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  moc306xm, moc316xm ?6-pin dip zero-cross phototriac driver optocoupler (600 volt peak) ?005 fairchild semiconductor corporation www.fairchildsemi.com moc306xm, moc316xm rev. 1.0.4 september 2010 moc3061m, moc3062m, moc3063m, moc3162m, moc3163m 6-pin dip zero-cross phototriac driver optocoupler (600 volt peak) features simplifies logic control of 115/240 vac power zero voltage crossing dv/dt of 1000v/? guaranteed (moc316x-m), ? 600v/? guaranteed (moc306x-m) vde recognized (file # 94766) ? ordering option v (e.g., MOC3063V-M) underwriters laboratories (ul) recognized (file #e90700, volume 2) applications solenoid/valve controls static power switches temperature controls ac motor starters lighting controls ac motor drives e.m. contactors solid state relays description the moc306xm and moc316xm devices consist of a gaas infrared emitting diode optically coupled to a monolithic silicon detector performing the function of a zero voltage crossing bilateral triac driver. they are designed for use with a triac in the interface of logic sys- tems to equipment powered from 115/240 vac lines, such as solid-state relays, industrial controls, motors, solenoids and consumer appliances, etc. schematic package outlines main term. nc* n/c *do not connect (triac substrate) 1 2 3 anode cathode 4 5 6 main term. zero crossing circuit
?005 fairchild semiconductor corporation www.fairchildsemi.com moc306xm, moc316xm rev. 1.0.4 2 moc306xm, moc316xm ?6-pin dip zero-cross phototriac driver optocoupler (600 volt peak) absolute maximum ratings (t a = 25? unless otherwise noted) stresses exceeding the absolute maximum ratings may damage the device. the device may not function or be operable above the recommended operating conditions and stressing the parts to these levels is not recommended. in addition, extended exposure to stresses above the recommended operating conditions may affect device reliability. the absolute maximum ratings are stress ratings only. note: 1. isolation surge voltage, v iso , is an internal device dielectric breakdown rating. for this test, pins 1 and 2 are common, and pins 4, 5 and 6 are common. symbol parameters device value units tot al device t stg storage temperature all -40 to +150 ? t opr operating temperature all -40 to +85 ? t sol lead solder temperature all 260 for 10 sec ? t j j unction temperature range all -40 to +100 ? v iso isolation surge voltage (1) (peak ac voltage, 60hz, 1 sec. duration) all 7500 vac(pk) p d t otal device power dissipation @ 25? ambient derate above 25? all 250 mw 2.94 mw/? emitter i f continuous forward current all 60 ma v r reverse voltage all 6 v p d t otal power dissipation @ 25? ambient derate above 25? all 120 mw 1.41 mw/? detector v drm off-state output terminal voltage all 600 v i tsm p eak repetitive surge current (pw = 100?, 120pps) all 1 a p d t otal power dissipation @ 25? ambient derate above 25? all 150 mw 1.76 mw/?
?005 fairchild semiconductor corporation www.fairchildsemi.com moc306xm, moc316xm rev. 1.0.4 3 moc306xm, moc316xm ?6-pin dip zero-cross phototriac driver optocoupler (600 volt peak) electrical characteristics (t a = 25? unless otherwise speci?d) individual component characteristics t ransfer characteristics zero crossing characteristics isolation characteristics *typical values at t a = 25? notes: 2. test voltage must be applied within dv/dt rating. 3. all devices are guaranteed to trigger at an i f value less than or equal to max i ft . therefore, recommended operating i f lies between max i ft (15ma for moc3061m, 10ma for moc3062m & moc3162m, 5ma for moc3063m & moc3163m) and absolute max i f (60ma). 4. this is static dv/dt. see figure 9 for test circuit. commutating dv/dt is a function of the load-driving thyristor(s) only. symbol parameters test conditions device min. typ.* max. units emitter v f input forward voltage i f = 30ma all 1.3 1.5 v i r reverse leakage current v r = 6v all 0.005 100 ? detector i drm1 p eak blocking current, either direction v drm = 600v, i f = 0 (2) moc316xm 10 100 na moc306xm 10 500 dv/dt critical rate of rise of off-state voltage i f = 0 (figure 9) (3) moc306xm 600 1500 v/? moc316xm 1000 symbol dc characteristics test conditions device min. typ.* max. units i ft led trigger current (rated i ft ) main terminal v oltage = 3v (3) moc3061m 15 ma moc3062m/ moc3162m 10 moc3063m/ moc3163m 5 v tm p eak on-state voltage, either direction i tm = 100 ma peak, i f = rated i ft all 1.8 3 v i h holding current, either direction all 500 ? symbol characteristics test conditions device min. typ.* max. units v inh inhibit voltage (mt1-mt2 v oltage above which device will not trigger) i f = rated i ft moc3061m/2m/3m 12 20 v moc3162m/3m 12 15 i drm2 leakage in inhibited state i f = rated i ft , v drm = 600v, off state al 2 ma symbol characteristics test conditions device min. typ.* max. units v iso isolation voltage f = 60 hz, t = 1 sec all 7500 v
