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DLP9000BFLS Texas Instruments DLP® 0.90 WQXGA Type A DMD 355-CLGA visit Texas Instruments
TPIC6273DWG4 Texas Instruments Octal D-type Latch 20-SOIC visit Texas Instruments
TPIC6273DWRG4 Texas Instruments Octal D-type Latch 20-SOIC visit Texas Instruments
SN54HC273VTDG2 Texas Instruments Octal D-Type Flip Flops With - Clear, SN54HC273-DIE 0- visit Texas Instruments
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SN74HCT273ANSR Texas Instruments Octal D-Type Flip-Flops With Clear 20-SO visit Texas Instruments

lp type bobbin

Catalog Datasheet MFG & Type PDF Document Tags

EER28 BOBBIN

Abstract: EE 35 bobbin chargers SHAPES AND DIMENSIONS EXAMPLE: SRW24LQ, SRW24LQL TYPE(BOBBIN TYPE: I) 8 4 9 3 10 , Dimensions in mm TOP VIEW SPECIFICATIONS New transformer Bobbin type SRW24LQ SRW24LQL , · Multiple output power supplies SHAPES AND DIMENSIONS EXAMPLE: SRW2017EG TYPE(BOBBIN TYPE: I , 7 TOP VIEW Dimensions in mm SPECIFICATIONS New transformer Bobbin type SRW2017EG , (BOBBIN TYPE: I) EXAMPLE: SRW24 Depth 6 7 5 9 8 10 Width 4 11 3 12 2
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EER28 BOBBIN EE 35 bobbin EE 20 bobbin EE 16 bobbin vertical EE 35 transformer EER type bobbin 2002/95/EC

transformer bobbin

Abstract: CHN 802 . REPLACEMENT PARTS LIST New transformer New core 1 Existing core Bobbin type 2 Maximum external size D× W× H , EXAMPLE: SRW24LQ, SRW24LQL TYPE(BOBBIN TYPE: I) 6 5 Width 7 8 9 10 11 12 Depth 4 3 2 1 Height , SRW24LQL SRW28LQD Bobbin type I I I Maximum external size D× W× H (mm)max. 28.0× 27.5× 22.0 31.0× 27.5 , : SRW2017EG TYPE(BOBBIN TYPE: I) Depth 6 5 Width 7 8 9 10 11 12 Pin ø Dimensions in mm 4 3 2 1 , Dimensions in mm TOP VIEW SPECIFICATIONS New transformer Bobbin type I II III Maximum external size D
TDK
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transformer bobbin CHN 802 lp type bobbin tdk SRW TDK Ferrite Core PC47 TDK EER28L

EER35

Abstract: Bobbin Type 3 P (mm) Dimensions Lead space F (mm) Number of pins Depth Width Height D à , SRW seriesâ'ƒFor Multiple Outputs (Vertical type) 26EG series SHAPE & DIMENSIONS Bobbin type:⡠D max. Bobbin type â¡ â¡ 9 3 10 11 1 Type SRW2625EG SRW2630EG 8 4 , series SHAPE & DIMENSIONS Bobbin type: â H D max. Bobbin type â  H D max. 40.5 9 3 , power for reference only. Core parameter Type Bobbin parameter Generalpurpose cores cores
TDK
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EER35

ferrite core PQ3220

Abstract: CC3319 -ø1.3 Dimensions in mm TOP VIEW SPECIFICATIONS New transformer SRW3219PQM SRW3519PQM Bobbin type I I Maximum , -ø1.3 F 6 Dimensions in mm TOP VIEW SPECIFICATIONS New transformer SRW20CQ SRW25CQ Bobbin type , transformer SRW24LQ SRW24LQL Bobbin type I I Maximum external size D×W×H (mm)max. 28.0×27.5×22.0 , SPECIFICATIONS New transformer Bobbin type I SRW2420EG II III I SRW2425EG II III I SRW2430EG II III Maximum , -ø1.3 2.5 6 7 TOP VIEW Dimensions in mm SPECIFICATIONS New transformer Bobbin type I II
TDK
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ferrite core PQ3220 CC3319 TDK Ferrite Core cc3019 EE 55 bobbin CC3019 TDK flyback transformer srw

