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Dimensions are in inches, millimeters are in parenthesis. Ordering/Part Number Information 719P 222 5 1500 M B 3 – XXX A suffix may be added to denote special construction, marking, packaging, test requirements, etc. Lead Length 1 = 0.187 (4.7) ±0.030 (0.8) 3 = 1.250 (32) Minimum Other specific lead lengths available upon request Lead Style A = Straight Lead B = Hairpin Crimp D = Hockey Stick Crimp Case Code Set code for factory reference. AC Voltage Rating Capacitance Tolerance 9 = ±10%; 5 = ±5%; 3 = ±3%; 2 = ±2%; 1 = ±1% Capacitance Expressed in Picofarads. The first two digits are the significant figures, the third is the number of zeros following (i.e. 222 = 2200 pF = 0.0022 μF) CDE Type Number Identifies basic capacitor design. 71 8P = Round profile 719P = Pressed profile Standard Marking Format Sample Marking on unit CDE719P1500VAC 222J 0515

Description

1500VAC - AC Voltage Rating 222J - Capacitance and Tolerance Code 0515 - Weekly Date Code (i.e. 15th week of 2005) Tolerance codes per EIA standards F ±1% G ±2% H ±3% J ±5% K ±10% CDE Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8561 • Fax: (508)996-3830 Type 718P/719P , Orange Drop®, High Voltage Polypropylene Film/Foil

Application Notes & Considerations Corona: Corona is a small but locally intense electrical discharge that injects charge into the insulating film adjacent to edges of foil/metallization or a location where air is trapped between foil/metallization and the film. The discharge is caused by a voltage gradie nt large enough to ionize molecules in either the film or small air pockets. Each discharge does some small but cumulative damage to the film. Corona is a very important consideration for AC and/or pulse applications where the cumlative damage can rapidly accrue and cause dielectric failure. For a plain film & foil part this will result in a short circuit. However, for a capacitor employing metallized film the “clearing” around th e dielectric failure site results in progressive capacitance loss. The 718 P/719P series utilizes a hybrid film/foil design approach, incorporating the use of extended foil for direct connection of the lead wires and a floating metallized common. Corona Inception Voltage (CIV) is the peak-to-peak voltage at which corona discharge begins; it is also commonly referred to as Corona Start Voltage (CSV). It is traditionally expressed as the RMS value of a sine wave with the above peak-to-peak val ue. It is not practical to try and list all the facts and issues associated with corona, therefore we highly encourage y ou to contact us to discuss your application and the importance of carefully considering the effects of corona. dV/dt (Pulse Rise Time): Pulse Rise Time, commonly referred to as dV/dt, is the maximum guaranteed repetitive rate of voltage change [slew rate ] a capacitor can withstand without dam age during the lifetime of an application, expressed in Volts/μsec or KV/μsec. dV/dt also expresses current pulse capability without requiring a nearly impossible pulse current measurement. Pulse current is only an issue for a pure metallized capacitor where pulse currents above the rated value can destroy the connection to the metallization. With leads welded directly to extended foil, film /foil capacitor dV/dt is only limited by corona inception [AC voltage rating] and application circuit inductance. CDE’s dV/dt ratings are provided to assure capacitors are NEVER operated in corona to assure highest possible reliability in pulse applications. As mentioned above we strongly encourage you to contact us with your questions and/or specific requirements. CDE’s Design Philosophy: The CDE approach is to design and manufacture capacitors to outlast the life of the product they are installed in. Our units are designed and rated to ope rate continuously at the maximum limits stated in our specifications. There are times when an application will push these limits. Our expertise lies in understanding the limits of film capacitors and we welcome the opportunity to assist you in understanding these limits also! CDE Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8561 • Fax: (508)996-3830 Type 718P/719P , Orange Drop®, High Voltage Polypropylene Film/Foil

0.25” (6.4) MAX 1.083 (27.5) ±0.020 (0.5) L MAX Lead Style A 0.060” (1.5) MAX Lead Length 1.407 (35.7) ±0.030 (0.8) Lead Length L MAX 1.344 (34.1) ±0.020 (0.5) L MAX Lead Length 0.25” (6.4) MAX d DIA MAX Lead Style DLead Style B Dimensions are in inches, millimeters are in parenthesis. Lead Styles/Lead Spacings Cap Max dV/dt Peak I Max % D.F. Max ESR (m Ω) Value (µF) Part Number* L MAX DIA MAX Wire (d ) (Volts/µsec) Amps 10KHz 100KHz 10KHz 100KHz Type 718P, 1500 VAC/5000 VDC Sizes/Ratings * For complete part number please refer to Ordering/Part Number Information page. CDE Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8561 • Fax: (508)996-3830 Type 718P/719P , Orange Drop®, High Voltage Polypropylene Film/Foil

