6542
Abstract: AN805 LS4148 Si6542DQ Si6552DQ Si6801DQ Si9160 si9145 siliconix an805
Text: AN805 PWM Optimized Power MOSFETs for Low-Voltage DC/DC Conversion Andrew Cowell Designers of low-voltage dc-to-dc converters have two main concerns: reducing size and reducing losses. As a way of reducing size, designers are increasing switching frequencies. But the result has been reduced converter
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AN805
LS4148
Si6542DQ
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Si6801DQ
Si9160
si9145
siliconix an805
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AN8053
Abstract: an8053n 5v speaker amplifier t16c 0.5W speaker power amp circuit diagram
Text: AN8053N AN8053N 1.OW Power Amplifier Unit : mm • Description The AN8053N is a monolithic integrated circuit designed for single channel 1W output power amplifier. It is suitable for electronic musical instruments. ■ Features • • • Built-in 5V 80mA voltage regulator
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AN8053N
AN8053N
16-Lead
16-DIP)
bS326S2
32flS2
AN8053
5v speaker amplifier
t16c
0.5W speaker
power amp circuit diagram
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TC54VN4302
Abstract: SOT-89-3 footprint 4570 8 pin ic
Text: AN805 Upgrading the ON Seminconductor MC33x64/34x64 Reset IC Author: Paul Paglia, Microchip Technology, Inc. INTRODUCTION steps across a 1.1V to 6.0V window for ±2% accuracy, and a 1.5V to 6.0V window for ±1% accuracy, providing the designer more flexibility to tailor the reset threshold to system requirements. In
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AN805
MC33x64/34x64
MC33x64
MC34x64
devic00
DS00805A*
0805A-page
TC54VN4302
SOT-89-3 footprint
4570 8 pin ic
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AN8053
Abstract: AN8053N power amp circuit diagram circuit diagram for audio power amp 5v speaker amplifier
Text: A N 8053N AN8053N 1.OW Power Amplifier Unit : mm • Description The AN8053N is a monolithic integrated circuit designed for single channel 1W output power amplifier. It is suitable for electronic musical instruments. ■ Features • • • Built-in 5V 80mA voltage regulator
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AN8053N
AN8053N
16-Lead
16-DIP)
0014Db5
32flS2
AN8053
power amp circuit diagram
circuit diagram for audio power amp
5v speaker amplifier
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microchip
Abstract: SOT23A 508v TC54VN2702 9910 SO 8 Ic 7423 ic 8870 AN805 MC33064 MC33164
Text: AN805 Upgrading the ON Seminconductor MC33x64/34x64 Reset IC Author: Paul Paglia, Microchip Technology, Inc. INTRODUCTION steps across a 1.1V to 6.0V window for ±2% accuracy, and a 1.5V to 6.0V window for ±1% accuracy, providing the designer more flexibility to tailor the reset threshold to system requirements. In
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AN805
MC33x64/34x64
MC33x64
MC34x64
D-81739
DS00805A*
DS00805A-page
microchip
SOT23A
508v
TC54VN2702
9910 SO 8
Ic 7423
ic 8870
AN805
MC33064
MC33164
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AN8050S
Abstract: No abstract text available
Text: — 146 — AN8050S VtT W * — u — ? -c -, • y + v m m . t + 5 v , - 4 .3 V b t\z > . tK i l t Ä Ü ± 5V t i i t l 75' ± 8 0 m A ÿ f f ttT h 9 V ± 5 V tü J ji<£ 50m A , —4.3V ch ÿ j i i 10mA “C áó ^ . 2 & m < D ± s v ( y =? ( r „ = 2 5 C ) V cc
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AN8050S
200mA)
160mA
420mW
55--h
0-200mA
-50mA
-30mA
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Untitled
Abstract: No abstract text available
Text: VOLTAGE REGULATORS AN8050S AN8050S IC fo r CD M ulti R egu lator • Unit : m m O u tlin e T h e A N 8 0 5 0 S is an in t e g r a te d c irc u i t designed fo r CD multi re g u l a t o r . It pro v ides + 5 V and —4.3 V r e g u l a t o r out put as ■ ~m 1 8
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AN8050S
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AN8053
Abstract: AN8053N 5v speaker amplifier Speaker 0.5w 386 amplifier circuit diagram for audio power amp panasonic amplifier
Text: A N 8053N AN8053N 1.OW Power Amplifier Unit : mm • Description The AN8053N is a monolithic integrated circuit designed for single channel 1W output power amplifier. It is suitable for electronic musical instruments. ■ Features • • • Built-in 5V 80mA voltage regulator
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AN8053N
AN8053N
16-Lead
16-DIP)
0014Db5
AN8053
5v speaker amplifier
Speaker 0.5w
386 amplifier
