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  tdk mlcc us catalog version b11 cll series ultra low inductance capacitors type: cllc1a clle1a issue date: april 2011
reminders please read before using this product safety reminders tdk mlcc us catalog version b11 page 230 reminders 1. if you intend to use a product listed in this catalog for a purpose that may cause loss of life or other damage, you must contact our companys sales window . 2. we may modify products or discontinue production of a product listed in this catalog without prior notification . 3. we provide delivery specification that explain precautions for the specifications and safety of each product listed in this catalog . we strongly recommend that you exchange these delivery specifications with customers that use one of these products . 4. if you plan to export a product listed in this catalog, keep in mind that it may be a restricted item according to the foreign exchange and foreign trade control law . in such cases, it is necessary to acquire export permission in harmony with this law . 5. any reproduction or transferring of the contents of this catalog is prohibited without prior permission from our company . 6. we are not responsible for problems that occur related to the intellectual property rights or other rights of our company or a third party when you use a product listed in this catalog . we do not grant license of these rights . 7. this catalog only applies to products purchased through our company or one of our companys official agencies . this catalog does not apply to products that are purchased through other third parties .
tdk mlcc us catalog version b11 page 231 cll series ultra low inductance capacitors type: cllc1a (c1608), clle1a (c2012) ? features a unique internal structure that cancels magnetic fields to reduce equivalent series inductance ? eight side terminal electrodes in one capacitor ? decoupling cpu power line ? high speed digital ic/decoupling ? gpu/cpu features shape & dimensions structure part number construction series name cllc1a x 7 r 0 j 105 m t xxxx temperature characteristic rated voltage (dc) nominal capacitance (pf) capacitance tolerance packaging style internal codes dimensions in mm l body length w body width t body height c terminal width p terminal spacing case code length width cllc1a 1.60 0.10 0.80 0.10 clle1a 2.00 0.15 1.25 0.15 temperature characteristics capacitance change temperature range x7r 15% - 55 to +125oc x7s 22% - 55 to +125oc voltage code voltage (dc) 0g 4v 0j 6.3v 1a 10v packaging code style t tape & reel tolerance code tolerance m 20% the capacitance is expressed in three digit codes and in units of pico farads (pf). the first and second digits identify the first and second significant figures of the capacitance. the third digit identifies the multiplier. r designates a decimal point. capacitance code capacitance 0r5 0.5pf 010 1pf 102 1,000pf (1nf) 105 1,000,000pf (1f) uli flip std chip size c1608 c2012 c1632 c2012 cap. 1f 1f 1f 1f w.v. 0g (4v) 0g (4v) 1a (10v) 1a (10v) esl 65ph 70ph 180ph 850ph
tdk mlcc us catalog version b 11 page 232 tdk part number (ordering code) temperature characteristics rated voltage capacitance (pf) capacitance tolerance thickness (mm) cllc1ax7s0g334m x7s 4v 330,000 20% 0.50 0.10 cllc1ax7s0g474m x7s 4v 470,000 20% 0.50 0.10 cllc1ax7s0g684m x7s 4v 680,000 20% 0.50 0.10 cllc1ax7s0g105m x7s 4v 1,000,000 20% 0.50 0.10 cllc 1 a [eia cc 0603] capacitance range chart capacitance range table cllc1a [eia cc0603] class 2 (temperature stable) temperature characteristics: x7s ( - 55 to +125oc, 22%) capacitance range chart temperature characteristics: x7s ( 22) rated voltage: 4v (0g) 0.50 mm x7s 0g (4v) 330,000 334 470,000 474 680,000 684 1,000,000 105 m : 20% capacitance (pf) cap code tolerance standard thickness
