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505MPL400K Datasheet(PDF) 1 Page - Illinois Capacitor, Inc. |
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505MPL400K Datasheet(HTML) 1 Page - Illinois Capacitor, Inc. |
1 / 2 page 3757 W. Touhy Ave., Lincolnwood, IL 60712 • (847) 675-1760 • Fax (847) 673-2850 • www.illcap.com 208 ® Self-inductance I High ripple current ratings I Low ESR I Stable capacitance versus frequency and temperature FEATURES +105°C Metallized Polypropylene Capacitors Operating Temperature Range SPECIFICATIONS Capacitance Tolerance -55°C to 105°C ±10% (K) at 1kHz, 20°C Load Life Insulation Resistance Voltage Range Dissipation Factor <0.1% @1kHz ≥200,000 MΩ x µF not to exceed 400,000M Ω 1,000 hours, +85°C with 125% Rated WVDC Capacitance Change Dissipation Factor Insulation Resistance ≤±3%of initial readings @+25°C, 1kHz ≤ .1% of initial reading at 1kHz @ +25°C ≥50% of minimum initial limit @ +25°C ≤ 1nH/mm along the capacitor body and leads Capacitance Drift Factor Maximum Pulse Rise Time ±1.0% (after 2 years) 10 v/µ sec. PERFORMANCE RATING/TEST RATED DC WORKING VOLTAGE (WVDC) IC Type MPH and MPL capacitors are designed to operate at the specified rated maximum DC Working Voltage over a temperature range of -55°C to +105°C. Operation at temperatures up to and including +105°C are permissible without derating. DIELECTRIC STRENGTH 160% rated DC voltage is applied for 2 seconds at +25°C INSULATION STRENGTH Terminal to Terminal: 100 VDC for 1 minute at 25°C (±). Units will meet Insulation Resistance requirements CONSTRUCTION Type Dielectric Electrodes Leads Extended metallized film Polypropylene film Vacuum deposited aluminum layers Tinned copper wire(MPH or tinned copper lugs (MPL) Coating Flame retardant polyester tape wrap (UL510) with epoxy end seals UL94V-0 Extended metallized film desi Extended metallized film design Operating Temperature DC Voltage Rating +25°C +85°C +105°C 100% 100% 100% MPH/ MPL 100 WVDC to 400 WVDC Humidity/Shelf Life Test, 21 days, 95%RH, +40°C and no applied voltage Capacitance Change Dissipation Factor Change Insulation Resistance ≤2% of initial readings @ 25°C, 1kHz ≤.1% of initial readings @+25°C, 1kHz ≥50% of minimum initial High frequency, high current applications Energized by ICEL |
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