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  IRS2008SPBF 1 rev 1.0 www.infineon.com 2017 - 01 - 11 200 - v half - bridge driver with shutdown input features ? gate drive supplies up to 20 v per channel ? under voltage lockout for v cc , v bs ? 3.3 v, 5 v , 15 v input logic compatible ? tolerant to negative transient voltage ? designed for use with bootstrap power supplies ? cross - conduction prevention logic ? matched propagation delay for both channels ? internal set dead time ? high - side output in phase with input ? shutdown input turns off both channels ? - 4 0 c to 125 c operating range ? rohs compliant product summary v offset 2 00 v v out 10 v C 20 v i o+ & i o - (typ.) 290 ma & 600 ma t on & t off (typ.) 68 0 ns & 15 0 ns deadtime (typ .) 5 2 0 ns description the irs2008s is a high vol tage, high speed power mosfet driver with dependent high and low side referenced output channels. proprietary hvic and latch immune cmos technologies enable ruggedized monolithic construction. the logic input is compatible with standard cm os or lsttl outpu t, down to 3.3 v logic. the output drivers feature a high pulse current buffer stage designed for minimum driver cross - conduction. the floating channel can be used to drive an n - channel power mosfet in the high side configuration which operates up to 2 00 v . propagation delays are matched to simplify the hvics use in high frequency applications. package options 8 - lead soic typical applications ? appliance motor drives ? servo drives ? micro inverter drives ? general purpose three phase inverters base part number package type standard pack orderable part number form quantity irs2008 spbf 8 - lead soic tube/bulk 95 irs2008s pbf tape and reel 2500 irs2008s trpbf
IRS2008SPBF 2 rev 1.0 www.infineon.com 2017 - 01 - 11 typical connection diagram (refer to lead assignments for correct pin configuration). this diagram shows electrical connections only. please refer tour application notes & designtips for proper circuit board layout.
IRS2008SPBF 3 rev 1.0 www.infineon.com 2017 - 01 - 11 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 unless otherwise stated in the table. the thermal resistance and power dissipation ratings are measured under board mounted and still air conditions. symbol definition min . max . units v cc low side supply voltage - 0.3 25 ? v v in logic input voltage ( in & sd ) com - 0.3 v cc + 0.3 v b high - side floating well supply voltage - 0.3 2 25 v s high - side floating well supply return voltage v b - 25 v b + 0.3 v ho floating gate drive output voltage v s - 0.3 v b + 0.3 v lo low - side output voltage com - 0.3 v cc + 0.3 com power ground v cc - 25 v cc + 0.3 dv s /dt allowable v s offset supply transient relative to com 50 v/ns p d package power dissipation @ t a ? +25oc 8 - lead soic 0.625 w rth ja thermal resistance, junction to ambient 8 - lead soic 200 oc/w t j junction temperature 150 oc t s storage temperature - 55 150 t l lead temperature (soldering, 10 seconds) 300 ? all supplies are tested at 25v . recommended operating conditions for proper operation, the device should be used within the recommended conditions. all voltage parameters are absolute voltages referenced to com unless otherwise stated in the table. the offset rating is tested with supplies of (v cc - com) = (v b - v s ) = 15 v. symbol definition min max units v cc low - side supply voltage 10 20 v v in logic input voltage (in & sd ) 0 v cc v b high - side floating well supply voltage v s + 10 v s + 20 v s high - side floating well supply offset voltage ? com - 8 ? 200 v ho floating gate drive output voltage v s v b v lo low - side output voltage com v cc t a ambient temperature - 40 125 oc ? logic operation for vs of C 8 v to 200 v. logic state held for v s of C 8 v to C v bs . please refer to design tip dt97 - 3 for more details.
