C44PFGR6100AASJ KEMET | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 9

Technical content

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com F3050_C44P_RADIAL • 7/16/2014 One world. One KEMET Benefits

  • Overpressure safety device
  • High peak current capability
  • High torque screw terminals with plastic insulator
  • Long lifetime
  • Self-healing Overview The C44P/C20A Series are a polypropylene metallized film with cylindrical aluminium can type filled with oil, screw terminals, plastic insulator and overpressure safety device.

Applications

Typical applications include commutation, power factor correction and AC harmonic filtering. Aluminum Can Power Film Capacitors C44P/C20A Series, 250 – 1,000 VAC, 400 – 1,400 VDC, for PFC and AC Filter Part Number System C 44 P F G R 6 1 0 0 A A S J Series Application Rated Voltage (VAC) Case Type Terminal Style Capacitance Code (pF) Internal Code Internal Codes Tolerance MKP Capacitors for Power 44 = 250/440 Vac 20 = 550/1,000 Vac AC Filter P = C44 A = C20 For C44P: F = 250 L = 330 K = 440 For C20A: K = 550 L = 640 Q = 780 Z = 1000 G = M12 bolt R = Male M10 Digits 9, 10, & 11 indicate the first 3 digits of capacitance value. Digit 8 indicates the number of zeros that must be added to obtain rated capacitance in pF. A = Standard Z = Special J = 5% K = 10% It is not possible to manufacture every part number which could be created from coding description. Please refer to table of standard part numbers and ask KEMET for other possibilities.

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com F3050_C44P_RADIAL • 7/16/2014 Power and AC Film Capacitors Aluminum Can Power Film Capacitors – C44P/C20A Series, 250 – 1,000 VAC, 400 – 1,400 VDC, for PFC and AC Filter Dimensions – Millimeters Diameter P W W1 M1 H1 Ø = 65 28 18 40 12 16 Ø ≥ 75 35 21 45 12 16 All dimensions are in mm Maximum Driving Torque Terminals M10 10 [N*m] Bolt M12 12 [N*m]

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com F3050_C44P_RADIAL • 7/16/2014 Power and AC Film Capacitors Aluminum Can Power Film Capacitors – C44P/C20A Series, 250 – 1,000 VAC, 400 – 1,400 VDC, for PFC and AC Filter General Technical Data Reference Standards IEC 61071 UL810 approved Dielectric Polypropylene film Non-inductive type winding Climatic Category 25/70/56 – IEC 60068-1 Maximum hot spot temperature +80°C Endurance Test IEC 61071 +70°C @ Case Temperature Installation Whatever position Tinned brass deck with self estinguish UL94 V0 plastic insulators

Electrical Characteristics

Rated Voltage Urms = (see table) VAC Surge Voltage Us = (see table) VDC Capacitance Tolerance ±5% or ±10% Dissipation Factor PP typical (tgδ0) ≤ 0.0002 at 25°C Relative Humidity Annual average ≤ 80% at 24°C On 30 days/year permanently 100%. on other days occasionally 90%. Dewing not admitted Capacitance deviation in temperature range (-40 +50°C) ±1.5% maximum on capacitance value at 20°C Life Expectancy Life Expectancy 100,000 hours @ V RMS with THS ≤ 75°C Capacitance drop at end of life - 5% (typical) Failure Rate IEC 61709 See FIT Graph Test Methods Test voltage term to term (Utt) 1.5 x VRMS for 10 seconds at 25°C Test voltage term to case (Utc) 3,600 V ~ 50 Hz for 10 seconds (C44P) 6,000 V ~ 50 Hz for 10 seconds (C20A) Damp Heat IEC 60068-2-78 Change of Temperature IEC 60068-2-14 Vibration Strength IEC 60068-2-6 NOTICE: Care should be taken to ensure that there still is electrical clearance of 15 mm between terminations and other live or earthed parts above the capacitor, in case of safety device activation.

