Polypropylene Pulse/High Frequency Capacitors A70 Series Single Metallized Polypropylene Film, Axial. Applications. Capacitance Code (pf)

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1 Polypropylene Pulse/High Frequency Capacitors Overview Applications The A70 Series is constructed of metallized polypropylene film with axial leads of tinned wire. The axial leads are electrically welded to the metal layer on the ends of the capacitor winding. The capacitor is encapsulated in a polyester tape wrapping case with thermosetting resin material. Typical applications include temperature compensation circuits, timing, oscillator circuits, power factor correction and coupling capacitors in switched mode power supply (SMPS) applications. Not suitable for across-the-line application (see Suppressor Capacitors). Benefits Voltage range: VDC range: 0.00 µf 4.7 µf Diameter: mm Length: 33 mm tolerance: ±5%, ±0%, ±20% Climatic category: 55/05/56 IEC Operating temperature range of 55 C to +05 C RoHS compliance and lead-free terminations Tape and reel packaging in accordance with IEC Self-healing Click image above for interactive 3D content Open PDF in Adobe Reader for full functionality Part Number System A70 G F 2220 AA 00 J Series Rated Voltage (VDC) Length (mm) Code (pf) Lead and Packaging Code Internal Use Tolerance The last three digits represent significant figures. The first digit specifies the total number of zeros to be added. See Ordering Options Table Metallized Polypropylene G = 60 I = 250 M = 400 P = 630 F = H= 4 K = 20.5 Q = 28 T = (Standard) J = ±5% K = ±0% M = ±20% One world. One KEMET KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207

2 Ordering Options Table Type of Leads and Packaging Lead Length (mm) Lead and Packaging Code Bulk (Bag) Straight Leads 40 +/ 5 AA Tape & Reel (Standard Reel) 26 Dimensions Millimeters FRONT VIEW SIDE VIEW LL L LL D d D L d Nominal Tolerance Nominal Tolerance Nominal Tolerance 5.0 Maximum.0 Maximum 0.5 ± Maximum 4.0 Maximum 0.6 ± Maximum 4.0 Maximum 0.6 ± Maximum 4.0 Maximum 0.6 ± Maximum 4.0 Maximum 0.8 ± Maximum 20.5 Maximum 0.8 ± Maximum 4.0 Maximum 0.8 ± Maximum 20.5 Maximum 0.8 ± Maximum 20.5 Maximum 0.8 ± Maximum 28.0 Maximum 0.8 ± Maximum 4.0 Maximum 0.8 ± Maximum 20.5 Maximum 0.8 ± Maximum 28.0 Maximum 0.8 ± Maximum 20.5 Maximum 0.8 ± Maximum 28.0 Maximum 0.8 ± Maximum 28.0 Maximum 0.8 ±0.05 Note: See Ordering Options Table for lead length (LL / I) options. D L d Nominal Tolerance Nominal Tolerance Nominal Tolerance.0 Maximum 28.0 Maximum 0.8 ± Maximum 28.0 Maximum 0.8 ± Maximum 33.0 Maximum 0.8 ± Maximum 33.0 Maximum 0.8 ± Maximum 28.0 Maximum 0.8 ± Maximum 33.0 Maximum 0.8 ± Maximum 33.0 Maximum 0.8 ± Maximum 33.0 Maximum 0.8 ± Maximum 33.0 Maximum.0 ± Maximum 33.0 Maximum.0 ± Maximum 33.0 Maximum.0 ± Maximum 33.0 Maximum.0 ± Maximum 33.0 Maximum.0 ± Maximum 33.0 Maximum.0 ± Maximum 33.0 Maximum.0 ±0.05 Note: See Ordering Options Table for lead length (LL / I) options. KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 2

3 Performance Characteristics Dielectric Plates Winding Polypropylene film Metal layer deposited by evaporation under vacuum Non-inductive type Leads Protection Tinned wire Related Documents IEC Plastic case, thermosetting resin filled. Box material is solvent resistant and flame retardant according to UL94. Rated Voltage V R (VDC) Rated Voltage V R (VAC) Range (µf) Values E6 series (IEC 60063) measured at khz and +20 ± C Tolerance ±5%, ±0%, ±20% Operating Temperature Range 55 C to +05 C Rated Temperature T R +85 C Voltage Derating Above +85 C DC and AC voltage derating is.25%/ C Climatic Category 55/05/56 IEC Storage time: 24 months from the date marked on the label package Average relative humidity per year 70% Storage Conditions RH 85% for 30 days randomly distributed throughout the year Dew is absent Temperature: 40 to 80 C (see "Maximum Humidity in Storage Conditions" graph below) Relative Humidity (%) Maximum Humidity in Storage Conditions 30 Days Annual Average Temperature (ºC) KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 3

