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D16OAR11JGRNGRN E-Switch Inc Pushbutton Switch, SPST, Momentary, 6A, 24VDC, Solder Lug Terminal, Panel Mount visit Digikey Buy
80-25 E-Z-Hook NAIL HARNESS BOARD 5.0" visit Digikey Buy
9866-24 BLK E-Z-Hook PATCHCORD SCKT-STKG PIN PLUG BLK visit Digikey Buy
9120-8-S E-Z-Hook PATCHCORD SQ SOCKET SET/10 8" visit Digikey Buy
LC2255OANP E-Switch Inc Pushbutton Switch, SPDT, On-(on), Momentary, 0.3A, 30VDC, 9 PCB Hole Cnt, Solder Terminal, Through Hole-right Angle visit Digikey Buy
L16PLT10AWHT E-Switch Inc Pushbutton Switch visit Digikey Buy

ITACOIL E2543/E

Catalog Datasheet MFG & Type PDF Document Tags

l6562

Abstract: ITACOIL E2543/E ) let o s) t( 4A/250V T1: Boost inductor spec (ITACOIL E2543/E) ­ E25x13x7 core, 3C85 , s) t( ro P EVAL6562-80W te le (s) ct so Ob - du o Pr e let o bs , ) ct du o Pr e let o bs O 2/6 ro P s) t( so Ob - EVAL6562 , C2 C3 C4 C5 C6 uc d C7 C23 ro P e ro P N.A NTC uc d (s) t so Ob , ) Figure 4. EVAL6562 - 80W: PF (right) vs. Vin uc d te le (s) ct du o Pr e let o
STMicroelectronics
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L6561 STTH1L06 1N5248B 1N4148 l6562 ITACOIL E2543/E T 4A 250v ITACOIL L6562 application 3c85 ferrite L6562-80W L6562

3c85 ferrite

Abstract: EVAL6562-80W ) STP8NM50 BRIDGE DF06M FUSE Values 4A/250V T1: Boost inductor spec (ITACOIL E2543/E) ­
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core 3c85 E25x13x7 L6562 80W L6562 boost PFC inductor spec l6561 in boost ntc 2,5 E2543/E

E25x13x7

Abstract: 4 CS GND C2 10nF INV 1 L6562A Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core , diodE NTC1 2R5-S237 B57237S0259M000 T1 E2543/E E25x13x7 core, 0.7 mH U1 L6562A , (s) ct du o Pr e let o bs O )(s Description ct u The L6562A is a , P e let o This board implements an 80 W, wide-range mains input and a PFC pre-conditioner , material GD R8 47k â"¦ R15 Q1 STP8NM50FP du o R9 0.68 â"¦ 0.25W Pr e R10 0.68
STMicroelectronics
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EVL6562A-TM-80W
Abstract: µF 630V C2 10nF R2 1 MΩ C29 22 µF 25V Boost Inductor Spec (ITACOIL E2543/E STMicroelectronics
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STEVAL-ISA102V1 1N5248

N67 ferrite

Abstract: ITACOIL SHORTED R9 0.68 0.25W R10 0.68 0.25W R13 15 k R13B 82 k Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, N67 ferrite 1.5 mm gap for 0.7 mH primary inductance Primary: 102 turns , Vishay NTC1 2R5-S237 B57237S0259M000 Epcos T1 E2543/E E25x13x7 core, 0.7 mH Itacoil U1 L6562A Transition mode PFC controller STMicroelectronics Q1 STP8NM50FP
STMicroelectronics
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N67 ferrite FUSE T4A 250v fuse T4A T4A 250V MBB0207 ferrite n67

l6562 flyback led design

Abstract: l6562 flyback design 9.53k, 1% C5 12nF FUSE 4A/250V T1: Boost Inductor Spec (ITACOIL E2543/E) ­ E25x13x7 core
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l6562 flyback led design l6562 flyback design l6562 PFC boost converter design L65621 l6561 flyback pfc led application l6562 LED AN1757 AN1007 AN1059 AN1060 AN1089

L6562 Application Note

Abstract: L6562D Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 ferrite 1.5 mm gap for 0.7 mH primary inductance Primary , 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 VMULT(pin 3) (V) Figure 13. Multiplier gain vs. Tj Figure 10. E , 0.304 0.008 0.012 D E 10.92 7.95 9.75 0.430 0.313 0.384 e 2.54 0.100 , 0.197 E 3.80 4.00 0.15 OUTLINE AND MECHANICAL DATA 0.157 e 1.27 0.050 H
STMicroelectronics
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L6562N L6562D L6562DTR L6562 Application Note L6562 smps circuit diagram of 300W EB0057-C L6562 250W application note IEC61000-3-2

