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Abstract: of driving a 1A load with excellent line and load regulation. The feedback voltage is guaranteed to , switch current Wide 4V to 24V input voltage range Wide 1.23V to 20V output voltage range Requires , Voltage FB connected to 0V Peak Current, tON 3祍 Output Leakage Current 180 VIN = 24V, FB , /1A Buck Converter Low-Profile Surface Mount Figure 1. 6V�V to 3.3V/1A Buck Converter Through Hole Figure 5. 8V�V to 5V/1A Buck Converter Low-Profile Surface Mount Figure 2. 8V�V to 5V/1A Buck ... Original
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15 pages,
521.57 Kb

diagram Converter 24v to 12v LM2575 LM2575 BOOST CONVERTER LM358 internal block diagram LM358 output drive circuits LM358 voltage to current converter MIC4575WU MIC4575BU MIC4575BT MIC4575 motorola TO220 voltage regulator MIC4575WT MIC4575 abstract
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Abstract: of driving a 1A load with excellent line and load regulation. The feedback voltage is guaranteed to , switch current Wide 4V to 24V input voltage range Wide 1.23V to 20V output voltage range Requires , Feedback Bias Current MIC4575-3 MIC4575-3.3 Output Voltage Output Voltage 6V VIN 24V, 0.2A ILOAD 1A , Frequency 180 Saturation Voltage IOUT = 1A Maximum Duty Cycle (On) FB connected to 0V 90 , Application Note 14. Figure 4. 6V�V to 3.3V/1A Buck Converter Low-Profile Surface Mount Figure 1. 6V�V to ... Original
datasheet

15 pages,
762.7 Kb

battery charger on LM358 24v to 5v 1A switching regulator 24v input 5v output regulator 24v 2A regulator 1N5819 15v split supply regulator MIC4575BU MIC4575BT MIC4575 MBR160 LM2575 BOOST CONVERTER LM2575 MIC4575 abstract
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Abstract: feedback voltage · Guaranteed 1A switch current · Wide input voltage range: 4V to 24V · Wide output , Saturation Voltage IOUT = 1A Maximum Duty Cycle (On) FB connected to 0V 90 95 Current Limit , 4 Figure 6. 6V­18V to 3.3V/1A Buck Converter Low-Profile Surface Mount 5.0V/1A 5 C2 , SHDN 12V/1A 150uH Figure 5. 16V­40V to 12V/1A Buck Converter Note 3 Through Hole Figure 2. 6V­40V to 3.3V/1A Buck Converter Note 3 Through Hole 5 FB VIN L1 2 GND C1 C2 D1 ... Original
datasheet

14 pages,
173.16 Kb

24v to 5V 1A SW regulator 1N5819 LM358 comparator circuit LM358 pinout MIC4575BU LM358 voltage comparator MBR160 MIC4575BT MIC4575 SANYO 220uF 16V capacitor BT nichicon LM3420 UPL1J151MPH MIC4575 abstract
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Abstract: · Guaranteed 1A switch current · Wide 4V to 24V input voltage range · Wide 1.23V to 20V output , 1.3 1.5 V V Saturation Voltage IOUT = 1A Maximum Duty Cycle (On) FB connected to 0V , HM77-11003 HM77-11003, DCR = 0.233, Note 2 Figure 2. 8V­24V to 5V/1A Buck Converter Through Hole MIC4575BT MIC4575BT 16V to 24V SW 3 C1 C2 D1 L1 L2 Figure 1. 6V­24V to 3.3V/1A Buck Converter Through Hole , Figure 3. 16V­24V to 12V/1A Buck Converter, Through Hole 5 M9999-062105 M9999-062105 MIC4575 MIC4575 Micrel, Inc. ... Original
datasheet