4 Performance Characteristics cont'd Test Voltage Drift Maximum Pulse Steepness Temperature Coefficient Self Inductance (Lead Length ~ 2 mm).6 x V R VDC for 2 seconds (between terminations) at +25 C ±5 C Maximum 0.5% after a 2 year storage period at a temperature of +0 C to +40 C and a relative humidity of 40% to 60% dv/dt according to Table. For peak to peak voltages lower than rated voltage (Vpp <V R ), the specified dv/dt can be multiplied by the factor V R /Vpp (200 ±00) ppm/ C at khz Maximum nh per mm lead and capacitor length Maximum Values at 25 C ±5 C Frequency C 0. μf 0. µf < C µf C > µf Dissipation Factor tanδ khz 0.06% 0.06% 0.06% 0 khz 0.0% 0.20% 00 khz 0.30% Measured at +25 C ±5 C, 00 VDC 60 seconds * typical value Insulation Resistance C 0.33 μf 00,000 MΩ ( 500,000 MΩ ) * Minimum Values Between Terminals C > 0.33 μf 30,000 MΩ µf ( 50,000 MΩ µf ) * KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 4

5 Maximum Voltage (V rms ) vs. Frequency (Sinusoidal Waveform/Th 40 C), VDC/90 VAC, VDC/200 VAC V rms V rms µf 0.47 µf 47 µf µf 0.68 µf 3.3 µf 0 00, VDC/220 VAC, VDC/250 VAC V rms µf 0.47 µf.5 µf V rms µf µf 0.47 µf KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 5

6 Maximum Current (I rms ) vs. Frequency (Sinusoidal Waveform/Th 40 C) VDC/90 VAC VDC/200 VAC 0 0 l rms l rms µf 0.47 µf 47 µf µf 0.68 µf 3.3 µf VDC/220 VAC VDC/250 VAC 0 0 l rms l rms µf 0.47 µf.5 µf µf µf 0.47 µf KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 6

7 Environmental Test Data Damp Heat, Steady State Test Temperature: Relative humidity (RH): Test duration: Test Conditions: +40 C ±2 C 93% ±2% 56 days Performances Δ C/C 2%, Δ tanδ 0.00 at khz IR after test 50% of initial limit Endurance Test Test Conditions Performances Resistance to Soldering Heat Test Temperature: Voltage applied: Test duration: Solder bath temperature: Dipping time (with heat screen): +85 C ±2 C.25 x V R (DC) 2,000 hours Test Conditions 260 C ±5 C 0 seconds ± second Δ C/C 3%, Δ tanδ 0.00 at 0 khz for C µf Δ tanδ 0.00 at khz for C > µf IR after test 50% of initial limit Performances Δ C/C %, Δ tanδ 0.00 at 0 khz for C µf Δ tanδ 0.00 at khz for C > µf IR after test initial limit Environmental Compliance All KEMET pulse capacitors are RoHS Compliant. Table Ratings & Part Number Reference VDC VAC Value (µf) Dimensions in mm D L dv/dt (V/µs) () Insert lead and packaging code. See Ordering Options Table for available options. (2) J = 5%, K = 0%, M = 20%. Max K 0 (V 2 /µs) New KEMET Part Number Legacy Part Number ,600 70GF2220()00(2) A70GF2220()00(2) ,600 70GF2330()00(2) A70GF2330()00(2) ,600 70GF2470()00(2) A70GF2470()00(2) ,600 70GH2680()00(2) A70GH2680()00(2) ,600 70GH300()00(2) A70GH300()00(2) ,600 70GH350()00(2) A70GH350()00(2) ,600 70GH3220()00(2) A70GH3220()00(2) GK3330()00(2) A70GK3330()00(2) GK3470()00(2) A70GK3470()00(2) GQ3680()00(2) A70GQ3680()00(2) GQ400()00(2) A70GQ400()00(2) GQ450()00(2) A70GQ450()00(2) GT4220()00(2) A70GT4220()00(2) GT4330()00(2) A70GT4330()00(2) GT4470()00(2) A70GT4470()00(2) ,500 70IF200()00(2) A70IF200()00(2) ,500 70IF250()00(2) A70IF250()00(2) ,000 70IH2220()00(2) A70IH2220()00(2) ,000 70IH2330()00(2) A70IH2330()00(2) ,000 70IH2470()00(2) A70IH2470()00(2) ,000 70IH2680()00(2) A70IH2680()00(2) ,000 70IH300()00(2) A70IH300()00(2) VDC VAC Value (µf) B (mm) H (mm) dv/dt (V/µs) Max K 0 (V 2 /µs) New KEMET Part Number Legacy Part Number KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 7

