  
THE BASICS OF TANTALUM CAPACITORS  
Aluminum oxide  
Tantalum pentoxide  
Ceramic  
Most metals form crystalline oxides which are  
non-protecting, such as rust on iron or black oxide on  
copper. A few metals form dense, stable, tightly adhering,  
electrically insulating oxides. These are the so-called “valve”  
metals and include titanium, zirconium, niobium, tantalum,  
hafnium, and aluminum. Only a few of these permit the  
accurate control of oxide thickness by electrochemical  
means. Of these, the most valuable for the electronics  
industry are aluminum and tantalum.  
26  
12 to 400K  
In the tantalum electrolytic capacitor, the distance between  
the plates is very small since it is only the thickness of the  
tantalum pentoxide film. As the dielectric constant of the  
tantalum pentoxide is high, the capacitance of a tantalum  
capacitor is high if the area of the plates is large:  
eA  
C = ------  
t
Capacitors are basic to all kinds of electrical equipment,  
from radios and television sets to missile controls and  
automobile ignitions. Their function is to store an electrical  
charge for later use.  
where  
Capacitors consist of two conducting surfaces, usually  
metal plates, whose function is to conduct electricity. They  
are separated by an insulating material or dielectric. The  
dielectric used in all tantalum electrolytic capacitors is  
tantalum pentoxide.  
Tantalum pentoxide compound possesses high-dielectric  
strength and a high-dielectric constant. As capacitors are  
being manufactured, a film of tantalum pentoxide is applied  
to their electrodes by means of an electrolytic process. The  
film is applied in various thicknesses and at various voltages  
and although transparent to begin with, it takes on different  
colors as light refracts through it. This coloring occurs on the  
tantalum electrodes of all types of tantalum capacitors.  
C = capacitance  
e = dielectric constant  
A = surface area of the dielectric  
t = thickness of the dielectric  
Tantalum capacitors contain either liquid or solid  
electrolytes. In solid electrolyte capacitors, a dry material  
(manganese dioxide) forms the cathode plate. A tantalum  
lead is embedded in or welded to the pellet, which is in turn  
connected to a termination or lead wire. The drawings show  
the construction details of the surface mount types of  
tantalum capacitors shown in this catalog.  
Revision: 11-Apr-16  
Document Number: 40218  
1
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  
Molded Guide  
Vishay Polytech  
www.vishay.com  
SOLID ELECTROLYTE TANTALUM CAPACITORS  
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.  
Also important are their good low temperature performance  
characteristics and freedom from corrosive electrolytes.  
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 leadframe.  
Datasheets covering the various types and styles of  
capacitors for consumer and entertainment electronics and  
industry applications are available where detailed  
performance characteristics must be specified.  
Molded chip tantalum capacitor encases the element in  
plastic resins, such as epoxy materials. 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 as shown in the accompanying drawings.  
MOLDED CHIP CAPACITOR, ALL TYPES EXCEPT TMCTX / TMCJ / NMC  
Tantalum wire  
Supporter  
Epoxy encapsulation  
Silver adhesive  
Leadframe  
Solderable cathode termination  
Solderable anode termination  
Carbon / silver coating  
MnO2  
Sintered tantalum  
MOLDED CHIP CAPACITOR WITH BUILT-IN FUSE, TYPE TMCTX  
Supporter  
Tantalum wire  
Sintered tantalum  
Carbon / silver coating  
Epoxy encapsulation  
Fusible ribbon  
Leadframe  
Solderable cathode termination  
Solderable anode termination  
MnO2  
Silver adhesive  
MOLDED CHIP CAPACITOR 0603 SIZE, TYPE TMCJ  
Silver adhesive  
Tantalum wire  
Epoxy encapsulation  
Leadframe  
Solderable anode termination  
Solderable cathode termination  
Carbon / silver coating  
MnO2  
Sintered tantalum  
Revision: 11-Apr-16  
Document Number: 40218  
2
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  
Molded Guide  