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com F3050_C44P_RADIAL • 7/16/2014 Power and AC Film Capacitors Aluminum Can Power Film Capacitors – C44P/C20A Series, 250 – 1,000 VAC, 400 – 1,400 VDC, for PFC and AC Filter Table 1 – Ratings & Part Number Reference Cap Value (µF) Vrms Rated Voltage Surge Voltage Maximum Dimensions (mm) Ripple Current ESR ESL Thermal Res dV/dt (V/µs) Part Number VAC VDC VDC D H 10 kHz 40°C (A)1 10 kHz (mΩ) (nH) (°C/W) 100 330 700 1050 65 117 25 3.0 115 8.5 12.5 C44PLGR6100AASJ 200 330 700 1050 65 147 43 2.8 140 5.4 12.5 C44PLGR6200ZASJ 300 330 700 1050 65 247 50 2.3 150 3.6 12.5 C44PLGR6300ZASJ 300 330 700 1050 75 197 55 1.4 160 4.2 12.5 C44PLGR6300AASJ 400 330 700 1050 65 247 55 2.0 160 3.1 12.5 C44PLGR6400ZASJ 500 330 700 1050 75 247 58 1.8 170 2.9 12.5 C44PLGR6500ZASJ 500 330 700 1050 85 197 63 1.2 160 3.4 12.5 C44PLGR6500ZBSJ 600 330 700 1050 85 247 65 1.6 180 2.9 12.5 C44PLGR6600AASJ 600 330 700 1050 85 280 75 1.1 210 2.4 12.5 C44PLGR6600ZASJ 100 440 1000 1500 75 147 30 3.5 145 5.6 20 C44PKGR6100AASJ 100 440 1000 1500 65 197 50 2.3 135 4.4 20 C44PKGR6100ZASJ 120 440 1000 1500 65 197 50 1.8 165 4.2 20 C44PKGR6120AASJ 133 440 1000 1500 65 247 40 3.0 155 3.7 20 C44PKGR6133AASJ 133 440 1000 1500 75 197 50 1.6 170 4.0 20 C44PKGR6133ZASJ 150 440 1000 1500 65 247 45 2.8 160 3.5 20 C44PKGR6150AASJ 200 440 1000 1500 75 247 55 2.4 175 3.2 20 C44PKGR6200AASJ 250 440 1000 1500 85 247 60 2.0 175 3.4 20 C44PKGR6250AASJ 300 440 1000 1500 85 247 60 1.9 180 2.7 20 C44PKGR6300AASJ 400 440 1000 1500 95 247 65 1.7 200 2.5 20 C44PKGR6400AASK 22 550 1280 1900 65 117 40 2.1 125 13.3 30 C20AKGR5220AASK 33 550 1280 1900 75 117 45 1.6 130 10.6 30 C20AKGR5330AASK 47 550 1280 1900 65 197 50 1.4 135 7.8 30 C20AKGR5470AASK 68 550 1280 1900 65 247 55 1.7 145 6.2 30 C20AKGR5680AASK 100 550 1280 1900 75 247 60 1.4 160 5.2 30 C20AKGR6100AASK 120 550 1280 1900 85 247 60 1.3 165 4.6 30 C20AKGR6120AASK 150 550 1280 1900 95 247 60 1.2 180 4.4 30 C20AKGR6150AASK 15 640 1400 2100 65 117 35 2.5 120 14.1 30 C20ALGR5150AASK 22 640 1400 2100 65 147 35 3.0 125 10.9 30 C20ALGR5220AASK 33 640 1400 2100 75 147 40 2.2 135 9.1 30 C20ALGR5330AASK 47 640 1400 2100 65 247 55 1.9 145 6.3 30 C20ALGR5470AASK 68 640 1400 2100 75 247 60 1.6 160 5.3 30 C20ALGR5680AASK 100 640 1400 2100 95 247 60 1.3 170 4.4 30 C20ALGR6100AASK 120 640 1400 2100 95 247 60 1.3 175 4.1 30 C20ALGR6120AASK 150 640 1400 2100 116 247 60 1.2 180 3.8 30 C20ALGR6150AASK 10 780 1700 2500 65 117 30 3.0 130 14.1 70 C20AQGR5100AASK 15 780 1700 2500 75 147 35 3.6 135 10.1 70 C20AQGR5150AASK 22 780 1700 2500 75 147 40 2.7 140 8.9 70 C20AQGR5220AASK 33 780 1700 2500 85 147 50 2.0 150 7.6 70 C20AQGR5330AASK 47 780 1700 2500 75 247 55 1.8 160 5.2 70 C20AQGR5470AASK 68 780 1700 2500 85 247 60 1.5 170 4.5 70 C20AQGR5680AASK 100 780 1700 2500 95 247 60 1.3 180 4.0 70 C20AQGR6100AASK 15 1000 2300 3300 75 147 33 2.5 150 9.2 85 C20AZGR5150AASK 20 1000 2300 3300 75 140 40 2.1 150 8.3 85 C20AZGR5200ZBSK 22 1000 2300 3300 75 147 35 2.0 155 8.0 85 C20AZGR5220AASK 33 1000 2300 3300 75 247 40 1.7 165 5.3 85 C20AZGR5330AASK 47 1000 2300 3300 85 247 45 1.4 170 4.7 85 C20AZGR5470AASK 68 1000 2300 3300 95 247 55 1.2 180 4.1 85 C20AZGR5680AASK Cap Value VAC Rated Surge D H Ripple Current ESR ESL Thermal Res dV/dt (V/µs) Part Number 1 Maximum admissible RMS current T HS ≤ 75°C.

