Ferrite Cores HIGH POWER INDUCTORS POWER SUPPLY (APPLICATION)

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1 Products LUN / HOKE OILS / NTENN FLYK TRNSFORMERS HIGH POWER INUTORS POWER SUPPLY (PPLITION) POWER SUPPLY and SIGNL TRNSFORMERS (PPLITION) VRIOUS NUTORS HIGH 's and HIGH PERMEILITY MTERIL HIGH PERMEILITY MTERIL HIGH PERFORMNE MTERIL MTERIL HRTERISTIS Summary RHH, R4H, RI, R Series UR,URS Series T, UU, E, EI, PQ, EE, EI, T, SP Series EE, EF Series EER Series EER Series EL Series ET, E Series LP Series PQ Series EE, ER, EEM Series (Low Profile) EP Series EP Series Mini. Pot Series Pot Series RM Series T Series R, THP, P(UP), TH Series N50 Series H54 Series P45, 46 Series ll Material Table

2 Ferrite Material haracteristics Material haracteristics Table MTERIL HRTERISTIS Material H5 H52 H52 H53 H54 HP5 Initial permeability µi , 0% 7500±25% 10000±30% 15000±30% 12000±25%(25 ) 5000±20% 9000( 20 ) Relative loss factor tanδ/µi 10 6 <2.5(10kHz) <10(100kHz) <6.5(10kHz) <7(10kHz) <7(10kHz) <8(10kHz) <3.5(10kHz) Temperature factor of αµir 10 6 initial permeability 30 to to 2 0 to to to to to +20 ±12.5% +20 to to 2 0 to to to to 3 ±12.5% urie temperature Tc >130 >130 >120 >105 >110 >140 Saturation magnetic flux density s mt H=1194/m Remanent flux density r mt oercive force Hc /m Hysteresis loss factor [1.5 to 3mT] η 10 6 <0.8 <1 <1.4 <0.5 <1 <0.4 mt isaccommodation factor [1 to 10min] F 10 6 <3 <3 <2 <2 <3 <3 Electrical resistivity ρv Ω-m ensity db kg/m verage value The values were obtained with toroidal cores at room temperature unless otherwise shown. FOR TRNSFORMER N HOKE Material P40 P44 P50 Initial permeability µi 2300±25% 2400±25% 1400±25% mplitude permeability µa 3000min. 3000min. ore loss [=200mT] Pcv kw/m 3 25kHz sine wave kHz sine wave Saturation magnetic flux density 1 [H=1194/m] s mt Remanent flux density 1 oercive force r mt Hc /m urie temperature 1 Tc >215 >215 >240 Electrical resistivity 1 ρv Ω-m ensity 1 db kg/m verage value 2 500kHz, 50mT The values were obtained with toroidal cores at room temperature unless otherwise shown.

3 Ferrite Material haracteristics Material haracteristics Table FOR EM PREVENTION OMMON-MOE HOKE Material HS52 HS72 HS10 Initial permeability µi 5500±25% 7500±25% (2000min. at 500kHz) 10000±25% Relative loss factor tanδ/µi (100kHz) (100kHz) (100kHz) Saturation magnetic flux density [H=1194/m] s mt Remanent flux density r mt oercive force Hc /m urie temperature Tc >130 >130 >120 Electrical resistivity ρv Ω-m ensity db kg/m verage value The values were obtained with toroidal cores at room temperature unless otherwise shown

4 High Permeability Material H54 Material ER, EP, EEM, EE, RM, EP, T Series s ISN, PHS, etc. quickly become widespread in the data communication market, communication devices are increasingly being installed outdoors. TK developed wide temperature range, high permeability H54 material by taking full advantage of TK s ferrite materials experience and precise manufacturing process control technology. n initial permeability µi 9000 is maintained at temperatures above 20. This material has the optimum characteristics for the design of ISN pulse transformers, etc. used by outdoor installations of communication equipment requiring the maintenance of characteristics down to low temperatures. MTERIL HRTERISTIS Material H54 Initial permeability [ 20 ] 9000 µi [25 ] 12000±25% Relative loss factor [10kHz] tanδ/µi Saturation magnetic flux density S mt 380 Remanent flux density r mt 100 oercive force H /m 4.4 isaccommodation factor [1 to 10min, 10kHz] F urie temperature T 110 STNR SHPES ER ORE:ER9.5/5, ER11/3.9, ER11/5, ER14.5/6 EP ORE:EP10, EP13 EEM ORE:EEM8/8, EEM10/10, EEM12.7/13.7, EEM13/13 EE ORE:EE8.9/8 RM ORE:RM5, RM6 EP ORE:EP7, EP10, EP13 T ORE:T3.05, T3.94, T4, T4.83, T6 INITIL PERMEILITY vs. TEMPERTURE HRTERISTIS kHz µ i Test core O: 31mm I : 19mm TH : 8mm Temperature( ) HRTERISTIS ER ORE L-value(nH/N 2 ) obbin Flange H54ER9.5/5-Z 3000min. 3000min. ER9.5/5-118G FER9.5/5- H54ER11/3.9-Z 4150min. 4150min. ER11/ G FER11/3.9- H54ER11/5-Z 4050min. 4050min. ER11/5-1110G FER11/5- H54ER14.5/6-Z 5000min. 5000min. ER14.5/6-1110G FER14.5/6- Measuring conditions: ER9.5/5, ER11/3.9, ER11/5:10kHz, 10mV, ø0.1mm, 100ts./ER14.5/6:10kHz, 10mV, ø0.18mm, 100ts. EP ORE L-value(nH/N 2 ) obbin Flange H54EP10-Z 2150min. 2150min. EP G FEP-10- H54EP13-Z 2000min. 2000min. EP G FEP-13- Measuring conditions: EP10:10kHz, 10mV, ø0.1mm, 100ts./EP13:10kHz, 10mV, ø0.2mm, 100ts.

5 High Permeability Material H54 Material ER, EP, EEM, EE, RM, EP, T Series HRTERISTIS EEM ORE L-value(nH/N 2 ) obbin Flange H54EEM12.7/13.7-Z 2500min. 2500min. EM-12.7/ G FEM12.7/13.7- H54EEM8/8-Z 860min. 860min. EM-8/8-018G H54EEM10/10-Z 1130min. 1130min. EM-10/ G H54EEM13/13-Z 1360min. 1360min. EM-13/ G Measuring conditions:10khz, 10mV, ø0.1mm, 100ts. EE ORE L-value(nH/N 2 ) obbin Flange H54EE5-Z 850min. 850min. E-5-916F FE-5- H54EE8.9/8-Z 1700min. 1700min. E-8.9/8-118G Measuring conditions: EE5:10kHz, 10mV, ø0.1mm, 100ts./EE8.9:10kHz, 10mV, ø0.2mm, 100ts. RM ORE L-value(nH/N 2 ) obbin Flange H54RM5Z min. 6200min. RM-5-716P FRM-5- H54RM6Z min. 7150min. RM-6-716P FRM-6- Measuring conditions: RM5:10kHz, 10mV, ø0.18mm, 100ts./RM6:10kHz, 10mV, ø0.2mm, 100ts. EP ORE L-value(nH/N 2 ) obbin Flange H54EP7-Z 3500min. 3500min. EP FEP-7- H54EP10-Z 3200min. 3200min. EP FEP-10- H54EP13-Z 4650min. 4650min. EP FEP-13- Measuring conditions: EP7:10kHz, 10mV, ø0.13mm, 100ts./EP10, EP13:10kHz, 10mV, ø0.2mm, 100ts. T ORE L-value(nH/N 2 ) H54T3.05X1.27X min. 2600±25% H54T4X1X2 1200min. 1600±25% H54T3.94X1.27X min. 1700±25% H54T4.83X1.27X min. 2200±25% H54T6X1.5X3 1800min. 2400±25% H54T5.84X1.52X min. 2300±25% Measuring conditions: T3.05, T4, T3.94, T4.83:10kHz, 10mV, ø0.12mm, 100ts. T6, T5.84:10kHz, 10mV, ø0.2mm, 100ts.

6 High Permeability Material H54 Material ER, EP, EEM, EE, RM, EP, T Series MOUNTING IMENSIONS Mounting dimensions epth Width Height Number of terminals H54ER9.5/5-Z H54ER11/3.9-Z H54ER11/5-Z H54ER14.5/6-Z H54EP10-Z H54EP13-Z H54EEM12.7/13.7-Z H54EEM8/8-Z H54EEM10/10-Z H54EEM13/13-Z H54EE5-Z H54EE8.9/8-Z H54EP7-Z H54EP10-Z H54EP13-Z H54RM5Z H54RM6Z H54T3.05X1.27X1.27 H54T3.94X1.27X2.23 H54T4X1X2 H54T4.83X1.27X2.29 H54T6X1.5X3 Mounting type SM SM SM SM Lead-through Lead-through

7 High Flux ensity, High Permeability Material N50 Material, EP, P, EP, EEM, PQ, RM, ER, EE Series It has become an important issue to support global method of ISN interfaces associated with the widespread use of ISN networks worldwide. TK N50 ferrite material, a high µ and high with µi=5500 and s 500mT, has been developed to provide stable magnetic characteristics to the global method(echo canceller method) of the ultra-small gap specification for superposition direct current. eside its high µ and high characteristics, its core loss value at high level is controlled to provide optimal use for back light transformers driven at high level of ultra-small gap specifications. MTERIL HRTERISTIS Material N50 Initial permeability µi 5500±20% Relative loss factor[10khz] tanδ/µi [25 ] 550 Power loss Pcv kw/m [100kHz, 200mT] [40 ] 450 [100 ] 1000 Saturation magnetic flux density s mt [25 ] 550 [100 ] 380 Remanent flux density r mt [25 ] 95 [100 ] 55 oercive force [1194/m] isaccommodation factor [1 to 10min, 10kHz] Hc /m [25 ] 7 [100 ] 5.8 F urie temperature Tc 210 STNR SHPES ORE: 23/11, 23/18 EP ORE: EP17, EP20 P ORE: P4.6/3.1, P5.8/3.3, P7/4 EP ORE: EP10, EP13 EEM ORE: EEM8/8, EEM10/10, EEM12.7/13.7, EEM13/13 PQ ORE: PQ26/20, PQ26/25 RM ORE: RM8, RM10 ER ORE: ER9.5/5, ER11/3.9, ER11/5, ER14.5/6 EE ORE: EE5, EE8.9/9 INITIL PERMEILITY vs. TEMPERTURE HRTERISTIS ORE LOSS vs. TEMPERTURE HRTERISTIS kHz kHz, 200mT µ i ore loss(kw/m 3) Temperature( ) Temperature( ) HRTERISTIS FOR INTERFE ORE L-value(nH/N 2 ) obbin Flange N5023/11Z ±25% N5023/ ±3% 23/ NP N5023/ ±3% N5023/18Z ±25% N5023/ ±3% 23/ NP N5023/ ±3% Measuring conditions:1khz, 0.5mT, ø0.35mm, 100ts.

