directly and need not fixture to save processing time
• Suitable for electronic equipment with medium-high voltage circuits
• Printed circuit board terminal snap-in
type and lug terminal type available.
LS Series
Specifications:
Items
Operating Temperature Range
Capacitance Tolerance
Leakage Current (at 20˚C)
Dissipation Factor
(Tan
δ
at 120Hz, 20˚C)
Performance
-40°C ~ +85°C
±20% (at 120Hz, 20°C)
I = 0.02CV or 1.5 mA whichever is smaller (after 5 minutes)
Where, C= rated capacitance in µF. V = rated DC working voltage in V.
Rated Voltage
Tan_(max)
16
0.40
25
0.30
35
0.25
50
0.20
63
0.15
100
0.15
160
0.15
200
0.15
250
0.15
350
0.20
400
0.20
450
0.20
Impedance ratio shall not exceed the values given in the table below.
Low Temperature
Characteristics (at 120 Hz)
Rated Voltage
Impedance Z(-25°C)/Z(+20°C)
Ratio
Z(-40°C)/Z(+20°C)
16
4
15
25
3
10
35
3
8
50
2
6
63
2
6
100
2
5
160
4
4
200
4
8
250
4
10
350
4
16
400
8
18
450
8
20
Load Life Test
Test Time
Capacitance Change
Dissipation Factor
Leakage Current
2000 Hrs
Within ±20% of initial value
Less than 200% of specified value
Within specified value
* The above specifications shall be satisfied when the capacitors are restored to 20°C
after the rated voltage applied with rated ripple current for 2000 hrs at 85°C.
Test Time
Capacitance Change
Dissipation Factor
Leakage Current
1000 Hrs
Within ±20% of initial value
Less than 150% of specified value
Within specified value
Shelf Life Test
* The above specifications shall be satisfied when the capacitors are restored to 20°C after
exposing them for 1000 hrs at 85°Cwithout voltage applied. The rated voltage shall be
applied to the capacitors before the measurements (Refer to JIS C 5102).
Freq. (Hz)
60
0.92
0.81
0.77
120
1.00
1.00
1.00
500
1.13
1.32
1.30
1K
1.19
1.45
1.41
10K up
1.20
1.50
1.43
W. V.(V)
Ripple Current &
Frequecy Multipliers
Under 100
160 ~ 250
350 to up
XICON PASSIVE COMPONENTS • (800) 628-0544
XC-600027
Date Revised: 9/30/05
Specifications are subject to change without notice. No liability or warranty implied by this information. Environmental compliance based on producer documentation.
Snap Mount Aluminum Electrolytic Capacitors
LS Series
Dimensions & Permissible Ripple Current:
V.DC
µF
4700
5600
6800
8200
10000
12000
15000
18000
22000
øD
472
562
682
822
103
123
153
183
223
22x25
2.56
22x30
2.81
22x30
3.13
22x35
3.69
22x40
3.98
22x50
4.52
22x25
2.31
22x30
2.56
22x35
2.81
22x35
3.18
22x40
3.53
22x50
4.08
35x25
4.15
22
25
16V
(1C)
30
35
22
25
25V
(1E)
30
35
Dimension: øDxL (mm)
Ripple Current: A/rms at 120 Hz, 85˚C
35V
(1V)
22
22x30
2.41
22x35
2.79
22x40
2.89
22x45
3.47
22x50
3.59
35x25
3.58
35x30
4.68
35x35
5.20
100V
(2A)
30
35
22
22x30
2.12
22x35
2.45
22x40
2.77
22x45
3.12
30x25
2.78
30x30
3.09
30x30
3.37
30x35
3.75
30x40
4.41
30x45
4.90
30x50
5.49
25
25x25
2.10
25x30
2.43
25x35
2.77
25x40
3.20
25x45
3.61
25x50
4.06
30
35
25
25x25
2.42
25x30
2.89
25x35
3.33
25x40
3.59
25x45
