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Part ECAD Model Manufacturer Description Datasheet Download Buy Part
TMPM3HMFZAFG TMPM3HMFZAFG ECAD Model Toshiba Electronic Devices & Storage Corporation Arm Cortex-M3 Core Based Microcontroller/32bit/P-LQFP80-1212-0.50-003 Visit Toshiba Electronic Devices & Storage Corporation
TMPM3HPFYAFG TMPM3HPFYAFG ECAD Model Toshiba Electronic Devices & Storage Corporation Arm Cortex-M3 Core Based Microcontroller/32bit/P-LQFP128-1414-0.40-001 Visit Toshiba Electronic Devices & Storage Corporation
TMPM3HMFDAFG TMPM3HMFDAFG ECAD Model Toshiba Electronic Devices & Storage Corporation Arm Cortex-M3 Core Based Microcontroller/32bit/P-LQFP80-1212-0.50-003 Visit Toshiba Electronic Devices & Storage Corporation
TMPM3HPFDAFG TMPM3HPFDAFG ECAD Model Toshiba Electronic Devices & Storage Corporation Arm Cortex-M3 Core Based Microcontroller/32bit/P-LQFP128-1414-0.40-001 Visit Toshiba Electronic Devices & Storage Corporation
TMPM3HNFYAFG TMPM3HNFYAFG ECAD Model Toshiba Electronic Devices & Storage Corporation Arm Cortex-M3 Core Based Microcontroller/32bit/P-LQFP100-1414-0.50-002 Visit Toshiba Electronic Devices & Storage Corporation
TMPM3HQFYAFG TMPM3HQFYAFG ECAD Model Toshiba Electronic Devices & Storage Corporation Arm Cortex-M3 Core Based Microcontroller/32bit/P-LQFP144-2020-0.50-002 Visit Toshiba Electronic Devices & Storage Corporation

pc40 core LOSS DATA Datasheets Context Search

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TDK Ferrite Core PC40

Abstract: ups transformer winding formula tdk ferrite pc40 tdk ferrite pe22 PC40 ferrite FERRITE core TRANSFORMER ups with ferrite core transformer ferrite pc40 TDK pc40 INVERTER TRANSFORMER 101
Text: substitute, delivers reduced core loss at high frequencies and is the optimum material for high-power , flux density H=1194A/m Remanent flux density Coercive force 25kHz, 200mT Core loss 100kHz, 200mT , × 103 12× 10­6 5 600 9× 107 1.2× 1011 ­0.6× 10­6 · 1(mT)=10(G),1(A/m)=0.012566(Oe) CORE LOSS , specifications are subject to change without notice. 002-01 / 20071116 / e16_1.fm (3/6) CORE LOSS vs , inductance value, maximum saturation flux density, core loss , temperature characteristics, frequency


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PDF 2002/95/EC, TDK Ferrite Core PC40 ups transformer winding formula tdk ferrite pc40 tdk ferrite pe22 PC40 ferrite FERRITE core TRANSFORMER ups with ferrite core transformer ferrite pc40 TDK pc40 INVERTER TRANSFORMER 101
TDK Ferrite Core PC44

Abstract: TDK Ferrite Core PC40 ferrite eddy current hysteresis loss TDK PC44 tdk ferrite pc44 high power FERRITE TRANSFORMER EER FERRITE transformer TDK pc40 TDK Ferrite Core PC33 tdk ferrite pc40
Text: offers the ultimate in low-loss characteristics. While the core loss of PC44 is reduced to near 300 kw , . Temperature characteristics Core loss vs. Temperature characteristics 1200 600 High-Bs 800 , Saturation magnetic flux density Bs (mT ) Core loss Pcv(kW/m3) 1000 500 PC90 PC33 400 , saturation mag- 0.2 0 -1500 -1000 - 500 Core loss volume density *2 Pcv (kW/m3) ( Core , shown in the core loss vs. temperature characteristics, because PC90's core loss is reduced to a much