8 High Flux ensity, High Permeability Material N50 Material, EP, P, EP, EEM, PQ, RM, ER, EE Series HRTERISTIS FOR INTERFE PQ ORE L-value(nH/N 2 ) obbin Flange N50PQ26/20Z ±25% N50PQ26/ ±5% PQ26/ P FPQ26/20- N50PQ26/ ±10% N50PQ26/25Z ±25% N50PQ26/ ±5% PQ26/ P FPQ26/25- N50PQ26/ ±10% Measuring conditions:1khz, 0.5mT, ø0.35mm, 100ts. EP ORE L-value(nH/N 2 ) obbin Flange N50EP17-Z 3300min. EP FEP-17- N50EP20-Z 5900min. EP FEP-20- Measuring conditions EP17:1kHz, 0.5mT, ø0.2mm, 100ts./EP20:1kHz, 0.5mT, ø0.35mm, 100ts. RM ORE L-value(nH/N 2 ) obbin Flange N50RM8Z ±25% N50RM ±3% RM-8-718P FRM-8- N50RM ±3% N50RM10Z ±25% N50RM ±3% RM S FRM-10- N50RM ±3% Measuring conditions:1khz, 0.5mT, ø0.4mm, 100ts. FOR K LIGHT TRNSFORMER P ORE L-value(nH/N 2 ) obbin Flange N50P4.6/3.1Z-12S 670±30% N50P5.8/3.3Z-52S 900±25% P5.8/ N50P7/4Z-52S 1230±25% P7/4-612 Measuring conditions P4.6/3.1:1kHz, 0.5mT, ø0.05mm, 100ts. P5.3/3.3:1kHz, 0.5mT, ø0.08mm, 100ts. P7/4:1kHz, 0.5mT, ø0.1mm, 100ts. ER ORE L-value(nH/N 2 ) obbin Flange N50ER9.5/5-Z 900min. N50ER9.5/563 63±5% ER9.5/5-118G FER9.5/5- N50ER9.5/ ±7% N50ER11/3.9-Z 1400min. N50ER11/ ±5% ER11/ G FER11/3.9- N50ER11/ ±7% N50ER11/5-Z 1300min. N50ER11/563 63±5% ER11/5-1110G FER11/5- N50ER11/ ±7% N50ER14.5/6-Z 1700min. N50ER14.5/ ±5% ER14.5/6-1110G FER14.5/6- N50ER14.5/ ±7% Measuring conditions ER9.5/5, ER11/3.9, ER11/5:1kHz, 0.5mT, ø0.1mm, 100ts. ER14.5/6:1kHz, 0.5mT, ø0.18mm, 100ts.

9 High Flux ensity, High Permeability Material N50 Material, EP, P, EP, EEM, PQ, RM, ER, EE Series FOR K LIGHT TRNSFORMER EP ORE L-value(nH/N 2 ) obbin Flange N50EP10-Z 1450±25% N50EP ±7% EP G FEP-10- N50EP ±10% N50EP13-Z 1400±25% N50EP ±4% EP G FEP-13- N50EP ±5% Measuring conditions EP10:1kHz, 0.5mT, ø0.1mm, 100ts./EP13:1kHz, 0.5mT, ø0.2mm, 100ts. EEM ORE L-value(nH/N 2 ) obbin Flange N50EEM12.7/13.7-Z 1300±25% N50EEM12.7/ ±5% EM12.7/ G FEM12.7/13.7- N50EEM12.7/ ±7% N50EEM8/8-Z 320min. N50EEM8/825 25±10% EM-8/8-018G N50EEM8/840 40±15% N50EEM10/10-Z 400min. N50EEM10/ ±7% EM-10/ G N50EEM10/ ±10% N50EEM13/13-Z 550min. N50EEM13/ ±8% EM-13/ G N50EEM13/ ±12% Measuring conditions:1khz, 0.5mT, ø0.1mm, 100ts. EE ORE L-value(nH/N 2 ) obbin Flange N50EE5-Z 300min. N50EE525 25±15% E-5-916F FE-5- N50EE8.9/8Z 690±25% N50EE8.9/825 25±8% E-8.9/8-118G N50EE8.9/840 40±13% Measuring conditions EE5:1kHz, 0.5mT, ø0.1mm, 100ts. EE8.9/8:1kHz, 0.5mT, ø0.2mm, 100ts.

10 High Flux ensity, High Permeability Material N50 Material, EP, P, EP, EEM, PQ, RM, ER, EE Series MOUNTING IMENSIONS FOR ISN INTERFE Mounting dimensions(mm) Number of epth Width Height terminals N5023/ N5023/ N50PQ26/ N50PQ26/ N50EP N50EP N50RM N50RM Mounting type Lead-through FOR K LIGHT TRNSFORMERS Mounting dimensions(mm) Number of epth Width Height terminals N50P4.6/ N50P5.8/ N50P7/ N50ER9.5/ N50ER11/ N50ER11/ N50ER14.5/ N50EP N50EP N50EEM12.7/ N50EEM N50EEM10/ N50EEM13/ N50EE N50EE8.9/ Mounting type SM

11 For Power Supply and Signal Transformer Thin Ferrite ores for SM Transformers EE, ER, EEM Series ORE SHPES N IMENSIONS/HRTERISTIS ø 2 F 2 F 2 F Fig. 1 Fig. 2 Fig. 3 Type Fig. imensions (mm) e le 2 F (mm 2 ) (mm) EE ± ± ± ± EE8.9/ ±0.2 8± ± ± ER9.5/ ± ±0.1 ø3.4± ± ER11/ ± ±0.1 ø4.13± ± ER11/ ± ±0.1 ø4.13± ± ER14.5/ ± ±0.1 ø4.7± ± EEM12.7/ ± ±0.3 6± ± ELETRIL HRTERISTIS WITHOUT IR GP H53EE5-Z P44EE5-Z P44EE8.9/8-Z H53ER9.5/5-Z P44ER9.5/5-Z P50ER9.5/5-Z H53ER11/3.9-Z P44ER11/3.9-Z P50ER11/3.9-Z L-value (nh/n 2 ) 980min. [10kHz, 10mV, 100Ts] 200min. 480±25% 3500min. [10kHz, 10mV, 100Ts] 610min. 750±25% 4900min. [10kHz, 10mV, 100Ts] 1040min. 1100±25% alculated output power (W) 1.1[100kHz] 1.9[100kHz] 3.9[100kHz] 9.6[500kHz] 3.8[100kHz] 9.2[500kHz] L-value alculated output (nh/n 2 ) power (W) H53ER11/5-Z 4760min. [10kHz, 10mV, 100Ts] P44ER11/5-Z 870min. 5[100kHz] P50ER11/5-Z 960±25% 11[500kHz] H53ER14.5/6Z 5950min. [10kHz, 10mV, 100Ts] P44ER14.5/6Z 1280min. 9.5[100kHz] P50ER14.5/6Z 1150±25% 19[500kHz] P44EEM12.7/13.7-Z 820±25% [10kHz, 10mV, 100Ts] 9.5[100kHz] P50EEM12.7/13.7-Z 580±25% [10kHz, 10mV, 100Ts] 20[500kHz] The values were obtained with forward converter mode.

12 For Power Supply and Signal Transformer Thin Ferrite ores for SM Transformers EE, ER, EEM Series WITH IR GP L-value (nh/n 2 ) P44ER9.5/5XXX 63±5%, 100±7% P50ER9.5/5XXX 63±5%, 100±7% P44ER11/3.9XXX 63±5%, 100±7% P50ER11/3.9XXX 63±5%, 100±7% P44ER11/5XXX 63±5%, 100±7% P50ER11/5XXX 63±5%, 100±7% P44ER14.5/6XXX 100±5%, 160±7% P50ER14.5/6XXX 100±5%, 160±7% P44ER12.7/13.7XXX 40±5%, 63±7% P50EEM12.7/13.7XXX 40±5%, 63±7% XXX: L-value OINS w H No. of pin imensions (mm) terminal W H lamp E-5-916F FE-5- E-5-926F FE-5- E-8.9/8-118G ER9.5/5-118G FER9.5/5- ER11/ G ER11/5-1110G FER11/5- ER14.5/6-1110G FER14.5/6- EM12.7/ G FEM12.7/13.7- lamp material: Stainless steel obbin material: FR phenol, UL Grade: 94V-0 Pin material E; Phosphor bronze (Solder plated), ER and EM; Steel wire (Solder plated)

13 For Power Supply and Signal Transformer EP ores EP Series ORE SHPES N IMENSIONS/HRTERISTIS 2 1 Fig.1 U.S.PT.4,760,366 EP.PT.245,083(E,FR,G,NL) KS.UM50,836 TW.UM39,406 JP.PENING Fig.2 2 Fig.3 2 Type Fig. imensions (mm) e le Weight 1 2 (mm 2 ) (mm) (g) EP ± ±0.1 5± ± ± EP ± ± ± ± ± EP ±0.4 6± ± ± ± EP ±0.4 6± ± ± ± EP ±0.5 8± ±0.2 4± ± EP ± ± ± ± ± EP ±0.5 8±0.2 13±0.3 4±0.1 16± EP27N 4 27± ± ± ±0.1 13± EP ±0.5 8±0.2 15±0.3 4± ± Fig.4 ELETRIL HRTERISTIS WITHOUT IR GP L-value alculated output (nh/n 2 ) power (W) P44EP10-Z 1000±25% 5.4[100kHz] P50EP10-Z 660±25% 13[500kHz] H53EP10-Z 2660min. [10kHz, 10mV, 100Ts] P44EP13-Z 870±25% 8.6[100kHz] P50EP13-Z 560±25% 19[500kHz] H53EP13-Z 2450min. [10kHz, 10mV, 100Ts] P44EP17-Z 1150±25% 20[100kHz] P50EP17-Z 740±25% 35[500kHz] P44EP19-Z 940±25% 27[100kHz] P50EP19-Z 680±25% 55[500kHz] P44EP25-Z 1560±25% 63[100kHz] P50EP25-Z 1080±25% 127[500kHz] P44EP25-Z 1560±25% 45[100kHz] P50EP25-Z 1080±25% 87[500kHz] P44EP27-Z 1540±25% 80[100kHz] P50EP27-Z 1030±25% 161[500kHz] P44EP27N-Z 1400±25% 43[100kHz] The values were obtained with forward converter mode. WITHOUT IR GP L-value (nh/n 2 ) alculated output power (W) P44EP30-Z 1570±25% 85[100kHz] P50EP30-Z 1060±25% 180[500kHz] The values were obtained with forward converter mode. WITH IR GP L-value (nh/n 2 ) P44EP10XXX 40±7%, 63±10% P50EP10XXX 40±7%, 63±10% P44EP13XXX 40±4%, 63±5% P50EP13XXX 40±4%, 63±5% P44EP17XXX 80±4%, 125±5% P50EP17XXX 80±4%, 125±5% P44EP19XXX 80±4%, 125±5% P50EP19XXX 80±4%, 125±5% P44EP25XXX 125±5%, 200±7% P50EP25XXX 125±5%, 200±7% P44EP25XXX 80±5%, 125±7% P50EP25XXX 80±5%, 125±7% P44EP27XXX 125±5%, 200±7% P50EP27XXX 125±5%, 200±7% P44EP27NXXX 80±5%, 125±7% P44EP30XXX 125±5%, 200±7% P50EP30XXX 125±5%, 200±7% XXX: L-value

