LHL06TB220K TAIYO-YUDEN | Alldatasheet

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๏ɹORDERING CODE ༻్ɹAPPLICATIONS ಛ௕ɹFEATURES 308 LHL Q 7654321 ZZZ0 8TB101K YLHL08ʙLHL16γϦʔζ͸έʔεfLHFGGGBB͸ϕʔεgλΠϓͰ͋Δͷ ཱ҆ఆੑʹ༏ΕΔ Yେిྲྀ༻ʹ͸LHLC06/LHLZ06/LHL08/LHL10/LHL13/LHL16/LHFGGGBB ͕ରԠ YLHFGGGBBಈૠೖରԠ YLHFP13/15BBγʔϧυλΠϓ YThe LHL08~LHL16 series radial inductors are encapsulated in a resin hous- ing which adds to the stability of the mounted part on a printed circuit board. YThe LAV35 and LHL06 series are for small current applications. YThe LHLC06/LHLZ06/LHL08/LHL10/LHL13/LHL16/LHFGGGBB series are for high current applications. YAll items can be packaged for automatic insertion except the LHFGGGBB type. YThe LHFP13/15BB series are shielded type for high current applications. YIdeal for use as a power choke coil in general household appliances (TV sets, video appliances, etc.) and industrial equipment YCan also be used as a peaking coil in filtering applications ϥδΞϧϦʔυΠϯμΫλ RADIAL LEADED INDUCTORS YҰൠຽੜfςϨϏɺϏσΦ౳ͷՈిg༻νϣʔΫίΠϧ YछϑΟϧλ༻ϐʔΩϯάίΠϧ LA ΞΩγϟϧΠϯμΫλ LH ϥδΞϧΠϯμΫλ 2 5 শΠϯμΫλϯεhAHi OPERATING TEMP. K25VJ105CΉʣ fIncluding self-generated heatg LA Axial inductor LH Radial inductor Typeɹɹ Nominal InductancefAHg example 1R0 1.0 150 15 102 1000 ࠩhLi J M5 K M10 M M20 N M30 ੇ๏hmm ҎԼi FQ ୯඼ͷΈ FPγʔϧυλΠϓ୯඼ LQ ςʔϐϯάରԠ඼ L C େిྲྀλΠϓ ɹ L Zɹ େిྲྀɺ௿RDC λΠϓ VQ ϥδΞϧϑΥʔϛϯά QWεϖʔε 06 L06 6.8, LC06 7.5, LZ06 7.8 08 9.0 10 11.0 13 LHL 14.0, LHFP 14.5 15 LHF 18.0, LHFP 16.0 16 17.0 35 6.0 fLAVg Inductance Tolerances (%) J M5 K M10 M M20 N M30 FQ Bulk only FP Shielded type Bulk only LQ Standard type Taping available LC High current type LZ High current, low RDC type ɹVQ Radial formed lead QWBlank space ɹɹ Internal code QQQ ඪ४඼ QWεϖʔε BB ୯඼fLHFg NB ୯඼fLHLg TB ͭͮΒંΓςʔϐϯά fLHLg VB ͭͮΒંΓςʔϐϯά fLAVg 1R0 1.0 150 15 102 1000 External dimensionshmm maxi 06 L06 6.8, LC06 7.5, LZ06 7.8 08 9.0 10 11.0 13 14.0 15 18.0 16 17.0 35 6.0 fLAVg Packaging Code BB Bulk fLHFg NB Bulk fLHLg TB Ammo packagingfLHLg VB Ammo packagingfLAVg FR= খ਺఺ FR=Decimal point Configuration QQQ Standard product QWBlank space

ੇ๏ɹEXTERNAL DIMENSIONS FERRITE PRODUCTS LAV35 LHL06 LHLC06 LHLZ06 LHL08 LHL10 LHL13 LHL16 LHF15BB LHFP13BB LHFP15BB Inductanceిྲྀ DC Rated DC Rated DC Rated DC Rated DC Rated DC Rated DC Rated DC Rated DC Rated DC Rated DC Rated Resistance current Resistance current Resistance current Resistance current Resistance current Resistance current Resistance current Resistance current Resistance current Resistance current Resistance current hHih E i hAih E i hAih E i hAih E i hAih E i hAi hEi h Aih E i hAih E i hAih E i hAih E i hAih E i hAi 100m BBBBBBBBBB 240.0 0.031 BBBBBBBBBB Fig. LAV35 LHL06 LHLC06 LHLZ06 LHL08 LHL10 LHL13 LHL16 LHF15BB LHFP13BB LHFP15BB Type Range 0.22A EEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEE EEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEE EEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEE EEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEE EEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEE 1.0A 1.0A1.0A 3.3A 47A 47A 10A 10m10m10m 150m 33m 100A 10m 1.0m ུόϦΤʔγϣϯɹAVAILABLE INDUCTANCE RANGE EEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEE UnitDmmfinchg ୅ɹදɹ஋Examples Type LAV35 LHL06 LHLC06 LHLZ06 LHL08 LHL10 LHL13 LHL16 LHF15BB LHFP13BB LHFP15BB ΞΠςϜҰཡ Part Numbers ಛੑਤ

Electrical Characteristics

แ Packaging ৴པੑ Reliability Data ༻্ͷ஫ҙ Precautions ηϨΫγϣϯΨΠυ Selection Guide 0.22A 1.0A 10A 100A 1.0m 10m 100m Inductance etc 1.0A 1.0m 47A 10m 10A 10m P.354

ΞΠςϜҰཡɹPART NUMBERS LAV35VBR22M 0.22 170.0 0.09 1000.0 LAV35VBR27M 0.27 160.0 0.10 980.0 LAV35VBR33M 0.33 140.0 0.11 960.0 LAV35VBR39M 0.39 M20L 130.0 0.12 940.0 LAV35VBR56M 0.56 110.0 0.14 880.0 LAV35VBR68M 0.68 100.0 0.15 850.0 LAV35VBR82M 0.82 90.0 0.16 820.0 LAV35VB1R0K 1.0 82.0 0.17 790.0 LAV35VB1R2K 1.2 70.0 0.18 760.0 LAV35VB1R5K 1.5 65.0 0.20 730.0 LAV35VB1R8K 1.8 57.0 0.22 700.0 LAV35VB2R2K 2.2 47.0 0.24 670.0 LAV35VB2R7K 2.7 40.0 0.26 640.0 LAV35VB3R3K 3.3 35.0 0.28 610.0 LAV35VB4R7K 4.7 31.0 0.33 560.0 LAV35VB5R6K 5.6 27.0 0.36 540.0 LAV35VB6R8K 6.8 24.0 0.39 520.0 LAV35VB8R2K 8.2 M10L 22.0 0.42 490.0 LAV35VB100K 10.0 21.0 0.45 460.0 LAV35VB120K 12.0 18.0 1.2 350.0 LAV35VB180K 18.0 14.0 1.4 300.0 LAV35VB220K 22.0 13.0 1.5 270.0 LAV35VB270K 27.0 12.0 1.6 250.0 LAV35VB390K 39.0 10.0 2.0 220.0 LAV35VB470K 47.0 9.5 2.2 200.0 LAV35VB560K 56.0 9.0 2.4 190.0 LAV35VB680K 68.0 8.5 2.8 170.0 LAV35VB820K 82.0 8.0 3.0 155.0 LAV35VB101J 100.0 7.5 3.3 150.0 LAV35VB121J 120.0 6.8 4.2 140.0 LAV35VB151J 150.0 6.2 5.0 130.0 LAV35VB181J 180.0 5.6 6.0 125.0 LAV35VB221J 220.0 5.0 7.5 120.0 LAV35VB271J 270.0 4.6 11 105.0 LAV35VB331J 330.0 M5L 4.2 13 95.0 LAV35VB391J 390.0 3.8 15 90.0 0.796 LAV35VB471J 470.0 3.4 17 80.0 LAV35VB561J 560.0 3.0 19 75.0 LAV35VB681J 680.0 2.6 22 68.0 LAV35VB821J 820.0 2.2 25 60.0 LAV35VB102J 1000.0 2.0 28 55.0 LAV35 ɹɹশ ΠϯμΫλϯε Inductance [AH] ɹɹ໊ Ordering code ଌɹఆ प೾਺ Measuring frequency hMHzi Rated current hmAi fmax.g DC Resistance hEi fmax.g ৼ प೾਺ Self-resonant frequency hMHzi fmin.g Q fmin.g ΠϯμΫλϯε Inductance Tolerance [%]