Vishay Polytech  
www.vishay.com  
MOLDED CHIP CAPACITOR NIOBIUM, TYPE NMC  
Tantalum wire  
Supporter  
Silver adhesive  
Epoxy encapsulation  
Leadframe  
Solderable cathode termination  
Solderable anode termination  
Carbon / silver coating  
MnO2 Sintered niobium  
SOLID TANTALUM CAPACITORS - MOLDED CASE  
SERIES  
TMCS  
TMCM  
TMCR  
TMCU  
TMCP  
TMCJ  
PRODUCT  
IMAGE  
TYPE  
Solid tantalum surface mount chip capacitors, molded case  
Standard  
Standard  
industrial grade  
FEATURES  
industrial grade  
extended range  
Low ESR  
Low profile  
0805 size  
0603 size  
TEMPERATURE  
RANGE  
-55 °C to +125 °C  
CAPACITANCE  
RANGE  
0.1 μF to 68 μF 0.47 μF to 470 μF 10 μF to 330 μF  
0.1 μF to 220 μF  
2.5 V to 35 V  
0.1 μF to 47 μF  
2.5 V to 25 V  
0.68 μF to 22 μF  
2.5 V to 20 V  
20 %  
VOLTAGE  
RANGE  
4 V to 35 V  
2.5 V to 35 V  
7 V to 35 V  
CAPACITANCE  
TOLERANCE  
10 %, 20 %  
LEAKAGE  
CURRENT  
0.01 CV or 0.5 ꢀA, whichever is greater  
DISSIPATION  
FACTOR  
4 % to 6 %  
A, B, C, E  
4 % to 30 %  
A, B, C, E  
6 % to 30 %  
B, C, E  
4 % to 30 %  
UA, UB  
6 % to 30 %  
P
20 %  
J
CASE SIZES  
TERMINATION  
FINISH  
Case UA: 100 % tin  
Case UB: Ni / Pd / Au  
100 % tin  
100 % tin  
Revision: 11-Apr-16  
Document Number: 40218  
3
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  
Molded Guide  
Vishay Polytech  
www.vishay.com  
SOLID TANTALUM CAPACITORS - MOLDED CASE  
SERIES  
TMCTX  
TMCH  
THC  
PRODUCT IMAGE  
TYPE  
Solid tantalum surface mount chip capacitors, molded case  
High reliability,  
high temperature +150 °C  
FEATURES  
Built-in fuse  
High reliability  
TEMPERATURE RANGE  
-55 °C to +125 °C  
-55 °C to +150 °C  
CAPACITANCE RANGE  
VOLTAGE RANGE  
1.0 μF to 68 μF  
10 V to 35 V  
0.1 μF to 100 μF  
4 V to 35 V  
0.33 μF to 47 μF  
10 V to 35 V  
CAPACITANCE TOLERANCE  
10 %, 20 %  
0.01 CV or 0.5 ꢀA,  
whichever is greater  
LEAKAGE CURRENT  
0.005 CV or 0.25 ꢀA, whichever is greater  
DISSIPATION FACTOR  
CASE SIZES  
4 % to 6 %  
B, C, E, F  
4 % to 8 %  
A, B, C, E, P  
100 % tin  
4 % to 6 %  
A, B, C, E  
TERMINATION FINISH  
SOLID NIOBIUM CAPACITORS - MOLDED CASE  
SERIES  
NMC  
NMCU  
PRODUCT IMAGE  
TYPE  
Solid niobium surface mount chip capacitors, molded case  
FEATURES  
Flame retardant  
Flame retardant, low profile  
TEMPERATURE RANGE  
-55 °C to +105 °C  
CAPACITANCE RANGE  
VOLTAGE RANGE  
10 μF to 470 μF  
4.7 μF to 47 μF  
2.5 V to 10 V  
20 %  
CAPACITANCE TOLERANCE  
LEAKAGE CURRENT  
DISSIPATION FACTOR  
CASE SIZES  
0.02 CV or less  
8 % to 30 %  
A, B, C, E  
30 %  
UA, UB  
Case UA: 100 % tin  
Case UB: Ni / Pd / Au  
TERMINATION FINISH  
100 % tin  
Revision: 11-Apr-16  
Document Number: 40218  
4
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  
Molded Guide  
Vishay Polytech  
www.vishay.com  
PLASTIC TAPE AND REEL PACKAGING DIMENSIONS in millimeters  
Label  
E
D
W
CASE CODE  
TAPE WIDTH  
A + 0 / - 3  
J, P, A, UA, B, UB  
C, E, F  
12  
8
Ø 180  
Ø 60  
Ø 13  
Ø 21  
2.0  
B + 1 / 0  
C
D
E
0.2  
0.5  
0.5  
0.3  
W
9.0  
13.0  
TAPE SIZE in millimeters  
Perforation  
Ø 1.5+ 0.1  
Pocket  
0
A
P1  
t
4.0 0.1  
2.0 0.1  
Inserting direction  
Direction of tape flow  
Perforation  
Marking side (upper)  
Mounting terminal side (lower)  
Symbol: R  
CASE CODE  
A
ꢀ02  
1.0  
B
ꢀ02  
1.8  
W
ꢀ03  
8.0  
F
ꢀ01  
3.5  
E
ꢀ01  
P1 ꢀ01  
4.0  
tmax0  
1.3  
1.6  
2.5  
1.7  
2.5  
1.7  
3.1  
3.4  
4.1  
J
P
1.75  
1.4  
1.9  
1.9  
3.1  
3.1  
3.7  
4.8  
6.2  
2.2  
3.5  
3.5  
3.8  
3.8  
6.3  
7.7  
7.5  
8.0  
8.0  
8.0  
8.0  
8.0  
3.5  
3.5  
3.5  
3.5  
3.5  
5.5  
5.5  
5.5  
1.75  
1.75  
1.75  
1.75  
1.75  
1.75  
1.75  
1.75  
4.0  
A
4.0  
UA  
B
4.0  
4.0  
UB  
C
4.0  
12.0  
12.0  
12.0  
8.0  
E
8.0  
F
8.0  
Revision: 11-Apr-16  
Document Number: 40218  
5
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  
Molded Guide  
Vishay Polytech  
www.vishay.com  
RECOMMENDED REFLOW PROFILES  
Capacitors should withstand reflow profile as per J-STD-020 standard  
Tp  
TC - 5 °C  
tp  
Max. ramp-up rate = 3 °C/s  
Max. ramp-down rate = 6 °C/s  
TL  
tL  
Ts max.  
