AFK CDE | Alldatasheet
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Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8564 • Fax: (508)996-3830 • www.cde.com Type AFK –55 °C to 105 °C SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105 °C Series FK 220 Capacitance (µF) Voltage Lot No. j6 .3Vdc A1 0Vdc C1 6Vdc E2 5Vdc V3 5Vdc H5 0Vdc J6 3Vdc K8 0Vdc 2A 100Vdc H L W PD 0.3 mm Max. A I I K Specifications –55 °C to +105 °C 6.3, 10, 16, 25, 35, 50, 63, 80 & 100 Vdc 3.3 µF to 6800 µF ±20% @ 120 Hz and +20 °C
0.01 CV or 3 µA @ +20 °C, after two minutes (whichever is greater)
Low Impedance and Long-Life for Filtering, Bypassing and Power Supply Decoupling Highlights
- +105 °C, Up to 5000 Hour Load Life
- Capacitance Range: 3.3 µF to 6800 µF
- Voltage Range: 6.3 Vdc to 100 Vdc Operating Temperature: Rated Voltage: Capacitance: Capacitance Tolerance: Leakage Current: Ripple Current Multiplier: Dissipation Factor: AFK Series Marking Outline Drawing Case Dimensions Add 0.02 per 1000 µF for values greater that 1000 µF Life Test: 2000 h @ 105 °C, 4.0 — 10.0 mm dia. 5000 h @ 105 °C, 12.5 — 18.0 mm dia. ∆ Capacitance ±30% DF: ≤ 200% of limit DCL: ≤ 100% of limit Shelf Test: 1000 h @ 105 °C ∆ Capacitance ±30% DF: ≤ 200% of limit DCL: ≤ 100% of limit Type AFK Capacitors are the best and by a wide margin. With 40% to 60% lower impedance, 30% to 50% smaller case size and more than twice the life compared to low-ESR type AFC, the Type AFK also excels at cold performance down to –55 °C. In addition, this terrific low-impedance performance, approaching low-ESR tantalum capacitors, is at a significant cost savings compared to tantalum. The vertical cylindrical cases facilitate automatic mounting and reflow soldering into the same footprint of like- rated tantalum capacitors except without the need for voltage derating. Case D ± .05 L A ± 0.2 H I W P K Code (max) (ref) (ref) (mm) 6.3V 10 V 16 V 25 V 35 V 50 V 63 V 80 V 100 V Frequency 50/60 Hz 120 Hz 1 kHz 10 kHz 100 kHz
Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8564 • Fax: (508)996-3830 • www.cde.com Type AFK –55 °C to 105 °C
- 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8564 • Fax: (508)996-3830 • www.cde.com SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105 °C Type AFK –55 °C to 105 °C Ratings Table Cap (µF) Catalog Part Number Max. DCL 2 min (µA) Max. Dissipation Factor @120 Hz/20 °C Max. ESR @100 kHz/20 °C (Ω ) Impedance @ 100 kHz/20 °C (Ω) Max. Ripple Current @ 100 kHz/105 °C (mA) Case Code Size D x L (mm) Quantity per Reel
6.3 Vdc ( 8 Vdc Surge )
10 Vdc ( 13 Vdc Surge )
16 Vdc ( 20 Vdc Surge )
Type AFK –55 °C to 105 °C SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105 °C Cap (µF) Catalog Part Number Max. DCL 2 min (µA) Max. Dissipation Factor @120 Hz/20 °C Max. ESR @100 kHz/20 °C (Ω ) Impedance @ 100 kHz/20 °C (Ω) Max. Ripple Current @ 100 kHz/105 °C (mA) Case Code Size D x L (mm) Quantity per Reel
25 Vdc ( 31 Vdc Surge )
35 Vdc ( 44 Vdc Surge )
50 Vdc ( 63 Vdc Surge )
Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8564 • Fax: (508)996-3830 • www.cde.com Type AFK –55 °C to 105 °C
- 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8564 • Fax: (508)996-3830 • www.cde.com SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105 °C Type AFK –55 °C to 105 °C Typical Performance Curves Cap (µF) Catalog Part Number Max. DCL 2 min (µA) Max. Dissipation Factor @120 Hz/20 °C Max. ESR @100 kHz/20 °C (Ω ) Impedance @ 100 kHz/20 °C (Ω) Max. Ripple Current @ 100 kHz/105 °C (mA) Case Code Size D x L (mm) Quantity per Reel
63 Vdc ( 75 Vdc Surge )
80 Vdc ( 100 Vdc Surge )
100 Vdc (125 Vdc Surge )
