Metallized Polypropylene Film Capacitor AC Filtering Radial Type

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1 Metallized Polypropylene Film Capacitor AC Filtering Radial Type FEATURES High peak current capabilities Long lifetime Material categorization: for definitions of compliance please see APPLICATIONS AC filtering UPS systems Renewable energy - grid interface Harmonic filter Welding equipment QUICK REFERENCE DATA Rated capacitance range μf to 70 μf Capacitance tolerance ± 5 % and % Maximum continuous AC voltage (50 Hz / 60 Hz) range, U NAC 30 V AC, 50 V AC, 75 V AC, 3 V AC, 350 V AC, 0 V AC Climatic testing class 0/85/56 Maximum application temperature 5 C Maximum permissible case temperature 5 C Reference standards IEC 67, IEC Dielectric Polypropylene film Electrodes Metallized dielectric film Construction Mono and internal serial construction Encapsulation Plastic case sealed with resin; flame retardant Terminals Tinned wire Self inductance (L S ) < nh per mm of lead spacing Withstanding DC voltage between terminals ().5 U NDC for s, cut off current ma, rise time 00 V/s Insulation resistance RC between leads, after min > 000 s Measuring voltage: 500 V Life time expectancy () Marking Useful lifetime: > h at U NAC FIT: < x -9 /h ( per 9 component hours) at 0.5 x U NAC, 0 C C-value; tolerance; rated voltage; code for dielectric material; code for manufacturing origin; manufacturer s type designation; manufacturer location, year and week; manufacturer s logo or name Notes For more detailed data and test requirements, contact dc-film@vishay.com For general information like characteristics and definitions used for film capacitors follow the link: () See document Voltage Proof Test for Metalized Capacitors ( () Statements about life time are based on calculations which are based on internal tests. They have to be understood exclusively as estimations. Also due to external factors, the life time in the field application may deviate from the calculated life time AC VOLTAGE RATINGS (V RMS ) U NAC 30 V 50 V 75 V 3 V 350 V 0 V U OPAC at 85 C 30 V 50 V 75 V 3 V 350 V 0 V U OPAC at 5 C 60 V 75 V 90 V V 0 V 300 V Revision: 3-Jan-7 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

2 COMPOSITION OF CATALOG NUMBER MULTIPLIER (nf) CAPACITANCE (numerically) Example nf. µf nf µf nf 80 µf MKP P P PITCH CODE 7.5 K 37.5 P 5.5 Y TYPE CONSTRUCTION METALLIZED POLYPROPYLENE VOLTAGE U N = 3 = 30 V RMS U N = 5 = 50 V RMS U N = 7 = 75 V RMS U N = 3 = 3 V RMS U N = 35 = 350 V RMS U N = 38 = 380 V RMS U N = = 0 V RMS TOLERANCE ± 5 % 5 ± % SPECIAL CODE FOR TERMINAL pins pins P =. mm 5 pins P = 0.3 mm () Customized Note () Tabs terminals or customized terminals are available on request DIMENSIONS in millimeters w I h P 6 - Ø dt P ± 0. - PCM 7.5 mm P ± PCM 37.5 mm I w P P Marking h P Ø dt 6 - P ± 0.5 P ± 0.5 Note Ø dt ± % of standard diameter specified Revision: 3-Jan-7 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

3 ELECTRICAL DATA AND ORDERING CODE U RAC (V) CAP. () (μf) DIMENSION () w h l P P dv/dt (3) (V/μs) I PEAK (A) I RMS () (A) tan khz (< - ) (5) tan khz (< - ) (5) ORDERING CODE (6) U NDC = 50 V; U OPAC AT 85 C= 30 V RMS ; U OPAC AT 5 C = 60 V RMS MKP8753K MKP87503K MKP875303K MKP87503K MKP875503K MKP875603K MKP875703K MKP875803K MKP875903K MKP8763K MKP8763P* MKP8763P* MKP87653P* MKP87603P* MKP8763P* / MKP87653P* / MKP876303P* MKP876303Y* MKP876353Y* MKP87603Y* MKP87653Y* MKP876503Y* MKP876553Y* MKP876603Y* MKP876653Y MKP Y5 U NDC = 500 V; U OPAC AT 85 C = 50 V RMS ; U OPAC AT 5 C = 75 V RMS MKP8755K MKP87505K MKP875305K MKP87505K MKP875505K MKP875605K MKP875705K MKP875805K MKP875905K MKP875505P* MKP875605P* MKP875705P* MKP875805P* MKP875905P* MKP8765P* MKP8765P* MKP87655P* Revision: 3-Jan-7 3 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

