Surface Mount Transient Voltage Suppressor Stand-Off Voltage to 180 Volts 200 Watt Peak Pulse Power

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1 Features Surface Mount Transient Suppressor Stand-Off to 80 olts 0 Watt Peak Pulse Power For surface mounted applications in order to optimize board space Low profile package Built-in strain relief Glass passivated junction Low inductance Excellent clamping capability Repetition Rate (duty cycle):0.0% Fast response time: typically less than.0ps from 0 olts to () for unidirectional types Typical IR less than µa above High Temperature solderting: 60 C/ seconds at terminals Plastic package has Underwriters Laboratory Flammability 94-O Pb-free plated Mechanical Data Case: JEDEC SOD-3 molded plastic over passivated chip Terminals: Solder plated, solderable per MIL-STD-750 Method 6 Polarity: For uni-directional types the bandby laser denotes the cathode, which is positive with respect to the anode under normal TS operation Devices For Bipolar Application For Bidirectional use C or CA Suffix for types PMF5.0 thru types PMF70 (e.g. PMF5.0C, PMF70CA) Electrical characteristics apply in both directions Maximum Ratings And Characteristics Ratings at ambient temperature unless otherwise specified. Peak Pulse Power Dissipation on /00µs waveform (Note,,FIG.) Peak Pulse of on /00µs waveform (Note,FIG.3) Peak Forward Surge,8.3ms Single Half Sine-Wave Superimposed on Rated Load,(JEDEC Method) (Note,3) Operating junction and Storage Temperature Range RATING SYMBOL ALUE UNITS.Non-repetitive current pulse, per Fig. 3 and derated above TA = per Fig...Mounted on 5.0mm x 5.0mm (0.03mm thick) Copper Pads to each terminal 3.8.3ms single half sine-wave, or equivalent square wave, Duty cycle = 4 pulses per minutes maximum. Page of 5 PPPM IPPM IFSM T J, TSTG Minimum 0 SEE TABLE -55 to +50 Watts Amps Amps

2 Dimensions (SOD-3) Cathode Band SOD (.00) 0.0( 0.50) 0.4(.9) 0.098(.5) 0.077(.95) 0.055(.38) 0.053(.33) 0.03( 0.8) 0.54( 3.9) 0.38( 3.5) 0.0( 0.0) 0.043(.) 0.00( 0.050) 0.0( 0.) Dimensions in inches and(millimeters) Electrical Characteristics Stand for commonly used models PMF Part Number UNI-Polar BI-Polar Device UNI BI Stand-Off RWM () TABLE ()Min. ()Max. Test IT(mA) Maximum c() Peak Pulse Ipp(A) I R( A) PMF5.0A PMF5.0CA AE WE PMF6.0A PMF6.0CA AG WG PMF6.5A PMF6.5CA AK WK PMF7.0A PMF7.0CA AM WM PMF7.5A PMF7.5CA AP WP PMF8.0A PMF8.0CA AR WR PMF8.5A PMF8.5CA AT WT PMF9.0A PMF9.0CA A W PMFA PMFCA AX WX PMFA PMFCA AZ WZ PMFA PMFCA BE XE PMF3A PMF3CA BG XG PMF4A PMF4CA BK XK PMF5A PMF5CA BM XM PMF6A PMF6CA BP XP PMF7A PMF7CA XR PMF8A PMF8CA BT XT PMF9A PMF9CA BU XU PMFA PMFCA B X PMFA PMFCA BX XY PMF4A PMF4CA BZ XZ PMF6A PMF6CA CE YE PMF8A PMF8CA CG YG PMF30A PMF30CA CK YK PMF33A PMF33CA CM YM For bidirectional type having RWM of volts and less, the IR limit is double. For parts with A, the is ± 5% Page of 5

3 Electrical Characteristics Stand for commonly used models PMF Part Number UNI-Polar BI-Polar Device UNI BI Stand-Off RWM () TABLE ()Min. ()Max. Test IT(mA) Maximum c() Peak Pulse Ipp(A) I R( A) PMF36A PMF36CA CP YP PMF40A PMF40CA CR YR PMF43A PMF43CA CT YT PMF45A PMF45CA C Y PMF48A PMF48CA CX YX PMF5A PMF5CA CZ YZ PMF54A PMF54CA RE ZE PMF58A PMF58CA RG ZG PMF60A PMF60CA RK ZK PMF64A PMF64CA RM ZM PMF70A PMF70CA RP ZP PMF75A PMF75CA RR ZR PMF78A PMF78CA RT ZT PMF80A PMF80CA RU ZU PMF85A PMF85CA R Z PMF90A PMF90CA RX ZX PMF0A PMF0CA RZ ZZ PMFA PMFCA SE E PMFA PMFCA SG G PMF30A PMF30CA SK K PMF40A PMF40CA SL L PMF50A PMF50CA SM M PMF60A PMF60CA SP P PMF70A PMF70CA SR R PMF80A PMF80CA ST T For bidirectional type having RWM of volts and less, the IR limit is double. For parts with A, the is ± 5% Page 3 of 5

4 Characteristic Curves (TA= Fig. Peak Pulse Power Rating Curve unless otherwise noted) Fig. Pulse Derating Curve P -Peak Pulse Power(KW) PPM 0.0 Non-repetitive Pulse Waveform Shown Fig.3 T A = td-pulse Width(uS) Peak Pulse Power(P )or (I ) Derating in Percentage% PP PPM TA --Ambient Temperature( ) Fig.3 Pulse Waverform Fig.4 Typical Junction Capacitance I -Peak Pulse (%) PPM tr=us Peak alue IPPM T= J Pulse width(td) is defined ad the Point where the Peak Decays to 50% of IPPM Half alue IPPM /00uS Waveform Junction Capacitance(pF) Measured at Stand-off ( RWM) Measured at Zero Bias t-time(ms) 0 RWM- Stand-off () Fig.5 Maximum Non-Repetitive Peak Forward Surge Peak Forward Surge (A) T=Tmax J J 8.3mS single half sine-wave (JEDEC Method) 0 0 Number of Cycles Page 4 of 5

5 Recommended Soldering Conditions Recommended Conditions Reflow Soldering Re ow Condition Pb-Free assembly (see Fig.) Pre Heat -Temperature Min(T s(min) ) -Temperature Max(T s(max) ) -Time(Min to Max)(t s) Average ramp up rate (Liquidus Temp(T L) to peak) Ts(max) to TL -Ramp-up Rate Re ow Peak Temp(T P) -Temperature(T L)(Liquidus) -Temperature(t L) Time within 5 of actual Peak Temp(t P) Ramp-down Rate Time to Peak Temp(T P) Do not exceed secs 3 /sec.max. 3 /sec.max secs +60(+0/-5) 30 secs.max. 6 /sec.max. 8 min.max. +60 Temperature TP TL T s(max) T s(min) ts Preheat Ramp-up time to peak temperature (t to peak) tp tl Time Critical Zone TL to TP Ramp-down Cathode Band A E W E Tape And Reel Specification Symbol Ea Per Reel REEL DIA (mm) Industry Standard PMF EIA RS (4.0) 0.3 (8.0) 0.57 (4.0) 7.0(78) 0.65 (8.5) Page 5 of 5

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