13 pages,
558.57 Kb

Nichicon 1N5819 LM2575 LM339 MBRS130LT3 MIC4575 MIC4575BU MIC4575WT MIC4575WU motorola 1N4148 MIC4575 abstract
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Abstract: Guaranteed 1A switch current · Wide 4V to 24V input voltage range · Wide 1.23V to 20V output voltage range , 1.3 1.5 V V Saturation Voltage IOUT = 1A Maximum Duty Cycle (On) FB connected to 0V , , DCR = 0.233, Note 2 Figure 2. 8V­24V to 5V/1A Buck Converter Through Hole MIC4575BT MIC4575BT 16V to 24V SW 3 C1 C2 D1 L1 L2 Figure 1. 6V­24V to 3.3V/1A Buck Converter Through Hole 1 , 12V/1A Buck Converter, Through Hole 4-110 April 1998· MIC4575 MIC4575 Micrel 5 6V to 24V ... Original
datasheet

12 pages,
212.64 Kb

LM358 pinout Nichicon Capacitor Nichicon Capacitor UP series DIODE 1N5819 lm358 similar LM358 voltage to current converter datasheets diode 1n5819 dc dc converter 24v to 20v 24v 2A regulator lm358 li ion charger circuit 24v to 5V 2A SW regulator motorola 1N4148 MIC4575 MIC4575 MIC4575 abstract
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Abstract: Guaranteed 1A switch current · Wide 4V to 24V input voltage range · Wide 1.23V to 20V output voltage range , 1.3 1.5 V V Saturation Voltage IOUT = 1A Maximum Duty Cycle (On) FB connected to 0V , /1A Buck Converter Through Hole MIC4575BT MIC4575BT 16V to 24V SW 3 C1 C2 D1 L1 L2 Figure 1. 6V­24V to 3.3V/1A Buck Converter Through Hole 1 SHDN 12V/1A R2 13.0k 1% R1 1.50k , 0.23 Note 2: Surfacemount component. July 2001 Figure 3. 16V­24V to 12V/1A Buck Converter ... Original
datasheet

16 pages,
144.84 Kb

amp 9435 battery charger on LM358 CTX150-4 LM2575 LM339 sd LM3420 MIC4575 UPL1V151MPH MIC4575BT MIC4575BU UPL1C331MPH SANYO 1000uF 16V CA MBRS130LT3 charge battery lm339 MIC4575 abstract
datasheet frame
Abstract: · Guaranteed 1A switch current · Wide 4V to 24V input voltage range · Wide 1.23V to 20V output , 1.3 1.5 V V Saturation Voltage IOUT = 1A Maximum Duty Cycle (On) FB connected to 0V , HM77-11003 HM77-11003, DCR = 0.233, Note 2 Figure 2. 8V­24V to 5V/1A Buck Converter Through Hole MIC4575BT MIC4575BT 16V to 24V SW 3 C1 C2 D1 L1 L2 Figure 1. 6V­24V to 3.3V/1A Buck Converter Through Hole , Figure 3. 16V­24V to 12V/1A Buck Converter, Through Hole 5 MIC4575 MIC4575 MIC4575 MIC4575 Micrel 5 6V ... Original
datasheet

16 pages,
133.34 Kb

UPL1V151MPH amp 9435 circuit diagram lm358 LM2575 LM2575 BOOST CONVERTER MBRS130LT3 MIC4575 MIC4575BT MIC4575BU UPL1J680MPH UPL1C331MPH 1N5819 nichicon low esr capacitors 9435 72 MIC4575 abstract
datasheet frame
Abstract: 0.8 LOAD CURRENT (A) 4 1.0 8V­24V to 5V/1A Buck Converter Through Hole L1 SW 10V 20V Figure 7b. Efficiency 6V­24V to 3.3V/1A Buck Converter Through-Hole SHDN 50 30 , 50 16V 24V 0 0.2 0.4 0.6 0.8 LOAD CURRENT (A) L1 6V­36V to 3.3V/1A Buck Converter , 0.2 0.3 0.4 LOAD CURRENT (A) 0.5 Figure 3b. Efficiency 6V­40V to 3.3V/0.5A Buck Converter , CURRENT (A) 0.5 Figure 4b. Efficiency Although the MIC457x family is functional to input voltage ... Original
datasheet