4 ELECTRICAL DATA AND ORDERING CODE U RAC (V) CAP. () (μf) DIMENSION () w h l P P dv/dt (3) (V/μs) I PEAK (A) I RMS () (A) tan khz (< - ) (5) tan khz (< - ) (5) ORDERING CODE (6) U NDC = 500 V; U OPAC AT 85 C = 50 V RMS ; U OPAC AT 5 C = 75 V RMS / MKP87605P* / MKP8765P* / MKP87655P* MKP87655Y* MKP87605Y* MKP8765Y* MKP87655Y* MKP876305Y* MKP876355Y* MKP87605Y* MKP87655Y* MKP876505Y* MKP876555Y MKP Y5 U NDC = 600 V; U OPAC AT 85 C = 75 V RMS ; U OPAC AT 5 C = 90 V RMS MKP8757K MKP87507K MKP875307K MKP87507K MKP875507K MKP875607K MKP875707K MKP875507P* MKP875607P* MKP875707P* MKP875807P* MKP875907P* MKP8767P* MKP8767P* MKP87657P* / MKP87607P* MKP87657Y* MKP87607Y* MKP8767Y* MKP87657Y* MKP876307Y* MKP876357Y* MKP87607Y* MKP87657Y MKP Y5 Revision: 3-Jan-7 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

5 ELECTRICAL DATA AND ORDERING CODE U RAC (V) CAP. () (μf) DIMENSION () w h l P P dv/dt (3) (V/μs) I PEAK (A) I RMS () (A) tan khz (< - ) (5) tan khz (< - ) (5) ORDERING CODE (6) U NDC = 630 V; U OPAC AT 85 C = 3 V RMS ; U OPAC AT 5 C = V RMS MKP8753K MKP87503K MKP875303K MKP87503K MKP875503K MKP875503P* MKP875603P* MKP875703P* MKP875803P* MKP875903P* MKP87635P* MKP8763P* / MKP87653P* MKP8763Y* MKP8763Y* MKP87653Y* MKP87603Y* MKP8763Y* MKP87653Y* MKP876303Y MKP876353Y5 U NDC = 700 V; U OPAC AT 85 C = 350 V RMS ; U OPAC AT 5 C = 0 V RMS MKP87535K MKP875035K MKP K MKP875035K MKP P* MKP P* MKP P* MKP P* MKP P* MKP87635P* / MKP87635P* MKP87635Y* MKP87635Y* MKP876535Y* MKP876035Y* MKP87635Y* MKP876535Y* MKP Y5 Revision: 3-Jan-7 5 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

6 ELECTRICAL DATA AND ORDERING CODE U RAC (V) 0 CAP. () (μf) DIMENSION () w h l P P dv/dt (3) (V/μs) I PEAK (A) U NDC = 00 V; U OPAC AT 85 C = 0 V RMS ; U OPAC AT 5 C = 300 V RMS MKP875P* MKP8755P* MKP8750P* MKP875P* / MKP87530P* / MKP87533P* / MKP8750P* MKP87550P* MKP87550Y* MKP87560Y* MKP87570Y* MKP87580Y* MKP87580Y* MKP876Y* MKP876Y5 Notes () Intermediate capacitance values available on request () Standard dimension. For tolerances see chapter Space Requirements for Printed-Circuit Board Applications and Dimension Tolerances I RMS () (A) (3) Rated voltage pulse slope (du/dt) R at voltage U NDC () Maximum RMS current at khz, +85 C, capacitance tolerance specified (5) The ESR (Equivalent Series Resistance) can be calculated as tan (f)/( x x f x C) (6) Change the * symbol with special code for the terminals tan khz (< - ) (5) tan khz (< - ) (5) ORDERING CODE (6) PACKAGING INFORMATION U NAC (V) 30 CAP. () (μf) Ø dt ORDERING CODE () MASS (g) SPQ (3) (pcs) 0.8 MKP8753K MKP87503K MKP875303K MKP87503K MKP875503K MKP875603K MKP875703K MKP875803K MKP875903K MKP8763K 70.0 MKP8763P* MKP8763P* MKP87653P* MKP87603P* MKP8763P* MKP87653P* MKP876303P* MKP876303Y* MKP876353Y* MKP87603Y* MKP87653Y* MKP876503Y* MKP876553Y* MKP876603Y* MKP876653Y MKP Y Revision: 3-Jan-7 6 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

