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DC1160A Linear Technology BOARD EVAL LED DRIVER LT3518 visit Linear Technology - Now Part of Analog Devices
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DC1205A Linear Technology BOARD EVAL LED DRIVER LT3592 visit Linear Technology - Now Part of Analog Devices
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LTC4358IDE#TRPBF Linear Technology LTC4358 - 5A Ideal Diode; Package: DFN; Pins: 14; Temperature Range: -40°C to 85°C visit Linear Technology - Now Part of Analog Devices Buy

zener diode c20 5t

Catalog Datasheet MFG & Type PDF Document Tags

zener diode c20 5t

Abstract: zener diode c24 5t rectifier MOSFET. Resistor R21 limits gate oscillation and R22 provides gate pull down. Zener diode VR20 , recirculate the transformer leakage energy during normal operation, with Zener VR1 providing absolute , . www.powerint.com R22 10 k 10,9 5 L2 220 H -VIN L4 40 H C21 C20 1 nF 2.2 nF VR20 15 V , ) reset voltage and operates only when Q2 is off. Diode D20 provides a conduction path for C5 0.22 F , will affect the transformer-reset waveform. Capacitors C20, C22 and CQ1GS will all load transformer
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zener diode c24 5t

Abstract: zener c15 5t leakage energy during normal operation, with Zener VR1 providing absolute clamping for transient , synchronous rectifier MOSFET. Resistor R21 limits gate oscillation and R22 provides gate pull down. Zener diode VR20 limits the Q2 gate voltage during conduction and also reverse charges (resets) C21 during , voltage and operates only when Q2 is off. Diode D20 provides a DPA-Switch greatly simplifies the , k C22 1 nF D3 BAV19WS 4 L2 220 µH -VIN C20 C21 1 nF 2.2 nF VR20 15 V Q2
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DPA426R EFD20-3F3 zener diode c24 5t zener c15 5t zener diode c20 5t high voltage gate drive transformer zener c22 5t transformer mosfet gate drive circuit DI-52 EFD25 PI-3551-060503 EFD20

zener diode c32

Abstract: zener diode c30 voltage clamping is provided by Zener diode VR1. Low cost 400 kHz flyback design ±12 V outputs at ±5% accuracy Highly efficient diode rectification design - 80% at 48 V Low component count Accurate line OV , optional resistor R5 and Zener diode VR2 provide a fail-safe output regulation path, limiting the , . Optional resistor R7, diode D3 and capacitor C16 implement a soft-finish network to slow the rise of the , R1 619 k 1% C3 1 µF 100 V L D DPA-Switch U1 DPA425R 5 C20 D20 100 µF MBR360
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DI-56 zener diode c32 zener diode c30 L-2C2-2 L2C22 c30 5t DPA-Switch application note

AR9220

Abstract: C30 DIODE ZENER voltage clamping is provided by Zener diode VR1. The bias winding provides operating power to the , optional resistor R5 and Zener diode VR2 provide a fail-safe output regulation path, limiting the , efficient diode rectification design ­ 80% at 48 V · Low component count · Accurate line OV and UV , resistor R7, diode D3 and capacitor C16 implement a soft-finish network to slow the rise of the output , C33 1 F 8 RTN 7 NC RTN 6 4 C1- C2 1 F 100 V D 5 C20 D20 100 F MBR360 16
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AR9220 C30 DIODE ZENER D20100 100MF diode zener c23 PI-3649-081103

top258pn

Abstract: equivalent for TOP258PN . Zener diode VR2 and resistor R5 form the latching output overvoltage protection (OVP) circuit. Increased , , R7, C6 and D5) for normal operation, thereby maximizing efficiency at light load. Zener diode VR1 , capacitor C20 ensures no output overshoot at startup. Diode D9 isolates this capacitor from the feedback , k 1% C21 220 nF 50 V C20 10 F 50 V U3 TL431 2% R21 10 k 1% PI , . Zener VR2 will break down, and current will flow into the M pin of U1. When the M pin current exceeds
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EER28 top258pn equivalent for TOP258PN EER28 BOBBIN ic top258pn zener diode c12 5t DI-146 EN55022 CISPR-22 1N4007 P6KE170A FR106