ΞΠςϜҰཡɹPART NUMBERS G Please specify the packaging code.fTBDTaping, NBDBulkg LHL06G1R0M 1.0 87.0 0.15 750.0 LHL06G1R2M 1.2 78.0 0.16 720.0 LHL06G1R5M 1.5 76.0 0.17 680.0 LHL06G1R8M 1.8 M20L 70.0 0.18 650.0 LHL06G2R2M 2.2 57.0 0.20 610.0 LHL06G3R3M 3.3 40.0 0.26 560.0 LHL06G3R9K 3.9 35.0 0.27 530.0 LHL06G4R7K 4.7 32.0 0.30 510.0 LHL06G5R6K 5.6 25.0 0.34 480.0 LHL06G6R8K 6.8 23.0 0.38 460.0 LHL06G8R2K 8.2 22.0 0.39 440.0 LHL06G100K 10.0 18.0 0.47 410.0 LHL06G120K 12.0 17.0 0.39 400.0 LHL06G150K 15.0 16.0 0.46 380.0 LHL06G180K 18.0 14.0 0.51 360.0 LHL06G220K 22.0 13.0 0.52 340.0 LHL06G330K 33.0 10.0 0.68 300.0 LHL06G390K 39.0 8.9 0.78 290.0 LHL06G470K 47.0 8.5 0.85 270.0 LHL06G560K 56.0 M10L 8.2 0.90 250.0 LHL06G680K 68.0 7.2 1.1 245.0 LHL06G101K 100.0 6.8 1.4 210.0 LHL06G121K 120.0 6.6 1.5 190.0 LHL06G151K 150.0 5.8 1.7 170.0 LHL06G181K 180.0 5.2 2.0 165.0 LHL06G221K 220.0 4.7 2.3 160.0 LHL06G331K 330.0 4.0 3.1 120.0 LHL06G391K 390.0 3.5 3.9 110.0 LHL06G471K 470.0 3.4 4.4 100.0 LHL06G561K 560.0 3.1 4.8 85.0 LHL06G681K 680.0 2.9 6.8 80.0 LHL06G821K 820.0 2.5 7.9 75.0 LHL06G102J 1000.0 2.4 10.0 65.0 LHL06G122J 1200.0 2.0 12.0 58.0 LHL06G152J 1500.0 1.8 17.0 54.0 LHL06G182J 1800.0 1.7 20.0 51.0 LHL06G222J 2200.0 1.6 21.0 49.0 LHL06G332J 3300.0 M5L 1.3 34.0 37.0 LHL06G392J 3900.0 1.2 38.0 35.0 LHL06G472J 4700.0 1.1 42.0 33.0 LHL06G562J 5600.0 1.0 52.0 30.0 LHL06G682J 6800.0 0.9 74.0 26.0 LHL06G822J 8200.0 0.8 84.0 24.0 LHL06 ɹɹশ ΠϯμΫλϯε Inductance [AH] ɹɹ໊ Ordering code ଌɹఆ प೾਺ Measuring frequency hMHzi Rated current hmAi fmax.g DC Resistance hEi fmax.g ৼ प೾਺ Self-resonant frequency hMHzi fmin.g Q fmin.g ΠϯμΫλϯε Inductance Tolerance

ΞΠςϜҰཡɹPART NUMBERS LHLC06G1R0M 1.0 98.0 0.049 2.5 LHLC06G1R5M 1.5 M20L 67.0 0.066 2.1 LHLC06G3R3M 3.3 37.0 0.11 1.6 LHLC06G4R7K 4.7 29.0 0.12 1.4 LHLC06G6R8K 6.8 24.0 0.14 1.3 LHLC06G100K 10.0 19.0 0.19 1.2 LHLC06G120K 12.0 17.0 0.20 1.15 LHLC06G150K 15.0 15.0 0.23 1.0 LHLC06G180K 18.0 13.0 0.26 0.95 LHLC06G330K 33.0 9.4 0.37 0.73 LHLC06G390K 39.0 9.3 0.50 0.70 LHLC06G470K 47.0 9.2 0.57 0.63 LHLC06G560K 56.0 8.8 0.63 0.57 LHLC06G820K 82.0 7.6 0.78 0.48 LHLC06 G Please specify the packaging code.fTBDTaping, NBDBulkg LHLZ06G1R0M 1.0 85.0 0.026 3.4 LHLZ06G1R5M 1.5 65.0 0.032 3.0 LHLZ06G4R7M 4.7 28.0 0.055 2.1 LHLZ06G6R8M 6.8 23.0 0.070 1.9 LHLZ06G100K 10.0 18.0 0.10 1.7 LHLZ06G220K 22.0 9.5 0.19 1.2 LHLZ06G680K 68.0 M10L 6.9 0.50 0.71 LHLZ06G101K 100.0 5.6 0.77 0.57 LHLZ06G151K 150.0 4.2 1.2 0.47 LHLZ06G471K 470.0 2.4 3.9 0.24 LHLZ06 G Please specify the packaging code.fTBDTaping, NBDBulkg ɹɹশ ΠϯμΫλϯε Inductance [AH] ɹɹ໊ Ordering code ଌɹఆ प೾਺ Measuring frequency hMHzi Rated current hAi fmax.g DC Resistance hEi fmax.g ৼ प೾਺ Self-resonant frequency hMHzi fmin.g Q fmin.g ΠϯμΫλϯε Inductance Tolerance ɹɹশ ΠϯμΫλϯε Inductance [AH] ɹɹ໊ Ordering code ଌɹఆ प೾਺ Measuring frequency hMHzi Rated current hAi fmax.g DC Resistance hEi fmax.g ৼ प೾਺ Self-resonant frequency hMHzi fmin.g Q fmin.g ΠϯμΫλϯε Inductance Tolerance