14 For Power Supply and Signal Transformer EP ores EP Series OINS SURFE MOUNT TYPE W H No. of lead terminal imensions (mm) W H lamp EP G FEP-10- EP G FEP-13- EP G FEP-17- EP G FEP-19- EP G FEP-25- ROP-IN TYPE W H No. of pin terminal imensions (mm) W H lamp EP S FEP-19- EP S FEP-25- LE-THROUGH TYPE W H No. of pin terminal imensions (mm) W H lamp EP PH FEP-13- EP PH FEP-17- EP PH FEP-19- EP PH FEP-25- EP PH FEP-27- EP-27N-1114PH FEP-27- EP PH FEP-30- lamp material: Stainless steel Material: FR phenol, UL Grade: 94V-0, Pin material: Steel wire (Solder plated)

15 For Power Supply and Signal Transformer EP ores EP Series ORE SHPES N IMENSIONS/HRTERISTIS ø E 2 Type imensions (mm) e le Weight ø 2 E (mm 2 ) (mm) (g) EP7 9.2± ± ± ± EP ± ± ± ± EP ± ± ± ± EP17 18± ± ±0.2 11± EP20 24± ± ± ± ELETRIL HRTERISTIS WITHOUT IR GP L-value (nh/n 2 ) H5EP7-Z 1100min. P40EP7-Z 830min. H53EP7-Z 4200min.[10kHz, 10mV, 100Ts] H5EP10-Z 1080min. H53EP10-Z 3850min.[10kHz, 10mV, 100Ts] P40EP10-Z 800min. P50EP10-Z 800±25% H5EP13-Z 1700min. H53EP13-Z 5600min.[10kHz, 10mV, 100Ts] P40EP13-Z 1170min. P50EP13-Z 1100±25% H5EP17-Z 2500min. H52EP17-Z 8000min. P40EP17-Z 1840min. H5EP20-Z 4200min. H52EP20-Z 13500min. P40EP20-Z 3200min. WITH IR GP L-value (nh/n 2 ) P40EP7XXX 63±5%, 100±7% P40EP10XXX 63±5%, 100±7% P50EP10XXX 63±5%, 100±7% P40EP13XXX 100±5%, 160±7% P50EP13XXX 100±5%, 160±7% P40EP17XXX 100±5%, 250±7% P40EP20XXX 100±5%, 250±7% XXX: L-value OINS No. of pin imensions (mm) terminal W H lamp EP FEP-7- EP FEP-10- EP FEP-13- EP FEP-17- EP FEP-20- Material: FR phenol, UL Grade: 94V-0, Pin material: Phosphor bronze (Solder plated) W H

16 For Power Supply and Signal Transformer Miniature Pot ores P5.8/3.3 to P7/4P Series ORE SHPES N IMENSIONS/HRTERISTIS ø øj ø 2 L-value (nh/n 2 )[µe] imensions (mm) ø ø 2 øj Σle/e (mm 1 ) e (mm 2 ) le (mm) Weight (g) H5P5.8/3.3Z-52S 870±25%[1163] 1 H52P5.8/3.3Z-52S 2660 min.[3556] , , , , H5P7/4Z-52S 1200±25%[1366] 1 H52P7/4Z-52S 4970±30%[5656] , , , , kHz, 0.5m, 100Ts 2 1kHz, 0.5m, 70Ts obbin part No. for core P5.8/3.3Z: P5.8/ P7/4Z: P7/

17 For Power Supply and Signal Transformer Pot ores P9/5 to P30/19 Series ORE SHPES N IMENSIONS/HRTERISTIS ø øj ø 2 These cores are designed based on IE Pub.133 Type imensions (mm) e le Weight ø ø 2 øj (mm 2 ) (mm) (g) obbin lamp P9/ , , , , P9/5-612 FP9/5-6 P11/ , , , , P11/7-612, 622 FP11/7-6 P14/ , , , , P14/8-612, 622 FP14/8-6 P18/ , , , , P18/11-612, 622, 632 FP18/11-6 P22/ ± , , , P22/13-612, 622, 632 FP22/13-6 P26/ ± , , , P26/16-612, 622, 632 FP26/16-6 P30/19 30± , , , P30/19-612, 622, 632 FP30/ : Non-sectional bobbin, -622: 2-sectional bobbin, -632: 3-sectional bobbin ELETRIL HRTERISTIS WITHOUT IR GP L-value (nh/n 2 ) H5P9/5Z-52H 1570±25% H52P9/5Z-52H 6030±30% P40P9/5Z-52H 825min. H5P11/7Z-52H 2320±25% H52P11/7Z-52H 8220±30% P40P11/7Z-52H 1250min. H5P14/8Z ±25% H52P14/8Z ±30% P40P14/8Z min. H5P18/11Z ±25% H52P18/11Z ±30% P40P18/11Z min. H5P22/13Z-52H 5900±25% H52P22/13Z-52H 19500±30% P40P22/13Z-52H 2990min. H5P26/16Z-52H 7800±25% H52P26/16Z-52H 24500±30% P40P26/16Z-52H 3810min. H5P30/19Z-52H 9800±25% H52P30/19Z-52H 32000±30% P40P30/19Z-52H 7300±25% WITH IR GP L-value (nh/n 2 ) P40P9/5XXX -52H 63±3%, 100±3%, 160±5% P40P11/7XXX-52H 63±3%, 100±3%, 160±3% P40P14/8XXX ±3%, 160±3%, 250±3% P40P18/11XXX ±3%, 160±3%, 250±3% P40P22/13XXX-52H 100±3%, 160±3%, 250±3% P40P26/16XXX-52H 160±3%, 250±3%, 400±3% P40P30/19XXX-52H 250±3%, 400±3%, 630±3% XXX: L-value

18 For Power Supply and Signal Transformer RM ores RM Series ORE SHPES N IMENSIONS/HRTERISTIS F ø Fig.1 Fig.2 Fig.3 2 imensions (mm) e le Weight Fig. Type ø 2 F (mm 2 ) (mm) (g) RM ± ± ± ± RM ± ± ± ± RM ± ± ± ± RM ± ± ± ± RM ± ± ± ± RM ± ± ± ± RM ± ± ± ± ELETRIL HRTERISTIS WITHOUT IR GP P40RM4Z-12 P50RM4Z-12 H5RM4Z-12 H52RM4Z-12 P40RM5Z-12 P50RM5Z-12 H5RM5Z-12 H53RM5Z-12 P40RM6Z-12 P50RM6Z-12 L-value (nh/n 2 ) 680min. 960±25% 1240±25% 4950±30% 1250min. 1340±25% 2220±25% 7700min. [10kHz, 10mV, 100Ts] 1600min. 1700±25% alculated output power (W) 6.9[100kHz] 21[500kHz] 16[100kHz] 34[500kHz] 27[100kHz] 55[500kHz] L-value alculated output (nh/n 2 ) power (W) H5RM6Z ±25% H53RM6Z min. [10kHz, 10mV, 100Ts] P40RM8Z min. 67[100kHz] H5RM8Z ±25% H52RM8Z ±30% P40RM10Z min. 130[100kHz] H5RM10Z ±25% H52RM10Z ±30% P40RM12Z min. 344[100kHz] P40RM14Z min. 376[100kHz] The values were obtained with forward converter mode.

19 For Power Supply and Signal Transformer RM ores RM Series WITH IR GP L-value (nh/n 2 ) P40RM4XXX ±3%, 100±3%, 160±3% P50RM4XXX-22 63±3%, 100±3%, 160±3% P40RM5XXX-22 63±3%, 100±3%, 160±3% P50RM5XXX-22 63±3%, 100±3%, 160±3% P40RM6XXX ±3%, 160±3%, 250±3% P50RM6XXX ±3%, 160±3%, 250±3% P40RM8XXX ±3%, 160±3%, 250±3% P40RM10XXX ±3%, 250±3%, 400±3% P40RM12XXX ±3%, 250±3%, 400±3% P40RM14XXX ±3%, 250±3%, 400±3% XXX: L-value OINS W H ore type obbin imensions (mm) No. of pin terminal W H lamp RM4 RM-4-716S FRM-4- RM5 RM-5-714P 1 4 RM-5-716P FRM-5- RM6 RM-6-714P 1 4 RM-6-716P FRM-6- RM8 RM-8-718P 1 8 RM P FRM-8- RM10 RM SN 2 10 RM S FRM-10- RM12 RM P 1 11 RM P FRM-12- RM14 RM P 1 10 RM P FRM-14- Material: FR phenol, UL Grade: 94V-0, Pin material: 1 Steel wire (Solder plated) 2 Phosphor bronze(solder plated)

20 For Power Supply and Signal Transformer Toroidal ores T Series ORE SHPES N IMENSIONS/HRTERISTIS c, ø ø c,, Type (øxxø) imensions (mm) 1 e le ø ø (mm 1 ) (mm 2 ) (mm) T3.05X1.27X T3.94X1.27X T4X1X T4.83X1.27X T5.84X1.52X T6X1.5X T8X2X T10X2.5X T12X3X T14X3.5X T20X5X T20X7.5X T28X13X T31X8X T38X14X T44.5X13X Epoxy or paraxylylene insulation coating is possible. ELETRIL HRTERISTIS L-value(nH/N 2 ) Type (øxxø) HP5 H52 H53 P40 H5 H52 T3.05X1.27X ±20% 1700±25% 3340±30% T4X1X2 670±20% 1000±25% 2000±30% T3.94X1.27X ±20% 1080±25% 2170±30% T4.83X1.27X ±20% 1400±25% 2840±30% T6X1.5X3 1000±20% 1500±25% 3000±30% T5.84X1.52X ±20% 1480±25% 2960±30% T8X2X4 1330±20% 2000±25% 4000±30% T10X2.5X5 1670±20% 2500±25% 5000±30% T12X3X6 1020±25% 1400±25% 3600±30% T14X3.5X7 1200±25% 1650±25% 4200±30% T20X5X ±25% 2350±25% 6000±30% T20X7.5X ±25% 1800±25% 4100±30% T28X13X ±30% T31X8X ±30% T38XX14X ±30% T44.5X13X ±30% Measuring conditions: 10Ts, 10mV, 10kHz (H53, H52, H52, HP5)/50kHz (H5), 100kHz (P40)

