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  preliminary data this is preliminary information on a new product now in deve lopment or undergoing evaluation. details are subject to change without notice. may 2009 doc id 15587 rev 2 1/17 17 STGIPS10K60A 600 v - 10 a - sdip-25l molded igbt intelligent power module features 600 v, 10 a 3-phase igbt inverter bridge including control ics for gate driving and free- wheeling diodes 3.3 v, 5 v, 15 v cmos/ttl inputs comparators with hysteresis and pull down internal bootstrap diode dead time and interlocking function 5 k ? ntc thermistor for temperature control v ce(sat) negative temperature coefficient short-circuit rugged igbt under-voltage lockout dbc fully isolated package isolation rating of 2500 vrms/min. applications 3-phase inverters for low power motor drives home appliances, such as washing machines, refrigerators, air conditioners description the new intelligent power module developed by stmicroelectronics provides a compact, high performance ac motor drive for a simple and rugged design. it mainly targets low power inverters for applications such as home appliances and air conditioners. it combines st proprietary control ics with the most advanced short-circuit rugged igbt technology. sdip-25l molded table 1. device summary order code marking package packaging STGIPS10K60A gips10k60a sdip-25l molded tube www.st.com
contents STGIPS10K60A 2/17 doc id 15587 rev 2 contents 1 internal block diagram and pi n configuration . . . . . . . . . . . . . . . . . . . . 3 2 electrical ratings . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5 3 electrical characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7 3.1 control part . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8 4 applications information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11 4.1 recommendations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11 5 package mechanical data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12 6 revision history . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
STGIPS10K60A internal block diagram and pin configuration doc id 15587 rev 2 3/17 1 internal block diagram and pin configuration figure 1. internal block diagram r 4 c 1 r 5 c 2 r 6 l i n h i n h v g o u t l v g g n d l i n h i n h v g o u t l v g g n d l i n h i n v c c v b oot b o o t h v g o u t l v g g n d d 4 d 2 d 1 d 5 d 3 l i n w o u t u v b oot b o o t w d 6 v h i n w l i n u g n d n w l i n v v b oot b o o t u h i n u v b oot b o o t v o u t w h i n v p u o u t v w v c c t 1 n v n u t 2 t 1 t 4 t 3 t 2 t 6 t 5 n t c 1 2 p p p in i n 1 6 p in i n 1 p i n 1 7 p in i n 2 5 r 1 c 3 r 2 r 3 v b oot b o o t v c c v c c v b oot b o o t
internal block diagram and pin configuration STGIPS10K60A 4/17 doc id 15587 rev 2 figure 2. pin layout (bottom view) table 2. pin description pin symbol description 1out u high side reference output for u phase 2v boot u bootstrap voltage for u phase 3lin u low side logic input for u phase 4hin u high side logic input for u phase 5v cc low voltage power supply 6out v high side reference output for v phase 7v boot v bootstrap voltage for v phase 8 gnd ground 9lin v low side logic input for v phase 10 hin v high side logic input for v phase 11 out w high side reference output for w phase 12 v boot w bootstrap voltage for w phase 13 lin w low side logic input for w phase 14 hin w high side logic input for w phase 15 t 1 ntc thermistor terminal 1 16 t 2 ntc thermistor terminal 2 17 n w negative dc input for w phase 18 w w phase output 19 p positive dc input 20 n v negative dc input for v phase 21 v v phase output 22 p positive dc input 23 n u negative dc input for u phase 24 u u phase output 25 p positive dc input
STGIPS10K60A electrical ratings doc id 15587 rev 2 5/17 2 electrical ratings table 3. absolute maximum ratings: inverter part symbol parameter value unit v pn supply voltage applied between p - n u , n v , n w 450 v v pn(surge) supply voltage (surge) applied between p - n u , n v , n w 500 v v ces collector emitter voltage (v in (1) = 0) 1. applied between hin i , lin i and gnd for i = u, v, w 600 v i c (2) 2. calculated according to the iterative formula: each igbt continuous collector current at t c = 25c 10 a i cp (3) 3. pulse width limited by max junction temperature each igbt pulsed collector current 20 a p tot each igbt total dissipation at t c = 25c 26 w t scw short-circuit withstand time, v ce = 0.5 v (br)ces t j = 125 c, v cc = v boot = 15 v, v in (1) = 5 v 5s table 4. absolute maximum ratings: control part symbol parameter value unit v out output voltage applied between out u, out v, out w - gnd -3 to v boot -18 v v cc low voltage power supply -0.3 to +18 v v boot bootstrap voltage applied between v boot i - out i for i = u, v, w -1 to 618 v v in logic input voltage applied between hin i , lin i and gnd for i = u, v, w -0.3 to v cc +0.3 v dv out /dt allowed output slew rate 50 v/ns i c t c () t jmax () t c ? r thj c ? v ce sat () max () t jmax () i c t c () , () ---------------------------------------------------------------------------------------------------------- =
