SMDJ110C Datasheet

The SMDJ110C is a Transient Voltage Suppressors.

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Part NumberSMDJ110C
ManufacturerMERITEK
Overview Transient Voltage Suppressors DO-214AB/SMC Package SMDJ Series FEATURE  Breakdown Voltage from 5.0 to 440V  3000W peak pulse power capability with a 10/1000μs waveform, repetitive rate (duty cycle.
* Breakdown Voltage from 5.0 to 440V
* 3000W peak pulse power capability with a 10/1000μs waveform, repetitive rate (duty cycle): 0.01%
* Glass passivated chip
* Excellent clamping capability, fast response time.
* Low incremental surge resistance, Low profile package
* Terminal: Solderable per MIL-.
Part NumberSMDJ110C
DescriptionSURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR DIODE
ManufacturerSunmate
Overview SMDJ5.0A(CA) - SMDJ170A(CA) SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR DIODE VOLTAGE RANGE: 5.0 - 17 0V POWER: 3000Wa t t s Features ! Glass Passivated Die Construction ! Uni- and Bi-Directional Vers. ! Glass Passivated Die Construction ! Uni- and Bi-Directional Versions Available ! Excellent Clamping Capability ! Fast Response Time ! Plastic Case Material has UL Flammability Classification Rating 94V-O Mechanical Data ! Case: SMC/DO-214AB, Molded Plastic ! Terminals: Solder Plated, Solderable pe.
Part NumberSMDJ110C
DescriptionSurface Mount TVS
ManufacturerTopdiode
Overview Tel: +86 (0)769 8252 3211 Skype: topdiode Email: info@topdiode.com Website: Surface Mount TVS SMDJ5.0--SMDJ170CA ■ 3000 Watt Peak Power ■ Dimension ■ Specification SMD (DO-214AB) . .
Part NumberSMDJ110C
DescriptionGlass Passivated TVS
ManufacturerJFDsemi
Overview TVS: SMDJ5.0 thru SMDJ190CA Glass Passivated TVS Features ● For surface mounted applications in order to optimize board space ● Low profile space ● Glass passivated chip ● Low inductance ● Excellent .
* For surface mounted applications in order to optimize board space
* Low profile space
* Glass passivated chip
* Low inductance
* Excellent clamping capability
* Very fast response time
* Typical ID less than 1µA at VWM
* 3000 W peak pulse power capability with a 10/1000 µs waveform
* Component in .