TDK TRANSFORMER CATALOG

Abstract: ) ECO2425SLD Bobbin parameter Terminal Pin pitch Bobbin Type 3 P (mm) Dimensions Lead space F , reference only. Core parameter Type Generalpurpose cores cores material Bobbin parameter center leg area Ae (mm2) Bobbin Type 36.3 V H V H V H ECO2017 ECO2020 EE25/19 , & DIMENSIONS Bobbin type V 19.5max. Type ECO2017 ECO2020 ECO2023 Bobbin type V V V , DIMENSIONS Bobbin type H D max. Type ECO2017 ECO2020 ECO2023 Bobbin type H H H 8 4 9
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TDK TRANSFORMER CATALOG ECO20 ECO22 ECO24

spice model of power TRANSFORMER

Abstract: "REMtech Corporation" modem Lleak = x.x mH Rpri = xxx LINE Cpri = xx pF Lp = xx H Rsec = xxx Rp = xx k , . Lp, known as Shunt Inductance, represents the bulk of the inductance in the transformer as current , soft magnetic material within the coil space, and the type of soft magnetic alloy itself. Shunt Inductance increases as frequency decreases, which is very convenient since higher Lp improves low-end , .4 schematic. Methods of increasing Lp also increase Rp. Whereas competitors rightly point out the need for
REMtech
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spice model of power TRANSFORMER frequency response analysis transformer CTR-21

TDK TRANSFORMER CATALOG

Abstract: TDK TRANSFORMER USED IN - NB 80 E 01 H 30.0 30.0 12 12 12 12 12 12 12 12 12 12 12 12 12 Bobbin type2 Vertical type , read the precautions before using this catalog. Spool Bobbin width type (mm) min. 10.4 V , SHAPES AND DIMENSIONS BOBBIN TYPE: V 19.5max. 9 3 10 2 11 12 3.5±0.8 H max. Bobbin type V V V 8 4 1 Part No. ECO2017 ECO2020 ECO2023 7 5 22.5max , Outputs (Horizontal Type) Conformity to RoHS Directive SHAPES AND DIMENSIONS BOBBIN TYPE: H D max
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TDK TRANSFORMER USED IN - NB 80 E 01 H ferrite ee25 TV flyback transformer flyback transformer pin connections flyback transformer tv chopper transformer winding formula

DIODE smd B44

Abstract: b48 DIODE schottky /CONSTRUCTION VARIABLES Core Type Core Bobbin AE LE AL BW M L NS EE16 EE16 EE16_BOBBIN 19.20 , ], the output rectifier's conduction time Enter the core type from the drop down menu [B44]. If the , ]). Enter the bobbin width BW [B49]. Enter the margin tape width in [B50], if margin tape is desired , inductance tolerance LP(TOLERANCE) [B68]. Enter in the transformer's core maximum flux density BM(TARGET , operating conditions (sealed adapter or open frame). Select the Package Type In cell [B17], type PG for
Power Integrations
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DIODE smd B44 b48 DIODE schottky ef12.6 core transformer creepage schottky b37 diode LNK613DN ee10 transformer AN-44 LNK61 D-80336

how to calculate ferrite core transformer

Abstract: how to calculate turn ratio for ferrite core transformer primary inductance of the transformer (Lp) can now be calculated from the following equation. (V min× Dm) 2 LP = ( 2 × Po × f min + V min× × f × Dm × Cres ) 2 min The next step , the Primary inductance LP (in µH) and the number of primary turns (NP) in the following equation. ALG = 1000 × LP NP 2 nH/turn2 The average primary current (IAV) can be calculated from the , controlled by the DC bus voltage and the primary inductance (LP), ending at a peak current value IP, which
International Rectifier
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how to calculate ferrite core transformer how to calculate turn ratio for ferrite core transformer cma 00124 PHILIPS pot core 3f3 TDK Ferrite Core PC40 AN-1024 IRIS40 CA91311 AN1024

