AC and Pulse Metallized Polypropylene Film Capacitors MKP and MKP/MKP Radial Potted Type. LEADS Tinned wire
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1 AC and Pulse Metallized Polypropylene Film Capacitors MKP and MKP/MKP Radial Potted Type CBB817 Dimensions in mm APPLICATIONS Where steep pulses occur e.g. SMPS (switch mode power supplies). Motor control circuits. S-correction. It is not advised to use these products as resonance capacitors in fly-back applications REFERENCE SPECIFICATIONS IEC MARKING C-value; tolerance; rated voltage; manufacturer s type designation; code for dielectric material; manufacturer s emblem; code for factory of origin; year and week of manufacture DIELECTRIC Polypropylene film ELECTRODES Metallized CONSTRUCTION Internal serial construction RATED (DC)VOLTAGE MKP: 250 V; 400 V MKP/MKP: 630 V; 0 V; 1600 V; 2000 V RATED (AC) VOLTAGE MKP: 160 V; 200 V MKP/MKP: 300 V; 400 V; 500 V; 600 V RATED PEAK-TO-PEAK VOLTAGE MKP: 450 V; 560 V MKP/MKP: 850 V; 1130 V; 1400 V; 1700 V FEATURES 15.0 to 27.5 mm pitch. Supplied loose in box, taped on reel Compliant to RoHS directive 2002/95/EC ENCAPSULATION Flame retardant plastic case and epoxy resin (UL-class 94 V-0) CLIMATIC TESTING CLASS ACC TO IEC /085/56 CAPACITANCE RANGE (E24 SERIES) MKP: 0.18 to 3.3 µf MKP/MKP: to 0.68 µf CAPACITANCE TOLERANCE ±5% LEADS Tinned wire RATED (DC) TEMPERATURE 85 C RATED (AC) TEMPERATURE 70 C MAXIMUM APPLICATION TEMPERATURE 85 C PERFORMANCE GRADE Grade 1 (long life) STABILITY GRADE Pitch 15 mm: grade 2 Pitch 22.5 and 27.5 mm: grade 1 DETAIL INSPECTION AND TEST REQUIREMENTS For more detailed data and test requirements contact dc-film@vishay.com e3 RoHS Compliant p 1 of 23 Revision 29 th April
2 COMPOSITION OF CATALOGUE NUMBER 378 TYPE AND PITCHES 15.0 mm 22.5 mm 27.5 mm CAPACITANCE (numerically) MULTIPLIER (nf) Example: 104= 10 x 10 = nf BFC2 378 XX XX X 2222 (*) 378 XX XX X (*)old ordering number TYPE PACKAGING LEAD CONFIGURATION 378 MKP/MKP 378 MKP PREFERRED TYPES C-TOL 250V 400V 630V 0V 1600V 2000V loose in box Lead length 3.5 ± 0.3 mm ±5% loose in box Lead length 3.5 ± 0.3 mm ON REQUEST loose in box Lead length 5.0 ± 1.0 mm ±5% Taped on reel H = 18.5 mm; P 0 = 12.7 mm loose in box Lead length 5.0 ± 1.0 mm ±5% MKP/MKP Taped on reel H = 18.5 mm; P 0 = 12.7 mm For detailed tape specifications refer to Packaging information Voltage (V DC) C (µf) AVAILABLE VERSIONS 378 MKP/MKP ON SPECIAL REQUEST Pitch = 15.0 ± 0.4 mm; w x h x l = 8.5mm x 15.0mm x 17.5 mm Loose in box; SPQ=0 Taped on reel; SPQ=650 lead length 3.5 ± 0.3 mm lead length 5.0 ± 1.0 mm H = 18.5 mm; P 0 = 12.7 mm Document Number for technical questions contact: dc-film@vishay.com Revision 29 th April 2014 p 2 of 23
3 Specific reference data MKP (250VDC) DESCRIPTION VALUE Tangent of loss angle: at 10 khz at khz C 0.43 µf 15 x x µf C 0.62 µf 15 x x µf C 0.82 µf 15 x x µf C 1.0 µf 20 x x µf C 3.3 µf 20 x x 10-4 Rated voltage pulse slope (du/dt) R : Pitch = 22.5 mm R between leads, for C 1 µf at V; 1 minute RC between leads, for C > 1 µf at V; 1 minute Ionization (AC) voltage (typical value) at 50 pc peak discharge Withstanding (DC)voltage (cut off current 10 ma) (*) ; rise time 0 V/s: Withstanding (DC) voltage between leads and case 90 V/µs 60 V/µs (w < 15mm) 30 V/µs (w 15mm) > 000 MΩ > 000 s > 220 V 400 V; 1 minute 500 V; 1 minute Maximum Application Temperature 85 C (*) See Voltage proof test for metalized film capacitors : p 3 of 23 Revision 29 th April
4 U Rdc = 250 V; U Rac = 160 V; U p-p=450v C (µf) DIMENSIONS w x h x l (mm) MASS (g) (2) Pitch = 22.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x16.5x CATALOGUE NUMBER AND PACKAGING LOOSE IN BOX REEL (1) L t= 5.0±1.0 mm all leads H = 18.5 mm; P 0 = 12.7 mm Last 5 digits SPQ SPQ x18.0x x19.5x Pitch = 27.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x21.0x x23.0x x25.0x x28.0x Notes 1. H = in-tape height; P o = sprocket hole distance; for detailed specifications refer to Packaging information. 2. Weight for short lead product only SPQ= Standard Packing Quantity - Document Number for technical questions contact: dc-film@vishay.com Revision 29 th April 2014 p 4 of 23