tdk mlcc us catalog version b11 page 233 tdk part number (ordering code) temperature characteristics rated voltage capacitance (pf) capacitance tolerance thickness (mm) clle1ax7r1a104m x7r 10v 100,000 20% 0.50 0.10 clle1ax7r1a154m x7r 10v 150,000 20% 0.50 0.10 clle1ax7r1a224m x7r 10v 220,000 20% 0.50 0.10 clle1ax7r1a334m x7r 10v 330,000 20% 0.50 0.10 clle1ax7r0j474m x7r 6.3v 470,000 20% 0.50 0.10 clle1ax7r0j684m x7r 6.3v 680,000 20% 0.50 0.10 clle1ax7r0j105m x7r 6.3v 1,000,000 20% 0.85 0.10 clle1ax7r0j155m x7r 6.3v 1,500,000 20% 0.85 0.10 clle1ax7s0g105m x7s 4v 1,000,000 20% 0.50 0.10 clle1ax7s0g155m x7s 4v 1,500,000 20% 0.50 0.10 clle1ax7s0g225m/0.50 x7s 4v 2,200,000 20% 0.50 0.10 clle1ax7s0g225m/0.85 x7s 4v 2,200,000 20% 0.85 0.10 clle1ax7s0g475m x7s 4v 4,700,000 20% 0.85 0.10 class 2 (temperature stable) temperature characteristics: x7r ( - 55 to +125oc, 15%), x7s ( - 55 to +125oc, 22%) clle1a [eia cc0805] capacitance range chart capacitance range table clle 1 a [eia cc 0805] capacitance range chart temperature characteristics: x7r ( 15%), x7s ( 22) rated voltage: 10v (1a), 6.3v (0j), 4v (0g) 0 . 50 mm 0 . 85 mm standard thickness x7s 1a (10v) 0j (6.3v) 0g (4v) 100,000 104 150,000 154 220,000 224 330,000 334 470,000 474 680,000 684 1,000,000 105 1,500,000 155 2,200,000 225 4,700,000 475 x7r m : 20% capacitance (pf) cap code tolerance
tdk mlcc us catalog version b11 page 234 general specifications cll series C uli capacitors no. item performance test or inspection method 1 external appearance no defects which may affect performance. inspect with magnifying glass (3 ). 2 insulation resistance 100m ? f min. apply rated voltage for 60s. measure 8 terminal electrodes at the same time. 3 voltage proof withstand test voltage without insulation breakdown or other damage. 2.5 times rated voltage (dc) shall be applied for 1 to 5s. charge / discharge current shall not exceed 50ma. measure 8 terminal electrodes at the same time. 4 capacitance within the specified tolerance at 1000hrs age (per iec -384- 9). measure 8 terminal electrodes at the same time. 5 dissipation factor (class 2) see no.4 in this table for measuring condition. 6 temperature characteristics of capacitance (class 2) capacitance change (%) capacitance shall be measured by the steps shown in the following table after thermal equilibrium is obtained for each step. ? c be calculated ref. step 3 reading 7 robustness of terminations no sign of termination coming off, breakage of ceramic, or other abnormal signs. reflow solder the capacitor on p.c. board (shown in appendix 1 and 2) and apply a pushing force of 2n for 10 1s. 8 solderability all terminations shall exhibit a continuous solder coating free from defects for a minimum of 75% of the surface area of any individual termination. anomalies other than dewetting, non - wetting, and pin holes are not cause for rejection. ceramic surface of a sections shall not be exposed due to melting or shifting of termination material. completely soak both terminations in solder at 235 5 c for 2 0.5s. solder : h63a (jis z 3282) flux : isopropyl alcohol (jis k 8839) rosin (jis k 5902) 25% solid solution. measuring freuency withstanding voltage measuring voltage 1khz 10% 10v 1.0 0.2 v rms 6.3v 0.5 0.2 v rms t.c. d.f. x7r x7s 0.10 max. no dc voltage applied x7r: 15% x7s: 22% step temperature (oc) 1 reference temp. 2 2 min. operating temp. 2 3 reference temp. 2 4 max. operating temp. 2 2n p.c. board capacitor a section
tdk mlcc us catalog version b11 page 235 general specifications no. item performance test or inspection method 9 resistance to solder heat completely soak both terminations in solder at 260 5oc for 5 1s. preheating condition temp. : 150 10oc time : 1 to 2min. flux : isopropyl alcohol (jis k 8839) rosin (jis k 5902) 25% solid solution. solder : h63a (jis z 3282) leave the capacitor in ambient conditions for 24 2h before measurement. external appearance no cracks are allowed and terminations shall be covered at least 60% with new solder capacitance d.f. (class 2) meet the initial spec. insulation resistance meet the initial spec. 10 vibration reflow solder the capacitor on a p.c. board (shown in appendix 1 and 2) before testing. vibrate the capacitor with amplitude of1.5mm p -p sweeping the frequencies