7 PACKAGING INFORMATION U NAC (V) CAP. () (μf) Ø dt ORDERING CODE () MASS (g) SPQ (3) (pcs) 0.8 MKP8755K MKP87505K MKP875305K MKP87505K MKP875505K MKP875605K MKP875705K MKP875805K MKP875905K MKP875505P* MKP875605P* MKP875705P* MKP875805P* MKP875905P* MKP8765P* MKP8765P* MKP87655P* MKP87605P* MKP8765P* MKP87655P* MKP87655Y* MKP87605Y* MKP8765Y* MKP87655Y* MKP876305Y* MKP876355Y* MKP87605Y* 0 5. MKP87655Y* MKP876505Y* MKP876555Y MKP Y MKP8757K MKP87507K MKP875307K MKP87507K MKP875507K MKP875607K MKP875707K MKP875507P* MKP875607P* MKP875707P* MKP875807P* MKP875907P* MKP8767P* MKP8767P* MKP87657P* MKP87607P* MKP87657Y* MKP87607Y* MKP8767Y* MKP87657Y* MKP876307Y* MKP876357Y* MKP87607Y* MKP87657Y MKP Y Revision: 3-Jan-7 7 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

8 PACKAGING INFORMATION U NAC (V) CAP. () (μf) MKP8753K MKP87503K MKP875303K MKP87503K MKP875503K MKP875503P* MKP875603P* MKP875703P* MKP875803P* MKP875903P* MKP87635P* MKP8763P* MKP87653P* MKP8763Y* MKP8763Y* MKP87653Y* MKP87603Y* MKP8763Y* MKP87653Y* MKP876303Y MKP876353Y MKP87535K MKP875035K MKP K MKP875035K MKP P* MKP P* MKP P* MKP P* MKP P* MKP87635P* MKP87635P* MKP87635Y* MKP87635Y* MKP876535Y* MKP876035Y* MKP87635Y* 0 5. MKP876535Y* MKP Y MKP875P* MKP8755P* MKP8750P* MKP875P* MKP87530P* MKP87533P* MKP8750P* MKP87550P* MKP87550Y* MKP87560Y* MKP87570Y* MKP87580Y* MKP87590Y* 5 0. MKP8765Y* 0 0. MKP8765Y Notes () Intermediate capacitance values available on request () Change the * symbols with special code for terminals (3) SPQ = Standard Packing Quantity Ø dt ORDERING CODE () MASS (g) SPQ (3) (pcs) Revision: 3-Jan-7 8 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

9 CONSTRUCTION Low inductive wound cell elements of metallized polypropylene film. Pattern film for pitch 37.5 mm and standard foil for pitch 7.5 mm, potted with resin in a flame retardant case. Specific Method of Mounting to Withstand Vibration and Shock The capacitor unit is designed for mounting on a printed circuit board. In order to withstand vibration and shock tests, it must be insured that the stand-off pips are in good contact with the printed circuit board. The capacitors shall be mechanically fixed by the leads and the body clamped. Space Requirements on Printed-Circuit Board and Dimension Tolerances For the maximum product dimensions and maximum space requirements for length (l max. ), width (w max. ) following tolerances must be taken in account in the envelopment of the components as shown in the drawings below: L max. = I + I W max. = w + w W max. P x P ± 0.5 mm 3 x P ± 0.5 mm x P ± 0.5 mm 5 x P ± 0.5 mm P L max. Ø D P L W Ø D h For the maximum height h max., a h of 0.5 mm must be taken in account on the height dimension h. For the minimum product dimensions for length (l min. ), width (w min. ) and height (h min. ) following tolerances of the components are valid: l min. = l - l, w min. = w - w and h min. = h - h For products with pitch = 7.5 mm, l =.0 mm and w = h = 0.5 mm For products with pitch = 37.5 mm, l =.0 mm and w = h =.0 mm For products with pitch = 5.5 mm, l =.5 mm and w = h =.0 mm SOLDERING CONDITIONS For general soldering conditions and wave soldering profile, we refer to the document: Characteristics and Definitions used for Film Capacitors : Storage Temperature T stg = -5 C 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 3 C ± C, an atmospheric pressure of 86 kpa to 6 kpa and a relative humidity of 50 % ± %. For reference testing, a conditioning period shall be applied over 96 h ± h by heating the products in a circulating air oven at the rated temperature and a relative humidity not exceeding 0 %. Revision: 3-Jan-7 9 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

10 CHARACTERISTICS C/C (%) T amb ( C) Capacitance as a function of ambient temperature (typical curve) RC (s) T amb ( C) Insulation resistance as a function of ambient temperature (typical curve) Pitch = 7.5 mm Factor Z (Ω) 0. μf μf T amb ( C) RMS voltage in function of temperature Impedance vs.frequency (typical curve) Pitch = 37.5 mm 000 Pitch = 5.5 mm 000 Z (Ω) μf μf 00 0 Z (Ω) μf 30 μf Impedance vs. frequency (typical curve) Impedance vs. frequency (typical curve) Revision: 3-Jan-7 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