L6561

Abstract: transformer ferrite core for E25x13x7 R16 91 k R15 220 R9 0.41 1W R10 0.41 1W R13 9.53 k - Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 ferrite 1.5 mm gap for 0.7 mH primary inductance Primary: 105 turns 20x0.1 , VOLTAGE VOUT nominal ISC 40µA 10µA E/A OUTPUT 2.25V DYNAMIC OVP STATIC OVP D97IN592A Figure 5. Overvoltage Protection Circuit Ccomp. +Vo R1 1 R2 + 2.5V 2.25V I + E/A I 2 X PWM DRIVER , ) 9/13 L6561 Figure 18. DIP-8 Mechanical Data & Package Dimensions mm DIM. MIN. A a1 B b b1 D E
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E-L6561D transformer ferrite core for E25x13x7 473201A7 L6561 equivalent OREGA FERRITE transformer DIP-8 PWM PIN2 VCC PIN4 GND L6561D L6561D013TR L6560 E-L6561 E-L6561D013TR

L6562D

Abstract: L6562N C2 10nF R3 10 k C29 22 µF 25V Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 , vs. Tj Figure 7. E/A output clamp levels vs. Tj K Vpin2 (V) 6 1 Vcc = 12 V VCOMP =4 V , 0.045 0.065 b 0.356 0.55 0.014 0.022 b1 0.204 0.304 0.008 0.012 D E 10.92 7.95 9.75 0.430 0.313 0.384 e 2.54 0.100 e3 7.62 0.300 e4 7.62 , 0.189 0.197 E 5.8 6.2 0.228 0.244 e 1.27 0.050 e3 3.81 0.150 F (1
STMicroelectronics
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application l6562 L6562N EQUIVALENT schematic smps 300W fuse 5a 250v application l6562D B81133

L6562 Application Note

Abstract: application l6562 - Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 ferrite 1.5 mm gap for 0.7 mH primary , ) Figure 10. E/A output clamp levels vs. Tj Vpin2 (V) 6 Upper clamp 5 Vcc = 12 V Figure 13. Multiplier , -8 Mechanical Data & Package Dimensions mm DIM. MIN. A a1 B b b1 D E e e3 e4 F I L Z 3.18 7.95 2.54 7.62 7.62 , 0.10 1.10 0.33 0.19 4.80 3.80 1.27 5.80 0.25 0.40 E e H h L k ddd 0° (min.), 8° (max.) 0.10 0.004
STMicroelectronics
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l6562 PFC smps design e-l6562d schematic diagram l6562 L6562 OVERVOLTAGE PROTECTION l6562 PFC design smps L6562 E-L6562DTR

L6562D

Abstract: L6562 Application Note Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 ferrite 1.5 mm gap for 0.7 mH primary inductance , . Multiplier gain vs. Tj Figure 10. E/A output clamp levels vs. Tj K Vpin2 (V) 6 1 Vcc = 12 V , 0.012 D E 10.92 7.95 9.75 0.430 0.313 0.384 e 2.54 0.100 e3 7.62 , 5.00 0.189 0.197 4.00 0.15 D (1) E 3.80 e 1.27 0.157 0.050 H
STMicroelectronics
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power supply with l6562 L6562 boost PFC inductor SCHEMATIC 300W smps l6562 250w

L6562N

Abstract: 10 kâ"¦ C2 10nF C29 22 µF 25V Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 , 3) (V) Figure 13. Multiplier gain vs. Tj Figure 10. E/A output clamp levels vs. Tj K , 0.065 b 0.356 0.55 0.014 0.022 b1 0.204 0.304 0.008 0.012 D E 10.92 7.95 9.75 0.430 0.313 0.384 e 2.54 0.100 e3 7.62 0.300 e4 7.62 , 0.15 D (1) E 3.80 e 1.27 0.157 0.050 H 5.80 6.20 0.228 0.244 h
STMicroelectronics
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THOMSON-CSF b1et2910a

Abstract: litz wire table (ITACOIL E2543/E) E25x13x7core, 3C85 ferrite 1.5 mm gap for 0.7 mH primary inductance Primary: 105 turns , nominal ISC 40µA 10µA E/A OUTPUT 2.25V DYNAMIC OVP STATIC OVP D97IN592A Figure 2. Overvoltage Protection Circuit Ccomp. +Vo R1 1 R2 + 2.5V 2.25V I + E/A I 2 X PWM DRIVER 40µA , . A a1 B b b1 D E e e3 e4 F I L Z 3.18 7.95 2.54 7.62 7.62 6.6 5.08 3.81 1.52 0.125 0.51 1.15 0.356 , Minidip 10/12 L6561 DIM. MIN. A a1 a2 a3 b b1 C c1 D (1) E e e3 F (1) L M S 3.8 0.4 4.8 5.8 0.65
STMicroelectronics
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THOMSON-CSF b1et2910a litz wire table

transformer ferrite core for E25x13x7

Abstract: l6561 in boost (optional) Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 ferrite 1.5 mm gap for 0.7 mH , nominal ISC 40µA 10µA E/A OUTPUT 2.25V DYNAMIC OVP STATIC OVP D97IN592A Figure 5. Overvoltage Protection Circuit Ccomp. +Vo I R1 1 2 - X E/A + R2 PWM DRIVER , 0.012 D E 10.92 7.95 9.75 0.430 0.313 0.384 e 2.54 0.100 e3 7.62 , 5.00 0.189 0.197 E 3.80 4.00 0.15 OUTLINE AND MECHANICAL DATA 0.157 e
STMicroelectronics
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core THOMSON-CSF B1ET2910A 2A 220vac driver B1ET2910A 105turns orega 40 L6561 AN

