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  ir 25607 spbf 1 www.irf.com ? 201 2 international rectifier april 13 , 2012 high and low side driver ordering information features ? floating channel designed for bootstrap operation ? fully operational to +6 00v ? tolerant to negative transient voltage ? dv/dt immune ? gate drive supply range from 10 to 20v ? undervoltage lockout for both channels ? 3.3v logic compatible ? separate logic supply range from 3.3v to 20v ? logic and power ground 5v offset ? cmos schmitt - triggered inputs with pull - down ? cycle by cycle edge - triggered shutdown logic ? matched propagation delay for both channels ? outputs in phase with inputs description the ir 25607 is a high voltage, high speed power mosfet and igbt driver with independent high and low side referenced output channels. proprietary hvic and latch immune cmos technologies enable r uggedized monolithic construction. logic inputs are compatible with standard cmos or lsttl output, down to 3.3v logic. the output drivers feature a high pulse current buffer stage designed for minimum driver cross - conduction. propagation delays are matched to simplify use in high frequency applications. the floating channel can be used to drive an n - channel power mosfet or igbt in the high side configuration which operates up to 6 00 v . product summary v offset 6 00v max. i o +/ - 2a / 2a v out 10 C 20v ton/off (typ.) 120 & 94 ns delay matching (typ.) 2 0 ns package options 16 lead soic wide body base part number package type standard pack orderable part number form quantity IR25607SPBF so16w tube 45 IR25607SPBF IR25607SPBF so16w tape and reel 1000 ir25607strpbf
ir 25607 spbf 2 www.irf.com ? 201 2 international rectifier april 13 , 2012 typical connection diagram up to 600v
ir 25607 spb f 3 www.irf.com ? 201 2 international rectifier april 2 , 2012 | pd# absolute maximum ratings absolute maximum ratings indicate sustained limits beyond which damage to the device may occur. all voltage parameters are absolute voltages referenced to com . the thermal resistance and power dissipation ratings are measured under board mounted and still air conditions. symbol definition min. max. units v b high side floa ting supply voltage - 0.3 6 25 v v s high side floating supply offset voltage v b - 25 v b + 0.3 v ho high side floating output voltage v s - 0.3 v b + 0.3 v cc low side and logic fixed supply voltage - 0.3 25 v lo low side output voltage - 0.3 v cc + 0.3 v dd logic supply voltage - 0.3 v ss + 25 v ss logic supply offset voltage v cc C 25 v cc + 0.3 v in logic input voltage ( h in , lin & sd ) v ss - 0.3 v dd + 0.3 dvs/dt allowable offset supply voltage transient 50 v/ns p d package powe r dissipation @ t a +25c 1.25 w rth ja thermal resistance, junction to ambient 1 00 c/w t j junction temperature 150 c t s storage temperature - 55 150 t l lead temperature (soldering, 10 seconds) 300 recommended operating conditions for proper operation the d evice should be used within the recommended conditions. the v s and v ss offset rating s are tested with all supplies biased at 15v differential. symbol definition min. max. units v b high side floating supply a bsolute voltage v s + 10 v s + 20 v v s high side floating supply offset voltage ? 600 v ho high side floating output voltage v s v b v cc low side fixed supply voltage 10 20 v lo low side output voltage 0 v cc v dd logic supply voltage v s s + 3 v ss + 20 v ss logic supply offset voltage - 5 ?? 5 v in logic input voltage ( h in , lin & sd ) v ss v dd t a ambient temperature - 40 125 c ? logic operational for v s of - 5 to +600v. logic state held for v s of - 5v to - v bs . (please refer to de sign tip dt97 - 3 for more details). ?? when v dd < 5v, the minimum v ss offset is limited to - v dd .
