T521 High Voltage Polymer Electrolytic, 12.5 – 75 VDC
Electrical Characteristics
100
ESR vs. Frequency
T521V476M020ATE055_Imp
T521V336M025ATE060_Imp
T521V156M035ATE100_Imp
T521V476M020ATE055_ESR
T521V336M025ATE060_ESR
T521V156M035ATE100_ESR
100
Capacitance vs. Frequency
Impedance, ESR (Ohms)
10
1
Capacitance (µF)
10
1
0.1
T521V476M020ATE055
T521V336M025ATE060
T521V156M035ATE100
100
1,000
10,000
100,000
1,000,000
10,000,000
0.01
100
1,000
10,000
Frequency (Hz)
100,000
1,000,000
10,000,000
Frequency (Hz)
Dimensions – Millimeters (Inches)
Metric will govern
CATHODE (-) END VIEW
W
H
X
T
S
S
Termination cutout
at KEMET's option,
either end
SIDE VIEW
B
B
ANODE (+) END VIEW
BOTTOM VIEW
A
Glue pad
shape/design at
KEMET's option
F
P
R
L
Case Size
KEMET
B
T
D
Q
V
W
X
EIA
3528-21
3528-12
7343–31
7343-12
7343–20
7343–15
7343–43
Component Dimensions
L
3.5 ±0.2
(0.138 ±0.008)
3.5 ±0.2
(0.138 ±0.008)
7.3 ±0.3
(0.287 ±0.012)
7.3 ±0.3
(0.287 ±0.012)
7.3 ±0.3
(0.287 ±0.012)
7.3 ±0.3
(0.287 ±0.012)
7.3 ±0.3
(0.287 ±0.012)
Weight
P (Ref)
R (Ref)
T (Ref)
A
(Minimum)
1.1 (0.043)
1.1 (0.043)
3.8 (0.150)
3.8 (0.150)
3.8 (0.150)
3.8 (0.150)
3.8 (0.150)
W
2.8 ±0.2
(0.110 ±0.008)
2.8 ±0.2
(0.110 ±0.008)
4.3 ±0.3
(0.169 ±0.012)
4.3 ±0.3
(0.169 ±0.012)
4.3 ±0.3
(0.169 ±0.012)
4.3 ±0.3
(0.169 ±0.012)
4.3 ±0.3
(0.169 ±0.012)
H
1.9 ±0.1
(0.075 ±0.004)
1.1 ±0.1
(0.043 ±0.004)
2.8 ±0.3
(0.110 ±0.012)
1.1 ±0.1
(0.043 ±0.004)
1.9 ±0.1
(0.075 ±0.004)
1.4 ±0.1
(0.055 ±0.004)
4.0 ±0.3
(0.157 ±0.012)
F ±0.1
S ±0.3 B ±0.15 (Ref)
±(0.004) ±(0.012)
±0.006
2.2 (0.087)
2.2 (0.087)
2.4 (0.094)
2.4 (0.094)
2.4 (0.094)
2.4 (0.094)
2.4 (0.094)
0.8 (0.031)
0.8 (0.031)
1.3 (0.051)
1.3 (0.051)
1.3 (0.051)
1.3 (0.051)
1.3 (0.051)
0.4 (0.016)
N/A
0.5 (0.020)
N/A
N/A
N/A
0.5 (0.020)
X (Ref)
(mg)
94.85
54.84
434.83
170.35
274.30
222.95
553.96
0.10 ±0.10
0.5 (0.020)
(0.004 ±0.004)
0.05 (0.002)
N/A
1.0 (0.039) 0.13 (0.005)
N/A
0.13 (0.005)
0.10 ±0.10
0.9 (0.035)
(0.004 ±0.004)
0.05 (0.002)
0.05 (0.002)
0.05 (0.002)
N/A
N/A
N/A
1.0 (0.039) 0.13 (0.005)
N/A
N/A
N/A
0.13 (0.005)
0.13 (0.005)
0.13 (0.005)
0.10 ±0.10
1.7 (0.067)
(0.004 ±0.004)
1.0 (0.039) 0.13 (0.005)
Notes: (Ref) – Dimensions provided for reference only. For low profile cases, no dimensions are provided for B, P or R because these cases do not have a bevel or a notch.