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PDF 2002/95/EC, BSF-D06EA TDK Ferrite Core PC44 TDK Ferrite Core PC40 ferrite eddy current hysteresis loss TDK PC44 tdk ferrite pc44 high power FERRITE TRANSFORMER EER FERRITE transformer TDK pc40 TDK Ferrite Core PC33 tdk ferrite pc40
ferrite core transformer calculation formula

Abstract: TDK Ferrite Core PC40 ferrite core tdk h5c2 TDK H5C2 material TDK Ferrite Core PC44 TDK Ferrite Core PC40 ei SC12N TDK H5C2 TDK H5C2 CORE MATERIAL tdk ferrite H5A
Text: , low power loss TDK core type RM cores EP, EE and RM cores EI, EC and RM cores TDK produces a , .3. Br B =tan r H i H H CB 0 H H H E X H5A=1194A/m 3. CORE LOSS Fig. 2 Fig. 3 , volume of core (cm3) f = frequency of test current(Hz) h1 = hysteresis loss coefficient e1 = , ) µi It follows therefore that the loss factor for a practical core can be expressed in the , factor refers to the loss coefficient of a coil complete with a ferrite core , and is the reciprocal of


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PDF 2002/95/EC, ferrite core transformer calculation formula TDK Ferrite Core PC40 ferrite core tdk h5c2 TDK H5C2 material TDK Ferrite Core PC44 TDK Ferrite Core PC40 ei SC12N TDK H5C2 TDK H5C2 CORE MATERIAL tdk ferrite H5A
tdk ferrite H5A

Abstract: ferrite core tdk h5c2 TDK Ferrite Core PC40 h5a transformer TDK H5C2 CORE MATERIAL TDK H5C2 material FERRITE TOROIDAL CORE DATA pc40 core LOSS DATA PC44 ferrite materials ferrite core h5c2
Text: test coil with core (H) volume of core (cm3) frequency of test current (Hz) hysteresis loss coefficient , hysteresis loss coefficient, tan ôh, for a practical core is expressed by the following equation: t n h - , effective quality factor refers to the loss coefficient of a coil complete with a ferrite core , and is the , core N ote: The symbol and the data of this manual are in accordance with IEC Publication 401. 8 , 350 95 65 55 50 14.3 10.3 8.8 8 >215 4 .8 x 103 6.5 PC50 1400 ± 25% 25 kHz sine wave Core loss


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pc40 core

Abstract: core pc40 HM 8350 PC40 ferrite pq78 EE 70 bobbin ferrite pc40 EE 16 bobbin 5 5 "EI CORE" Bobbin EE 16
Text: =0.4A/m Core factor C1(mm­1) Part No. PE22 PC40 PE22 PC40 PE22 PC40 Weight (g) C2×10­2(mm , 8890±25% PC40 EIC120X65X30 11085±25% AL-value: T=23°C, f=1kHz, Hm=0.4A/m · Available customaize core , =0.4A/m EE320x250x20-Z is a bonded product. Core factor C1(mm­1) Part No. PE22 PC40 PE22 PC40 , No. PE22 PC40 PE22 PC40 C EI70×55×19 EI70×55×19 EI70×64×31N EI70×64×31N Core factor , PE22 PC40 DT138×20×58 DT138×20×58 DT200×20×102 DT200×20×102 Core factor C1(mm­1) C2


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PDF 2002/95/EC, SP135 SP185 SP255 pc40 core core pc40 HM 8350 PC40 ferrite pq78 EE 70 bobbin ferrite pc40 EE 16 bobbin 5 5 "EI CORE" Bobbin EE 16
pq78

Abstract: PQ107 ee70 core EI70 EE80 bobbin EiC90 core EC90 core PC40 ferrite core EC90 EE320x250x20
Text: _2.fm (3/31) Core factor C1(mm­1) PE22 PC40 PE90 PE22 PC40 PE90 PE22 PC40 PE90 PE22 PC40 , ×108×31N PC40 EE70×108×31N PE90 EE70×108×31N Core factor C1(mm­1) C2×10­2(mm­3) Ae(mm2) 0.52779 , exempted applications. (1/31) Large Size Ferrite Cores for High Power T Series T CORE CORE SHAPES , PE22 PC40 PE90 PE22 PC40 PE90 PE22 PC40 PE90 PE22 PC40 PE90 PE22 PC40 PE90 PE22 PC40 PE90 PE22 PC40 PE90 PE22 PC40 PE90 PE22 PC40 PE90 PE22 PC40 PE90 2330 2980 2850 2290