ir 25607 spb f 4 www.irf.com ? 201 2 international rectifier april 2 , 2012 | pd# dynamic electrical characteristics v bias (v cc , v bs , v dd ) = 15v, cl = 1000 pf, v ss = com and t a = 25c unless otherwise specified. symbol definition min. typ. max. units test conditions ton turn - on propagation delay 120 150 ns v s = 0v toff turn - off propagation delay 94 125 v s = 6 00v tsd shutdown propagation delay 110 140 v s = 6 00v tr turn - on rise time 25 35 tf turn - off fall time 17 25 mt delay matching, hs & ls turn - on/off 2 0 static electrical characteristics v bias (v cc , v bs , v dd ) = 15v, v ss = com and t a = 2 5c unless otherwise specified. the v in , v th and i in parameters are referenced to v ss and are applicable to all three logic input leads: hin, lin and sd. the v o and i o parameters are referenced to com and are applicable to the respective output leads: ho and lo. symbol definition min. typ. max. units test conditions v ih logic 1 input voltage 9.5 v v il logic 0 input voltage 6.0 v oh high level output voltage, v bias - v o 1.2 i o = 0a v ol low level output voltage, v o 0.1 i o = 0a i lk offset supply leakage current 50 a v b = v s = 6 00v i qbs quiescent v bs supply current 125 230 v in = 0v or v dd i qcc quiescent v cc supply current 180 340 v in = 0v or v dd i qdd quiescent v cc supply current 15 30 v in = 0v or v dd i in+ logic 1 input bias current 20 4 0 v in = v dd i in - logic 0 input bias current 1 v in = 0v v bsuv+ v bs supply undervoltage positive going threshold 7.5 8.6 9.7 v v bsuv - v bs supply undervoltage negative going threshold 7.0 8.2 9.4 v ccuv+ v cc supply undervoltage posit ive going threshold 7.4 8.5 9.6 v ccuv - v cc supply undervoltage negative going threshold 7.0 8.2 9.4 i o+ output high short circuit pulsed current 2 2.5 a v o = 0v, v in = v dd pw 10 s i o - output low short circuit pulsed current 2 2.5 v o = 15v , v in = v dd pw 10 s
ir 25607 spb f 5 www.irf.com ? 201 2 international rectifier april 13 , 2012 functional block diagram
ir 25607 spb f 6 www.irf.com ? 201 2 international rectifier april 13 , 2012 lead definitions symbol description v dd logic supply h in logic input for high side gate driver ou tput (ho), in phase sd logic input for shutdown lin logic input for low side gate driver output (lo), in phase v ss logic ground v b high side floating supply ho high side gate drive output v s high side floating supply retur n v cc low side and logic fixed supply lo low side gate drive output com low side return lead assignments
ir 25607 spb f 7 www.irf.com ? 201 2 international rectifier april 13 , 2012 advance information figure 1. input/output timing diagram figure 2. switching time waveform definitions figure 3. shutdown waveform definitions figure 4. delay matching waveform definitions
ir 25607 spb f 8 www.irf.com ? 201 2 international rectifier april 13 , 2012 figure 5a. turn on time vs. temperature figure 5b. turn on time vs. v cc /v bs supply voltage figure 5c. turn on time vs. v dd supply voltage figure 6a. turn off time vs. temperature figure 6b. turn off time vs. v cc /v bs supply voltage figure 6c. turn off time vs. v dd supply voltage
ir 25607 spb f 9 www.irf.com ? 201 2 international rectifier april 13 , 2012 figure 7a. shutdown time vs. temperature figure 7b. shutdown time vs. v cc /v bs supply vol tage figure 7c. shutdown time vs. v dd supply voltage figure 8a. turn on rise time vs. temperature figure 8b. turn on rise time vs. voltage figure 9a. turn off fall time vs. temperature
ir 25607 spb f 10 www.irf.com ? 201 2 international rectifier april 13 , 2012 figure 9b. turn off fall time vs. voltage figure 10a. logic 1 input threshold vs. temperature figure 10b. logic 1 input threshold vs. voltage figure 11a. logic 0 input threshold vs. temperature figure 11b. logic 0 input threshold vs. voltage figure 12a. high level output vs. temperature
ir 25607 spb f 11 www.irf.com ? 201 2 international rectifier april 13 , 2012 figure 12b. high level output vs. voltage figure 13a. low level output vs. temperature figure 13 b. low level output vs. voltage figure 14 a. offset supply current vs. temperature figure 14 b. offset supply current vs. voltage figure 15 a. v bs supply current vs. temperature
