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4N35DCJ Texas Instruments 4N35 Optocoupler visit Texas Instruments
TIL186 Texas Instruments TIL186 AC-Input Optocouplers visit Texas Instruments
TIL919C Texas Instruments TIL919C Quad-Channel Optocoupler/Optoisolator visit Texas Instruments
4N26 Texas Instruments Optocoupler 6-PDIP visit Texas Instruments
HCPL2601 Texas Instruments Optocoupler/Optoisolator 8-PDIP visit Texas Instruments
MOC3020 Texas Instruments Optocoupler/Optoisolator 6-PDIP visit Texas Instruments

motorola optocoupler

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motorola optocoupler

Abstract: TNY254P LTV817 1N5237B Fair-Rite RCD Philips Philips Custom Power Integrations Liteon Motorola Optocoupler 8.2 V 5% Zener * For transformer sources, please visit the Power Integrations website at , optocoupler operates in switching rather than in linear mode. Therefore the current transfer ratio is not a critical factor as long as the optocoupler provides enough current (50 µA) to activate the ENABLE pin of the TinySwitch. This allows a low cost ungraded optocoupler to be used. For 115 V applications, 200
Power Integrations
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TNY254 motorola optocoupler TNY254P EE16 10 pin bobbin datasheet EE16 10 pin bobbin transformers tdk ee16 pc40 bobbin core EEL16 transformer PI-2252-091098

EE40 core

Abstract: schematic diagram cga to vga converter (s). Shutdown or foldback signal(s) can be fed to the UC3842A/3843A by a Motorola optocoupler. To , MOTOROLA SEMICONDUCTOR APPLICATION NOTE Order this document by AN1080/D AN1080 , , Motorola Semiconductors Ltd. Cheng Kim Tung (K.T, Cheng) is an undergraduating student of H.K. Polytechnic. His period in Discrete Business of Motorola Semiconductors H.K. Ltd. was from 1st of September, 1988 to 31st of August, 1989. S.K. Tong is Cheng's industrial training supervisor. ©MOTOROLA INC., 1990
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EE40 core schematic diagram cga to vga converter 464wp H7C4 BU508 TRANSISTOR equivalent uc3843a power source schematic MJE18004 MOC8102 08Q/D

CNY17GF-2

Abstract: motorola optocoupler physical dimensions, part numbers and operating characteristics for optocoupler components. The following , specifications on the opposite page. 1. 2. 3. 4. C ircuit Diagram : Schematic representation of optocoupler circuit. Product Description: Specific type of optocoupler product. P a rt Num ber and S pecification , includes parts that are manufactured on both the former Motorola line and the QT line. Therefore, there are two types of package drawings; "K " for QT package and "J" for the former Motorola package. VDE
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CNY17GF-2 CNW82 optocoupler 4N25 VDE mot schematic 4n25 0884 qt CNY17-1 CNY17F-1 MOC119 MOC8020

Optocoupler MOC 3020

Abstract: optotriac moc3021 MOTOROLA SEMICONDUCTOR TECHNICAL DATA AN1048 RC Snubber Networks For Thyristor Power , 1.6­68 Motorola Optoelectronics Device Data AN1048 IMPROVING dV dt s Static dV can be improved , . Breakdown turn-on does dt not have this benefit and should be prevented. Motorola Optoelectronics , because of prior conduction (Figure 9). The charge at the boundaries of Motorola Optoelectronics , To Normalized Voltage Figure 6.10. TRIAC Current and Voltage at Commutation Motorola
Motorola
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Optocoupler MOC 3020 optotriac moc3021 MOC3011 optocoupler motorola 5A optocoupler MOC ic moc 3021 triac MAC 120 G MOC3011 MOC3021 EB-101 AN982

NAIS 210 RELAY

Abstract: Transistor D 2494 1. DIODE OPTOCOUPLERS 1.1 176 8 DIP-8 Differencial optocoupler . , V o V iso Package Type (A) (V) (V) 2 DIP-4 5 Photovoltaic optocoupler 4000 8 Ki U CTR VCO Type 100 1,6 - Diode optocoupler without package 2931 , ) mA Equivalent Circuit Diode optocoupler 1.3. .008 Features 130 .008 2-10 , optocoupler min t .0, 1 t . 1,0 tPLH tPHL R max RL () (µs) 80 . . Super high
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SFH610-1 HCPL135 NAIS 210 RELAY Transistor D 2494 Optocouplers hp 4100 NAIS 210 optocouplers nais 210 optocoupler HP 4100 PC813 PC814 PC824 PC829 PLA110 2931B

SPWM pspice

Abstract: AN1683 conversion ratio, SPWM. 2 Motorola Applications Data First case: the optocoupler is alone This is , MOTOROLA SEMICONDUCTOR APPLICATION NOTE Order this document by AN1692/D Christophe BASSO MOTOROLA SPS, Toulouse Center Avenue Eisenhower, BP1029, 31023 TOULOUSE Cedex France 33 (0)5 61 19 90 12 , battery chargers, fax machines etc. Thanks to the recent introduction of MOTOROLA Very High Voltage , conversion takes place: Motorola Applications Data © Motorola, Inc. 1999 1 From opto From opto Gain
Motorola
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SPWM pspice AN1683 MC3337X MC33374 "pin compatible" optocoupler spice model TL431 note R38010 AN1692 MC33370

