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    RC TRIGGERING CIRCUIT Search Results

    RC TRIGGERING CIRCUIT Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    TLP2701 Toshiba Electronic Devices & Storage Corporation Photocoupler (photo-IC output), 5000 Vrms, 4pin SO6L Visit Toshiba Electronic Devices & Storage Corporation
    74HC4053FT Toshiba Electronic Devices & Storage Corporation CMOS Logic IC, SPDT(1:2)/Analog Multiplexer, TSSOP16B, -40 to 125 degC Visit Toshiba Electronic Devices & Storage Corporation
    74HC4051FT Toshiba Electronic Devices & Storage Corporation CMOS Logic IC, SP8T(1:8)/Analog Multiplexer, TSSOP16B, -40 to 125 degC Visit Toshiba Electronic Devices & Storage Corporation
    TCKE800NA Toshiba Electronic Devices & Storage Corporation eFuse IC (electronic Fuse), 4.4 to 18 V, 5.0 A, Auto-retry, WSON10B Visit Toshiba Electronic Devices & Storage Corporation
    TCKE800NL Toshiba Electronic Devices & Storage Corporation eFuse IC (electronic Fuse), 4.4 to 18 V, 5.0 A, Latch, WSON10B Visit Toshiba Electronic Devices & Storage Corporation

    RC TRIGGERING CIRCUIT Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    interposing relay

    Abstract: 120v interposing relay relay snubber AC triac RC snubber LED triac with snubber weidmuller relay triac catalog 220VAC SPDT RELAY snubber relay triac RC snubber
    Text: Datasheet R S H V- A C I n t e r p o s i n g R e l a y with Leakage Current Immunity The RSHV-AC was designed for applications using PLC triac outputs. Typically a triac is used with an RC circuit a “snubber” in parallel. The snubber protects the triac from false triggering


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    PDF 12AWG interposing relay 120v interposing relay relay snubber AC triac RC snubber LED triac with snubber weidmuller relay triac catalog 220VAC SPDT RELAY snubber relay triac RC snubber

    triac RC snubber

    Abstract: z0103 equivalent triac snubber RC snubber thyristor design RC snubber circuit triac with snubber triac snubber varistor RC snubber diode Triac Z0109 Snubber circuit Design
    Text: AN437 Application note RC snubber circuit design for TRIACs Introduction When a TRIAC controls inductive loads, the mains voltage and the load current are not in phase. To limit the slope of the reapplied voltage and ensure right TRIAC turn-off, designer usually used a snubber circuit connected in parallel with the TRIAC. This circuit can also be


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    PDF AN437 triac RC snubber z0103 equivalent triac snubber RC snubber thyristor design RC snubber circuit triac with snubber triac snubber varistor RC snubber diode Triac Z0109 Snubber circuit Design

    Untitled

    Abstract: No abstract text available
    Text: SEMISTACK - Thyristor Circuit B6C 2I Id / Irms 730 Symbol Id (B6C)2I Tamb = 35 °C Irms W1C °C Tamb = Presspack Stack 1) 2 six-pulse bridge rectifier in anti-parallel - 2 it (di/dt)cr (dv/dt)cr VGT IGT Rthja SKKT 430/20E H4 P 16/460mm 2) Features Cooling


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    PDF 430/20E 16/460mm 60Hz/1min. BK75-170M6340

    transformer winding formula

    Abstract: BTA08-700CW triac pulse train triggering triac drive circuit pulse transformer BZW04-376BT TRIAC TRIGGER PULSE TRANSFORMER TRIAC EQUIVALENT triac control circuit with pulse transformer triac EQUIVALENT circuit gate drive pulse transformer
    Text: APPLICATION NOTE  TRIAC CONTROL BY PULSE TRANSFORMER Ph. RABIER Among the many ways to drive a triac the pulse transformer is one of the easiest. By applying some simple rules it can be used to design an efficient triac triggering circuit without reduction


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    triac drive circuit pulse transformer

    Abstract: transformer winding formula triac pulse train triggering BTA08-700CW gate pulse transformer triac drive circuit triac triggering gate drive pulse transformer triac gate drive circuit triac control circuit with pulse transformer
    Text: APPLICATION NOTE  TRIAC CONTROL BY PULSE TRANSFORMER Ph. RABIER Among the many ways to drive a triac the pulse transformer is one of the easiest. By applying some simple rules it can be used to design an efficient triac triggering circuit without reduction


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    circuit diagram heating triac

