Highlights. 25, 35, 50, 63, 80 Vdc. RoHS Compliant A (± 0.2) L ( ± 0.3) D (± 0.5) Capacitor Markings Voltage Code

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1 For filtering, Bypassing and Power Supply Decoupling with Long Life Requirements Rated for 15 C, type HZA combines the advantages of aluminum electrolytic and aluminum polymer technology. These hybrid capacitors have the ultra-low ESR characteristics of conductive aluminum polymer capacitors packaged in a V-chip, SMT case with high capacitance and voltage ratings Specifications Capacitance Range 1 to 33 µf Highlights C, Up to 1, Hours Load Life - Low Leakage Current - Very Low ESR and High Ripple Current - 26 C reflow soldering - AEC-Q2 Compliant Capacitance Tolerance 12 Hz/+2 C Rated Voltage Leakage Current (at 2 C) 25, 35, 5, 63, 8 Vdc Low Temperature Characteristics (at 12 Hz) Z(-25 ºC)/Z(+2 ºC): 2 Z(-55 ºC)/Z(+2 ºC): 2.5 I =.1CV or 3 µa max., whichever is greater after 2 minutes I = leakage current in µamps C = rated capacitance in µf V = rated DC Working voltage in Volts Ripple Current Frequency Multiplier Frequency 12 Hz 1 Hz 1, Hz 1 KHz Correction Factor RoHS Compliant Outline Drawing D (±.5) L ( ±.3) A (±.2) B ( ±.2) H (max.) I (ref.) W P (ref.) K C ± /-.2 D ± /-.2 X ± /-.2 F ± ±.2 G ± ±.2 Capacitor Markings Voltage Voltage Vdc Lot, Number: Year, Line, Month E 25 V 35 H 5 J 63 K 8 CDE Cornell Dubilier 165 E. Rodney French Blvd. New Bedford, MA 2744 Phone: (58) Fax: (58)

2 Part Numbering System HZA 227 M 25 F 24T F Packaging Type Capacitance Capacitance Tolerance Voltage 227 = 22 µf M = ±2% 25 = 25 Vdc See Ratings Table 24 = Tape carrier width () T = Tape & Reel RoHS Compliant Indicator Ratings Capacitance (µf) Voltage Rating (Vdc) CDE Part Number MAX DCL (µa) MAX 12 Hz/2 C MAX 1kHz/+2 C (ohms) MAX Ripple 1kHz/+15 C (A rms) D () L () QTY/reel 25 Vdc ( 32 Vdc Surge ) HZA336M25C12T-F C HZA566M25D16T-F D HZA17M25X16T-F X HZA227M25F24T-F F HZA337M25G24T-F G 5 35 Vdc ( 44 Vdc Surge ) HZA226M35C12T-F C HZA276M35D16T-F D HZA476M35D16T-F D HZA686M35X16T-F X HZA157M35F24T-F F HZA277M35G24T-F G 5 5 Vdc ( 63 Vdc Surge ) 1 5 HZA16M5C12T-F C HZA226M5D16T-F D HZA336M5X16T-F X HZA686M5F24T-F F HZA17M5G24T-F G 5 63 Vdc ( 79 Vdc Surge ) 1 63 HZA16M63D16T-F D HZA226M63X16T-F X HZA336M63F24T-F F HZA566M63G24T-F G 5 8 Vdc ( 1 Vdc Surge ) 22 8 HZA226M8F24T-F F HZA336M8G24T-F G 5 CDE Cornell Dubilier 165 E. Rodney French Blvd. New Bedford, MA 2744 Phone: (58) Fax: (58)

