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Design 24 v 3 A SMPS

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Abstract: applications 80 W very wide input voltage range 3-phase SMPS design based on L6565 L6565 and ESBT STC04IE170 STC04IE170 Very , frequency. The ESBT family of products also offers design flexibility with a complete series of power , a high voltage rectified bus built on a 3-phase mains voltage. Auxiliary power supplies are , of ESBT technology provide at least a 100 V higher margin for all devices in the ESBT product range , ) / VCS(on) = 1 V VCS(on) = 1 V () [A] [A] Solution Package Ptot [W] Main application ... STMicroelectronics
Original
datasheet

4 pages,
567.57 Kb

smps hv flyback transistor smps high voltage 3 phase SMPS STC04IE170HV computer smps design Design 24 v 3 A SMPS 8 PIN IC FOR SMPS POWER SUPPLY universal input voltage power supply schematic diagram smps supply HV Flyback schematic smps 450 W ESBT 6 pin smps IC hv 1000 inverter schematic diagram smps Power Supply Schematic Diagram schematic diagram solar inverter PFC smps design SMPS SCHEMATIC DIAGRAM 3 phase inverter schematic diagram power supply schematic diagram TEXT
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Abstract: n k i n g Design of Flyback SMPS in continous conduction mode operation Contents: DESIGN OF FLYBACK SMPS IN CONTINUOUS CONDUCTION MODE OPERATION. 3 , . 7 SMPS CIRCUIT DESIGN ON CCM OPERATION WITH TDA16822 TDA16822 , . 18 Page 2 of 20 AN-SMPS-16822CCM-1 AN-SMPS-16822CCM-1 Design of Flyback SMPS in continous conduction mode operation Design of Flyback SMPS in continuous conduction mode operation Abstract For SMPS in flyback ... Infineon Technologies
Original
datasheet

20 pages,
1795.16 Kb

flyback operate in both ccm and dcm ccm flyback SMPS SFH617-3 TDA16831 AN-SMPS-1683X-1 Siemens optocoupler smps circuit diagram smps 12v siemens GR 80 rectifier AN-SMPS-16822CCM-1 DCM 7 DIODE flyback smps str SMPS CIRCUIT DIAGRAM DCM flyback transfer function TDA16822 equivalent siemens GR 90 rectifier siemens GR 40 rectifier TDA16822 siemens GR 60 rectifier TEXT
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Abstract: need to design a high voltage supply to power the op amp. The SMPS voltage is adjustable from 50-350 V , 40 30 20 10 SMPS POWER DERATING SMPS CURRENT, IS (A) =4 V IN V IN 0.35 0.3 0.25 0.2 , DERATING O SMPS CURRENT, IS (A) 8V =4 V IN V V IN 0.35 0.3 0.25 0.2 0.15 0.1 V IN 0.05 , 1000 C = 8pF L 800 600 400 200 0 SR+(A V = -50) SR-(A V = -50) SR+(A V = +51) SR-(A V = +51) 0 1 2 3 4 , voltage supply. The circuit above boosts a system 24 V buss to 350 V to drive an ink jet print head. The ... Apex Microtechnology
Original
datasheet

12 pages,
1215.85 Kb

24 volts 6.5 amp smps APEX PA78 capacitor 75k 100 50v high voltage smps piezo print head SMPS controller 365 smps design tools pa78 design 24 volts smps 24v 5 amp smps MP400FC MP400 TEXT
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Abstract: i n k i n g Design of 30W Off-Line SMPS using CoolSET ICE2B265 ICE2B265 Contents: 1. INTRODUCTION , .20 Page 2 of 22 DN-SMPS Singlestage Design of 30W Off-Line SMPS using CoolSET ICE2B265 ICE2B265 Design of 30W Off-Line SMPS using CoolSET ICE2B265 ICE2B265 Yew ming lik, Junyang Luo and Meng Kiat Jeoh , ICE2B265 ICE2B265, it presents also the design of simple low cost and high efficient 30W Flyback SMPS circuit. 2 , the power consumption in standby mode. The Page 3 of 22 DN-SMPS Singlestage Design of 30W ... Infineon Technologies
Original
datasheet