circuit diagram for audio power amp
panasonic amplifier
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70649
Abstract: analysis of PWM converters using model of PWM switch AN805 LS4148 Si6542DQ Si6552DQ Si6801DQ Si9160
Text: AN805 Vishay Siliconix PWM Optimized Power MOSFETs for Low-Voltage DC/DC Conversion Designers of low-voltage dc-to-dc converters have two main concerns: reducing size and reducing losses. As a way of reducing size, designers are increasing switching frequencies. But the result
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70649
analysis of PWM converters using model of PWM switch
AN805
LS4148
Si6542DQ
Si6552DQ
Si6801DQ
Si9160
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AN8050S
Abstract: vo217 v0217
Text: VOLTAGE REGULATORS AN8050S AN8050S IC fo r CD M ulti R egu lator • U nit : m m O u tlin e T h e A N 80 50 S is a n i n t e g r a t e d c ir c u it designed for CD m ulti r e g u l a t o r . It p r o v i d e s + 5V an d —4.3V r e g u l a t o r o u t p u t a s
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AN8050S
AN8050S
200mA
18-Lead
Packag17
vo217
v0217
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80 Hz crossover
Abstract: parallel mosfet N-channel Power MOSFET MOSFET SWITCHING FREQUENCY single HIGH SPEED POWER MOSFET 1000 watt buck converter scheme 6542 analysis of PWM converters using model of PWM switch Cross Reference power MOSFET MOSFET NOTEBOOK
Text: AN805 PWM Optimized Power MOSFETs for Low-Voltage DC/DC Conversion Andrew Cowell Designers of low-voltage dc-to-dc converters have two main concerns: reducing size and reducing losses. As a way of reducing size, designers are increasing switching frequencies. But the result has been reduced converter
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80 Hz crossover
parallel mosfet
N-channel Power MOSFET
MOSFET SWITCHING FREQUENCY
single HIGH SPEED POWER MOSFET
1000 watt buck converter scheme
6542
analysis of PWM converters using model of PWM switch
Cross Reference power MOSFET
MOSFET NOTEBOOK
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Signal Path Designer
Abstract: No abstract text available
Text: Hot Socketing with ispMACH 4A and MACH 5 Devices December 2000 Application Note AN8058 Abstract Lattice provides robust and feature-rich I/O structures in its ispMACH 4A and MACH 5 families of devices. To take advantage of these features, it is helpful to understand the characteristics on both a family basis and a technology basis. This application note describes the Lattice I/O characteristic in hot socketing.
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AN8058
1-800-LATTICE
Signal Path Designer
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Untitled
Abstract: No abstract text available
Text: DS90LT012AH DS90LT012AH High Temperature 3V LVDS Differential Line Receiver Literature Number: SNLS199 DS90LT012AH High Temperature 3V LVDS Differential Line Receiver General Description Features The DS90LT012AH is a single CMOS differential line receiver designed for applications requiring ultra low power
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DS90LT012AH
SNLS199
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Untitled
Abstract: No abstract text available
Text: DS26LV31T DS26LV31T 3V Enhanced CMOS Quad Differential Line Driver Literature Number: SNLS114B DS26LV31T 3V Enhanced CMOS Quad Differential Line Driver General Description The DS26LV31T is a high-speed quad differential CMOS driver that meets the requirements of both TIA/EIA-422-B
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SNLS114B
TIA/EIA-422-B
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AN-214
Abstract: AN-457 AN-805 DS34C86T DS34LV86T DS34LV86TM M16A ta1190
Text: DS34LV86T 3V Enhanced CMOS Quad Differential Line Receiver General Description Features The DS34LV86T is a high speed quad differential CMOS receiver that meets the requirements of both TIA/EIA-422-B and ITU-T V.11. The CMOS DS34LV86T features typical low
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DS34LV86T
TIA/EIA-422-B
AN-214
AN-457
AN-805
DS34C86T
DS34LV86TM
M16A
ta1190
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an214 circuit diagram
Abstract: DS26C31 DS34LV87T DS34LV87TM DS34LV87TN M16A N16A
Text: General Description Features The DS34LV87T is a high speed quad differential CMOS driver that meets the requirements of both TIA/EIA-422-B and ITU-T V.11. The CMOS DS34LV87T features low static ICC of 100 µA max which makes it ideal for battery powered and power conscious applications. The TRI-STATE enable,