ir 25607 spb f 12 www.irf.com ? 201 2 international rectifier april 13 , 2012 figure 15 b. v bs supply current vs. voltage figure 16 a. v cc supply current vs. temperature figure 16 b. v cc supply current vs. voltage figure 1 7 a. v dd supply current vs. tempe rature figure 1 7 b. v dd supply current vs. v dd voltage figure 18 a. logic 1 input current vs. temperature
ir 25607 spb f 13 www.irf.com ? 201 2 international rectifier april 13 , 2012 figure 18 b. logic 1 input current vs. v dd voltage figure 19 a. logic 0 input current vs. temperature figure 19 b. logic 0 input current vs. v dd voltage figure 20 . v bs undervoltage (+) vs. temperature figure 21 v bs undervoltage ( - ) vs. temperature figure 22 . v cc undervoltage (+) vs. temperature
ir 25607 spb f 14 www.irf.com ? 201 2 international rectifier april 13 , 2012 figure 23 . v cc undervoltage ( - ) vs. temperature figure 24 a. output source current vs. temperature figure 24 b. output source current vs. voltage figure 25 a. output sink current vs. temperature f igure 25 b. output sink current vs. voltage figure 26 . maximum v s negative offset vs. v bs supply voltag e
ir 25607 spb f 15 www.irf.com ? 201 2 international rectifier april 13 , 2012 figure 27 . maximum v ss positive offset vs. v cc supply voltage
ir 25607 spb f 16 www.irf.com ? 201 2 international rectifier april 13 , 2012 package details
ir 25607 spb f 17 www.irf.com ? 201 2 international rectifier april 13 , 2012 tape and reel details carrier tape dimension for 16soicn code min max min max a 7.90 8.10 0.311 0.318 b 3.90 4.10 0.153 0.161 c 15.70 16.30 0.618 0.641 d 7.40 7.60 0.291 0.299 e 6.40 6.60 0.252 0.260 f 10.20 10.40 0.402 0.409 g 1.50 n/a 0.059 n/a h 1.50 1.60 0.059 0.062 reel dimensions for 16soicn code min max min max a 329.60 330.25 12.976 13.001 b 20.95 21.45 0.824 0.844 c 12.80 13.20 0.503 0.519 d 1.95 2.45 0.767 0.096 e 98.00 102.00 3.858 4.015 f n/a 22.40 n/a 0.881 g 18.50 21.10 0.728 0.830 h 16.40 18.40 0.645 0.724 metric imperial metric imperial e f a c d g a b h note : controlling dimension in mm loaded tape feed direction a h f e g d b c
ir 25607 spb f 18 www.irf.com ? 201 2 international rectifier april 13 , 2012 part marking information i r x x x x x i r l o g o y w w ? p a r t n u m b e r d a t e c o d e p i n 1 i d e n t i f i e r l o t c o d e ( p r o d m o d e C 4 d i g i t s p n c o d e ) a s s e m b l y s i t e c o d e p e r s c o p 2 0 0 - 0 0 2 ? x x x x m a r k i n g c o d e l e a d f r e e r e l e a s e d n o n - l e a d f r e e r e l e a s e d ? p
ir 25607 spb f 19 www.irf.com ? 201 2 international rectifier april 13 , 2012 qualification information qualification level industrial (per jedec jesd 47e) comments: this family of ics has passed jedecs industrial qualification. irs consumer qualification level is granted by extension of the higher industrial lev el. moisture sensitivity level msl 3 (per ipc/jedec j - std - 020c) rohs compliant yes qualification standards can be found at international rectifiers web site http://www.irf.com/ higher qualification ratings may be available should the user have such requirements. please contact your international rectifier sales representative for further information. higher msl ratings may be available for the specific package types listed here. please contact your in ternational rectifier sales representative for further information. the information provided in this document is believed to be accurate and reliable. however, international rectifier assumes n o responsibility for the consequen ces of the use of this information. international rectifier assumes no responsibility for any infringement of patents or of other rights of third parties which may result from the use of this information. no license is granted by implication or oth erwise under any patent or patent rights of international rectifier. the specifications mentioned in this document are subject to change with out notice. this document supersedes and replaces all information previously supplied. for te chnical support, please contact irs technical assistance center world headquarters: 233 kansas st., el segundo, california 90245 tel: (310) 252 - 7105


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