IEC55015
Abstract: tdg rm10 tp4 AN10876 TDG TP4 loss rm8 epcos transformer SSL1623 pot core epcos RM8 3f3 ferrite smps SSL1523 RM7 series bobbins
Text: AN10876 Buck converter for SSL applications Rev. 01 — 14 October 2009 Application note Document information Info Content Keywords Buck, down, converter, driver, topology, AC/DC, DC/DC, SMPS, LED Abstract This document describes how to design a buck converter that can, for
|
Original
|
AN10876
AN10876
IEC55015
tdg rm10 tp4
TDG TP4 loss
rm8 epcos transformer
SSL1623
pot core epcos RM8
3f3 ferrite smps
SSL1523
RM7 series bobbins
|
PDF
|
HM00-07559LFTR
Abstract: 12v dc choke circuit HM00-07559 APP4596 12v 5a dc dc converter resistance ALUMINUM
Text: Maxim > App Notes > Hot-Swap and Power Switching Circuits Power-Supply Circuits Keywords: buck converter, two-phase, coupled-choke, synchronous buck converter, interleaved multiphase converters, reduced phase ripple, Sep 28, 2009 APPLICATION NOTE 4596 Improve Two-Phase Buck Converter Performance with a Coupled-Choke Topology
|
Original
|
MAX8686:
com/an4596
AN4596,
APP4596,
Appnote4596,
HM00-07559LFTR
12v dc choke circuit
HM00-07559
APP4596
12v 5a dc dc converter
resistance ALUMINUM
|
PDF
|
AN10876
Abstract: TDG TP4 loss 3f3 ferrite smps
Text: AN10876 Buck converter for SSL applications Rev. 2 — 23 June 2011 Application note Document information Info Content Keywords Buck, down, converter, driver, topology, AC/DC, DC/DC, SMPS, LED Abstract This document describes how to design a buck converter that can be used
|
Original
|
AN10876
AN10876
TDG TP4 loss
3f3 ferrite smps
|
PDF
|
HM00-07559LFTR
Abstract: AN4596 12v dc choke circuit APP4596 resistance ALUMINUM HM00-07559
Text: Maxim > App Notes > Hot-Swap and Power Switching Circuits Power-Supply Circuits Keywords: buck converter, two-phase, coupled-choke, synchronous buck converter, interleaved multiphase converters, reduced phase ripple, Sep 28, 2009 APPLICATION NOTE 4596 Improve Two-Phase Buck Converter Performance with a Coupled-Choke Topology
|
Original
|
MAX8686:
com/an4596
AN4596,
APP4596,
Appnote4596,
HM00-07559LFTR
AN4596
12v dc choke circuit
APP4596
resistance ALUMINUM
HM00-07559
|
PDF
|
TLE4309
Abstract: Osram ballast schematic
Text: Lighting & LED Driver Board Name Products Description Order No. For Microcontroller evaluation boards, please see “Microcontroller” category. TLE 8366 Basic buck converter DC/DC converter TLE 6389-2GV Buck converter Multi-purpose buck controller for external PMOS switch, 5V or
|
Original
|
6389-2GV
TLE6389-2GV
4242G
4309G
TLE4242G
driver/TLE4309
5095EL
2FL02G
TLD5098EL
TLE4309
Osram ballast schematic
|
PDF
|
LM366
Abstract: No abstract text available
Text: LM3668 LM3668 1A, High Efficiency Dual Mode Single Inductor Buck-Boost DC/DC Converter Literature Number: SNVS449L LM3668 1A, High Efficiency Dual Mode Single Inductor Buck-Boost DC/DC Converter General Description Features The LM3668 is a synchronous buck-boost DC-DC converter
|
Original
|
LM3668
LM3668
SNVS449L
LM366
|
PDF
|
Untitled
Abstract: No abstract text available
Text: News Release ⎜ www.linear.com 1 Amp Buck-Boost, 600mA Buck Dual Synchronous DC/DC Converter Extends Battery Run-Time MILPITAS, CA – October 11, 2007 – Linear Technology announces the LTC3520, a dual channel, 2MHz synchronous converter. One channel utilizes a synchronous buck-boost topology
|
Original
|
600mA
LTC3520,
|
PDF
|
ST VIPER 22A
Abstract: DIODE BA159 VIPER22A VIPER22A not isolated VIPER22A using smps VIPER22A not isolated buck VIPER22A not isolated SMPS viper22a 5v power supply design AN1514 VIPER22A Application Note
Text: AN1514 - APPLICATION NOTE VIPower: DOUBLE OUTPUT BUCK OR BUCK-BOOST CONVERTER USING VIPer12/22A N. Aiello - F. Gennaro ABSTRACT This paper introduces two double output off-line non isolated SMPS based on VIPerX2A family. The first SMPS is a Buck converter with two positive outputs and the second one is a Buck-Boost converter with
|
Original
|
AN1514
VIPer12/22A
VIPer12A
VIPer22A
285Vac.
