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  800.729.2099 tel www.icecomponents.com (09/13) lm1265hp-1 (a ) (d ) (b ) (e ) 1 . pa r t n o . e xp r essi o n : (b ) d i m e n s i o n c ode (c ) t y p e c ode (a ) s e ri e s c ode 2 . c o n f i g u r a t i o n & d i m e n s i o n s : a superw orld electroni c s ( s ) p te ltd 3 . sc h e m a t i c : (d ) i n d u c t a n c e c o d e : 4 r 7 = 4 . 70uh (e ) t o l e ra n c e c o d e : m = 20%, y = 30% p g . 1 1 2 . 5 0 . 3 b c 6 . 2 0 . 3 d 4 . 7 0 . 3 e u n i t : m / m 3 . 0 3 . 2 5 . 0 5 . 3 1 h ) pa r t t e m p e r a t u r e (am b i e n t + t e m p . r i s e ) : sh o u l d n o t e x c e e d 1 2 5 c u n d e r w o r s t c a s e oper a t ing c ondit ions . f ) h e a t r a t e d c u rr e n t (i rm s ) w i l l c a u s e t h e c o i l t e m p e ra t u re r i s e a p p r o x i m a t e l y t o f 40 c ( k eep 1 m in. ) g ) sa t u r a t i o n c u rr e n t (i s a t ) w i l l c a u s e l 0 t o d ro p 2 0 % t y p i c al. ( k eep quickl y ) . 5 . g e n e r a l sp ec i f i c a t i o n : d ) st o ra g e t e m p . : - 1 0 c t o + 40 c c ) o p e ra t i n g t e m p . : - 4 0 c t o + 125 c e ) h u m i d i t y r a n g e : 5 0 ~ 6 0 % r h (pro d u c t w i t hout taping) b ) a m b i ent t e m p . : 25 c a ) t e s t f req. : l : 1 0 0 kh z / 1 . 0 v (c ) (f ) (f ) f : r o h s c o m pliant 4r 7 a b c d e 4 . m a t e r i a l s : lm 1 2 6 5 h p 4 r 7 m f - (a ) c o re : c a r b o n y l p o w der . (b ) w i re : po l y e s t e r w i r e o r equiv alent (c ) s o l d e r pl a t i n g : 1 0 0 % p b f r ee s older (d ) i n k : h a l o g e n - f r e e k e t one (e ) p a i n t : e p o xy r e s i n (g ) (g ) 1 1 ~ 9 9 : i n t e rn a l c o n t r o l l ed num ber 1229 a b c d e 0 7 . 0 9 . 2 012 s m d pow e r i nduct o r s ( r o h s c o m p lia n t ) dwg n o . : d :\t l dr- s 12015c \ p i c 1265h p ser i es. d w g p i c 1 2 6 5 h p s e r i e s pb lm1265hp series smd power inductors (rohs compliant)
800.729.2099 tel www.icecomponents.com (09/13) lm1265hp-2 superw orld electroni c s ( s ) p te ltd p g . 2 6 . el ec t r i c a l c h a r a c t er i s t i c s : i ndu c t a n c e l p a rt n o . lm1 2 6 5 h p r 33m f 0 0 . 3 3 ( h ) 2 0 % @ 0 a 0 . 6 5 dcr t y p . @ 25 c ( m ? ) i rm s ( a ) 4 6 6 8 ( a ) i s a t t y p . t y p . dcr ( m ? ) m a x . @ 25 c 0 . 8 7 . 0 0 4 . 0 f m 0 4 r p h 5 6 2 1 lm lm lm lm lm lm lm lm lm lm lm lm lm lm 0 . 1 4 6 4 4 9 . 0 5 4 . 0 f m 5 4 r p h 5 6 2 1 2 . 1 3 6 2 4 9 . 0 7 4 . 0 f m 7 4 r p h 5 6 2 1 2 . 1 3 6 1 4 2 9 . 0 0 5 . 0 f m 0 5 r p h 5 6 2 1 5 2 . 1 0 6 0 4 8 . 3 0 2 . 2 f m 2 r 2 p h 5 6 2 1 2 . 4 7 3 2 2 7 . 5 0 3 . 3 f m 3 r 3 p h 5 6 2 1 8 . 6 0 3 8 1 0 . 7 0 7 . 4 f m 7 r 4 p h 5 6 2 1 4 . 8 8 2 5 . 3 1 5 . 8 0 6 . 5 f m 6 r 5 p h 5 6 2 1 0 1 3 2 5 . 2 1 5 . 9 0 8 . 6 f m 8 r 6 p h 5 6 2 1 5 . 1 1 8 1 5 . 1 1 5 . 2 0 5 . 1 f m 5 r 1 p h 5 6 2 1 0 . 3 5 4 7 2 5 . 1 2 8 . 0 f m 2 8 r p h 5 6 2 1 9 . 1 0 5 3 3 2 1 0 2 . 8 f m 2 r 8 p h 5 6 2 1 5 . 5 1 6 1 5 . 0 1 8 4 0 . 3 3 f m 0 3 3 p h 5 6 2 1 8 5 1 1 8 0 8 1 0 0 1 f m 1 0 1 p h 5 6 2 1 0 0 2 5 . 3 5 . 2 0 7 . 0 9 . 2 012 s m d pow e r i nduct o r s ( r o h s c o m p lia n t ) dwg n o . : d :\t l dr- s 12015c \ p i c 1265h p ser i es. d w g p i c 1 2 6 5 h p s e r i e s pb lm1265hp series smd power inductors (rohs compliant)