Preheat area  
Ts min.  
ts  
25  
Time 25 °C to peak  
TIME (s)  
PROFILE FEATURE  
Preheat / soak  
LEAD (Pb)-FREE ASSEMBLY  
Temperature min. (Ts min.  
)
130 °C  
160 °C  
Temperature max. (Ts max.  
)
Time (ts) from (Ts min. to Ts max.  
Ramp-up  
)
60 s to 120 s  
Ramp-up rate (TL to Tp)  
Liquidus temperature (TL)  
Time (tL) maintained above TL  
3 °C/s max.  
200 °C  
50 s max.  
Peak package body temperature (Tp) max.  
Depends on case size - see table below  
Time (tp) within 5 °C of the peak maximum temperature  
Ramp-down rate (Tp to TL)  
10 s max.  
6 °C/s max.  
8 min max.  
Time from 25 °C to peak temperature  
PEAK PACKAGE BODY TEMPERATURE (Tp)  
PEAK PACKAGE BODY TEMPERATURE (Tp)  
CASE CODE  
LEAD (Pb)-FREE PROCESS  
J, P, UA, A, UB, B, C  
E, F  
260 °C  
250 °C  
PAD DIMENSIONS in millimeters  
L
X
W
Capacitor  
Pattern  
Y
G
Z
CAPACITOR SIZE  
PAD DIMENSIONS  
CASE /  
DIMENSIONS  
L
W
0.8  
1.25  
1.6  
2.8  
3.2  
4.3  
5.8  
G (max0)  
0.7  
Z (min0)  
2.5  
X (min0)  
1.0  
Y (Ref0)  
0.9  
J
P
1.6  
2.0  
3.2  
3.5  
5.8  
7.3  
7.3  
0.5  
2.6  
1.2  
1.05  
1.35  
1.35  
2.0  
UA, A  
UB, B  
C
1.1  
3.8  
1.5  
1.4  
4.1  
2.7  
2.9  
6.9  
2.7  
E
4.1  
8.2  
2.9  
2.05  
2.05  
F
4.1  
8.2  
4.0  
Revision: 11-Apr-16  
Document Number: 40218  
6
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  
Molded Guide  
Vishay Polytech  
www.vishay.com  
GUIDE TO APPLICATION  
1.  
AC Ripple Current: the maximum allowable ripple  
4.  
Reverse Voltage: the capacitors are not intended for  
use with reverse voltage applied. If the application of  
an reverse voltage is unavoidable, it must not exceed  
the following values:  
At 25 °C: 10 % of the rated voltage or 1 V, whichever  
is smaller.  
current shall be determined from the formula:  
P
RESR  
IRMS  
=
------------  
where,  
P =  
At 85 °C: 5 % of the rated voltage or 0.5 V, whichever  
is smaller.  
power dissipation in W at +25 °C as given in  
the tables in the product datasheets.  
5.  
Mounting Precautions:  
RESR = the capacitor equivalent series resistance at  
the specified frequency.  
5.1  
Limit Pressure on Capacitor Installation with  
Mounter: pressure must not exceed 4.9 N with a tool  
end diameter of 1.5 mm when applied to the  
capacitors using an absorber, centering tweezers, or  
similar (maximum permitted pressurization time: 5 s).  
An excessively low absorber setting position would  
result in not only the application of undue force to the  
capacitors but capacitor and other component  
scattering, circuit board wiring breakage, and / or  
cracking as well, particularly when the capacitors are  
mounted together with other chips having a height of  
1 mm or less.  