electrical ratings STGIPS10K60A 6/17 doc id 15587 rev 2 table 5. absolute maximum ratings: total system symbol parameter value unit v out output voltage applied between u, v, w - gnd 450 v v iso isolation withstand voltage applied between each pin and heatsink plate (ac voltage, t = 60sec.) 2500 v t j operating junction temperature -40 to 125 c table 6. thermal data symbol parameter value unit r thj-c thermal resistance junction-case single igbt 3.8 c/w thermal resistance junction-case single diode 5.5 c/w
STGIPS10K60A electrical characteristics doc id 15587 rev 2 7/17 3 electrical characteristics (t j = 25c unless otherwise specified) note: t on and t off include the propagation delay time of the internal drive. t c(on) and t c(off) are the switching time of igbt itself under the internally given gate driving condition table 7. inverter part symbol parameter test conditions value unit min. typ. max. v ce(sat) collector-emitter saturation voltage v cc = v boot = 15 v, v in (1) = 5 v, i c = 5 a 1. applied between hin i , lin i and gnd for i = u, v, w -2.12.7 v v cc = v boot = 15 v, v in (1) = 5 v, i c = 5 a, t j = 125 c -1.8 i ces collector-cut off current (v in (1) =0) v ce = 600 v - 100 a v f diode forward voltage v in (1) = 0, i c = 5 a - 1.4 v high side inductive load t on turn-on time v pn = 300 v, v cc = v boot = 15 v, v in (1) = 0 ? 5 v, i c = 5 a (see figure 6 ) - 320 - ns t c(on) crossover time (on) - 70 - t off turn-off time - 430 - t c(off) crossover time (off) - 135 - t rr reverse recovery time - tbd - e on turn-on switching losses - tbd - j e off turn-off switching losses - - low side inductive load t on turn-on time v pn = 300 v, v cc = v boot = 15 v, v in (1) = 0 ? 5 v, i c = 5 a (see figure 6 ) - 310 - ns t c(on) crossover time (on) - 70 - t off turn-off time - 470 - t c(off) crossover time (off) - 135 - t rr reverse recovery time - tbd - e on turn-on switching losses - tbd - j e off turn-off switching losses - -
electrical characteristics STGIPS10K60A 8/17 doc id 15587 rev 2 3.1 control part table 8. low supply voltage symbol parameter test conditions min. typ. max. unit v ccth1 under voltage turn on threshold 9.1 9.6 10.1 v v ccth2 under voltage turn of f threshold 7.9 8.3 8.8 v v cchys under voltage hystereses 0.9 v i qccu under voltage quiescent supply current v cc < 9 v 0.75 1.2 ma i qcc quiescent current v cc = 15 v 11.5ma r ds(on) (1) 1. r ds(on) is tested in the following way: bootstrap driver on resistance v cc > 12.5 v 125 ? table 9. bootstrap supply symbol parameter test conditions min. typ. max. unit v booth1 under voltage turn on threshold - 8.5 9.5 10.5 v v booth2 under voltage turn off threshold - 7.2 8.3 9.2 v v boothys under voltage hystereses - 0.9 v i qboot quiescent current - 250 a table 10. logic input symbol parameter test conditions min. typ. max. unit v il low level logic input voltage 1.1 v v ih high level logic input voltage 1.8 v i il low level logic input current v in (1) = 0 1. applied between hin i , lin i and gnd for i = u, v, w -1 a i ih high level logic input current v in (1) = 15 v 20 70 a dt dead time see figure 7 320 ns r ds on () v cc v boot1 ? () v cc v boot2 ? () ? i boot1 v cc v boot1 , () i boot2 v cc v boot2 , () ? ---------------------------------------------------------------------------------------------------------------- - =
STGIPS10K60A electrical characteristics doc id 15587 rev 2 9/17 equation 1: resistance variation vs temperature table 11. ntc thermistor symbol parameter test cond itions min. typ. max. unit. r 25 resistance t c = 25c 5 k ? r 125 resistance t c = 125c 300 ? b b-constant t c = 25c 3435 k t operating temperature -40 125 c figure 3. ntc resistance vs temperature rt () r 25 e b 1 t --- 1 298k ------------ - ? ?? ?? ? =
electrical characteristics STGIPS10K60A 10/17 doc id 15587 rev 2 figure 4. maximum i c current vs. switching frequency figure 5. maximum i c current vs. f sine t c = 8 0 c t c = 100 v pn = 400 v, mod u l a tion = 0. 8 , p.f. = 0.6, t j = 125 c f s ine = 60 hz i c (m a x) 4 0 8 f s (khz) (a) 4 12 8 12 16 am0 38 01v1 v pn = 400 v, modulation = 0.8, p.f. = 0.6, t j = 125 c, t c = 100 f s = 12 khz f s = 16 khz f s = 20 khz i c (m a x) 2 0 f s ine (hz) (a) 1 10 4 6 am0 38 02v1 figure 6. switching time definition
STGIPS10K60A electrical characteristics doc id 15587 rev 2 11/17 figure 7. dead time waveforms definition dt dt dt lin hin lvg hvg interlocking f u nction am0 3 794v1