LHL08G1R0N 1.0 M30L 76.0 0.013 4.7 LHL08G1R5M 1.5 65.0 0.014 4.4 LHL08G2R2M 2.2 56.0 0.017 4.1 LHL08G2R7M 2.7 48.0 0.019 3.5 LHL08G4R7M 4.7 30.0 0.025 3.0 LHL08G5R6M 5.6 23.0 0.028 2.9 LHL08G6R8M 6.8 21.0 0.030 2.8 LHL08G8R2M 8.2 19.0 0.034 2.5 LHL08G120K 12.0 16.0 0.044 2.3 LHL08G150K 15.0 13.0 0.053 2.0 LHL08G220K 22.0 11.0 0.068 1.8 LHL08G330K 33.0 8.8 0.10 1.4 LHL08G470K 47.0 8.2 0.15 1.2 LHL08G560K 56.0 7.9 0.17 1.1 LHL08G820K 82.0 M10L 6.5 0.22 0.90 LHL08G121K 120.0 5.2 0.36 0.70 LHL08G221K 220.0 3.7 0.73 0.53 LHL08G331K 330.0 3.2 0.97 0.44 LHL08G471K 470.0 2.4 1.3 0.38 LHL08G681K 680.0 2.0 1.8 0.32 LHL08G152J 1500.0 1.3 4.1 0.20 LHL08G182J 1800.0 1.2 4.8 0.19 LHL08G332J 3300.0 0.85 8.5 0.14 LHL08G392J 3900.0 0.78 9.7 0.11 LHL08G472J 4700.0 0.68 14.0 0.10 LHL08G682J 6800.0 0.61 18.0 0.092 LHL08G822J 8200.0 0.60 20.0 0.084 LHL08G103J 10000.0 0.48 32.0 0.070 LHL08G123J 12000.0 0.44 36.0 0.064 LHL08G153J 15000.0 0.35 62.0 0.051 LHL08G223J 22000.0 0.28 82.0 0.044 LHL08G273J 27000.0 0.25 90.0 0.042 LHL08G333J 33000.0 0.23 100.0 0.040 ΞΠςϜҰཡɹPART NUMBERS LHL08 G Please specify the packaging code.fTBDTaping, NBDBulkg L:1kHz Q:0.0796 ɹɹশ ΠϯμΫλϯε Inductance [AH] ɹɹ໊ Ordering code ଌɹఆ प೾਺ Measuring frequency hMHzi Rated current hAi fmax.g DC Resistance hEi fmax.g ৼ प೾਺ Self-resonant frequency hMHzi fmin.g Q fmin.g ΠϯμΫλϯε Inductance Tolerance

ΞΠςϜҰཡɹPART NUMBERS LHL10G3R3M 3.3 46.0 0.019 4.2 LHL10G3R9M 3.9 40.0 0.022 4.1 LHL10G5R6M 5.6 34.0 0.025 3.8 LHL10G6R8M 6.8 30.0 0.028 3.4 LHL10G8R2M 8.2 24.0 0.031 3.3 LHL10G100K 10.0 19.0 0.034 3.2 LHL10G150K 15.0 12.0 0.042 2.6 LHL10G180K 18.0 9.2 0.046 2.4 LHL10G220K 22.0 8.6 0.061 2.1 LHL10G390K 39.0 6.7 0.085 1.8 LHL10G560K 56.0 5.2 0.10 1.6 LHL10G680K 68.0 4.9 0.12 1.5 LHL10G820K 82.0 M10L 4.7 0.13 1.4 LHL10G101K 100.0 3.8 0.18 1.2 LHL10G151K 150.0 2.9 0.29 0.95 LHL10G181K 180.0 2.6 0.40 0.80 LHL10G221K 220.0 2.3 0.44 0.75 LHL10G331K 330.0 2.0 0.56 0.68 LHL10G391K 390.0 1.8 0.62 0.63 LHL10G561K 560.0 1.5 0.93 0.52 LHL10G681K 680.0 1.4 1.0 0.48 LHL10G821K 820.0 1.3 1.4 0.42 LHL10G102J 1000.0 1.2 1.8 0.41 LHL10G122J 1200.0 0.87 2.3 0.33 LHL10G152J 1500.0 0.83 2.7 0.30 LHL10G182J 1800.0 0.75 3.0 0.29 LHL10G222J 2200.0 0.70 3.9 0.25 LHL10G332J 3300.0 0.56 5.8 0.21 LHL10G392J 3900.0 0.54 6.4 0.20 LHL10G472J 4700.0 0.49 7.1 0.19 LHL10G562J 5600.0 0.41 9.0 0.17 LHL10G682J 6800.0 0.38 10.0 0.16 LHL10G822J 8200.0 0.36 12.0 0.15 LHL10G103J 10000.0 0.29 19.0 0.12 LHL10G123J 12000.0 M5L 0.27 21.0 0.11 LHL10G183J 18000.0 0.21 38.0 0.081 LHL10G223J 22000.0 0.20 43.0 0.075 LHL10G273J 27000.0 0.15 67.0 0.060 LHL10G393J 39000.0 0.13 84.0 0.053 LHL10G473J 47000.0 0.12 96.0 0.050 LHL10G563J 56000.0 0.10 170.0 0.036 LHL10G683J 68000.0 0.095 200.0 0.035 LHL10G104J 100000.0 0.085 240.0 0.031 LHL10G124J 120000.0 0.070 260.0 0.030 LHL10G154J 150000.0 0.069 300.0 0.028 LHL10 L:1kHz Q:0.0252 L:1kHz Q:0.0796 G Please specify the packaging code.fTBDTaping, NBDBulkg ɹɹশ ΠϯμΫλϯε Inductance [AH] ɹɹ໊ Ordering code ଌɹఆ प೾਺ Measuring frequency hMHzi Rated current hAi fmax.g DC Resistance hEi fmax.g ৼ प೾਺ Self-resonant frequency hMHzi fmin.g Q fmin.g ΠϯμΫλϯε Inductance Tolerance

ΞΠςϜҰཡɹPART NUMBERS LHL13G150K 15.0 12.0 0.028 4.0 LHL13G680K 68.0 4.4 0.070 2.4 LHL13G151K 150.0 2.6 0.19 1.5 LHL13G331K 330.0 1.8 0.35 1.1 LHL13G681K 680.0 1.2 0.61 0.80 LHL13G102J 1000.0 1.0 1.2 0.60 LHL13G152J 1500.0 0.83 1.8 0.45 LHL13G332J 3300.0 M5L 0.60 3.4 0.33 LHL13G472J 4700.0 0.43 4.7 0.28 LHL13G103J 10000.0 70.0 0.30 10 0.19 LHL13 LHL16G680K 68.0 3.9 0.054 3.3 LHL16G101K 100.0 2.7 0.077 2.9 LHL16G681K 680.0 1.2 0.35 1.1 LHL16G102J 1000.0 0.84 0.74 0.86 LHL16G152J 1500.0 0.69 0.93 0.75 LHL16G332J 3300.0 0.49 2.2 0.50 LHL16G472J 4700.0 M5L 0.41 2.6 0.40 LHL16G682J 6800.0 0.35 3.9 0.33 LHL16 G Please specify the packaging code.fTBDTaping, NBDBulkg G Please specify the packaging code.fTBDTaping, NBDBulkg L:1kHz Q:0.0796MHz L:1KHz Q:0.0796MHz ɹɹশ ΠϯμΫλϯε Inductance [AH] ɹɹ໊ Ordering code ଌɹఆ प೾਺ Measuring frequency hMHzi Rated current hAi fmax.g DC Resistance hEi fmax.g ৼ प೾਺ Self-resonant frequency hMHzi fmin.g Q fmin.g ΠϯμΫλϯε Inductance Tolerance ɹɹশ ΠϯμΫλϯε Inductance [AH] ɹɹ໊ Ordering code ଌɹఆ प೾਺ Measuring frequency hMHzi Rated current hAi fmax.g DC Resistance hEi fmax.g ৼ प೾਺ Self-resonant frequency hMHzi fmin.g Q fmin.g ΠϯμΫλϯε Inductance Tolerance