4.01
30x25
3.09
30x30
3.29
30x30
3.61
30x35
4.01
30x40
4.80
30x45
5.18
30
35
25x30
3.03
25x25
2.96
25x30
3.64
25x35
3.98
25x40
4.44
50V
(1H)
30x25
3.73
30x30
4.38
25x25
2.78
25x25
2.78
25x30
3.16
25x35
3.48
25x40
4.00
25x45
4.68
30x25
3.21
30x30
3.86
30x35
4.12
30x35
4.66
30x45
5.26
63V
(1J)
35x25
3.32
35x30
4.02
35x35
5.01
35x40
5.71
35x45
6.38
V.DC
µF
1200
1500
1800
2200
2700
3300
3900
4700
5600
6800
8200
10000
12000
15000
øD
122
152
182
222
272
332
392
472
562
682
822
103
123
153
22x25
1.93
22x30
2.21
22x30
2.41
22x35
2.72
22x40
3.01
22x45
3.43
22x50
3.94
22
25
30
35
22
25
25x25
2.38
25x30
2.68
25x30
3.03
25x35
3.37
25x40
3.87
25x45
4.37
30x25
3.01
30x30
3.43
30x35
3.87
30x35
4.42
30x40
5.02
30x50
5.60
22x25
1.90
22x30
2.35
22x35
2.50
22x35
2.62
22x45
3.10
22x50
3.49
35x25
3.47
25x25
2.30
25x30
2.52
25x30
2.69
25x35
3.09
25x40
3.37
25x45
3.77
25x50
4.41
35x25
3.36
Case Size øxL (mm)
Ripple current A/rms
35x35
4.33
35x35
4.80
35x40
5.47
35x50
6.30
30x25
2.46
30x25
2.65
30x30
3.10
30x35
3.60
30x40
4.05
30x45
4.60
30x50
5.13
35x25
3.14
35x30
3.71
35x35
4.07
35x35
4.50
35x40
5.12
35x45
5.75
35x50
6.01
35x30
4.41
35x35
4.92
35x40
5.60
35x45
6.44
XICON PASSIVE COMPONENTS • (800) 628-0544
XC-600027
Date Revised: 9/30/05
Specifications are subject to change without notice. No liability or warranty implied by this information. Environmental compliance based on producer documentation.
Snap Mount Aluminum Electrolytic Capacitors
Dimensions & Permissible Ripple Current:
V.DC
µF
150
180
øD
151
181
22
22x25
0.95
22x25
1.04
22x25
1.15
25
160V
(2C)
30
35
22
22x25
0.95
22x25
1.04
22x25
1.15
25
200V
(2D)
30
35
22
22x25
0.91
22x25
1.01
22x30
1.27
22x25
1.18
22x35
1.52
22x30
1.43
22x35
1.67
22x30
1.58
22x40
1.89
22x35
1.79
22x45
2.14
22x40
2.05
25x50
2.43
25
LS Series
Dimension: øDxL (mm)
Ripple Current: A/rms at 120 Hz, 85˚C
250V
(2E)
30
35
220
221
25x25
1.24
270
271
22x25
1.27
22x25
1.30
25x25
1.49
330
331
22x25
1.40
22x30
1.44
25x25
1.43
390
391
22x30
1.62
470
471
22x30
1.77
25x25
1.77
22x35
1.76
22x30
1.65
22x40
1.97
22x35
1.88
30x25
2.02
22x45
2.18
22x40
2.08
22x50
2.47
22x45
2.36
22x50
2.68
25x30
1.74
25x25
1.63
25x30
1.86
30x25
1.85
25x30
1.62
25x25
1.53
25x35
1.87
25x30
1.79
25x35
2.05
30x25
1.59
30x30
1.85
30x25
1.77
30x30
2.03
560
561
680
681
820
821
1000
102
22x35
2.05
22x30
1.92
22x40
2.24
22x35
2.12
22x45
2.55
22x40
2.32
22x50
2.88
1200
122
25x30
2.05
25x25
1.92
25x35
2.31
25x30
2.22
25x35
2.52
25x30
2.32
25x45
2.98
25x40
2.86
25x50
3.43
25x45
3.27
30x25
2.22
1500
152
1800
182
30x30
2.51
30x25
2.31
30x35
2.94
30x30
2.82
30x40
3.42
30x35
3.25
30x45
3.92
30x40
3.77
30x50
4.32
30x45
4.10
35x25
2.50
2200
222
35x30
2.92
35x25
2.79
35x35
3.40
35x30
3.24
35x40
3.90
35x35
3.75
35x40
4.30
35x35
4.08
35x50
4.88
35x45
4.72
25x35
2.16
25x30
2.05
25x40
2.43
25x35
2.36
25x45
2.79
25x40
2.66
25x50
2.96
25x45
3.12
25x50
3.44
30x30
2.15
30x25
2.05
30x35
2.43
30x30
2.36
30x35
2.77
30x30
2.62
30x40
