P4SMA PANJIT | Alldatasheet
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Technical content
PAGE . 1STAD-MAY.25.2007 P4SMA SERIES
FEATURES
- For surface mounted applications in order to optimize board space. Low profile package Built-in strain relief Glass passivated junction Low inductance Plastic package has Underwriters Laboratory Flammability Classification 94V-O High temperature soldering : 260°C /10 seconds at terminals In compliance with EU RoHS 2002/95/EC directives MECHANICAL DATA Case: JEDEC DO-214AC,Molded plastic over passivated junction. Terminals: Solder plated,solderable per MIL-STD-750, Method 2026 Polarity: Color band denotes positive end (cathode) Standard Packaging:12mm tape (EIA-481) Weight: 0.002 ounce, 0.064 gram SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS Ratings at 25°C ambient temperature unless otherwise specified. NOTES: 1. Non-repetitive current pulse, per Fig.3 and derated above TA = 25 O C per Fig. 2. 2. Mounted on 5.0mm2 copper pads to each terminal. 3. 8.3ms single half sine-wave, or equivalent square wave, duty cycle = 4 pulses per minutes maximum. 4. Lead temperature at 75 O C = TL. 5. Peak pulse power waveform is 10/1000uS. SMA/DO-214AC Unit: inch (mm) .181(4.60) .208(5.28) .060(1.52) .096(2.44) .062(1.60) .114(2.90) .008(.203) .012(.305) .157(4.00) .188(4.80) .030(0.76) .078(2.00) .047(1.20) .098(2.50) .002(.051) .006(.152) DEVICES FOR BIPOLAR APPLICATIONS For Bidirectional use C or CA Suffix for types P4SMA6.8 thru types P4SMA250. Electrical characteristics apply in both directions. VOLTAGE 5.5 to 214 Volts 400 WattsPEAK PULSE POWER gnitaRl obmyS eulaVs tinU TnonoitapissiDrewoPesluPkaeP A 52= O )1.giF,5,2,1setoN(CP PPM 004s ttaW )3etoN(5.giFreptnerruCegruSdrawroFkaeP IFSM 04s pmA 2.giF)1etoN(mrofevaws0001/01notnerruCesluPkaeP IPPM 1elbaTeess pmA )4ETON(noitapissiDrewoPetatSydaetS PM(AV) 0.1s ttaW egnaRerutarepmeTegarotSdnanoitcnuJgnitarepO TJ,TSTG 051+ot55- OC
PAGE . 2STAD-MAY.25.2007 P4SMA SERIES rebmuNtraP esreveR ffo-dnatS egatloV nwodkaerB egatloV tseT tnerruC esreveR egakaeL .xaM pmalC egatloV kaeP esluP tnerruC gnikraM edoC VRWM VBR I@ T IT I R @V RWM VC @I PP I PP .niM .xaM INU IB INU IB V V V Am µµµµµ A µµµµµ A V A INU IB rosserppuSegatloVtneisnarTW004 01AMS4P C01AMS4P 1.8 9 11 1 01 02 51 82 JZM JZN A01AMS4P AC01AMS4P 55.8 5.9 5.01 1 01 02 5.41 92 KZM KZN 11AMS4P C11AMS4P 29.8 9.9 1.21 1 5 01 2.61 62 LZM LZN A11AMS4P AC11AMS4P 4.9 5.01 6.11 1 5 01 6.51 72 MZM MZN 21AMS4P C21AMS4P 27.9 8.01 2.31 1 5 5 3.71 42 NZM NZN A21AMS4P AC21AMS4P 2.01 4.11 6.21 1 5 5 7.61 52 PZM PZN 31AMS4P C31AMS4P 