11 CHARACTERISTICS V RMS (V) μf 30 μf 70 μf 0 V RMS (V) μf 5 μf 60 μf Maximum RMS voltage as function of frequency T amb 85 C; U n = 30 V AC Maximum RMS voltage as function of frequency T amb 85 C; U n = 50 V AC V RMS (V) μf 0 μf 50 μf 0 V RMS (V) μf 5 μf 35 μf Maximum RMS voltage as function of frequency T amb 85 C; U n = 75 V AC Maximum RMS voltage as function of frequency T amb 85 C; U n = 3 V AC V RMS (V) μf μf 30 μf 0 V RMS (V) μf 5 μf μf Maximum RMS voltage as function of frequency T amb 85 C; U n = 350 V AC Maximum RMS voltage as function of frequency T amb 85 C; U n = 0 V AC Revision: 3-Jan-7 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

12 HEAT CONDUCTIVITY DIMENSIONS HEAT CONDUCTIVITY (mw/ C) w h l PITCH 7.5 mm PITCH 37.5 mm PITCH 5.5 mm 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 air ambient temperature. The component temperature rise (T) can be measured or calculated by T = P/G: T = component temperature rise ( C) with a maximum of 5 C P = power dissipation of the component (mw) G = heat conductivity of the component (mw/ C) MEASURING THE COMPONENT TEMPERATURE Thermocouple The case temperature is measured in unloaded (T amb ) and maximum loaded condition (T C ). The temperature rise is given by T = T C - T amb. To avoid thermal radiation or convection, the capacitor must be tested in a closed area from air circulation. APPLICATION NOTE AND LIMITING CONDITIONS These capacitors are not suitable for mains applications as across-the-line capacitors without additional protection. 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: The peak voltage (U P+ ) shall not be greater than x U RMS The peak-to-peak ripple voltage (U PP ) shall not be greater than x x U RMS (for U RMS consult above graph: Maximum RMS Voltage as Function of Frequency) The voltage pulse slope (du/dt) shall not exceed the rated pulse slope at the DC voltage rating. If the pulse voltage is lower than the rated DC voltage, the rated voltage pulse slope may be multiplied by U NDC and divided by the applied voltage. For all other pulses following equation must be fulfilled: T du x dt U x du NDC x dt dt rated T is the pulse duration The maximum component surface temperature must be lower than 5 C and maximum temperature rise between case and free air ambient shall be lower than 5 C. Revision: 3-Jan-7 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

13 INSPECTION REQUIREMENTS General Notes Sub-clause numbers of tests and performance requirements refer to the Sectional Specification, Publication IEC 67. SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS ROUTINE TEST - FINAL INSPECTION 5... External inspection, visual examination Legible marking as specified 5... Dimensions See specification drawing 5.3. Capacitance khz at room temperature See specific reference data 5.3. tan khz at room temperature khz at room temperature See specific reference data DC voltage test between terminals.5 x U NDC at T amb Duration s No visible damage or puncture No flashover 5.6. Voltage test between terminals and case 00 V AC (50 Hz), 60 s No visible damage or puncture No flashover 5.7 Insulation resistance Measuring voltage 500 V at room temperature Duration min TYPE TESTS 5.. External inspection Check for finish, marking, and overall dimensions See specific reference data Legible marking and finish as specified Dimensions: see specific drawing 5..0 Initial measurements Capacitance at khz tan at khz 5... Robustness of terminations IEC Tensile Ua: duration s ± s Wire diameter Section Load d 0.80 mm S 0.5 mm N (± %) d.5 mm S. mm 0 N (± %) Bending Ub method : x 90, duration s to 3 s/bend Wire diameter Section modules Load d 0.80 mm Z x mm 3 5 N (± %) d.5 mm Z x 0.09 mm 3 N (± %) Resistance to soldering heat IEC No predrying, method A Solder bath: 80 C ± 5 C Duration s ± s 5.. Final measurements Capacitance tan 5..0 Initial measurements Capacitance at khz tan at khz C/C 0.5 % Increase of tan Compared to values measured in Vibration IEC f = Hz to 55 Hz; amplitude ± 0.35 mm or acceleration 98 m/s Test duration: frequency cycles, 3 axes offset from each other by 90 octave/min Visual examination No visible damage Revision: 3-Jan-7 3 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