    Abstract: BT134/triac applications circuit diagram
    Text: IES5521A Simple Zero-Crossing Triac Control Circuit with Adjustable Time-out 1 3 FEATURES • Time-out function stops triac operation after a set time The IES5521A is a derivative of the OM1654A, but offering the extra safety feature of a nominal 1 hour time-out. This


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    PDF IES5521A IES5521A OM1654A, circuit diagram heating triac BT134/triac applications circuit diagram

    9 pin Power window relay

    Abstract: "Window Discriminator" U2101B window comparator "IR Sensor" BZX85 C27 op2314 BYT56 BZX85 window discriminator
    Text: U2101B Relay Timer Description The U2101B monolithic integrated bipolar circuit is a versatile timer device for relay control. Because of two integrated, freely configurable operational amplifiers, it covers a very wide range of applications. Features Applications


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    PDF U2101B U2101B DIP16, D-74025 30-May-96 9 pin Power window relay "Window Discriminator" window comparator "IR Sensor" BZX85 C27 op2314 BYT56 BZX85 window discriminator

    "Window Discriminator"

    Abstract: window discriminator op2314 U2101B 9 pin Power window relay BZX85 BYT56 long deLAY ic timer relay
    Text: U2101B TELEFUNKEN Semiconductors Relay Timer Description The U2101B monolithic integrated bipolar circuit is a versatile timer device for relay control. Because of two integrated, freely connectable operational amplifiers, it covers a very wide range of applications.


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    PDF U2101B U2101B D-74025 "Window Discriminator" window discriminator op2314 9 pin Power window relay BZX85 BYT56 long deLAY ic timer relay

    TRIAC mw 134 600E

    Abstract: OM1654 BT137 application example mw 134 600e TRANSISTOR c 5521 diagram circuit toaster BT134-600E bt134 phase control BT137 application note TRANSISTOR bt134
    Text: IES5521A Simple Zero-Crossing Triac Control Circuit with Adjustable Time-out 1 3 FEATURES • Time-out function stops triac operation after a set time The IES5521A is a derivative of the OM1654A, but offering the extra safety feature of a nominal 1 hour time-out. This


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    PDF IES5521A IES5521A OM1654A, TRIAC mw 134 600E OM1654 BT137 application example mw 134 600e TRANSISTOR c 5521 diagram circuit toaster BT134-600E bt134 phase control BT137 application note TRANSISTOR bt134

    TRIAC mw 134 600E

    Abstract: diagram circuit toaster BT137 application example TRIAC control circuit bt137 sample diagram rice cooker IES5523A bt137 thermistor ies5523 mw 134 600e
    Text: IES5523A Simple Zero-Crossing Triac Control Circuit with Adjustable Time-out 1 3 FEATURES • Time-out function stops triac operation after a set time The IES5523A is a derivative of the IES5521A, but replacing the PWR pin with a timeout indicator signal. The


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    PDF IES5523A IES5523A IES5521A, TRIAC mw 134 600E diagram circuit toaster BT137 application example TRIAC control circuit bt137 sample diagram rice cooker bt137 thermistor ies5523 mw 134 600e

    transformer winding formula

    Abstract: 12v transformer winding formula Triac GK Series introduction of pulse transformer BTA08-700CW gate drive pulse transformer triac drive circuit pulse transformer BZW04-376BT transformer 220V 12V 8A transformer 220V to 12V
    Text: AN436 APPLICATION NOTE TRIAC CONTROL BY PULSE TRANSFORMER INTRODUCTION Among the many ways to drive a triac the pulse transformer is one of the easiest. By applying some simple rules it can be used to design an efficient triac triggering circuit without reduction of the commutation capability of the triac.


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    PDF AN436 transformer winding formula 12v transformer winding formula Triac GK Series introduction of pulse transformer BTA08-700CW gate drive pulse transformer triac drive circuit pulse transformer BZW04-376BT transformer 220V 12V 8A transformer 220V to 12V

    triac RC snubber

    Abstract: all types of triac Triacs Triacs equivalent triac gate drive circuit triac gate control circuits triac commutation microcontroller triac control Ignition Transformer philips BTA204W
    Text: Philips Semiconductors’ range of three-quadrant 3Q triacs simplifies the electronic-control circuitry required for electrical appliances with non-resistive loads, e.g. motor-control circuitry in vacuum cleaners, washing machines, etc. Compared with standard (four-quadrant,


