Type AFK, -55 C to 105 C SMT Aluminum Electrolytic Capacitors - Lowest E.S.R., 105 C
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1 hip and SMT apacitors Type AFK, -55 to 05 SMT Aluminum Electrolytic apacitors - Lowest E.S.R., 05 Lowest ESR and Long Life for Filtering, Bypassing, Power Supply Decoupling Specifications Operating Temperature: Rated Voltage: apacitance: apacitance Tolerance: Leakage urrent: Ripple urrent Multiplier: Dissipation Factor: Life Test: ase Dimensions ighlights +05, Up to 5000 our Load Life apacitance Range: 3.3 µf to 6800 µf Voltage Range: 6.3 Vdc to 00 Vdc -55 to , 0, 6, 25, 35, 50, 63, 80 & 00 Vdc 3.3 µf to 6800 µ F 20 z and V or 3 +20, after two minutes (whichever is greater) Frequency 6.3 V 0 V 6 V 25 V 35 V 50 V 63 V 80 V 00 V Add 0.02 per 000 µf for values greater than 000 µf , mm dia , mm dia. apacitance ±30% DF: 200% of limit DL: 00% of limit Shelf Life: apacitance ±30% DF: 200% of limit DL: 00% of limit AFK Series Marking apacitance (µf) Voltage j A E V J K 2A 6.3Vdc 0Vdc 6Vdc 25Vdc 35Vdc 50Vdc 63Vdc 80Vdc 00Vdc 220 FK Lot No. Series Type AFK apacitors 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 AF, the Type AFK also excels at cold performance down to -55. 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. 50/60 z 20 z kz 0 kz 00 kz Outline Drawing D K 0.3 mm Max. A ase ode D ±.05 L A ± 0.2 (max) I (ref) W P (ref) K B ± ± / ± ± /-0.20 D ± ± /-0.20 X ± ± /-0.20 E ± ± /-0.20 F ± ± ±0.20 G ± ± ± ± ± ±0.30 P ± ± ±0.30 R ± ± ±0.30 L P (mm) W I I.020 (508) , Fax (508) ORNELL DUBILIER Your Source For apacitor Solutions
2 Type AFK, -55 to 05 SMT Aluminum Electrolytic apacitors - Lowest E.S.R., 05 Ratings Table Max. Max. Max. Max. Dissipation Impedance Ripple urrent ap atalog DL ase Size (mm) Quantity µf Number A/2 20 z kz ode D x L per Reel min) 20 (Ω) ( Ω ) (ma) 6.3 Vdc ( 8 Vdc Surge) 22 AFK226M06B2T B 4x AFK476M06B2T B 4x AFK476M062T x AFK07M062T x AFK07M06D6T D 6.3x AFK227M06D6T D 6.3x AFK337M06X6T X 6.3x AFK337M06E6T E 8x AFK477M06F24T F 8x AFK08M06F24T F 8x AFK58M06G24T G 0x AFK338M0632T x AFK688M06P44T P 6x Vdc (3 Vdc Surge) 22 AFK226M0B2T B 4x AFK336M0B2T B 4x AFK336M02T x AFK57M0D6T D 6.3x AFK227M0X6T X 6.3x AFK227M0E6T E 8x AFK337M0F24T F 8x AFK477M0F24T F 8x AFK08M0G24T G 0x AFK228M032T x AFK478M0P44T P 6x AFK688M0R44T R 8x Vdc ( 20Vdc Surge) 0 AFK06M6B2T B 4x AFK226M6B2T B 4x AFK226M62T x AFK476M62T x AFK476M6D6T D 6.3x AFK686M6D6T D 6.3x AFK07M6D6T D 6.3x AFK57M6X6T X 6.3x AFK227M6X6T X 6.3x AFK227M6E6T E 8x AFK337M6F24T F 8x AFK477M6F24T F 8x AFK687M6G24T G 0x AFK58M632T x AFK338M6P44T P 6x AFK478M6R44T R 8x Vdc ( 3 Vdc Surge) 0 AFK06M25B2T B 4x AFK226M252T x AFK336M252T x AFK336M25D6T D 6.3x AFK476M25D6T D 6.3x AFK686M25D6T D 6.3x AFK07M25X6T X 6.3x AFK07M25E6T E 8x AFK57M25F24T F 8x AFK227M25F24T F 8x AFK337M25F24T F 8x AFK477M25G24T G 0x AFK08M2532T x AFK228M25P44T P 6x AFK338M25R44T R 8x hip and SMT apacitors ORNELL DUBILIER Your Source For apacitor Solutions (508) , Fax (508)