?005 fairchild semiconductor corporation www.fairchildsemi.com moc306xm, moc316xm rev. 1.0.4 4 moc306xm, moc316xm ?6-pin dip zero-cross phototriac driver optocoupler (600 volt peak) safety and insulation ratings as per iec 60747-5-2, this optocoupler is suitable for ?afe electrical insulation?only within the safety limit data. compliance with the safety ratings shall be ensured by means of protective circuits. symbol parameter min. typ. max. unit installation classi?ations per din vde 0110/1.89 ta b le 1 f or rated main voltage < 150vrms i-iv f or rated main voltage < 300vrms i-iv climatic classi?ation 55/100/21 p ollution degree (din vde 0110/1.89) 2 cti comparative tracking index 175 v pr input to output test voltage, method b, v iorm x 1.875 = v pr , 100% production test with tm = 1 sec, partial discharge < 5pc 1594 v peak input to output test voltage, method a, v iorm x 1.5 = v pr , type and sample test with tm = 60 sec, partial discharge < 5pc 1275 v peak v iorm max. working insulation voltage 850 v peak v iotm highest allowable over voltage 6000 v peak external creepage 7 mm external clearance 7 mm insulation thickness 0.5 mm rio insulation resistance at ts, v io = 500v 10 9 ?
?005 fairchild semiconductor corporation www.fairchildsemi.com moc306xm, moc316xm rev. 1.0.4 5 moc306xm, moc316xm ?6-pin dip zero-cross phototriac driver optocoupler (600 volt peak) typical performance curves figure 1. led forward voltage vs. forward current figure 3. led current required to trigger vs. led pulse width figure 4. leakage current, i drm vs. temperature figure 2. trigger current vs. temperature i f , led forward current (ma) 0.1 1 10 100 v f , forward voltage (v) 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 1.5 1.6 1.7 t a , ambient temperature ( c) -40 -20 0 20 40 60 80 100 t a , ambient temperature ( c) -40 -20 0 20 40 60 80 100 i ft , normalized i drm , leakage current (na) 0.8 0.9 1.0 1.1 1.2 1.3 1.4 1.5 1.6 pw in , led trigger pulse width ( s) 10 1 100 i ft , led trigger current (normalized) 0 2 4 6 8 10 12 14 16 0.1 1 10 100 1000 10000 t a = -40 c v tm = 3v normalized to t a = 25 c t a = 25 c normalized to pw in >> 100 s t a = 25 c t a = 85 c
?005 fairchild semiconductor corporation www.fairchildsemi.com moc306xm, moc316xm rev. 1.0.4 6 moc306xm, moc316xm ?6-pin dip zero-cross phototriac driver optocoupler (600 volt peak) typical performance curves (continued) figure 5. i drm2 , leakage in inhibit state vs. temperature figure 7. i h , holding current vs. temperature figure 8. inhibit voltage vs. temperature figure 6. on-state characteristics v tm , on-state voltage (volts) t a , ambient temperature ( c) -40 -20 0 20 40 60 80 100 t a , ambient temperature ( c) -40 -20 0 20 40 60 80 100 t a , ambient temperature ( c) -40 -20 0 20 40 60 80 100 i drm2 , normalized v inh , normalized i h , holding current (normalized) 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 2.2 2.4 i f = rated i ft normalized to t a = 25 c -4 -3 -2 -1 0 1 2 3 4 i tm , on-state current (ma) t a = 25 c -800 -600 -400 -200 0 200 400 600 800 0.0 0.4 0.8 1.2 1.6 2.0 2.4 2.8 3.2 0.80 0.85 0.90 0.95 1.00 1.05 1.10 1.15 1.20 normalized to t a = 25 c
?005 fairchild semiconductor corporation www.fairchildsemi.com moc306xm, moc316xm rev. 1.0.4 7 moc306xm, moc316xm ?6-pin dip zero-cross phototriac driver optocoupler (600 volt peak) 1. 100x scope probes are used, to allow high speeds and voltages. 