TV30C5V0-HF Thru. TV30C441-HF Working Peak Reverse Voltage: 5.0 to 440 Volts Power Dissipation: 3000 Watts RoHS Device Halogen Free

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1 TV35V-HF Thru. TV344-HF Working Peak : 5. to 44 Volts Power Dissipation: 3 Watts RoHS Device Halogen Free Features - Glass passivated chip. - 3W peak pulse power capability with a /µs waveform, repetitive rate (duty cycle):.% - Low leakage. - Uni and idirectional unit. - Excellent clamping capability. - Very fast response time. - UL recognized file # E34957 R - Range: TV35VJ() thru. TV37J() Mechanical Data.6(3.).4(.9).(.53).79(.98).6(.5).3(.75) SM/DO-4.8(7.5).6(6.6).45(6.4).(5.55).3(7.95).35(7.75).(.3).6(.5).8(.).(.) - ase: DO-4/SM molded plastic. - Epoxy: UL 94V- rate flame retardant - Terminals: Solderable per MIL-STD-75, method 6. - Polarity: olor band denoted cathode end except bipolar. - Weight:.3 gram (approx.) Dimensions in inches and (millimeter) ircuit Diagram i-directional Uni-directional Ratings and Electrical haracteristics Rating at 5 ambient temperature unless otherwise specified. Single phase, half wave, 6Hz, resistive or inductive load. For capacitive load, derate current by %. haracteristics Symbol Value Units Peak power dissipation with a /μs waveform (Note ) PPP 3 W Peak pulse current with a /μs waveform (Note ) IPP See Next Table Power dissipation on infinite heatsink at TL=75 Peak forward surge current, 8.3ms single half sine-wave unidirectional only (Note ) instantaneous forward voltage at for unidirectional only (Note 3) Operation junction and storage temperature range, PD VF TJ TSTG 6. W IFSM 3 3.5/5. V -55 to +5 Notes:. Non-repetitive current pulse, per Fig.5 and derated above T=5, per Fig.. Measured on 8.3 ms single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minute maximum. 3. VF<3.5V for devices of VR<V and VF<5.V for devices of VR>V Page

2 RTING ND HRTERISTI URVES (TV35V-HF Thru. TV344-HF) Fig. - Pulse Derating urve Fig. - Max. Non-Repetitive Surge urrent Peak Pulse Derating in Percentage of Peak Power or urrent, (%) mbient Temperature, ( ) Peak Forward Surge urrent, () ms single half sine-wave (JEDE method) TJ=TJ, max. Number of ycles at 6Hz Fig.3 - Steady State Power Derating urve Fig.4 - Peak Pulse Power Rating urve 7 Steady Power Dissipation, (W) Peak Power, (kw) Lead Temperature, ( ) Pulse Width, (μs) Fig.5 - Pulse Waveforem Fig.6 - Typical Junction apacitance Peak Pulse urrent, (%) 5 td TR=μs Peak value (Ipp) TJ = 5 Pluse width(td) is defined as the point where the peak current decays to 5% of Ipp Half Value= Ipp Time, (ms) / μsec. waveform as defined by R.E.. Junction apacitance, (pf) bias bias VRWM TJ=5 f=.mhz reakdown, (V) Page

3 Electrical haracteristics ( TV35V-HF Thru. TV344-HF) Part No. reakdown voltage IT Min. Max. IT (V) (V) (m) IR (u) Working Peak VRWM (V) Surge urrent IPP () lamping V (V) TV35VJ()-HF TV36VJ() -HF TV36V5J() -HF TV37VJ() -HF TV37V5J() -HF TV38VJ() -HF TV38V5J() -HF TV39VJ() -HF TV3J() -HF TV3J() -HF TV3J() -HF TV33J() -HF TV34J() -HF TV35J() -HF TV36J() -HF TV37J() -HF TV38J() -HF TV39J() -HF TV3J() -HF TV3J() -HF TV34J() -HF TV36J() -HF TV38J() -HF TV33J() -HF TV333J() -HF TV336J() -HF TV34J() -HF TV343J() -HF TV345J() -HF TV348J() -HF TV35J() -HF TV354J() -HF TV358J() -HF TV36J() -HF TV364J() -HF TV37J() -HF TV375J() -HF TV378J() -HF TV38J() -HF TV385J() -HF TV39J() -HF TV3J() -HF TV3J() -HF TV3J() Device Marking ode UNI I RDE DDE RDG DDG RDK DDK PDM DDM PDP DDP PDR DDR PDT DDT PDV DDV PDX DDX PDZ DDZ PEE DEE PEG DEG PEK DEK PEM DEM PEP DEP PER DER PET DET PE DE PEV DEV PEX DEX PEZ DEZ PFE DFE PFG DFG PFK DFK PFM DFM PFP DFP PFR DFR PFT DFT PFV DFV PFX DFX PFZ DFZ RGE DGE PGG DGG PGK DGK PGM DGM PGP DGP PGR DGR PGT DGT PG DG PGV DGV PGX DGX PGZ DGZ PHE DHE PHG DHG Page 3

4 Electrical haracteristics ( TV35V-HF Thru. TV344-HF) Part No. reakdown voltage IT Min. Max. IT (V) (V) (m) IR (u) Working Peak VRWM (V) Surge urrent IPP () lamping V (V) TV37J() -HF TV38J() -HF TV39J() -HF TV3J() -HF TV3J() -HF TV35J() -HF TV33J() -HF TV335J() -HF TV33J()-HF TV34J() -HF TV35J() -HF TV36J() -HF TV34J()-HF Device Marking ode UNI I PHK DHK PH DH PHM DHM PHP DHP PHR DHR PHT DHT PHV DHV PHW DHW PHX DHX PHZ DHZ PJE DJE PJG DJG PJK DJK PJM DJM Note: ) Suffix J denotes 5% tolerance devices. ) Suffix after part number to specify i-directional devices. 3) For i-directional devices having VR of volts and under, the IR limit is double. Page 4

5 Reel Taping Specification P P d Index hole E T F W P W o D D D W Trailer Device Leader End Start 6mm (min) 4mm (min) Direction of Feed DO-4 (SM) SYMOL (mm) (inch) d T D D See Note.55 ±.5.6 ±..4 (Max.).6 (Max.) (Min.).969 (Min.) D DO-4 (SM) SYMOL (mm) (inch) E F P P P W W.75 ±..69 ± ±.5.95 ±. 8. ±..35 ±.4 4. ±..57 ±.4. ±.5.79 ±. 6. ±..63 ± Notes:.,, and the clearance between the component and the cavity must be within.5 mm max. for 8 mm tape and mm tape,. mm max. for 6mm tape and 4 mm tape. W.4 (Max.).88 (Max.) Page 5

6 Marking ode. : OMHIP. : Package PKG SM SM 4 XXX SM 3. XXX: Marking code (see Page. 3~4) 3 4. :athod and Suggested PD Layout SIZE DO-4(SM) (mm) (inch) MX.85 MX D.5 MIN.6 MIN D 3. MIN.6 MIN Standard Packaging ase Type DO-4 (SM) REEL ( pcs ) 3, REEL PK Reel Size (inch) 3 Page 6

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