8 Table Ratings & Part Number Reference cont'd VDC VAC Value (µf) Dimensions in mm D L dv/dt (V/µs) () Insert lead and packaging code. See Ordering Options Table for available options. (2) J = 5%, K = 0%, M = 20%. Max K 0 (V 2 /µs) New KEMET Part Number Legacy Part Number ,500 70IK350()00(2) A70IK350()00(2) ,500 70IK3220()00(2) A70IK3220()00(2) ,000 70IQ3330()00(2) A70IQ3330()00(2) ,000 70IQ3470()00(2) A70IQ3470()00(2) ,000 70IQ3680()00(2) A70IQ3680()00(2) ,250 70IT400()00(2) A70IT400()00(2) ,250 70IT450()00(2) A70IT450()00(2) ,250 70IT4220()00(2) A70IT4220()00(2) ,250 70IT4330()00(2) A70IT4330()00(2) ,000 70ΜF680()00(2) A70ΜF680()00(2) ,800 70MH200()00(2) A70MH200()00(2) ,800 70MH250()00(2) A70MH250()00(2) ,800 70MH2220()00(2) A70MH2220()00(2) ,800 70MH2330()00(2) A70MH2330()00(2) ,800 70MH2470()00(2) A70MH2470()00(2) ,000 70MK2680()00(2) A70MK2680()00(2) ,000 70MK300()00(2) A70MK300()00(2) ,200 70MQ350()00(2) A70MQ350()00(2) ,200 70MQ3220()00(2) A70MQ3220()00(2) ,200 70MQ3330()00(2) A70MQ3330()00(2) ,200 70MQ3470()00(2) A70MQ3470()00(2) ,200 70MT3680()00(2) A70MT3680()00(2) ,200 70MT400()00(2) A70MT400()00(2) ,200 70MT450()00(2) A70MT450()00(2) ,800 70PF00()00(2) A70PF00()00(2) ,800 70PF50()00(2) A70PF50()00(2) ,800 70PF220()00(2) A70PF220()00(2) ,800 70PF330()00(2) A70PF330()00(2) ,800 70PF470()00(2) A70PF470()00(2) ,200 70PH680()00(2) A70PH680()00(2) ,200 70PH200()00(2) A70PH200()00(2) ,200 70PH250()00(2) A70PH250()00(2) ,200 70PH2220()00(2) A70PH2220()00(2) ,900 70PK2330()00(2) A70PK2330()00(2) ,900 70PK2470()00(2) A70PK2470()00(2) ,600 70PQ2680()00(2) A70PQ2680()00(2) ,600 70PQ300()00(2) A70PQ300()00(2) ,600 70PQ350()00(2) A70PQ350()00(2) ,560 70PT3220()00(2) A70PT3220()00(2) ,560 70PT3330()00(2) A70PT3330()00(2) ,560 70PT3470()00(2) A70PT3470()00(2) ,560 70PT3680()00(2) A70PT3680()00(2) VDC VAC Value (µf) B (mm) H (mm) dv/dt (V/µs) Max K 0 (V 2 /µs) New KEMET Part Number Legacy Part Number KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 8

9 Soldering Process The implementation of the RoHS directive has resulted in the selection of SnAgCu (SAC) alloys or SnCu alloys as primary solder. This has increased the liquidus temperature from that of 83 C for SnPb eutectic alloy to C for the new alloys. As a result, the heat stress to the components, even in wave soldering, has increased considerably due to higher pre-heat and wave temperatures. Polypropylene capacitors are especially sensitive to heat (the melting point of polypropylene is C). Wave soldering can be destructive, especially for mechanically small polypropylene capacitors (with lead spacing of 5 mm to 5 mm), and great care has to be taken during soldering. The recommended solder profiles from KEMET should be used. Please consult KEMET with any questions. In general, the wave soldering curve from IEC Publication 6760 Edition 2 serves as a solid guideline for successful soldering. Please see Figure. Reflow soldering is not recommended for through-hole film capacitors. Exposing capacitors to a soldering profile in excess of the above the recommended limits may result to degradation or permanent damage to the capacitors. Do not place the polypropylene capacitor through an adhesive curing oven to cure resin for surface mount components. Insert through-hole parts after the curing of surface mount parts. Consult KEMET to discuss the actual temperature profile in the oven, if through-hole components must pass through the adhesive curing process. A maximum two soldering cycles is recommended. Please allow time for the capacitor surface temperature to return to a normal temperature before the second soldering cycle. Manual Soldering Recommendations Wave Soldering Recommendations Following is the recommendation for manual soldering with a soldering iron C 2 +3 seconds maximum First wave Second wave Soldering iron bit temperature ( C) Recommended Soldering Temperature Temperature ( C) T <50 C Cooling Preheating ca 2 C/second ca 3.5 C/second typical ca 5 C/second 5 C max Tpreheat 00 C Typical Time (s) Soldering time (seconds) The soldering iron tip temperature should be set at 350 C (+0 C maximum) with the soldering duration not to exceed more than 3 seconds. KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 9

