ALS40A104KF025 Kemet, ALS40A104KF025 Datasheet

Aluminum Electrolytic Capacitors - Screw Terminal 0.1F 25VDC 20% 51 X 105mm

ALS40A104KF025

Manufacturer Part Number
ALS40A104KF025
Description
Aluminum Electrolytic Capacitors - Screw Terminal 0.1F 25VDC 20% 51 X 105mm
Manufacturer
Kemet
Datasheet

Specifications of ALS40A104KF025

Operating Temperature Range
- 40 C to + 105 C
Diameter
51 mm
Length
105 mm
Product
Aluminum Electrolytic Capacitors
Termination Style
Screw
Capacitance
0.1 Farad
Tolerance
20 %
Voltage Rating
25 Volts
Material, Element
Aluminum Electrolytic
Termination
Screw Terminal
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
A341LM104M025A
ALS40 Series
• Compact Size
• Long Life, 9000 hours at 105°C (Ur, Ir applied)
• High ripple current
• Excellent surge voltage capability
• Optimized designs available on request
Smoothing, energy storage, or pulse opera-
tion in telecommunication demanding power
supplies, process control, AC-motor control,
traction, welding and measuring.
Standards
Capacitance range
Capacitance tolerance
Rated voltage U
Surge voltage U
Surge voltage U
(Short duration)
Leakage current I
Operational life time
+105°C, U
+105°C, U
Shelf Life
temperature range
R
R
, I
appLICatIOn
R
R
S
SS
L
Can Diameter
Can Diameter
200
250
350
400
415
450
500
IEC 60384-4 Long Life Grade 40/105/56,
150 – 680000 µF
–20 to +20%
25–450 VDC
1.15 x U
1.10 x U
= 0.003 x C
is the smaller. Note, C
2000 hrs at 0V +85°C, or 30000 hrs at 0V +40°C
–40 to +105°C (Operating) -55°C to +105°C (Storage)
U
77, 90
77, 90
R
36
51
66
36
51
66
350
400
500
520
530
550
600
U
R
R
SS
(for U
(for U
R
x U
R
R
The ALS40/41 series of screw terminal
capacitors feature the same high ripple
currents and long life characteristics as the
ALS30/31 series but can operate at higher
temperatures. They are similarly suited for
high reliability and long life applications
< 250 VDC)
> 350 VDC)
R
(µA) or 6mA whichever
6000 hrs
7000 hrs
8000 hrs
9000 hrs
10000 hrs
11000 hrs
13000 hrs
15000 hrs
R
is in µF.
105°C
SpECIfICatIOn
BaSIC dESIgn
Test Condition:
< 30s surge, 1000 cycles @ 105°C
Test Condition:
< 500ms surge, 100 cycles @ 20°C
Test Condition:
U
End of Life requirement:
∆C/C
ESR
I
L
R
, 5mins., 20°C
such as frequency converters, UPS
systems and switch mode power supplies,
but the extended temperature range
allows increased ripple currents at lower
temperatures.
< ±10%
< 2 x initial ESR value
< initial specified limit
RoHS
Compliant

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ALS40A104KF025 Summary of contents

Page 1

... BaSIC dESIgn The ALS40/41 series of screw terminal capacitors feature the same high ripple currents and long life characteristics as the ALS30/31 series but can operate at higher temperatures. They are similarly suited for high reliability and long life applications SpECIfICatIOn < ...

Page 2

... V90 615 • • • V90 690 • • • V90 900 • • • V90 1345 • • • V90 2000 • • • BHC and Evox Rifa Electrolytic Capacitors • • • • • • • • 77 ...

Page 3

Cap Case (µf) Size (mm) 15000 36x52 22000 36x62 33000 36x82 47000 36x105 68000 51x82 100000 51x105 150000 77x75 150000 66x105 150000 90x75 220000 90x67 220000 77x105 330000 90x98 330000 77x146 470000 90x146 470000 77x220 680000 90x220 10000 ...

Page 4

... ALS4 - - 332ND250 12.3 15.0 ALS4 - - 472MF250 10.9 16.3 ALS4 - - 472QC250 10.7 12.1 ALS4 - - 472QD250 12.1 13.4 ALS4 - - 682NF250 15.1 17.3 ALS4 - - 682QH250 17.5 19.5 ALS4 - - 103NP250 21.9 23.9 ALS4 - - 153QP250 29.2 33.0 ALS4 - - 153NT250 34.1 38.2 ALS4 - - 223QT250 * * Electrolytic Capacitors 79 ...

Page 5

Cap Case (µf) Size (mm) 220 36x52 330 36x62 470 36x82 680 36x105 1000 51x82 1500 51x105 2200 77x75 2200 66x105 2200 90x67 2200 90x75 3300 77x105 4700 90x98 4700 77x146 6800 90x146 6800 77x220 10000 90x220 220 ...

Page 6

... It is possible for some electrolyte to be expelled. As this is a conducting liquid, suitable precautions should be instigated by the system designer to avoid secondary short circuits. The capacitors are designed to be mounted in free air and are not suitable for submersion in liquid. aRtICLE taBLE aLS40 (105°C) ESR (mW) Impedance (mW) at 20° ...

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