2. the worst-case condition for static dv/dt is established by triggering the d.u.t. with a normal led input current, then removing the current. the variable vernier resistor combined with various capacitor combinations allows the dv/dt to be gradually increased until the d.u.t. continues to trigger in response to the applied voltage pulse, even after the led current has been removed. the dv/dt is then decreased until the d.u.t. stops triggering. t rc is measured at this point and recorded. basic applications typical circuit for use when hot line switching is required. in this circuit the ?ot?side of the line is switched and the load connected to the cold or neutral side. the load may be connected to either the neutral or hot line. r in is calculated so that i f is equal to the rated i ft of the part, 15ma for the moc3061m, 10ma for the moc3062m, or 5ma for the moc3063m. the 39 ? resistor and 0.01? capacitor are for snubbing of the triac and is often, but not always, necessary depending upon the particular triac and load used. suggested method of firing two, back-to-back scr? with a fairchild triac driver. diodes can be 1n4001; resistors, r1 and r2, are optional 330 ? . note: this optoisolator should not be used to drive a load directly. it is intended to be a trigger device only. 27 2w 2w 100 2w dv dt vernier mount dut on temperature controlled c plate differential preamp f = 10 hz pw = 100 s 50 ? pulse generator all components are non-inductive unless shown 82 2w 470pf 0.001 0.005 0.01 0.047 0.47 0.1 56 2w 1n914 20v 1000 1/4w 1n967a 18v rfp4n100 dut 20k x100 probe x100 probe v drm /v rrm select 6 4 1 2 1000 10 watt wirewound 0.33 1000v power 1 meg 2w each 1.2 meg 2w test 0-1000v 10ma 0.047 1000v figure 9. circuit for static dv measurement of power thyristors dt figure 10. hot-line switching application circuit v cc r in 1 2 3 6 5 4 240 vac hot neutral 360 ? 360 ? moc3061-m moc3062-m moc3063-m 39 ? 0.01 f fkpf12n60 load figure 11. inverse-parallel scr driver circuit v cc r in 1 2 3 6 5 4 115 vac scr 360 ? r1 d1 scr moc3061-m moc3062-m moc3063-m r2 d2 load
?005 fairchild semiconductor corporation www.fairchildsemi.com moc306xm, moc316xm rev. 1.0.4 8 moc306xm, moc316xm ?6-pin dip zero-cross phototriac driver optocoupler (600 volt peak) package dimensions 8.13?.89 6.10?.60 pin 1 64 13 0.25?.36 5.08 (max.) 3.28?.53 0.38 (min.) 2.54?.81 2.54 (bsc) (0.86) 0.41?.51 1.02?.78 0.76?.14 8.13?.89 6.10?.60 pin 1 64 13 0.25?.36 5.08 (max.) 3.28?.53 0.38 (min.) 2.54?.81 2.54 (bsc) (0.86) 0.41?.51 1.02?.78 0.76?.14 7.62 (typ.) 15?(typ.) 0.20?.30 0.20?.30 10.16?0.80 through hole 0.4" lead spacing surface mount rcommended pad layout (1.78) (2.54) (1.52) (7.49) (10.54) (0.76) 8.13?.89 note: all dimensions in mm. 6.10?.60 8.43?.90 pin 1 64 13 0.25?.36 2.54 (bsc) (0.86) 0.41?.51 1.02?.78 0.76?.14 0.38 (min.) 3.28?.53 5.08 (max.) 0.20?.30 0.16?.88 (8.13)
?005 fairchild semiconductor corporation www.fairchildsemi.com moc306xm, moc316xm rev. 1.0.4 9 moc306xm, moc316xm ?6-pin dip zero-cross phototriac driver optocoupler (600 volt peak) ordering information marking information option order entry identi?r (example) description no option moc3061m standard through hole device s moc3061sm surface mount lead bend sr2 moc3061sr2m surface mount; tape and reel t moc3061tm 0.4" lead spacing v moc3061vm vde 0884 tv moc3061tvm vde 0884, 0.4" lead spacing sv moc3061svm vde 0884, surface mount sr2v moc3061sr2vm vde 0884, surface mount, tape and reel moc3061 1 2 6 4 3 5 *note ?parts that do not have the ??option (see definition 3 above) that are marked with date code ?25?or earlier are marked in portrait format. de?itions 1f airchild logo 2d e vice number 3 vde mark (note: only appears on parts ordered with vde option ?see order entry table) 4 one digit year code, e.g., ? 5t wo digit work week ranging from ?1 to ?3 6 assembly package code v x yy q
?005 fairchild semiconductor corporation www.fairchildsemi.com moc306xm, moc316xm rev. 1.0.4 10 moc306xm, moc316xm ?6-pin dip zero-cross phototriac driver optocoupler (600 volt peak) carrier tape specification reflow profile 4.0 0.1 1.5 min user direction of feed 2.0 0.05 1.75 0.10 11.5 1.0 24.0 0.3 12.0 0.1 0.30 0.05 21.0 0.1 4.5 0.20 0.1 max 10.1 0.20 9.1 0.20 1.5 0.1/-0 300 280 260 240 220 200 180 160 140 120 100 80 60 40 20 0 c time (s) 0 60 180 120 270 260 c >245 c = 42 sec time above 183 c = 90 sec 360 1.822 c/sec ramp up rate 33 sec
