TV06B5V0-HF Thru. TV06B441-HF
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1 TV65V-HF Thru. TV644-HF Working Peak voltage: 5. to 44Volts Power Dissipation: 6 Watts RoHS Device Halogen Free Features -Glass passivated chip. -6W 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. R -UL recognized file # E Range: TV65VJ() thru. TV64J() Mechanical Data -ase: JEDE DO-24, molded plastic. -Epoxy: UL 94V- rate flame retardant. -Terminals: solderable per MIL-STD-75, method 226 -Polarity: olor band denotes cathode end except ipolar. -Mounting position: ny. -Weight:.8 gram (approx.).87(2.2).77(.96).96(2.44).83(2.3).6(.52).3(.75) SM/DO-24.9(4.85).7(4.35).26(5.5).2(5.) Dimensions in inches and (millimeter).55(3.94).3(3.3).2(.3).6(.5).8(.2).(.2) Ratings and Electrical haracteristics Rating at 25 ambient temperature unless otherwise specified. Single phase, half wave, 6Hz, resistive or inductive load. For capacitive load, derate current by 2%. Parameter Symbol Value Units Peak power dissipation with a /μs waveform (Note ) PPP 6 Watts Peak pulse current with a /μs waveform (Note ) IPP See Next Table Power dissipation on infinite heatsink at TL=75 PD 5. Watts Peak forward surge current, 8.3ms single half sine-wave unidirectional only (Note 2) IFSM instantaneous forward voltage at 5 for unidirectional only (Note 3) VF 3.5/5. V Operating junction and Storage temperature range, TJ TSTG -55 to +5 Note:. Non-repetitive current pulse per Fig. 5 and derated above T=25 per Fig. 2. 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 <2V and VF <5.V for devices of VR >2V Page
2 Rating and haracteristics urves (TV65V-HF Thru. TV644-HF) Fig. - Pulse Derating urve Fig.2 - Max. Non-Repetitive Surge urrent Peak Pulse Derating in Percentage of Peak Power or urrent, (%) Mounted on 5mm 5mm copper pads Peak Forward Surge urrent, () mS single half sine-wave (JEDE method) TJ=TJ Max mbient Temperature, ( ) Number of ycle at 6Hz Fig.3 - Steady State Power Derating urve Fig.4 - Peak Pulse Power Rating urve 5. Steady State Power Dissipation, (W) Peak Power, (kw) Lead Temperature, ( ) Pulse Width, (μs) Fig.5 - Pulse Waveform Fig.6 - Typical Junction apacitance Peak Pulse urrent, (%) 5 TR=μs Peak value (Ipp) TJ = 25 Pluse width(td) is defined as the point where the peak current decays to 5% of Ipp Half Value= Ipp 2 / μsec. waveform as defined by R.E.. Junction apacitance, (pf) Uni-directional bias i-directional bias td Time, (ms) O TJ=25 f=.mhz reakdown, (V) Page 2
3 Electrical haracteristics ( TV65V-HF Thru. TV644-HF) Part No. reakdown voltage IT Min. Max. IT (V) (V) (m) Leakage IR (u) Working Peak VRWM (V) Surge urrent IPP () lamping V (V) TV65VJ()-HF TV66VJ()-HF TV66V5J()-HF TV67VJ()-HF Device Marking ode UNI I KE E KG G KK K KM M TV67V5J()-HF TV68VJ()-HF TV68V5J()-HF TV69VJ()-HF TV6J()-HF TV6J()-HF TV62J()-HF TV63J()-HF TV64J()-HF TV65J()-HF TV66J()-HF TV67J()-HF TV68J()-HF TV69J()-HF TV62J()-HF TV622J()-HF TV624J()-HF TV626J()-HF TV628J()-HF TV63J()-HF TV633J()-HF TV636J()-HF TV64J()-HF TV643J()-HF TV645J()-HF TV648J()-HF TV65J()-HF TV654J()-HF TV658J()-HF TV66J()-HF TV664J()-HF TV67J()-HF TV675J()-HF TV678J()-HF TV68J()-HF TV685J()-HF TV69J()-HF TV6J()-HF TV6J()-HF TV62J()-HF KP KR KT KV KX KZ LE LG LK LM LP LR LT L LV LX LZ ME MG MK MM MP MR MT MV MX MZ NE NG NK NM NP NR NT N NV NX NZ PE PG P R T V X Z E G K M P R T V X Z E G K M P R T V X Z DE DG DK DM DP DR DT D DV DX DZ EE EG Page 3
4 Electrical haracteristics ( TV65V-HF Thru. TV644-HF) Part No. reakdown voltage IT Min. Max. IT (V) (V) (m) Leakage IR (u) Working Peak VRWM (V) Surge urrent IPP () lamping V (V) TV63J()-HF TV64J()-HF TV65J()-HF TV66J()-HF Device Marking ode UNI I PK EK P E PM EM PP EP TV67J()-HF TV68J()-HF TV69J()-HF TV62J()-HF TV622J()-HF TV625J()-HF TV63J()-HF TV635J()-HF TV64J()-HF TV644J()-HF PR PT PV PW PX PZ QE QG QK QM ER ET EV EW EX EZ FE FG FK FM Note: ) Suffix J denotes 5% tolerance devices. 2) 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 P F W 2 o D2 D D W Trailer Device Leader End Start pitches (min) pitches (min) Direction of Feed DO-24 (SM) SYMOL (mm) (inch) d D D D ± ±. 4.5 (max).55 ± (min) 3. ±.2.44 ± ±.4.77 (max).6 ± (min).52 ±.8 DO-24 (SM) SYMOL E F P P P W W (mm).75 ±. 5.5 ±.5 8. ±. 4. ±. 2. ±.5 2. ± (max) (inch).69 ±.4.27 ±.2.35 ±.4.57 ±.4.79 ± ± (max) Page 5
6 Marking ode. : OMHIP 2 2. : Package PKG SM SM 4 XX SM 3. XX: Marking code (see Page. 3~4) 3 4. :athod and Suggested PD Layout SIZE DO-24(SM) (mm) (inch) MX.85 MX D.52 MIN.6 MIN D 2.8 MIN.86 MIN Standard Packaging ase Type DO-24 (SM) REEL ( pcs ) 3, REEL PK Reel Size (inch) 3 Page 6
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*RoHS OMPLINT eatures RoHS compliant* Surface Mount SM package Standoff Voltage: 5. to 17 volts Power issipation: 15 watts pplications I 6-4-2 S (Min. Level 4) I 6-4-4 T I 6-4-5 Surge SMJ Transient Voltage
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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.
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