800.729.2099 tel www.icecomponents.com (09/13) lm1265hp-3 superw orld electroni c s ( s ) p te ltd p g . 3 7 . c h a r a c t e r i st i c s c u r ves : s m d pow e r i nduct o r s ( r o h s c o m p lia n t ) dwg n o . : d :\t l dr- s 12015c \ p i c 1265h p ser i es. d w g p i c 1 2 6 5 h p s e r i e s 0 1 3 . 6 27. 2 40. 8 5 4 . 4 6 8 d c c u r r e n t ( a ) 0 0 . 1 0 . 2 0 . 3 0 . 4 0 . 5 i ndu c t a n c e ( u h ) 0 1 0 2 0 3 0 4 0 5 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - r 3 3 lm1 2 6 5 h p r 33m f 0 8 1 6 2 4 3 2 4 0 4 8 5 6 6 4 d c c u r r e n t ( a ) 0 0 . 2 0 . 4 0 . 6 0 . 8 i ndu c t a n c e ( u h ) 0 3 0 6 0 9 0 1 2 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - r 4 0 lm1 2 6 5 h p r 40m f 0 12. 6 25. 2 37. 8 5 0 . 4 6 3 d c c u r r e n t ( a ) 0 0 . 1 6 0 . 3 2 0 . 4 8 0 . 6 4 0 . 8 i n d u c t a n c e ( u h ) 0 2 4 4 8 7 2 9 6 1 2 0 t e m p . r i s e ( o c ) t m p c 1265 h p - r 4 5 lm1 2 6 5 h p r 45m f 0 9 1 8 2 7 3 6 4 5 5 4 6 3 d c c u r r e n t ( a ) 0 0 . 2 0 . 4 0 . 6 0 . 8 1 i ndu c t a n c e ( u h ) 0 2 0 4 0 6 0 8 0 1 0 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - r 4 7 lm1 2 6 5 h p r 47m f 0 9 1 8 2 7 3 6 4 5 5 4 6 3 d c c u r r e n t ( a ) 0 0 . 2 0 . 4 0 . 6 0 . 8 1 i ndu c t a n c e ( u h ) 0 2 0 4 0 6 0 8 0 1 0 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - r 5 0 lm1 2 6 5 h p r 50m f 0 1 0 2 0 3 0 4 0 5 0 d c c u r r e n t ( a ) 0 0 . 3 0 . 6 0 . 9 1 . 2 1 . 5 i ndu c t a n c e ( u h ) 0 3 0 6 0 9 0 1 2 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - r 8 2 lm1 2 6 5 h p r 82m f 0 7 . 0 9 . 2 012 pb lm1265hp series smd power inductors (rohs compliant)
800.729.2099 tel www.icecomponents.com (09/13) lm1265hp-4 superw orld electroni c s ( s ) p te ltd p g . 4 7 . c h a r a c t e r i st i c s c u r ves : 0 7 . 0 9 . 2 012 s m d pow e r i nduct o r s ( r o h s c o m p lia n t ) dwg n o . : d :\t l dr- s 12015c \ p i c 1265h p ser i es. d w g p i c 1 2 6 5 h p s e r i e s 0 9 1 8 2 7 3 6 4 5 d c c u r r e n t ( a ) 0 0 . 6 1 . 2 1 . 8 2 . 4 3 i ndu c t a n c e ( u h ) 0 3 0 6 0 9 0 1 2 0 1 5 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - 1 r 5 lm1 2 6 5 h p 1 r 5 m f 0 1 0 2 0 3 0 4 0 d c c u r r e n t ( a ) 0 1 2 3 4 i ndu c t a n c e ( u h ) 0 3 0 6 0 9 0 1 2 0 1 5 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - 2 r 2 lm1 2 6 5 h p 2 r 2 m f 0 7 1 4 2 1 2 8 3 5 d c c u r r e n t ( a ) 0 1 2 3 4 5 6 7 i ndu c t a n c e ( u h ) 0 3 0 6 0 9 0 1 2 0 1 5 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - 3 r 3 lm1 2 6 5 h p 3 r 3 m f 0 8 1 6 2 4 3 2 d c c u r r e n t ( a ) 0 1 2 3 4 5 6 7 8 i ndu c t a n c e ( u h ) 0 3 0 6 0 9 0 1 2 0 1 5 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - 4 r 7 lm1 2 6 5 h p 4 r 7 m f 0 4 . 6 9 . 2 13. 8 1 8 . 4 2 3 d c c u r r e n t ( a ) 0 2 4 6 8 1 0 i n duc t a n c e ( u h ) 0 1 0 2 0 3 0 4 0 5 0 t m p c 1 265h p - 5 r 6 m g lm1 2 6 5 h p 5 r 6 m f 0 4 . 6 9 . 2 13. 8 18. 4 2 3 d c c u r r e n t ( a ) 0 3 6 9 1 2 i ndu c t a n c e ( u h ) 0 3 0 6 0 9 0 1 2 0 1 5 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - 6 r 8 lm1 2 6 5 h p 6 r 8 m f pb lm1265hp series smd power inductors (rohs compliant)