2N3568

Abstract: optocoupler pnp optocoupler requires more current, voltage, or both, than an optocoupler can provide at its output. Figure 1. NPN driver VCC Available optocoupler output current is found by multiplying input (LED , Obviously, one can increase the available output current either by choosing a higher CTR-rated optocoupler , dissipation are needed. A Motorola MJE3055 might be used for the output transistor, driven by a MJE205 as , . Rb Figure 5. PNP current booster / g Rb Io Since the transistor in the optocoupler is
Infineon Technologies
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2N3568 2N3638 optocoupler pnp 2N3638 transistor Motorola transistors MJE3055 optocoupler NPN optocoupler pnp or npn 1-888-I

opto-coupler darlington pnp

Abstract: 2N3568 optocoupler requires more current, voltage, or both, than an optocoupler can provide at its output. sistor , 1.2 volts. Figures 1 and Figure 2 show two such drive circuits. Available optocoupler output , available output current either by choosing a higher CTR-rated optocoupler or by providing more current , needed. A Motorola MJE3055 might be used for the output transistor, driven by a MJE205 as shown in , in the optocoupler is treated as a two-terminal device, no operational difference exists between the
Siemens
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opto-coupler darlington pnp OPTOCOUPLER HAND BOOK transistor current booster circuit pnp phototransistor mje3055 data transistor MJE3055

opto-coupler darlington pnp

Abstract: 2n3568 ) Frequently a load to be driven by an optocoupler requires more current, voltage, or both, than an optocoupler can provide at its output. Available optocoupler output current is found by multiplying input , a higher CTR-rated optocoupler or by providing more current, or both. Table 2 shows the minimum , cascade. For example, suppose 3 A load current and 10 W dissipation are needed. A Motorola MJE3055 might , Figure 5. PNP current booster Since the transistor in the optocoupler is treated as a two-terminal
Vishay Semiconductors
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optocoupler base resistor optocoupler drive relay motorola mje3055 relay driver circuit using transistor 124 OPTOCOUPLER SN7440

opto-coupler darlington pnp

Abstract: transistor current booster circuit optocoupler requires more current, voltage, or both, than an optocoupler can provide at its output. Available optocoupler output current is found by multiplying input (LED section) current by the "CTR" or , Obviously, one can increase the available output current either by choosing a higher CTR-rated optocoupler , current and 10 watt dissipation are needed. A Motorola MJE3055 might be used for the output transistor , the optocoupler is treated as a two-terminal device, no operational difference exists between the NPN
Vishay Intertechnology
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k 2750 transistor 12 volt dc operated power led circuit TRANSISTOR FOR LED 6 VOLT 210 optocoupler K39 2 GATE darlington transistor power

motorola optocoupler

Abstract: MOC256 MOTOROLA Order this document by MOC256/D SEMICONDUCTOR TECHNICAL DATA AC Input Phototransistor Small Outline Surface Mount Optocoupler MOC256 Motorola Preferred Device The MOC256 is an AC input phototransistor optocoupler. The device consists of two infrared emitters connected in , are Motorola recommended choices for future use and best overall value. REV 2 ©MotorolaInc. 1998 Motorola, Optoelectronics Device Data 1 MOC256 ELECTRICAL CHARACTERISTICS (TA = 25°C unless
Motorola
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RS481A Infrared emitter soic8 footprint E54915

motorola optocoupler

Abstract: MOC256 MOTOROLA Order this document by MOC256/D SEMICONDUCTOR TECHNICAL DATA AC Input Phototransistor Small Outline Surface Mount Optocoupler MOC256 Motorola Preferred Device The MOC256 is an AC input phototransistor optocoupler. The device consists of two infrared emitters connected in , between input and output is 0.5 mm. Preferred devices are Motorola recommended choices for future use and best overall value. REV 1 ©MotorolaInc. 1995 Motorola, Optoelectronics Device Data 1
Motorola
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MOC256

Abstract: RS481A MOTOROLA SEMICONDUCTOR q TECHNICAL Order this document by MOC256/D DATA AC input Phototransistor Small Outline Surface Mount Optocoupler Motorole Preferred Dey~ce The MOC256 is an AC input phototransistor optocoupler. The device consists of two infrared emitters connected in anti­parallel and coupled , , and Pins 4, 5 and 6 are common. Preferred devices are Motorola recommended choices for future use and best overall value. - MOTOROLA @ Motorola, Inc. 1994 @ 5 ELECTRICAL
Motorola
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moc2561d MK145BP M070ROLA 2PHX34222P-3 MOC2561D