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PDF 2002/95/EC, SP135 SP185 SP255 pq78 PQ107 ee70 core EI70 EE80 bobbin EiC90 core EC90 core PC40 ferrite core EC90 EE320x250x20
2003 - EE19 TDK Ferrite Core PC40

Abstract: EE60 core EER35 core sandwich type transformer tdk ferrite ee22 TDK PC40 EI40 TDK EE35 bobbin TV flyback transformer EE35 type bobbin 70-100W ferrite core inductor TDK Ferrite Core PC40
Text: type and size are determined, the following variables are obtained from the core data sheet. (2 , of a core . The typical B-H characteristics of ferrite core from TDK ( PC40 ) are shown in Figure 3 , ferrite core (TDK/ PC40 ) With the given variables, the primary side inductance, Lm is obtained as min , flyback transformer, the current flows only in the primary winding while the energy in the core is charged and in the secondary winding while the energy in the core is discharged. Usually gap is


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PDF AN4140 EE19 TDK Ferrite Core PC40 EE60 core EER35 core sandwich type transformer tdk ferrite ee22 TDK PC40 EI40 TDK EE35 bobbin TV flyback transformer EE35 type bobbin 70-100W ferrite core inductor TDK Ferrite Core PC40
2001 - DIODE ON SEMICONDUCTOR B34

Abstract: NCP1200 CROSS REFERENCE transformer bobbin sectional bobbin LLC N67 transformer core mosfet b38 EE 80 bobbin EI TRANSFORMER LIST EI type bobbin EE CORE
Text: : EBNCP1200/D EBNCP1200/D Step 8: Enter Magnetic Core and Bobbin Data without excessive hysteresis loss , e.g. N67 from Epcos (Siemens) and PC40 from TDK. The worksheet allows user to input properties , Name of the magnetic core Optional data , not for calculation For identification purpose only Ae , transformer has to be chosen suitably to avoid excessive copper loss and heat dissipation. The current , safety factor determines the magnetizing level of the transformer core , it should in the range from 0.3


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PDF EBNCP1200/D NCP1200 r14525 EBCNP1200/D DIODE ON SEMICONDUCTOR B34 NCP1200 CROSS REFERENCE transformer bobbin sectional bobbin LLC N67 transformer core mosfet b38 EE 80 bobbin EI TRANSFORMER LIST EI type bobbin EE CORE
PC Quick Connect

Abstract: PC50
Text: to 2K 5, 10 45 PC-40 40 1 to 2K 5, 10 75 PC-50 50 1 to 2K 5, 10 , ) TOLERANCE (1 digit) PACKAGING CODE (3 digits) SPECIAL (up to 3 digits) PC-30 PC-40 PC-50 R , [19.00] 2.95 [75.00] 1.22 [31.00] 0.30 [7.50] PC-40 0.75 [19.00] 0.75 [19.00] 3.54 , value Core : High purity grade alumina ceramic rod Body: Steatite ceramic case with inorganic potting , SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE RELIABILITY, FUNCTION OR DESIGN OR


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PDF PC-30 PC-40 PC-50 2002/95/EC. 2002/95/EC 2011/65/EU. JS709A 02-Oct-12 PC Quick Connect PC50
1998 - marcon capacitor

Abstract: cma 00112 UC3842 design with TL431 flyback uc3842 tl431 nippon marcon capacitor catalog laptop inverter SCHEMATIC TRANSISTOR tdk PC40 EE22-Z DE7100F222 EE22-PC40 120VAC AND 60HZ TDK NOISE FILTER
Text: TDK PC40 EE22-Z core and a TDK BE-22-118CP vertical bobbin were selected for this design. The maximum , winding and add the 3-turn secondary. Core Loss From page 9 of the '96 TDK catalog, the core loss is , its core loss charts. The flyback topology operates in one quadrant and is considered a unipolar , Dimensions Micrel Application Note 18 Material: PC40 100 500kHz 10 300kHz 200kHz (Sine wave data ) Micrel Core loss Pc (W/cm3) 100kHz 1 50kHz 25kHz 0.1 65mT @ 200kHz = 0.07W/cm3 0.01 0.001