3.10
30x35
3.00
30x45
3.53
30x40
3.44
30x50
3.93
25x45
2.41
25x40
2.32
25x50
2.70
25x45
2.62
35x30
2.72
35x35
3.09
35x30
2.96
35x40
3.50
35x35
3.40
35x45
3.95
35x40
3.87
35x50
4.45
35x45
4.37
35x50
5.00
30x35
2.32
30x30
2.24
30x40
2.65
30x35
2.58
30x45
3.00
30x45
2.92
30x50
3.47
Case Size ø L(mm)
Ripple Current A/rms
35x30
2.30
35x25
2.21
35x35
2.62
35x30
2.54
35x40
2.98
35x35
2.90
35x45
3.45
35x40
3.39
35x50
3.81
35x45
3.74
XICON PASSIVE COMPONENTS • (800) 628-0544
XC-600027
Date Revised: 9/30/05
Specifications are subject to change without notice. No liability or warranty implied by this information. Environmental compliance based on producer documentation.
Snap Mount Aluminum Electrolytic Capacitors
Dimensions & Permissible Ripple Current:
V.DC
µF
56
68
82
100
øD
560
680
820
101
22x25
0.81
22x25
0.90
22x30
1.05
22x25
0.99
22x35
1.24
22x30
1.14
22x40
1.38
22x35
1.28
22x45
1.49
22x40
1.40
22x50
1.69
22x45
1.62
22x50
1.94
22x25
0.72
22x25
0.80
22x30
0.94
25x35
1.12
22x30
1.04
22x40
1.25
22x35
1.18
22x45
1.40
22x40
1.34
22x50
1.56
22x45
1.50
35x25
1.72
35x30
1.96
35x35
2.24
35x30
2.19
35x40
2.50
35x35
2.43
35x40
2.69
35x35
2.62
35x45
3.08
22
25
350V
(2V)
30
35
22
25
400V
(2G)
30
35
22
22x25
0.68
22x30
0.80
22x25
0.72
22x30
0.87
25x35
1.00
22x40
1.15
25x35
1.05
22x45
1.25
22x40
1.20
22x50
1.51
25
LS Series
Dimension: øDxL (mm)
Ripple Current: A/rms at 120 Hz, 85˚C
450V
(2W)
30
35
120
121
25x25
1.04
150
151
180
181
220
221
270
271
330
331
390
391
25x30
1.24
25x25
1.16
25x35
1.37
25x30
1.30
25x40
1.51
25x35
1.46
25x40
1.73
25x35
1.65
25x45
1.96
25x40
1.88
25x45
2.04
30x25
1.24
30x25
1.37
30x30
1.52
30x25
1.47
30x35
1.76
30x30
1.71
30x40
1.98
30x35
1.93
30x40
2.18
30x35
2.12
30x45
2.48
30x40
2.41
30x45
2.60
25x25
0.97
25x30
1.16
25x25
1.08
25x30
1.21
25x35
1.37
25x40
1.62
25x35
1.56
22x45
1.76
25x40
1.70
25x50
1.90
30x25
1.24
30x30
1.52
30x25
1.45
30x35
1.64
30x30
1.58
30x40
1.79
30x35
1.73
30x45
2.02
30x40
1.98
30x45
2.22
30x40
2.15
30x50
2.40
35x25
1.54
35x25
1.60
35x30
1.75
35x35
2.02
35x30
1.95
35x40
2.24
35x35
2.17
35x45
2.48
35x40
2.42
35x50
2.78
35x45
2.71
35x50
2.95
25x25
0.85
25x25
0.98
25x35
1.12
25x30
1.09
25x40
1.35
25x35
1.27
25x45
1.50
25x40
1.45
25x50
1.73
25x45
1.65
25x50
1.72
30x25
1.10
30x30
1.32
30x35
1.49
30x30
1.43
30x40
1.72
30x35
1.63
30x45
1.95
30x40
1.83
30x50
2.19
30x45
2.10
30x50
2.24
35x30
1.49
35x30
1.61
35x35
1.86
35x40
2.13
35x35
2.06
35x45
2.34
35x50
2.63
470
471
560
680
561
681
Case size øxL (mm)
Ripple current A/rms
Part Numbering System
LS
101
M
2G
-
2230
(A)
Terminal Length (4.0 ± 0.5mm)
(Option 6.3±1mm)
Case Size 22*30mm
Terminal Type
Rated Voltage 400V
Capacitance tolerance (±20%)
Capacitance (100 µF)
Series
XICON PASSIVE COMPONENTS • (800) 628-0544
XC-600027
Date Revised: 9/30/05
Specifications are subject to change without notice. No liability or warranty implied by this information. Environmental compliance based on producer documentation.
