Snap-In Capacitors Compact 105 C B43504
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- Arron Quentin Butler
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1 Snap-In Capacitors Long-life grade capacitors pplications Professional switch-mode power supplies in industrial electronics and in data processing equipment Switch-mode power supplies in entertainment electronics Frequency converters Features High reliability High CU product, extremely compact Low equivalent series resistance ESR Many different case sizes available for each capacitance value Construction Charge-discharge proof, polar luminum case, fully insulated Snap-in solder pins to hold component in place on PC-board Minus pole marking on case surface Minus pole not insulated from case Overload protection (safety vent) Terminals Standard version with 2 terminals 2 lengths available: 6,3 and 4,5 mm 3 terminals: length 4,5 mm (terminal arrangement ensures correct insertion) /02
2 Specifications and characteristics in brief Rated voltage U R Surge voltage U S Rated capacitance C R Capacitance tolerance Dissipation factor tan δ (20 C, 120 Hz) VDC 1,15 U R (for U R 0 VDC) 1,10 U R (for U R 400 VDC) µf ± 20 % M U R 400 VDC: tan δ 0,15 U R 420 VDC: tan δ 0,20 Leakage current I L (5 min, 20 C) I L 0,3 µ C R U 0,7 R µ µf V Self-inductance ESL pprox. 20 nh Useful life Requirements: 105 C; U R ; I~ R > h C/C ± % of initial value 85 C; U R ; > h tan δ 3 times initial specified limit 40 C; U R ; 1,9 I~ R > h I L initial specified limit Failure percentage: 1 % Failure rate: 40 fit ( /h) (for definiton fit, refer to chapter Quality, page 62) Load life test 105 C; U R ; I~ R h Post test requirements: C/C ± 20 % of initial value tan δ 2 times initial specified limit I L initial specified limit Voltage endurance test 105 C; U R h Post test requirements: C/C ± 10 % of initial value tan δ 1,3 times specified limit I L initial specified limit Vibration resistance To IEC , test Fc: displacement amplitude 0, mm, frequency range Hz, acceleration max. 5 g, duration 3 2 h IEC climatic category To IEC 068-1: U R 400 VDC: 40/105/56 ( 40 C/+ 105 C/56 days damp heat test) U R 420 VDC: /105/56 ( C/+ 105 C/56 days damp heat test) Detail specification Sectional specification Similar to CECC 1-9 IEC /02
3 Dimensional drawings Minus pole marking Minus pole marking Mounting holes Mounting holes KL0140-J KL0324-F Snap-in terminals, standard (length 6,3 ± 1mm). lso available in a shorter version with a length of 4,5 1 mm. For packing mode and ordering example see next page. Snap-in capacitors are also available with 3 terminals (length 4,5 1 mm). For packing mode and ordering example see next page. Dimensions (mm) d + 1 l ± pprox. weight (g) Packing units (pieces) Dimensions (mm) d + 1 l ± pprox. weight (g) Packing units (pieces) /02
4 Packing of snap-in capacitors For ecological reasons the packing is pure cardboard. Components can be withdrawn (in full or in part) in the correct position for insertion. Ordering codes Snap-in terminals Version Standard terminals (6,3 ± 1) mm M000 Short terminals (4,5 1) mm M007 3 terminals (4,5 1) mm M002 Identification in 3rd block of ordering code Ordering example: 9107M007 } snap-in capacitor with short terminals 9107M002 } snap-in capacitor with 3 terminals /02
5 Overview of available types U R (VDC) C R (µf) Case dimensions d l (mm) The capacitance and voltage ratings listed above are available in different cases upon request. Other voltage and capacitance ratings are also available upon request /02
6 Technical data and ordering codes U R VDC C R µf Case dimensions d l mm ESR typ Z max 10 khz 40 C 85 C I~ R 1) 105 C Ordering code 2) ,6 1,7 0,84 E27M ,8 1,9 0,93 E77M ,3 2,2 1,1 2337M ,6 2,4 1,2 E2397M ,2 2,8 1,4 E2477M ,5 3,0 1,5 F2477M ,0 3,4 1,6 E67M ,8 3,9 1,9 E2687M ,0 4,0 2,0 F2687M ,6 4,5 2,2 E2827M ,9 4,7 2,3 2827M ,3 4,9 2,4 E2108M ,4 5,6 2,7 E2128M ,9 3,4 E2158M ,9 3,9 E2188M ,1 4,4 E28M ,7 1,8 0,89 27M ,2 2,2 1,1 77M ,7 2,5 1,2 B2337M ,6 2,4 1,2 C2337M ,2 2,8 1,4 2397M ,9 3,3 1,6 2477M ,7 3,2 1,6 B2477M ,5 3,7 1,8 67M ,3 4,2 2,1 2687M ,3 4,2 2,1 B2687M ,2 4,9 2,4 B2827M ,4 5,7 2,8 2108M ,6 6,5 3,2 2128M000 Preferred types 1) 120 Hz conversion factor of ripple current: I~ (120 Hz) = 1,03 I~ () 2) Ordering code for standard terminals (6,3 mm). To determine the ordering code for short terminals (4,5 mm) and 3 terminals (4,5 mm) see page /02
