Tantalum Surface Mount Capacitors – Standard Tantalum
T491 Series Industrial Grade MnO
2
Electrical Characteristics
ESR vs. Frequency
100
T491C336M025AT_IMP
T491D476M025AT_IMP
Capacitance vs. Frequency
1,000
T491C336M025AT
T491D476M025AT
T491X107M025AT
Impedance, ESR (Ohms)
10
T491X107M025AT_IMP
T491C336M025AT_ESR
T491D476M025AT_ESR
T491X107M025AT_ESR
1
Capacitance (µF)
100
10
0.1
0.01
100
1,000
10,000
Frequency (Hz)
100,000
1,000,000
10,000,000
1
100
1,000
10,000
Frequency (Hz)
100,000
1,000,000
10,000,000
Dimensions – Millimeters (Inches)
Metric will govern
CATHODE (-) END VIEW
W
H
X
T
S
G
S
Termination cutout
at KEMET's option,
either end
SIDE VIEW
B
B
ANODE (+) END VIEW
BOTTOM VIEW
A
E
P
R
L
F
Case Size
KEMET
A
B
C
D
X
E
S
T
U
V
W
EIA
3216–18
3528–21
6032–28
7343–31
7343–43
7360-38
3216–12
3528–12
6032–15
7343-20
7343-15
Component
L*
W*
H*
3.2 ±0.2
1.6 ±0.2
1.6 ±0.2
(0.126 ±0.008) (0.063 ±0.008) (0.063 ±0.008)
3.5 ±0.2
2.8 ±0.2
1.9 ±0.2
(0.138 ±0.008) (0.110 ±0.008) (0.075 ±0.008)
6.0 ±0.3
3.2 ±0.3
2.5 ±0.3
(0.236 ±0.012) (0.126 ±0.012) (0.098 ±0.012)
7.3 ±0.3
4.3 ±0.3
2.8 ±0.3
(0.287 ±0.012) (0.169 ±0.012) (0.110 ±0.012)
7.3 ±0.3
4.3 ±0.3
4.0 ±0.3
(0.287 ±0.012) (0.169 ±0.012) (0.157 ±0.012)
7.3 ±0.3
6.0± 0.3
3.6 ± 0.2
(0.287 ±0.012) (0.236 ±0.012) (0.142 ±0.008)
3.2 ±0.2
1.6 ±0.2
1.2 (0.047)
(0.126 ±0.008) (0.063 ±0.008)
3.5 ±0.2
2.8 ±0.2
1.2 (0.047)
(0.138 ±0.008) (0.110 ±0.008)
6.0 ±0.3
3.2 ±0.2
1.5 (0.059)
(0.236 ±0.012) (0.110 ±0.008)
7.3 ±0.3
4.3 ±0.3
2.0 (0.079)
(0.287 ±0.012) (0.169 ±0.012)
7.3 ±0.3
4.3 ±0.3
1.5 (0.059)
(0.287 ±0.012) (0.169 ±0.012)
F* ±0.1
±(0.004)
1.2 (0.047)
2.2 (0.087)
2.2 (0.087)
2.4 (0.094)
2.4 (0.094)
4.1 (0.161)
1.2 (0.047)
2.2 (0.087)
2.2 (0.087)
2.4 (0.094)
2.4 (0.094)
S*
0.80 (0.032) + 0.2
(0.008) /-0.3(0.011)
0.80 (0.032) + 0.1
(0.004) /-0.3(0.011)
1.30 (0.051)
±0.3 (0.011)
1.30 (0.051)
±0.3 (0.011)
1.30 (0.051)
±0.3 (0.011)
1.30 (0.051)
±0.3 (0.011)
0.80 (0.032) + 0.2
(0.008) /-0.3(0.011)
0.80 (0.032) + 0.1
(0.004) /-0.3(0.011)
1.30 (0.051)
±0.3 (0.011)
1.30 (0.051)
±0.3 (0.011)
1.30 (0.051)
±0.3 (0.011)
B* ±0.15
(Ref) ±0.006
0.4 (0.016)
0.4 (0.016)
0.5 (0.020)
0.5 (0.020)
0.5 (0.020)
0.5 (0.020)
N/A
N/A
N/A
N/A
N/A
X (Ref)
P (Ref) R (Ref) T (Ref) A (Min) G (Ref) E (Ref)
0.4 (0.016)
1.0 (0.039)
1.0 (0.039)
1.0 (0.039)
1.0 (0.039)
N/A
N/A
N/A
N/A
N/A
N/A
0.13
(0.005)
0.13