Picture [color=#ff0000]1[/color] is the internal block diagram of AFE4300 (component analyzer front-end chip); its general principle is: DDS drives DAC to generate several hundred microamperes of AC c...
[i=s] This post was last edited by Happy Coke on 2017-7-21 13:30 [/i] Can anyone help me find out what is wrong with this ultrasonic distance measurement circuit? Why is the 9V always pulled down? The...
When I moved the LCD driver in the Bootload of 2440, I set the 24bpp Mode display. Now the content displayed on the screen is that the upper half of the screen shows two identical boot screens in sequ...
[b][url=http://www.dzsc.com]Methods to break through the restrictions of gateways[/url][/b] At present, there are many methods that are familiar to everyone to break through the restrictions of gatewa...
If you want to use the external 30KHZ low-frequency clock, can you just use this statement? BCSCTL2=SELM0+SELM1; I am a novice who has just started to use microcontrollers. I hope the experts can answ...
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]
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]
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]
Experimental tasks
A DS18B20 is used to form a temperature measurement system. The temperature measurement accuracy reaches 0.1 degrees. The temperature range is between -20 degrees and +50 de...[Details]
Investment in
the
medical device
industry has been on the rise in recent years. In the past two years, venture capital for medical devices has almost doubled, reaching $4 billion in 2007. Fr...[Details]
In 2012, more than half of the cars in the European, Japanese and American car markets will be equipped with color displays, navigation systems, satellite communications and other in-vehicle infota...[Details]
At present, the traffic congestion in cities is quite serious. According to relevant news reports: In China, the traffic congestion has expanded from megacities such as Beijing, Shanghai, and Guangzho...[Details]
Recently, news came from the certification department that the photovoltaic grid-connected inverter of Samil New Energy Co., Ltd. (hereinafter referred to as "Samil New Energy") has once again obta...[Details]
Traditional
virtual instruments
consist of a data acquisition
board
based on PCI bus and
corresponding software. However, with
the rapid development of
computer
network techno...[Details]
1 Battery technology determines the fate of energy vehicles
Regardless of whether new energy vehicles are hybrid or pure electric vehicles, they cannot do without the core technology of batter...[Details]
summary
This article will briefly analyze the success and shortcomings of high-frequency DC-DC switching power supplies in the process of miniaturization (the second basic goal), and propose m...[Details]
1 Introduction
Lijia'an Yellow River Diversion Culvert is a large gravity diversion gate in the lower reaches of the Yellow River. The Yellow River Diversion Culvert is located in Lijia'an Vi...[Details]
New Automobile
Hydraulic Clutch
The hydraulic control system uses almost 100% advanced engineering plastics, which overcomes the shortcomings of the main and branch cylinders of metal clutc...[Details]
0 Introduction
Pneumatic
artificial muscle,
also known as pneumatic muscle actuator (PMA), began to be studied in the 1950s. In recent years, it has been widely studied and applied ...[Details]
The rapid development of the automobile industry has promoted the progress of global machinery, energy and other industries, as well as the development of economy, transportation and other aspects,...[Details]