ST VIPER 22A
DIODE BA159
VIPER22A not isolated
VIPER22A using smps
VIPER22A not isolated buck
VIPER22A not isolated SMPS
viper22a 5v power supply design
AN1514
VIPER22A Application Note
|
PDF
|
ST VIPER 22A
Abstract: DIODE BA159 VIPER22A VIPER22A not isolated buck zener 5.6v VIPER22A using smps VIPER22A not isolated viper22a 5v power supply design VIPER 22A application notes VIPER22A Application Note
Text: AN1514 - APPLICATION NOTE VIPower: DOUBLE OUTPUT BUCK OR BUCK-BOOST CONVERTER USING VIPer12/22A N. Aiello - F. Gennaro ABSTRACT This paper introduces two double output off-line non isolated SMPS based on VIPerX2A family. The first SMPS is a Buck converter with two positive outputs and the second one is a Buck-Boost converter with
|
Original
|
AN1514
VIPer12/22A
VIPer12A
VIPer22A
285Vac.
ST VIPER 22A
DIODE BA159
VIPER22A not isolated buck
zener 5.6v
VIPER22A using smps
VIPER22A not isolated
viper22a 5v power supply design
VIPER 22A application notes
VIPER22A Application Note
|
PDF
|
SSL2129
Abstract: No abstract text available
Text: AN11041 SSL21081, SSL21083, and SSL2109 non-dimmable buck converter in low ripple configurations Rev. 1.3 — 23 October 2012 Application note Document information Info Content Keywords SSL21081, SSL21083, SSL2109, buck converter, down converter, driver, topology, AC/DC, retrofit SSL, LED
|
Original
|
AN11041
SSL21081,
SSL21083,
SSL2109
SSL2109,
SSL21083
SSL2129
|
PDF
|
LNK304
Abstract: lnk30* an-37 lnk304 equivalent lnk304 flyback transformer pin LNK305P LNK304-306 Energy Efficient Off-Line Switcher IC LNK304P LNK302P lnk30* design guide
Text: LinkSwitch-TN Family Non-Isolated Buck or Buck-Boost Converter Solution for Linear/Passive Dropper Replacement SEPTEMBER 2004 UPDATE TYPICAL BUCK CONVERTER APPLICATION OUTPUT CURRENT TABLE PRODUCT 1 Perfect for appliances, utility meters, LED drivers & industrial controls.
|
Original
|
LNK304-306)
LNK302P
LNK304P
LNK305P
LNK306P
LNK304
lnk30* an-37
lnk304 equivalent
lnk304 flyback transformer pin
LNK304-306
Energy Efficient Off-Line Switcher IC
lnk30* design guide
|
PDF
|
NCP105x
Abstract: zener diode c5 NCP1052 595D106X9025B2 595D106X9025B2T MMSZ5260BT1G NCP1055 DN06028 NCP1055ST136G CRCW12062K00JNEA
Text: DN06028/D Design Note – DN06028/D 7 W, Non-Isolated Buck AC-DC Converter Device NCP1055 Application Input Voltage 1 Output AC to DC converter 108-132 Vac Output Power Topology I/O Isolation 7 Watts Non-Isolated Buck Converter No Other Specifications Output
|
Original
|
DN06028/D
NCP1055
NCP1052
AND8098/D)
2V/100mA
1V/75mA.