from 10hz to 55hz and back to 10hz in about 1 minute. repeat this for 2h each in 3 perpendicular directions (6h in total). external appearance no mechanical damage. capacitance d.f. (class 2) meet the initial spec. 11 temperature cycle reflow solder the capacitors on a p.c. board (shown in appendix 1 and 2) before testing. expose the capacitor in the condition step1 through step 4, and repeat 5 times consecutively. leave the capacitor in ambient conditions for 24 2h before measurement. external appearance no mechanical damage. capacitance d.f. (class 2) meet the initial spec. insulation resistance meet the initial spec. voltage proof no insulation breakdown or other damage. characteristics change from the value before test x7r x7s 7.5 % characteristics change from the value before test x7r x7s 7.5 % characteristics change from the value before test x7r x7s 7.5 % step temperature (oc) time (min.) 1 min. operating temp. 3 30 3 2 reference temp. 2 C 5 3 max. operating temp. 2 30 2 4 reference temp. 2 - 5 cll series C uli capacitors
tdk mlcc us catalog version b11 page 236 general specifications no. item performance test or inspection method 12 moisture resistance (steady state) reflow solder the capacitor on p.c. board (shown in appendix 1 and 2) before testing. leave at temperature 40 2oc and 90 to 95%rh for 500 +24,0h. leave the capacitor in ambient condition for 24 2h before measurement. external appearance no mechanical damage. capacitance d.f. (class 2) characteristics: x7r: 200% of initial spec. max. x7s: 200% of initial spec. max. insulation resistance 10m ? f min. 13 moisture resistance reflow solder the capacitors on p.c. board (shown in appendix 1 and 2) before testing. apply the rated voltage at temperature 40 2oc and 90 to 95%rh for 500 +24,0h. charge/discharge current shall not exceed 50ma. leave the capacitor in ambient conditions for 48 4h before measurement. voltage conditioning: voltage treat the capacitors under testing temperature and voltage for 1 hour. leave the capacitors in ambient condition for 24 2h before measurement. use this measurement for initial value. external appearance no mechanical damage. capacitance d.f. (class 2) characteristics x7r: 200% of initial spec. max. x7s: 200% of initial spec. max. insulation resistance 5m ? f min. 14 life reflow solder the capacitor on p.c. board (shown in appendix 1 and 2) before testing. apply 1 x rated voltage at 125 2oc for 1,000 +48, 0h. charge/discharge current shall not exceed 50ma. leave the capacitors in ambient condition for 24 2h before measurement. voltage conditioning: voltage treat the capacitor under testing temperature and voltage for 1 hour. leave the capacitor in ambient conditions for 48 4h before measurement. use this measurement for initial value. external appearance no mechanical damage. capacitance d.f. (class 2) characteristics x7r: 200% of initial spec. max. x7s: 200% of initial spec. max. insulation resistance 10m ? f min. characteristics change from the value before test x7r x7s 12.5 % characteristics change from the value before test x7r x7s 12.5 % characteristics change from the value before test x7r x7s 15 % cll series C uli capacitors
tdk mlcc us catalog version b11 page 237 general specifications appendix - 1 p.c. board for reliability test applied for cllc1a material: glass epoxy ( as per jis c6484 ge4 ) p.c. board thickness: 0.8mm copper ( thickness 0.035mm ) solder resist 7.0 1.5 2.5 3.0 41.25 50. 0 41.25 50. 0 4 . 0 10. 0 19.0 20.0 4.0 15.0 18.0 2.0 5.0 5.0 7.0 10.0 20.0 20. 0 0.4 0 . 6 0 . 6 0 . 8 0.8 1.1 1.1 0.19 0.25 0.4 pitch 0.725 0.725 1.2 1.2 0.08 0 . 32 0.76 0 . 76 unit: mm cll series C uli capacitors
tdk mlcc us catalog version b11 page 238 general specifications appendix - 2 p.c. board for reliability test applied for clle1a material: glass epoxy ( as per jis c6484 ge4) p.c. board thickness: 1.6mm copper ( thickness 0.035mm ) solder resist 20.0 20.0 10.0 7.0 7.0 5 . 0 5.0 2 . 0 10. 0 20. 0 15.0 18.0 4.0 4.0 50.0 41.25 50.0 41.25 1.5 2.5 3.0 19. 0 0.5 pitch 8 . 3 8 . 3 0 . 7 0.85 0.4 1.1 1.5 0.3 0.4 0.1 0.9 0.9 1.05 1.05 1 . 5 1.1 0 . 85 unit: mm cll series C uli capacitors