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PDF MIC38C43 marcon capacitor cma 00112 UC3842 design with TL431 flyback uc3842 tl431 nippon marcon capacitor catalog laptop inverter SCHEMATIC TRANSISTOR tdk PC40 EE22-Z DE7100F222 EE22-PC40 120VAC AND 60HZ TDK NOISE FILTER
Nebulizer

Abstract: RFID M5e Ultrasonic nebulizer EL0606 PC44 ferrite materials SP0406 NL3225 ferrite core H5C5 h5a transformer MZA3216
Text: ZJY ­ UF, TF Pin Terminal Compact and Separable Bobbin Type UF HF Toroidal Core , Signal Line Closed Magnetic Circuit Core Type Common Mode Choke Coils LFH Radial For , ­ For Micro-motors Varistors Square Core Type Ring Type AVRM, AVRL, AVF SrTiO3 , Core with Case) For Cable With Self-holding Mechanism Sleeve Core Type ZCAT-E ­ ZCAT , H5C4 Range and High Permeability Materials Material PC95 ­ Low Loss Material for Power Supply


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PDF 2002/95/EC, February/2008 AVJ-004D MMZ1608-C MMZ0402 MMZ0603 MMZ1005 MMZ1608 MMZ2012 MPZ1005 Nebulizer RFID M5e Ultrasonic nebulizer EL0606 PC44 ferrite materials SP0406 NL3225 ferrite core H5C5 h5a transformer MZA3216
2009 - eel 19 transformer

Abstract: eel - 19 transformer Eel19 core EEL-19 transformer eel-19 EEL19 AE eel 19 Core/EEL-19 EEL19 transformer PC40 EEL19
Text: 9/18/09 Figure 5. Typical B-H Characteristics of Ferrite Core (TDK/ PC40 , are operating at zero current just before becoming reverse biased and the reverse recovery loss is , compared to CCM. However, DCM inherently causes high RMS current, which increases the conduction loss of , nominal load condition. If no reference data is available, set = 0.7~0.75 for low-voltage output , transformer size and the RMS value of the MOSFET current. Even though the conduction loss in the MOSFET can


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PDF AN-8024 90VAC 264VAC eel 19 transformer eel - 19 transformer Eel19 core EEL-19 transformer eel-19 EEL19 AE eel 19 Core/EEL-19 EEL19 transformer PC40 EEL19
h5a transformer

Abstract: ferrite pc40 22 14 10 T14X3 H5B2 T28X13X16 T10X2 T31X8X19 ferrite core h5c2 PC40 core ferrite pc40
Text: Ferrite Cores T Series For Power Supply and Signal Transformer Toroidal Cores CORE SHAPES AND DIMENSIONS/CHARACTERISTICS , , , , c c øB øA Type (øAXCXøB) T3.05X1.27X1.27 T3.94X1.27X2.23 T4X1X2 T4.83X1.27X2.29 T5.84X1.52X3.05 T6X1.5X3 T8X2X4 T10X2.5X5 T12X3X6 , 3340±30% 2000±30% 2170±30% 2840±30% 3000±30% 2960±30% 4000±30% 5000±30% PC40 H5A H5C2 , (H5C3, H5C2, H5B2, HP5)/50kHz (H5A), 100kHz ( PC40 ) 137 980706 Specifications which provide more


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PDF T10X2 T12X3X6 T14X3 T20X5X10 T20X7 T28X13X16 T31X8X19 T38X14X22 5X13X30 10kHz h5a transformer ferrite pc40 22 14 10 H5B2 T28X13X16 T31X8X19 ferrite core h5c2 PC40 core ferrite pc40
1998 - 2501 nec