5 SPECIFIC REFERENCE DATA MKP (400VDC) DESCRIPTION VALUE Tangent of loss angle: at 10 khz at khz C 0.24 µf 10 x x µf C 0.36 µf 10 x x µf C 0.51 µf 10 x x µf C 0.68 µf 15 x x µf C 1.0 µf 15 x x µf C 2.0 µf 15 x x 10-4 Rated voltage pulse slope (du/dt) R : Pitch = 22.5 mm R between leads, for C 1 µf at V; 1 minute RC between leads, for C > 1 µ F at V; 1 minute Ionization (AC) voltage (typical value) at 50 pc peak discharge Withstanding (DC)voltage (cut off current 10 ma) (*) ; rise time 0 V/s: V/µs 70 V/µs (w < 15mm) 35 V/µs (w 15mm) > 000 MΩ > 000 s > 250 V 640 V; 1 minute Withstanding (DC) voltage between leads and case 800 V; 1 minute Maximum Application Temperature 85 C (*) See Voltage proof test for metalized film capacitors : U Rdc = 400 V; U Rac = 200 V; U p-p=560v C (µf) DIMENSIONS w x h x l (mm) MASS (g) (2 Pitch = 22.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x16.5x CATALOGUE NUMBER AND PACKAGING LOOSE IN BOX REEL (1) L t= 5.0±1.0 mm all leads H = 18.5 mm; P 0 = 12.7 mm Last 5 digits SPQ SPQ x18.0x x19.5x Pitch = 27.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x21.0x x23.0x x25.0x x28.0x p 5 of 23 Revision 29 th April
6 Notes 1. H = in-tape height; P o = sprocket hole distance; for detailed specifications refer to Packaging information. 2. Weight for short lead product only SPQ= Standard Packing Quantity SPECIFIC REFERENCE DATA MKP/MKP (630VDC) DESCRIPTION VALUE Tangent of loss angle: at 10 khz at khz C 0.18 µf 10 x x µf C 0.30 µf 10 x x µf C 0.39 µf 10 x x µf C 0.51 µf 10 x x 10-4 C > 0.51 µf 10 x x 10-4 Rated voltage pulse slope (du/dt) R : Pitch = 15 mm Pitch = 22.5 mm R between leads, for C 1 µf at 500 V; 1 minute R between leads and case; 500 V; 1 minute Ionization (AC) voltage (typical value) at 50 pc peak discharge Withstanding (DC)voltage (cut off current 10 ma) (*) ; rise time 0 V/s: 500 V/µs 370 V/µs 230 V/µs (w < 15mm) 120 V/µs (w 15mm) > 000 MΩ > 000 MΩ > 400 V 8 V; 1 minute Withstanding (DC) voltage between leads and case 2840 V; 1 minute Maximum Application Temperature 85 C (*) See Voltage proof test for metalized film capacitors : U Rdc = 630 V; U Rac = 300 V; U p-p=850v C (µf) DIMENSIONS w x h x l (mm) MASS (g) (2 Pitch = 15.0 ± 0.4 mm; d t = 0.60 ± 0.06 mm x11.0x CATALOGUE NUMBER AND PACKAGING LOOSE IN BOX REEL (1) L t= 3.5±0.3 mm all leads H = 18.5 mm; P 0 = 12.7 mm Last 5 digits SPQ SPQ x12.0x Pitch = 15.0 ± 0.4 mm; d t = 0.80 ± 0.08 mm x13.5x x15.0x Pitch = 22.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x15.5x x16.5x x18.0x Document Number for technical questions contact: dc-film@vishay.com Revision 29 th April 2014 p 6 of 23
7 C (µf) DIMENSIONS w x h x l (mm) MASS (g) ( x19.5x CATALOGUE NUMBER AND PACKAGING LOOSE IN BOX REEL (1) L t= 3.5±0.3 mm all leads H = 18.5 mm; P 0 = 12.7 mm Last 5 digits SPQ SPQ Pitch = 27.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x21.0x x23.0x x25.0x x28.0x Notes 1. H = in-tape height; P o = sprocket hole distance; for detailed specifications refer to Packaging information. 2. Weight for short lead product only SPQ= Standard Packing Quantity - SPECIFIC REFERENCE DATA MKP/MKP (0VDC) DESCRIPTION VALUE Tangent of loss angle: at 10 khz at khz C µf 10 x x µf C 0.22 µf 10 x x 10-4 Rated voltage pulse slope (du/dt) R : Pitch = 15 mm Pitch = 22.5 mm R between leads, for C 1 µf at 500 V; 1 minute R between leads and case; 500 V; 1 minute Ionization (AC) voltage (typical value) at 50 pc peak discharge Withstanding (DC)voltage (cut off current 10 ma) (*) ; rise time 0 V/s: 1300 V/µs 1200 V/µs 600 V/µs (w < 15mm) 300 V/µs (w 15mm) > 000 MΩ > 000 MΩ > 500 V 1600 V; 1 minute Withstanding (DC) voltage between leads and case 2840 V; 1 minute Maximum Application Temperature 85 C (*) See Voltage proof test for metalized film capacitors : p 7 of 23 Revision 29 th April