10 Soldering Process cont'd Wave Soldering Recommendations cont'd. The table indicates the maximum set-up temperature of the soldering process Figure Dielectric Film Material Maximum Preheat Temperature Capacitor Pitch 0 mm Capacitor Pitch = 5 mm Capacitor Pitch > 5 mm Maximum Peak Soldering Temperature Capacitor Pitch 5 mm Capacitor Pitch > 5 mm Polyester 30 C 30 C 30 C 270 C 270 C Polypropylene 00 C 0 C 30 C 260 C 270 C Paper 30 C 30 C 40 C 270 C 270 C Polyphenylene Sulphide 50 C 50 C 60 C 270 C 270 C 2. The maximum temperature measured inside the capacitor: Set the temperature so that inside the element the maximum temperature is below the limit: Dielectric Film Material Maximum temperature measured inside the element Polyester 60 C Polypropylene 0 C Paper 60 C Polyphenylene Sulphide 60 C Temperature monitored inside the capacitor. Selective Soldering Recommendations Selective dip soldering is a variation of reflow soldering. In this method, the printed circuit board with through-hole components to be soldered is preheated and transported over the solder bath as in normal flow soldering without touching the solder. When the board is over the bath, it is stopped and pre-designed solder pots are lifted from the bath with molten solder only at the places of the selected components, and pressed against the lower surface of the board to solder the components. The temperature profile for selective soldering is similar to the double wave flow soldering outlined in this document, however, instead of two baths, there is only one bath with a time from 3 to 0 seconds. In selective soldering, the risk of overheating is greater than in double wave flow soldering, and great care must be taken so that the parts are not overheated. KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 0

11 Construction Single-sided Metallized Polypropylene Film (Second Layer) Margin Detailed Cross Section Metal Contact Layer Lead Lead Thermosetting Resin End-Fill Metal Contact Layer Margin Single-sided Metallized Polypropylene Film (First Layer) Polyester Tape Wrapping Thermosetting Resin End-Fill Margin Polyester Tape Wrapping Winding Scheme Single-sided Metallized Polypropylene Film Section KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207

12 Marking Tolerance Voltage (VDC) Series Dielectric Code Packaging Quantities Diameter Length Bulk Long Leads Standard Reel ø 355 mm 5.0.0,500 3, ,000, ,000, ,000, ,750, ,250, ,500, ,000, , , Diameter Length Bulk Long Leads Standard Reel ø 355 mm KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 2

13 Lead Taping & Packaging (IEC ) H L I D A Ø E M N G G B C Taping Specification Description Symbol Dimensions (mm) Component diameter D Body length L 33 Component lead spacing A () See Table Reel core diameter E 85 Arbor hole diameter M 30 Reel diameter ø 355 maximum Tape width H 6±0.5/9± (2) Body location (lateral deviation) G 0.7 Body location (longitudinal deviation) N.2 Tape spacing B See Table 2 Lead length from the component body to the I 20 adhesive tape Distance between reel flanges C See Table 2 Table Table 2 Dimensions in mm Diameter A 5 5± ± ± ±.0 Dimensions in mm Length Class B ±.5 C I II III () Maximum cumulative feed hole error.5 mm per 6 parts. (2) 9± for capacitor with L 3.5. KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 3

14 KEMET Electronics Corporation Sales Offices For a complete list of our global sales offi ces, please visit Disclaimer All product specifi cations, statements, information and data (collectively, the Information ) in this datasheet are subject to change. The customer is responsible for checking and verifying the extent to which the Information contained in this publication is applicable to an order at the time the order is placed. All Information given herein is believed to be accurate and reliable, but it is presented without guarantee, warranty, or responsibility of any kind, expressed or implied. Statements of suitability for certain applications are based on KEMET Electronics Corporation s ( KEMET ) knowledge of typical operating conditions for such applications, but are not intended to constitute and KEMET specifi cally disclaims any warranty concerning suitability for a specifi c customer application or use. The Information is intended for use only by customers who have the requisite experience and capability to determine the correct products for their application. Any technical advice inferred from this Information or otherwise provided by KEMET with reference to the use of KEMET s products is given gratis, and KEMET assumes no obligation or liability for the advice given or results obtained. Although KEMET designs and manufactures its products to the most stringent quality and safety standards, given the current state of the art, isolated component failures may still occur. Accordingly, customer applications which require a high degree of reliability or safety should employ suitable designs or other safeguards (such as installation of protective circuitry or redundancies) in order to ensure that the failure of an electrical component does not result in a risk of personal injury or property damage. Although all product related warnings, cautions and notes must be observed, the customer should not assume that all safety measures are indicted or that other measures may not be required. KEMET is a registered trademark of KEMET Electronics Corporation. KEMET Electronics Corporation P.O. Box 5928 Greenville, SC F3032_A70_AXIAL 0//207 4

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