7 U R VDC C R µf Case dimensions d l mm ESR typ Z max 10 khz 40 C 85 C I~ R 1) 105 C Ordering code 2) ,2 0,79 0, M ,4 0,95 0, M ,7 1,1 0, M ,0 1,3 0, M ,9 1,3 0,61 B9107M ,1 1,4 0, M ,5 1,7 0, M ,5 1,7 0,83 B9157M ,0 2,0 0, M ,9 2,0 0,96 B9187M ,4 2,3 1,1 97M ,4 2,3 1,1 B97M ,6 2,4 1,2 C97M ,0 2,7 1,3 9277M ,6 3,1 1,5 9337M ,6 3,1 1,5 B9337M ,2 3,5 1,7 9397M ,0 4,1 2,0 9477M ,8 4,6 2,2 9567M ,66 1,12 0, M ,95 1,31 0, M ,00 1,34 0,65 E0107M , 1,51 0, M ,19 1,47 0,72 E0127M ,58 1,74 0, M ,67 1, 0,88 E0157M ,97 2,00 0, M ,93 1,97 0,96 E0187M000 Preferred types 1) 120 Hz conversion factor of ripple current: I~ (120 Hz) = 1,03 I~ () 2) Ordering code for standard terminals (6,3 mm). To determine the ordering code for short terminals (4,5 mm) and 3 terminals (4,5 mm) see page /02
8 U R VDC C R µf Case dimensions d l mm ESR typ Z max 10 khz 40 C 85 C I~ R 1) 105 C Ordering code 2) ,44 2,31 1,13 07M ,41 2,29 1,12 E07M ,96 2,66 1, 0277M ,58 3,08 1, M ,62 3,11 1,52 E0337M ,18 3,48 1, M ,26 3,54 1,72 E0397M ,02 4,05 1, M ,5 1,0 0, M ,8 1,2 0, M ,0 1,3 0, M ,0 1,3 0,65 B5107M ,1 1,4 0,67 C5107M ,3 1,6 0, M ,7 1,8 0, M ,7 1,8 0,88 B5157M ,8 1,9 0,92 C5157M ,1 2,1 1,0 5187M ,6 2,4 1,2 57M ,6 2,4 1,2 B57M ,6 2,4 1,2 C57M ,1 2,8 1,4 5277M ,1 2,8 1,4 B5277M ,8 3,2 1,6 5337M ,8 3,3 1,6 B5337M ,5 3,7 1,8 5397M ,3 4,2 2,1 5477M000 Preferred types 1) 120 Hz conversion factor of ripple current: I~ (120 Hz) = 1,03 I~ () 2) Ordering code for standard terminals (6,3 mm). To determine the ordering code for short terminals (4,5 mm) and 3 terminals (4,5 mm) see page /02
9 Useful life depending on ambient temperature T under ripple current operating conditions 1) Ι ~ Ι ~ R 3,5 3,0 KL0542-Q 2,5 2,0 1,5 1,0 0, h h h h h h C 120 T Frequency factor of permissible ripple current I~ versus frequency f 1,5 Ι~ f Ι~ KL0699-K 1,3 1,2 1,1 1,0 0,9 0, Hz f 2 1) Refer to page 40 for an explanation on how to interpret the useful life graphs. 3 10/02
10 Frequency characteristics of ESR Typical behavior Impedance Z versus frequency f Typical behavior at 2,5 ESR f KL Ω KL0461-H ESR 2,0 1,5 Z ,0 5 0,5 20 C > C _ µf/450 V 1 µf/400 V 470 µf/0 V Hz 10 4 f 10 _ Hz 10 6 f 4 10/02
11 Herausgegeben von EPCOS G Unternehmenskommunikation, Postfach 17 09, München, DEUTSCHLND ( , FX (0 89) EPCOS G Vervielfältigung, Veröffentlichung, Verbreitung und Verwertung dieser Broschüre und ihres Inhalts ohne ausdrückliche Genehmigung der EPCOS G nicht gestattet. Bestellungen unterliegen den vom ZVEI empfohlenen llgemeinen Lieferbedingungen für Erzeugnisse und Leistungen der Elektroindustrie, soweit nichts anderes vereinbart wird. Diese Broschüre ersetzt die vorige usgabe. Fragen über Technik, Preise und Liefermöglichkeiten richten Sie bitte an den Ihnen nächstgelegenen Vertrieb der EPCOS G oder an unsere Vertriebsgesellschaften im usland. Bauelemente können aufgrund technischer Erfordernisse Gefahrstoffe enthalten. uskünfte darüber bitten wir unter ngabe des betreffenden Typs ebenfalls über die zuständige Vertriebsgesellschaft einzuholen. Published by EPCOS G Corporate Communications, P.O. Box 17 09, Munich, GERMNY ( , FX (0 89) EPCOS G Reproduction, publication and dissemination of this brochure and the information contained therein without EPCOS prior express consent is prohibited. Purchase orders are subject to the General Conditions for the Supply of Products and Services of the Electrical and Electronics Industry recommended by the ZVEI (German Electrical and Electronic Manufacturers ssociation), unless otherwise agreed. This brochure replaces the previous edition. For questions on technology, prices and delivery please contact the Sales Offices of EPCOS G or the international Representatives. Due to technical requirements components may contain dangerous substances. For information on the type in question please also contact one of our Sales Offices.
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