T521 High Voltage Polymer Electrolytic, 12.5 – 75 VDC
Table 1 – Ratings & Part Number Reference
Rated
Voltage
VDC at 105ºC
12.5
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
16
20
20
20
20
20
20
20
20
20
20
20
20
20
25
25
25
VDC at 105ºC
Rated
Case Code/
Capacitance Case Size
µF
47
10
15
33
22
33
33
47
47
47
47
47
47
47
47
47
47
47
47
68
68
68
100
100
150
150
150
220
220
330
330
10
15
22
22
47
47
47
47
47
47
47
100
100
10
10
10
µF
KEMET/EIA
T/3528-12
B/3528-21
B/3528-21
Q/7343-12
B/3528-21
T/3528-12
T/3528-12
T/3528-12
W/7343-15
W/7343-15
V/7343-20
V/7343-20
V/7343-20
V/7343-20
D/7343-31
D/7343-31
D/7343-31
D/7343-31
D/7343-31
V/7343-20
V/7343-20
V/7343-20
V/7343-20
D/7343-31
D/7343-31
D/7343-31
X/7343-43
X/7343-43
X/7343-43
X/7343-43
X/7343-43
B/3528-21
B/3528-21
B/3528-21
V/7343-20
W/7343-15
W/7343-15
V/7343-20
V/7343-20
V/7343-20
D/7343-31
D/7343-31
V/7343-20
D/7343-31
B/3528-21
T/3528-12
T/3528-12
KEMET/EIA
KEMET Part
Number
(See below for
part options)
T521T476M12RA(1)E090
T521B106M016A(1)E100
T521B156M016A(1)E090
T521Q336M016A(1)E040
T521B226M016A(1)E090
T521T336M016A(1)E045
T521T336M016A(1)E050
T521T476M016A(1)E090
T521W476M016A(1)E040
T521W476M016A(1)E045
T521V476M016A(1)E040
T521V476M016A(1)E055
T521V476M016A(1)E070
T521V476M016A(1)E080
T521D476M016A(1)E040
T521D476M016A(1)E045
T521D476M016A(1)E055
T521D476M016A(1)E070
T521D476M016A(1)E090
T521V686M016A(1)E040
T521V686M016A(1)E050
T521V686M016A(1)E090
T521V107M016A(1)E050
T521D107M016A(1)E050
T521D157M016A(1)E050
T521D157M016A(1)E040
T521X157M016A(1)E080
T521X227M016A(1)E035
T521X227M016A(1)E050
T521X337M016A(1)E025
T521X337M016A(1)E050
T521B106M020A(1)E100
T521B156M020A(1)E090
T521B226M020A(1)E090
T521V226M020A(1)E090
T521W476M020A(1)E040
T521W476M020A(1)E045
T521V476M020A(1)E090
T521V476M020A(1)E080
T521V476M020A(1)E055
T521D476M020A(1)E055
T521D476M020A(1)E040
T521V107M020A(1)E055
T521D107M020A(1)E055
T521B106M025A(1)E100
T521T106M025A(1)E100
T521T106M025A(1)E060
(See below for
part options)
DC
Leakage
µA at 25°C
Max/5 Min
58.8
16.0
24.0
52.8
35.2
52.8
52.8
75.2
75.2
75.2
75.2
75.2
75.2
75.2
75.2
75.2
75.2
75.2
75.2
108.8
108.8
108.8
160.0
160.0
240.0
240.0
240.0
352.0
352.0
528.0
528.0
20.0
30.0
44.0
44.0
94.0
94.0
94.0
94.0
94.0
94.0
94.0
200.0
200.0
25.0
25.0
25.0
µA at 25°C
Max/5 Min
DF
% at 25°C
120 Hz Max
8
8
8
10
8
8
10
8
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
10
8
10
8
10
9
9
10
10
10
10
10
10
10
8
8
8
% at 25°C
120 Hz Max
ESR
mΩ at 25°C
100 kHz Max
90
100
90
40
90
45
50
90
40
45
40
55
70
80
40
45
55
70
90
40
50
90
50
50
50
40
80
35
50
25
50
100
90
90
90
40
45
90
80
55
55
40
55
55
100
100
60
mΩ at 25°C
100 kHz Max
Maximum
Allowable
Ripple
Current
mA at +45ºC
100 kHz
1080
1100.0
1200.0
2500.0
1200.0
1500.0
1400.0
1100.0
2100.0
2000.0
2200.0
1800.0
1600.0
1500.0
2400.0
2200.0
2000.0
1800.0
1600.0
2200.0
1900.0
1400.0
1900.0
2100.0
2100.0
2400.0
1800.0
2700.0
2200.0
3100.0
2200.0
1100.0
1200.0
1200.0
1400.0
2100.0
2000.0
1400.0
1500.0
1800.0
2000.0
2400.0
1800.0
2000.0
1100.0
1000.0
1300.0
mA at +45ºC
100 kHz
MSL
Reflow Temp
≤ 260ºC
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
3
Reflow Temp
≤ 260ºC
Maximum
Operating
Temp
ºC
105
125
105
105
105
105
105
105
105
105
105
105
105
105
105
105
105
105
105
105
105
105
125
105
105
105
105
125
125
125
125
105
105
105
125
105
105
125
125
125
125
125
125
105
105
125
125
ºC
Rated
Voltage
Rated
Capacitance
Case Code/
Case Size
KEMET Part
Number
DC
Leakage
DF
ESR
Maximum
Allowable
Ripple
Current
MSL
Maximum
Operating
Temp
Other part number options:
1- Standard with tin terminations (14th character = T). Tin/lead terminations is also available (14th character = H).