22 pages,
1115.02 Kb

25v rus 1000uf 35v smps EF25 transformer Epcos Ferrites and Accessories FERRITES N67 siemens ntc 470k 500 watt smps circuit diagram ICE2Axxx str 5 q 0765 1000uf, 25v capacitor 500 WATT smps ICE2B265 Application Note SFH617-3 EPCOS n67 ICE2B265 AN-SMPS-ICE2AXXX-1 ICE2B265 equivalent str 5 q 0765 POWER SUPPLY CIRCUIT 1000uF 25V capacitor Epcos n67 material TEXT
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Abstract: standard 12 V or 24 V buss without the need to design a high voltage supply to power the op amp. The SMPS , CURRENT, initial (Note 3) Ω COMMON MODE VOLTAGE RANGE, pos. +VS - 2 V COMMON MODE , V IN 0.35 V IN SMPS CURRENT, IS (A) 0.45 0.25 0.2 0.15 0.1 0.05 Limit of LFIN , -2 0 8 10 12 14 16 18 20 22 24 26 28 30 TIME, Âus A V = -50 RF = 75K RG = 1.5K RL = 50K VS , -1 0 1 2 3 4 TIME, Âus A V = +51 CC = 68pF CL = 330pF RC = 48Ω RF = 75K RG = 1.5K RL ... Apex Microtechnology
Original
datasheet

12 pages,
512.84 Kb

MP400FC MP400 TEXT
datasheet frame
Abstract: user the benefits of using his standard 12 V or 24 V buss without the need to design a high voltage , above boosts a system 24 V buss to 350 V to drive an ink jet print head. The MP400FCs high speed , CBOOST = 470uF 70 60 50 40 30 20 10 0 0 SMPS POWER DERATING SMPS CURRENT, IS (A) 8V =4 V IN , -2 0 A V = -50 RF = 75K RG = 1.5K RL = 50K VS = ±150V 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 , v a t i o nF r o m 3 4 5 6 VIN, VP-P (100KHz sine wave) 7 8 9 5 0 10 MP400 MP400 1000 100 ... Cirrus Logic
Original
datasheet

12 pages,
1007.29 Kb

pa78 design 24v 5 amp smps MP400FC MP400 TEXT
datasheet frame
Abstract: application, this connection can be broken by removing the inductor L2. The 24 V (DC) output can be used as a , ) (3) L3 (J3 - Phase 3) (4) N (J4 - Neutral) (5) +12 V (J5) (6) 0 V (J6) (7) +24 V (J7) (8) 0 V , voltage reference to produce a precisely regulated 12 V (DC) output. The 24 V (DC) output is unregulated , STARplug SMPS with isolated 12 V (DC) output UM10369 UM10369 10 of 25 © NXP B.V. 2011. All rights , UM10369 UM10369 STARplug Switched Mode Power Supply (SMPS) for e-metering Rev. 01 — 11 February 2011 ... NXP Semiconductors
Original
datasheet

25 pages,
388.15 Kb

UM10369 TEXT
datasheet frame
Abstract: SMPS at 2.4 V for Iqc and some HPM 1.4 18.7 Application Note - Rev 0 10/2010 Using a DC , : Typical Application Circuit with SMPS Application Note - Rev 0 10/2010 3 Using a DC/DC , 30.1 HELP3TM + Coupler with SMPS AWT6601 AWT6601 with SMPS at 2.4 V for Iqc and some HPM 6.2 26.7 , setting the Vmode pins to a logical high or low value as shown in Table 1. The multipath PA design can , +7dBm - ApplIcAtIoN Shutdown vcc vBAtt +2.4 V 3.2 - 4.2 V > 3.2 V +1.8 V 0V ... Anadigics
Original
datasheet

9 pages,
662.81 Kb

smps design AWU6601 7 pin SMPS smps dc/dc converter SMPS 30 Design 24 v 3 A SMPS AWT6601 DG09 TEXT
datasheet frame
Abstract: 385 V to two dc voltages, 12 V / 3 A and 24 V / 6 A. A regulation loop is taken only from the 24 V , 1.3 2.2 3.6 6.1 10.2 17 Frequency [kHz] The main LLC has two outputs, 24 V / 6 A and 12 V / 3 A , LCD TVs require various voltages to power different parts of the TV. The most power (24 V at 6 A) is , ) 85 265 V Output voltage 1 (dc) - 24 V Output current 1 0 6 A Region , 2 0 3 A Output voltage 3 (dc) - 5 V European Union EU Eco-Label 1W ... ON Semiconductor
Original
datasheet