LHF15BB470K 47.0 4.2 0.050 4.2 LHF15BB680K 68.0 3.5 0.065 3.5 LHF15BB101K 100.0 2.9 0.095 2.9 LHF15BB151K 150.0 2.3 0.13 2.5 LHF15BB181K 180.0 2.1 0.15 2.3 LHF15BB221K 220.0 M10L 1.8 0.19 2.0 LHF15BB331K 330.0 1.6 0.28 1.6 LHF15BB391K 390.0 1.4 0.37 1.4 LHF15BB561K 560.0 1.3 0.46 1.2 LHF15BB102J 1000.0 1.0 0.67 0.95 LHF15BB122J 1200.0 0.90 0.75 0.85 LHF15BB152J 1500.0 0.75 1.1 0.75 LHF15BB182J 1800.0 0.72 1.2 0.67 LHF15BB332J 3300.0 M5L 0.50 2.2 0.50 LHF15BB392J 3900.0 0.48 2.4 0.45 LHF15BB472J 4700.0 0.44 2.8 0.40 LHF15BB682J 6800.0 0.37 4.3 0.33 LHF15BB822J 8200.0 0.30 5.7 0.30 ΞΠςϜҰཡɹPART NUMBERS LHF15BB ɹɹশ ΠϯμΫλϯε Inductance [AH] ɹɹ໊ Ordering code Rated current hAi fmax.g DC Resistance hEi fmax.g ৼ प೾਺ Self-resonant frequency hMHzi fmin.g Q fmin.g ΠϯμΫλϯε Inductance Tolerance Q ଌఆप೾਺ Q Measuring frequency hMHzi Lଌఆ प೾਺ L Measuring frequency

LHFP13BB100M 10 A 0.024 22.0 4.4 LHFP13BB150M 15 A M20 0.030 16.0 4.0 LHFP13BB220M 22 A 0.033 9.7 3.6 LHFP13BB330M 33 A 0.040 7.6 3.2 LHFP13BB470K 47 A 0.058 4.4 2.6 LHFP13BB680K 68 A 0.10 4.2 1.9 LHFP13BB101K 100 A 0.15 2.6 1.6 LHFP13BB151K 150 A 0.19 2.0 1.4 LHFP13BB221K 220 A 0.30 1.7 1.1 LHFP13BB331K 330 A 1kHz 0.49 1.3 0.84 LHFP13BB471K 470 A M10 0.58 1.1 0.77 LHFP13BB681K 680 A 0.93 0.90 0.60 LHFP13BB102K 1.0m 1.4 0.78 0.50 LHFP13BB152K 1.5m 2.3 0.50 0.38 LHFP13BB222K 2.2m 2.9 0.42 0.34 LHFP13BB332K 3.3m 4.2 0.38 0.28 LHFP13BB472K 4.7m 6.2 0.28 0.23 LHFP13BB682K 6.8m 9.7 0.22 0.18 LHFP13BB103K 10m 12.0 0.19 0.16 LHFP13BB ɹɹশ ΠϯμΫλϯε Nominal Inductance [H] ɹɹ໊ Ordering code Rated current hAi fmax.g DC Resistance hEi fmax.g ৼ प೾਺ Self-resonant frequency hMHzi fmin.g ΠϯμΫλϯε Inductance Tolerance [L] Lଌఆ प೾਺ L Measuring frequency ΞΠςϜҰཡɹPART NUMBERS LHFP15BB LHFP15BB470K 47 A 0.044 8.5 3.3 LHFP15BB680K 68 A 0.055 3.8 2.9 LHFP15BB101K 100 A 0.075 2.4 2.5 LHFP15BB151K 150 A 0.13 2.0 1.9 LHFP15BB221K 220 A 0.20 1.3 1.6 LHFP15BB331K 330 A 0.30 0.93 1.3 LHFP15BB471K 470 A 0.36 0.87 1.1 LHFP15BB681K 680 A 1kHz M10 0.56 0.66 0.90 LHFP15BB102K 1.0m 0.70 0.55 0.80 LHFP15BB152K 1.5m 1.2 0.44 0.62 LHFP15BB222K 2.2m 1.9 0.33 0.50 LHFP15BB332K 3.3m 2.3 0.28 0.45 LHFP15BB472K 4.7m 3.5 0.23 0.36 LHFP15BB682K 6.8m 5.4 0.16 0.28 LHFP15BB103K 10m 6.7 0.14 0.25 ɹɹশ ΠϯμΫλϯε Nominal Inductance [H] ɹɹ໊ Ordering code Rated current hAi fmax.g DC Resistance hEi fmax.g ৼ प೾਺ Self-resonant frequency hMHzi fmin.g ΠϯμΫλϯε Inductance Tolerance [L] Lଌఆ प೾਺ L Measuring frequency

ಛੑਤɹELECTRICAL CHARACTERISTICS ΠϯμΫλϯεԹ౓ಛੑྫ Temperature characteristics ௚ྲྀॏ৞ಛੑྫ DC Bias characteristics A D LAV35 B DLHL 06f1R0MV100Kg LHL06f120KV103Jg LHLC06 LHLZ06 LHL08 LHL10 LHL13 LHL16 LHF15BB LHFP13BB LHFP15BB

ಛੑਤɹELECTRICAL CHARACTERISTICS ̦Kप೾਺ಛੑྫ Q-vs- Frequency characteristics

1ඪ४਺ྔ Standard quantityɹ แɹPACKAGING LAVC35 EE EE 2000 LHLC06 EE 500 2000 LHLC06 EE 500 2000 LHLZ06 EE 500 1500 LHLC08 EE 100 1000 LHLC10 EE 050 500 LHLC13 EE 025 500 LHLC16 500 EE 250 LHFC15BB 500 EE EE LHFP13BB 500 EE EE LHFP15BB 500 EE EE ੇɹ๏ Dimensionsfmmg Type BDH 2 Bd LHLC06 6.8max 11.0max 00.6M0.05 f0.268maxgf 0.433maxgf 0.024M0.002g LHLC06 7.5max 11.0max 00.6M0.05 f0.295maxgf 0.433maxgf 0.024M0.002g LHLZ06 7.8max 11.0max 00.6M0.05 f0.307maxgf 0.433maxgf 0.024M0.002g UnitDmmfinchg LHL08V16 ੇɹ๏ Dimensionsfmmg Type BDfmaxg H2fmaxg FI b d UnitDmmfinchg LHF15BB ੇɹ๏ Dimensionsfmmg Type BDfmaxg H2fmaxg FI b d UnitDmmfinchg LHL06/LHLC06/LHLZ06ඪ४਺ྔfpcsg ࣜܗfEIAg Standard quantity Type ശͮΊ ାͮΊ ςʔϐϯά Box Bulk Taped Iຊf઀ண෦gੇ๏ͱ͢Δɻ IMeasured at the base of the leads. Iຊf઀ண෦gੇ๏ͱ͢Δɻ IMeasured at the base of the leads. LHFP13BB ੇɹ๏ Dimensionsfmmg Type BDfmaxg H2fmaxg FI b d UnitDmmfinchgIຊੇ๏ͱ͢Δɻ IMeasured at the base of the leads. LHFP15BB ੇɹ๏ Dimensionsfmmg Type BDfmaxg H2fmaxg FI b d UnitDmmfinchgIຊੇ๏ͱ͢Δɻ IMeasured at the base of the leads.