14 SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS TYPE TESTS Shock or impact IEC Pulse shape: half sine Acceleration: 90 m/s Duration of pulse: ms Visual examination No visible damage 5.. Final measurements Capacitance tan Initial measurements Capacitance at khz tan at khz R insulation C/C 0.5 % Increase of tan Compared to values measured in DC voltage test between terminals.5 x U NDC at T amb Duration s Final measurements Capacitance tan R insulation 5.9. Initial measurements Capacitance at khz tan at khz C/C 0.5 % Increase of tan R insulation 50 % of specified values 5.9. Surge discharge test. x U NDC Number of discharges: 5 Time lapse: every min ( min total) DC voltage test between terminals Within 5 min after the surge discharge test.5 x U NDC at T amb, duration s 5.9. Final measurements Capacitance tan at khz 5.. Initial measurements Capacitance at khz tan at khz C/C.0 % tan. x initial tan Compared to values measured in Self healing test.5 x U NDC, duration s Increase the voltage at 0 V/s till 5 clearings occur or until voltage reach max. of.5 x U NDC, for a duration of s 5..3 Final measurements Capacitance tan Initial measurements Capacitance at khz tan at khz C/C 0.5 % tan. x initial tan Compared to values measured in Change of temperature acc. to IEC Damp heat steady state acc. to IEC Test Nb T max. = 85 C T min. = -0 C Transition time: h, equivalent to C/min 5 cycles Test Ca T = 0 C ± C RH = 93 % ± 3 % Duration 56 days DC voltage test between terminals.5 x U NDC at ambient temperature Duration s Final measurements Visual examination No puncturing or flashover Self healing punctures are permitted Capacitance tan at khz C/C.0 % Increase of tan Compared to values measured in Revision: 3-Jan-7 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

15 SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS TYPE TESTS 5..0 Initial measurements Capacitance at khz tan at khz 5.. Thermal stability test under overload conditions Natural cooling T amb ± 5 C. x P max. = (U /) x w x C x tan =. x (I RMS./w x C) x tan with w = x x f for I = I RMS. (see specific reference data) f = khz Duration 8 h Measure the temperature every.5 h during the last 6 hours Temperature rise < C 5.. Final measurements Capacitance tan at khz 5. Resonance frequency Impedance analyzer at T amb measurement Initial measurements Capacitance at khz tan at khz C/C.0 % Increase of tan > 0.9 times the value as specified in typical curve Resonant frequency of this specification 5.5. Endurance test between terminals Sequence.5 x U NAC at T max. = 85 C.5 x U OPAC at 5 C at T max. = 5 C Duration 500 h 00 x discharge at. x î (maximum repetitive peak current in continuous operation).5 x U NAC at T max. = 85 C.5 x U OPAC at 5 C at T max. = 5 C Duration 500 h 5.5. Final measurements Capacitance tan A Initial measurements Capacitance at khz C/C 3.0 % Increase of tan Compared to values measured in A Destruction test sequence for non-segment film High DC voltage test High AC voltage test The capacitors must be put in an oven at T max. = 85 C product enveloped with cheese cloth 3 x U NDC or DC voltage until repetitive product healings occur Duration 5 min AC RMS voltage = x U NAC, with minimum of 50 V AC Duration 5 min Repeat destruction sequence 3 x Audible healings or check healings with oscilloscope A Final measurements Visual examination No puncturing, flashover or burning of the cheese cloth. Self-healing punctures are permitted Revision: 3-Jan-7 5 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

16 SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS TYPE TESTS B Initial measurements Capacitance at khz B Destruction test sequence for segment film High DC voltage test (limited to 00 ma) The capacitors must be put in an oven at T max. = 5 C/ h and cooled down Product enveloped with cheese cloth 3 x U NDC with minimum 000 V DC Duration min Discharge the capacitor Duration min DC power supply capable of obtaining the desired breakdown voltage High AC voltage test AC RMS voltage = x U NAC Duration 5 s The above sequence shall be repeated until the test sample capacitance loss 5 % of its initial measurement in B B Final measurements Visual examination No burning of the cheese cloth. The dielectric must withstand the test sequence conducted. Revision: 3-Jan-7 6 Document Number: 87 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

17 Legal Disclaimer Notice Vishay 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 product. 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 applicable 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, and (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 datasheets and / or specifications may vary in 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 application in which the failure of the Vishay product could result in personal injury or death. Customers using or selling Vishay products not expressly indicated for use in such applications do so at their own risk. Please contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for such applications. No license, express or implied, by estoppel 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. 07 VISHAY INTERTECHNOLOGY, INC. ALL RIGHTS RESERVED Revision: 08-Feb-7 Document Number: 900

Metallized Polypropylene Film Capacitor AC Filtering Radial Type

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