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  september , 12th 2011 automotive grade auips6011( s )( r ) www.irf.com 1 intelligent power high side switch features ? over temperature shutdown (with auto-restart) ? short circuit protection (current limit) ? reverse battery protection (turns on the mosfet) ? full diagnostic capability (short circuit to battery) ? active clamp ? open load detection in on and off state ? ground loss protection ? logic ground isolated from power ground ? esd protection ? lead free and rohs compliant description the auips6011(s)(r) is a five terminal intelligent power switch (ips) for use in a high side configuration. it features short circuit, over-temperature, esd protection, ind uctive load capability and diagnostic feedback. the output curr ent is limited to the ilim value. the current limitation i s activated until the thermal protection acts. the over-temperature p rotection turns off the device if the junction temperature ex ceeds the tshutdown value. it will automatically restart after the junction has cooled 7c below the tshutdown value. the rever se battery protection turns on the mosfet. a diagnosti c pin provides different voltage levels for each fault co ndition. the double level shifter circuitry will allow large off sets between the logic and load ground. product summary rds(on) 14m ? max. vclamp 39v i limit 60a open load 3v / 2.4a packages to -220 d2pak d-pak auips6011 auips6011s auips6 011r typical connection out( 5) control dg(4) rin vcc(3) load +bat input signal v diag in(2) gnd(1) rdgs pull-up resistors required for open load off and short circuit to vbat detection rdgp +5v downloaded from: http:///
auips601 1( s )( r ) www.irf.com 2 qualification information ? qualification level automotive (per aec-q100 ?? ) comments: this family of ics has passed an automotive quali fication. irs industrial and consumer qualification level is granted by e xtension of the higher automotive level. moisture sensitivity level d2pak- 5l msl1, 260c (per ipc/jedec j-std- 020) to -2 20 not applicable (non -surface mount package style) dpak- 5l msl1, 260c (per ipc/jedec j-std- 020) esd machine model class m2 (+/-150v) ??? (per aec-q100- 003) human body model class h1c (+/-1500v) ??? ( per aec-q100- 002 ) charged device model (dpak,d2pak) class c4 (+/-900v) ??? (per aec-q100- 011) charged device model (to220) class c3b (+/-750v) ??? (per aec-q100- 011) ic latch-up test class ii , level a (per aec-q100- 004) rohs compliant yes ? qualification standards can be found at international re ctifiers web site http://www.irf.com/ ?? exceptions to aec-q100 requirements are noted in the qualifi cation report. ??? passing voltage level downloaded from: http:///
auips601 1( s )( r ) www.irf.com 3 absolute maximum ratings absolute maximum ratings indicate sustained limits be yond which damage to the device may occur. all volta ge parameters are referenced to ground lead. tj= -40c..150c, vc c=6..35v (unless otherwise specified). symbol parameter min. max. units vout maximum output voltage vcc- 35 vcc+0.3 v voffset maximum logic ground to load ground offset vcc- 35 vcc+0.3 vin maximum input voltage -0.3 5.5 vcc max. maximum vcc voltage ? 36 vcc cont. maximum continuous vcc voltage ? 28 vcc sc. maximum vcc voltage with short circuit protection ? 24 iin max. maximum in current -3 10 ma idg max. maximum diagnostic output current -3 10 vdg maximum diagnostic output voltage -0.3 5.5 v pd maximum power dissipation (internally limited by thermal protec tion) ? 25 w rth=5c/w au ips6011 rth=40c/w au ips6011s 1 sqrt. footprint ? 3.1 rth=50c/w au ips6011r 1sqrt. footprint ? 2.5 tj max. max. storage & operating temperature junction temperature - 40 150 c tsoldering soldering temperature (10 seconds) ? 