แɹPACKAGING 3ςʔϐϯάੇ๏ Taping dimensions YLAV35VB ੇɹ๏ Symbol Dimensions D 6.0max f0.236maxg 4.0max f0.157maxg 25.0max f0.984maxg 8.0max f0.315maxg H 19.0f஋ Ref.g f0.748g 16.0M1.08 f0.630M0.039g P 12.7M1.08 f0.500M0.039g 12.7M0.38 f0.500M0.012g 3.85M0.58 f0.152M0.020g 6.35M1.38 f0.250M0.051g F 5.0M1.38 f0.197 ɹɹɹg ੇɹ๏ Symbol Dimensions Qh 0.0M2.0 f0.0M0.079g W 18.0M18.0 f0.709ɹɹ ɹg 12.5min f0.492ming 9.0M9.0 f0.354 ɹɹɹg 3.0max f0.118maxg b 2.0max f0.079maxg 4.0M0.3 f0.157M0.012g Bd 0.50M0.05 f0.020M0.002g L 11.0max f0.433maxg t 0.5M0.2 f0.020M0.008g J0.8 K0.3 J0.75 K0.5 J1.0 K0.5 UnitDmmfinchg ੇɹ๏ Symbol Dimensions D 30.0max f1.18maxg 11.0max f0.433maxg 16.0M1.06 f0.630M0.039g P 12.7M1.08 f0.500M0.039g 12.7M0.38 f0.500M0.012g 3.85M0.78 f0.152M0.028g 6.35M1.38 f0.250M0.051g F 5.0M1.3 f0.0M0.079g Qh 0.0M2.0 f0.0M0.079g ੇɹ๏ Symbol Dimensions W 18.0M18.0 f0.709 ɹɹɹg 12.5min f0.492ming 9.0M0.5 f0.354M0.020g 3.0max f0.118maxg b 2.0max f0.079maxg B4.0M0.2B fB0.157M0.008g d 0B0.6M0.05B fB0.024M0.002g L 11.0max f0.433maxg t 0.6M0.3 f0.024M0.012g J1.0 K0.5 Type LAV35 VB UnitDmmfinchg YLHL06/LHLC06/LHLZ06 Type LHL 06 LHLC06 LHLZ06 F1ɹ20ࠩޡM1mmҎ಺ɻ F2ΑΓ͸Έग़͞ͳ͍͜ͱɻ F1ɹAccumulated error for 20 pitches is M 1mm. F2ɹBonding tape must not protrude from the base tape. J0.031 K0.012 J0.039 K0.020 J0.030 K0.020 J0.039 K0.020 J0.8 K0.2 J0.031 K0.008 F1ɹ20ࠩޡM1mmҎ಺ɻ F2ΑΓ͸Έग़͞ͳ͍͜ͱɻ F1ɹAccumulated error for 20 pitches is M 1mm. F2ɹBonding tape must not protrude from the base tape. B6.8f0.268gfL06g B7.5f0.295gfLCC6g B7.8f0.307gfLZC6g

B9.0max fB0.354maxg 30.5max f1.20maxg 18.018.0 f0.709ɹɹg 9.5max f0.374maxg 12.7M1.07 f0.500M0.039g 12.7M0.37 f0.500M0.012g 3.85M0.77 f0.152M0.028g 6.35M1.37 f0.250M0.051g 5.0M5.0 f0.197ɹɹg 0.0M2.0 f0.0M0.079g 18.0M18.0 f0.709ɹɹg 12.5min f0.492ming 9.0M0.5 f0.354M0.020g 3.0max f0.118maxg B4.0M0.2 fB0.158M0.008g B70.6M0.05 fB0.024M0.002g 0.6M0.3 f0.024M0.012g J2.0 K0.0 J0.8 K0.2 J1.0 K0.5 LHL10 B11.0max fB0433maxg 34.0max f1.34maxg 18.018.0 f0.709ɹɹg 14.0max f0.551maxg 12.7M1.07 f0.500M0.039g 12.7M0.37 f0.500M0.012g 3.85M0.77 f0.152M0.028g 6.35M1.37 f0.250M0.051g 5.0M5.0 f0.197ɹɹg 0.0M2.0 f0.0M0.079g 18.0M18.0 f0.709ɹɹg 12.5min f0.492ming 9.0M0.5 f0.354M0.020g 3.0max f0.118maxg B4.0M0.2 fB0.158M0.008g B70.6M0.05 fB0.024M0.002g 0.6M0.3 f0.024M0.012g J2.0 K0.0 J0.8 K0.2 J1.0 K0.5 LHL13 B14.0max fB0.551maxg 37.0max f1.46maxg 18.018.0 f0.709ɹɹg 17.0max f0.669maxg 15.0M1.07 f0.591M0.039g 15.0M0.37 f0.591M0.012g 3.75M0.77 f0.148M0.028g 7.50M1.37 f0.295M0.051g 7.50M05.0 f0.295ɹɹg 0.0M2.0 f0.0M0.079g 18.0M18.0 f0.709ɹɹg 12.5min f0.492ming 9.0M0.5 f0.354M0.020g 3.0max f0.118maxg B4.0M0.2 fB0.158M0.008g 7B0.8M0.05 fB0.031M0.002g 0.6M0.3 f0.024M0.012g J2.0 K0.0 J0.8 K0.2 J1.0 K0.5 LHL16 B17.0max fB0.669maxg 41.0max f1.61maxg 18.018.0 f0.709ɹɹg 21.0max f0.827maxg 30.0M1.07 f1.18M0.039g 15.0M0.37 f0.591M0.012g 3.75M0.77 f0.148M0.028g 7.50M1.37 f0.295M0.051g 7.50M0.50 f0.295M0.020g 0.0M2.0 f0.0M0.079g 18.0M18.0 f0.709ɹɹg 12.5min f0.492ming 9.0M0.5 f0.354M0.020g 3.0max f0.118maxg B4.0M0.2 fB0.158M0.008g 7B0.8M0.05 fB0.031M0.002g 0.6M0.3 f0.024M0.012g J2.0 K0.0 J1.0 K0.5 F2 F2 F2 F2 F1 F1 F1 F1 UnitDmmfinchg D H P F h W d t F1͸20ϐονʹ͖ͭ1mmҎ಺ɻ F2ΑΓ͸Έग़͞ͳ͍͜ͱɻ F1ɹAccumulated error for 20 pitches is 1mm. F2ɹBonding tape must not protrude from the base tape. แɹPACKAGING J0.079 K0.000 J0.079 K0.000 J0.079 K0.000 J0.079 K0.000 J0.031 K0.008 J0.031 K0.008 J0.031 K0.008 J0.039 K0.020 J0.039 K0.020 J0.039 K0.020 J0.039 K0.020