800.729.2099 tel www.icecomponents.com (09/13) lm1265hp-5 superw orld electroni c s ( s ) p te ltd p g . 5 7 . c h a r a c t e r i st i c s c u r ves : 0 7 . 0 9 . 2 012 s m d pow e r i nduct o r s ( r o h s c o m p lia n t ) dwg n o . : d :\t l dr- s 12015c \ p i c 1265h p ser i es. d w g p i c 1 2 6 5 h p s e r i e s 0 4 8 1 2 1 6 d c c u r r e n t ( a ) 0 3 6 9 1 2 1 5 i ndu c t a n c e ( u h ) 0 2 0 4 0 6 0 8 0 1 0 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - 8 r 2 lm1 2 6 5 h p 8 r 2 m f 0 2 . 2 4 . 4 6 . 6 8 . 8 1 1 d c c u r r e n t ( a ) 0 1 0 2 0 3 0 4 0 5 0 i ndu c t a n c e ( u h ) 0 1 6 3 2 4 8 6 4 8 0 t m p c 1 265h p - 330 m g lm1 265 h p3 30m f 0 0 . 7 1 . 4 2 . 1 2 . 8 3 . 5 d c c u r r e n t ( a ) 0 3 0 6 0 9 0 1 2 0 1 5 0 i ndu c t a n c e ( u h ) 0 6 1 2 1 8 2 4 3 0 t e m p . r i s e ( o c ) t m p c 1 2 65h p - 101 lm1 265 h p1 01m f pb lm1265hp series smd power inductors (rohs compliant)
800.729.2099 tel www.icecomponents.com (09/13) lm1265hp-6 p g. 6 superworld electronics (s) pte ltd 8. reliability and test condition humidity resistance thermal shock test high temperature reliability test measure at room temperature after placing for 2 to 3 hrs. h umi di ty : 85 3% rh time : 1000 12 hours temperature : 85 2 c 3 2 1 total : 300 cycles s tep conditions of 1 cycle. room temperature + 125+ 2/ -0 -40+0/-2 15 1 15 1 temperature ( c) times (min.) measured at room temperature after placing for 2 to 3hrs time : 1000 12 hours temperature : 125 2 c refer to standard electrical characteristics list performance electrical characteristics test saturation current (isat) heat rated current (irms) dcr inductance item hp4284a, ch11025, ch3302, ch 1320, ch1320s ch16502, agilent33420a micro-ohm meter. lcr meter. test condition vibration test this cycle shall be performed 12 times in each of three amplitude: parts mounted within 2" from any secure point. frequency : 10-2000-10hz for 20min. (mil-prf-27) (aec-q200-rev c) temperature : 260 5 c, 20~40 sec onds duration : 5 minutes preheat : 150 5 c reflow test e l ec tri c s pec i fi c ati on should be satisfied solder test after dip into flux dip into solder 235 5 c, 4 1sec onds flux, solder for lead free (ansi/j-std-002c met hod b) terminals should be covered by over 95% solder on visual inspection. 2. temperature measured by digital surface thermometer 1. applied the allowed dc current(keep 1min). approximately t(c ) without core loss irms (a ) w i l l c aus e the c oil temperature rise isat(a) will cause lo to drop l(%) (keep quickly). directions and times : x, y, z directions for 20 min. w it hin <0.2 measured at room temperature after placing for 2 to 3hrs (aec-q200-rev c) exposure test mutually perpendicular directions. (total 12 hours) (mil-std-202 method 204 d test c ondition b) (ipc/jedec j-std-020c) l20% typical. approximately t 40c Q low temperature measured at room temperature after placing for 2 to 3hrs time : 500 12 hours temperature : -40 2 c life test 07.09.2012 smd power inductors (rohs compliant) dwg no. : d:\tldr-s12015c\pic 1265hp series.dwg pic1265hp series pb lm1265hp series smd power inductors (rohs compliant)
800.729.2099 tel www.icecomponents.com (09/13) lm1265hp-7 superworld electronics (s) pte ltd p g. 7 9. soldering and mounting : c) never contact the ceramic with the iron tip e) use a 20 watt soldering iron with tip diameter of 1.0mm d) 1.0mm tip diameter (max) f) limit soldering time to 4~5 secs. 9-2.2 soldering iron (figure 2) : in the event that a soldering iron must be employed the following precautions are recommended. products attachment with soldering iron is discouraged due to the inherent process control limitations. recommended temperature profiles for re-flow soldering in figure 1. mildly activated rosin fluxes are preferred. the minimum amount of solder can lead to damage from the stresses caused by the difference in coefficients of expansion between solder, chip and substrate. our terminations are suitable for all wave and re-flow soldering systems. if hand soldering cannot be avoided, the preferred technique is the utilization of hot a) preheat circuit and products to 150 c. air soldering tools. 