zener diode c18 5t

Abstract: zener c15 5t factor 5. 5 is the duty factor (tp/T) The steady-state power Ps when biased in the zener direction at a given zener current can be found from Fig. 3. With the additional pulse power dissipation Pp max calculated from the above expression, the total peak zener power dissipation Ptot = PZRM = Ps + Pp. From Fig. 3 the corresponding maximum repetitive peak zener current at Ptot can now be read. This repetitive peak zener current is subject to the absolute maximum rating. For pulse durations longer than the
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OCR Scan
BZX70 zener diode c18 5t zener c27 5t zener diode mv 5T zener C18 5T C18 5T zener c18 5t diode ABZX70 BZX70-C7V5 BZX70-C75 IEC134

zener diode c12 5t

Abstract: zener diode c18 5t snubber that recycles leakage and magnetizing energy stored in T1, and also helps to reset T1. Zener diode VR1 provides a hard voltage limit and only conducts during output transient Operation and , , 50 V DPA-Switch CONTROL CONTROL 5 V, 14 A C20 1 µF 10 V D4 Q1-Q3 42CTQ30S SI4842DY , Q4-Q6 gate capacitance. · Set Zener VR1 clamp voltage to 150 V to both safely limit the DRAIN below , B-025 or equivalent) Winding Details Bias: 5T, 30 AWG Primary: 6T+ 5T, 4 x 26 AWG Secondary
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TRANSFORMER EE22 EE22 PC40 C18 5T c10 5t 42CTQ30 PC357N1T DI-31

zener diode c18 5t

Abstract: zener c15 5t helps to reset T1. Zener diode VR1 provides a hard voltage limit and only conducts during output , C20 1 F 10 V D4 Q1-Q3 42CTQ30S SI4842DY 4 D C18, C19 100 F 10 V L4 100 nH 20 A , line. It may be necessary to gap T1 to offset effect of Q4-Q6 gate capacitance. · Set Zener VR1 clamp , Bias: 5T, 30 AWG Primary: 6T + 5T, 4 × 26 AWG Secondary: 3T, 0.005" Cu foil Winding Order (pin
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DPA426RN EE22 PC40 transformer DPA426 C20 5t transformer bobbin for EE22 EFD25, 10 pin

TDK pc40 EFD25

Abstract: 42ctq30s recycles leakage and magnetizing energy stored in T1, and also helps to reset T1. Zener diode VR1 provides , 100 µF 10 V 10 V C20 1 µF 10 V . D1 ESD1 6,7 R1 619 k 2 C9 150 pF 200 V , necessary to gap T1 to offset effect of Q4-Q6 gate capacitance. · Set Zener VR1 clamp voltage to 150 V to , Bobbin EFD25 10 pin (B&B B-025 or equivalent) Winding Details Bias: 5T, 30 AWG Primary: 6T+ 5T
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TDK pc40 EFD25 EFD25-10 TDK pc40 C18-C19 LM431AIM3 BE-22-5116

TOP234Y

Abstract: 622LY3R3M open frame supply. The 12V output is directly sensed by optocoupler U2 and Zener diode VR2. The output voltage is determined by the Zener diode (VR2) voltage and the voltage drops across the , turns ratios and value of Zener diode VR2. AC power is rectified and filtered by BR1 and C1 to create , rectified and filtered by D8, C10, C11, C20, and L2 to create the 12 V output voltage. C14 and R15 form a , current for Zener VR2 to improve regulation. The bias winding is rectified and filtered by D7 and C4 to
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TOP234Y 622LY3R3M EF25 TRANSFORMER TOP234 230V AC primary to 12V, 1A secondary transformer EF25 bobbin 85VAC 115VAC 230VAC 160VAC

chopper transformer winding

Abstract: PC40EE25-Z is sensed across the series string of R12, Zener diode VR2 and the LED in U2 (in parallel with R13 , 100 nF 50 V 5 C6 47 µF 35 V R1 & R2 1.3 M RT1 t 10 C3 680 nF 275 VAC C20 680 µF , and VR2, which effectively adjusts the output voltage. Diode D12 blocks reverse current flow through , Primary: 19T, 2 × 31 AWG Bias: 5T, 2 × 29 AWG Winding Details Secondary: 4T, 4 × 23 AWG Shield: 7T, 4 ×
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DI-128 PKS606Y chopper transformer winding PC40EE25-Z ac motor variable speed control circuit diagram w ee25 transformer pc40EE25