300 c thermal characteristics symbol parameter typ. max. units rth1 thermal resistance junction to ambient au ips6011 to220 free air 50 ? c/w rth2 thermal resistance junction to case au ips6011 to220 1.2 ? rth1 thermal resistance junction to ambient au ips6011s d2pak std. footprint 60 ? rth2 thermal resistance junction to ambient au ips6011s d2pak 1 sqrt. footprint 40 ? rth3 thermal resistance junction to case au ips6011s d2pak 1.2 ? rth1 thermal resistance junction to ambient au ips6011r d-pak std. footprint 70 ? rth2 thermal resistance junction to ambient au ips6011r d- pak 1 sqrt. footprint 50 ? rth3 thermal resistance junction to case au ips6011r d-pak 1.2 ? recommended operating conditions these values are given for a quick design. for opera tion outside these conditions, please consult the a pplication notes. symbol parameter min. max. units vih high level input voltage 4 5.5 vil low level input voltage 0 0.9 iout continuous drain current, tambient=85c, tj=125c, vin=5v a rth=5c/w ips6011 ? 18 rth=40c/w ips6011s 1 sqrt. footp rint ? 6.3 rth=50c/w ips6011r 1 sqrt. footprint ? 5.6 rin recommended resistor in series with in pin 4 10 k ? rdgs recommended resistor in series with dg pin for reverse bat tery protection 4 20 rdgp recommended pull-up resistor for dg 4 20 rol recommended pull-up resistor for open load detection 5 100 f max. max. switching frequency ? 0.3 khz downloaded from: http:///
auips601 1( s )( r ) www.irf.com 4 static electrical characteristics tj= -40c..150c, vcc=6..28v (unless otherwise specifie d), typical values are given for vcc=14v and tj=25 c symbol parameter min. typ. max. units test conditions rds(on) on state resistance tj=25c ? 11 14 m ? vin=5v, iout= 20 a on state resistance tj=150c ? 19.5 25 vin=5v, iout= 20 a on state resistance tj=25c, vcc=6v ? 12 17 vin=5v, iout= 20 a on state resistance during reverse battery tj=25c ? 15 20 vcc-gnd=- 14 v vcc op. operating voltage range with short circuit protection 6 ? 24 v v clamp 1 vcc to out clamp voltage 1 36.5 39 43 iout=50ma v clamp 2 vcc to out clamp voltage 2 ? 40 ? iout= 16 a (see fig. 1) icc off supply current when off and vout connected to ground with r<4? ? 4 9 a vin=0v, vout=0v , tj=25c, vcc=14v icc on supply current when on ? 2.2 5 ma vin=5v, vcc=14v vih input high threshold voltage ? 2.5 3 v vil input low threshold voltage 1.5 2 ? in hyst. input hysteresis 0.2 0.5 1 iin on input current when device is on ? 40 100 a vin=5v idg dg leakage current ? 0.1 10 vdg=5v vdg low level dg voltage ? 0.25 0.4 v idg=1.6ma switching electrical characteristics vcc=14v, resistive load=6 ? , vin=5v, tj=-40c..150c, typical values are given for tj=25c symbol parameter min. typ. max. units test conditions tdon turn-on delay time ? 30 80 s see fig. 3 tr1 rise time to vout=vcc- 5v ? 25 80 tr2 rise time to vout=0.9 x vcc tj= -40c..25c ? 80 3 00 tj =25c..150c 40 100 dv/dt (on) turn on dv/dt ? 0.3 ? v/s eon turn on energy ? 4 ? mj tdoff turn-off delay time ? 70 1 50 s tf fall time to vout=0.1 x vcc ? 30 80 dv/dt (off) turn off dv/dt ? 0.7 ? v/s eoff turn off energy ? 1.5 ? mj downloaded from: http:///
auips601 1( s )( r ) www.irf.com 5 protection characteristi cs tj= -40c..150c, vcc=6..28v (unless otherwise specifie d), typical values are given for vcc=14v and tj=25 c symbol parameter min. typ. max. units test conditions ilim internal current limit 35 60 85 a vout=0v, tj=25c tsd+ over temperature high thresho ld 150(1) 165 ? c see fig. 2 tsd- over temperature low threshold ? 158 ? vsc short-circuit detection voltage(2) 2 3 4 v uv + under voltage protection vcc going up ? 5 6.2 uv - under voltage protection vcc going down ? 4.5 5.8 vol off open load detection threshold 2 3 4 i ol on open load detection threshold 0.5 2 3 a tj= -40..25c 0.5 1.6 2.4 tj=25..150c (1) guaranteed by design (2) reference to vcc true table operating conditions in out dg normal h h h normal l l h open load h h l open load (3) l h l short circuit to gnd h l l short circuit to gnd l l h short circuit to vcc h h l (4) short circuit to vcc (5) l h l over-temperature h l l over-temperature l l h (3) with a pull-up resistor connected between the ou tput and vcc. (4) vds lower than 10mv. (5) without a pull-up resistor connected between the output and vcc. lead assignments downloaded from: http:///
