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Part Manufacturer Description Datasheet BUY
DUALOUTPUT-ISOFLYBACK-REF Texas Instruments Dual Output Isolated Flyback Design: 5V @ 0.2A, 12V @ 2.1A w/2 addl out 3.3V @ 0.5A, 5V @ 0.5A visit Texas Instruments
PMP3991.2 Texas Instruments Dual Buck Converter with 12V Input, 1.2V/3A and 1.2V/3A dual output visit Texas Instruments
PMP4961 Texas Instruments 12V Input, Dual Output (5V/3A & 3.3V/3A) Buck Converter visit Texas Instruments
PMP3991.1 Texas Instruments Dual Buck Converter with 12V Input, 2.5V/3A and 1.2V/3A dual output visit Texas Instruments
UCC25230DRMT Texas Instruments 12V to 105V Input, 0.2A Output Switching Converter 8-VSON -40 to 125 visit Texas Instruments Buy
UCC25230DRMR Texas Instruments 12V to 105V Input, 0.2A Output Switching Converter 8-VSON -40 to 125 visit Texas Instruments

schematic diagram converter input 12v to output 2

Catalog Datasheet MFG & Type PDF Document Tags

SCHEMATIC DIAGRAM POWER SUPPLY 12v 5A

Abstract: 12V DC to 24V dC converter schematic diagram 3: L4970A DC-DC converter stage schematic diagram. Typical Performances: = 84%; Vo = 12V; Io = 10A , diode. Fig.2 shows the schematic diagram of the PFC. stage. 2) PFC. stage For more details on the , BLOCK DESCRIPTION The dc-dc converter schematic used is very similar to the test circuit schematic , 5A, DC-DC converters. Figure 2: PFC. stage schematic diagram. 250VA, 220Vac/24Vac DS , converter stage schematic diagram. Typical Performances: = 92.3%; Vo = 24V; Io = 5A; fSW = 200kHz SYNC
STMicroelectronics
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SCHEMATIC DIAGRAM POWER SUPPLY 12v 5A 12V DC to 24V dC converter schematic diagram schematic diagram converter input 24v to 12v SCHEMATIC DIAGRAM POWER SUPPLY 12v 10A ROE capacitor 220 schematic diagram converter 12v to 24v AN825 D95IN291

12V DC to 24V dC converter schematic diagram

Abstract: diagram Converter 24v to 12v DC-DC converter stage schematic diagram. Typical Performances: = 84%; Vo = 12V; Io = 10A; fSW = 200kHz , reported , from the mains to the output dc regulated voltage, with the PFC block. Table 2: VO = 12V; IO = , diode. Fig.2 shows the schematic diagram of the PFC. stage. 2) PFC. stage For more details on the , BLOCK DESCRIPTION The dc-dc converter schematic used is very similar to the test circuit schematic , 5A, DC-DC converters. Figure 2: PFC. stage schematic diagram. 250VA, 220Vac/24Vac DS
STMicroelectronics
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diagram Converter 24v to 12v 220VAC to 24Vac transformer MP1830 L4970 transformer 220 12v schematic diagram AC to DC converter high output

12v 120W AUDIO AMPLIFIER CIRCUIT DIAGRAM

Abstract: SCHEMATIC DIAGRAM POWER SUPPLY 12v 5A power MOS drain and a second one in series to the anode of the boost diode. Fig.2 shows the schematic diagram of the PFC. stage. 2) PFC. stage For more details on the PFC controller, please refer to the , dc-dc converter schematic used is very similar to the test circuit schematic suggested in the , converters. Figure 2: PFC. stage schematic diagram. 250VA, 220Vac/24Vac DS BYW99P100 MAINS , schematic diagram. Typical Performances: = 84%; Vo = 12V; Io = 10A; fSW = 200kHz SYNC TP2 Vi
STMicroelectronics
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12v 120W AUDIO AMPLIFIER CIRCUIT DIAGRAM 24v, 5A transformer schematic diagram dc-dc 50V Center Tapped 5 Amp Transformer ROE capacitor EYF schematic diagram dc to ac converter

schematic diagram AC to DC converter high output

Abstract: SCHEMATIC DIAGRAM POWER SUPPLY 12v 10A , from the mains to the output dc regulated voltage, with the PFC block. Table 2: VO = 12V; IO = 10A , power MOS drain and a second one in series to the anode of the boost diode. Fig.2 shows the schematic diagram of the PFC. stage. 2) PFC. stage For more details on the PFC controller, please refer to the , dc-dc converter schematic used is very similar to the test circuit schematic suggested in the , converters. Figure 2: PFC. stage schematic diagram. 250VA, 220Vac/24Vac DS BYW99P100 MAINS
STMicroelectronics
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12v 150W AUDIO AMPLIFIER CIRCUIT DIAGRAM 24v center tapped transformer 220vac to 220vac voltage converter schematic roe EYF 3300uf 120w audio power amplifier circuit