9-2.1 solder re-flow : note : b) 355 c tip temperature (max) 14.2 9-2. soldering 5.0 8.0 9-1. recommended pc board pattern temperature c o ve r 1 m in . g rad ual cooling within 4-5s 350 150 preheating soldering cooling natural time(sec.) 60~150s 20~40s soldering temperature c 4 80s max. 60~180s 150 25 tp(26 0 c/40 s max.) 217 200 preheating cooling natural figure 1. re-flow soldering: 3 times max. figure 2. hand soldering: 1 times max. 07.09.2012 smd power inductors (rohs compliant) dwg no. : d:\tldr-s12015c\pic 1265hp series.dwg pic1265hp series pb lm1265hp series smd power inductors (rohs compliant)
800.729.2099 tel www.icecomponents.com (09/13) lm1265hp-8 superw orld electroni c s ( s ) p te ltd p g . 8 1 0 . p a c k a g i n g i n f o r m a t i o n : a z ( mm) 7 . 0 0 . 1 1 0 -3 . p a c k a g i n g q u a n t i t y lm1 265 s e r i e s a o ( mm) 1 . 0 0 . 6 1 1 . 0 9 . 2 1 p ( m m ) b z ( mm) 1 3 . 0 0 . 1 b o ( mm) 1 4 . 1 0 . 1 k o ( mm) 7 . 0 0 . 1 2 4 0 . 3 w ( m m ) 1 0 - 2 t a p e d i m e n s ion 24. 0 0 . 5 a ( m m ) 13" x 2 4 m m t y p e 100 2 . 0 b ( m m ) d d ( m m ) 13. 5 0 . 5 330 c ( m m ) e m bo sse d c ar r i er b a c o ver t ape 1 0 - 1 . r eel d i men s ion lm1 265 4000 1000 c a r t o n c h i p / r eel i nner b o x s i ze 500 2 . 0 0 . 5 ? c 4 . 0 1 . 5 2 . 0 4 r 7 d / c 1 1 . 5 0 . 1 f ( m m ) b 0 t b z a 0 a z 3 f w p 1 . 7 5 d / c d / c d / c d / c d / c 0 . 3 5 0 . 0 5 t ( m m ) 0 7 . 0 9 . 2 012 s m d pow e r i nduct o r s ( r o h s c o m p lia n t ) dwg n o . : d :\t l dr- s 12015c \ p i c 1265h p ser i es. d w g p i c 1 2 6 5 h p s e r i e s 4 r 7 4 r 7 4 r 7 4 r 7 4 r 7 pb lm1265hp series smd power inductors (rohs compliant)
800.729.2099 tel www.icecomponents.com (09/13) lm1265hp-9 superworld electronics (s) pte ltd 10-4. tearing off force the force for tearing off cover tape is 10 to 130 grams in the arrow direction under the following conditions. a) products should be handled with care to avoid damage or contamination from perspiration and skin oils. 1. storage conditions : to maintain the solderabililty of terminal electrodes : a) temperature and humidity conditions : less than 30 c and 70% rh. b) recommended products should be used within 6 months from the time of delivery. c) the packaging material should be kept where no chlorine or sulfur exists in the air. b) the use of tweezers or vacuum pick up is strongly recommended for individual components. c) bulk handling should ensure that abrasion and mechanical shock are minimized. 2. transportation : application notice top cover tape f base tape 1 6 5 t o 1 8 0 room temp. ( c) 5 ~35 r oo m hu midity (%) 45~85 tearing speed (mm/min) 300 room atm (hpa) 860~1060 p g. 9 (referenced ansi/eia-481-c-2003 of 4.11 standard) 07.09.2012 smd power inductors (rohs compliant) dwg no. : d:\tldr-s12015c\pic 1265hp series.dwg pic1265hp series pb lm1265hp series smd power inductors (rohs compliant)


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