(0.005)
0.13
(0.005)
0.13
(0.005)
0.13
(0.005)
0.13
(0.005)
0.13
(0.005)
0.13
(0.005)
0.13
(0.005)
0.13
(0.005)
0.13
(0.005)
1.2 (0.047) 1.1 (0.043) 1.3 (0.051)
1.9 (0.075) 1.8 (0.071) 2.2 (0.087)
2.9 (0.114) 2.8 (0.110) 2.4 (0.094)
3.6 (0.142) 3.5 (0.138) 3.5 (0.138)
3.6 (0.142) 3.5 (0.138) 3.5 (0.138)
1.2 (0.047) 3.5 (0.138) 3.5 (0.138)
1.2 (0.047) 1.1 (0.043) 1.3 (0.051)
1.9 (0.075) 1.8 (0.071) 2.2 (0.087)
2.9 (0.114) 2.8 (0.110) 2.4 (0.094)
3.6 (0.142) 3.5 (0.138) 3.5 (0.138)
3.6 (0.142) 3.5 (.0138) 3.5 (0.138)
0.10 ±0.10
0.4 (0.016)
(0.004 ±0.004)
0.10 ±0.10
0.5 (0.020)
(0.004 ±0.004)
0.10 ±0.10
0.9 (0.035)
(0.004 ±0.004)
0.10 ±0.10
0.9 (0.035)
(0.004 ±0.004)
0.10 ±0.10
1.7 (0.067)
(0.004 ±0.004)
0.10 ± 0.10
N/A
(0.004 ±0.004)
0.05 (0.002)
0.05 (0.002)
0.05 (0.002)
0.05 (0.002)
0.05 (0.002)
N/A
N/A
N/A
N/A
N/A
Notes: (Ref) – Dimensions provided for reference only. No dimensions are provided for B, P or R because low profile cases do not have a bevel or a notch.
Tantalum Surface Mount Capacitors – Standard Tantalum
T491 Series Industrial Grade MnO
2
Table 1 – Ratings & Part Number Reference
Rated Rated Case Code/
Voltage Cap
Case Size
VDC at 85ºC
2.5
2.5
3
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
4
VDC at 85ºC
µF
100
220
33
3.3
4.7
6.8
6.8
10
10
10
15
15
15
15
22
22
22
22
22
33
33
33
33
33
47
47
47
47
47
68
68
68
68
68
100
100
100
100
100
100
150
150
150
150
150
220
µF
KEMET/EIA
T/3528-12
D/7343-31
A/3216-18
A/3216-18
A/3216-18
A/3216-18
S/3216-12
B/3528-21
A/3216-18
S/3216-12
B/3528-21
A/3216-18
T/3528-12
S/3216-12
C/6032-28
B/3528-21
A/3216-18
T/3528-12
S/3216-12
C/6032-28
U/6032-15
B/3528-21
A/3216-18
T/3528-12
C/6032-28
U/6032-15
B/3528-21
A/3216-18
T/3528-12
D/7343-31
C/6032-28
U/6032-15
B/3528-21
A/3216-18
D/7343-31
C/6032-28
U/6032-15
B/3528-21
A/3216-18
T/3528-12
D/7343-31
U/6032-15
V/7343-20
C/6032-28
B/3528-21
V/7343-20
KEMET/EIA
KEMET Part
Number
(See below for
part options)
T491T107(1)2R5A(2)
T491D227(1)2R5A(2)
T491A336(1)003A(2)
T491A335(1)004A(2)
T491A475(1)004A(2)
T491A685(1)004A(2)
T491S685(1)004A(2)
T491B106(1)004A(2)
T491A106(1)004A(2)
T491S106(1)004A(2)
T491B156(1)004A(2)
T491A156(1)004A(2)
T491T156(1)004A(2)
T491S156(1)004A(2)
T491C226(1)004A(2)
T491B226(1)004A(2)
T491A226(1)004A(2)
T491T226(1)004A(2)
T491S226(1)004A(2)
T491C336(1)004A(2)
T491U336(1)004A(2)
T491B336(1)004A(2)