5.01 7.11 3.41 1 5 5 91 22 QZM QZN A31AMS4P AC31AMS4P 1.11 4.21 7.31 1 5 5 2.81 32 RZM RZN 51AMS4P C51AMS4P 1.21 5.31 5.61 1 5 5 22 91 SZM SZN A51AMS4P AC51AMS4P 8.21 3.41 8.51 1 5 5 2.12 02 TZM TZN 61AMS4P C61AMS4P 9.21 4.41 6.71 1 5 5 5.32 81 UZM UZN A61AMS4P AC61AMS4P 6.31 2.51 8.61 1 5 5 5.22 91 VZM VZN 81AMS4P C81AMS4P 5.41 2.61 8.91 1 5 5 5.62 61 WZM WZN A81AMS4P AC81AMS4P 3.51 1.71 9.81 1 5 5 2.52 71 XZM XZN 02AMS4P C02AMS4P 2.61 81 22 1 5 5 1.92 41 YZM YZN A02AMSP AC02AMS4P 1.71 91 12 1 5 5 7.72 51 ZZM ZZN 22AMS4P C22AMS4P 8.71 8.91 2.42 1 5 5 9.13 31 AXM AXN A22AMS4P AC22AMS4P 8.81 9.02 1.32 1 5 5 6.03 41 BXM BXN 42AMS4P C42AMSP 4.91 6.12 4.62 1 5 5 7.43 21 CXM CXN A42AMS4P AC42AMS4P 5.02 8.22 2.52 1 5 5 2.33 31 DXM DXN 72AMS4P C72AMS4P 8.12 3.42 7.92 1 5 5 1.93 11 EXM EXN 03AMS4P C03AMS4P 3.42 72 33 1 5 5 5.34 01 GXM GXN A03AMS4P AC03AMS4P 6.52 5.82 5.13 1 5 5 4.14 01 HXM HXN 33AMS4P C33AMS4P 8.62 7.92 3.63 1 5 5 7.74 9 JXM JXN A33AMS4P AC33AMS4P 2.82 4.13 7.43 1 5 5 7.54 9 KXM KXN 63AMS4P C63AMS4P 1.92 4.23 6.93 1 5 5 25 8 LXM LXN A93AMS4P AC93AMS4P 3.33 1.73 14 1 5 5 9.35 8.7 PXM PXN
PAGE . 3STAD-MAY.25.2007 P4SMA SERIES rebmuNtraP esreveR ffo-dnatS egatloV nwodkaerB egatloV tseT tnerruC esreveR egakaeL .xaM pmalC egatloV kaeP esluP tnerruC gnikraM edoC VRWM VBR I@ T IT I R @V RWM VC @I PP I PP .niM .xaM INU IB INU IB V V V Am µµµµµ A µµµµµ A V A INU IB rosserppuSegatloVtneisnarTW004 A74AMS4P AC74AMS4P 2.04 7.44 4.94 1 5 5 8.46 5 TXM TXN A15AMS4P AC15AMS4P 6.34 5.84 6.35 1 5 5 1.07 6 VXM VXN A65AMS4P AC65AMS4P 8.74 2.35 8.85 1 5 5 77 5.5 XXM XXN 26AMS4P C26AMS4P 2.05 8.55 2.86 1 5 5 98 7.4 YXM YXN A26AMS4P AC26AMS4P 35 9.85 1.56 1 5 5 58 5 ZXM ZXN 86AMS4P C86AMS4P 1.55 2.16 8.47 1 5 5 89 3.4 AYM AYN A86AMS4P AC86AMS4P 1.85 6.46 4.17 1 5 5 29 6.4 BYM BYN 57AMS4P C57AMS4P 7.06 5.76 5.28 1 5 5 801 9.3 CYM CYN A57AMS4P AC57AMS4P 1.46 3.17 8.87 1 5 5 301 1.4 DYM DYN 28AMS4P C28AMS4P 4.66 8.37 2.09 1 5 5 811 6.3 EYM EYN A28AMS4P AC28AMS4P 1.07 9.77 1.68 1 5 5 311 7.3 FYM FYN 19AMS4P C19AMS4P 7.37 9.18 001 1 5 5 131 2.3 GYM GYN A19AMS4P AC19AMS4P 8.77 5.68 5.59 1 5 5 521 4.3 HYM HYN 001AMS4P C001AMS4P 18 09 011 1 5 5 441 9.2 JYM JYN A001AMS4P AC001AMS4P 5.58 59 501 1 5 5 731 1.3 KYM KYN 011AMS4P C011AMS4P 2.98 99 121 1 5 5 851 7.2 LYM LYN A011AMS4P AC011AMS4P 49 501 611 1 5 5 251 8.2 MYM MYN 021AMS4P C021AMS4P 2.79 801 231 1 5 5 371 4.2 NYM NYN A021AMS4P AC021AMS4P 201 411 621 1 5 5 561 5.2 PYM PYN 031AMS4P C031AMS4P 501 711 341 1 5 5 781 2.2 QYM QYN A031AMS4P AC031AMS4P 111 421 731 1 5 5 971 3.2 RYM RYN 051AMS4P C051AMS4P 121 531 561 1 5 5 512 2 