28 pages,
613.21 Kb

UPL1V470MEH 24V DC to 5V 1A DC flyback converter electric capacitor 330uF 25V general instruments inductor 100uH 3A LM3420 ME 9435 motorola MIC4574 MIC4575 MIC4576 MIC4576BT SANYO 1000uF 16V CA datasheet abstract
datasheet frame
Abstract: voltage = 110Vac #1:Drain #2:Vcc #3:Vfb #4:Drain current Io=1A Figure 5. FSDH Serise load regulation , charger. Each application has secondary circuits to ensure constant voltage and constant 1. Using the , to the constant voltage and the constant current at the secondary side. In addition, snubber circuit , constant voltage. At this time, charging current has to be limited to protect the battery, and the charger , set to the point where the voltage drop VR11 when output current (800mA) flows to R11 reaches the ... Original
datasheet

16 pages,
1494.7 Kb

817a KA358 FSDH0165 ring structure ldmos transistors ic lm358 inverter block diagram 7d471 NS LM358 transistor ka431 L Tr 2n3904 opamp Lm358 pin function KA431 application AN4111 KA431 datasheet abstract
datasheet frame
Abstract: charger. Each application has secondary circuits to ensure constant voltage and constant 1. Using the , to the constant voltage and the constant current at the secondary side. In addition, snubber circuit , constant voltage. At this time, charging current has to be limited to protect the battery, and the charger , set to the point where the voltage drop VR11 when output current (800mA) flows to R11 reaches the , Vstart (#1): This pin connects directly to the rectified ac line voltage source. The internal switch ... Original
datasheet

16 pages,
1494.77 Kb

LM 358 opamp RMS TO DC converter using LM358 8uF 400V AN4111 KA431 application transistor ka431az dh0165 8 pin ic AN-4111 817 OPTO 817 OPTO-coupler opto coupler 817 817a ic lm358 inverter block diagram datasheet abstract
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Over 1.1 million files (1986-2013): html articles, reference designs, gerber files, chemical content, spice models, programs, code, pricing, images, circuits, parametric data, RoHS data, cross references, pcns, military data, and more. Please note that due to their age, these files do not always format correctly in modern browsers. Disclaimer.
 