cma 00124

Abstract: ETD34 PC40 primary inductance of the transformer (Lp) can now be calculated from the following equation. (V min× Dm) 2 LP = ( 2 × Po × f min + V min× × f × Dm × Cres ) 2 min The next step , the Primary inductance LP (in µH) and the number of primary turns (NP) in the following equation. ALG = 1000 × LP NP 2 nH/turn2 The average primary current (IAV) can be calculated from the , controlled by the DC bus voltage and the primary inductance (LP), ending at a peak current value IP, which
International Rectifier
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ETD34 PC40 EE 25 bobbin epcos make AN1024a EE19 TDK Ferrite Core PC40 EPC25 bobbin philips 3C85 ferrite material

13003 charger

Abstract: 121k 1kv capacitor the direction of bobbin when do the S1 Good-Ark LF1 Type Size*QT Y Jintong , Bobbin:EE16 2,SH1 and SH2 are shielding; P1 & P2 are primary and S1 is secondary TY-OHM T1 3,Reverse the direction of bobbin when do the S1. ♦ Item Electrical specifications Description , 10 Cor e P2 Size*QTY 46 5 4 Good-Ark Type 47 NC 3 Insulation , >
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13003 charger 121k 1kv capacitor 230v to 5v circuit using 13003 transistor ACT334 ACT512 ACT410 ACT411 ACT410/411 ACT413

power supply dvd player LG

Abstract: LNK626PG VARIABLES Auto Core Type Core Bobbin AE LE AL BW M L NS EE16 EE16 EE16_BOBBIN 0.192 , for Schottky and 0.7 for PN diode. · Enter the core type from the drop down menu. If the desired , Enter the bobbin width BW [B34]. · If margin tape is desired, then enter the margin tape width in [B35 , after leading edge blanking. Step 3 ­ Choose Core and Bobbin Based on Output Power and Enter AE, LE , path length LE (cm), core ungapped effective inductance AL (nH/Turn2), bobbin width BW (mm) and
Power Integrations
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power supply dvd player LG LNK626PG B49 diode smd B34 SMD ZENER DIODE lnk624pg core EEL16 transformer AN-45 FR106
Abstract: Winding P1 C6,C7 4 NC 0.9 Type Insulation Thick/ La Wide yer Safety Y1,Capacitor , ,SMD B-7 P2 SH2 C10 S1 Note:1,Core and Bobbin:EFD15 2,SH1,SH2,SH3 are shielding; P1,P2,P3 are primary and S1 is secondary 3,Reverse the direction of bobbin when do the S1 ♦ Item , Resistor, 470 ohm, 0805, 5% TY-OHM T1 Transformer, Lp=0.41mH, EED15 Not defined 140.00 , KSC Start Finish Turn s Type Wire Size*QT Y La yer Insulation Thick/ Wide Active-Semi
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ACT41X EPC17 12V1A ACT412 120KH

EE16 transformer 5v 2.1a

Abstract: t1/epc17 TRANSFORMER Winding P1 C6,C7 4 NC 0.9 Type Insulation Thick/ La Wide yer Safety Y1,Capacitor , ,SMD B-7 P2 SH2 C10 S1 Note:1,Core and Bobbin:EFD15 2,SH1,SH2,SH3 are shielding; P1,P2,P3 are primary and S1 is secondary 3,Reverse the direction of bobbin when do the S1 ♦ Item , Resistor, 470 ohm, 0805, 5% TY-OHM T1 Transformer, Lp=0.41mH, EED15 Not defined 140.00 , KSC Start Finish Turn s Type Wire Size*QT Y La yer Insulation Thick/ Wide
Active-Semi
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EE16 transformer 5v 2.1a t1/epc17 TRANSFORMER EE16 12V smd transistor 12W 3 pins SMD TRANSISTOR B7