8 U Rdc = 0 V; U Rac = 400 V; U p-p=1130v C (µf) DIMENSIONS w x h x l (mm) MASS (g) (2 Pitch = 15.0 ± 0.4 mm; d t = 0.60 ± 0.06 mm x11.0x CATALOGUE NUMBER AND PACKAGING LOOSE IN BOX REEL (1) L t= 3.5±0.3 mm all leads H = 18.5 mm; P 0 = 12.7 mm Last 5 digits SPQ SPQ x12.0x Pitch = 22.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x15.5x x16.5x x18.0x x19.5x Pitch = 27.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x21.0x x23.0x x25.0x x28.0x Document Number for technical questions contact: dc-film@vishay.com Revision 29 th April 2014 p 8 of 23
9 Notes 1. H = in-tape height; P o = sprocket hole distance; for detailed specifications refer to Packaging information. 2. Weight for short lead product only SPQ= Standard Packing Quantity SPECIFIC REFERENCE DATA MKP/MKP (1600VDC) DESCRIPTION VALUE Tangent of loss angle: at 10 khz at khz C 0.022µF 10 x x µf C 0.1 µf 10 x x 10-4 Rated voltage pulse slope (du/dt) R : Pitch = 22.5 mm R between leads, for C 1 µf at 500 V; 1 minute R between leads and case; 500 V; 1 minute Ionization (AC) voltage (typical value) at 20 pc peak discharge Withstanding (DC)voltage (cut off current 10 ma) (*) ; rise time 0 V/s: 1600 V/µs 900 V/µs (w < 15mm) 450 V/µs (w 15mm) > 000 MΩ > 000 MΩ > 600 V 2560 V; 1 minute Withstanding (DC) voltage between leads and case 2840 V; 1 minute Maximum Application Temperature 85 C (*) See Voltage proof test for metalized film capacitors : U Rdc = 1600 V; U Rac = 500 V; U p-p=1400v C (µf) DIMENSIONS w x h x l (mm) MASS (g) (2 ) Pitch = 22.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x15.5x CATALOGUE NUMBER AND PACKAGING LOOSE IN BOX REEL (1) L t= 3.5±0.3 mm all leads H = 18.5 mm; P 0 = 12.7 mm Last 5 digits SPQ SPQ x16.5x x18.0x x19.5x Pitch = 27.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x21.0x x23.0x p 9 of 23 Revision 29 th April
10 C (µf) DIMENSIONS w x h x l (mm) MASS (g) (2 ) L t= 3.5±0.3 mm x25.0x CATALOGUE NUMBER AND PACKAGING LOOSE IN BOX all leads REEL (1) H = 18.5 mm; P 0 = 12.7 mm Last 5 digits SPQ SPQ x28.0x Notes 1. H = in-tape height; P o = sprocket hole distance; for detailed specifications refer to Packaging information. 2. Weight for short lead product only SPQ= Standard Packing Quantity SPECIFIC REFERENCE DATA MKP/MKP (2000VDC) DESCRIPTION VALUE Tangent of loss angle: at 10 khz at khz C 0.051µF 10 x x 10-4 Rated voltage pulse slope (du/dt) R : Pitch = 22.5 mm R between leads, for C 1 µf at 500 V; 1 minute R between leads and case; 500 V; 1 minute Ionization (AC) voltage (typical value) at 20 pc peak discharge Withstanding (DC)voltage (cut off current 10 ma) (*) ; rise time 0 V/s: 2000 V/µs 1200 V/µs (w < 15mm) 600 V/µs (w 15mm) > 000 MΩ > 000 MΩ > 600 V 3200 V; 1 minute Withstanding (DC) voltage between leads and case 2840 V; 1 minute Maximum Application Temperature 85 C (*) See Voltage proof test for metalized film capacitors : U Rdc = 2000 V; U Rac = 600 V; U p-p=1700v C (µf) DIMENSIONS w x h x l (mm) MASS (g) (2 Pitch = 22.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x15.5x x16.5x CATALOGUE NUMBER AND PACKAGING LOOSE IN BOX REEL (1) L t= 3.5±0.3 mm all leads H = 18.5 mm; P 0 = 12.7 mm Last 5 digits SPQ SPQ x18.0x x19.5x Document Number for technical questions contact: dc-film@vishay.com Revision 29 th April 2014 p 10 of 23
11 C (µf) DIMENSIONS w x h x l (mm) MASS (g) (2 Pitch = 27.5 ± 0.4 mm; d t = 0.80 ± 0.08 mm x21.0x CATALOGUE NUMBER AND PACKAGING LOOSE IN BOX REEL (1) L t= 3.5±0.3 mm all leads H = 18.5 mm; P 0 = 12.7 mm Last 5 digits SPQ SPQ x23.0x x25.0x x28.0x Notes 1. H = in-tape height; P o = sprocket hole distance; for detailed specifications refer to Packaging information. 2. Weight for short lead product only SPQ= Standard Packing Quantity - p 11 of 23 Revision 29 th April