value Vr - 0.5V. The time necessary in order that the output rises from zero to the nominal value is given by: 11) t start - up = C ss V ( V r - 0.5V ) I ss in which Css is the Soft Start capacitor and capaci - tor to change itself approx from (2Vbe - 0.5V) = (1.2V - 0.5V) to Vr - 0.5V, is: 12) t ss = C zero, and D I C = D I L . The current I C through the capacitor gives rise to the voltage ripple ) where V F is the forward voltage of the recircula - tion diode at current I o . P L : losses due to the
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1711-v1.htm
STMicroelectronics 02/04/1999 77.25 Kb HTM 1711-v1.htm
value Vr - 0.5V. The time necessary in order that the output rises from zero to the nominal value is given by: 11) t start - up = C ss V ( V r - 0.5V ) I ss in which Css is the Soft Start capacitor and capaci - tor to change itself approx from (2Vbe - 0.5V) = (1.2V - 0.5V) to Vr - 0.5V, is: 12) t ss = C zero, and D I C = D I L . The current I C through the capacitor gives rise to the voltage ripple ) where V F is the forward voltage of the recircula - tion diode at current I o . P L : losses due to the
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1711-v2.htm
STMicroelectronics 14/06/1999 77.21 Kb HTM 1711-v2.htm
the voltage across the Css capacitor, charged with constant current, has reached the value Vr - 0.5V Start capaci - tor to change itself approx from (2Vbe - 0.5V) = (1.2V - 0.5V) to Vr - 0.5V, is: 12 the load current give rise to overvoltages and undervoltages on the output voltage. Since i c = C ) t start - up = C ss V ( V r - 0.5V ) I ss in which Css is the Soft Start capacitor deliver an output current proportional to the voltage inbalance of the two inputs. The simplified
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1711.htm
STMicroelectronics 20/10/2000 83.97 Kb HTM 1711.htm
constant current, has reached the value Vr - 0.5V. The time necessary in order that the output rises - 0.5V ) I ss in which Css is the Soft Start capacitor and Iss the Soft Start current approx from (2Vbe - 0.5V) = (1.2V - 0.5V) to Vr - 0.5V, is: 12) t ss = C ss V ( V r L . The current I C through the capacitor gives rise to the voltage ripple. This ripple input voltage V i and to the duty cycle. The rela - tion-ship between the currents is the
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1711-v3.htm
STMicroelectronics 25/05/2000 79.09 Kb HTM 1711-v3.htm
.5M * REFERENCE VOLTAGE * BREF 80 5 V=V(81) )>800M) ? 0 : 5V BQ 20 0 V=(V(6)800M) ? 0 : 5V RD1 10 1 100 CD1 1 0 10p IC=5 RD 33074 * MC33077/MC33078/MC33079 MC33077/MC33078/MC33079 MC33077/MC33078/MC33079 MC33077/MC33078/MC33079 * MC3403 MC3403 MC3403 MC3403 * LM2902/LM2904 LM2902/LM2904 LM2902/LM2904 LM2902/LM2904 * LM833 LM833 LM833 LM833 * LM358 * LM324 LM324 LM324 LM324 phase Buck * CS5322 CS5322 CS5322 CS5322 2 phase Buck * CS5323 CS5323 CS5323 CS5323 3 phase Buck * CS5155 CS5155 CS5155 CS5155 Synchro Buck * CS51411 CS51411 CS51411 CS51411 Low Voltage * NCP1000 NCP1000 NCP1000 NCP1000 2 Phase Controller * NCP1400 NCP1400 NCP1400 NCP1400 Fixed frequency Boost * NCP1570 NCP1570 NCP1570 NCP1570 Low Voltage Synchronous
www.datasheetarchive.com/download/34545994-608965ZC/mc33163_model.zip (onic.lib)
On Semiconductor 10/08/2006 77.57 Kb ZIP mc33163_model.zip