0.25” (6.4) MAX 1.083 (27.5) ±0.020 (0.5) L MAX Lead Style A 0.060” (1.5) MAX Lead Length 1.407 (35.7) ±0.030 (0.8) Lead Length L MAX 1.344 (34.0) ±0.020 (0.5) L MAX Lead Length 0.25” (6.4) MAX H MAX d T MAX Lead Style DLead Style B Dimensions are in inches, millimeters are in parenthesis. Lead Styles/Lead Spacings Cap Max dV/dt Peak I Max % D.F. Max ESR (m Ω) Value (µF) Part Number* L MAX T MAX H MAX Wire (d) (Volts/µsec) Amps 10KHz 100KHz 10KHz 100KHz Type 719P, 1500 VAC/5000 VDC Sizes/Ratings * For complete part number please refer to Ordering/Part Number Information page. CDE Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8561 • Fax: (508)996-3830 Type 718P/719P , Orange Drop®, High Voltage Polypropylene Film/Foil

Voltage (RMS) 10 100 1000 Frequency (KHz) 1500 100 1000 10000 Voltage (RMS) 10 100 1000 Frequency (KHz) 1500 100 1000 10000 Voltage (RMS) 10 100 1000 Frequency (KHz) Type 718P RMS Voltage vs. Frequency at 70°C ambient Type 718P RMS Voltage vs. Frequency at 85°C ambient Type 718P RMS Voltage vs. Frequency at 95°C ambient Please refer to Page 8 for important information regarding these performance curves CDE Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8561 • Fax: (508)996-3830 Type 718P/719P , Orange Drop, High Voltage, Polypropylene Film/Foil

Voltage (RMS) 10 100 1000 Frequency (KHz) 1500 100 1000 10000 Voltage (RMS) 10 100 1000 Frequency (KHz) 1500 100 1000 10000 Voltage (RMS) 10 100 1000 Frequency (KHz) Type 719P RMS Voltage vs. Frequency at 70°C ambient Type 719P RMS Voltage vs. Frequency at 85°C ambient Type 719P RMS Voltage vs. Frequency at 95°C ambient Please refer to Page 8 for important information regarding these performance curves CDE Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8561 • Fax: (508)996-3830 Type 718P/719P , Orange Drop®, High Voltage Polypropylene Film/Foil

RMS Voltage vs. Frequency Performance Curve Data And Thermal Considerations With today’s demanding and complex applications it is more critical than ever to have a comprehensive understanding of thermal issues. B ecause thermal environments vary co nsiderably, our approach is to provide RMS voltage versus freque ncy performance curves based on th e following parameters to be utilized as a guideline in specifying the appropriate part:

  • +70°C, +85°C, and +95°C ambient temperatures
  • Pure convection cooling
  • All heat dissipation from the lead wire is added to the capacitor
  • Increased lead wire dissipation at high frequencies is included [skin effect losses] The ambient temperature is the air temperature adjace nt to the capacitor within the application enclosure at the highest exterior temperature permitted by the end user. Since the maximum allowable temperature for polypropylene is +1 05 °C, our performance cur ves are base d on a pow er level that raises t he temperature +20°C from ambient to the hot spot within the capacitor. We realize that the environment assu med by our performance curves is highly un likely to represent that of a real application. We also un derstand that a "pure co nvection" environment is also highl y improbable. There will almost always be a circuit board and other adjacent components that will impede convection based air circulation, and the capac itor under dis cussion will not be the only “heat generating” device present! Beca use of all this " variability" our performance curves are cal culated conservatively. Considerations: The application power level can be compared to the performance curves at a given frequency by the following calculation: (Actual VAC/Rated VAC)2 = Power level relative to performance curve power Temperature rise is directly related to power; power is related to the voltage squared. Since the maximum allowable temper ature for pol ypropylene is +105°C we strongl y recommend that you check t he case temperature of the capacitor un der worst case conditions . The capacitor surface temperature should be less than: Capacitor surface temperature < 0.67 * (105 – T ambient) + T ambient Please contact us for more detailed information a nd methods to optimize allowable voltage in your electrical/thermal environment. We always welcome an engineer-to-engineer discussion of your particular situation! CDE Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8561 • Fax: (508)996-3830 Type 718P/719P , Orange Drop®, High Voltage Polypropylene Film/Foil

Notice and Disclaimer: All product drawings, descriptions, specifications, statements, information and data (collectively, the “Information”) in this datasheet or other publication are subject to change. The customer is responsible for checking, confirming and verifying the extent to which the Information con- tained in this datasheet or other 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 any guaran- tee, warranty, representation or responsibility of any kind, expressed or implied. Statements of suitability for certain applications are based on the knowledge that the Cornell Dubilier company providing such statements (“Cornell Dubilier”) has of operating conditions that such Cornell Dubilier company regards as typical for such applications, but are not intended to constitute any guarantee, warranty or representa- tion regarding any such matter – and Cornell Dubilier specifically and expressly disclaims any guarantee, warranty or representation concerning the suitability for a specific customer application, use, storage, transportation, or operating environment. 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 Cornell Dubilier with reference to the use of any Cornell Dubilier products is given gratis (unless otherwise specified by Cornell Dubilier), and Cornell Dubilier assumes no obligation or liability for the advice given or results obtained. Although Cornell Dubilier strives to apply the most stringent quality and safety standards regarding the design and manufacturing of its products, in light of 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 or other appropriate protective measures) 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 indi- cated in such warnings, cautions and notes, or that other safety measures may not be required.