3 Load Life C at 12Hz DF at 12 Hz ESR at 1kHz/+2 C Max. ESR at 1kHz/-4 C after Load Life test Shelf Life C at 12 Hz DF at 12 Hz Apply the maximum rated voltage for 1, hrs at +15 C with full rated ripple current. After the test measure the capacitance, DF, DCL and ESR at +2 C. Also measure the ESR at -4 C and 1kHz. Capacitance will be within ±3% of the initial measured value DF will be 2% of the initial specified value ESR will be 2% of the initial specified value C : 2. Ω; D : 1.4 Ω; X :.8 Ω; F :.4 Ω; G :.3 Ω Subject the capacitor to 1 hrs at +15 C without voltage. After the test, return the capacitor to room temperature for two hours and then apply rated voltage for 3 minutes. The after test measurements for capacitance, DF, DCL and ESR at +2 C will meet the following. Capacitance will be within ±3% of the initial measured value DF will be 2% of the initial specified value ESR at 1Khz/+2 C ESR will be 2% of the initial specified value Moisture Resistance C at 12 Hz DF at 12 Hz ESR at 1Khz/+2 C Temperature Cycle Subject the capacitor to 2 hrs at +85 C/85%RH with rated voltage. After the test, return the capacitor to room temperature and humidity for two hours. The after test measurements for capacitance, DF, DCL and ESR at +2 C will meet the following. Capacitance will be within ±3% of the initial measured value DF will be 2% of the initial specified value ESR will be 2% of the initial specified value Subject the capacitor to 1 cycles of temperature change from -55 C to +15 C using the following sequence and durations. C at 12 Hz DF at 12 Hz Appearance Step Temperature Time at Temperature 1-55 ºC 3 minutes 2 +2 ºC 3 minutes max ºC 3 minutes 4 +2 ºC 3 minutes max After the test, return the capacitor to +2 C for one to two hours before measurement. The after test measurements for capacitance, DF, and DCL at +2 C will meet the following; Capacitance will be within ±2% of the initial measured value DF will be 2% of the initial specified value No significant change in appearance CDE Cornell Dubilier 165 E. Rodney French Blvd. New Bedford, MA 2744 Phone: (58) Fax: (58)

4 Reel Dimensions Dia W t Tape Dimensions Size () W ±.3 A ±.2 B +.3/-.2 C ±.5 F ±.1 P ±.1 t1 t2 ±.2 φd +.1/- P1 ±.1 P2 ±.1 W1 ±.1 5 x 5.8 C Size () W ±.3 A ±.2 B +.3/-.2 C ±.5 F ±.1 P ±.1 t1 t2 ±.2 φd +.1/- P1 ±.1 P2 ±.1 W1 ± x 5.8 D x 7.7 X x 1.2 F x 1.2 G CDE Cornell Dubilier 165 E. Rodney French Blvd. New Bedford, MA 2744 Phone: (58) Fax: (58)

5 Recoended Land Dimensions D () A B C C D X F G Recoended Reflow Soldering 3 25 Peak Temperature 3 sec. 23 C 2 16 C 15 7 sec. 2 C 12 seconds 1 5 Time (sec) Dia. () Peak Temperature Time at or above 25 C Time at or above 23 C Time at or above Time at or above 217 C 2 C Number of Reflow Processes C 5 D 6.3 X 6.3 F 8 G 1 26 C 5 seconds 3 seconds 4 seconds 7 seconds 2 1 Notes: 1. For 5 and 6.3 case dia., if the peak temperature does not exceed 255 C the time at or above 25 C can increase to 1 seconds. 2. The capacitors in the 8m and 1 case dia. can withstand 2 reflow processes, if the peak temperature does not exceed 245 C and the time at or above 24 C does not exceed 1 seconds. 3. The 2nd reflow process should be performed after the capacitors have returned to room temperature. 4. Temperature should be measured with a thermal couple placed on the top surface of the capacitor. 5. After reflow soldering, the leakage current, D.F., and e.s.r., will meet the initial specifications, and the capacitance will be within ±1% of the initial measured value when measured at room conditions. CDE Cornell Dubilier 165 E. Rodney French Blvd. New Bedford, MA 2744 Phone: (58) Fax: (58)

6 Capacitor Temperature Characteristics 4 33 µf/25v.2 Capacitance Change (%) D.F Hz Initial Impedance (ohms) KHz 1 KHz 1 KHz Initial E.S.R. (ohms) Hz 12 Hz 1 KHz 1 khz 1 KHz 1 KHz 1 khz 1 khz Life Results 1 33 µf/25v at +15 ºC with rated voltage Spec. Limit: ±3%.5 Spec. Limit:.28 Capacitance Change (%) D.F hours hours Spec. Limit: 8.2 µa DCL (µa) after 2 min at rated voltage hours CDE Cornell Dubilier 165 E. Rodney French Blvd. New Bedford, MA 2744 Phone: (58) Fax: (58)

7 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 contained 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 guarantee, 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 representation 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 indicated in such warnings, cautions and notes, or that other safety measures may not be required.

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