21 For Power Supply EE, EF ores EE, EF Series ORE SHPES N IMENSIONS/HRTERISTIS Type imensions (mm) e le Weight (mm 2 ) (mm) (g) EE8 8.3±0.2 4± ± ± EE10/ ± ± ± ± EF ± ± ± ± EE13 13±0.2 6± ± ± EE16 16± ± ±0.2 4± SEE16 16± ± ± ± EF ± ± ± ± EE ± ±0.15 5± ± EE19/ ± ± ± ± EE20/20/ ± ± ±0.2 5± EF20 20± ± ± ± EE22 22± ± ± ± EE25/ ± ± ± ± EF ± ± ± ± EE ± ± ± ± EE30 30± ± ± ± EE30/30/7 30.1±0.7 15± ± ± EF ± ± ± ± EE ± ± ± ± EE35/ ± ± ± ± EE40 40±0.5 17± ± ± EE41/ ± ± ± ± EE42/42/ ± ± ± ± EE42/42/ ± ± ± ± EE47/ ± ± ± ± EE50 50± ± ± ± EE50.3/51/6 50.3± ± ± ± EE55/55/ ± ± ± ± EE57/ ±1 23.6± ± ± EE60 60± ± ± ± EE62.3/62/6 62.3±1.2 31± ± ±

22 For Power Supply EE, EF ores EE, EF Series ELETRIL HRTERISTIS WITHOUT IR GP L-value (nh/n 2 ) P40EE8-Z 610±25% P40EE10/11-Z 850±25% 9.4 P40EF12.6-Z 810±25% P40EE13-Z 1130±25% 17 P40EE16-Z 1140±25% P40SEE16-Z 1240±25% 32 P40EF16-Z 1100±25% P40EE19-Z 1250±25% H52EE19/16-Z 5830±30% P40EE19/16-Z 1350±25% P40EE20/20/5-Z 1460±25% 41 P40EF20-Z 1570±25% P40EE22-Z 2180±25% H52EE25/19-Z 8520±30% P40EE25/19-Z 2000±25% 70 P40EF25-Z 2000±25% P40EE25.4-Z 2000±25% P40EE30-Z 4690±25% P40EE30/30/7-Z 2100±25% 133 P40EF32-Z 2590±25% P40EF35-Z 3170±25% P40EE35/28-Z 2950±25% P40EE40-Z 4150±25% P40EE41/33-Z 5060±25% P40EE42/42/15-Z 4700±25% 419 P40EE42/42/20-Z 6100±25% P40EE47/39-Z 6660±25% P40EE50-Z 6110±25% P40EE50.3/51/6-Z 2900±25% 213 P40EE55/55/21-Z 7100±25% 814 P40EE57/47-Z 8530±25% P40EE60-Z 5670±25% P40EE62.3/62/6-Z 3100±25% 250 The values were obtained with forward converter mode. alculated output power (W) [100kHz] WITH IR GP L-value (nh/n 2 ) P40EE8XXX 40±7%, 63±10% P40EE10/11XXX 40±7%, 63±10% P40EF12.6XXX 63±7%, 100±10% P40EE13XXX 63±7%, 100±10% P40EE16XXX 80±7%, 160±10% P40SEE16XXX 80±7%, 160±10% P40EF16XXX 63±7%, 100±10% P40EE19XXX 80±7%, 160±10% P40EE19/16XXX 80±7%, 160±10% P40EE20/20/5XXX 100±7%, 160±10% P40EF20XXX 100±7%, 160±10% P40EE22XXX 125±7%, 250±10% P40EE25/19XXX 100±7%, 200±10% P40EF25XXX 100±7%, 160±10% P40EE25.4XXX 125±7%, 250±10% P40EE30XXX 200±5%, 400±7% P40EE30/30/7XXX 160±5%, 250±7% P40EF32XXX 160±5%, 250±7% P40EE35XXX 200±5%, 400±7% P40EE35/28XXX 200±5%, 400±7% P40EE40XXX 200±5%, 400±7% P40EE41/33XXX 200±5%, 400±7% P40EE42/42/15XXX 250±5%, 400±7% P40EE42/42/20XXX 250±5%, 400±7% P40EE47/39XXX 250±5%, 400±7% P40EE50XXX 250±5%, 500±7% P40EE50.3/51/6XXX 200±5%, 400±7% P40EE55/55/21XXX 250±5%, 400±7% P40EE57/47XXX 250±5%, 400±7% P40EE60XXX 250±5%, 500±7% P40EE62.3/62/6XXX 200±5%, 400±7% XXX: L-value

23 For Power Supply EE, EF ores EE, EF Series EE OINS H H W W Fig. 1 Fig. 2 WITH PIN TERMINL (Fig. 1) No. of pin terminal imensions (mm) W H lamp E-8-116PH E PS E PS E P E PN E PH ES PS E P E PH E P E P FE-30-F E P FE-30-G E P FE-40-F, FE-40-G E PN E P FE-50-F, FE-50-G E-50.3/51/6-1112PH E P FE-60-F, FE-60-G E-62.3/62/6-1112PH Material: FR phenol, UL Grade: 94V-0, Pin material: Steel wire (Solder plated) WITHOUT PIN TERMINL (Fig. 2) imensions (mm) Material W H [UL Grade] lamp E Nylon[94V-0] E Nylon[94V-0] E Nylon[94V-0] E Nylon[94V-0] FE-30-F, FE-30-G E Nylon[94V-0] FE-40-F, FE-40-G E Nylon[94V-0] FE-50-F, FE-50-G E Nylon[94V-0] FE-60-F, FE-60-G Material: 6-Nylon, UL Grade: 94V

24 For Power Supply EI ores EI Series ORE SHPES N IMENSIONS/HRTERISTIS I Type imensions (mm) e le Weight I (mm 2 ) (mm) (g) EI ± ± ± ± ± EI16 16± ± ±0.2 4±0.2 2± EI19 20± ±0.25 5± ± ± EI22 22± ± ± ± ± EI22/19/6 22± ± ± ±0.25 4± EI ± ± ± ± ± EI28 28± ± ± ± ± EI30 30± ± ± ± ± EI33/29/13 33± ± ± ±0.3 5± EI35 35± ± ±0.3 10± ± EI40 40± ± ± ± ± EI50 50± ± ± ±0.4 9± EI60 60± ± ± ± ± ELETRIL HRTERISTIS WITHOUT IR GP L-value (nh/n 2 ) P40EI12.5-Z 1200±25% 8.8 P40EI16-Z 1100±25% 29 P40EI19-Z 1400±25% 40 P40EI22-Z 2400±25% 33 P40EI22/19/6-Z 2000±25% 48 P40EI25-Z 2140±25% 68 P40EI28-Z 4300±25% 107 P40EI30-Z 4690±25% 155 P40EI33/29/13-Z 4400±25% 206 P40EI135-Z 3800±25% 218 P40EI140-Z 4860±25% 348 P40EI150-Z 6110±25% 508 P40EI160-Z 5670±25% 618 The values were obtained with forward converter mode. alculated output power (W) [100kHz] WITH IR GP L-value (nh/n 2 ) P40EI12.5XXX 63±7%, 100±10% P40EI16XXX 80±7%, 160±10% P40EI19XXX 80±7%, 160±10% P40EI22XXX 125±7%, 250±10% P40EI22/19/6XXX 125±7%, 250±10% P40EI25XXX 125±7%, 250±10% P40EI28XXX 200±5%, 400±7% P40EI30XXX 200±5%, 400±7% P40EI33/29/13XXX 200±5%, 400±7% P40EI35XXX 200±5%, 400±7% P40EI40XXX 200±5%, 400±7% P40EI50XXX 250±5%, 500±7% P40EI60XXX 250±5%, 500±7% XXX: L-value

25 For Power Supply EI ores EI Series OINS H H W W Fig. 1 Fig. 2 WITH PIN TERMINL (Fig. 1) No. of pin terminal imensions (mm) W H lamp E P E P E PH E PN E P E PH E P E-22/19/6-118P E P E PL E P FE-30-F, FE-30-G E P FE-30-F, FE-30-G E-33/29/ PL E PL E P FE-40-F, FE-40-G E PN E P FE-50-F, FE-50-G E P FE-60-F, FE-60-G Material: FR phenol, UL Grade: 94V-0, Pin material: Steel wire (Solder plated) WITHOUT PIN TERMINL (Fig. 2) imensions (mm) Material W H [UL Grade] lamp E Nylon[94V-0] E Nylon[94V-0] E Nylon[94V-0] E Nylon[94V-0] FE-30-F, FE-30-G E Nylon[94V-0] FE-40-F, FE-40-G E Nylon[94V-0] FE-50-F, FE-50-G E Nylon[94V-0] FE-60-F, FE-60-G Material: 6-Nylon, UL Grade: 94V

26 For Power Supply ET, E ores ET, E Series ET, E SERIES ORE SHPES N IMENSIONS/HRTERISTIS Fig.1 ø R ø Fig.2 Type Fig. imensions (mm) e le Weight ø (mm 2 ) (mm) (g) ET ± ± ± ± ET ± ± ± ± ET ± ± ± ± ET ± ± ± ± ET ± ± ± ± ET ±1 22.3± ± ± ET ± ± ± ± E ± ± ± ± E ±1.8 45±1.3 30±1 30± E ±2 50.5±1 30±1 30± ELETRIL HRTERISTIS WITHOUT IR GP L-value alculated output (nh/n 2 ) power (W) [100kHz] P40ET19-Z 1720±25% 79 P40ET24-Z 2125±25% 115 P40ET29-Z 2500±25% 170 P40ET34-Z 2780±25% 271 P40ET39-Z 3150±25% 382 P40ET44-Z 4000±25% 523 P40ET49-Z 4440±25% 682 P40E70-Z 4800±25% P40E90-Z 6000min. P40E120-Z 6300min. The values were obtained with forward converter mode. WITH IR GP L-value (nh/n 2 ) P40ET19XXX 80±5%, 160±7% P40ET24XXX 100±5%, 200±7% P40ET29XXX 200±5%, 400±10% P40ET34XXX 200±5%, 400±7% P40ET39XXX 200±5%, 400±7% P40ET44XXX 250±5%, 400±7% P40ET49XXX 250±5%, 400±7% P40E70XXX 100±5%, 200±5% XXX: L-value OINS W Fig.1 H W Fig.2 H No. of imensions (mm) Fig. pin Materials W H terminal ET PH FR phenol ET PH FR phenol E Nylon E Nylon Permissible soldering temperature 350 max., 2 seconds. UL Grade: 94V-0, Pin material: Steel wire (Solder plated)