?005 fairchild semiconductor corporation www.fairchildsemi.com moc306xm, moc316xm rev. 1.0.4 10 trademarks the following includes registered and unregistered trademarks and service marks, owned by fairchild semiconductor and/or its global subsidiaries ,andisnot intended to be an exhaustive list of all such trademarks. accupower ? auto-spm ? build it now ? coreplus ? corepower ? crossvolt ? ctl ? current transfer logic ? deuxpeed dual cool ecospark efficientmax ? esbc ? fairchild fairchild semiconductor fact quiet series ? fact fast fastvcore ? fetbench ? flashwriter * fps ? f-pfs ? frfet global power resource sm green fps ? green fps ? e-series ? g max ? gto ? intellimax ? isoplanar ? megabuck ? microcoupler ? microfet ? micropak ? micropak2 ? millerdrive ? motionmax ? motion-spm ? optohit optologic optoplanar pdp spm power-spm ? powertrench powerxs programmable active droop ? qfet qs ? quiet series ? rapidconfigure ? ? saving our world, 1mw/w/kw at a time signalwise ? smartmax ? smart start ? spm stealth ? superfet ? supersot ? -3 supersot ? -6 supersot ? -8 supremos syncfet ? sync-lock * the power franchise tinyboost ? tinybuck ? tinycalc ? tinylogic tinyopto ? tinypower ? tinypwm ? tinywire ? trifault detect ? truecurrent ? * " serdes ? uhc ultra frfet ? unifet ? vcx ? visualmax ? xs * trademarks of system general corporation, used under license by fairchild semiconductor. disclaimer fairchild semiconductor reserves the right to make changes without further notice to any products herein to improve reliability, function, or design. fairchild does not assume any liability arising out of the application or use of any product or circuit described herein; neither does it convey any license under its patent rights, nor the rights of others. these specifications do not expand the terms of fairchild? worldwide terms and conditions, specifically the warranty therein, which covers these products. life support policy fairchild? products are not authorized for use as critical components in life support devices or systems without the express written approval of fairchild semiconductor corporation. as used herein: 1. life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the user. 2. a critical component in any component of a life support, device, or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. anti-counterfeiting policy fairchild semiconductor corporation's anti-counterfeiting policy. fairchild's anti-counterfeiting policy is also stated on our external websi te, www.fairchildsemi.com, under sales support. counterfeiting of semiconductor parts is a growing problem in the industry. all manufacturers of semiconductor products are experiencing counterf eiting of their parts. customers who inadvertently purchase counterfeit parts experience many problems such as loss of brand reputation, substandard performance ,failed applications, and increased cost of production and manufacturing delays. fairchild is taking strong measures to protect ourselves and our customer sfromthe proliferation of counterfeit parts. fairchild strongly encourages customers to purchase fairchild parts either directly from fairchild or from au thorized fairchild distributors who are listed by country on our web page cited above. products customers buy either from fairchild directly or from authorized fairchil d distributors are genuine parts, have full traceability, meet fairchild's quality standards for handling and storage and provide access to fairchild's full range of up-to-date technical and product information. fairchild and our authorized distributors will stand behind all warranties and will appropriately address any warranty is sues that may arise. fairchild will not provide any warranty coverage or other assistance for parts bought from unauthorized sources. fairchild is committed to combat th is global problem and encourage our customers to do their part in stopping this practice by buying direct or from authorized distributors. product status definitions definition of terms datasheet identification product status definition advance information formative / in design datasheet contains the design specifications for product development. specifications may change in any manner without notice. preliminary first production datasheet contains preliminary data; supplementary data will be published at a later date. fairchild semiconductor reserves the right to make changes at any time without notice to improve design. no identification needed full production datasheet contains final specifications. fairchild semiconductor reserves the right to make changes at any time without notice to improve the design. obsolete not in production datasheet contains specifications on a product that is discontinued by fairchild semiconductor. the datasheet is for reference information only. rev. i49 n moc306xm, moc316xm ?6-pin dip zero-cross phototriac driver optocoupler (600 volt peak)


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