KY Series Miniature Aluminum Electrolytic Capacitors
Aluminum Capacitors
- Low impedance
- Newly innovative electrolyte is employed to minimize ESR
- Non solvent resistant type
Unit of Measure
Items |
/Asset/EKY-101ETD470MJC5S.jpg EKY-101ETD470MJC5S KY Series 47 Microfarad (?F) Capacitance and 10 Millimeter (mm) Diameter (D) Miniature Aluminum Electrolytic Capacitor List Price {QUOTE}
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/Asset/EKY-250ELL331MJC5S.jpg EKY-250ELL331MJC5S KY Series 330 Microfarad (?F) Capacitance and 10 Millimeter (mm) Diameter (D) Miniature Aluminum Electrolytic Capacitor List Price {QUOTE}
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/Asset/EKY-350ELL102MK25S.jpg EKY-350ELL102MK25S KY Series 1000 Microfarad (?F) Capacitance and 12.5 Millimeter (mm) Diameter (D) Miniature Aluminum Electrolytic Capacitor List Price {QUOTE}
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/Asset/EKY-350ELL152MK35S.jpg EKY-350ELL152MK35S KY Series 1500 Microfarad (?F) Capacitance and 12.5 Millimeter (mm) Diameter (D) Miniature Aluminum Electrolytic Capacitor List Price {QUOTE}
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/Asset/EKY-350ELL222MLN3S.jpg EKY-350ELL222MLN3S KY Series 2200 Microfarad (?F) Capacitance and 16 Millimeter (mm) Diameter (D) Miniature Aluminum Electrolytic Capacitor List Price {QUOTE}
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Description |
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Brands | N/A Nippon Chemi-Con | |||||||||
Manufacturer | N/A United Chemi-Con | |||||||||
Series | N/A KY | |||||||||
Working Direct Current (DC) Voltage | N/A 100 V | N/A 25 V | N/A 35 V | N/A 35 V | N/A 35 V | |||||
Capacitance | N/A 47 µF | N/A 330 µF | N/A 1000 µF | N/A 1500 µF | N/A 2200 µF | |||||
Capacitance Tolerance (±) at 120 Hertz (Hz) Frequency, 20 Degree Celsius (ºC) Temperature | N/A 20 % | |||||||||
Diameter (D) | N/A 10 mm | N/A 10 mm | N/A 12.5 mm | N/A 12.5 mm | N/A 16 mm | |||||
Maximum Diameter (D) | N/A 10.5 mm | N/A 10.5 mm | N/A 13 mm | N/A 13 mm | N/A 16.5 mm | |||||
Dimension L | N/A 12.5 mm | N/A 12.5 mm | N/A 25 mm | N/A 35 mm | N/A 31.5 mm | |||||
Maximum Dimension L | N/A 14 mm | N/A 14 mm | N/A 26.5 mm | N/A 36.5 mm | N/A 33 mm | |||||
Diameter (d) | N/A 0.6 mm | N/A 0.6 mm | N/A 0.6 mm | N/A 0.6 mm | N/A 0.8 mm | |||||
Dimension F | N/A 5 mm | N/A 5 mm | N/A 5 mm | N/A 5 mm | N/A 7.5 mm | |||||
Maximum Impedance at 100 Kilohertz (kHz) Frequency and 20 Degree Celsius (ºC) Temperature | N/A 0.17 Ω | N/A 0.080 Ω | N/A 0.027 Ω | N/A 0.020 Ω | N/A 0.017 Ω | |||||
Maximum Impedance at 100 Kilohertz (kHz) Frequency and -10 Degree Celsius (ºC) Temperature | N/A 0.66 Ω | N/A 0.32 Ω | N/A 0.089 Ω | N/A 0.065 Ω | N/A 0.050 Ω | |||||
Rated Ripple Current at 105 Degree Celsius (ºC) Temperature, 100 Kilohertz (kHz) Frequency | N/A 480 mArms | N/A 865 mArms | N/A 2230 mArms | N/A 2880 mArms | N/A 3450 mArms | |||||
Temperature Range | N/A -40 to +105 ºC | |||||||||
Leakage Current at 20 Degree Celsius (ºC) Temperature After 2 Minutes |
N/A
I=0.01CV or 3 µA, whichever is greater. Where, I : Max. leakage current (µA), C : Nominal capacitance (µF), V : Rated voltage (V) |
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Maximum Dissipation Factor (Tan δ) at 120 Hertz (Hz) Frequency, 20 Degree Celsius (ºC) Temperature | N/A 0.08 | N/A 0.14 | N/A 0.12 | N/A 0.12 | N/A 0.12 | |||||
Maximum Impedance Ratio Low Temperature Characteristics at 120 Hertz (Hz) Frequency |
N/A
Z(-25 ºC)/Z(+20 ºC) = 2 Z(-40 ºC)/Z(+20 ºC) = 3 |
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Rated Ripple Current Multipliers at 120 Hertz (Hz) Frequency | N/A 0.40 | N/A 0.50 | N/A 0.60 | N/A 0.60 | N/A 0.75 | |||||