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ds012645
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DS34LV87TM
DS34LV87TN
M16A
N16A
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AN-808
Abstract: DS90LT012AQMF DS90LV011AQ MF05A NS Package Number MF05A
Text: DS90LT012AQ Automotive LVDS Differential Line Receiver General Description Features The DS90LT012AQ is a single CMOS differential line receiver designed for applications requiring ultra low power dissipation, low noise, and high data rates. The devices are designed
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AN-808
DS90LT012AQMF
MF05A
NS Package Number MF05A
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AN-805
Abstract: DS26LS31 DS26LS31CN EIA-422 Calculating Power Dissipation
Text: INTRODUCTION In many board and system level designs, it is often necessary to determine the total power dissipated by the individual components of that application. This determination of total device power dissipation is important for two reasons. First, it can be used to select the power supply best suited to satisfy the needs of the application. And second, a power dissipation calculation facilitates the analysis of how the board or
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TIA/EIA-485
an011335
AN-805
DS26LS31
DS26LS31CN
Calculating Power Dissipation
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90LV031A
Abstract: DS90LV031AW-QML LV031ATM
Text: DS90LV031A 3V LVDS Quad CMOS Differential Line Driver General Description Features The DS90LV031A is a quad CMOS differential line driver designed for applications requiring ultra low power dissipation and high data rates. The device is designed to support data
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5962-9865101QFA
DS90LV
031AT
DS90LV031AW
9865101QFA
90LV031A
DS90LV031AW-QML
LV031ATM
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Untitled
Abstract: No abstract text available
Text: DS90LV049 3V LVDS Dual Line Driver with Dual Line Receiver General Description Features The DS90LV049 is a dual CMOS flow-through differential line driver-receiver pair designed for applications requiring ultra low power dissipation, exceptional noise immunity, and
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DS100888
Abstract: DS90LV048ATMTC DS90LV047A DS90LV048A DS90LV048ATM M16A MTC16
Text: DS90LV048A 3V LVDS Quad CMOS Differential Line Receiver General Description Features The DS90LV048A is a quad CMOS flow-through differential line receiver designed for applications requiring ultra low power dissipation and high data rates. The device is designed to support data rates in excess of 400 Mbps 200
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DS100888
DS90LV048ATMTC
DS90LV047A
DS90LV048ATM
M16A
MTC16
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magnetic sensors 8-lead 644
Abstract: LVDS connector 40 pins AN-808 AN-916 AN-971 AN-977 DS90LV027AQ DS90LV028AQMA M08A
Text: DS90LV028AQ Automotive LVDS Dual Differential Line Receiver General Description Features The DS90LV028AQ is a dual CMOS differential line receiver designed for applications requiring ultra low power dissipation, low noise and high data rates. The device is designed to
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DS90LV028AQ
DS90LV027AQ
magnetic sensors 8-lead 644
LVDS connector 40 pins
AN-808
AN-916
AN-971
AN-977
DS90LV028AQMA
M08A
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DS90LV018A
Abstract: DS90LV018ATM M08A
Text: DS90LV018A 3V LVDS Single CMOS Differential Line Receiver General Description Features The DS90LV018A is a single CMOS differential line receiver designed for applications requiring ultra low power dissipation, low noise and high data rates. The device is designed to
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comp959
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M08A
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Untitled
Abstract: No abstract text available
Text: DS90LV028A DS90LV028A 3V LVDS Dual CMOS Differential Line Receiver Literature Number: SNLS013D DS90LV028A 3V LVDS Dual CMOS Differential Line Receiver General Description Features The DS90LV028A is a dual CMOS differential line receiver designed for applications requiring ultra low power dissipation, low noise and high data rates. The device is designed to
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SNLS013D
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