chopper transformer winding

Abstract: PKS606YN string of R12, Zener diode VR2 and the LED in U2 (in parallel with R13). As the output voltage rises , C6 47 F 35 V R1 & R2 1.3 M RT1 t 10 C3 680 nF 275 VAC C20 680 F 25 V 3 D5 , the voltage at the node of R12 and VR2, which effectively adjusts the output voltage. Diode D12 , : 19T, 2 x 31 AWG Bias: 5T, 2 x 29 AWG Secondary: 4T, 4 x 23 AWG Shield: 7T, 4 x 23 AWG 1/2 Primary
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PKS606YN ac motor variable speed control circuit diagram chopper circuits in dc motor t1 EE25 core C3680 1N4148 5t

mmbt914

Abstract: zener diode c18 5t output of the auxiliary winding. The Zener 1 4 11 6,7 5T 2T 3T 1T 2 5 10 , 5T 2T 3T 1T 2 5 10 8,9 R24 + C15 C16 C17 C18 C19 C20 3.3 V (V ) out 47 , N/C 8 2 IN_A OUT_A 7 6 3 GND VCC 4 5 IN_B OUT_B U2 11 5T OUT1 4 VAUX C12 , auxiliary winding voltage exceeds 15 V. Diode D8 prevents the NCP1560 startup regulator from sourcing , regulation in a time given in equation (9) The reset winding with diode D6, clamps the reflected
ON Semiconductor
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mmbt914 optocoupler a 3131 power transformer PAYTON 105 GD103 Payton power transformer PAYTON 125 AND8105/D

circuit diagram of 13.56MHz RF Generator

Abstract: schematic rf Power supply 500w 1/8W 1% R8 POT 500ohm 1W R9 511ohm 1/8W 1% R10 1ohm 1/2W 5% R11 1ohm 1/2W 5% D1 5.1V(Diode Zener) D2 LED, green D3 16V (Diode Zener) D4 LED, green D5 30V/300mA(Sch.) Jumper1 0 ohm 1/8W 5 , /1KV C18 0.01uF/1KV C19 0.01uF/1KV C20 0.01uF/1KV C21 47PF/2500V C22 82PF/2500V C23 220PF/3600V , / 28T L1 AWG18 Toroid Inductor L2 5T 12AWG Toroid Inductor L3 2T 18AWG Toroid RFC L4 1T AWG22
Microsemi
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DRF1200 GRM21BR71H474KA88L 05H7486 PRF-1150 circuit diagram of 13.56MHz RF Generator schematic rf Power supply 500w schematic rf Power supply 500w 13.56MHz 1kw mosfet DRF1200/C A33221-ND TAJC475K035R GMK212BJ105KG-T

marking code V6 33 surface mount diode

Abstract: philips surface mount zener diode v6 2004.4 Renesas Diodes Status List Topic-Low-voltage Variable Capacitance Diode Series , ····························································· 9 Zener Diodes for Surge Absorption ··············································· 9 Zener Diodes for Temperature Compensation ···························· 10 Zener Diodes for Stabilized Power , Capacitance Diode Series " For Electronics Synchronization: HV*327C · 328C " Packages Summary Large , VSON-5T VSON-5T VSON-5T MHD MHD MHD MHD DO-35 URP URP URP URP URP URP URP URP URP URP
Renesas Technology
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marking code V6 33 surface mount diode philips surface mount zener diode v6 zener diode application 04BZ IPS302 1w402 HZC10 HZC11 HZC12 HZC13 HZC15 HZC16