1.Operating temperature Range 2.Storage temperature Range 3.Rated current 4.Impedance 5. Inductance LAYFLD Including self-generated heat LHLYLHFYLHFPD Including self-generated heat [LHL˘˘˘, LHF15BB] LAD The maximum DC value having inductance within 10% and temperature incease within 20ˆ by the application of DC bias. LHLYLHFYLHFPYLAV35D The maximum DC value having inductance decrease within 10% and temperature incease within the following speci- fied temperature by the application of DC bias. ఆԹ౓D20CfLHL06, LAV35g D25CfLHL08, LHL10, LHL13g D30CfLHLC06, LHLZ06, LHL16, LHF15BB, LHFP˘˘BBg FBD No disconnection or appearance abnormaliry by continuous current application for 30 min. Chage after the application shall be within ʶ20% of the initial value.This is not guaranteed for electrial characteristics during current application. FLD The maximum DC value having temperature rise within specified value. FBD Measuring equipmentDImpedance analyzer fHP4191Agor its equivalent Measuring frequencyDSpecified frequency FL06BTD Measuring equipmentD4291A fHPg or its equivalent Measuring frequencyDSpecified frequency LAD Measuring equipmentDLCR meterfHP4285A + HP42851A or its equivalentg Measuring frequencyDSpecified frequency LHLYLHFYLHFPD Measuring equipmentDQ meterfHP4285AJHP42851A or its equivalentg LCR meter f HP4262A g or its equivalentfat 1KHzg Measuring frequencyDSpecified frequency LAV35D Measuring equipmentDQ meterfHP4285AJHP42851A or its equivalentg Measuring frequencyDSpecified frequency FL05R˘D Measuring equipmentDHP4262A or its equivalent. Measuring frequencyD1kHz LA05 Type LHL˘˘˘/ LHF15BB/ LHFP˘˘BB FBA/FBR LAV35LA04 Type Within the specified tolerance FL05˘ Type FL06BT Type K25VJ85C Within the specified tolerance Within the specified toler- ance Refer to individual specifica- tion K25VJ105C K40VJ85C Within the specified tolerance K25VJ105C RELIABILITY DATAɹ 1/9

6.Q 7.DC Resisitance 8.Self resonance frequency Temperature characteristic LAD Measuring equipmentDLCR meterfHP4285AJHP42851A or its equivalentg Measuring frequencyDSpecified frequency LHLYLHFYLHFPYLAV35D Measuring equipmentDQ meterfHP4285AJHP42851A or its equivalentg Q meterfHP4342Agor its equivalent Measuring frequencyDSpecified frequency LAD Measuring equipmentDlow ohmmeter fA&D AD5812 or its equivalentg LHLYLHFYLHFPYFBYLAV35YFLD Measuring equipmentDDC ohmmetr LAD Measuring equipmentDNetwork analyzerfAnritsu MS620J or its equivalentg LHLYLHFYLHFPYLAV35D Measuring equipmentDfHP4191A, 4192Ag its equivalent LAD Change of maximum inductance deviation in step 1to5 step Temperature fCg 12 0

2 K25 fMinimum operating temperatureg

3 20 fStandard temperatureg

4 J85 fMaximum operating temperatureg

[LHL˘˘˘, LHF15BB, LAV35, LHFP˘BB] Change of maximum inductance deviation in step 1to5 Temperature at step 1D20C Temperature at step 2DMinimum operating temperature Temperature at step 3D20C fStandard temperatureg Temperature at step 4DMaximum operating temperature Temperature at step 5D20C LA05 Type LHL˘˘˘/ LHF15BB/ LHFP˘˘BB FBA/FBR LAV35LA04 Type Within the specified tolerance ˚L/LD WithinM7L FL05˘ Type FL06BT Type Within the specified tolerance Within the specified tolerance ˚L/LD WithinM5L Within the specified tolerance Within the specified tolerance ˚L/LDWithinM5L RELIABILITY DATAɹ 2/9

10.Terminal strengthD tensile force 11.Over current 12.Terminal strengthD bending 13.Insulation resisitance D between the terminals and body 14.Insulation resistance D between terminals and core 15.Withstanding Dbetween the terminals and body LAD Apply the stated tensile force progressively in the direction to draw terminal. force(N) duration fSg 25 5 LHLYLHFYLAVYLHFPD Apply the stated tensile force progressively in the direction to draw terminal. Nominal wire diameter tensile force durationfSg Bdfmmg fNg 0.3<BdT0.5 5 0.5<BdT0.8 10 30 M5 0.8<BdT1.2 25 FBAD ʹ20M1NͷҾுྗΛ10M1Ճ͑Δɻ FL05R˘D Fix the component in the direction to draw terminal,and gradually apply the tensile force of 4.9 N. LHLYLHFYLHFPD Measuring currentDRated currentP2 DurationD5min. Number of measuringDone time LAD Suspend a mass at the end the terminalɼincline the body though angel of 90 and return it to initial position.This op- eration is done over a period of 2-3 sec.Then second bend in the opposite direction shall be made. Number of bendsDTwo times. Nominal wire Bending Mass reference diameter tensile force weight Bdfmmgf Ngf kgg 0.5<BdT0.8 5 0.50 LHYFBYLAVD Suspend a mass at the end the terminalɼincline the body though angel of 90 and return it to initial position.This op- eration is done over a period of 2-3 sec.Then second bend in the opposite direction shall be made. Number of bendsDTwo times. Nominal wire Bending Mass reference diameter tensile force weight Bdfmmgf Ngf kgg 0.5<BdT0.8 5 0.5 0.8<BdT1.2 10 1.0 LHLYLHFD Applied voltageD500 VDC DurationD60 sec. FBAYFBRD Applied voltageD100 VDC DurationD60M5 sec. ʤLHL˘˘˘, LHF15BBʥ Accoding to JIS C5102. 7. 1. 3 fCg Metal global method Applied voltageD500 VDC DurationD60 sec. LA05 Type LHL˘˘˘/ LHF15BB/ LHFP˘˘BB FBA/FBR LAV35LA04 Type No abnormality such as cut lead, or looseness. There shall be no scorch or short of wire. 100MЊmin. No abnor- mality such as insula- tion dam- age FL05˘ Type FL06BT Type No abnor- mality such as cut lead, or loose- ness. 1MЊmin. fOther than materail code MAg No abnormality such as cut lead, or looseness. No abnormality such as cut lead,or looseness. RELIABILITY DATAɹ 3/9

16.DC bias characteristic 17.Body strength 18.Resisitance to vibration LAYLAV35D Measure inductance with appliation of rated current using LCR meter to compare it with the initial value. LA02YLAV35D Applied forceD30N DurationD10 sec. SpeedDShall attain to specified force in 2 sec. LA03YLA04YLA05D Applied forceD50N DurationD10 sec. SpeedDShall attain to specified force in 2 sec. FBD Applied forceD50M3N DurationD30M1 sec. LAD Accoding to JIS C5102 8. 2 Vibaration typeDA DirectionsD2 hrs each in X, Y and Z directions totalD6hrs. Frequency rangeD10 to 55 to 10Hzf1min.g AmplitudeD1.5mm Mounting methodDSoldering onto printed board. Recovery DAt least 1hr of recovery under the standard condition after the test, followed by the mea- surement within 2hrs. LHLYLHFYLHFPYFBYLAVD Accoding to JIS C0040 Vibaration typeDA DirectionsD2 hrs each in X, Y and Z directions totalD6hrs. Frequency rangeD10 to 55 to 10Hzf1min.g AmplitudeD1.5mm fBut don't exceed acceleration 196m/s ftwo powerg Mounting methodDSoldering onto printed board. LA05 Type LHL˘˘˘/ LHF15BB/ LHFP˘˘BB FBA/FBR LAV35LA04 Type AppearanceD No abnomality ˚L/LD WithinM5L Q changeD WithinM30L FL05˘ Type FL06BT Type ˚L/LD K10L Within No abnor- mality as damage. ˚L/LD WithinM5L QD30min. No signifi- cant dam- age such as cracks on body. AppearanceD No abnomality Impedance changeD WithinM20L ˚L/LD WithinM5L ˚Q/QD WithinM10L ˚L/LD WithinM5L QD15min. No abnormality as damage. ˚L/LD WithinM5L QD30min. ˚L/LDWithin K10L RELIABILITY DATAɹ 4/9