27 pages,
2862.18 Kb

NCP1392 ncp1606b 12v to 24v LLC converter resonant schematic 24v lcd tv llc TV LCD POWER SCHEMATIC resonant full bridge schematic zcs tv lcd Schematic Power Supply AND8327 600 watt smps schematic power 250 watt smps schematic LLC resonant full bridge schematic SMPS 12V llc AND8344/D NCP1392B NCP1351B AND8344/D NCP1392B 1000 WATT smps AND8344/D NCP1392B schematic SMPS set top box AND8344/D NCP1392B 500 watt smps schematic AND8344/D NCP1392B 600 watt smps schematic llc AND8344/D NCP1392B BCK3501-078 AND8344/D NCP1392B 600 watt smps schematic AND8344/D NCP1392B BCK3501 AND8344/D NCP1392B AND8344/D AND8344/D NCP1392B NCP1392B NCP1606 TEXT
datasheet frame
Abstract: Current limit sense input for 3.3 V SMPS. Connect to the inductor side of a current sense resistor . 2 C S L3 Output voltage sense input for 3.3 V SMPS. Connect to the output side of a current sense , side of a current sense resistor . 14 CSH5 Current limit sense input for 5 V SMPS. Connect to , 3 4 5 6 Iout (A) 3.3V Load Regulation @ Vin =10V 3.34 3.335 3.33 3.325 Vout (V , 1 2 3 4 5 6 Iout (A) 2002 Semtech Corp. 24 www.semtech.com SC1403 SC1403 ... Semtech
Original
datasheet

30 pages,
562.04 Kb

WSL2010 2 pin BERG CONNECTOR 5V SMPS charger circuit diagram FDS9412 IRF7413 SC1403 SC1403ITSTR SC1403TS Si4886DY STS12NF30L TSSOP-28 irf7413 dip 96v charger circuit 19V 7.1A POWER SUPPLY schematic diagram TEXT
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Archived Files