T491A336(1)004A(2)
T491T336(1)004A(2)
T491C476(1)004A(2)
T491U476(1)004A(2)
T491B476(1)004A(2)
T491A476(1)004A(2)
T491T476(M)004A(2)
T491D686(1)004A(2)
T491C686(1)004A(2)
T491U686(1)004A(2)
T491B686(1)004A(2)
T491A686(1)004A(2)
T491D107(1)004A(2)
T491C107(1)004A(2)
T491U107(1)004A(2)
T491B107(M)004A(2)
T491A107(M)004A(2)
T491T107(M)004A(2)
T491D157(1)004A(2)
T491U157(1)004AT
T491V157(1)004A(2)
T491C157(1)004A(2)
T491B157(M)004A(2)
T491V227(1)004A(2)
(See below for
part options)
DC
Leakage
µA at +20ºC
Maximum/
5 Minutes
2.5
5.5
1.0
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.6
0.6
0.6
0.6
0.9
0.9
0.9
0.9
0.9
1.3
1.3
1.3
1.3
1.3
1.9
1.9
1.9
1.9
1.9
2.7
2.7
2.7
2.7
2.7
4.0
4.0
4.0
4.0
4.0
4.0
6.0
6.0
6.0
6.0
6.0
8.8
µA at +20ºC
Maximum/
5 Minutes
DF
% at +20ºC
120 Hz
Maximum
24.0
8.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
10.0
6.0
6.0
6.0
6.0
10.0
6.0
6.0
6.0
6.0
8.0
6.0
6.0
6.0
10.0
12.0
6.0
6.0
6.0
6.0
30.0
8.0
8.0
10.0
8.0
30.0
30.0
8.0
8.0
8.0
8.0
12.0
8.0
% at +20ºC
120 Hz
Maximum
ESR
Ω at +20ºC
100 kHz
Maximum
3.9
0.3
4.0
8.0
8.0
6.0
15.0
3.5
4.5
15.0
3.5
4.0
5.0
15.0
1.8
3.0
3.5
5.0
10.0
1.8
1.8
2.5
3.0
5.0
1.6
1.8
2.0
2.5
6.0
0.8
1.5
1.8
1.8
4.0
0.8
1.2
1.8
0.9
4.0
5.0
0.8
1.3
0.7
1.2
2.0
0.7
Ω at +20ºC
100 kHz
Maximum
Maximum Allowable
Ripple Current
mA at
+25ºC
100 kHz
134
707
137
97
97
112
63
156
129
63
156
137
118
63
247
168
137
118
77
247
224
184
137
118
262
224
206
173
108
433
271
224
217
137
433
303
224
307
137
118
433
263
423
303
206
423
mA at
+25ºC
100 kHz
mA at
+85ºC
100 kHz
121
636
123
87
87
101
57
140
116
57
140
123
106
57
222
151
123
106
69
222
202
166
123
106
236
202
185
156
97
390
244
202
195
123
390
273
202
276
123
106
390
237
381
273
185
381
mA at
+85ºC
100 kHz
mA at
+125ºC
100 kHz
54
283
55
39
39
45
25
62
52
25
62
55
47
25
99
67
55
47
31
99
90
74
55
47
105
90
82
69
43
173
108
90
87
55
173
121
90
123
55
47
173
105
169
121
82
169
mA at
+125ºC
100 kHz
Maximum
Operating
Temp
ºC
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
125
ºC
MSL
Reflow Temp
≤ 260 ºC
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
Reflow Temp
≤ 260 ºC
Rated
Voltage
Rated
Cap
Case Code/
Case Size
KEMET Part
Number
DC
Leakage
DF
ESR
Maximum Allowable
Ripple Current
Maximum
Operating
Temp
MSL
(1) To complete KEMET part number, insert M for ±20% or K for ±10%. Designates capacitance tolerance.
