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SMDJ130A Data Sheet

3000W Transient Voltage Suppressor

Download SMDJ130A Datasheet

SMDJ130A
SMDJ Series 3000W Transient Voltage Suppressor DESCRIPTION: TVS diodes can be used in a wide range of applications which like consumer electronic products, automotive industries, munitions, telecommunications, aerospace industries, and intelligent control systems. FEATURES:  Glass passivated or planar junction.  Excellent clamping capability.  Repetition rate (duty cycle): 0.01%.  Typical IR less than 1μA above 10V.  Low profile package and low inductance.  3000W peak pulse power capability at 10×1000μs waveform.  Fast response time: typically less than 1.0ps from 0V to VBR min.  High temperature soldering: 260℃/10s at terminals.  Plastic package has Underwriters Laboratory Flammability 94V-0.  For surface mounted applications in order to optimize board space. SMC Symbol ABSOLUTE MAXIMUM RATINGS (TA=25℃, RH=45%-75%, unless otherwise noted) Parameter Storage temperature range Operating junction temperature range Steady state power dissipation at .


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SMDJ130A

SMDJ130A

Download SMDJ130A Datasheet
SMDJ Series 3000W Transient Voltage Suppressor DESCRIPTION: TVS diodes can be used in a wide range of applications which like consumer electronic products, automotive industries, munitions, telecommunications, aerospace industries, and intelligent control systems. FEATURES:  Glass passivated or planar junction.  Excellent clamping capability.  Repetition rate (duty cycle): 0.01%.  Typical IR less than 1μA above 10V.  Low profile package and low inductance.  3000W peak pulse power capability at 10×1000μs waveform.  Fast response time: typically less than 1.0ps from 0V to VBR min.  High temperature soldering: 260℃/10s at terminals.  Plastic package has Underwriters Laboratory Flammability 94V-0.  For surface mounted applications in order to optimize board space. SMC Symbol ABSOLUTE MAXIMUM RATINGS (TA=25℃, RH=45%-75%, unless otherwise noted) Parameter Storage temperature range Operating junction temperature range Steady state power dissipation at .


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