.5M * REFERENCE VOLTAGE * BREF 80 5 V=V(81) 2902/LM2904 2902/LM2904 2902/LM2904 2902/LM2904 * LM833 LM833 LM833 LM833 * LM358 * LM324 LM324 LM324 LM324 * * * TLV431 TLV431 TLV431 TLV431 1.2V reference voltage * TL431 TL431 TL431 TL431 2.5V )>800M) ? 0 : 5V BQ 20 0 V=(V(6)800M) ? 0 : 5V RD1 10 1 100 CD1 1 0 10p IC=5 RD phase Buck * CS5322 CS5322 CS5322 CS5322 2 phase Buck * CS5323 CS5323 CS5323 CS5323 3 phase Buck * CS5155 CS5155 CS5155 CS5155 Synchro Buck * CS51411 CS51411 CS51411 CS51411 Low Voltage Fixed frequency Boost * NCP1570 NCP1570 NCP1570 NCP1570 Low Voltage Synchronous Buck Controller * NCP1571 NCP1571 NCP1571 NCP1571 Low Voltage
www.datasheetarchive.com/download/29051054-609091ZC/ncp101x_isspice.zip (onic.lib)
On Semiconductor 10/08/2006 160.26 Kb ZIP ncp101x_isspice.zip
.5M * REFERENCE VOLTAGE * BREF 80 5 V=V(81) )>800M) ? 0 : 5V BQ 20 0 V=(V(6)800M) ? 0 : 5V RD1 10 1 100 CD1 1 0 10p IC=5 RD * MC33077/MC33078/MC33079 MC33077/MC33078/MC33079 MC33077/MC33078/MC33079 MC33077/MC33078/MC33079 * MC3403 MC3403 MC3403 MC3403 * LM2902/LM2904 LM2902/LM2904 LM2902/LM2904 LM2902/LM2904 * LM833 LM833 LM833 LM833 * LM358 * LM324 LM324 LM324 LM324 phase Buck * CS5322 CS5322 CS5322 CS5322 2 phase Buck * CS5323 CS5323 CS5323 CS5323 3 phase Buck * CS5155 CS5155 CS5155 CS5155 Synchro Buck * CS51411 CS51411 CS51411 CS51411 Low Voltage for freq. analysis * NCP1400 NCP1400 NCP1400 NCP1400 Fixed frequency Boost * NCP1570 NCP1570 NCP1570 NCP1570 Low Voltage Synchronous Buck
www.datasheetarchive.com/download/52779216-609110ZC/ncp1216 isspice templates .zip (onic.lib)
On Semiconductor 10/08/2006 114.52 Kb ZIP ncp1216 isspice templates .zip
.5M * REFERENCE VOLTAGE * BREF 80 5 V=V(81) )>800M) ? 0 : 5V BQ 20 0 V=(V(6)800M) ? 0 : 5V RD1 10 1 100 CD1 1 0 10p IC=5 RD * MC33077/MC33078/MC33079 MC33077/MC33078/MC33079 MC33077/MC33078/MC33079 MC33077/MC33078/MC33079 * MC3403 MC3403 MC3403 MC3403 * LM2902/LM2904 LM2902/LM2904 LM2902/LM2904 LM2902/LM2904 * LM833 LM833 LM833 LM833 * LM358 * LM324 LM324 LM324 LM324 phase Buck * CS5322 CS5322 CS5322 CS5322 2 phase Buck * CS5323 CS5323 CS5323 CS5323 3 phase Buck * CS5155 CS5155 CS5155 CS5155 Synchro Buck * CS51411 CS51411 CS51411 CS51411 Low Voltage for freq. analysis * NCP1400 NCP1400 NCP1400 NCP1400 Fixed frequency Boost * NCP1570 NCP1570 NCP1570 NCP1570 Low Voltage Synchronous Buck
www.datasheetarchive.com/download/42112666-609112ZC/ncp1217 isspice templates.zip (onic.lib)
On Semiconductor 10/08/2006 110.75 Kb ZIP ncp1217 isspice templates.zip
.5M * REFERENCE VOLTAGE * BREF 80 5 V=V(81) /LM2904 /LM2904 /LM2904 /LM2904 * LM833 LM833 LM833 LM833 * LM358 * LM324 LM324 LM324 LM324 * * * TLV431 TLV431 TLV431 TLV431 1.2V reference voltage * TL431 TL431 TL431 TL431 2.5V )>800M) ? 0 : 5V BQ 20 0 V=(V(6)800M) ? 0 : 5V RD1 10 1 100 CD1 1 0 10p IC=5 RD phase Buck * CS5322 CS5322 CS5322 CS5322 2 phase Buck * CS5323 CS5323 CS5323 CS5323 3 phase Buck * CS5155 CS5155 CS5155 CS5155 Synchro Buck * CS51411 CS51411 CS51411 CS51411 Low Voltage frequency Boost * NCP1570 NCP1570 NCP1570 NCP1570 Low Voltage Synchronous Buck Controller * NCP1571 NCP1571 NCP1571 NCP1571 Low Voltage Synchronous
www.datasheetarchive.com/download/71733749-609099ZC/ncp1203i.zip (onic.lib)
On Semiconductor 10/08/2006 90.8 Kb ZIP ncp1203i.zip