(2) To complete KEMET part number, insert T = 100% Matte Tin (Sn) Plated, G = Gold Plated, H = Standard Solder coated (SnPb 5% Pb minimum), N = Non-
Magnetic 100% Tin (Sn), M = Non-Magnetic (SnPb). Designates Termination Finish.
Refer to Ordering Information for additional detail.
Higher voltage ratings and tighter tolerance product including ESR may be substituted within the same size at KEMET's option. Voltage substitution will be marked
with the higher voltage rating. Substitutions can include better than series.
Does anyone have a design to send GPS positioning data by SMS using a single-chip microcomputer to control a GSM module, or something similar? Urgent need. I would be grateful if you have any. Please ...
[size=4]1. The power limiter automatically limits its output power: [/size] [size=4] [/size] [size=4] A voltage feedforward network and a current waveform setting network are connected between the ind...
Can someone give me a PCB diagram of a PWM controlled DC motor? It would be best if I could give a schematic diagram and a program schematic diagram or something?...
1 Trial Introduction 1.1 Purpose of Writing This trial report is mainly for the analysis of the hardware system of the SPARTAN-6 development board. Participants: denis22380978 1.2 Project Background T...
Technology is to make work and life more effective and simpler! Friendly Arm's 6410 development board provides a cool revolutionary SD card installation method. The whole process does not require USB ...
Which ARM can run wince? I have been working on 51 system, know a little bit of VC, and want to learn ARM. When I saw the familiar and beautiful screen of WINCE, I couldn't let it go. My friend recomm...
On August 24th, Tesla CEO Elon
Musk
revealed information about the upcoming FSD V14, claiming it will outperform human drivers. Tesla FSD lead Ashok stated last year that FSD version 12.5, ...[Details]
From being a global leader to losing the market, Korean battery manufacturers have always wanted to regain the lost market and dignity, but facing Chinese battery manufacturers represented by CAT...[Details]
A vacuum eutectic furnace is a critical piece of equipment used in the manufacturing and processing of various materials, particularly in the fields of microelectronics and nanotechnology. One of t...[Details]
What is "Car Electronic Fence"
Fleet managers can define a graphical area (regular or irregular) or divide it into administrative zones in Yamei Technology's vehicle backend management system ...[Details]
Current Development Status of DVR Market
A DVR, or digital video recorder, uses a hard disk for recording, unlike traditional analog video recorders. It's often called a DVR because it's a com...[Details]
As time goes by, people are increasingly concerned about their own and their families' health. However, existing monitoring devices for individual vital signs have struggled to gain market share du...[Details]
On August 25th, SK Hynix announced that it has completed development and entered mass production of its 321-layer, 2Tb QLC NAND flash memory product. This achievement marks the world's first applic...[Details]
Recently, Tesla released the "Tesla Car Voice Assistant Terms of Use", announcing that the car voice assistant will be connected to the Doubao large model (Skylark large model) and DeepSeek Chat pr...[Details]
When discussing autonomous driving technology, there are often two extremes: on the one hand, there's the vision of "fully autonomous driving," while on the other, there's concern about potential s...[Details]
On August 22, the National Energy Administration released the latest data, showing that by the end of July 2025, China's total number of electric vehicle charging infrastructure will reach 16.696 m...[Details]
According to foreign media reports, Nissan Motor has recently reached a cooperation with US battery technology company LiCAP Technologies to jointly promote the research and development of next-gen...[Details]
Spark plugs are an indispensable device for engines. As the saying goes, without spark plugs, the engine cannot work properly. The serious consequence is that when driving at high speeds, the engin...[Details]
Electric vehicles are powered by electricity, and charging is a device that supplements the vehicle's energy source. It is common to need to recharge the vehicle when driving. But can you charge th...[Details]
1. Ease of Use: The HMI module should be designed to be simple and clear, allowing users to easily operate and configure the energy storage device.
2. Ease of Maintenance: The HMI module should...[Details]
On August 22, according to CNBC's report today, the National Highway Traffic Safety Administration (NHTSA) is launching an investigation into Tesla, and the latter is questioned whether it has fail...[Details]