NCP105x
zener diode c5
595D106X9025B2
595D106X9025B2T
MMSZ5260BT1G
NCP1055
DN06028
NCP1055ST136G
CRCW12062K00JNEA
|
PDF
|
LTC3522
Abstract: LTC3522EUD
Text: News Release www.linear.com Synchronous 400mA DC/DC Buck-Boost Converter & 200mA Synchronous Buck in a 3mm x 3mm QFN MILPITAS, CA – June 12, 2007 – Linear Technology announces the LTC3522, a dual channel, 1MHz synchronous converter. One channel utilizes a synchronous buck-boost topology that can
|
Original
|
400mA
200mA
LTC3522,
LTC3522
LTC3522EUD
|
PDF
|
LTC3522
Abstract: LT3522 LTC3522EUD LTC3544B LTC3544
Text: LTC3522 Synchronous 400mA Buck-Boost and 200mA Buck Converters FEATURES DESCRIPTION • The LTC 3522 combines a 400mA buck-boost DC/DC converter with a 200mA synchronous buck DC/DC converter in a tiny 3mm x 3mm package. The 1MHz switching frequency minimizes the solution footprint while maintaining high
|
Original
|
LTC3522
400mA
200mA
400mA
200mA
200mA)
LTC3530
600mA
LTC3532
LTC3522
LT3522
LTC3522EUD
LTC3544B
LTC3544
|
PDF
|
|
6E10
Abstract: 12V19 AN-7019 4E-08 6E-08 4e08
Text: www.fairchildsemi.com AN-7019 Limiting Cross-Conduction Current in Synchronous Buck Converter Designs Alan Elbanhawy, Fairchild Semiconductor Introduction The synchronous buck converter is the topology of choice for PC and notebook computers. The reason for this favored
|
Original
|
AN-7019
AN00007019
6E10
12V19
AN-7019
4E-08
6E-08
4e08
|
PDF
|
mosfet TRANSISTOR ECG
Abstract: PANASONIC-ECG ECG book UCC38C42 SLUS458 datasheet for comparator ecg lm311 float buck driver INA138 LM311 TPS2838
Text: Application Report SLUU143 - February 2003 UCC38C42 30-W Synchronous Buck Converter Reference Design PR112B Lisa Dinwoodie System Power ABSTRACT This reference design presents a synchronous buck converter using the UCC38C43 BiCMOS low-power current-mode PWM controller, the TPS2838 synchronous buck
|
Original
|
SLUU143
UCC38C42
PR112B)
UCC38C43
TPS2838
INA138
12-Vdc
mosfet TRANSISTOR ECG
PANASONIC-ECG
ECG book
SLUS458
datasheet for comparator ecg lm311
float buck driver
LM311
|
PDF
|
XC9306
Abstract: No abstract text available
Text: XC9306B05G0R-G ETR06003-002 Synchronous Rectification Buck-Boost DC/DC Converter IC ☆GreenOperation Compatible •GENERAL DESCRIPTION The XC9306B05G0R-G is a synchronous buck-boost DC/DC converter IC with built-in FETs. The circuit topology switches over between buck and boost smoothly based on the relationship of the input voltage and the output voltage which is observed
|
Original
|
XC9306B05G0R-G
ETR06003-002
XC9306B05G0R-G
XC9306
|
PDF
|
NCP5030
Abstract: NPC5030 NCP5030M WDFN12 A108B A114 C2012X5R0J106MT JESD22 RLF7030T RLF7030T-4R7
Text: NCP5030 Buck−Boost Converter to Drive a Single LED from 1 Li−Ion or 3 Alkaline Batteries The NCP5030 is a fixed frequency PWM buck−boost converter optimized for constant current applications such as driving high−powered white LED. The buck−boost is implemented in an
|
Original
|
NCP5030
NCP5030
NCP5030/D
NPC5030
NCP5030M
WDFN12
A108B
A114
C2012X5R0J106MT
JESD22
RLF7030T