12 MOUNTING NORMAL USE The capacitors are designed for mounting on printed-circuit boards. The capacitors packed in bandoliers are designed for mounting in printed-circuit boards by means of automatic insertion machines. For detailed tape specifications refer to Packaging information: SPECIFIC METHOD OF MOUNTING TO WITHSTAND VIBRATION AND SHOCK In order to withstand vibration and shock tests, it must be ensured that the stand-off pips are in good contact with the printed-circuit board: For pitches 15 mm capacitors shall be mechanically fixed by the leads For larger pitches the capacitors shall be mounted in the same way and the body clamped SPACE REQUIREMENTS ON PRINTED-CIRCUIT BOARD The maximum space for length (l max), width (w max) and height (h max) of film capacitors to take in account on the printed circuit board is shown in the drawings. For products with pitch 15mm, Δw = Δl= 0.3mm and Δh = 0.1mm For products with 15mm < pitch 27.5mm, Δw = Δl= 0.5mm and Δh = 0.1mm Eccentricity defined as in drawing. The maximum eccentricity is smaller than or equal to the lead diameter of the product concerned. SOLDERING CONDITIONS For general soldering conditions and wave soldering profile we refer to the document Soldering Guidelines for Film Capacitors : STORAGE TEMPERATURE Storage temperature: Tstg = - 25 to +35 C with RH maximum 75% without condensation. RATINGS AND CHARACTERISTICS REFERENCE CONDITIONS Unless otherwise specified, all electrical values apply to an ambient temperature of 23 ± 1 C, an atmospheric pressure of 86 to 106 kpa and a relative humidity of 50 ± 2%. For reference testing, a conditioning period shall be applied over 96 ± 4 hours by heating the products in a circulating air oven at the rated temperature and a relative humidity not exceeding 20%. Document Number for technical questions contact: dc-film@vishay.com Revision 29 th April 2014 p 12 of 23
13 CHARACTERISTICS as a function of ambient temperature (typical curve) at 1 KHz Impedance as a function of frequency (typical curve) CBB828 Maw RMS voltage as a function of frequency CBB829 Maw RMS voltage as a function of frequency CBB824 CBB825 p 13 of 23 Revision 29 th April
14 Maw RMS voltage as a function of frequency Maw RMS voltage as a function of frequency CBB826 CBB827 Maximum RMS current (sinewave) as a function of frequency The maximum RMS current is defined by I ac = ω x C x U ac. U ac. is the maximum AC voltage depending on the ambient temperature in the curves Max RMS voltage and AC current as a function of frequency Tangent of loss angle Insulation resistance as a function of ambient temperature (typical curve) CBB959 CBB840 Document Number for technical questions contact: dc-film@vishay.com Revision 29 th April 2014 p 14 of 23
15 Maximum allowed component temperature rise (ΔT) as a function of the ambient temperature (T amb) Max RMS voltage (sinewave) as a function of temperature CBB961 CBB960 HEAT CONDUCTIVITY (G) AS A FUNCTION OF (ORIGINAL) PITCH AND CAPACITOR BODY THICKNESS IN mw/ C w max (mm) Heat conductivity (mw/ C) Pitch 15 mm Pitch 22.5 mm Pitch 27.5 mm p 15 of 23 Revision 29 th April
16 POWER DISSIPATION AND MAXIMUM COMPONENT TEMPERATURE RISE The power dissipation must be limited in order not to exceed the maximum allowed component temperature rise as a function of the free ambient temperature. The power dissipation can be calculated according Type detail specification HQN /101: Technical information film capacitors The component temperature rise (ΔT) can be measured (see Section Measuring the component temperature for more details) or calculated by ΔT = P/G: ΔT = component temperature rise ( C) P = power dissipation of the component (mw) G = heat conductivity of the component (mw/ C) MEASURING THE COMPONENT TEMPERATURE A thermocouple must be attached to the capacitor body as in: CBA758 The temperature is measured in unloaded (T amb) and maximum loaded condition (T c). The temperature rise is given by ΔT =T c T amb. To avoid radiation or convection, the capacitor should be tested in a wind-free box. APPLICATION NOTE AND LIMITING CONDITIONS For capacitors connected in parallel, normally the proof voltage and possibly the rated voltage must be reduced. For information depending of the capacitance value and the number of parallel connections contact dc-film@vishay.com These capacitors are not suitable for mains applications as across-the-line capacitors without additional protection, as described hereunder. These mains applications are strictly regulated in safety standards and therefore electromagnetic interference suppression capacitors conforming the standards must be used. To select the capacitor for a certain application, the following conditions must be checked: 1. The peak voltage (U p) shall not be greater than the rated DC voltage (U Rdc) 2. The peak-to-peak voltage (U p-p) shall not be greater than the maximum U p-p to avoid the ionisation inception level 3. The voltage peak slope (du/dt) shall not exceed the rated voltage pulse slope in an RC-circuit at rated voltage and without ringing. If the pulse voltage is lower than the rated DC voltage, the rated voltage pulse slope may be multiplied by U Rdc and divided by the applied voltage. For all other pulses following equation must be fulfilled: 2 T 0 2 du dt dt U Rdc du dt rated T is the pulse duration The rated voltage pulse slope is valid for ambient temperatures up to 70 C. For higher temperatures a derating factor of 3% per K shall be applied 4. The maximum component surface temperature rise must be lower than the limits (see figure max allowed component temp rise) 5. Since in circuits used at voltages over 280V peak-to-peak the risk for an intrinsically active flammability after a capacitor breakdown (short circuit) increases, it is recommended that the power to the component is limited to times the values mentioned in the table: Heat conductivity 6. When using these capacitors as across-the-line capacitor in the input filter for mains applications or as series connected with an impedance to the mains the applicant must guarantee that the following conditions are fulfilled in any case (spikes and surge voltages from the mains included). Document Number for technical questions contact: dc-film@vishay.com Revision 29 th April 2014 p 16 of 23
17 VOLTAGE CONDITIONS FOR 6 ABOVE ALLOWED VOLTAGES T amb 70 C 70 C <T amb 85 C Maximum continuous RMS voltage U Rac 0.7 x U Rac Maximum temperature RMS-overvoltage (<24 hours) 1.25 x U Rac x U Rac Maximum peak voltage (V o-p) (<2s) 1.6 x U Rdc 1.1 x U Rdc Example C = 470 nf -630V used for S-correction. This is the signal shown in next figure. U p-p = 108V; U p = 170V; T1 = 12µs; T2 = 64µs; I p-p = 5A The ambient temperature is 50 C Checking conditions: 1. The peak voltage U p = 170V is lower than 630 V (DC) 2. The peak-to-peak voltage 108V is lower than 2 2 x 300V (AC) = 850 U p-p 3. Ip = 2.5A is lower than 0.47 µf x 370 V/µs = 174 A 4. The dissipated power is 40 mw as calculated with Fourier terms and tdg maximum values This gives a temperature rise of 40 mw / 48 mw/ C = 0.8 C This is allowed according figure max allowed component temp rise 5. Depends on actual application 6. Not applicable Voltage signal: CBA279 p 17 of 23 Revision 29 th April
18 INSPECTION REQUIREMENTS General notes: Sub-clause numbers of tests and performance requirements refer to the Sectional Specification, publication IEC and specific reference data. SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS SUB-GROUP C1A PART OF SAMPLE OF SUB-GROUP C1 4.1 Dimensions (detail) Initial measurements 4.3 Robustness of terminations 4.4 Resistance to soldering heat 4.14 Component solvent resistance Final measurements Tangent of loss angle : For C 1 µf at khz For C > 1 µf at 10 khz Tensile and bending Method: 1A Solder bath: 280 C ± 5 C Duration: 10 s Isopropyl alcohol at room temperature Method: 2 Immersion time: 5 ± 0.5 min Recovery time: Min 1 hour, max 2 hours Visual examination Tangent of loss angle As specified in Chapters General data of this specification No visible damage No visible damage Legible marking ΔC/C 1% of the value measured initially. Increase of tan δ: for: C nf or for: nf < C 470 nf or for: C > 470 nf Compared to values measured in Document Number for technical questions contact: dc-film@vishay.com Revision 29 th April 2014 p 18 of 23