19.Resistance to shock 20.Solderability LAYLAV35D Drop test Impact materialDconcrete or vinyl tile HeightD1m Total number of dropsD10 times LAD Solder temperatureD230M5C DurationD2M0.5 sec. LHLYLHFYLHFPD Solder temperatureD235M5C DurationD2M0.5 sec. Immersion depthDUp to 1.5mm from bottom of kinked part. [LHL06, LHLC06, LHLZ06] DUp to 1.5mm from bottom of case. [LHL08, LHL10, LHL13, LHL16] DUp to 1.5mm from bottom of base. [LHF15BB, LHFP˘˘BB] FBD Solder temperatureD230M5C DurationD3M1 sec. Immersion depthDUp to 1.5mm from terminal root. LAV35D Solder temperatureD230M5C DurationD2M0.5 sec. FL05R˘D Solder temperatureD230M5C DurationD2M0.5 sec. Immersion depthDUp to 2V2.5mm from terminal root. FL06BTD Solder temperatureD230M5C DurationD3M1 sec. Immersion depthDUp to 0.5V1.0mm from terminal root. LA05 Type LHL˘˘˘/ LHF15BB/ LHFP˘˘BB FBA/FBR LAV35LA04 Type No significant abnormality in appearance At least 75L of terminal electrode is coverd by new solder. At least 75L of lead circu ference is covered by new solder. FL05˘ Type FL06BT Type No signifi- cant abnor- mality in ap- pearance At least 90L of lead circu , ference is covered by new solder. At least 75L of lead circu, ference is covered by new solder. RELIABILITY DATAɹ 5/9

21.Resisitance to soldering heat LAD Solder temperatureD260M5CfLA02g 270M5CfLA03YLA04YLA05g DurationD5M0.5 sec.ɹOne time Immersed conditionsDInserted into substrate with̓= 1.6mm Recovery DAt least 1hr of recovery under the standard condition after the test, followed by the mea- surement within 2hrs. LHLYLHFYLHFPD Solder bath method Solder temperatureD260M5C DurationD10M1 sec. DUp to 1.5mm from bottom of kinked part. [LHL06, LHLC06, LHLZ06] DUp to 1.5mm from bottom of case. [LHL08, LHL10, LHL13, LHL16] DUp to 1.5mm from bottom of base. [LHF15BB, LHFP˘˘BB] Manual soldering Solder temperatureD350M10CfAt the tip of soldering irong DurationD5M1 sec. DUp to 1.5mm from bottom of kinked part. [LHL06, LHLC06, LHLZ06] DUp to 1.5mm from bottom of case. [LHL08, LHL10, LHL13, LHL16] DUp to 1.5mm from bottom of base. [LHF15BB, LHFP˘˘BB] CautionDNo excessive pressing shall be applied to terminald RecoveryD4 to 24hrs of recovery under the standard con- dition after the tset. FBD Solder bath method Condition 1 Solder temperatureD260M5C DurationD10M1 sec. Immersion depthDUp to 1.5mm from terminal root. Condition 2 Solder temperatureD350M5C DurationD3M1 sec. Immersion depthDUp to 1.5mm from terminal root. RecoveryD3hrs of recovery under the standard condition after the test. LAV35D Solder temperatureD260M5C DurationD5M0.5 sec. Immersion depth DUp to 2.0 to 2.5mm from botoom of kinked part. RecoveryD4 to 24hrs of recovery under the standard con- dition after the tset. FLD Solder conditionD260M5Cɹ10M1 sec. Immersion depthDUp to 0.5 to 1.0mm from terminal root. RecoveryD3hrs of recovery under the standard condition after the test. LA05 Type LHL˘˘˘/ LHF15BB/ LHFP˘˘BB FBA/FBR LAV35LA04 Type No significant abnormality in appearance No signifi- cant abnor- mality in ap- pearance Inductance changeD WithinM5L Q changeD WithinM30L FL05˘ Type FL06BT Type ˚L/LD WithinM5L QD30min. No signifi- cant abnor- mality in ap- pearance Impedance change D WithinM20L Refer to individual specifica- tion ˚L/LD Within M5L QD15min. No signifi- cant abnor- mality in ap- pearance Impedance changeɿ WithinM20L RELIABILITY DATAɹ 6/9

RELIABILITY DATAɹ 7/9 Item LA02 Type/ LA03 Type Specified Value Test Method and Remarks 22.Resisitance to solvent 23.Thermnal shock FBD Solvent temperatureD20V25C DurationD30M5 sec. Solvent typeDAcetone, trichloroethylene RecoveryD3hrs of recovery under the standard condition after the test. LAD Conditions for 1cycle Step Temperature fCg Durationfming

1 K25 30 M3

2 Room temperature Within 3

3 J85 30 M3

4 Room temperature Within 3

Recovery DAt least 1hr of recovery under the standard condition after the removal from test chamber, followed by the measurement within 2hrs. LHLYLHFYFBD Accoding to JIS C0025 Conditions for 1 cycle Step Temperature fCg Durationfming Minimum operating 30M3 temperature Number of cyclesD10 cycles ʤLHL˘˘˘, LHF˘˘BB, LHF15BBʥ D5 cyclesfFBA, FBRg RecoveryD4 to 24hrs of recovery under the standard con- dition after the removal from the test cfamber. ʤLHL˘˘˘, LHF˘˘BB, LHF15BBʥ D3hrs of recovery under the standard condition af- ter the removal from the test cfamber.fFBA, FBRg LAVD Conditions for 1 cycle Step Temperature fCg Durationfming Minimum operating 30M3 temperature Number of cyclesD10 cycles Recovery DAt least 1hr of recovery under the standard condition after the removal from test chamber, followed by the measurement within 2hrs. FLD Accoding to JIS C0025 Conditions for 1 cycle Step Temperature fCg Durationfming Number of cyclesD10 cycles RecoveryD1 to 2hrs of recovery under the standard con- dition after the removal from the test cfamber. LA05 Type LHL˘˘˘/ LHF15BB/ LHFP˘˘BB FBA/FBR LAV35LA04 Type ˚L/LD WithinM10L QD30min. AppearanceD No abnor- mality Inductance changeD WithinM10L Q changeD WithinM30L FL05˘ Type FL06BT Type Please avoid the ul- trasonic cleaning of this product. ˚L/LD WithinM10L QD20min. No signifi- cant abnor- mality in ap- pearance Impedance changeD WithinM20L AppearanceD No abnor- mality Impedance changeD WithinM20L Refer to individual specifica- tion ˚L/LD WithinM10L ˚Q/QD WithinM30L ˚L/LD WithinM10L QD15min. AppearanceD No abnor- mality Impedance changeD WithinM20L Pleasa avoid the ultrasonic cleaning of this product.