SEM-700 Closing The Feedback Loop

Abstract: fet 3819 18 t 12CWQ03FN D1 Zener, 18V, Zetex BZX84C18 D2 Diode, Schottky, BAT54C Q1 FET, Fairchild , +1.8V C18 R24 CR4 C19 + C2 C17 CR2 C5 + C22 C20 RETURN CR6 R1 R17 , R11, R12, R14, R22 : : CR4, CR5, C15, C16, C19, C20, C21, C22 Ippk = : R21, C17 , Tr MMF , : 5T, 0.003 (3 ) 3T : 17T #32 #2: 40T, 2 #30() , Tsw - Ton(max), Tsw = 1 , , 1812, X7R, 100V, 20% C5, C13 0.1µF Capacitor, 0603, X7R, 25V, 10% C15, C16, C19, C20
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ISL6722A ISL6723A ISL6721 ISL6722AABZ ISL6723AABZ ISL6722AAVZ SEM-700 Closing The Feedback Loop fet 3819 18 t 3203 MOSFET 500V00 mosfet 1500v DE1E3KX152M FN9237 6722AAB

diode d2s

Abstract: CTX01-16741 zener diode (SOD323) Central Semiconductor CMDZ5256B D11 0 Not installed, switching diode , ceramic capacitor (0805) Murata GRM21BR71A105K D16 1 3A, 30V Schottky diode (SMA) Diodes Incorporated B330A D18 1 30V, 500mW zener diode (SOD-123) Diodes Inc. BZT52C30 J1 1 RJ , ) magnetic module and separate diode bridges for separating the DC power from the module provided by an , 13.5mm) Sanyo 100CV47FS C20 1 1 680pF ±10%, 50V X7R ceramic capacitor (0603) TDK
Maxim Integrated Products
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MAX5935 diode d2s CTX01-16741 MOSFET ACER SOP4 R11 ERJ6ENF1002V 5pin Fairchild Power Switch MAX5941B MAX5922 10/100BASE-TX 250VAC

SEM-700 Closing The Feedback Loop

Abstract: ISL6722A 12CWQ03FN D1 Zener, 18V, Zetex BZX84C18 D2 Diode, Schottky, BAT54C Q1 FET, Fairchild , + P9 +1.8V C18 R24 CR4 C19 + C2 C17 CR2 C5 + C22 C20 RETURN CR6 , , R22 : : CR4, CR5, C15, C16, C19, C20, C21, C22 Ippk = : R21, C17 : LP (max) = , 1.8V 5:3 5:3, Ns1 = 5 Ns2 = 3 , , Tr = 2.33s 47%, : 5T, 0.003 (3 ) 3T : 17T #32 #2: 40T , , 1812, X7R, 100V, 20% C5, C13 0.1µF Capacitor, 0603, X7R, 25V, 10% C15, C16, C19, C20
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ISL622A IC1517 nct 040 zener diode 1.8v to 200v Epcos N87 Epcos N87 TP4 6723AAB 6722AAV STD-020 ISL6722AISL6723A ISO9000

CTX01-16741

Abstract: zener diode c18 5t GRM188R71E333K D10 1 30V, 250mW zener diode (SOD323) Central Semiconductor CMDZ5256B D12, D13, D14 , (0603) Murata GRM188R71E104K D16 1 3A, 30V Schottky diode (SMA) Diodes Incorporated B330A D18 1 30V, 500mW zener diode (SOD-123) Diodes Inc. BZT52C30 J1 1 RJ-45 black through , over IP (VoIP) magnetic module and separate diode bridges for separating the DC power from the module , capacitor (12.5mm x 13.5mm) Sanyo 100CV47FS C20 1 1 680pF ±10%, 50V X7R ceramic capacitor
Maxim Integrated Products
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GRM21BR71C224K C12 IC GATE 5L B0863-A Cooper CTX01

dimmable LED driver

Abstract: UM10433 - - 400 SMC 112 D11 zener diode 5.6 V - 5 - Melf BZV55-C5V6 , reduced voltage difference, voltage detection can be made more sensitive by replacing R41 with a zener diode, such as the BZV85-C200 for 230 V (AC) or the BZV85-C68 for 120 V (AC). Because of increased , 1 2 RES2512# F0.5T-NANO2 EARTH 3 2 R2 2X47M0.45C-B82731T NEUTRAL P1 4 , R53 RES1206# 33 kΩ-1/8 W B TR1 C22 C23 TP1 TP2 TP3 C 4 C20 C34
NXP Semiconductors
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UM10433 dimmable LED driver SSL2103
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