Eyf 06 ROE

Abstract: 12V DC to 24V dC converter schematic diagram anode of the boost diode. Fig.2 shows the schematic diagram of the PFC. stage. DC-DC CONVERTER BLOCK DESCRIPTION The dc-dc converter schematic used is very similar to the test circuit schematic suggested in the , the mains to the output dc regulated voltage, with the PFC block. Table 2: VO = 12V; IO = 10A (L4970A , DC-DC Converters Family). Figure 2: PFC. stage schematic diagram. 250VA, 220Vac/24Vac DS BYW99P100 , schematic diagram. Typical Performances: = 84%; Vo = 12V; Io = 10A; fSW = 200kHz SYNC TP2 Vi=45V C10
STMicroelectronics
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Eyf 06 ROE ELECTROLYTIC capacitor, 3300uf 6.3v Power Factor corrector L4981 12v DC to 45v dC converter circuit diagram 220 AC to 12V dc transformer capacitor 3300uf 63v

pq3230

Abstract: 600W LLC resonant topology Input voltage range: 360 V dc to 420 V dc Output voltage: 12 V dc Nominal , supply with a rated load of 12V/50A from an input voltage ranging from a 360VDC to 420VDC. Figure 1 â , /600W PRD1486 Rev. 1.2 | Page 2 of 30 LLC resonant converter 12V/600W PRD1486 TABLE OF , converter 12V/600W PRD1486 BLOCK DIAGRAM Sync RecPifier Half-Bridge LLC Vin Q5 Q1 SOunP , a rated output load of 12V/50A from a nominal input voltage of 400VDC. The ADP1046A can provide
Analog Devices
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pq3230 2000/XP/V

mosfet p0603

Abstract: schematic atx 160 W connector on the board. With an ATX supply the main input voltage to the converter is 5V. The ATX 12V , current connections for the output load. Converter input voltage via the banana connectors can range , arrangement. 12V Input for Note: ATX Supply connected Controller to use ATX 5V supply for Gate Drivers , - OFF Current for each Position: 20A at 1.500V C Output to an External Load Converter , Kelvin connection for the output voltage sample as shown on the Functional System Schematic Diagram of
Intersil
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mosfet p0603 schematic atx 160 W BAV99TA 450 atx power supply circuit schematic atx 250 atx 400 power supply schematic ISL6560/62 AN1009 ISL6560 ISL6562 HIP6601 ISO9000

DIP SWITCH 8 positions

Abstract: ecs-3953m-1000-bn-tr Video D/A Output Converter Pin-Outs (Part 2 of 2) Note (1) Schematic Signal Name VGA (U21) Pin , (U21) D/A Converter Clock SMA Connector (J26) SSRAM (U22) SMA to D/A Output Converter Connector , Jumper (J29) ADC PWR Jumper (J28) DFS Jumper (J30) SMA to A/D Input Converter Connector (J32) A/D , connector for an external D/A converter clock input to U25. 2­62 U25 (Channel A) U30 (Channel B , connector for an external A/D converter clock input to U26. 2­62 U26 (Channel A) U31 (Channel B
Altera
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DIP SWITCH 8 positions ecs-3953m-1000-bn-tr EP2C35F672 EPSC64 ECS-3953M-1000-BN FMS3818 MNL-CII012805-1 EPCS64 EP2C70

flyback transformer diagram

Abstract: schematic diagram flyback converter isolation. An output zener, 12V in this case, regulates the output voltage to +/- 5%. This converter meets , ; Fswitching: 50KHz-70KHz 110705 2 DN-H02 Schematic Diagram of Transformer Primary 200T , HV9922 isolated flyback converter. Also, the schematic, bill of materials, transformer parameters and , flyback converter, providing a constant power of 1W at input Line Regulation @ 1W Load Input Voltage , 12.03V Figure 1: Schematic T1 D9 D1 L6 D3 C1 12V DC OUT R7 C7 C9 C2 Z9
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B66308-J1108-T1 flyback transformer diagram schematic diagram flyback converter do-41 footprint EE16 bobbin 12V, 1W zener diode 1W 12V ZENER DIODE 85VAC 120VAC 132VAC CFR-25JB-220K DO-41 HER105-T