27 For Power Supply EER ores EER Series ORE SHPES N IMENSIONS/HRTERISTIS ø Fig.1 ø Fig.2 Type Fig. imensions (mm) e le Weight ø (mm 2 ) (mm) (g) EER ± ± ± ± EER ± ± ± ± EER28L ± ± ± ± EER ± ± ± ± EER ± ± ± ± EER ± ± ± ± EER42/42/ ± ± ± ± EER ±0.8 19± ± ± ELETRIL HRTERISTIS WITHOUT IR GP L-value alculated output (nh/n 2 ) power (W) [100kHz] P40EER25.5-Z 1920±25% 87 P40EER28-Z 2870±25% 203 P40EER28L-Z 2520±25% 228 P40EER35-Z 2770±25% 325 P40EER40-Z 3620±25% 421 P40EER42-Z 4690±25% 433 P40EER42/42/20-Z 5340±25% 509 P40EER49-Z 6250±25% The values were obtained with forward converter mode. WITH IR GP L-value (nh/n 2 ) P40EER25.5XXX 100±5%, 200±7% P40EER28XXX 200±5%, 400±7% P40EER28LXXX 160±5%, 315±7% P40EER35XXX 200±5%, 400±7% P40EER40XXX 200±5%, 400±7% P40EER42XXX 250±5%, 500±7% P40EER42/42/20XXX 250±5%, 500±7% P40EER49XXX 250±5%, 500±7% XXX: L-value OINS W Fig.1 H W Fig.2 H No. of imensions (mm) Fig. pin terminal W H EER P EER P EER-28L-1110P EER P EER P EER P EER-42/42/ P EER P EER PH EER-28L-1112PH EER PH EER PH EER PH Material: FR phenol, UL Grade: 94V-0, Pin material: Steel wire (Solder plated)

28 For Power Supply PQ ores PQ Series ORE SHPES N IMENSIONS/HRTERISTIS 2 2 ø 1 E.PT.2,944,583 E.ES.15,655 EP.PT.26,104(E, FR, G, NL) G.PT.2,035,706 G.ES.990,685 JP.U.M 1,589,580 JP.U.M 1,621,895 JP.U.M PU. 85(60) ,647,781 JP.U.M PU. 86(61) ,655,608 JP.ES.580,081 JP.ES.649,618 KR.U.M 23,487 NL.PT.178,826 NL.ES.5,777 US.PT.4,352,080 US.ES.264,959 imensions (mm) e (mm 2 ) Type 1 2 ø 2 PQ20/ ±0.4 14± ± ± PQ20/ ±0.4 14± ± ± PQ26/ ± ± ± ± PQ26/ ± ± ± ± PQ32/20 32±0.5 22± ± ± PQ32/30 32±0.5 22± ± ± PQ35/ ±0.6 26± ± ± PQ40/ ±0.9 28± ± ± PQ50/50 50±0.7 32±0.6 20± ± le (mm) Weight (g) ELETRIL HRTERISTIS WITHOUT IR GP L-value alculated output (nh/n 2 ) power (W) P44PQ20/16Z ±25% 70[100kHz] P44PQ20/20Z ±25% 92[100kHz] P50PQ20/20Z ±25% 187[500kHz] P44PQ26/20Z ±25% 170[100kHz] P44PQ26/25Z ±25% 195[100kHz] P50PQ26/25Z ±25% 366[500kHz] P44PQ32/20Z ±25% 232[100kHz] P44PQ32/30Z ±25% 331[100kHz] P44PQ35/35Z ±25% 452[100kHz] P44PQ40/40Z ±25% 596[100kHz] P44PQ50/50Z ±25% 1045[100kHz] The values were obtained with forward converter mode. WITH IR GP L-value (nh/n 2 ) P44PQ20/16XXX ±5%, 250±7%, 400±10% P44PQ20/20XXX ±5%, 250±7%, 400±10% P50PQ20/20XXX ±5%, 160±5%, 250±7% P44PQ26/20XXX ±5%, 315±5%, 630±10% P44PQ26/25XXX ±5%, 315±5%, 630±10% P50PQ26/25XXX ±5%, 250±5%, 400±7% P44PQ32/20XXX ±5%, 315±5%, 630±7% P44PQ32/30XXX ±5%, 315±5%, 630±7% P44PQ35/35XXX ±5%, 315±5%, 630±7% P44PQ40/40XXX ±5%, 315±5%, 630±7% P44PQ50/50XXX ±5%, 400±5%, 630±5% XXX: L-value OINS w H No. of pin imensions (mm) terminal W H lamp PQ20/ P FPQ20/16- PQ20/ P FPQ20/20- PQ26/ P FPQ26/20- PQ26/ P FPQ26/25- PQ32/ P FPQ32/20- PQ32/ P FPQ32/30- PQ35/ P FPQ35/35- PQ40/ P FPQ40/40- PQ50/ S FPQ50/50- Material: FR phenol, UL Grade: 94V-0, Pin material: Steel wire (Solder plated)

29 For Power Supply LP ores LP Series ORE SHPES N IMENSIONS/HRTERISTIS ø 2 E E.ES.19,581 EP.PT.68,745(E.FR.G.NL) FR.ES.201,586 G.ES.1,007,200 JP.U.M PRO.PU 82(57)-201,824 JP.ES.630,754 NL.ES.9,767 US.PT.4,424,504 US.ES.280,810 imensions (mm) e (mm 2 ) Type ø 2 E LP23/8 16.5± ± ± ± LP22/13 25± ± ± ± LP32/13 25± ± ± ± le (mm) Weight (g) ELETRIL HRTERISTIS WITHOUT IR GP L-value alculated output power (nh/n 2 ) (W) [100kHz] P44LP23/8Z ±25% 50 P44LP22/13Z ±25% 121 P44LP32/13Z ±25% 164 The values were obtaind with forward converter mode. WITH IR GP L-value (nh/n 2 ) P44LP23/8XXX ±5%, 100±7%, 250±13% P44LP22/13XXX ±5%, 200±7%, 400±10% P44LP32/13XXX ±5%, 200±7%, 400±10% XXX: L-value OINS W H No. of pin imensions (mm) terminal W H lamp LP23/8-018P FLP23/8- LP22/ PL FLP22/13- LP32/ PL FLP32/13- Material: FR phenol, UL Grade: 94V-0 Pin material: 1 Phosphor bronze (Solder plated) 2 Steel wire (Solder plated)

30 For Power Supply EER ores EER Series Use of magnetic field analysis and packaging evaluation technology has made clear the relationship between differential heating of core components and the flux density distribution. This knowledge has been used to optimize the design of the EER core. ore volume has been decreased by 13 to 20% without loss of the efficiency of the existing EER40, EER42, and EER49LS core shapes. This has resulted in an EER core series with a good costbenefit ratio. FETURES These ferrite cores attain the same transformer output as previous products while reducing effective volume by 13 to 20%. TK has optimized volume of the core design while supporting continued use of existing bobbins. Newly designed core Earlier designed core obbin EER38S EER40 EER P EER PH EER40S EER42 EER P EER PH EER47S EER49LS SHPES N IMENSIONS ø H E H F imensions in mm ø E F H P40EER38S-Z 37.44± ± ± ± min. 15.4±0.3 4 P40EER40S-Z 40.2± ± ± ± min. 15.4±0.3 5 P40EER47S-Z 47.3± ± ± ± min. 15.4±0.3 5 HRTERISTIS L-value (nh/n 2 ) P40EER38S-Z 3310±25% P40EER38S ±5% P40EER38S ±7% P40EER40S-Z 4300±25% P40EER40S ±5% P40EER40S ±7% P40EER47S-Z 5090±25% P40EER47S ±5% P40EER47S ±7% Measuring conditions: L-value:1kHz, 0.5m, 100ts. ore loss:100khz, 200mT, 100 ore loss (kw/m 3 ) le (mm) e (mm 2 ) Ve (mm 3 ) min. (mm 2 )

31 Low Loss Materials for Power Supply P45, P46 Materials EP, ER, EEM, EE Series emand is greatly increasing for portable devices such as notebook Ps, camcorders, digital cameras, Ps, GPS car navigation systems, etc. There is also growing demand for small, light weight, high efficiency backlighting units for liquid crystal displays using cold cathode tubes. P45 and P46 materials were developed for production of cores with high efficiencies within the temperature range in which such transformers actually operate. P45 material was developed with a minimum core loss temperature in the +60 to +80 range, and P46 material has a minimum core loss temperature in the +40 to +50 range. Each of these ferrite materials also has a greatly reduced core loss. These ferrite materials are also optimum for non-backlight applications such as to converters, notebook P adapter transformers, etc. MTERIL HRTERISTIS Material P45 P46 P44 (onventional material) Initial permeability µi 2500±25% 3200±25% 2400±25% Power loss [100kHz, 200mT] Saturation magnetic flux density Remanent flux density r mt Pcv kw/m 3 250[75 ] 570[25 ] 460[100 ] s mt [25 ] 530 [100 ] 420 [25 ] 120 [100 ] 80 Hc /m [25 ] 12 [100 ] 8 350[25 ] 250[45 ] 660[100 ] [25 ] 400[60 ] 300[100 ] oercive force [1194/m] urie temperature Tc ORE LOSS vs. TEMPERTURE HRTERISTIS ore loss(kw/m 3) P46 P45 P Temperature( )

32 Low Loss Materials for Power Supply P45, P46 Materials EP, ER, EEM, EE Series HRTERISTIS EP ORE L-value(nH/N 2 ) obbin Flange P45EP10-Z 1000±25% P45EP ±7% P45EP ±10% P46EP10-Z 1060±25% EP G FEP-10- P46EP ±7% P46EP ±10% P45EP13-Z 870±25% P45EP ±4% P45EP ±5% EP G P46EP13-Z 1050±25% EP PH FEP-13- P46EP ±4% P46EP ±5% P45EP17-Z 1150±25% P45EP ±4% P45EP ±5% P46EP17-Z 1580±25% P46EP ±4% P46EP ±5% P45EP19-Z 940±25% P45EP ±4% P45EP ±5% P46EP19-Z 1430±25% P46EP ±4% P46EP ±5% P45EP25-Z 1560±25% P45EP ±5% P45EP ±7% P45EP25-Z 1560±25% P45EP ±5% P45EP ±7% EP G EP PH EP G EP S EP PH EP PH EP G EP S FEP-17- FEP-19- FEP-25- FEP-25- P45EP27-Z 1540±25% P45EP ±4% EP PH FEP-27- P45EP ±5% P45EP27N-Z 1400±25% P45EP27N80 80±5% EP-27N-1114PH P45EP27N ±7% P45EP30-Z 1570±25% P45EP ±4% EP PH FEP-30- P45EP ±5% Measuring conditions: EP10:1kHz, 0.5mT, ø0.1mm, 100ts./EP13, 17, 19, 25:1kHz, 0.5mT, ø0.2mm, 100ts. EP25:1kHz, 0.5mT, ø0.23mm, 100ts./EP27, 27N, 30:1kHz, 0.5mT, ø0.3mm, 100ts.