RLF7030T-4R7
|
PDF
|
NCP5030 D
Abstract: 0603 footprint IPC LQH43CN4R7M03L NCP5030 WDFN12 A108B A114 C2012X5R0J106MT JESD22 RLF7030T
Text: NCP5030 Buck-Boost Converter to Drive a Single LED from 1 Li-Ion or 3 Alkaline Batteries The NCP5030 is a fixed frequency PWM buck−boost converter optimized for constant current applications such as driving high−powered white LED. The buck−boost is implemented in an
|
Original
|
NCP5030
NCP5030
NCP5030/D
NCP5030 D
0603 footprint IPC
LQH43CN4R7M03L
WDFN12
A108B
A114
C2012X5R0J106MT
JESD22
RLF7030T
|
PDF
|
Untitled
Abstract: No abstract text available
Text: NCP5030 Buck-Boost Converter to Drive a Single LED from 1 Li-Ion or 3 Alkaline Batteries The NCP5030 is a fixed frequency PWM buck−boost converter optimized for constant current applications such as driving high−powered white LED. The buck−boost is implemented in an
|
Original
|
NCP5030
NCP5030
NCP5030/D
|
PDF
|
ST VIPER 22A
Abstract: viper 22a ic ST VIPER 27 VIPER 22A application notes VIPer smps 24v viper 22a VIPER IC VIPer22A-E VIPER22A not isolated buck VIPER22A
Text: AN1514 Application note VIPower: double output buck or buck-boost converter using VIPer12A-E/22A-E Introduction This paper introduces two double output off-line non isolated SMPS based on the VIPerX2A-E family. The first SMPS is a Buck converter with two positive outputs and the
|
Original
|
AN1514
VIPer12A-E/22A-E
VIPer12A-E
VIPer22A-E
ST VIPER 22A
viper 22a ic
ST VIPER 27
VIPER 22A application notes
VIPer smps 24v
viper 22a
VIPER IC
VIPER22A not isolated buck
VIPER22A
|
PDF
|
TNY254PN
Abstract: Optocoupler with triac circuits StackFET topswitch StackFET diode u2 TNY254P TinySwitch DI-42 nonisolated flyback converter SFH615-2 Optocoupler with triac
Text: DI-42 Design Idea TinySwitch Non-isolated Flyback Buck/Boost Converter Application Device Power Output Input Voltage Output Voltage Topology Appliances TNY254PN 1.2 W 85 – 265 VAC 12 V Buck/Boost Design Highlights • Lowest cost non-isolated flyback converter
|
Original
|
DI-42
TNY254PN
EN61000-4-5
DI-42
TNY254PN
Optocoupler with triac circuits
StackFET
topswitch StackFET
diode u2
TNY254P
TinySwitch DI-42
nonisolated flyback converter
SFH615-2
Optocoupler with triac
|
PDF
|
NPC5030
Abstract: NCP5030 RLF7030T-4R7 C2012X5R0J106MT
Text: NCP5030 Product Preview Buck−Boost Converter to Drive a Single LED from 1 Li−Ion or 3 Alkaline Batteries The NCP5030 is a fixed frequency PWM buck−boost converter optimized for constant current applications such as driving high−powered white LED. The buck−boost is implemented in an
|
Original
|
NCP5030
NCP5030/D
NPC5030
RLF7030T-4R7
C2012X5R0J106MT
|
PDF
|
Untitled
Abstract: No abstract text available
Text: Freescale Semiconductor Document Number: AN4716 Rev. 1, 05/2013 Application Note Digital Peak Current Mode Control of Buck Converter Using MC56F8257 DSC by: Raghavan Sampath Contents 1 Introduction As the simplest form of DC-DC converter, the buck converter steps down the input voltage
|
Original
|
AN4716
MC56F8257
|
PDF
|