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com F3050_C44P_RADIAL • 7/16/2014 Power and AC Film Capacitors Aluminum Can Power Film Capacitors – C44P/C20A Series, 250 – 1,000 VAC, 400 – 1,400 VDC, for PFC and AC Filter Lifetime Expectancy/Failure Quota Graphs Power Losses and Hot Spot Temperature Calculation At each frequency, the Power Losses are the sum of: 1. Dielectric Power Losses PD(fi) = 2 * π * fi* C * V(fi)2* tgδ0 which can be alternatively calculated as PD(fi) = I(fi)2 * tgδ0 2 * π * fi* C where: tgδ0 = 2 * 10-4 2. Joule Power Losses: PJ(fi) = Rs * I(fi)2 The Total Power Losses are the sum of the components at each frequency: ( ) ( )[ ]∑ += i iJiDT fPfPP The Thermal Jump in the Hot Spot is: ΔT HS = PT * Rth-hs The Hot Spot Temperature is: T HS = Ta + ΔTHS Limits for the formulas The limits listed below should not be exceeded: T HS = Ta + ΔTHS ≤ (THS )MAX Where Ta is the ambient temperature (steady state temperature of the cooling air flowing around the capacitor, measured at 100 mm of distance from the capacitor and at a height of 2/3 height of the capacitor). 3. Maximum case temperature (T CASE) ≤ 70°C Example of calculation Part Number: C44PKGR6100AASJ Rated VRMS = 440 [VRMS] Rated IRMS = 30 [A] Rs = 3.5 [mΩ] Rth = 5.6 [°C/W] Fundamental Frequency F1 = 50 [Hz] Ripple Frequency F2 = 7000 [Hz] Fundamental Voltage V1 = 440 [V~] Ripple Current I2 = 27 [A] Ta = 35°C IRMS = √(13.82 + 272) = 30 ≤ 30 → Admitted VRMS = √(4402 + 6.12) = 440 ≤ 440 → Admitted THS = Ta + ΔTHS THS = 35 + 25 = 60 [°C] →OK since hot spot temperature is less than maximum admitted Expected Life @ THS = 75°C → 100,000 hours (see lifetime curve) Expected Life @ THS = 60°C → 140,000 hours (see lifetime curve) RMSi i VfV ≤∑ 2)( RMSi i IfI ≤∑ 2)( V = Operating Voltage [VAC] Vrms = Rated Voltage [VAC] 0.60 0.70 0.80 0.90 1.00 1.10 1.20 1.30 1.40 100 1,000 10,000 100,000 1,000,000 ≤60°C 70°C 75°C 80°C Lifetime curve C44P-C20 series Hot Spot Temperature °C Lifetime Expectancy [h] Voltage Ratio V/VRMS 100 1,000 FIT Voltage Ratio V/Vrms FIT @ Hot Spot Temperatures 80 75 70 ≤60 Hot Spot Temperature °C

