P6KE6.8 GOOD-ARK | Alldatasheet

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scitsiretcarahCdnasgnitaRmumixaM (TA=25oC unless otherwise noted) ‹ Plastic package has Underwriters Laboratory Flammability Classification 94V-0 ‹ Glass passivated junction ‹ 600W peak pulse power capabililty with a 10/1000us waveform, repetition rate (duty cycle): 0.01% ‹ Excellent clamping capability ‹ Low incremental surge resistance ‹ Very fast response time ‹ High temp. soldering guaranteed: 265 oC/10 seconds, 0.375” (9.5mm) lead length, 5lbs. (2.3 kg) tension ‹ Case: JEDEC DO-204AC(DO-15) molded plastic body over passivated junction ‹ Terminals: Solder plated axial leads, solderable per MIL-STD-750, Method 2026 ‹ Polarity: For unidirectional types the color band denotes the cathode, which is positive with respect to the anode under normal TVS operation ‹ Mounting Position: Any ‹ Weight: 0.015oz., 0.4g AC055EK6Purht8.6EK6P srosserppuSegatloVtneisnarT V055ot8.6egatloVnwodkaerBW006rewoPesluPkaeP retemaraPl obmySe ulaVt inU 0001/01ahtiwnoitapissidrewopkaeP u )1.giF(mrofevawsP MPP 006muminiM )1( W 0001/01ahtiwtnerruceslupkaeP u mrofevaws )1( I MPP elbaTtxeNeeSA noitapissidrewopetatsydaetS Tta L 57= oC) mm5.9("573.0shtgneldael, )2( P )VA(M 0.5W evaw-enisflahelgnissm3.8,tnerrucegrusdrawrofkaeP )3( I MSF 001A egatlovdrawrofsuoenatnatsnimumixaM ylnolanoitceridinurofA05ta )4( VF 0.5/5.3s tloV dael-ot-noitcnujecnatsiserlamrehtlacipyTR θ LJ 02 o W/C tneibma-ot-noitcnujecnatsiserlamrehtlacipyTR θ AJ 57 o W/C egnarerutarepmetegarotsdnanoitcnujgnitarepOT J T, GTS 051+ot55- oC Notes: 1. Non-repetitive current pulse, per Fig.3 and derated above T A=25oC per Fig. 2 2. Mounted on copper pad area of 1.6 x 1.6” (40 x 40mm) per Fig. 5 3. Measured on 8.3ms single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minute maximum 4. V F=3.5 V for devices of V(BR)<220V, and VF=5.0 Volt max. for devices of V(BR)>220V Devices for Bidirectional Applications Electrical characteristics apply in both directions.

(Ratings at 25oC ambient temperature unless otherwise specified.) epyteciveD egatlovnwodkaerB V )RB( )stloV( )1( tseT tnerruc Ita T )Am( ffo-dnatS egatlov V MW )stloV( mumixaM esrever egakael Vta MW ID )3( (u )A mumixaM eslupkaep tnerruc I MPP )2( )A( mumixaM gnipmalc taegatlov I MPP VC )stloV( mumixaM erutarepmet tneiciffeoc Vfo )RB( /%( o )C.niM. xaM

(Ratings at 25oC ambient temperature unless otherwise specified.) epyteciveD egatlovnwodkaerB V )RB( )stloV( )1( tseT tnerruc Ita T )Am( ffo-dnatS egatlov V MW )stloV( mumixaM esrever egakael Vta MW ID )3( (u )A mumixaM eslupkaep tnerruc I MPP )2( )A( mumixaM gnipmalc taegatlov I MPP VC )stloV( mumixaM erutarepmet tneiciffeoc Vfo )RB( /%( o )C.niM. xaM A021EK6P4 116 210 .12 010 .16 .35 617 01.0 031EK6P7 113 410 .15 010 .12 .37 817 01.0 A031EK6P4 217 310 .11 110 .14 .39 717 01.0 051EK6P5 315 610 .11 210 .18 .25 128 01.0 A051EK6P3 418 510 .18 210 .19 .27 028 01.0 061EK6P4 416 710 .10 310 .16 .20 328 01.0 A061EK6P2 518 610 .16 310 .17 .29 128 01.0 071EK6P3 517 810 .18 310 .15 .24 428 01.0 A071EK6P2 619 710 .15 410 .16 .24 328 01.0 081EK6P2 618 910 .16 410 .13 .28 528 01.0 A081EK6P1 719 810 .14 510 .14 .26 428 01.0 002EK6P0 810 220 .12 610 .11 .27 828 01.0 A002EK6P0 910 120 .11 710 .12 .24 728 01.0 022EK6P8 912 420 .15 710 .17 .14 438 01.0 A022EK6P9 021 320 .15 810 .18 .18 238 01.0 052EK6P5 225 720 .12 020 .17 .10 630 11.0 A052EK6P7 323 620 .14 120 .17 .14 430 11.0 003EK6P0 720 330 .13 420 .14 .10 340 11.0 A003EK6P5 825 130 .16 520 .14 .14 140 11.0 053EK6P5 135 830 .14 820 .12 .14 050 11.0 A053EK6P3 338 630 .10 030 .12 .12 840 11.0 004EK6P0 630 440 .14 230 .10 .14 750 11.0 A004EK6P0 830 240 .12 430 .11 .18 450 11.0 044EK6P6 934 840 .16 530 .15 9.01 360 11.0 A044EK6P8 142 640 .16 730 .10 .12 060 11.0 A084EK6P6 544 050 .18 040 .19 .08 560 11.0 A015EK6P5 845 350 .14 340 .19 .08 960 11.0 A045EK6P3 157 650 .19 540 .18 .00 470 11.0 Notes: 1. V(BR) measured after IT applied for 300us, IT=square wave pulse or equivalent 2. Surge current waveform per Fig. 3 and derate per Fig. 2 3. For bidirectional types with VWM of 10 volts and less, the I D limit is doubled 4. All terms and symbols are consistent with ANSI/IEEE C62.35 5. For parts without A, the V BR is +10% This P6KE TVS series is a low cost commercial product for use in applications where large voltage transients can permanently da mage voltage-sensitive components. The P6KE series device types are designed in a small package size where power and space is a consideration. They are characteri zed by their high surge capability, extremely fast response time, and low impedance, (Ron). Because of the unpredictable nature of transients, and the variation of the impedance with respect to these transients, impedance, per se, is not specified as a parametric value. However, a minimum voltage at low current conditions (BV ) and a maximum clamping voltage (Vc) at a maximum peak pulse current is specified. In some instances, the thermal effect (see Vc Clamping Voltage) may be responsible for 50% to 70%. of the observed voltage diff erential when subjected to high current pulses for several duty cycles, thus making a maximum impedance specification insignificant. In case of a severe current overload or abnormal transient beyond the maximum ratings, the Transient Voltage Suppressor will in itially fail 'short' thus tripping the system's circuit breaker or fuse while protecting the entire circuit. Curves depicting clamping voltage vs. various current pul ses are available from the factory. Extended power curves vs. pulse time are also available. Description:

SEVRUCCITSIRETCARAHCDNASGNITAR (TA = 25oC unless otherwise noted)