Abstract: flyback uc3842 tl431 marcon capacitor UC3842 design with TL431 laptop inverter SCHEMATIC TRANSISTOR TDK TRANSFORMER CATALOG 120VAC AND 60HZ TDK NOISE FILTER cma 00112 nippon marcon capacitor catalog ECU-S1J104KBB
Text: : TDK uses sine wave data for its core loss charts. The flyback topology operates in one quadrant and , . lGAP = Designing the Flyback Transformer A TDK PC40 EE22-Z core and a TDK BE-22-118CP vertical , winding. Then, tape over the tertiary winding and add the 3-turn secondary. Core Loss From page 9 of the '96 TDK catalog, the core loss is 0.07mW/cm3 at 200kHz. Gauss level = 1300 gauss, then: 1300/10 , ) Application Note 18 Micrel May 1998 Application Note 18 Micrel (Sine wave data ) Material: PC40


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PDF MIC38C43 MIC38C4x 500kHz UC3842/43/ UC2842/3/4. 2501 nec flyback uc3842 tl431 marcon capacitor UC3842 design with TL431 laptop inverter SCHEMATIC TRANSISTOR TDK TRANSFORMER CATALOG 120VAC AND 60HZ TDK NOISE FILTER cma 00112 nippon marcon capacitor catalog ECU-S1J104KBB
TDK Ferrite Core PC40

Abstract: Nebulizer TDK toner density ferrite core tdk h5c2 Ultrasonic nebulizer VLC6045 FERRITE TRANSFORMER ee tdk pc95 TDK GBDriver RS2 TDK L7H
Text: Circuit Core Type HF Low Profile Differential Mode Choke Coils Pin Terminal /Lead For Signal Line LH Radial For Power Line Standard Type Non-molded ­ SF-T Square Core Type ­ , Terminal ­ ZUG, ZUB Clamp Filters(Ferrite Core with Case) For Cable With Self-holding , Range, Low Loss Power Material ­ Low Loss Material Material PC47 for Power Supply ­ High , ­ Materials: PC33, PC40 , PC44, PC47, PC50, PC95, HS10, HS52, HS72 ­ E, EI, EE, EF, EER


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PDF 2002/95/EC, February/2010 AVJ-004E TDK Ferrite Core PC40 Nebulizer TDK toner density ferrite core tdk h5c2 Ultrasonic nebulizer VLC6045 FERRITE TRANSFORMER ee tdk pc95 TDK GBDriver RS2 TDK L7H
2003 - transistor ka431

Abstract: 12v 50 A battery charger smps schematic fsd311 1032 1kv polyester capacitor transistor ka431 L 2562 optocoupler ferrite transformer 12V battery charger RMS TO DC converter using LM358 TESLA DIODES CSN thermistor op amp temperature controller circuit
Text: characteristics of ferrite core from TDK ( PC40 ). Since the saturation flux density (Bsat) decreases as the , field H (A/m ) 0 1600 Figure 8. Typical B-H characteristics of ferrite core (TDK/ PC40 ) VRO , and loss in the output current sense resistor. The typical efficiency is about 0.65-0.7. 4 , 6. Determine the proper core and the minimum primary turns (Npmin) Po Pin = -E ff (1 , window area (Aw) enough ? N Y Is it possible to change the core ? N 9. Choose the proper


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PDF AN4138 transistor ka431 12v 50 A battery charger smps schematic fsd311 1032 1kv polyester capacitor transistor ka431 L 2562 optocoupler ferrite transformer 12V battery charger RMS TO DC converter using LM358 TESLA DIODES CSN thermistor op amp temperature controller circuit
2011 - EE1614S

Abstract: 2n60 application ee1614 FL103 2N60 FL103M fairchild 1N4007 C101 C102 L101
Text: winding Outer Insulation: Polyester Tape t = 0.05 mm, 3 Layers Core : EE1614S ( PC-40 ) Bobbin: 10 , , requalifications, rework charges, delay, lost profits, or loss of goodwill arising out of the sale, installation


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PDF FL103M FL103M 85-265VAC RD-L015 EE1614S 2n60 application ee1614 FL103 2N60 fairchild 1N4007 C101 C102 L101
2009 - 4N60 fairchild

