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K2200GH Datasheet

Part Number K2200GH
Manufacturers Littelfuse
Logo Littelfuse
Description High Energy Bidirectional SIDACs
Datasheet K2200GH DatasheetK2200GH Datasheet (PDF)

Kxxx0yH Series Teccor® brand Thyristors High Energy Bidirectional SIDACs RoHS Schematic Symbol Description The new Kxxx0yH is a higher energy SIDAC switch for gas ignition applications requiring higher current pulse current especially at low repetition rate. It is offered in a DO-15 and TO-92 leaded packages as well as DO-214 surface mount package. Voltage activation of this solid state switch is accomplished with peak voltage level of 190 to 280Volts. The SIDAC is a silicon bilateral voltag.

  K2200GH   K2200GH






Part Number K2200GHU
Manufacturers Littelfuse
Logo Littelfuse
Description High Energy Unidirectional SIDACs
Datasheet K2200GH DatasheetK2200GHU Datasheet (PDF)

K2xx0yHU Series Teccor® brand Thyristors High Energy Unidirectional SIDACs RoHS Schematic Symbol K A Description The new K2xx0yHU is a higher energy SIDAC switch for gas ignition applications requiring higher current pulse current especially at low repetition rate. It is offered in a DO-15 leaded package and DO-214AA surface mount package. Voltage activation of this solid state switch is accomplished with peak voltage level of 190 to 260Volts. The SIDAC is a silicon bilateral voltage trigge.

  K2200GH   K2200GH







Part Number K2200G
Manufacturers Sunmate
Logo Sunmate
Description Axial Leaded Silicon Bilateral Voltage Triggered
Datasheet K2200GH DatasheetK2200G Datasheet (PDF)

K0900G - K2600G Axial Leaded Silicon Bilateral Voltage Triggered Features · Excellent capability of absorbing transient surge · Quick response to surge voltage (ns Level) · Glass passivated junctions · High voltage lcmp ignitors Mechanical Data · Case : DO-15 Molded plastic · Epoxy : UL94V-O rate flame retardant · Lead : Axial lead solderable per MIL-STD-202, Method 208 guaranteed · Polarity : Color band denotes cathode end · Mounting position : Any · Weight : 0.465 gram A B A Functional Di.

  K2200GH   K2200GH







Part Number K2200G
Manufacturers JIEJIE
Logo JIEJIE
Description Sidac
Datasheet K2200GH DatasheetK2200G Datasheet (PDF)

JIEJIE MICROELECTRONICS CO. , Ltd K0900G Series Sidac Rev.1.0 DESCRIPTION: The sidac is a silicon bilateral voltage triggered switch with greater power-handling capabilities than standard diacs. Upon application of a voltage exceeding the sidac breakover voltage point, the sidac switches on through a negative resistance region to a low on-state voltage. Conduction continues until the current is interrupted or drops below the minimum holding current of the device. APPLICATIONS:  High-voltage.

  K2200GH   K2200GH







High Energy Bidirectional SIDACs

Kxxx0yH Series Teccor® brand Thyristors High Energy Bidirectional SIDACs RoHS Schematic Symbol Description The new Kxxx0yH is a higher energy SIDAC switch for gas ignition applications requiring higher current pulse current especially at low repetition rate. It is offered in a DO-15 and TO-92 leaded packages as well as DO-214 surface mount package. Voltage activation of this solid state switch is accomplished with peak voltage level of 190 to 280Volts. The SIDAC is a silicon bilateral voltage triggered Thyristor switch that switches on through a negative resistance region to a low on-state voltage. Conduction will continue until current is interrupted or lowered below minimum holding current of the device. Features • A C Circuit Oriented • T riggering Voltage of 190 to 280V • 2 80A Pulse Current Capability • RoHS Compliant Applications Suitable for high voltage power supplies, natural gas igniters, and Xenon flash ignition. Electrical Specifications (TJ = 25°C, unless otherwise specified) Symbol VBO VDRM IT(RMS) VTM IH Parameters Breakover/Trigger Voltage Repetitive Peak Off-state Voltage On-state RMS Current Peak On-state Voltage Dynamic Holding Current Test Conditions K2000yH K2200yH K2400yH K2500yH K2000yH K2200yH K2400yH K2500yH 50/60Hz, TJ < 125°C IT = 1A RL = 100Ω 50/60Hz Sine Wave RS Switching Resistance, RS= (_V_B_O__–_V_S_) (IS – IBO) IBO ITRM di/dt dv/dt TS TJ Breakover Current Peak Repetitive Pulse Current (refer to figure 4) Critical Rate.


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