Equivalent 50N06

Abstract: MOSFET 50N06 F1 FUSE LOCATION 2: 12V SOURCE F1 9 GND FIGURE 2. INPUT FUSE LOCATION vs INPUT SOURCE , INPUT AND OUTPUT CONDITIONS (V) 2.50 90 VIN = 12V VOUT = 3.1V 2.40 EFFICIENCY (%) 85 , Application Note 9664 Schematic Diagram 12VIN L1 F1 5VIN 15A 1.5µH C1-4 4 X 330µF C19-20 2 , need for a switch-mode DC-DC converter local to the microprocessor. The HIP6003EVAL1 is an , - Regulation HIP6003EVAL1 Features · Operates in +5V or +12V Input Systems · 4-Bit DAC With
Intersil
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HIP6003 AN9664 HIP6002 Equivalent 50N06 MOSFET 50N06 po345 rfp50n06 equivalent 50N06 50N06 DATASHEET C18-20 576802B04000

Equivalent 50N06

Abstract: MOSFET 50N06 F1 FUSE LOCATION 2: 12V SOURCE F1 9 GND FIGURE 2. INPUT FUSE LOCATION vs INPUT SOURCE , to set the nominal converter output voltage. The output voltage programming is defined in both the , Application Note 9664 Schematic Diagram 12VIN L1 F1 5VIN 15A 1.5µH C1-4 4 X 330µF C19-20 2 , need for a switch-mode DC-DC converter local to the microprocessor. The HIP6003EVAL1 is an , - Regulation HIP6003EVAL1 Features · Operates in +5V or +12V Input Systems · 4-Bit DAC With
Intersil
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50n06 similar 1N4148 DL-35 70N03 50N06 equivalent vrm pentium 4 CTX09-13336

MOSFET 50N06

Abstract: Equivalent 50N06 source to +12V (for lab eval) (2) Tie 12VIN pins to 5VIN pins (again, lab eval) (3) Move F1 fuse as shown , VID2 VID3 FB 3 4 D/A 5 6 8 OSC HIP6003 FUSE LOCATION 2: 12V SOURCE VSEN F1 FIGURE 2. INPUT FUSE , the internal reference to set the nominal converter output voltage. The output voltage programming is , output inductor (L2) varies with input voltage. L2 is sized such that the converter OverdriveTM is a , principal characteristics which have led to the need for a switch-mode DC-DC converter local to the
Harris Semiconductor
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p 50n06 capacitor ceramic 33pF MBR1535 schematic diagram converter input 12v C1820 HIP6003 equivalent C5-12 RFP70N03 2N6394 1N4148 MBR2535CTL 1N5231

MOSFET 50N06

Abstract: Equivalent 50N06 for powering the VRM from +12V: (1) Increase +5V source to +12V (for lab eval) (2) Tie 12VIN pins , 9 FIGURE 2. INPUT FUSE LOCATION vs INPUT SOURCE VOLTAGE GND FIGURE 1. BLOCK DIAGRAM OF , DIFFERENT INPUT AND OUTPUT CONDITIONS (V) 2.50 90 2.40 VIN = 12V VOUT = 3.1V EFFICIENCY (% , DC-DC converter local to the microprocessor. The HIP6003EVAL1 is an evaluation board which , Regulation · Operates in +5V or +12V Input Systems · 4-Bit DAC With ±1% Accuracy Harris HIP6003 ·
Harris Semiconductor
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rfp50n06 substitute floating mosfet driver on 70n03 converter DC 24v to DC 12v 50N06 E DATASHEET 24v to 12v dc-dc 1-800-4-HARRIS

NE5534AP

Abstract: TORX173 is designed to operate properly with certain components above 60°C as long as the input and output , ) converter. The PCM4104EVM block diagram and primary features are also discussed. Chapter 2 provides general , routed to channels 2, 4, 6, and 8. Each PCM4104 analog output is filtered by an external 2nd , Output Filter NE5534A PCM4104 4-Channel D/A Converter Channel 2 Output Output Filter NE5534A , C65 C82 560pF -12V 3 2 C81 4.7uF 0.1uF C62 C21 J2 CH. 2 OUTPUT C63 C80
Texas Instruments
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742C083103J NE5534AP TORX173 DIPSWITCH-10 AES-3 C117-C127 SBAU097 TDA10H0SK1 742C163103J 742C163470J ERJ-6ENF2003V