3 hip and SMT apacitors Type AFK, -55 to 05 SMT Aluminum Electrolytic apacitors - Lowest E.S.R., 05 Ratings Table Max. Max. Max. Max. Dissipation Impedance Ripple urrent ap atalog DL ase Size (mm) Quantity µf Number (µa/2 20 z kz ode D x L per Reel min) 20 Ω Ω ma) 35 Vdc (44 Vdc Surge) 4.7 AFK475M35B2T B 4x AFK06M35B2T B 4x AFK06M352T x AFK226M352T x AFK336M35D6T D 6.3x AFK476M35D6T D 6.3x AFK686M35X6T X 6.3x AFK07M35X6T X 6.3x AFK07M35F24T F 8x AFK57M35F24T F 8x AFK227M35F24T F 8x AFK337M35G24T G 0x AFK477M3532T x AFK687M3532T x AFK58M35P44T P 6x Vdc (63 Vdc Surge) 4.7 AFK475M50B2T B 4x AFK06M502T x AFK06M50D6T D 6.3x AFK226M50D6T D 6.3x AFK336M50X6T X 6.3x AFK336M50E6T E 8x AFK476M50X6T X 6.3x AFK476M50E6T E 8x AFK07M50F24T F 8x AFK57M50G24T G 0x AFK227M50G24T G 0x AFK337M5032T x AFK687M50P44T P 6x AFK08M50P44T P 6x Vdc (75 Vdc Surge) 4.7 AFK475M632T x AFK06M63D6T D 6.3x AFK226M63X6T X 6.3x AFK226M63E6T E 8x AFK336M63F24T F 8x AFK476M63F24T F 8x AFK686M63G24T G 0x AFK07M63G24T G 0x AFK57M6332T x AFK227M6332T x AFK477M63P44T P 6x AFK687M63R44T R 8x Vdc (00 Vdc Surge) 3.3 AFK335M802T x AFK475M80D6T D 6.3x AFK06M80X6T X 6.3x AFK06M80E6T E 8x AFK226M80F24T F 8x AFK336M80F24T F 8x AFK476M80G24T G 0x AFK686M8032T x AFK07M8032T x AFK57M8032T x AFK337M80P44T P 6x AFK477M80R44T R 8x Vdc (25 Vdc Surge) 22 AFK226M2AF24T F 8x AFK336M2AG24T G 0x AFK476M2A32T x AFK686M2A32T x AFK07M2AP44T P 6x AFK57M2AP44T P 6x AFK227M2AR44T R 8x AFK337M2AR44T R 8x Part Numbering System AFK 06 M 6 B 2T Type apacitance 05 =.0 µ F 06 = 0 µ F 07 = 00 µf 08 = 000 µf apacitance Tolerance M = ±20% Voltage ode 06 = 6.3 Vdc 0 = 0 Vdc 6 = 6 Vdc 25 = 25 Vdc 2A = 00 Vdc 35 = 35 Vdc 50 = 50 Vdc 63 = 63 Vdc 80 = 80 Vdc ase ode Packaging ode 2 = arrier Tape Width (mm) T = Tape & Reel B = Bulk.022 (508) , Fax (508) ORNELL DUBILIER Your Source For apacitor Solutions
4 Type AFK, -55 to 05 SMT Aluminum Electrolytic apacitors - Lowest E.S.R., 05 Typical Performance urves hip and SMT apacitors.6 apacitance vs. Temperature & Frequency Vdc (2.5 X 3.5 mm).2 apacitance vs. Temperature & Frequency 00 6 Vdc (6.3 X 5.8 mm) Ratio to 25, 20 z Value ,000 0,000 00,000,000,000 Frequency (z) Ratio to 25, 20 z Value ,000 0,000 00,000,000,000 Frequency (z) 00 ESR vs. Temperature and Frequency 3300 Vdc (2.5 X 3.5 mm) 00 ESR vs. Temperature and Frequency 00 6 Vdc (6.3 X 5.8 mm) Ratio to 25, 20 z Value Ratio to 25, 20 z Value ,000 0,000 00,000,000,000 Frequency (z) ,000 0,000 00,000,000,000 Frequency (z) 0 Impedance vs. Temperature and Frequency 3300 Vdc (2.5 X 3.5 mm) 0 Impedance vs. Temperature and Frequency 00 6 Vdc (6.3 X 5.8 mm) Ratio to 25, 20 z Value Ratio to 25, 20 z Value ,000 0,000 00,000,000,000 Frequency (z) ,000 0,000 00,000,000,000 Frequency (z) ORNELL DUBILIER Your Source For apacitor Solutions (508) , Fax (508)
5 hip and SMT apacitors Type AFK, -55 to 05 SMT Aluminum Electrolytic apacitors - Lowest E.S.R., 05 Typical Performance urves.4 apacitance vs. Temperature & Frequency Vdc (8 X 6.5 mm) 5 apacitance hange vs.temperature (Typical Performance AFK 20 z) Ratio to 25, 20 z Value apacitance hange (%) µ 6.3 Vdc (4 X 5.8 mm) 00 µ 6.3 Vdc (6.3 X 5.8 mm) 000 µ 6.3 Vdc (8 X 0.2 mm) 33 µ 80 Vdc (8 X 0.2 m m) ,000 0,000 00,000,000,000 Frequency (z) Temperature ( ) 00 ESR vs. Temperature and Frequency Vdc (8 X 6.5 mm) 3 Dissipation Factor vs.temperature (Typical Performance AFK 20 z) Ratio to 25, 20 z Value 0 ñ55 ñ40 ñ D.F. (@ 20 z) 2 47 µ 6.3 Vdc (4 X 5.8 mm) 00 µ 6.3 Vdc (6.3 X 5.8 mm) 000 µ 6.3 Vdc (8 X 0.2 mm) ,000 0,000 00,000,000,000 Frequency (z) Temperature ( ) 0 Impedance vs. Temperature and Frequency Vdc (8 X 6.5 mm) 5 apacitance hange vs. Time (Typical Performance for AFK Series) 22 µ 6.3 Vdc (4 x 5.4 mm) Ratio to 25, 20 z Value ,000 0,000 00,000,000, apacitance hange (%) µ 6.3 Vdc ( 6.3 x 5.4 mm) 500 µ 6.3 Vdc (0 x 0.2 mm) Frequency (z) Time (ours).024 (508) , Fax (508) ORNELL DUBILIER Your Source For apacitor Solutions
