3KP180C Datasheet and Specifications PDF

The 3KP180C is a 3000 Watt Axial Lead TVS.

Key Specifications

Max Operating Temp150 °C
Min Operating Temp-55 °C

3KP180C Datasheet

3KP180C Datasheet (GW)

GW

3KP180C Datasheet Preview

3KP SERIES 3000 WATT PEAK POWER TRANSIENT VOLTAGE SUPPRESSORS FEATURES * 3000 Watts Surge Capability at 1ms * Excellent clamping capability * Low zener impedance * Fast response time: Typically less.

* 3000 Watts Surge Capability at 1ms * Excellent clamping capability * Low zener impedance * Fast response time: Typically less than 1.0ps from 0 volt to BV min. * Typical IR less than 1 A above 10V VOLTAGE RANGE 5.0 to 440 Volts 3000 Watts Peak Power R-6 .360(9.1) .340(8.6) DIA. 1.0(25.4) MIN..

3KP180C Datasheet (SAMYANG)

SAMYANG

3KP180C Datasheet Preview

SAMYANG ELECTRONICS SAM YANG 3KP5.0 --- 3KP190CA TRANSIENT VOLTAGE SUPPRESSOR BREAKDOWN VOLTAGE: 5.0 --- 190 V PEAK PULSE POWER: 3000 W ■ Dimension ■ Specification R-6 Dim Millimeters Inches .

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3KP180C Datasheet (LITEON)

LITEON

3KP180C Datasheet Preview

LITE-ON SEMICONDUCTOR GLASS PASSIVATED UNIDIRECTIONAL AND BIDIRECTIONAL TRANSIENT VOLTAGE SUPPRESSORS 3KP SERIES REVERSE VOLTAGE - 5.0 to 220 Volts POWER DISSIPATION - 3000 WATTS FEATURES Glass pass.

Glass passivated chip Low leakage Uni and Bidirectional unit Excellent clamping capability The plastic material has U/L recognition 94V-O Fast response time MECHANICAL DATA Case : Molded Plastic Marking : Unidirectional - type number and cathode band Bidirectional - type number only Weight : 0.07 ou.

3KP180C Datasheet (SOCAY)

SOCAY

3KP180C Datasheet Preview

The 3KP series is designed specifically to protect sensitive electronic equipment from voltage transients induced by lightning and other transient voltage events. Features u Glass passivated chip junc.

u Glass passivated chip junction in P600 Package u Low leakage u Uni and Bidirectional unit u Excellent clamping capability u 3000W Peak power capability at 10 × 1000µs waveform Repetition rate (duty cycle):0.01% u Fast response time: typically less than 1.0ps from 0 Volts to VBR min u Typical IR le.

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