742C083103J

Abstract: NE5534A representative prior to connecting the input power. Applying loads outside of the specified output range may , routed to channels 2, 4, 6, and 8. Each PCM4104 analog output is filtered by an external 2nd , Output Filter NE5534A PCM4104 4-Channel D/A Converter Channel 2 Output Output Filter NE5534A , C65 C82 560pF -12V 3 2 C81 4.7uF 0.1uF C62 C21 J2 CH. 2 OUTPUT C63 C80 , C78 560pF -12V 3 2 1K 560pF +12V R29 100uF J7 CH. 7 OUTPUT 100uF 100uF
Texas Instruments
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CMF-55 REG103 REG1117 SN74AHC245 SN74ALVC244 SN74ALVC245 SN74CBTLV3257 SBAU097A ERJ-6ENF1002V 2001BT-9 1001BT-9 1/10W

75HC04

Abstract: Multivibrator 74HC74 clock delay from the analog input sampling point to the corresponding digital output data , INPUT N N+3 N+4 N-3 DATA OUTPUT N-2 N-1 tDL = INDICATES POINT AT WHICH ANALOG DATA IS , then adjusted until the 1022 to 1023 transition occurs on the digital output. The CE input on the , to test the CE pin by connecting a pulse generator to the CE BNC (J4) input. Output Enable Input , evaluate the HI5710 performance as the input starts to approach nyquist (FS / 2). Among these tests are
Harris Semiconductor
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AN9511 REF03 74HC541 74HC74 74HC221 74HC04 75HC04 Multivibrator 74HC74 Multivibrator 74HC00 AN9102 spst push button switch HA5020 CA158A

Multivibrator 74HC74

Abstract: 75HC04 analog input sampling point to the corresponding digital output data. Evaluation Board Block Diagram , . As illustrated in the functional block diagram, Figure 2, the HI5710 is a 2-step A/D converter , input pin, where the output data bits are held at known fixed logic levels to facilitate in-circuit , INPUT N N+3 N+4 N-3 DATA OUTPUT N-2 N-1 tDL = INDICATES POINT AT WHICH ANALOG DATA IS , then adjusted until the 1022 to 1023 transition occurs on the digital output. The CE input on the
Intersil
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74HC74 schematic application AN9214 AN890 74hc74 pin diagram AN9214.2 spst push button

Multivibrator 74HC00

Abstract: 75HC04 clock delay from the analog input sampling point to the corresponding digital output data , INPUT N N+3 N+4 N-3 DATA OUTPUT N-2 N-1 tDL = INDICATES POINT AT WHICH ANALOG DATA IS , output. The CE input on the evaluation board is tied to ground through a 50 resistor. This keeps the , to each other to ensure coherence.The output of the generator that drives the analog input to the , . P4 Set to give 4.0V at jumper pin J1. 7 Application Note 9511 Schematic +12V +5VA U3
Harris Semiconductor
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74hc741 74HC00 harris AN8906 74HC00

VARIABLE RESISTOR FOOTPRINTS

Abstract: C3225X5R1E226M state of the converter while power is applied to the input terminals. While in the OFF position the , comes on the evaluation board steps input voltages of 12V ± 10% down to 1.2V at currents up to 10A , the input and output should be rated to at least 10A of continuous current and should be no longer , determines which control scheme the LM3495 uses at low output currents. When set to SKIP, the converter , . While in the ON position the output voltage is regulated and is capable of delivering current to a load
National Semiconductor
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AN-1446 VARIABLE RESISTOR FOOTPRINTS C3225X5R1E226M 30V variable tracking regulator HAT2165H HAT2198R CSP-9-111C2 CSP-9-111S2

470 uF 16V Capacitor

Abstract: tlc555d to meet or exceed the Intel VRM8.2, VRM8.3, and VRM8.4 dc-dc converter electrical specifications. A , uF J4 TP3 GND TP1 C21 100 uF +12V TP2 VOUT Schematic Diagram Figure 2­1 , Connections Figure 3­2 shows the input/output connections to the SLVP154. Figure 3­3. SLVP154 Input/Output Connections Connection to the 12-V Power Supply External Load Output Transient Load Enable Fall , the following chapters: - Chapter 1 Introduction Chapter 2 Schematic Chapter 3 Physical
Texas Instruments
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TPS5211 SLVU032 470 uF 16V Capacitor tlc555d 10SP470M ED1981 IRF7811 1/16W 3323P EG1218
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