Type AFK –55 °C to 105 °C SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105 °C Typical Performance Curves Part Numbering System AFK 106 M 16 B 12T –F Type Capacitance Capacitance Voltage Code Case Packaging Code RoHS 105 = 1.0 µF Tolerance 06 = 6.3 Vdc 35 = 35 Vdc Code 12 = Carrier tape Compliant 106 = 10.0 µF M = ±20% 10 = 10 Vdc 50 = 50 Vdc Width (mm) 107 = 100.0 µF 16 = 16 Vdc 63 = 63 Vdc T = Tape & Reel 108 = 1000.0 µF 25 = 25 Vdc 80 = 80 Vdc B = Bulk 2A = 100 Vdc AFK 106 M 16 B 12T –F Type AFK –55 °C to 105 °C SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105 °C Part Numbering System Type Capacitance Capacitance 108 = 1000.0 µF Typical Performance Curves Ratio to 25° C, 120 Hz Value Voltage Code Case Packaging Code RoHS 105 = 1.0 µF Tolerance 06 = 6.3 Vdc 35 = 35 Vdc Code 12 = Carrier tape Compliant 106 = 10.0 µF M = ±20% 10 = 10 Vdc 50 = 50 Vdc Width (mm) 107 = 100.0 µF 16 = 16 Vdc 63 = 63 Vdc T = Tape & Reel 25 = 25 Vdc 80 = 80 Vdc B = Bulk 2A = 100 Vdc Capacitance vs. Temperature and Frequency 3300µF/6.3Vdc (12.5 x 13.5 mm) 0.2 0.4 0.6 0.8 1.2 1.4 Ratio to 25°C, 120 Hz Value 65°C 25°C 85°C 0°C –40°C 45°C –20°C 105 –55°C 10 100 1,000 10,000 100,000 1,000,000 Capacitance vs. Temperature & Frequency 100 µF @ 16 Vdc (6.3 X 5.8 mm)1.2 65°C 25°C 85°C 0°C 105 °C –40 °C 45° –20 °C –55 °C 0.8 0.6 0.4 0.2 10 100 1,000 10,000 100,000 1,000,000 Frequency (Hz)
Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8564 • Fax: (508)996-3830 • www.cde.com Type AFK –55 °C to 105 °C
- 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8564 • Fax: (508)996-3830 • www.cde.com SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105 °C Type AFK –55 °C to 105 °C Typical Performance Curves Type AFK –55 °C to 105 °C Typical Performance Curves SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105 °C C, 120 Hz ValueRatio to 25Ratio to 25°C, 120 Hz Value 100
0.1 Capacitance Change (%)
ESR vs. Temperature and Frequency D.F. (@ 120 Hz) Ratio to 25 C, 120 Hz Value Ratio to 25 C, 120 Hz Value 100 0.1 ESR vs. Temperature and Frequency 100 –40 °C –20 °C 0°C 25°C 45°C 85°C 65°C 105 ° –55 °C –40 °C –20 °C 0°C 25°C 45°C 85°C 65°C 105 °C –55 °C 0.1 10 100 1,000 10,000 100,000 1,000,000 Frequency (Hz) 10 100 1,000 10,000 100,000 1,000,000 Frequency (Hz) Impedance vs Temperature and Frequency 3300 µF /6.3 V (12.5 x13.5mm) Impedance vs. Temperature and Frequency 100 µF @ 16 Vdc (6.3 X 5.8 mm) –40°C 0°C 25°C 65°C85°C 45°C –20°C 105°C –55°C –40 °C 0°C 25°C 65°C 85°C 45°C –20 °C 105 °C –55 °C 0.1 0.01 0.001 10 100 1,000 10,000 100,000 1,000,000 10 100 1000 10000 100000 1000000 Frequency (Hz) Dissipation Factor vs.Frequency (Hz) Capacitance Change vs. Time Temperature(AFK Series Typical Performance) 3 -10 -20 0.01 22 µF @ 6.3 Vdc (4 x 5.4 mm) 100 µF @ 6.3 Vdc ( 6.3 x 5.4 mm) 1500 µF @ 6.3 Vdc (10 x 10.2 mm) 0 500 1000 1500 2000 2500 3000 3500 -60 -10 40 90 140 47 µF @ 6.3 Vdc (4 X 5.8 mm) 100 µF @ 6.3 Vdc (6.3 X 5.8 mm) 1000 µF @ 6.3 Vdc (8 X 10.2 mm) Time (Hours) Temperature (°C) -15 AC 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.
Type AFK –55 °C to 105 °C SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105 °C Type AFK –55 °C to 105 °C Typical Performance Curves SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105 °C C, 120 Hz ValueRatio to 25Ratio to 25°C, 120 Hz Value 100 ESR vs. Temperature and Frequency D.F. (@ 120 Hz) Ratio to 25 C, 120 Hz Value Ratio to 25 C, 120 Hz Value 100 0.1 ESR vs. Temperature and Frequency 100 –40 °C –20 °C 0°C 25°C 45°C 85°C 65°C 105 ° –55 °C –40 °C –20 °C 0°C 25°C 45°C 85°C 65°C 105 °C –55 °C 0.1 10 100 1,000 10,000 100,000 1,000,000 Frequency (Hz) 10 100 1,000 10,000 100,000 1,000,000 Frequency (Hz) Impedance vs Temperature and Frequency 3300 µF /6.3 V (12.5 x13.5mm) Impedance vs. Temperature and Frequency 100 µF @ 16 Vdc (6.3 X 5.8 mm) –40°C 0°C 25°C 65°C85°C 45°C –20°C 105°C –55°C –40 °C 0°C 25°C 65°C 85°C 45°C –20 °C 105 °C –55 °C 0.1 0.01 0.001 10 100 1,000 10,000 100,000 1,000,000 10 100 1000 10000 100000 1000000 Frequency (Hz) Dissipation Factor vs.Frequency (Hz) Capacitance Change vs. Time Temperature(AFK Series Typical Performance) 3 -10 -20 0.01 22 µF @ 6.3 Vdc (4 x 5.4 mm) 100 µF @ 6.3 Vdc ( 6.3 x 5.4 mm) 1500 µF @ 6.3 Vdc (10 x 10.2 mm) 0 500 1000 1500 2000 2500 3000 3500 -60 -10 40 90 140 47 µF @ 6.3 Vdc (4 X 5.8 mm) 100 µF @ 6.3 Vdc (6.3 X 5.8 mm) 1000 µF @ 6.3 Vdc (8 X 10.2 mm) Time (Hours) Temperature (°C) Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8564 • Fax: (508)996-3830 • www . -15 AC 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.