19 SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS SUB-GROUP C1B OTHER PART OF SAMPLE OF SUB-GROUP C Initial measurements 4.15 Solvent resistance of the marking:. 4.6 Rapid change of temperature 4.7 Vibration Final inspection 4.9 Shock: Final measurements Tangent of loss angle : For C 1 µf at khz For C > 1 µf at 10 khz Isopropyl alcohol at room temperature Method: 1 Rubbing material: cotton wool Immersion time: 5 ± 0.5 min θa= lower category temperature θb= upper category temperature 5 cycles Duration t = 30 min Visual examination Mounting: see Section Mounting of this specification Procedure B4 Frequency range: 10 to 55 Hz. Amplitude: 0.75 mm or Acceleration 98 m/s² (whichever is less severe) Total duration 6 hours. Visual examination Mounting: see Section Mounting of this specification Pulse shape: half sine Acceleration: 490 m/s² Duration of pulse: 11 ms. Visual examination Tangent of loss angle Insulation resistance No visible damage No visible damage No visible damage ΔC/C 1% of the value measured in Increase of tan δ: for: C nf or for: nf < C 470 nf or for: C > 470 nf Compared to values measured in As specified in Section Insulation Resistance of this specification p 19 of 23 Revision 29 th April
20 SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS SUB-GROUP C1 COMBINED SAMPLE OF SPECIMENS OF SUB-GROUPS C1A AND C1B 4.10 Climatic sequence Dry heat Temperature: +85 C Duration: 16 hours Damp heat cyclic Test Db, first cycle Cold Damp heat cyclic Test Db, remaining cycles Final measurements Temperature: -55 C Duration: 2 hours Voltage proof = U Rdc for 1 minute within 15 minutes after removal from testchamber Visual examination Tangent of loss angle Insulation resistance No breakdown or flash-over No visible damage Legible marking For 22.5 and 27.5 mm pitch: ΔC/C 1% or for 15 mm pitch: ΔC/C 2%of the value measured in or Increase of tan δ: for: C nf or for: nf < C 470 nf or for: C > 470 nf Compared to values measured in in or % of values specified in Section Insulation resistance of this specification Document Number for technical questions contact: dc-film@vishay.com Revision 29 th April 2014 p 20 of 23
21 SUB_GROUP C Damp heat steady state Initial measurements Final measurements 56 days; 40 C; 90 to 95% RH no load Tangent of loss angle at 1 khz Voltage proof = U Rdc for 1 minute within 15 minutes after removal from test chamber Visual examination Tangent of loss angle Insulation resistance No breakdown or flash-over No visible damage Legible marking For 22.5 and 27.5 mm pitch: ΔC/C 1% or for 15 mm pitch: ΔC/C 2%of the value measured in Increase of tan δ: for: C nf or for: nf < C 470 nf or for: C > 470 nf Compared to values measured in % of values specified in Section Insulation resistance of this specification SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS SUB-GROUP C3A Endurance test at 50Hz alternating voltage Initial measurements Final measurements Duration: 0h Temperature: 85 C Voltage: 1.25 x max AC voltage (RMS value), 50 Hz Tangent of loss angle : For C 1 µf at khz For C > 1 µf at 10 khz Visual examination Tangent of loss angle Insulation resistance No visible damage Legible marking ΔC/C 5% compared to values measured in Increase of tan δ: for: C nf or for: nf < C 470 nf or for: C > 470 nf Compared to values measured in % of values specified in Section Insulation resistance of this specification p 21 of 23 Revision 29 th April
