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  for power management application contro l i ntegrated p o wer system (cipos? ) i kcs12 f60b2a i kcs12 f60b2c http://www. lspst. com data sheet, jun . 20 10
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 2 / 18 jun . 20 10 revision history : 2010 - 0 6 rev. 1.0 previous version: infineon technologies data sheet ver. 2.2 page subjects (major changes since last revision) no editorial change document in format change authors: junho song*, junbae lee * and daewoong chung *, w. frank ** , w. brunnbauer ** ls power semitech*, infineon technologies** edition 20 10 - 0 1 published by ls power semitech co., ltd. seoul , korea ?
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 3 / 18 jun. 20 10 table of contents: cipos? c ontrol i ntegrated p o wer system ................................................................................................. 4 features ........................................................................................................................................................ 4 target applications ..................................................................................................................................... 4 description ................................................................................................................................................... 4 system configuration ................................................................................................................................. 4 cer tification .................................................................................................................................................. 4 internal electrical schematic ........................................................................................................................... 5 pin assignment ................................................................................................................................................. 6 pin description ............................................................................................................................................ 6 absolute maximum ratings ............................................................................................................................ 8 module section ............................................................................................................................................ 8 igbt and diode section .............................................................................................................................. 8 control section ............................................................................................................................................ 9 recommended operation conditions ............................................................................................................ 9 static characteristics ..................................................................................................................................... 10 dynamic characteristics ................................................................................................................................ 10 integrated components ................................................................................................................................. 11 characteristics ................................................................................................................................................ 13 package outline i kcs 12 f60b2a ................................................................................................................... 17 package outline i kcs 12 f60b2c ................................................................................................................... 18 package data ................................................................................................................................................... 18
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 4 / 18 jun . 20 10 cipos? c o ntrol i n tegrated p o wer s ystem single in- line intelligent power module 3 - bridge 600v / 12 a @ 25c features ? ? v ce(sat) ? ? ? ? ? ? ? ? ? ? ? target applications ? ? description the cipos? module family offers the chance for integrating various power and control components to increase reliability, optimize pcb size and system costs. this sil - ipm is designed to control ac motors in variable speed drives for applications like air conditioning , compressors and washing machines. the package concept is specially adapted to power applications, which need extremely good thermal conduction and electrical isolation, but also emi - save control and overload protection. the features of trenchstop ? igbts and antiparallel diodes are combined with a new optimized infineon soi gate driver for excellent electrical performance. system configuration ? ? ? ? ? ? ? certific ation ul 1577 (ul file e314539 )
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 5 / 18 jun. 20 10 internal electrical schematic figure 1 : internal schematic /hin1 /hin2 /hin3 /lin1 /lin2 /lin3 vcc rcin en /fault vss com rts vb1 vb2 vb3 ho1 ho2 ho3 lo1 lo2 lo3 vs1 vs2 vs3 vss (23) /lin3 (20) /lin2 (19) /lin1 (18) /hin3 (17) /hin2 (16) /hin1 (15) vdd (22) vb1 (7) vb2 (4) vb3 (1) vrw (14) vrv (13) vru (12) w, vs3 (2) v, vs2 (5) u, vs1 (8) v+ (10) temp (24) driver-ic itrip (21) itrip rbs r1 c2 c1 cbsh1 cbsh2 cbsh3 rh1 rl1 rl2 rh2 rl3 rh3 dbs1- dbs3 tr1, u-hs d1 tr2, u-ls d2 tr3, v-hs d3 tr4, v-ls d4 tr5, w-hs d5 tr6, w-ls d6 cge1 cge2 cge3 cge4 cge5 cge6 cge = 390 pf dz r2-r8
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 6 / 18 jun. 20 10 pin assignment pin number pin name pin description 1 vb3 high side floating ic supply voltage 2 w,vs3 motor output w, high side floating ic supply offset voltage 3 n.a. none 4 vb2 high side floating ic supply voltage 5 v,vs2 motor output v, high side floating ic supply offset voltage 6 n.a. none 7 vb1 high side floating ic supply voltage 8 u,vs1 motor output u, high side floating ic supply offset voltage 9 n.a. none 10 v+ positive bus input voltage 11 n.a. none 12 vru low side emitter 13 vrv low side emitter 14 vrw low side emitter 15 /hin1 input gate driver high side 1/u 16 /hin2 input gate driver high side 2/v 17 /hin3 input gate driver high side 3/w 18 /lin1 input gate driver low side 1/u 19 /lin2 input gate driver low side 2/v 20 /lin3 input gate driver low side 3/w 21 itrip input overcurrent shutdown 22 vdd module control supply 23 vss module negative supply 24 temp temperature monitoring pin description /hin1,2,3 and /lin1,2,3 (low side and high side control pins, pin 15 - 20 ) these pins are active low and they are responsible for the control of the integrated igbt the schmitt - trigger input threshold of them are such to guarantee lsttl and cmos compatibility down to 3.3v co ntroller outputs. the ma ximum voltage at these pins is 5.5 v and therefore fully compliant to 3.3v - microcontrollers. pull - up resistor of about 75 k ? v ih ; v il linx hinx v dd v z =3.3v