Abstract: TDK Y-CAP mosfet 4n60 power supply 4N60 application note EF25 PC40 tdk EF25 TRANSFORMER AN-6861 pc40 core LOSS DATA "Application Note" and FAN6861 TDK Ferrite Core PC40
Text: characteristics of ferrite core from TDK ( PC40 ). Since the saturation flux density (BSAT) decreases as the , Ferrite Core (TDK/ PC40 ) Figure 7. Simplified Transformer Diagram (Design Example) Assuming the , recovery loss is minimized. The transformer size can be reduced using DCM because the average energy , conduction loss of the MOSFET severely for low line condition. Thus, especially for applications with peak , reference data is available, set N = 0.7~0.75 and P = 0.65~0.7 for low-voltage output applications and N =


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PDF AN-6861 FAN6861 FAN6861, 4N60 fairchild TDK Y-CAP mosfet 4n60 power supply 4N60 application note EF25 PC40 tdk EF25 TRANSFORMER AN-6861 pc40 core LOSS DATA "Application Note" and FAN6861 TDK Ferrite Core PC40
2003 - ntc 5d-13

Abstract: circuit diagram of 4000 watt smps full bridge EE19 TDK Ferrite Core PC40 EER3530 dm07652r tdk EI40 AN-4137 T1 EI19 core - 20 mm2 p 621 Opto coupler data EE35 transformer
Text: agnetic field H (A/m ) 1600 Figure 8. Typical B-H characteristics of ferrite core (TDK/ PC40 , power. If no reference data is available, set Eff = 0.7~0.75 for low voltage output applications and , , the maximum input power is given by 6. Determine the proper core and the minimum primary turns , . Y Is it possible to change the core ? N It is typical to select the DC link capacitor as , current, which increases the conduction loss of the MOSFET and the current stress on the output


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PDF AN4137 ntc 5d-13 circuit diagram of 4000 watt smps full bridge EE19 TDK Ferrite Core PC40 EER3530 dm07652r tdk EI40 AN-4137 T1 EI19 core - 20 mm2 p 621 Opto coupler data EE35 transformer
2005 - str TV SMPS design example

Abstract: FSCQ0765RT str TV SMPS 1500 watt smps schematic 24V 10A SMPS circuit cross reference schematic diagram of ctr flyback tv FSCQ1565RT LM 784 OP eer3540 SCHEMATIC DIAGRAM SMPS 12v 2A
Text: ferrite core from TDK ( PC40 ). Since the core is saturated at low flux density as the temperature goes , (TDK/ PC40 ) Np NS2 - Output Power Core 70-100W EER35 100-150W EER40 EER42 , input power. If no reference data is available, set Eff = 0.7~0.75 for low voltage output applications , proper FPS considering input power and Idspeak 6. Determine the proper core and the minimum primary , core ? [STEP-2] Determine DC link capacitor (CDC) and the DC link voltage range. N 10. Choose


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PDF AN4146 str TV SMPS design example FSCQ0765RT str TV SMPS 1500 watt smps schematic 24V 10A SMPS circuit cross reference schematic diagram of ctr flyback tv FSCQ1565RT LM 784 OP eer3540 SCHEMATIC DIAGRAM SMPS 12v 2A
TDK Ferrite Core PC40

Abstract: tdk ferrite H5A ferrite core tdk h5c2 TDK AL-value ferrite ferrite CORE EDT 300uH TDK Cores H5B2 TDK H5C2 CORE MATERIAL tdk 0821 h
Text: , provides a truly wide range of cores for the user's selection. The core meeting user's requirement for duty anywhere between the audio range and about 20MHz will be readily found in the TDK toroidal core line. ORDERING CODE SYSTEMS For general use H5B2 T 4 × 1 × 2 Toroidal core material Inside diameter B Symbol of Toroidal core Thickness C Outside diameter A For LAN pulse transformers (This ordering code system is used for only DNW45 items.) DNW45 T 3.05 × 2.54 A - A W P Toroidal core