B81133 x2

Abstract: B81133 5 3 2 L6562 6 C2 10nF R3 10 kâ"¦ C29 22 µF 25V Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 ferrite 1.5 mm gap for 0.7 mH primary inductance Primary: 105 turns , . E/A output clamp levels vs. Tj K Vpin2 (V) 6 1 Vcc = 12 V VCOMP =4 V VMULT =1V 0.8 , 0.356 0.55 0.014 0.022 b1 0.204 0.304 0.008 0.012 D E 10.92 7.95 9.75 0.430 0.313 0.384 e 2.54 0.100 e3 7.62 0.300 e4 7.62 0.300 F 6.6
STMicroelectronics
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B81133 x2

B1ET2910A

Abstract: 4x1N4007 91 k R15 220 R9 0.41 1W R 10 0.41 1W R 13 9.53 k - Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 ferrite 1.5 mm gap for 0.7 mH primary inductance Primary: 105 turns 20x0.1 , ISC 40µA 10µA E/A OUTPUT 2.25V DYNAMIC OVP STATIC OVP D97IN592A Figure 2. Overvoltage Protection Circuit Ccomp. +Vo R1 1 R2 + 2.5V 2.25V I + E/A I 2 X PWM DRIVER 40µA , 3.5 4.0 4.5 V MULT(pin3) (V) 9/12 L6561 mm DIM. MIN. A a1 B b b1 D E e e3 e4 F I L Z 3.18
STMicroelectronics
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4x1N4007 orega transformer

L6562N EQUIVALENT

Abstract: EVAL6562N Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 ferrite 1.5 mm gap for 0.7 mH primary , 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 VMULT(pin 3) (V) Figure 7. E/A output clamp levels vs. Tj , B81133 680 nF, X2 EPCOS to EVAL6562N 12/15 L6562 mm DIM. MIN. A a1 B b b1 D E e e3 e4 F I L Z , DIM. MIN. A a1 a2 a3 b b1 C c1 D (1) E e e3 F (1) L M S 3.8 0.4 4.8 5.8 0.65 0.35 0.19 0.25 0.1 mm
STMicroelectronics
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EVAL6562N-80W SCHEMATIC DIAGRAM SMPS 12v 5A l6562 equivalent etd29x16x10 L6562 boost PFC inductor spec demo board pfc Power Adapter pcb l6562

L6562 application note

Abstract: L6562D R9 0.82 0.6 W R10 0.82 0.6 W R13 9.53 k - Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 , ) Figure 7. E/A output clamp levels vs. Tj Vpin2 (V) 6 Upper clamp 5 Vcc = 12 V Figure 10. Multiplier , EVAL6562N 12/15 L6562 mm DIM. MIN. A a1 B b b1 D E e e3 e4 F I L Z 3.18 7.95 2.54 7.62 7.62 6.6 5.08 , . inch OUTLINE AND MECHANICAL DATA Minidip 13/15 L6562 mm DIM. MIN. A A1 A2 B C D (1) E e H
STMicroelectronics
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mosfet diagram amplifier

L6561D013TR

Abstract: 3c85 ferrite (optional) Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 ferrite 1.5 mm gap for 0.7 mH , ISC 40µA 10µA E/A OUTPUT 2.25V DYNAMIC OVP STATIC OVP D97IN592A Figure 2. Overvoltage Protection Circuit Ccomp. +Vo I R1 1 2 - X E/A + R2 PWM DRIVER , 0.014 0.022 b1 0.204 0.304 0.008 0.012 D E 10.92 7.95 9.75 0.430 0.313 0.384 e 2.54 0.100 e3 7.62 0.300 e4 7.62 0.300 F 6.6 0.260 I
STMicroelectronics
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smps design 120W 220k 400V L6561D0 orega smps L6561 58Vac

gd w04m

Abstract: A3MA R16 91 k R15 220 R9 0.41 1W R10 0.41 1W R13 9.53 k - Boost Inductor Spec (ITACOIL E2543/E) E25x13x7 core, 3C85 ferrite 1.5 mm gap for 0.7 mH primary inductance Primary: 105 turns 20x0.1 , ISC 40µA 10µA E/A OUTPUT 2.25V DYNAMIC OVP STATIC OVP D97IN592A Figure 2. Overvoltage Protection Circuit Ccomp. +Vo R1 1 R2 + 2.5V 2.25V I + E/A I 2 X PWM DRIVER 40µA , SOURCE 0 0 100 200 300 400 IGD (mA) 9/12 L6561 mm DIM. MIN. A a1 B b b1 D E e e3 e4 F I L Z
STMicroelectronics
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gd w04m A3MA 0.8mH inductor orega ETD FERRITE transformer OREGA 473201A8 ELECTRONIC BALLAST 18 W circuit diagram
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