Rated Ripple Current Multipliers at 1 Kilohertz (kHz) Frequency | N/A 0.75 | N/A 0.85 | N/A 0.87 | N/A 0.87 | N/A 0.90 | |||||
Rated Ripple Current Multipliers at 10 Kilohertz (kHz) Frequency | N/A 0.90 | N/A 0.94 | N/A 0.95 | N/A 0.95 | N/A 0.95 | |||||
Rated Ripple Current Multipliers at 100 Kilohertz (kHz) Frequency | N/A 1 | |||||||||
Note for Rated Ripple Current Multipliers | N/A The deterioration of aluminum electrolytic capacitors accelerates their life due to the internal heating produced by ripple current. | |||||||||
Industry Standards | N/A Restriction of Hazardous Substances (RoHS) 2 Compliant | |||||||||
Endurance |
N/A
The following specifications shall be satisfied when the capacitors are restored to 20 ºC after subjected to DC voltage with the rated ripple current is applied (the peak voltage shall not exceed the rated voltage) for the specified period of time at 105 ºC. Time: 7,000 hrs Capacitance change: ≤ ±25% of the initial value D.F. (tan δ): ≤ 200% of the initial specified value Leakage current: ≤ The initial specified value |
N/A
The following specifications shall be satisfied when the capacitors are restored to 20 ºC after subjected to DC voltage with the rated ripple current is applied (the peak voltage shall not exceed the rated voltage) for the specified period of time at 105 ºC. Time: 10,000 hrs Capacitance change: ≤ ±25% of the initial value D.F. (tan δ): ≤ 200% of the initial specified value Leakage current: ≤ The initial specified value |
N/A
The following specifications shall be satisfied when the capacitors are restored to 20 ºC after subjected to DC voltage with the rated ripple current is applied (the peak voltage shall not exceed the rated voltage) for the specified period of time at 105 ºC. Time: 10,000 hrs Capacitance change: ≤ ±25% of the initial value D.F. (tan δ): ≤ 200% of the initial specified value Leakage current: ≤ The initial specified value |
N/A
The following specifications shall be satisfied when the capacitors are restored to 20 ºC after subjected to DC voltage with the rated ripple current is applied (the peak voltage shall not exceed the rated voltage) for the specified period of time at 105 ºC. Time: 10,000 hrs Capacitance change: ≤ ±25% of the initial value D.F. (tan δ): ≤ 200% of the initial specified value Leakage current: ≤ The initial specified value |
N/A
The following specifications shall be satisfied when the capacitors are restored to 20 ºC after subjected to DC voltage with the rated ripple current is applied (the peak voltage shall not exceed the rated voltage) for the specified period of time at 105 ºC. Time: 10,000 hrs Capacitance change: ≤ ±25% of the initial value D.F. (tan δ): ≤ 200% of the initial specified value Leakage current: ≤ The initial specified value |
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Shelf Life |
N/A
The following specifications shall be satisfied when the capacitors are restored to 20 ºC after exposing them for 500 hours at 105 ºC without voltage applied. Before the measurement, the capacitor shall be preconditioned by applying voltage according to Item 4.1 of JIS C 5101-4. Capacitance change: ≤ ±25% of the initial value D.F. (tan δ): ≤ 200% of the initial specified value Leakage current: ≤ The initial specified value |
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Note | N/A Product specifications are subject to change without notice. Request our product specifications before purchase and/or use. Please use our products based on the information contained in product specifications. | |||||||||
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