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    PDF OT428) OT404) OT186A O220AB) O220AB BTA204X BTA208X BTA208X2) BTA212X triac RC snubber all types of triac Triacs Triacs equivalent triac gate drive circuit triac gate control circuits triac commutation microcontroller triac control Ignition Transformer philips BTA204W

    dimmer diagrams IGBT

    Abstract: zero crossing dimmer igbt triac phase control twilight switch circuit zero crossing detector mosfet NATIONAL IGBT DATA BOOK Light-Dependent Resistor IBGT 3 phase rectifier circuit diagram igbt 3 pins LDR Datasheet
    Text: U2102B Multifunction Timer Description The monolithic integrated bipolar circuit U2102B is an MOSFET or IGBT control circuit which allows realization of an extremely wide range of timer and dimmer functions. The integrated current monitoring function additionally permits the power switch to be


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    PDF U2102B U2102B D-74025 30-May-96 dimmer diagrams IGBT zero crossing dimmer igbt triac phase control twilight switch circuit zero crossing detector mosfet NATIONAL IGBT DATA BOOK Light-Dependent Resistor IBGT 3 phase rectifier circuit diagram igbt 3 pins LDR Datasheet

    BUV56A

    Abstract: TEA5170 SMPS SCHEMATIC DIAGRAM 12 Volt china tv schematic diagram bc547c w 68 BY218-600 PLR811 TEA2164 CSF 77 49 PWM basic principle
    Text: TEA5170 SWITCH MODE POWER SUPPLY SECONDARY CIRCUIT . . . . . . INTERNAL PWM SIGNAL GENERATOR POWER SUPPLY WIDE RANGE 4.5V – 14.5V SOFT START REFERENCE VOLTAGE 2V ± 5% WIDE FREQUENCY RANGE 250kHz MINIMUM OUTPUT PULSE WIDTH 500nS MAXIMUM PRESET DUTY CYCLE


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    PDF TEA5170 250kHz 500nS 64kHz TEA5170 TEA2260/61 BUV56A SMPS SCHEMATIC DIAGRAM 12 Volt china tv schematic diagram bc547c w 68 BY218-600 PLR811 TEA2164 CSF 77 49 PWM basic principle

    AND8017

    Abstract: 3 phase motor starter using triac Automatic AC Line Voltage
    Text: CHAPTER 1 Theory and Applications Sections 1 thru 9 Page Interfacing Digital Circuits to Thyristor Controlled AC Loads . . . . . . . . . . . . . . . . . . . . . . . . 125 DC Motor Control with Thyristors . . . . . . . . . . . . . . . 134 Programmable Unijunction Transistor PUT


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    BY218

    Abstract: BUV56A TEA2164 TEA5170 input 12v output 6-9 volt BY-218 bc547c w 68 philips capacitor 250V 220uf SGS-Thomson BA159 philips capacitor 1000uf 25V
    Text: TEA5170 SWITCH MODE POWER SUPPLY SECONDARY CIRCUIT . . . . . . INTERNAL PWM SIGNAL GENERATOR POWER SUPPLY WIDE RANGE 4.5V – 14.5V SOFT START REFERENCE VOLTAGE 2V ± 5% WIDE FREQUENCY RANGE 250kHz MINIMUM OUTPUT PULSE WIDTH 500nS MAXIMUM PRESET DUTY CYCLE


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    PDF TEA5170 250kHz 500nS 64kHz TEA5170 TEA2260/61 BY218 BUV56A TEA2164 input 12v output 6-9 volt BY-218 bc547c w 68 philips capacitor 250V 220uf SGS-Thomson BA159 philips capacitor 1000uf 25V

    m26123

    Abstract: monostable multivibrator using 74123 time delay circuit for ic 74123 application circuits of ic 74123 internal configuration of ic 74123 IC 7400 diagram and truth table ic 74123 74123 74123 time delay 74123 Diagram
    Text: Am26123*Am54/74123 Dual Retriggerable Resettable Monostable Multivibrator inctive Characteristics tetriggerable 0 to 100% duty cycle. Ons to °° output pulse width range. • Am 26123 outputs immune to noise triggering the monostable at the RC timing nodes.


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    PDF Am26123 Am54/74123 m26123 MIL-STD-883. monostable multivibrator using 74123 time delay circuit for ic 74123 application circuits of ic 74123 internal configuration of ic 74123 IC 7400 diagram and truth table ic 74123 74123 74123 time delay 74123 Diagram

    XR320P

    Abstract: XR-320P XR-320 XR320 EXAR XR IC TIMER ASTABLE HIGH FREQUENCY XR
    Text: Z * EX4R XR-320 Monolithic Timing Circuit FUNCTIONAL BLOCK DIAGRAM GENERAL DESCRIPTION The XR-320 monolithic timing circuit is designed for use in instrumentation and digital communications equip­ ment, and for a wide variety of industrial control and special testing applications. In many cases, this circuit