auips601 1( s )( r ) www.irf.com 6 functional block diagram all values are typical in vcc out 37v driver i limit 43v 150k ? i sense - + charge pump level shifter tj 165c 158c 2.5v 2.0v 6v dg 6v gnd ground disconnect 3v - + open load off over-temp 20mv - + open load on 3v - + short circuit 43v vcc- gnd >uv downloaded from: http:///
auips601 1( s )( r ) www.irf.com 7 vds ids vin vcc vds clamp t clamp see application notes to evaluate power dissipation tj ilim tsd+ tsd- iout vin limiting thermal cycling dg figure 1 C active clamp waveforms figure 2 C protection timing diagram vout vin tr - in 90% 10% 90% 10% td on tr1 td off tf vcc- 5v tr2 vcc figure 3 C switching times definitions figure 4 C active clamp test circuit vclamp iout vin in vcc out r l 0v 5v 14v + - vout rem : during active clamp, vload is negative dg gnd downloaded from: http:///
auips601 1( s )( r ) www.irf.com 8 50% 100% 150% 200% -50 0 50 100 150 0 5 10 15 20 25 30 35 40 -50 0 50 100 150 to220 5c/w d2pak 40c/w dpak 50c/w figure 5 C switching energy (j) vs output current (a) eon, eoff, switching energy (j) iout, output current (a) 0 1000 2000 3000 4000 0 5 10 15 1 10 100 0.001 0.01 0.1 1 10 tj, junction temperature (c) figure 6 - normalized rds(on) (%) vs tj (c) rds(on), drain- to -source on resistance (normalized) figure 7 C max. output current (a) vs load inductance (mh) load inductance (mh) iout, output current (a) figure 8 C max. ouput current (a) vs ambient temperature (c) ids, cont. output current (a) tamb, ambient temperature (c) eon eoff downloaded from: http:///
auips601 1( s )( r ) www.irf.com 9 0 10 20 30 40 50 60 70 80 -50 0 50 100 figure 10 C i limit (a) vs junction temperature (c) vcc, power supply voltage (v) icc on/ icc off, supply current (a) 1.e+0 1.e+1 1.e+2 1.e+3 1.e+4 0 5 10 15 20 25 30 icc on icc off figure 11 C icc on/ icc off (a) vs vcc (v)* figure 12 C icc on/ icc off (a) vs tj (c)* icc on/ icc off, supply current (a) tj, junction temperature (c) 1.e+0 1.e+1 1.e+2 1.e+3 1.e+4 -50 0 50 100 150 icc on icc off 0.01 0.1 1 10 100 1e -5 1e -4 1e -3 1e -2 1e -1 1e+0 1e+1 1e+2 1e+3 *vout connected to ground with r<4? i limit (a) figure 9 C transient thermal impedance (c/w) vs time (s) zth, transient thermal impedance (c/w) time (s) tj, junction temperature (c) downloaded from: http:///
auips601 1( s )( r ) www.irf.com 10 case outline - to220 (5 leads ) downloaded from: http:///
auips601 1( s )( r ) www.irf.com 11 case outline d2pak - 5 leads downloaded from: http:///
auips601 1( s )( r ) www.irf.com 12 tape & reel d2pak - 5 leads downloaded from: http:///
auips601 1( s )( r ) www.irf.com 13 case outline dpak - 5 leads downloaded from: http:///
auips601 1( s )( r ) www.irf.com 14 tape & reel dpak - 5 leads downloaded from: http:///
auips601 1( s )( r ) www.irf.com 15 part marking information ordering information base part number package type standard pack complete part number form quantity auips 6011 to220-5- leads tube 50 auips 6011 auips 6011 s d2 -pak-5- leads tube 50 auips 6011 s tape and reel left 800 auips 6011 strl tape and reel right 800 auips6011strr auips 6011 r d-pak-5- leads tube 75 auips 6011 r tape and reel 2000 auips 6011 rtr tape and reel left 3000 auips 6011 rtrl tape and reel right 3000 auips 6011 rtrr downloaded from: http:///