33 Low Loss Materials for Power Supply P45, P46 Materials EP, ER, EEM, EE Series HRTERISTIS ER ORE L-value(nH/N 2 ) obbin Flange P45ER9.5/5-Z 950±25% P45ER9.5/563 63±5% P45ER9.5/ ±7% P46ER9.5/5-Z 1120±25% ER9.5/5-118G FER9.5/5- P46ER9.5/563 63±5% P46ER9.5/ ±7% P45ER11/3.9-Z 1490±25% P45ER11/ ±5% P45ER11/ ±7% P46ER11/3.9-Z 1740±25% ER11/ G FER11/3.9- P46ER11/ ±5% P46ER11/ ±7% P45ER11/5-Z 1390±25% P45ER11/563 63±5% P45ER11/ ±7% P46ER11/5-Z 1650±25% ER11/5-1110G FER11/5- P46ER11/563 63±5% P46ER11/ ±7% P45ER14.5/6-Z 1590±25% P45ER14.5/ ±5% P45ER14.5/ ±7% P46ER14.5/6-Z 1920±25% ER14.5/6-1110G FER14.5/6- P46ER14.5/ ±5% P46ER14.5/ ±7% Measuring conditions: ER9.5/5, ER11/3.9, ER11/5:1kHz, 0.5mT, ø0.1mm, 100ts. ER14.5/6:1kHz, 0.5mT, ø0.18mm, 100ts. EEM ORE L-value(nH/N 2 ) obbin Flange P45EEM12.7/13.7-Z 820±25% P45EEM12.7/ ±5% P45EEM12.7/ ±7% P46EEM12.7/13.7-Z 1050±25% EM12.7/ G FEM12.7/13.7- P46EEM12.7/ ±5% P46EEM12.7/ ±7% P45EEM8/8-Z 390±25% P45EEM8/825 25±10% P45EEM8/840 40±15% P46EEM8/8-Z 410±25% EM-8/8-018G P46EEM8/825 25±10% P46EEM8/840 40±15% P45EEM10/10-Z 470±25% P45EEM10/ ±7% P45EEM10/ ±10% P46EEM10/10-Z 540±25% EM-10/ G P46EEM10/ ±7% P46EEM10/ ±10% P45EEM13/13-Z 550±25% P45EEM13/ ±8% P45EEM13/ ±12% P46EEM13/13-Z 640±25% EM-13/ G P46EEM13/ ±8% P46EEM13/ ±12% Measuring conditions:1khz, 0.5mT, ø0.1mm, 100ts.

34 Low Loss Materials for Power Supply P45, P46 Materials EP, ER, EEM, EE Series HRTERISTIS EE ORE L-value(nH/N 2 ) obbin Flange P45EE5-Z 330±25% P45EE525 25±15% P46EE5-Z 350±25% E-5-916F FE-5- P46EE525 25±15% P45EE8.9/8-Z 480±25% P45EE8.9/825 25±8% P45EE8.9/840 40±13% P46EE8.9/8-Z 580±25% E-8.9/8-118G P46EE8.9/825 25±8% P46EE8.9/840 40±13% Measuring conditions: EE5:1kHz, 0.5mT, ø0.1mm, 100ts. ER8.9/8:1kHz, 0.5mT, ø0.2mm, 100ts. MOUNTING IMENSIONS Mounting dimensions epth Width Height Number of terminals ER9.5/ ER11/ ER11/ ER14.5/ EP EP EP EP EP EP EP EP EP EP EP27N EP EEM12.7/ EEM8/ EEM10/ EEM13/ EE EE8.9/ Mounting type SM SM Lead-through SM SM

35 For High Power High Power ores T, UU, E, EI, PQ, EE, EI, T, SP Series FETURES Large size ferrite cores developed for reactors and transformers used in high power units. Please contact us for machinability of non-standard special forms. MTERIL HRTERISTIS (Typical) Material PE22 P40 Initial permeability µi [23 ] urie temperature Tc >200 >200 Saturation magnetic flux density H=1194/m s [23 ] [100 ] Electrical resistivity ρ Ω-m pproximate density dapp kg/m Thermal expansion coefficient α 1/K Thermal conductivity κ W/mK 5 5 Specific heat p J/kg K ending strength δb3 N/m Young s modulus E N/m Magnetostriction λs (mT)=10(G),1(/m)= (Oe) mt ORE LOSS vs. FREQUENY HRTERISTIS ORE LOSS vs. TEMPERTURE MTERIL:PE22 MTERIL:P40 HRTERISTIS Remanent flux density r [23 ] mt oercive force Hc [23 ] /m ore loss kHz, 200mT 100kHz, 200mT Pcv [100 ] kw/m kHz-200mT PE mT 250mT 200mT 150mT 100mT 50mT mT 250mT 200mT 150mT 100mT 50mT 150 P40 Pcv(kW/m 3) 10 2 Pcv(kW/m 3) 10 2 Pcv(kW/m 3) Material: PE22 Temp.: Frequency(kHz) Material: P40 Temp.: Frequency(kHz) T( ) PE22 100kHz-200mT 800 Pcv(kW/m 3) mT 250mT 200mT 150mT 100mT 50mT Pcv(kW/m 3) mT 250mT 200mT 150mT 100mT 50mT Pcv(kW/m 3) 600 P Material: PE22 Temp.: Frequency(kHz) Material: P40 Temp.: Frequency(kHz) T( )

36 For High Power High Power ores T, UU, E, EI, PQ, EE, EI, T, SP Series STURTION MGNETI FLUX MPLITUE PERMEILITY vs. MGNETI PERMEILITY vs. ENSITY vs. TEMPERTURE STURTION MGNETI FLUX FREQUENY HRTERISTIS HRTERISTIS ENSITY HRTERISTIS Material: PE22 Temp.: 23 s(mt) P40 PE22 µa µ, µ µ µ Temperature( ) Flux density(mt) Material: PE22 f=16khz Frequency(kHz) 10 4 INITIL MGNETI PERMEILITY vs. TEMPERTURE HRTERISTIS µi P40 PE22 f=1khz Hm=0.4/m Temperature( ) 300 µa Flux density(mt) Material: P40 f=16khz 300 µ, µ Material: P40 Temp.: 23 µ Frequency(kHz) µ 10 4 IMENSIONLRESONNE imensional resonance is a phenomenon which increases loss and decreases magnetic permeability by electromagnetic standing waves when the magnetic field of the core frequency is applied. The phenomenon appears when the maximum dimension of the cross section of the core perpendicular to the magnetic field is the integral multiple of about half of the electromagnetic wavelength λ. λ= f µr εr : Electromagnetic wave speed in a vacuum( m/s) µr: Relative magnetic permeability εr: Relative permissivity f: Frequency of the applied magnetic field(electromagnetic wave) s µe decreases by inserting into the gap, using the same core enables high frequency wave usage as indicated by the formula above. s dimensional resonance quickly decreases magnetic permeability, design the actual frequency to avoid dimensional resonance. In the case of possible dimensional resonance, it can be protected against by dividing the core in the magnetic circuit direction and bonding them. RESONNE IMENSION vs. TEMPERTURE HRTERISTIS Resonant dimension(mm) P40 PE Frequency(kHz)

37 For High Power High Power ores T, UU, E, EI, PQ, EE, EI, T, SP Series T ORE ORE SHPES N IMENSIONS/HRTERISTIS ø ø,, PROUT IENTIFITION PE22 T (1) (2) (3) (4) (5) (1) Material name (2) Shape (3) imension (4) Thickness (5) imension PE22 T51X13X31 P40 T51X13X31 L (nh/n 2 ) ±25% PE22 T62.5X13.5X P40 T62.5X13.5X PE22 T73X20X45 P40 T73X20X45 PE22 T75X20X15 P40 T75X20X15 PE22 T80X20X50 P40 T80X20X50 PE22 T96X20X70 P40 T96X20X70 PE22 T124X20X100 P40 T124X20X100 PE22 T137X20X112 P40 T137X20X112 PE22 T150X20X70 P40 T150X20X70 PE22 T202X20X70 P40 T202X20X imensions (mm) ore factor Weight (g) 1(mm 1 ) (mm 3 ) e(mm 2 ) Le(mm) Ve(mm 3 ) 51±1 31±0.6 13± ±1.2 39± ± ±1.5 45±0.9 20± ±1.5 15±0.3 20± ±1.6 50±1 20± ±1.9 70±1.4 20± ± ±2 20± ±3 112±2.2 20± ±3 70±1.4 20± ±4 70±1.5 20± PE22 T310X30X ± ±4.2 30± P40 T310X30X Measuring condition: T=23, f=1khz, Hm=0.4/m

38 For High Power High Power ores T, UU, E, EI, PQ, EE, EI, T, SP Series UU ORE ORE SHPES N IMENSIONS/HRTERISTIS PROUT IENTIFITION F R2 R1 E H PE22 UU (1) (2) (3) (4) (5) (1) Material name (2) Shape (3) imension (4) imension 2 (5) Thickness PE22 UU79X129X31.5 P40 UU79X129X31.5 PE22 UU100X151X30 P40 UU100X151X30 PE22 UU100X160X20 P40 UU100X160X20 PE22 UU101X115X25.4 P40 UU101X115X25.4 PE22 UU120X160X20 P40 UU120X160X20 L 1 (nh/n 2 ) ±25% imensions (mm) 2 E F 2 H R1 R2 E 2F(mm 2 ) 79± ± ±1 34min. 85±1.5 22± ±3 151±2.5 30±1 39min. 90±1.5 30± ±3 160±2.5 20±1 39min. 100±1.5 30± ±3 115± ±1 50min. 64±1.5 25± ±3 160±2.5 20±1 59min. 100±1.5 30± PE22 UU120X310X20 2 P40 UU120X310X ±3 310±2.5 20±1 59min. 250±1.5 30± Measuring condition: T=23, f=1khz, Hm=0.4/m 2 Stacked 2U cores. PE22 UU79X129X31.5 P40 UU79X129X31.5 PE22 UU100X151X30 P40 UU100X151X30 PE22 UU100X160X20 P40 UU100X160X20 PE22 UU101X115X25.4 P40 UU101X115X25.4 PE22 UU120X160X20 P40 UU120X160X20 PE22 UU120X310X20 P40 UU120X310X20 ore factor 1(mm 1 ) (mm 3 ) e(mm 2 ) Le(mm) Ve(mm 3 ) Weight(g)

39 For High Power High Power ores T, UU, E, EI, PQ, EE, EI, T, SP Series UU ORE N ORE SHPES N IMENSIONS/HRTERISTIS -type band b b d a c e -type band a -type is the band with a board and -type is the band without a board. FHH 79X129 FHH 79X129 FHH 100X151 FHH 100X151 FHH 100X160 FHH 100X160 FHH 101X115 FHH 101X115 FHH 120X160 FHH 120X160 FHH 120X310 FHH 120X310 imensions (mm) a b c d e ORE HRTERISTI EXMPLE 129±2.5 85±1.5 R22 R5 PE22UU79X129X31.5 L value(nh/n 2) min. 22±1 31.5±1 79±2.5 Spacer gap imensions in mm Parameter Unit ore constant 1 mm mm Effective magnetic pass length Ie mm 309 Effective crosssectional area e mm Effective core volume Ve mm ross-sectional center leg area c mm Minimum crosssectional center leg area min. mm 2 693L ross-sectional winding area of core cw mm Weight W g 1080 The symbol after min.:value shows the position of the minimum cross section. is for mid-leg, L for external leg and for back Gap length(mm) Temp.: 23 Hm: 0.4/m f: 1kHz