MOC256

Abstract: MOTOROLA SEMICONDUCTOR TECHNICAL DATA AC Input Phototransistor Small Outline Surface Mount Optocoupler T h e M O C 256 is an A C inp u t pho totran sisto r optocoupler. The device consists of tw o , .050 inches MOC256 Motorola Preferred Device S M A L L O U TL IN E O PTO IS O LA TO R S A C IN , > 0.5 mm. Preferred devices are Motorola recommended choices for future use and best overall value. REV 1 Motorola Optoelectronics Device Data _ 6 -1 5 MOC256 E LE C TR IC A L C H
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RS481

optocoupler crossreference

Abstract: fairchild optocoupler cross reference AC Input Phototransistor Small Outline Surface Mount Optocoupler The MOC256 is an AC input phototransistor optocoupler. The device consists of two infrared emitters connected in anti­parallel and coupled , input phototransistor New products optocoupler. The device consist of two infrared Product selection and , Fairchild Semiconductor Last updated: April 7, 2002 space Former Motorola Products Now Supplied by , comparison Dotted line Request samples Dotted line Buy products Dotted line Optocoupler products Dotted line
Fairchild Semiconductor
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optocoupler crossreference fairchild optocoupler cross reference MOTOROLA Cross Reference Search H11AA2M H11AA1M E90700 H11A1-M H11AA1-M H11AA2-M H11AA2 H11AA1

thyristor firing control circuit with optocoupler

Abstract: rc Snubber circuits theory, design and application REVERSE S4 AND VCC TO CHECK OPPOSITE POLARITY. (b) Optocoupler Gate Circuit Figure 6.11. Motorola , MOTOROLA SEMICONDUCTOR TECHNICAL DATA AN1045 Series Triacs In AC High Voltage Switching , Quadrant 3. When the optocoupler turns on, gate current flows until the triacs latch. At that time, the , of the gate current. Optocoupler surge or triac gate ratings determine the minimum resistance value. For example, when the maximum optocoupler I TSM rating is 1 A: u+ VpeakImax R g + 750 V1 A + 750
Motorola
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thyristor firing control circuit with optocoupler rc Snubber circuits theory, design and application thyristor applications Snubber circuits theory, design and application U OPTOCOUPLER for thyristor gate OPTOCOUPLER thyristor T106-6 MKP1V130
Abstract: MOTOROLA Order this document by MOC256/D SEMICONDUCTOR TECHNICAL DATA AC Input Phototransistor Sm all O utline Surface Mount Optocoupler MOC256 M otorola Preferred Device The MOC256 is an AC input phototransistor optocoupler. The device consists of two infrared emitters connected in , best overall value. RFV ? >M otorola, Inc. 1998 MOTOROLA MOC256 ELECTRICAL CHARACTERISTICS , . Motorola Optoelectronics Device Data MOC256 Vin> INPUT VOLTAGE (VOLTS) TYPICAL CHARACTERISTICS -
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MOC256

Abstract: MOTOROLA SEMICONDUCTOR TECHNICAL DATA O rder this docum ent by M OC256/D AC Input Phototransistor Sm all O utline Surface Mount Optocoupler The MOC256 is an AC input phototransistor optocoupler , choices fo r future use and best overall value. REV 2 © M otorola, Inc. 1998 (M) MOTOROLA M , test, pins 1 and 2 are comm on, and pins 5, 6 and 7 are common. 2 Motorola Optoelectronics Device , ) Figure 5. Dark Current versus Ambient Temperature Figure 6. Capacitances versus Voltage Motorola
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OC256

inverter PURE SINE WAVE schematic diagram

Abstract: inverter PURE SINE WAVE schematic 16 Order this document by AN1857/D Motorola Semiconductor Application Note AN1857 A 3 , Motorola Microcontroller Division Austin, Texas Software Written By: Radim Visinka, Petr Lidak, Pavel , overall performance. This application note describes such a system based on the Motorola MC68HC908MR32 , software to control a 3-phase induction motor is presented. © Motorola, Inc., 2000 AN1857 , midrange motor control applications. The Motorola HC08 Family of MCUs is an enhanced, upward object code
Motorola
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inverter PURE SINE WAVE schematic diagram inverter PURE SINE WAVE schematic PURE SINE WAVE inverter schematic diagram Schematic Diagram 3 phase generator brush dc motor speed pi control using pwm and opamp pure sine inverter schematic diagram M68HC08 M68HC0

inverter PURE SINE WAVE schematic diagram

Abstract: PURE SINE WAVE inverter schematic diagram Freescale Semiconductor, Inc. 16 Order this document by AN1857/D Motorola Semiconductor , Based on the MC68HC908MR32 By: Bill Lucas and Ken Berringer Motorola Microcontroller Division Austin , application note describes such a system based on the Motorola MC68HC908MR32 (MR32) motor control specific , -phase induction motor is presented. © Motorola, Inc., 2000 AN1857 For More Information On This Product , . Freescale Semiconductor, Inc. The Motorola HC08 Family of MCUs is an enhanced, upward object code
Motorola
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transistor D401 dc to ac inverter schematic diagram 3 phase sine wave pwm c source code motorola SEMICONDUCTOR APPLICATION NOTE POWER AMP 3 phase inverter schematic diagram pic ac motor ac motor speed control circuit diagram with IGBT
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