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3199GH224M040APA1

Description
aluminum electrolytic, screw terminals, switching and audio output
File Size427KB,4 Pages
ManufacturerAll Sensors
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3199GH224M040APA1 Overview

aluminum electrolytic, screw terminals, switching and audio output

Type 3199
Aluminum Electrolytic, Screw Terminals, Switching and Audio Output
Screw Terminal Capacitors for Power Output Filtering
With twice the capacitance of Type 3191 capacitor,
Type 3199 extends output filtering performance into
higher power, especially with cold temperature require-
ments. It’s available with the capacitor element pot-
ted in place for lowest cost or secured by rills, spoon
shaped dimples in the side of the can. Rilled construc-
tion offers high vibration and shock withstanding and
excellent heat transfer for higher ripple current.
Outline Drawing
Highlights
Stud mount available
High current application
Industrial applications
Smoothing and filtering
Audio power supplies
Specifications
Operating Temperature:
–55 to + 85 ºC
Rated Voltage:
7.5 Vdc to 75 Vdc
Capacitance Range:
3900 µF to 1.2 F
Capacitance Tolerance:
–10 to + 30%; –10 to +50%; ±20%
Ripple Current Multiplier:
Ambient Temperature
Temperature
I
R
Multiplier
45 ºC
2.24
60 Hz
0.90
55 ºC
2.00
120 Hz
1.00
65 ºC
1.73
300 Hz
1.05
75 ºC
1.41
85 ºC
1.00
Frequency
Frequency
I
R
Multiplier
1000 Hz
≥10
Khz
1.10
1.15
Complies with the EU Directive
2002/95/EC requirement restricting
the use of Lead (Pb), Mercury (Hg),
Cadmium (Cd), Hexavalent chromium
(Cr(VI)), PolyBrominated Biphenyls
(PBB) and PolyBrominated Diphenyl
Ethers (PBDE).
Life Test:
Endurance, 5000 h at rated voltage and 85 ºC
Δ Capacitance: ±10%
ESR ≤ 200% of limit
DCL ≤ 100% of limit
Shelf Life:
Storage, 500 h at 85 ºC
Δ Capacitance: ±10%
ESR ≤ 175% of limit
DCL ≤ 200% of limit
Vibration:
10 to 500 Hz, 0.75 mm or 10 g* if less,
3 directions, 2 h ea
Δ Capacitance: ±5%
no visible damage or leakage
*15 g if rilled construction
CDM Cornell Dubilier • 140 Technology Place. • Liberty, SC • 29657 • Phone: (864)843-2277 • Fax: (864)843-3800 • www.cde.com
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