IRS2008SPBF 4 rev 1.0 www.infineon.com 2017 - 01 - 11 static electrical characteristics (v cc - com) = (v b - v s ) = 15 v. t a = 25 c unless otherwise specified. the v in and i in parameters are referenced to com. the v o and i o parameters are referenced to respective v s and com and are applicable to the respective output leads ho or lo. the v ccuv parameters are referenced to com. the v bsuv parameters are referenced to v s . symbol definition min. typ. max. units test conditions v bsuv + v bs supply under voltage positive threshold 8.0 8.9 9.8 v v bsuv - v bs su pply under voltage negative threshold 7.4 8.2 9 v bsuvhy v bs supply under voltage hysteresis 0. 7 v ccuv + v cc su pply under voltage positive threshold 8.0 8.9 9.8 v ccuv - v cc sup ply under voltage negative threshold 7.4 8.2 9 v ccuvhy v cc supply under voltage hysteresis 0. 7 i lk high - side floating well offset supply leakage 50 a v b = v s = 2 00 v i qbs quiescent v bs supply current 45 75 all inputs are in the off state i qcc quiescent v cc supply current 300 520 v oh high level output voltage drop, v bias - v o 0 . 05 0.2 v i o = 2 m a v ol low level output voltage drop, v o 0.02 0.1 i o + output high short circuit pulsed current 200 290 m a v o = 0 v pw 10 s i o - output low short circuit pulsed current 420 600 v o = 15 v pw 10 s v ih logic 1 (ho) & logic 0 (lo) input voltage 2.5 v vcc =10 v - 20 v v il logic 0 (ho) & logic 1 (lo) input voltage 0.8 v sd,th+ sd input positive going threshold 2.5 v sd,th - sd input negative going threshold 0.8 i in+ logic 1 input bias current 3 10 a v in = 5 v i in - logic 0 input bias current 5 v in = 0 v dynamic electrical characteristics v cc = v b = 15 v, v s = com, t a = 25 o c, and c l = 1000 pf unless otherwise specified. symbol definition min. typ. max. units test conditions t on turn - on propagation delay 680 87 0 ns v s =0 v or 200 v t off turn - off propagation delay 150 220 t sd shutdown propagation delay 160 220 t r turn - on rise time 70 170 v s = 0 v t f turn - off fall time 30 90 dt dead time, l o turn - off to h o turn - on & h o turn - off to l o turn - on 400 520 650 mt delay matching time ( t on , t off ) 60
IRS2008SPBF 5 rev 1.0 www.infineon.com 2017 - 01 - 11 functional block diagram 2 in 8 vb 7 ho 6 vs 3 sd pulse generator delay match pulse filter uv detect dead time and short through prevention q r s r 1 vcc 5 lo 4 com uv detect
IRS2008SPBF 6 rev 1.0 www.infineon.com 2017 - 01 - 11 lead definitions symbol description v cc low - side and logic supply voltage v b high - side gate drive floating supply v s high voltage floating supply return in logic inputs for high and low side gate driver output (ho and lo ), in phase with ho sd logic inputs for shutdown ho high - side driver output lo low - side driver output com low - side gate drive return lead assignments 8 - lead soic irs2008s 8 7 6 5 s d v b i n 1 2 3 4 v s h o l o v c c c o m
IRS2008SPBF 7 rev 1.0 www.infineon.com 2017 - 01 - 11 application information and additional details
IRS2008SPBF 8 rev 1.0 www.infineon.com 2017 - 01 - 11 parameters trend with different tempera ture and voltage bias . (fig.6 ~ fig.25) figure 6 a. turn - on time vs. temperature figure 6 b. turn - on time vs. supply voltage fig ure 6 c. turn - on time vs. input voltage figure 7 a. turn - off time vs. temperature figure 7 b. turn - off time vs. supply voltage figure 7 c. turn - off time vs. input voltage
IRS2008SPBF 9 rev 1.0 www.infineon.com 2017 - 01 - 11 figure 8a. shutdown time vs. temperature figure 8b. shutdown time vs. supply voltage figure 9 a. turn - on rise time vs. temperature figure 9 b. turn - on rise time vs. supply voltage figure 10 a. turn - off fall time vs. temperature figure 10 b. turn - off fall time vs. supply voltage
IRS2008SPBF 10 rev 1.0 www.infineon.com 2017 - 01 - 11 figure 11 a. deadtime vs. temperature figure 11b . deadtime vs. supply voltage figure 12 a. logic 1 (ho ) & logic 0 ( lo ) vs. temperature figure 12 b. logic 1 (ho ) & logic 0 ( lo ) vs. supply voltage figure 13 a. logic 0 (ho ) & logic 1( lo ) vs. temperature figure 13 b. logic 0 (ho ) & logic 1( lo ) vs supply voltage
IRS2008SPBF 11 rev 1.0 www.infineon.com 2017 - 01 - 11 figure 1 4 a. high level output voltage vs. temperature figure 1 4 b. high level output voltage vs. supply voltage figure 1 5 a. low level output voltage vs. temperature figure 1 5 b. low level output voltage vs. supply voltage figure 1 6 a. offset supply current vs. temperature figure 1 6 b. offset supply current vs. offset voltage
IRS2008SPBF 12 rev 1.0 www.infineon.com 2017 - 01 - 11 figure 1 7 a. v bs supply current vs. temperature figure 1 7 b. v bs supply current vs. supply voltage figure 1 8 a. v cc supply current vs. temperature figure 1 8 b. v cc supply current vs. supply voltage figure 1 9 a. logic 1 input current vs. temperature figure 1 9 b. logic 1 input current vs. supply voltage