Also available on large (13 inch) reels. Add 7280 to the end of the part number.
Higher voltage ratings and tighter tolerance product including ESR may be substituted within the same size at KEMET's option. Voltage substitutions will be marked
with the higher voltage rating. Substitutions can include better than series.
This paper gives the principle and method of low noise design for broadband amplifiers; discusses the low noise electronic design method for broadband amplifiers in the case of source resistance and s...
I started to use STM8, programming environment STVD V4.1.2, compiler Cosmic V5.2.6, simulator ST-LINK.I wrote the first simplest program (initialization, light flashing), but the following problem occ...
I don't know how to program the microcontroller for my graduation project. I can't understand the program. What should I do? I am familiar with the basic instructions, but I just can't program it....
[i=s]This post was last edited by lanhua on 2022-8-30 13:22[/i]Fully automatic electric fanParticipate in the "Hands-on Learning about Power Supply Season 1: DIY small fan, fan all summer!" of "Electr...
1. Can I write a bios according to my own wishes and then flash it? If so, how can I flash my own bios into the machine? Isn't the bios chip read-only? 2. I seem to have heard that the boot process mu...
Emergency hand-held lamps powered by 6V maintenance-free batteries are widely used in rural areas. The charger used is a transformer step-down and single diode half-wave rectifier, and the charging...[Details]
This program is written to simulate the serial port hardware mechanism. When used, a timed interrupt can be set with a time interval of 1/4 baud rate. The receiving function is called once for ea...[Details]
Microchip's PIC18F46J50 is a low-power, high-performance 8-bit USB microcontroller (MCU) using nanoWatt XLP technology. The current in deep sleep mode can be as low as 13nA, the operating voltage i...[Details]
introduction
With the continuous optimization of surface mount technology (SMT) and the rapid development of chip component manufacturing technology, the application of chip mounters in the el...[Details]
1. Introduction
Automobile pollution is one of the most important issues that people are most concerned about and need to solve urgently. As an important method for detecting automobile exhau...[Details]
In this article, the high-performance DSP developed by TI can be used as an effective confidentiality method if it is applied to PC encryption cards.
As an effective network security solution,...[Details]
I. Introduction
In the field of power conversion, isolated converters (forward, flyback, and double-ended) with low output DC voltage all use MOSFET as the rectifier device. Since these devi...[Details]
Two simple circuits are implemented to drive two LEDs from a battery powered microprocessor.
This design is based on a circuit that uses three resistors and a microprocessor I/O pin as an input h...[Details]
DSP (digital signal processor) is used more and more frequently in today's engineering applications. There are three main reasons for this: first, it has powerful computing power and is capable of ...[Details]
Microcalorimetry
is used to determine energy relationships. Microcalorimetry techniques are often required when performing calorimetric experiments with small sample sizes or slow heating rat...[Details]
Contact resistance
is the resistance to current flow through a closed pair of contacts. This type of measurement is performed on devices such as connectors,
relays
, and switches. The...[Details]
1 Introduction
PROFIBUS is an international, open, and manufacturer-independent fieldbus standard. It is widely used in manufacturing automation, process industry automation, and automatio...[Details]
1. Introduction to CIF Board
Fieldbus integration based on PC system
Whether it is a master or a slave, fieldbus has won unanimous praise in the field of PC-based automation. For more...[Details]
1 Introduction to HART Protocol
HART (Highway Addressable Remote Transducer), an open communication protocol for addressable remote sensor high-speed channels, was launched by Rosemen in the U...[Details]
Introduction
In industrial control, speed measurement is often required. Generally, a contact tachometer is used. This tachometer must be placed against the center of the shaft to measure. It...[Details]