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    PDF XR-320 XR-320 XR320P XR-320P XR320 EXAR XR IC TIMER ASTABLE HIGH FREQUENCY XR

    Untitled

    Abstract: No abstract text available
    Text: £ = 7 SCS-THOMSON H H r a M 0 g§ TE A 5170 SWITCH MODE POWER SUPPLY SECONDARY CIRCUIT • ■ ■ ■ ■ ■ ■ » ■ » ■ INTERNAL PWM SIGNAL GENERATOR POWER SUPPLY WIDE RANGE 4 .5 V - 14.5V SOFT START REFERENCE VOLTAGE 2V ± 5% WIDE FREQUENCY RANGE 250kHz


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    PDF 250kHz 500nS 64kHz TEA5170 TEA5170 TEA2164 orTEA2260/61

    TEA5170

    Abstract: synchro amplifier schematic SMPS SCHEMATIC DIAGRAM 12 Volt smps isolated 12v output pulse generator 70 duty cycle internaly TEA2164
    Text: rZ J SGS-THOMSON TE A 5170 SWITCH MODE POWER SUPPLY SECONDARY CIRCUIT • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ INTERNAL PWM SIGNAL GENERATOR POWER SUPPLY WIDE RANGE 4.5V - 14.5V SOFT START REFERENCE VOLTAGE 2V ± 5% WIDE FREQUENCY RANGE 250kHz MINIMUM OUTPUT PULSE WIDTH 500nS


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    PDF 250kHz 500nS 64kHz TEA5170 TEA2164 TEA2260/61 TEA5170 synchro amplifier schematic SMPS SCHEMATIC DIAGRAM 12 Volt smps isolated 12v output pulse generator 70 duty cycle internaly

    XR-2242CP

    Abstract: ASTABLE TIMER 2242CP XR2242 rc triggering circuit xr2242cp 2242 XR-1488 XR-1489A XR-2242CN
    Text: EX4R XR-2242 Long Range Timer FUNCTIONAL BLOCK DIAGRAM GENERAL DESCRIPTION The XR-2242 is a monolithic timer/controller capable of producing ultra-long time delays from milliseconds to days. "Kvo timing circuits can be cascaded to generate time delays or timing intervals up to one year. The cir­


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    PDF XR-2242 XR-2242 XR-1489AP XR-1488 XR-1489A RS232C RS232Cto XR-2242CP ASTABLE TIMER 2242CP XR2242 rc triggering circuit xr2242cp 2242 XR-2242CN

    XR-2242CP

    Abstract: 2242cp XR-2242 timer XR2242CP Exar 2242 XR2242 XR-2242 XR-2242CN XR2242CN Sequential Timing
    Text: Zer EX4R XR-2242 Long Range Timer GENERAL DESCRIPTION FUNCTIONAL BLOCK DIAGRAM The XR-2242 is a monolithic tim er/controller capable of producing ultra-long time delays from milliseconds to days. Two timing circuits can be cascaded to generate time delays or timing intervals up to one year. The cir­


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    PDF XR-2242 XR-2242 XR-1489AP XR-1488 XR-1489A RS232C RS232Cto XR-2242CP 2242cp XR-2242 timer XR2242CP Exar 2242 XR2242 XR-2242CN XR2242CN Sequential Timing

    XR320P

    Abstract: XR-320P XR-320 sl 1489a XR-1488 XR-1488N XR-1488P XR-1489A ej3m xr320
    Text: Z * EX4R XR-320 Monolithic Timing Circuit FUNCTIONAL BLOCK DIAGRAM GENERAL DESCRIPTION X R -3 2 0 The XR-320 monolithic timing circuit is designed for use in instrumentation and digital communications equip­ ment, and for a wide variety of industrial control and


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    PDF XR-320 XR-320 XR-1489AP XR-1488 XR-1489A RS232C XR320P XR-320P sl 1489a XR-1488N XR-1488P ej3m xr320

    XR558

    Abstract: XR558CP 558CP XR-558CP xr 558 XR-558 XR-559 XR559CP XR-559CP 559CP
    Text: Z *E X flR XR-558/559 Quad Timing Circuits FUNCTIONAL BLOCK DIAGRAM GENERAL DESCRIPTION The XR-558 and the XR-559 quad tim ing circuits con­ tain four independent tim er sections on a single m ono­ lithic chip. Each of the tim er sections on the chip are


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    PDF XR-558 XR-559 ouS232C XR-1488 RS232C XR-1489A XR558 XR558CP 558CP XR-558CP xr 558 XR559CP XR-559CP 559CP