22 SUB-GROUP C Temperature characteristics Initial measurements Intermediate measurements Final measurements 4.13 Charge and discharge Initial measurements Final measurements at lower category temperature at 20 C at upper category temperature Insulation resistance 00 cycles Charged to U Rdc Discharge resistance: U Rdc R 1.5xC( du dt) Tangent of loss angle : For C 1 µf at khz For C > 1 µf at 10 khz Tangent of loss angle Insulation resistance For -55 C to +20 C: 0% ΔC/C 3.75% or For 20 C to 85 C: -3.25% ΔC/C 0% As specified in Section of this specification As specified in Section Insulation resistance of this specification ΔC/C 1% of the value measured in Increase of tan δ: for: C nf or for: nf < C 470 nf or for: C > 470 nf Compared to values measured in % of values specified in Section Insulation resistance of this specification Document Number for technical questions contact: dc-film@vishay.com Revision 29 th April 2014 p 22 of 23
23 Disclaimer ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE. Vishay intertechnology.inc,its affiliates, agents and employees and all persons acting on its or their behalf (collectively, Vishay ),disclaim any and all liability for any errors, inaccuracies or incompleteness contained in any datasheet or in any other disclosure relating to any products. Vishay makes no warranty, representation or guarantee regarding the suitability of the products for any particular purpose or the continuing production of any product. To the maximum extent permitted by law, Vishay disclaims (i) any and all liability arising out of the application or use of any product, (ii) any and all liability, including without limitation special, consequential or incidental damages, (iii) any and all implied warranties, including warranties of fitness for particular purpose, non-infringement and merchantability. Statements, regarding the suitability of products for certain types of applications are based on Vishay s knowledge of typical requirements that are often placed on Vishay products in generic applications. Such statements are not binding statements about the suitability of products for a particular application. It is the customer s responsibility to validate that a particular product with the properties described in the product specification is suitable for use in a particular application. Parameters provided in the datasheets and/or specifications may vary on different applications and performance may vary over time. All operating parameters, including typical parameters, must be validated for each customer application by the customer s technical experts. Product specifications do not expand or otherwise modify Vishay s terms and conditions of purchase, including but not limited to the warranty expressed therein. Except as expressly indicated in writing, Vishay products are not designed for use in medical, life-saving, or life sustaining applications or for any other applications in which the failure of the Vishay product could result in personal injury or death. Customer s using or selling Vishay products not expressly indicated for use in such applications do so at their own risk and agree to fully indemnify and hold Vishay and its distributors harmless from and against any and all claims, liabilities, expenses and damages arising or resulting in connection with such use or sale, including attorneys fee, even if such claim alleges that Vishay or its distributor was negligent regarding the design or manufacture of the part. Please contact authorized Vishay personal to obtain written terms and conditions regarding products designed for such applications. No license, express or implied, by estoppels or otherwise, to any intellectual property rights is granted by this document or by any conduct of Vishay. Product names and markings noted herein may be trademarks of their respective owners. p 23 of 23 Revision 29 th April
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