40 I Ferrite ores For High Power High Power ores T, UU, E, EI, PQ, EE, EI, T, SP Series E ORE ORE SHPES N IMENSIONS/HRTERISTIS F ø K H J øe PROUT IENTIFITION PE22 EU 90 Z (1) (2) (3) (4) (1) Material name (2) Shape (3) imension (4) Gap dimension(z=0) E ORE OIN Y X Z PE22 E70-Z P40 E70-Z PE22 E90-Z P40 E90-Z L (nh/n 2 ) ±25% imensions (mm) 2 E F 2 H I J K K 2F(mm 2 ) 70±1.7 69±1 16.4± ± min. 45.5± ± ± ± ±1.8 90±1.3 30±1 30±1 68.5min. 71±1 10± ±0.2 6± PE22 E120-Z ±2 101±1.3 30±1 30±1 93.3min. 71±1 12.5± ±0.2 6± P40 E120-Z 8090 Measuring condition: T=23, f=1khz, Hm=0.4/m PE22 E70-Z P40 E70-Z PE22 E90-Z P40 E90-Z PE22 E120-Z P40 E120-Z ore factor 1(mm 1 ) (mm 3 ) e(mm 2 ) Le(mm) Ve(mm 3 ) Weight (g) E ORE OIN imensions (mm) ø ø X Y Z t obbin minimum thickness Soldering condition: 350 max./2s ross-sectional winding area w(mm 2 ) verage winding length Iw(mm) Weight (g) E PT E PT Material

41 For High Power High Power ores T, UU, E, EI, PQ, EE, EI, T, SP Series EI ORE ORE SHPES N IMENSIONS/HRTERISTIS R ø K H øe M PROUT IENTIFITION PE22 EI 90 Z (1) (2) (3) (4) (1) Material name (2) Shape (3) imension (4) Gap dimension(z=0) F J J I PE22 EI90-Z P40 EI90-Z L (nh/n 2 ) ±25% imensions (mm) +I E F H I M J R K 90± ±1.3 30±1 30±1 68.5min. 35.5±0.5 10±0.6 10± ± ±0.3 1max. 20 PE22 EI120-Z ±2 65.5±1.3 30±1 30±1 93.3min. 35.5± ±0.7 15± ±0.3 6± max P40 EI120-Z Measuring condition: T=23, f=1khz, Hm=0.4/m PE22 EI90-Z P40 EI90-Z PE22 EI120-Z P40 EI120-Z ore factor 1(mm 1 ) (mm 3 ) e(mm 2 ) Le(mm) Ve(mm 3 ) Weight (g) EI ORE ORE SHPES N IMENSIONS/HRTERISTIS F H K H E I PROUT IENTIFITION PE22 EI 70 - Z (1) (2) (3) (4) (1) Material name (2) Shape (3) imension (4) Gap dimension(z=0) L (nh/n 2 ) ±25% imensions (mm) +I E F H I K K F(mm 2 ) PE22 EI70-Z ±1.5 56±1 19.5± ± min. 35.5±0.5 10± ± P40 EI70-Z 7200 Measuring condition: T=23, f=1khz, Hm=0.4/m PE22 EI70-Z P40 EI70-Z ore factor Weight (g) 1(mm 1 ) (mm 3 ) e(mm 2 ) Le(mm) Ve(mm 3 )

42 For High Power High Power ores T, UU, E, EI, PQ, EE, EI, T, SP Series PQ ORE ORE SHPES N IMENSIONS/HRTERISTIS E ø 1 PROUT IENTIFITION PE22 PQ 59 - Z (1) (2) (3) (4) (1) Material name (2) Shape (3) imension 1 (4) Gap dimension(z=0) 2 2H 2 PQ ORE OIN Y X Z PE22 PQ59 P40 PQ59 PE22 PQ79 P40 PQ79 L (nh/n 2 ) ±25% imensions (mm) 1 2 ø 2 Emin. 2H 59±0.8 42± min. 24± ±0.4 42min. 14.2± ±1.5 42±0.8 69min. 25.5± ±0.6 60min. 25.8±1 PE22 PQ ±2 70± min. 41±1 87± min. 56±1.5 P40 PQ Measuring condition: T=23, f=1khz, Hm=0.4/m PE22 PQ59 P40 PQ59 PE22 PQ79 P40 PQ79 PE22 PQ100 P40 PQ100 ore factor 1(mm 1 ) (mm 3 ) e(mm 2 ) Le(mm) Ve(mm 3 ) Weight(g) PQ ORE OIN imensions (mm) ø ø X Y Z Soldering condition: 350 max./2s ross-sectional winding area w(mm 2 ) verage winding length Iw(mm) PQ PT PQ PT PQ PT Material

43 For High Power High Power ores T, UU, E, EI, PQ, EE, EI, T, SP Series EE ORE ORE SHPES N IMENSIONS/HRTERISTIS F H K H E PROUT IENTIFITION PE22 EE Z (1) (2) (3) (4) (5) (6) (1) Material name (2) Shape (3) imension (4) imension x2 (5) Thickness (6) Gap dimension(z=0) EE ORE OIN Z PE22 EE70-Z P40 EE70-Z PE22 EE80X76-Z P40 EE80X76-Z PE22 EE90-Z P40 EE90-Z L 1 (nh/n 2 ) ±25% imensions (mm) 2 E F 2 H K K 2F(mm 2 ) 70±1.5 91±1 19.5± ± min. 71±1 10± ±1.5 76±1 20±0.5 20± min. 55±0.8 10± ±2 56.4±1 16.5±0.5 25±1 63min. 30.4±1 12.5± PE22 EE320X250X20-Z 2 P40 EE320X250X20-Z 2 320±5 250±1 20±1 100± min. 150±3 50± Measuring condition: T=23, f=1khz, Hm=0.4/m 2 EE320x250x20-Z is a bonded product. PE22 EE70-Z P40 EE70-Z PE22 EE80X76-Z P40 EE80X76-Z PE22 EE90-Z P40 EE90-Z PE22 EE320X250X20-Z P40 EE320X250X20-Z ore factor 1(mm 1 ) (mm 3 ) e(mm 2 ) Le(mm) Ve(mm 3 ) Weight (g) EE ORE OIN imensions (mm) Z ross-sectional winding area w(mm 2 ) verage winding length Iw(mm) Weight (g) E-80-S PT E-80-W PT Material

44 For High Power High Power ores T, UU, E, EI, PQ, EE, EI, T, SP Series T ORE ORE SHPES N IMENSIONS/HRTERISTIS R1 R2 E R1=1/2 R2=1/2 PE22 T138X20X58 P40 T138X20X58 PE22 T200X20X100 P40 T200X20X100 L (nh/n 2 ) ±25% Measuring condition: T=23, f=1khz, Hm=0.4/m imensions (mm) E 138± ±2.1 58± ±0.5 20± ±5 130±3 102± ±1 20±0.4 PE22 T138X20X58 P40 T138X20X58 PE22 T200X20X100 P40 T200X20X100 ore factor 1(mm 1 ) (mm 3 ) e(mm 2 ) Le(mm) Ve(mm 3 ) Weight (g) SP ORE ORE SHPES N IMENSIONS/HRTERISTIS PROUT IENTIFITION PE22 SP (1) (2) (3) (4) (5) PE22 SP135X65X20 P40 SP135X65X20 PE22 SP185X110X20 P40 SP185X110X20 PE22 SP250X155X20 P40 SP250X155X20 imensions (mm) 135±2.5 20±0.5 65± ±4.5 20± ±2 250±5 20± ±3 (1) Material name (2) Shape (3) imension (4) imension (5) imension

45 For udio-visual, TV, & Radio Equipment R, THP P, TH Series MTERIL HRTERISTIS Temperature Initial Relative loss urie Saturation Remanent oercive Electrical Practical factor of initial ensity permeability foctor temperature magnetic flux flux density force resistivity frequency permeability db Material µi tanδ/µi Tc density s r Hc ρv αµir (MHz) / [20 to 60 ] ( ) (mt) (mt) (/m) (Ω-m) (kg/m 3 ) L to ±25% <10[0.01MHz] <60[0.5MHz] 1 to 3 > [1.6k/m] L6E 0.01 to ±25% <10[0.01MHz] <60[0.5MHz] 6 to 10 > [1.6k/m] L5 0.1 to ±25% <15[0.1MHz] <280[1.5MHz] 1 to 3 > [1.6k/m] L9 0.1 to ±25% <40[0.1MHz] <140[1.5MHz] 0 to 2 > [1.6k/m] L7H 0.05 to 1 800±25% <12[0.05MHz] <80[1MHz] 7 to 15 > [4k/m] M8N 0.5 to 20 70±25% <130[0.5MHz] <350[20MHz] 3 to 3 > [4k/m] M10N 0.5 to 15 50±25% <100[0.5MHz] <300[15MHz] 8 to 2 > [4k/m] M9N 0.5 to 30 45±25% <200[0.5MHz] <350[30MHz] 5 to 5 > [4k/m] M2N 10 to ±25% <1500[100MHz] 10 to 10 > [8k/m] Q1 0.1 to 2 250±25% <35[0.1MHz] <110[2MHz] 9 to 15 > [1.6k/m] Q2 0.1 to 5 200±25% <25[0.1MHz] <100[5MHz] 25 to 65 > [1.6k/m] to 2 300±25% <20[0.1MHz] <65[2MHz] 10 to 30 > [1.6k/m] to 7 200±25% <160[0.3MHz] <350[7MHz] 20 to 50 > [1.6k/m] M8 0.5 to 15 70±25% <90[0.5MHz] <250[15MHz] 5 to 15 > [4k/m] M8 0.5 to 20 50±25% <140[0.5MHz] <400[20MHz] 4 to 12 > [4k/m] M9 0.5 to 30 50±25% <90[0.5MHz] <280[30MHz] 25 to 65 > [4k/m] M9M 0.5 to 30 45±25% <130[0.5MHz] <420[30MHz] 5 to 15 > [4k/m] M9E 0.5 to 60 40±25% <150[0.5MHz] <450[60MHz] 35 to 100 > [4k/m] M11 3 to 80 25±25% <220[3MHz] <470[80MHz] 30 to 70 > [4k/m] M11M 3 to 80 25±25% <200[3MHz] <1000[80MHz] 10 to 30 > [4k/m] M5E 10 to ±25% <450[10MHz] <1000[120MHz] 40 to 120 > [8k/m] M5M 10 to ±25% <500[10MHz] <1200[120MHz] 30 to 90 > [8k/m] M5N 10 to ±25% <550[10MHz] <1500[120MHz] 10 to 10 > [8k/m] V3F 10 to 80 10±25% <500[10MHz] <1000[80MHz] 40 to 10 > [16k/m] V5F 10 to 250 9±25% <550[10MHz] <1500[250MHz] 25 to 65 > [16k/m] T5F 0.1 to 20 55±25% <150[0.1MHz] <300[20MHz] 5 to 0 > [4k/m] (mt): 10 (gauss), 1(/m): (Oersted)