6 AVS, AA, AF, AFK, AD, AEB Tape and Reel Specifications Tape Specifications omponent Orientation Polarity Stripe (-) athode 4 ± 0..5 dia.75 ± t ± 0.2 W ± 0.3 B ± 0.2 F ± 0. A ± 0.2 P (mm) ase ode W A B P F t A B D X E F G ±0. 4.0±0..5± D±0.2.75±0. F±0. W±0.3 S±0. A±0.5 ±0.5 P±0. B±0.5 (mm) ase ode W A B D F P S J K L P R S U
7 AVS, AA, AF, AFK, AD, AEB Tape and Reel Specifications Reel Specifications E B R:.0 mm (.039 in.) D t A W ase ode A B D E W t A, B size 380±2 50 min 3.0± ± ±0.5 4± 3.0, D, E, X size 380±2 50 min 3.0± ± ±0.5 8± 3.0 F, G size 380±2 50 min 3.0± ± ±0.5 26± 3.0 J, K,, L size 330±2 50 min 3.0± ± ±0.5 34± 3.0 P, R, S, U size 330±2 50 min 3.0± ± ±0.5 46± 3.0 (mm) Land Pattern: B A B (mm) ase ode A B A B D E F G J, K L P R, U S
8 AVS, AA, AF, AFK, AD, AEB Reflow Solder & ase Dimensions Reflow Soldering Temperature Profile: Peak Temp. (see chart right) seconds Preheat 5 seconds maximum Maximum 200 (see chart right) ase Peak Max. Time ode Temp ( 200 (Sec.) A, B,, D, X E, F, G, J, K, L, P R, S, U Time Outline Drawing K 0.3 mm Max. A I D P I L W ase Dimensions (mm) ase ode D ± 0.5 L A ± 0.2 (max) I (ref) W P (ref) K A , ± /-0.20 B , ± / , ± /-0.20 D , ± /-0.20 X ± ± /-0.20 E ± ± /-0.20 F ± ± ± 0.20 G ± ± ± ± ± ± 0.30 J ± ± 0.20 K ± ± 0.20 L ± ± ± 0.30 P ± ± ± 0.30 R ± ± ± 0.30 S ± ± ± 0.30 U ± ± 0.30 * ,-0.2 for AFK and AD Series
9 V-hip eaning and oating Guide eaning Below is a table discribing the usable solvents for cleaning a P board containing V-hips. Table Recommended Symtoms Solvent type Name Manufacturer use level of Damage Water Base Water Distilled Water None Alkaline Aqua eaner 20SEP Sanei 2 Pine Alpha ST-00S Aralaw a Kasei Kogyo 2 ean-thru None, though Surface active ean-thru 750L Kao orporation 2 marking ink agent ean-thru 70M 2 may fade Sun-elec B-2 Sanyo Kasei 2 DK be-clean W-5790 Dai-Ichi Kogyo Seiyaku 2 Solvent Base Petroleum old-cleaner P3-375 enkel akusui 3 based Techno-cleaner 29 Seiwa Sangyo 3 hydrocarbon Axarel 32 Mitsui DF 3 Alcohol base Isopropyl Alcohol None Silicon base Techno-care FRW-7 3 None if used in Techno-care FRW-7 Toshiba orporation 3 combination (Techno-care FRV-00) 3 ontains Asashi-clean AK-225AES Ashahi Glass 3 alogenated F's subject hydrocarbon to F4B-MS Dalkin Kogyo 3 environmental regulations Telpen base Telpen-cleaner E-7R Nippon Alpha Metals 3 swelled seal swellling on sealing rubber rinse and dry well after cleaning Use level Recommendation Number eaning is possible 2 eaning is possible (markings may fade) 3 eaning is possible (Use caution. and 2 are better choices) V-hips may be immersed for 5 minutes, safely, in Level &2 solvents. Use Level 3 solvents with caution. Do not use chlorine-based halogenated cleaning solvents, adhesives or coating agents. When halogenated chlorine-based solvents are used in the cleaning process, free clorine is liberated from the solvent. This chlorine causes corrosion and deterioration of the aluminum inside the capacitor Dangers of Free-hlorine : After the solvent dries, the chlorine remains on the capacitor seal, the chlorine slowly permeates into the capacitor element causing corrosion and damage that happens slowly. It may take some time before a failure is apparent. A representation of the chemical reaction is on the following page.