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com F3050_C44P_RADIAL • 7/16/2014 Power and AC Film Capacitors Aluminum Can Power Film Capacitors – C44P/C20A Series, 250 – 1,000 VAC, 400 – 1,400 VDC, for PFC and AC Filter Marking Dissipation Factor Dissipation factor is a complex function involved with the inefficiency of the capacitor. The tgδ may change up and down with increased temperature. For more information, please refer to Performance Characteristics. Sealing Hermetically Sealed Capacitors When the temperature increases, the pressure inside the capacitor increases. If the internal pressure is high enough, it can cause a breach in the capacitor which can result in leakage, impregnation, filling fluid or moisture susceptibility. Resin Encased/Wrap & Fill Capacitors The resin seals on resin encased and wrap and fill capacitors will withstand short-term exposure to high humidity environments without degradation. Resins and plastic tapes will form a pseudo-impervious barrier to humidity and chemicals. These case materials are somewhat porous and through osmosis can cause contaminants to enter the capacitor. The second area of contaminated absorption is the lead-wire/resin interface. Since resins cannot bond 100% to tinned wires, there can be a path formed up to the lead wire into the capacitor section. Aqueous cleaning of circuit boards can aggravate this condition. Barometric Pressure The altitude at which hermetically sealed capacitors are operated controls the voltage rating of the capacitor. As the barometric pressure decreases, the susceptibility to terminal arc-over increases. Non-hermetic capacitors can be affected by internal stresses due to pressure changes. This can be in the form of capacitance changes or dielectric arc-over as well as low insulation resistance. Heat transfer can also be affected by altitude operation. Heat generated in operation cannot be dissipated properly and can result in high RI2 losses and eventual failure. Radiation Radiation capabilities of capacitors must be taken into consideration. Electrical degradation in the form of dielectric embitterment can take place causing shorts or opens.

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com F3050_C44P_RADIAL • 7/16/2014 Power and AC Film Capacitors Aluminum Can Power Film Capacitors – C44P/C20A Series, 250 – 1,000 VAC, 400 – 1,400 VDC, for PFC and AC Filter Environmental Compliance As an environmentally conscious company, KEMET is working continuously with improvements concerning the environmental effects of both our capacitors and their production. In Europe (RoHS Directive) and in some other geographical areas like China, legislation has been put in place to prevent the use of some hazardous materials, like Lead (Pb), in electronic equipment. All products in this catalog are produced to help our customers' obligations to guarantee their products to fulfill these legislative requirements. The only material of concern in our products has been Lead (Pb), which has been removed from all designs to fulfill the requirement of containing less than 0.1% of Lead in any homogeneous material. KEMET will closely follow any changes in legislation world wide and makes any necessary changes in its products, whenever needed. Some customer segments like Medical, Military and Automotive Electronics may still require the use of Lead in electrode coatings. To clarify the situation and distinguish products from each other, a special symbol is used on the packaging labels for RoHS compatible capacitors. Because of customer requirements there may appear additional markings like LF = Lead Free or LFW = Lead Free Wires on the label. All KEMET power film products are RoHS Compliant. Materials & Environment The selection of materials used by KEMET for the production of capacitors is the result of extensive experience and constant attention to environmental protection. KEMET selects its suppliers according to ISO 9001 standards and carries out statistical analysis on the materials purchased before acceptance. All materials are, to the company's present knowledge, non-toxic and free from Cadmium, Mercury, Chrome and compounds, PCB (Polychlorine Triphenyl), Bromide and Chlorine Dioxins Bromurate Clorurate, CFC and HCFC and Asbestos. Green Products All KEMET power film products are ROHS Compliant. Insulation Resistance When the capacitor temperature increases, the insulation resistance decreases. This is due to increased electron activity. Low insulation resistance can also be the result of moisture trapped in the windings, caused by a prolonged exposure to excessive humidity.