2.  
AC Ripple Voltage: the maximum allowable ripple  
voltage shall be determined from the formula:  
P
VRMS = Z ------------  
RESR  
or, from the formula:  
VRMS = IRMS x Z  
where,  
P =  
power dissipation in W at +25 °C as given in  
the tables in the product datasheets.  
5.2  
Flux Selection  
RESR = The capacitor equivalent series resistance at  
the specified frequency.  
5.2.1 Select a flux that contains a minimum of chlorine and  
amine.  
5.2.2 After flux use, the chlorine and amine in the flux  
remain must be removed.  
Z =  
The capacitor impedance at the specified  
frequency.  
5.3  
Cleaning After Mounting: the following solvents are  
usable when cleaning the capacitors after mounting.  
Never use a highly active solvent.  
• Halogen organic solvent (HCFC225, etc.)  
• Alcoholic solvent (IPA, ethanol, etc.)  
2.1  
The tantalum capacitors must be used in such a  
condition that the sum of the working voltage and  
ripple voltage peak values does not exceed the rated  
voltage as shown in figure below.  
• Petroleum solvent, alkali saponifying agent, water,  
etc.  
Ripple voltage  
Rated voltage  
Circuit board cleaning must be conducted at a  
temperature of not higher than 50 °C and for an  
immersion time of not longer than 30 minutes. When  
an ultrasonic cleaning method is used, cleaning must  
be conducted at a frequency of 48 kHz or lower, at  
an vibrator output of 0.02 W/cm3, at a temperature of  
not higher than 40 °C, and for a time of 5 minutes or  
shorter.  
Operating  
voltage  
Working voltage  
Time (s)  
3.  
Temperature Derating: power dissipation is  
affected by the heat sinking capability of the  
mounting surface. If these capacitors are to  
be operated at temperatures above +25 °C, the  
permissible ripple current (or voltage) shall be  
calculated using the derating coefficient as shown in  
the table below:  
Notes  
• Care must be exercised in cleaning process so that the  
mounted capacitor will not come into contact with any  
cleaned object or the like or will not get rubbed by a stiff  
brush or similar. If such precautions are not taken  
particularly when the ultrasonic cleaning method is  
employed, terminal breakage may occur.  
• When performing ultrasonic cleaning under conditions  
other than stated above, conduct adequate advance  
checkout.  
MAXIMUM RIPPLE CURRENT TEMPERATURE  
DERATING FACTOR  
TEMPERATURE  
25 °C  
TMC  
1.0  
NMC  
1.0  
0.9  
0.4  
-
85 °C  
0.9  
105 °C  
0.65  
0.4  
125 °C  
Revision: 11-Apr-16  
Document Number: 40218  
7
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  
Legal Disclaimer Notice  
www.vishay.com  
Vishay  
Disclaimer  
ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE  
RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE.  
Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively,  
“Vishay”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained in any datasheet or in any other  
disclosure relating to any product.  
Vishay makes no warranty, representation or guarantee regarding the suitability of the products for any particular purpose or  
the continuing production of any product. To the maximum extent permitted by applicable law, Vishay disclaims (i) any and all  
liability arising out of the application or use of any product, (ii) any and all liability, including without limitation special,  
consequential or incidental damages, and (iii) any and all implied warranties, including warranties of fitness for particular  
purpose, non-infringement and merchantability.  
Statements regarding the suitability of products for certain types of applications are based on Vishay’s knowledge of  
typical requirements that are often placed on Vishay products in generic applications. Such statements are not binding  
statements about the suitability of products for a particular application. It is the customer’s responsibility to validate that a  
particular product with the properties described in the product specification is suitable for use in a particular application.  
Parameters provided in datasheets and / or specifications may vary in different applications and performance may vary over  
time. All operating parameters, including typical parameters, must be validated for each customer application by the customer’s  
technical experts. Product specifications do not expand or otherwise modify Vishay’s terms and conditions of purchase,  
including but not limited to the warranty expressed therein.  
Except as expressly indicated in writing, Vishay products are not designed for use in medical, life-saving, or life-sustaining  
applications or for any other application in which the failure of the Vishay product could result in personal injury or death.  
Customers using or selling Vishay products not expressly indicated for use in such applications do so at their own risk.  
Please contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for  
such applications.  
No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document  
or by any conduct of Vishay. Product names and markings noted herein may be trademarks of their respective owners.  
© 2017 VISHAY INTERTECHNOLOGY, INC. ALL RIGHTS RESERVED  
Revision: 08-Feb-17  
Document Number: 91000  
1

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