10 V-hip eaning and oating Guide Free-chlorine Diagram: Electrolysis reaction + (2) hlorosen + + = Dichloroethane Dicloroethylene Fig. Decomposed reaction of cleaning solvents (Free-chlorine) Reaction of Free-chlorine and Aluminum ombined free chlorine and hydrogen become hydrochloric acid, but it has high dissociation and most of it becomes chlorine ions. These chlorine ions react with the aluminum. The order of the reactions is represented below..) ydration of oxide film AlO3 + 32O > 2Al(O)3 2.) Reaction of hydrated oxide film and chlorine (Dissolution of film) Al(O)3 + 3 > Al3 + 32O 3.) Reaction of aluminum and hydrochloric acid (Dissolution of aluminum) Al + 3 > Al3 + 3/22 4.) Precipitation of aluminum hydroxide Al3 + 32O > Al(O)3 + 3 The entire reaction can be summerized as the following: Al + Al2O O > 2Al(O)3 + Al3 + Al3 + 3/2 Therefore the compounds produced by the reactions are aluminum hydroxide and hydrochloric acid from reaction #4; the hydrochloric acid is not consumed and acts as a catalyst.
11 V-hip eaning and oating Guide Table 2 Solvents that should not be used omposition Boiling Point ( ) ommon Name..-Trichloroethane 74. hlorosen Trichloroethylene 87.2 Trichlene Tetrachloroethylene 2. Perchloroethylene Additional eaning Notes:.) Solvents containing F s destroy the ozone layer and should be avoided to protect the global environment. 2.) To avoid solvent residue between the capacitor s seal and the P board, make sure the assembly is dried thoroughly immediately after cleaning. oating Below is a list of coatings that are safe for use with V-hips Table 3 Manufacturer Material oating Material Name itachi hemical Boxy Brown Acrylic Acrylic Taffi-4, Taffi-47 umi Seal B66 Urethane Urethane Taffi-54 umi Seal A27 Dow orning Silicon Perugan Z, Perugan Nihon Zeon Urethane Quinate System 60B Influence of oating Materials oating materials are typically used for insulation, waterproofing, dustproofing and rustproofing. When coating materials are selected there are factors to prevent internal corrosion (chlorine reaction with aluminum) while the capacitor is functioning. The following steps will help prevent this damage to the capacitor. A.) orrosion Reaction Avoid halogen solvents which permeate the capacitor s seal, releasing chlorine which reacts with the aluminum inside the capacitor. B.) Selecting a oating Material It is necessary to select a coating material that contains no chlorine. The coating consists of the main ingredient which could be urethane resin, acrylic resin or other polymer, a solvent and other additives such as flameproofing agents.
12 V-hip eaning and oating Guide The coating s solvent dries and diffuses into the rubber seal of the capacitor, therefore halogenated hydrocarbon solvents containing chloride should not be used. Similar to the solvent, additives can permeate into the capacitor through the rubber seal. Ingredients in many additives might not be listed, therefore use caution when choosing an additive..) Other oncerns Solvents and additives are subject to change without notice. Make sure ingredients are identified. Avoid coating a substrate after cleaning it with a halogenated hydrocarbon. The coating will prevent the remaining solvent from diffusing which may cause corrosion.
55 C to +105 C 6.3, 10, 16, 25, 35, 50, 63, 80 & 100 Vdc. Shelf Test: C. 0.3 mm Max. A
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