applications information STGIPS10K60A 12/17 doc id 15587 rev 2 4 applications information figure 8. typical ipm app lication circuit example 4.1 recommendations to prevent the input signals oscillation, the wiring of each input should be as short as possible. by integrating an application specific type hvic inside the module, direct coupling to mcu terminals without any opto-coupler is possible. each capacitor should be located as nearby the pins of ipm as possible. low inductance shunt resistors should be used for phase leg current sensing. electrolytic bus capacitors should be mounte d as close to the module bus terminals as possible. additional high frequency ceramic capacitor mounted close to the module pins will further improve performance. !-v , ) . () . ( 6' / 5 4 ,6' ' . $ , ) . () . ( 6' / 5 4 ,6' ' . $ , ) . () . 6 # # 6 boot ( 6' / 5 4 ,6' ' . $ - . 4 #   6 0hase#urrent 7 0hase#urrent 5 0hase#urrent /54 5 6 boot5 6$# ,). 5 (). 5 6 ## '.$ 6,ine ,). 7 (). 7 4  4  #/.42/,,%2 0 5 . 5 6 . 6 7 . 7 6 boot 6 boot /54 6 6 boot6 6 # # 6 # # ,). 6 (). 6 /54 7 6 boot7 # # # 2 4 $ 2 4 $ 2 4 $ 2 4 $ 2 4 $ 2 4 $
STGIPS10K60A package mechanical data doc id 15587 rev 2 13/17 5 package mechanical data in order to meet environmental requirements, st offers these devices in different grades of ecopack ? packages, depending on their level of environmental compliance. ecopack ? specifications, grade definitions and product status are available at: www.st.com. ecopack is an st trademark. table 12. sdip-25l molded package mechanical data dim (mm) min typ max a44 -44.8 a1 0.95 - 1.75 a2 1.2 - 2 a3 39 - 39.8 b 21.6 - 22.4 b1 11.45 - 12.25 b2 24.83 - 25.63 c5 -5.8 c1 6.4 - 7.4 c2 11.1 - 12.1 e 1.95 - 2.75 e1 3.2 - 4 e2 4.3 - 5.1 e3 6.1 - 6.9 f0.8 - 1.2 f1 0.3 - 0.7 r3 - 4 t0.4 - 0.7
package mechanical data STGIPS10K60A 14/17 doc id 15587 rev 2 figure 9. sdip-25l molded package mechanical data 8154676revc
STGIPS10K60A package mechanical data doc id 15587 rev 2 15/17 table 13. mechanical characteristics and ratings parameter limits unit min. typ. max. mounting torque (m3 screw) 0.59 -- 0.78 nm device flatness 0 -- 100 m weight -- 13 -- g figure 10. flatness measurement position
revision history STGIPS10K60A 16/17 doc id 15587 rev 2 6 revision history table 14. document revision history date revision changes 16-apr-2009 1 initial release 11-may-2009 2 added figure 4: maximum ic current vs. switching frequency and figure 5: maximum ic current vs. fsine
STGIPS10K60A doc id 15587 rev 2 17/17 please read carefully: information in this document is provided solely in connection with st products. stmicroelectronics nv and its subsidiaries (?st ?) reserve the right to make changes, corrections, modifications or improvements, to this document, and the products and services described he rein at any time, without notice. all st products are sold pursuant to st?s terms and conditions of sale. purchasers are solely responsible for the choice, selection and use of the st products and services described herein, and st as sumes no liability whatsoever relating to the choice, selection or use of the st products and services described herein. no license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted under this document. i f any part of this document refers to any third party products or services it shall not be deemed a license grant by st for the use of such third party products or services, or any intellectual property contained therein or considered as a warranty covering the use in any manner whatsoev er of such third party products or services or any intellectual property contained therein. unless otherwise set forth in st?s terms and conditions of sale st disclaims any express or implied warranty with respect to the use and/or sale of st products including without limitation implied warranties of merchantability, fitness for a parti cular purpose (and their equivalents under the laws of any jurisdiction), or infringement of any patent, copyright or other intellectual property right. unless expressly approved in writing by an authorized st representative, st products are not recommended, authorized or warranted for use in milita ry, air craft, space, life saving, or life sustaining applications, nor in products or systems where failure or malfunction may result in personal injury, death, or severe property or environmental damage. st products which are not specified as "automotive grade" may only be used in automotive applications at user?s own risk. resale of st products with provisions different from the statements and/or technical features set forth in this document shall immediately void any warranty granted by st for the st product or service described herein and shall not create or extend in any manner whatsoev er, any liability of st. st and the st logo are trademarks or registered trademarks of st in various countries. information in this document supersedes and replaces all information previously supplied. the st logo is a registered trademark of stmicroelectronics. all other names are the property of their respective owners. ? 2009 stmicroelectronics - all rights reserved stmicroelectronics group of companies australia - belgium - brazil - canada - china - czech republic - finland - france - germany - hong kong - india - israel - ital y - japan - malaysia - malta - morocco - philippines - singapore - spain - sweden - switzerland - united kingdom - united states of america www.st.com


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