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PDF 2002/95/EC, TDK Ferrite Core PC40 tdk ferrite H5A ferrite core tdk h5c2 TDK AL-value ferrite ferrite CORE EDT 300uH TDK Cores H5B2 TDK H5C2 CORE MATERIAL tdk 0821 h
2005 - str TV SMPS design example

Abstract: EER 3540 schematic diagram ac regulator str str TV SMPS optocoupler 817a schematic diagram of ctr flyback tv KA5Q0765RT EER53 ka5q1265rt EER-4242
Text: typical characteristics of ferrite core from TDK ( PC40 ). Since the core is saturated at low flux density , in normal operation is related to the hysteresis loss in the core while the maximum flux density in , . Typical B-H Characteristics of Ferrite Core (TDK/ PC40 ) + VF2 DR2 VO2 + VRO - + Output , conversion efficiency must be estimated to calculate the maximum input power. If no reference data is , Idspeak 6. Determine the proper core and the minimum primary turns (Npmin) With the estimated


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PDF AN4149 str TV SMPS design example EER 3540 schematic diagram ac regulator str str TV SMPS optocoupler 817a schematic diagram of ctr flyback tv KA5Q0765RT EER53 ka5q1265rt EER-4242
2006 - full bridge smps resonance snubber

Abstract: AN-4150 EE19 TDK Ferrite Core PC40 RC snubber mosfet design Transformer EER25 soft ferrite WPC ferrite ee25 EER25.5 ferrite core bobbin circuit SCHEMATIC DIAGRAM SMPS 12v 5A PC40 EI25
Text: density in tesla. Figure 11 shows the typical characteristics of ferrite core from TDK ( PC40 ). Since the , Characteristics of Ferrite Core (TDK/ PC40 ) Output Power EI Core 0-10W EI12.5 EI16 EI19 EE8 , value. Doing this reduces the MOSFET turn-on switching loss caused by the capacitance loading between , =3s Ids ID 6. Determine the proper core and the minimum primary turns (Npmin) ID Ids 7 , change the core ? Y N When the resonant period is 2s fs 67kHz C B 59kHz 55kHz CCM


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PDF AN-4150 full bridge smps resonance snubber AN-4150 EE19 TDK Ferrite Core PC40 RC snubber mosfet design Transformer EER25 soft ferrite WPC ferrite ee25 EER25.5 ferrite core bobbin circuit SCHEMATIC DIAGRAM SMPS 12v 5A PC40 EI25
FSD210 equivalent

Abstract: EER-2828 PC40 TDK EER3542 core EER3542 equivalent fan7382 bobbin EER3542 TDK Ferrite Core PC40 D223 DIODE EER2834
Text: and Bobbin Core : EER3542 Material: PC40 (TDK) or equivalent Bobbin: EER3542 / 16 Pin , field generated by adjacent layers Core size Use the area product Ap to estimate core size from Ae (magnetic cross section) and Aw (winding cross section) Bpeak is 0.35 Tesla for standard ferrite core L , selection Look for cores meeting area product and size requirements: EER3542 core (Ae=107mm2,Aw , ,0 s is the gap size, AL,0 is the AL value for an ungapped core Adjust the turns to


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PDF 95V-265V FSD210 equivalent EER-2828 PC40 TDK EER3542 core EER3542 equivalent fan7382 bobbin EER3542 TDK Ferrite Core PC40 D223 DIODE EER2834
2005 - STR-A6159

Abstract: TDK pc40 TDK EE13 core STRA6159 core EE13 transformer BOBBIN TRANSFORMER for ee13 BE13-1110CPS a6159 BE-13-1110CPS EE13 core
Text: 5 Figure 2 - Transformer schematic / structure · Material infomation Material Core Bobbin Description TDK PC40 EE13 or equivalent / Al-value: 100nH/N2 TDK BE13-1110CPS or equivalent Primary wire


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PDF STR-A6159 STR-A6159. 250V1A 800V1A 100nH/N2 BE13-1110CPS AWG32 051705MH TDK pc40 TDK EE13 core STRA6159 core EE13 transformer BOBBIN TRANSFORMER for ee13 a6159 BE-13-1110CPS EE13 core
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