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com F3050_C44P_RADIAL • 7/16/2014 Power and AC Film Capacitors Aluminum Can Power Film Capacitors – C44P/C20A Series, 250 – 1,000 VAC, 400 – 1,400 VDC, for PFC and AC Filter KEMET Corporation World Headquarters

2835 KEMET Way

Simpsonville, SC 29681 Mailing Address: P.O. Box 5928 Greenville, SC 29606 www.kemet.com Tel: 864-963-6300 Fax: 864-963-6521 Corporate Offi ces Fort Lauderdale, FL Tel: 954-766-2800 North America Southeast Lake Mary, FL Tel: 407-855-8886 Northeast Wilmington, MA Tel: 978-658-1663 Central Novi, MI Tel: 248-306-9353 West Milpitas, CA Tel: 408-433-9950 Mexico Guadalajara, Jalisco Tel: 52-33-3123-2141 Europe Southern Europe Paris, France Tel: 33-1-4646-1006 Sasso Marconi, Italy Tel: 39-051-939111 Central Europe Landsberg, Germany Tel: 49-8191-3350800 Kamen, Germany Tel: 49-2307-438110 Northern Europe Bishop’s Stortford, United Kingdom Tel: 44-1279-460122 Espoo, Finland Tel: 358-9-5406-5000 Asia Northeast Asia Hong Kong Tel: 852-2305-1168 Shenzhen, China Tel: 86-755-2518-1306 Beijing, China Tel: 86-10-5829-1711 Shanghai, China Tel: 86-21-6447-0707 Taipei, Taiwan Tel: 886-2-27528585 Southeast Asia Singapore Tel: 65-6586-1900 Penang, Malaysia Tel: 60-4-6430200 Bangalore, India Tel: 91-806-53-76817 Note: KEMET reserves the right to modify minor details of internal and external construction at any time in the interest of product improvement. KEMET does not assume any responsibility for infringement that might result from the use of KEMET Capacitors in potential circuit designs. KEMET is a registered trademark of KEMET Electronics Corporation.

© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com F3050_C44P_RADIAL • 7/16/2014 Power and AC Film Capacitors Aluminum Can Power Film Capacitors – C44P/C20A Series, 250 – 1,000 VAC, 400 – 1,400 VDC, for PFC and AC Filter Prototype Sample Disclaimer The Customer acknowledges the following limitations of the prototype samples: (1) Prototype samples are manufactured from preliminary designs and manufacturing processes; may not represent fi nal designs; have not been released for commercial use and are not subject to the same quality control procedures applicable to released products. (2) Prototype samples are not qualifi ed parts and are provided “as-is” by KEMET Electronics Corporation, which specifi cally disclaims any and all warranties and guarantees, explicit or implied, including, without limitation, the warranties of merchantability and fi tness for a particular purpose or use. (3) Prototype samples are not intended for commercial use; are provided for engineering evaluation only and are not recommended for use in the Customer’s production line. (4) The Customer assumes the risk ofany and alluses that the Customer makes of the prototype samples. General Disclaimer “All product specifi cations, statements, information and data given herein are believed to be accurate and reliable, but are presented without guarantee, warranty, or responsibility of any kind, expressed or implied. Statements of suitability for certain applications are based on our knowledge of typical operating conditions for such applications, but are not intended to constitute – and we specifi cally disclaim – any warranty concerning suitability for a specifi c customer application or use. This Information is intended for use only by customers who have the requisite experience and capability to determine the correct products for their application. KEMET’s product warranty is set forth at www.kemet.com under Terms and Conditions of Sale.”