auips601 1( s )( r ) www.irf.com 16 important notice unless specifically designated for the automotive market, international rectifier corporation and its subsidiaries (ir) reserve the right to make corrections, modifications, enh ancements, improvements, and other changes to its p roducts and services at any time and to discontinue any product or se rvices without notice. part numbers designated with the au prefix follow automotive industry and / or customer spec ific requirements with regards to product discontinuance an d process change notification. all products are sold subjec t to irs terms and conditions of sale supplied at the tim e of order acknowledgment. ir warrants performance of its hardware products to the specifications applicable at the time of sale in accord ance with irs standard warranty. testing and other quality contro l techniques are used to the extent ir deems necessary to support this warranty. except where mandated by gove rnment requirements, testing of all parameters of each p roduct is not necessarily performed. ir assumes no liability for applications assistance or customer product design. customers are responsible for th eir products and applications using ir components. to minimize the risks with customer products and applications, customers should provide adequate design and operating safe guards. reproduction of ir information in ir data books or data sh eets is permissible only if reproduction is without alteration and is accompanied by all associated warranties, conditions, limit ations, and notices. reproduction of this information with alterations is an unfair and deceptive business practice. i r is not responsible or liable for such altered documentation . information of third parties may be subject to additional res trictions. resale of ir products or serviced with statements differe nt from or beyond the parameters stated by ir for th at product or service voids all express and any implied warranties for the associated ir product or service and is an unfair and deceptive business practice. ir is not responsible or lia ble for any such statements. ir products are not designed, intended, or authorized fo r use as components in systems intended for surgical imp lant into the body, or in other applications intended to support o r sustain life, or in any other application in which the fa ilure of the ir product could create a situation where personal injury o r death may occur. should buyer purchase or use ir p roducts for any such unintended or unauthorized application, buy er shall indemnify and hold international rectifier and its o fficers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that ir was negligent regarding the design or manufactur e of the product. ir products are neither designed nor intended for use in mi litary/aerospace applications or environments unless the ir products are specifically designated by ir as military- grade or enhanced plastic. only products designated by ir as military-grade meet military specifications. buyers ackno wledge and agree that any such use of ir products whic h ir has not designated as military- grade is solely at the buyers risk, and that they are s olely responsible for compliance with all legal and regulatory requirements in connection with such use. ir products are neither designed nor intended for use in a utomotive applications or environments unless the specific ir products are designated by ir as compliant with iso/ts 1 6949 requirements and bear a part number including the designation au. buyers acknowledge and agree that, if they use any non -designated products in automotive applications, ir will not be responsible for any failure to meet such requirements. for technical support, please contact irs technical assis tance center http://www.irf.com/technic al -info/ world headquarters: 101 n sepulbeda blvd., el segundo, california 90245 tel: (310) 252- 7105 downloaded from: http:///
auips601 1( s )( r ) www.irf.com 17 revision history revision date notes/changes e september, 12th 2011 au release f may 15, 2012 add the test condition for the icc (off) parameters downloaded from: http:///


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