46 For udio-visual, TV, & Radio Equipment R, THP P, TH Series R SERIES ORE SHPES N IMENSIONS ø ø ø ø ø øg ø E F E F E F Fig.1 Fig.2 Fig.3 øi ø ø ø øi ø E F G H Fig.4 E F G H Fig.5 imensions in mm Fig. ø ø E F G H øi T5FR1.6X ± ± ± ± ± ±0.07 M10NR1.8X ±0.08 2±0.1 1± ± ± ±0.07 M9MR2X , ± ± ± ±0.1 M8R3X , ± ± ± ± ±0.1 Q2R3X , ±0.15 1± ± ±0.1 3R3X , ± ± ± ±0.1 M8R3X , ± ± , ± ±0.1 M8R3X3.8M , ± ± ± ± , ± ±0.1 3R3X , ± ± ± ±0.15 M8R3X , ± ± ± ±0.15 L9R4X , ± , ± ±0.1 M8R4X , ± ± ± ±0.1 Q2R3.6X , ± ± ± ±0.1 8R4X , 0.2 4±0.2 2± ± ±0.1 M8R4X , 0.2 4± ± ± ±0.1 3±0.15 M8R4X , ±0.2 2± ± ±0.15 3R4X , ± ± , ±0.15 M8R4X , ±0.2 2± , ± ±0.15 L6ER4.5X , ± ± ± ±0.1 L6R4.6X , ±0.25 2± ± ±0.15 1±0.1 2±0.15 L6R5.8X ± ± ± ±0.15 L5R9X3.4H 1 9+0, ± ± ± ±0.1 L7HRK14X ±0.2 15± ± ±0.2 10± ±0.2 L7HRK16X ±0.3 18± ±0.2 3±0.2 12±0.2 3±0.2

47 For udio-visual, TV, & Radio Equipment R, THP P, TH Series THP SERIES SHPES N IMENSIONS G G ø øf ø ø ø ø ø Fig.1 Fig.2 Fig.3 ø øf ø Fig.4 imensions in mm Fig. ø ø øf G Threaded diagram type M8NTHP3.89X ± ± ± ±0.1 O3 P=0.35 M10NTHP4.3X ± ± ± ±0.1 O4 P=0.5 M8THP4.8X ± ± , ± , 0.2 O4 P=0.5 Q1THP4.8X ±0.03 3± , 0.1 2± , 0.2 O4 P=0.5 Q2THP5.7X ± ± , 0.1 4± , , 0 O4 P=0.5 M8THP5.7X ± ± , 0.1 4± , , 0 O4 P=0.5 Q2THP5.95X ± ± ±0.1 O4 P=0.5 M8THP5.95X ± ± ±0.1 O4 P=0.5 M8THP6.74X ± ±0.2 5± ±0.2 5±0.15 O4 P=0.6 M8THP6.85X ± ± ± ±0.15 O3 P=0.6 Q1THP7.5X , ± , ± ±0.3 O4 P=0.8 Q2THP7.5X , ± , ± ±0.3 O4 P=0.8 M8THP7.5X , ± , ± ±0.3 O4 P=0.8 L6THP8.95X ±0.03 8± , 0.2 6±0.2 5±0.3 O3 P=0.6 L6THP9.25X ± , , 0.1 O4 P=0.6

48 For udio-visual, TV, & Radio Equipment R, THP P, TH Series THP ORE THREE IGRMS O3 TYPE O4 TYPE r1 r2 r1 r2 60±5 P h Outer diameter 90±5 P h Outer diameter imensions in mm P h r1 r2 max. 0.35± , ± ± , ± ± , ± ± , ± imensions in mm P h r1 r2 max. 0.5± , ± ± , ± ± , ± ± , ± P ORE(UP ORE) SHPES N IMENSIONS ø ø ø øe ø ø øf ø Fig.1 Fig.2 Fig.3 imensions in mm Fig. ø ø øe øf M5MP5.2X3P , 0.2 3± , ± ±0.15 L6P6X6 1 6±0.15 6± ±0.15 M11P6.9X6P , 0.2 6± ± , ±0.15 M5MP6.9X6P , 0.2 6± ± , ±0.15 M9P6.9X3P , ± , ± , 0.05 M11P6.9X3P , ± , ± , 0.05 M5MP6.9X3P , ± , ± , 0.05 L6P9.2X9.4P , ± ± ± , 0.15 L5P12.4X12P , , , , , 0.05

49 For udio-visual, TV, & Radio Equipment R, THP P, TH Series TH SERIES STNR TYPE S14 TYPE S4 TYPE Fig.1 Fig.4 S17 TYPE ø ø 2 ø Fig.2 S8 TYPE ø 1.5±0.07 Fig.5 Silicon resin is provided with this type. ll other core dimensions are identical to those of the standard type. Fig.3 1.5±0.07 OMINTIONS ETWEEN OUTER IMETER, LENGTH N MTERIL(Typical) imensions in mm Outer diameter ø Length ± Fig. 2.18±0.025 M2N, M9N, V5F 2 1, 4, 5 2.6±0.025 M2N, M5N, M9E M5M 1, 4, ±0.025 M9, M11M, M9, M11M, M5E M5E 1, 3, 4 3.2±0.025 V3F M11M 1, ±0.025 M9, M11M, M9, M11M, M5E M5E 1, 4 3.8±0.025 M5M M5M 1, 3 4±0.025 M5M M11, M5E, M9M 1, 3 4.2±0.025 M9M M9 1, ±0.025 M5E 2 4.6±0.025 M9, M9E, V3F Q1, M11M 2 5.9±0.03 Q1 Q1 2 6±0.03 Q1 Q1 2

50 For udio-visual, TV, & Radio Equipment R, THP P, TH Series TH SERIES THREE IGRM O3 TYPE h=0.866p h1=0.468p 30 r ±5 r2 P Outer diameter imensions in mm P±0.03 h h1 r1 r2 max , ± , ± , ± , ± , ±

51 For udio-visual, TV, & Radio Equipment For alun Transformer/hoke oil RHH, R4H, RI, R Series MTERIL HRTERISTIS Material Practical frquency (MHz) Initial permeability µi Relative loss factor tanδ/µi 10 6 L to ±25% <10[0.01MHz] <60[0.5MHz] L5 0.1 to ±25% <15[0.1MHz] <280[1.5MHz] L4 0.1 to ±25% <30[0.1MHz] <150[1.5MHz] Q1 0.1 to 2 250±25% <35[0.1MHz] <110[2MHz] Q5 0.4 to ±25% <25[0.4MHz] <180[20MHz] M9 0.5 to 30 50±25% <90[0.5MHz] <280[30MHz] M11 3 to 80 25±25% <220[3MHz] <470[80MHz] M5E 10 to ±25% <450[10MHz] <1000[120MHz] 1(mT): 10(gauss), 1(/m): (Oersrted) Temperature factor of initial permeability αµir 10 6 / [+20 to +60 ] 1 to 3 >100 1 to 3 >120 3 to 9 >150 9 to 15 >125 5 to 12 > to 65 > to 70 > to 120 >300 urie temperature Tc ( ) Saturation magnetic flux density s (mt) 280 [1.6k/m] 310 [1.6k/m] 330 [1.6k/m] 290 [1.6k/m] 340 [4k/m] 350 [4k/m] 290 [4k/m] 300 [8k/m] Remanant flux density r (mt) oercive force Hc (/m) Electrical resistivity ρv (Ω-m) ensity db (kg/m 3 ) RHH N R4H SERIES ORE SHPES N IMENSIONS 2-ø 2-ø 2-ø 4-ø 2 ø ø Fig.1 Fig.2 Fig.3 Fig.4 imensions in mm ø ø 1 2 Fig. Q5RHH6X5H1.2 L6RHH6X5H1.2 6±0.2 5± , Q5RHH7X5.5H1.5M L6RHH7X5.5H1.5M 7± ± ± Q5RHH7.5X4H1.3M 7.5±0.3 4± ± Q5R4H8X5H1.2 L6R4H8X5H1.2 8±0.3 5± ,

52 For udio-visual, TV, & Radio Equipment For alun Transformer/hoke oil RHH, R4H, RI, R Series RI SERIES ORE SHPES N IMENSIONS E ø imensions in mm ø E Q5RI3X2X5H1.2 L6RI3X2X5H1.2 3±0.2 2± ± ± Q5RI3X3X5H1.2 L6RI3X3X5H1.2 3±0.2 3± ± ± Q5RI3X5X5H1.2 3±0.2 5± ± ± L6RI3X4X6H1.5 3±0.2 4±0.3 6± ±0.1 3 L6RI3X10X6.5H1 3±0.2 10± ±0.3 1± Q5RI6.5X4X12H ±0.3 4±0.3 12± ± Q5RI7.5X5X13H3.8(R) 7.5±0.3 5± ± ± Q5RI7.5X7X13H3.8(R) 7.5±0.3 7± ± ± Q5RI8X7X15H5 8±0.3 7±0.3 15±0.5 5± Q5RI8X14X15H5 8±0.3 14±0.5 15±0.5 5± R SERIES ORE SHPES N IMENSIONS ø imensions in mm ø M11R3X , ±0.3 M5ER3X , 0.2 8±0.3 L4R3X , ±0.3 M9R4X , ±0.5 L5R6X , ±0.5 Q1R6X , ±1 L4R10X , ±

53 For udio-visual, TV, & Radio Equipment For Flyback Transformer UR, URS Series MTERIL HRTERISTIS Material HV22 HV45 Initial permeability µi [16kHz, 150mT, 100 ] ore loss Pcm W/kg [60kHz, 200mT, 100 ] [100kHz, 200mT, 100 ] Saturation magnetic flux density [23 ] s mt [H = 1194/m] [100 ] Remanent flux density r mt oercive force Hc /m urie temperature Tc min Electrical resistivity ρv Ω-m 3 3 ensity db kg/m Thermal expansion coefficient α ppm/ verage value The values were obtained with toroidal cores at room temperature unless otherwise shown. 1(mT): 10(gauss), 1(/m): (Oersted) UR SERIES SHPES N IMENSIONS [Typical] F F E E Fig.1 Fig.2 Type Fig. imensions (mm) e le min. E F (mm 2 ) (mm) UR30.4M UR UR36HK UR UR UR40SL UR UR UR UR

54 For udio-visual, TV, & Radio Equipment For Flyback Transformer UR, URS Series URS SERIES SHPES N IMENSIONS [Typical] E ø F Fig.1 Fig.2 Fig.3 Type Fig. imensions (mm) e le min. E F (mm 2 ) (mm) URS URS URS

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