RELIABILITY DATAɹ 8/9 Item LA02 Type/ LA03 Type Specified Value Test Method and Remarks 24.Damp heat 25.Loading under damp heat 26.Loading at high tempera- ture LAYLAV35D TemperatureD40M2C HumidityD90V95LRH DurationD1000 hrs RecoveryDAt least 1hr of recovery under the standard re- moval from test chamber, followed by the mea- surement within 2hrs. FBD TemperatureD60M2C HumidityD90 V95LRH DurationD1000 hrs RecoveryD1 to 2hrs of recovery under the standard con- dition after the removal from the test cfamber. LAYLAV35D TemperatureD40M2C HumidityD90V95LRH DurationD1000 hrs Applied currentDRated current RecoveryDAt least 1hr of recovery under the standard re- moval from test chamber, followed by the mea- surement within 2hrs. LHLYLHFYLHFPD TemperatureD40M2C HumidityD90V95LRH DurationD1000M24 hrs Applied currentDRated current RecoveryD1 to 2hrs of recovery under the standard con- dition after the removal from the test cfamber. FLD TemperatureD60M3C HumidityD90V95LRH DurationD500 fJ12, K0ghrs Applied currentDRated current RecoveryD1 to 2hrs of recovery under the standard con- dition after the removal from the test cfamber. LAYLAV35D TemperatureD85M2C DurationD1000 hrs Applied currentDRated current RecoveryDAt least 1hr of recovery under the standard re- moval from test chamber, followed by the mea- surement within 2hrs. LA05 Type LHL˘˘˘/ LHF15BB/ LHFP˘˘BB FBA/FBR LAV35LA04 Type ˚L/LD WithinM10L QD30min. ˚L/LD WithinM10L QD30min. ˚L/LD WithinM10L QD30min. AppearanceD No abnor- mality Imductance changeD WithinM10L Q changeD WithinM30L FL05˘ Type FL06BT Type ˚L/LD WithinM10L QD20min. ˚L/LD WithinM10L QD20min. ˚L/LD WithinM10L QD20min. AppearanceD No abnor- mality Impedance changeD WithinM20L Refer to individual specifica- tion ˚L/LD WithinM10L ˚Q/QD WithinM30L ˚L/LD WithinM10L ˚Q/QD WithinM30L ˚L/LD WithinM10L ˚Q/QD WithinM30L ˚L/LD WithinM10L QD15min. ˚L/LD WithinM10L QD15min. ˚L/LD WithinM10L QD15min. AppearanceD No abnor- mality Impedance changeD WithinM20L

RELIABILITY DATAɹ 9/9 Item LA02 Type/ LA03 Type Specified Value Test Method and Remarks 27.Low temperature life test 28.High temperature life test LAD TemperatureDK25M2C DurationD1000 hrs RecoveryDAt least 1hr of recovery under the standard re- moval from test chamber, followed by the mea- surement within 2hrs. LHLYLHFYLHFPD TemperatureDK40M3C DurationD1000M24 hrs RecoveryD1 to 2hrs of recovery under the standard con- dition after the removal from the test cfamber. LAV35D TemperatureDK40M3C DurationD1000 hrs RecoveryDAt least 1hr of recovery under the standard re- moval from test chamber, followed by the mea- surement within 2hrs. FLD TemperatureDK40M3C DurationD500fJ12, K0ghrs RecoveryD1 to 2hrs of recovery under the standard con- dition after the removal from the test cfamber. LHLYLHFYLHFPD TemperatureD105M3C DurationD1000M24 hrs RecoveryD1 to 2hrs of recovery under the standard con- dition after the removal from the test cfamber. FLD TemperatureD85M3C DurationD500fJ12, K0ghrs RecoveryD1 to 2hrs of recovery under the standard con- dition after the removal from the test cfamber. LA05 Type LHL˘˘˘/ LHF15BB/ LHFP˘˘BB FBA/FBR LAV35LA04 Type ˚L/LD WithinM10L QD30min. AppearanceD No abnor- mality Inductance change D WithinM10L Q changeD WithinM30L AppearanceD No abnor- mality Inductance changeD WithinM10L Q changeD WithinM30L FL05˘ Type FL06BT Type ˚L/LD WithinM10L QD20min. Refer to individual specifica- tion Refer to individual specifica- tion ˚L/LD WithinM10L ˚Q/QD WithinM30L ˚L/LD WithinM10L QD15min. AppearanceD No abnor- mality Impedance changeD WithinM20L AppearanceD No abnor- mality Impedance changeD WithinM20L

Technical considerationsStages Precautions LA TypeɼLH TypeɼFB TypeɼFL Type 1.Circuit Design 2.PCB Design 3.Considerations for automatic placement 4.Soldering 5.Cleaning 6.Handling 7.Storage conditions Operating environment, 1.The products described in this specification are intended for use in general electronic equipment,(office supply equipment, telecommunications systems, measuring equipment, and household equipment). They are not intended for use in mission-critical equipment or systems requiring special quality and high reliability (traffic systems, safety equipment, aerospace systems, nuclear control systems and medical equipment including life-support systems,) where product failure might result in loss of life, injury or damage. For such uses, contact TAIYO YUDEN Sales Department in advance. Design 1.Please design insertion pitches of a base in the pitches that fitted a terminal interval. Adjustment of mounting machine 1.Excessive impact load should not be imposed on the products when mounting onto the PC boards. 2.Mounting and soldering conditions should be checked beforehand. Wave soldering 1.Please refer to the specifications in the catalog for a wave soldering. 2.Do not immerse the entire Inductors in the flux during the soldering operation. Lead free soldering 1.When using products with lead free soldering, we request to use them after confirming of adhesion, temperature of resistance to soldering heat, soldering etc sufficiently. Recommended conditions for using a soldering iron: Put the soldering iron on the land-pattern. Soldering iron's temperature - Below 350 ˆ Duration - 3 seconds or less The soldering iron should not directly touch the inductor. Cleaning conditions 1.LA type, LH type Please do not do cleaning by a supersonic wave. Handling 1.Keep the inductors away from all magnets and magnetic objects. Mechanical considerations 1.Please do not give the inductors any excessive mechanical shocks. 2.LH type If inductors are dropped onto the floor or a hard surface they should not be used. Packing 1.Please do not give the inductors any excessive mechanical shocks. In loading, please pay attention to handling indication mentioned in a packing box (a loading direction / number of maximum loading / fragile item). Storage Storage 1.To maintain the solderability of terminal electrodes and to keep the packing material in good condition, temperature and humidity in the storage area should be controlled.. ɾRecommended conditions Ambient temperatureɹɹɹɹɹ0ʙ40ˆ Humidity Below 70 % RH The ambient temperature must be kept below 30 ˆ. Ev en under ideal storage conditions, solderability of products electrodes may decrease as time passes. For this reason, inductors should be used within one year from the time of delivery. In case of storage over 6 months, solderability shall be checked before actual usage. 1.When Inductors are mounted onto a PC board, hole dimensions on the board should match the lead pitch of the component, if not, it will cause breakage of the terminals or cracking of terminal roots covered with resin as excess stress travels through the terminal legs. 1. When installing products, care should be taken not to apply distortion stress as it may deform the products. 1.If products are used beyond the range of the recommended conditions, heat stresses may deform the products, and consequently degrade the reliability of the products. LA type, LH type 1.If washing by supersonic waves, supersonic waves may deform products. 1.There is a case that a characteristic varies with magnetic influence. 1.There is a case to be damaged by a mechanical shock. 2.LH type There is a case to be broken by a fall. 1.There is a case that a lead route turns at by a fall or an excessive shock. 1. Under a high temperature and humidity environment, problems such as reduced solderability caused by oxidation of terminal electrodes and deterioration of taping/packaging materials may take place. PRECAUTIONS