230V AC primary to 12V, 1A secondary transformer

Abstract: 230V ac to 5V dc usb charger circuit the direction of bobbin when do the S1 Good-Ark LF1 Type Size*QT Y Jintong , Bobbin:EE16 2,SH1 and SH2 are shielding; P1 & P2 are primary and S1 is secondary TY-OHM T1 3,Reverse the direction of bobbin when do the S1. ♦ Item Electrical specifications Description , 10 Cor e P2 Size*QTY 46 5 4 Good-Ark Type 47 NC 3 Insulation , >
Active-Semi
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230V AC primary to 12V, 1A secondary transformer 230V ac to 5V dc usb charger circuit 230v dc 5a rectifier diode ACT330 F/400V SC053 PC817C TL431A 18AWG

230V ac to 5V dc usb charger circuit

Abstract: TRANSISTOR SMD p1 SCH and Transformer ( Lp and NP/NS/NAUX ) Update BOM List( C1,C2,R5,R6,R9,R10 ) Page 14~15 Update SCH and Transformer ( Lp and NP/NS/NAUX ) Update BOM List( R5,R6,R9,R10 ) Cover page Change , ) ) ×( IOUTCC = × LP × ( (1) VOUTCC RCS 2 L=51.0mm W=31.1mm H=14.2mm Lp is the , "¦ ohm, 0805, 5% TY-OHM R14,R15 T1 Transformer, Lp=1.7mH, EE16 U1 IC, ACT361,SOT23 , Terminal Wire Start Finish Insulation Turns Type Size*QTY Layer Thick/Wide Lay
Active-Semi
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TRANSISTOR SMD p1 D13005 DIODE SMD d8 ACT36X ACT33X 2012-O ACT364 ACT365 ACT366

TN0023

Abstract: EF20 core Ae · D max min 4. Calculate the primary inductance (Lp). This is the inductance used for the , material. ­ Bm = Lp Ipk 108 / Np Ae Flyback transformers vary in size and shape, but the most common is an E-E type core with a gap in the center leg. It is basically an inductor where the energy is , with an Ae which works better with the application. The bobbin area for the selected core is also , safety requirements such as creepage and clearance, and bobbin pin spacing. A core size starting points
STMicroelectronics
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TN0023 EF20 core Ae mathcad flyback design ST 2936 mathcad flyback VIPer22ADIP-E

ETAL P1200

Abstract: P3126 Shunt (4) inductance Lp -43dBm 200Hz -43dBm 1kHz 2.8 - 4 2 7 - H H (4 , line hold circuit. 4. At signal levels greater than ­20dBm LP will increase and RP will decrease , Type 1(a) (side-by-side on separate slots of single piece moulding). Fully vacuum encapsulated with , ) Distance through bobbin dividing fillet. Distance through bobbin walls to conductive core (Each winding
ETAL
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P3126 P1200 ETAL P1200 TG25 Profec Technologies

ETD39 12v

Abstract: s10k275 : ETD39 Core material N97 (Epcos) Bobbin: ETD39(16pin) Horizontal Version Primary Inductance, Lp , CCM boost type PFC converter consists of L2, Q1, D3 and C4. Bulk capacitor C4 provides energy , 14 and 15 pin. The CoolMOSTM C3 series MOSFET SPP20N60 is usedas main switch in this boost type PFC , Note 9 2009-04-13 8 Components 8.1 Bill of Material Part Type 1 2 3 4 5 6 , SPP15N60C3 SPP15N60C3 Part Type 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63
Infineon Technologies
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EVALCOMBI-ICE1CS02 ICE1CS02 ETD39 12v s10k275 ntc r110 fuse 1N4007 EPCOS 100VAC 115VAC 230VAC 265VAC

ETAL P1200

Abstract: RP-4 Shunt (4) inductance Lp -43dBm 200Hz -43dBm 1kHz 2.8 - 4 2 7 - H H Shunt loss , circuit. 4. At signal levels greater than ­20dBm LP will increase and RP will decrease slightly but the , . Windings may be used interchangeably as primary or secondary. EN 50020 para 7.1.2 Type 1(a) (side-by-side , bobbin dividing fillet. Distance through bobbin walls to conductive core (Each winding). ETALDOC
Profec Technologies
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RP-4 FIN-03101
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