tdk mlcc us catalog version b11 page 239 soldering information cll series C uli capacitors ? recommended soldering land pattern ? recommended soldering profile unit: mm type symbol cllc1a (c1608/cc0603) clle1a (c2012/cc0805) a 0.25 0.3 b 0.4 0.3 ~ 0.6 c 1.2 1.3 ~ 1.8 d 0.4 0.5 ~ 0.8 p 0.4 0.5 ? recommended solder amount ration e sn - pb solder 230 max. 20 max. lead- free solder 260 max. 10 max. recommended solder compositions sn - 37pb (sn - pb solder) sn - 3.0ag - 0.5cu (lead free solder) preheating condition soldering temp. (oc) reflow soldering t manual soldering t b a p d c reflow soldering manual soldering (solder iron) t preheating 3sec. (as short as possible) 0 300 temp (oc) temp (oc) 0 t soldering natural cooling preheating peak temp over 60 sec. peak temp time excessive solder higher tensile force on the chip capacitor may cause cracking. ghtxdwh solder insufficient solder small solder fillet may cause contact failure or failure to hold the chip capacitor to the p.c. board. maximum amount minimum amount
tdk mlcc us catalog version b 11 page 240 packaging information cll series C uli capacitors ? carrier tape configuration ? peel back force (top tape) 015 carrier tape top cover tape direction of pull force direction & angle of pull force &duulhuwdshvkdooehioh[leohhqrxjkwreh wound around a minimum radius of 30mm with components in tape. 7khplvvlqjrifrpsrqhqwvvkdooehohvvwkdq 0.1% &rpsrqhqwvvkdooqrwvwlfnwrwkhfryhuwdsh 7khfryhuwdshvkdooqrwsurwuxghehrqgwkh edges of the carrier tape and shall not cover the sprocket holes. ? chip quantity per reel and structure of reel series taping material chip quantity (pcs.) 178mm (7) reel 330mm (13) reel cllc1a plastic 4,000 10,000 clle1a 4,000 10,000 plastic carrier tape top cover tape pitch hole cavity (chip insert) drawing direction leader 400mm min. blank 160mm min. chips blank 160mm min.
tdk mlcc us catalog version b11 page 241 additional information cll series C uli capacitors ? shape & dimensions tdk corporation established internal product environmental assurance standards that include the six hazardous substances banned by the eu rohs directive 1 enforced on july 1 , 2006 along with additional substances independently banned by tdk and has successfully completed making general purpose electronic components conform to the rohs directive 2 . no. name material class 2 (1) ceramic dielectric batio 3 (2) internal electrode nickel (ni) (3) termination copper (cu) (4) nickel (ni) (5) tin (sn) ? inside structure & material system ? environmental information 1. abbreviation for restriction on hazardous substances, which refers to the regulation eu directive 2002/95/ec on hazardous substances by the european union (eu) effective from july 1, 2006. the directive bans the use of six specific hazardous substances in electric and electronic devices and products handled within the eu. the six substances are lead, mercury, cadmium, hexavalent chromium, pbb ( polybrominated biphenyls), and pbde ( polybrominated diphenyl ethers). 2. this means that, in conformity with the eu directive 2002/95/ec, lead, cadmium, mercury, hexavalent chromium, and specific bromine - based flame retardants, pbb and pbde, have not been used, except for exempted applications. for reach (svhc : 15 substances according to echa / october 2008) : all tdk mlcc do not contain these 15 substances. for european directive 2000/53/ce and 2005/673/ce : cadmium, hexavalent chromium, mercury, lead are not contained in all tdk mlcc. for european directive 2003/11/ce : pentabromodiphenyl - ether, octabromodiphenyl - ether are not contained in all tdk mlcc. l t w c p case code dimensions (mm) series jis eia l w t p c cllc1a c1608 cc0603 1.60 0.80 0.55 max. 0.40 0.25 clle1a c2012 cc0805 2.00 1.25 0.95 max. 0.50 0.25 % a b 3 4 5 1 2 ? equivalent circuit + 1) 3) 5) 7) - 2) 4) 6) 8) 8 terminals are connected and measured at the same time.


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