IRS2008SPBF 13 rev 1.0 www.infineon.com 2017 - 01 - 11 figure 20 a. logic 0 input bias current vs. temperature figure 20 b. logic 0 input current vs. supply voltage figure 21 a. v cc \ v bs undervoltage threshold(+) vs. temperature figure 21 b. v cc \ v bs undervoltage threshold( - ) vs. temperature figure 22 a. output source current vs. temperature figure 22 b. output source current vs. supply voltage
IRS2008SPBF 14 rev 1.0 www.infineon.com 2017 - 01 - 11 figure 2 3 a. output sink current vs. temperature figure 24a. s d input p ositive going threshold(+) vs. temperature figure 25a. sd input negative going threshold( - ) vs. temperature figure 2 3 b. output sink current vs. supply voltage figure 24b. s d input p ositive going threshold(+) vs. supply voltage figure 25b . sd input negative going threshold( - ) vs. supply voltage
IRS2008SPBF 15 rev 1.0 www.infineon.com 2017 - 01 - 11 package details : 8 - lead soic
IRS2008SPBF 16 rev 1.0 www.infineon.com 2017 - 01 - 11 tape and reel details : 8 - lead soic carrier tape dimension for 8soicn code min max min max a 7.90 8.10 0.311 0.318 b 3.90 4.10 0.153 0.161 c 11.70 12.30 0.46 0.484 d 5.45 5.55 0.214 0.218 e 6.30 6.50 0.248 0.255 f 5.10 5.30 0.200 0.208 g 1.50 n/a 0.059 n/a h 1.50 1.60 0.059 0.062 reel dimensions for 8soicn 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 18.40 n/a 0.724 g 14.50 17.10 0.570 0.673 h 12.40 14.40 0.488 0.566 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
IRS2008SPBF 17 rev 1.0 www.infineon.com 2017 - 01 - 11 part marking information 8 - lead soic8 irs2008 spbf s 2 0 0 8 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
IRS2008SPBF 18 rev 1.0 www.infineon.com 2017 - 01 - 11 qualification information qualification level industrial ? comments: this family of ics has passed jedecs industrial qualification. consumer qualification level is granted by extension of the higher industrial level. moisture sensitivity level 8 lead soic msl2 ? ? , 260 ? c (per ipc/jedec j - std - 020) esd human body model class 2 (per jedec standard jesd22 - a114 ) machine model class a (per eia/jedec standard eia/jesd22 - a115) ic latch - up test class i i, level a (per jesd78) rohs compliant yes ? higher qualification ratings may be available should the user have such requirements. please contact your infineon sales representative for further information. ?? higher msl ratings may be available for the specific package types listed here. please contact your infineon sales representative for further information.
IRS2008SPBF 19 rev 1.0 www.infineon.com 2017 - 01 - 11 published by infineon technologies ag 81726 mnchen, germany ? infineon technologies ag 2015 all rights reserved. important notice the information given in this document shall in no event be regarded as a guarantee of conditions or characteristics (beschaffenheitsgarantie ). with respect to any examples, hints or any typical values stated herein and/or any information regarding the application of the product , infineon technologies hereby disclaims any and all warranties and liabilities of any kind, including without limita tion warranties of non - infringement of intellectual property rights of any third party. in addition , any information given in this document is subject to customer s compliance with its obligations stated in this document and any applicable legal requirem ents, norms and standards concerning customers products and any use of the product of infineon technologies in customers applications. the data contained in this document is exclusively intended for technically trained staff. it is the responsibility of customers technical departments to evaluate the suitability of the product for the intended application and the completeness of the prod uct information given in this document with respect to such application. for further information on the product, technology, delivery terms and conditions and prices please contact your nearest infineon technologies o ffice ( www.infineon.com ). warnings due to technical requirements products may contain dangerous substances. for information on the types in question please contact your nearest infineon technologies o ffice. except as otherwise explicitly approved by infineon technologies in a written document signed by authorized representatives of infineon technologies, infineon technologies products may not be used in any applications where a failure of the product or any consequences of the use thereof can reasonably be expected to result in personal injury.


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