SYM SYN A051AMS4P AC051AMS4P 821 341 851 1 5 5 702 2 TYM TYN 061AMS4P C061AMS4P 031 441 671 1 5 5 032 8.1 UYM UYN A061AMS4P AC061AMS4P 631 251 861 1 5 5 912 9.1 VYM VYN 071AMS4P C071AMS4P 831 351 781 1 5 5 442 7.1 WYM WYN A071AMS4P AC071AMS4P 541 261 971 1 5 5 432 8.1 XYM XYN 081AMS4P A081AMS4P 641 261 891 1 5 5 852 6.1 YYM YYN A081AMS4P AC081AMS4P 451 171 981 1 5 5 642 7.1 ZYM ZYN 002AMS4P A002AMS4P 261 081 022 1 5 5 782 5.1 AWM AWN A002AMS4P AC002AMS4P 171 091 012 1 5 5 472 5.1 BWM BWN 022AMS4P A022AMS4P 571 891 242 1 5 5 443 2.1 CWM CWN A022AMS4P AC022AMS4P 581 902 132 1 5 5 823 2.1 DWM DWN 052AMS4P C052AMS4P 202 522 572 1 5 5 063 1.1 EWM EWN A052AMS4P AC052AMS4P 412 732 362 1 5 5 443 2.1 FWM FWN
PAGE . 4STAD-MAY.25.2007 P4SMA SERIES Fig.1 PEAK PULSE POWER RATING CURVE Fig.2 DERATING CURVE Fig.3 PULSE WAVEFORM Fig.5 MAXIMUM NON-REPETITIVE PEAK FORWARD SURGE CURRENT Fig.4 TYPICAL JUNCTION CAPACITANCE td,PULSE WIDTH, micro sec T,TIME,ms NUMBER OF CYCLES AT 60Hz T ,AMBIENT TEMPERATURE, CA O 0.1 0.1 1.0 Non-Repetitve Pulse Wavefom Shown in Figure.3 T= 2 5 C A O Mounted on 5.0mm Copper Land Areas 1.0 100 100 1000 10000 P ,PEAK PULSE FORWARD,KW PPM I ,PEAK PULSE CURRENT,%PPM I ,PEAK FORWARD SURGE CURRENT, AMPERES FSM PEAK PULSE FORWARD (P ) OR CURRENT (I ) DERATING IN PERCENTAGE % PP PP 100 125 150 175 20025 50 75 1000 0 1.0 2.0 3.0 4.0 100 150 10/1000 use c Wa ve fo rm as D efined bye R .E .A . Half V alue-Ipp e-kt td T= 2 5 C Pulse Width (td) is Defined as the Point where the Peak Current Decayst to 50% of Ipp A Otf = 10usec Peak Value Ippm C J,CAP ACIT ANCE ,pF 1.0 2.0 5.0 10 20 50 100 200 Measured a t Ze ro Bia s Tj = 2 5 C O f= 1.0MHZ Vsig = 50m Vp -p 10,000 1,000 100 V( ), REVERSE STAND-OFF VOLTAGE, VOLTSRWM Measured a t St a n d - O f f Vo l t a g e (V ) RWM 2 4 10 20 40 10001 T=Tmax 8.3ms Single Half S inepWave JEDEC Method JJ PLEASE REFER THE TVS APPLICATION NOTE IN PANJIT WEBSITE http://www.panjit.com/protection-transient-voltage-suppressors.html
PAGE . 5STAD-MAY.25.2007 MOUNTING PAD LAYOUT
- Packing information T/R - 7.5K per 13" plastic Reel T/R - 1.8Kper 7” plastic Reel ORDER INFORMATION LEGAL STATEMENT Copyright PanJit International, Inc 2007 The information presented in this document is believed to be accurate and reliable. The specifications and information herein are subject to change without notice. Pan Jit makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose. Pan Jit products are not authorized for use in life support devices or systems. Pan Jit does not convey any license under its patent rights or rights of others. P4SMA SERIES