Abstract Saved from Date Saved File Size Type Download
conservative design, with a considerable increase of si ze and cost of the whole power section of the SMPS. As implementing a 90W multioutput SMPS for multisynch monitors, based on the L5993 L5993, current mode PWM controller Pri1 4xAWG29 2-4 19 Sec1 AWG25 AWG25 17-18 48 Sec2 AWG25 AWG25 15-16 32 Sec3 AWG25 AWG25 13-14 3 Evenly spaced Sec4 AWG25 AWG25 respectively . The schematic is shown in fig. 3 (R2 and R3 will be removed). A further improvement of light ST | 90W SMPS FOR MONITORS WITH CONSTANT POWER LIMITING FUNCTION
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6515-v1.htm
STMicroelectronics 02/04/1999 14.59 Kb HTM 6515-v1.htm
conservative design, with a considerable increase of si ze and cost of the whole power section of the SMPS. As implementing a 90W multioutput SMPS for multisynch monitors, based on the L5993 L5993, current mode PWM controller Pri1 4xAWG29 2-4 19 Sec1 AWG25 AWG25 17-18 48 Sec2 AWG25 AWG25 15-16 32 Sec3 AWG25 AWG25 13-14 3 Evenly spaced Sec4 AWG25 AWG25 respectively . The schematic is shown in fig. 3 (R2 and R3 will be removed). A further improvement of light ST | 90W SMPS FOR MONITORS WITH CONSTANT POWER LIMITING FUNCTION
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6515-v2.htm
STMicroelectronics 14/06/1999 14.55 Kb HTM 6515-v2.htm
Overage Input Current 3 mA I SS (OUT) max SMPS Overload Protection Current 1.2 A V DLS Pin 21 CH1 - CH2 HSD CH1 - CH2 LSD CH3 HSD CH3 SMPS Fig 3; 4ab 2 1.1 0.5 0.5 1 2.4 1.4 0.8 0.8 associated control logic and a Switched Mode Power Supply (SMPS) at V SS = 5V + 5%. The IC can be the same chip - it integrates two 1A motor drivers (channels 1 & 2) a 3A solenoid driver (channel 3 Parameter Value Unit V S Power Supply Voltage (Note A) 35 V V SS Logic Supply Voltage 7 V V13 Pin 13
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/1387-v1.htm
STMicroelectronics 25/05/2000 38.5 Kb HTM 1387-v1.htm
listed in Table 2. Table 1. Design Specification Input Voltage Range (V in ) 88 to 264 Vac Mains specifications and the functionali ty of the ap - plication board implementing a 90W multioutput SMPS for occurring when the system works a t 82 kHz. This would require a much more conservative design, with a Pri1 4xAWG29 2-4 19 Sec1 AWG25 AWG25 17-18 48 Sec2 AWG25 AWG25 15-16 32 Sec3 AWG25 AWG25 13-14 3 Evenly spaced Sec4 AWG25 AWG25 respectively . The schematic is shown in fig. 3 (R2 and R3 will be removed). A further improvement of light
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6515.htm
STMicroelectronics 20/10/2000 24.52 Kb HTM 6515.htm
specifications and the functionali ty of the ap - plication board implementing a 90W multioutput SMPS for failure occurring when the system works a t 82 kHz. This would require a much more conservative design, with a considerable increase of si ze and cost of the whole power section of the SMPS. As shown also will no longer be forced, for the sake of safety, to size the power stage of their SMPS considering a AC [V] 88 110 160 220 264 Pin [W] (*) 4.3 4.4 4.6 4.8 4.9 Pin [W] (*) 2 2.1 2.2 2.4 2.5
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6515-v3.htm
STMicroelectronics 25/05/2000 23.5 Kb HTM 6515-v3.htm
Overage Input Current 3 mA I SS (OUT) max SMPS Overload Protection Current 1.2 A V DLS Pin 21 Overage Current CH1; CH2 DC Operation Peak (Note F) CH3 DC Operation Peak (Note G) 1 2 3 4.4 A A A A I SSOUT SMPS Power Supply (SMPS) at V SS = 5V + 5%. The IC can be directly connected to a standard microprocessor (channels 1 & 2) a 3A solenoid driver (channel 3) and a 5V switchmode power supply. All of the drivers in ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit V S Power Supply Voltage (Note A) 35 V V SS Logic
/datasheets/files/stmicroelectronics/books/ascii/docs/1387.htm
STMicroelectronics 25/05/2000 40.02 Kb HTM 1387.htm
3 mA I SS (OUT) max SMPS Overload Protection Current 1.2 A V DLS Pin 21 Overage Input Voltage 12 V V ; CH2 DC Operation Peak (Note F) CH3 DC Operation Peak (Note G) 1 2 3 4.4 A A A A I SSOUT SMPS Output Transistor LSD CH1 - CH2 HSD CH1 - CH2 LSD CH3 HSD CH3 SMPS Fig 3; 4ab 2 1.1 0.5 0.5 1 2.4 1.4 0.8 0.8 1.2 W (SMPS) at V SS = 5V + 5%. The IC can be directly connected to a standard microprocessor because of its 3A solenoid driver (channel 3) and a 5V switchmode power supply. All of the drivers in the L6280 L6280 are
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/1387-v2.htm
STMicroelectronics 14/06/1999 36.65 Kb HTM 1387-v2.htm
STARTER + - ZERO CURRENT DETECTOR DISABLE 2.3V 1.8V V CC 8 1 2 3 4 ZCD V CC INV COMP spaced out by long intervals where L6 561's OVP keeps the switch in OFF state. Fig. 3 shows a 7W power requeste d to go into some low-consumption mode, a m P switches off the main SMPS. A small auxiliary operating after being powered, does not exceed 3 s at 90 V DC supply and 1 s at 400 V DC . In fig. 4, the circuit of fig. 3 is proposed with a different power rating: 15W output power s o as to be able
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/5957-v3.htm
STMicroelectronics 25/05/2000 29.08 Kb HTM 5957-v3.htm
3 mA I SS (OUT) max SMPS Overload Protection Current 1.2 A V DLS Pin 21 Overage Input Voltage 12 V V ; CH2 DC Operation Peak (Note F) CH3 DC Operation Peak (Note G) 1 2 3 4.4 A A A A I SSOUT SMPS Output Transistor LSD CH1 - CH2 HSD CH1 - CH2 LSD CH3 HSD CH3 SMPS Fig 3; 4ab 2 1.1 0.5 0.5 1 2.4 1.4 0.8 0.8 1.2 W (SMPS) at V SS = 5V + 5%. The IC can be directly connected to a standard microprocessor because of its 3A solenoid driver (channel 3) and a 5V switchmode power supply. All of the drivers in the L6280 L6280 are
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/1387.htm
STMicroelectronics 02/04/1999 36.69 Kb HTM 1387.htm
DC supply and 1 s at 400 V DC . In fig. 4, the circuit of fig. 3 is proposed with a different power conventional flyback. Please refer to Ref. [3] for a detailed explanation of the design of this kind of CC 8 1 2 3 4 ZCD V CC INV COMP MULT CS GD 7 5 GND 6 D97IN547B D97IN547B 20V 40K 5pF Figure 1 - L6561 L6561 Internal state. Fig. 3 shows a 7W power supply, realised in TM flyback. It is intended as an auxiliary power SMPS. A small auxiliary supply, optimised for a low power level, keeps alive the m P itself and the
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/5957.htm
STMicroelectronics 20/10/2000 30.22 Kb HTM 5957.htm