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 7 / 18 jun. 20 10 the same leg (i.e. ho1 and lo1, ho2 and lo2, ho3 and lo3). a minim um deadtime insertion of typ 380 ns is also provided, in order to red uce cross - conduction of the external power switches. temp ( temperature ntc , pin 24) the temp terminal provides direct access to the ntc, which is referenced to vss. an external pull - up resistor connected to +5v ensures, that the resulting voltage can be directly connected to the microcontroller. figure 3 : internal c ircuit at pin temp itrip (over - c urrent detection function, pin 21 ) cipos? provides an over - current detection function by connecting the itrip input with the motor current feedback. the itrip co mparator threshold (typ 0.46 v) is referenced to vss ground. a input noise filter (typ: t itripmin = 225ns) prevents the driver to detect false over - current events. over - current detection generates a hard shut down of all outputs of the gate driver after the shutdown propagation delay of typically 900ns. the fault - clear time is set to typically to 4.7ms. vdd , vss ( control side supply and reference , pin 2 2, 2 3) v dd is the low side supply and it provides power both to input logic and to low side output power stage. input logic is referenced to vss ground as well as the under - voltage detection circuit. the under - voltage circuit enables the device to operate at power on when a supply voltage of at least a typical voltage of v dd uv+ = 12.1 v is at least present. the ic shuts down all the gate drivers power outputs, when the v dd supply voltage is below v dduv- = 10.4 v. this prevents the external power switches from critically low gate voltage levels during on - state and therefore from excessive power dissipation. vb1,2,3 and vs1,2,3 (high side supplies, pin 1 , 2, 4, 5, 7, 8 ) vb to vs is the high side supply vol tage. the high side circuit can float with respect to vss following the external high side power device emitter/source voltage. due to the low power consumption, the floating driver stage is s upplied by an integrated boo tstrap circuit connected to vdd . thi s includes also integrated bootstrap capacitors of 100 nf at each floating supply, which are located very close to the gate drive circuit. the u nder - voltage detection operates with a rising supply threshold of typical v bsuv+ = 12.1 v and a falling threshold of v dduv- = 10.4 v according to figure 4 . vs1,2,3 provide a high robustness against negative voltage in respect of vss of - 50v. this ensures very stable designs even under rough conditions. uvlo stand by v dd v dduv+ , v bsuv+ normal operation v dduv- , v bsuv- t v ddmax , v bsmax figure 4 : ope ration modes vru, vrv, vrw (low side emitter, pin 12 , 13, 14 ) the l ow side emitters are available for current measurements of each phase leg. it is recommended to keep the connection to pin vss as short as possible in order to avoid unnecessary inductive voltage drops. v+ (positive bus input voltage, pin 1 0) the high side igbt are connected to the bus voltage. it is recommended, that the bus voltage does not exceed 500v. r ntc temp cipos? vss
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 8 / 1 8 jun. 20 10 absolute maximum ratings ( t j = 25c, v dd = 15v unless otherwise specified): module section description condition symbol value unit min max storage temperature range t stg - 40 125 c operating temperature control pcb 1 t pcb - 125 c solder temperature wave soldering, 1.6mm (0.063in.) from case for 10s t sol - 260 c insulation test voltage rms, f= 50hz, t = 1min v isol 2500 - v mounting torque m3 screw and washer m s - 0.6 nm mounting pressure on surface package flat on mounting surface n mc - 150 n/mm2 creepage distance d s 3.1 - mm max. peak power of bootstrap resistor t p = 100s t c = 100c p brpeak 90 w igbt and diode section description condition symbol value unit min max max. blocking voltage v ces 600 - v dc output current t c = 25c,t vj <150c t c = 80c,t vj <150c i u , i v , i w - 12 - 6 12 6 a repetitive peak collector current t p limited by t vjmax i u , i v , i w - 18 18 a short circuit withsta nd time 2 v dd = 15v,v dc = = = 1 monitored by pin 24 2 allowed number of short circuits: <1000; time between short circuits: >1s.
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 9 / 18 jun. 20 10 description condition symbol value unit min max single igbt thermal resistance, junction - case r thjc - 3. 0 k/w single diode thermal resistance, junction - case r thjcd - 4. 2 control section description condition symbol value unit min max module supply voltage v dd - 1 20 v high side floating supply voltage (vb vs. vs) v bs - 1 20 high side floating ic supply offset voltage t p < 500ns v s1,2,3 vdd - vbs - 6 vdd - vbs - 50 600 input voltage /lin, /hin floating v in - 1 5.5 input v oltage itrip v initrip - 1 10 operating junction temperature 1 t j,ic - 125 c max. switching frequency f pwm - 20 khz recommended operation conditions all voltages are absolute voltages referenced to v ss - potential unless otherwise specified. description symbol value unit min max high side floating supply offset voltage v s - 3 500 v high side floating supply voltage (v b vs. v s ) v bs 12.5 17.5 low side power supply v dd 12.5 17.5 logic input voltages lin, hin, itrip v in 0 5 1 monitored by pin 24
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 10/ 18 jun. 20 10 static characteristics (t c = 25c, v dd = 15v, if not stated otherwise) description condition symbol value unit min typ max collector - emitter breakdown voltage v in = 5v, i c = 0.25m a v (br)ces 600 - - v collector - e mitter saturation voltage v dd = 15v, i out = +/ - 6 a t vj = 25 v dd and v bs supply under voltage positive going threshold v dduv+ v bsuv+ 2 11.0 12. 1 12.8 v v dd and v bs supply under voltage nega tive going threshold v dduv- v bsuv- 2 9.5 10.4 11 v v cc and v bs supply under voltage lockout hysteresis v dduvh v bsuvh 2 1.2 1.7 - v input clamp voltage (/hin, /lin) i in = 4 ma v inclamp 9.0 10.4 13 .0 v input clamp voltage (itrip) i in = 4ma v inclamp 2 9.0 10.6 13.0 v quiescent v b x supply current (v b x only) v in = low i qb - 300 550 a quiescent v dd supply current (v dd only) v in = float i qdd - 2.4 3.4 ma input bias current v in = 5v i in+ - 55 100 a input bias current v in = 0v i in - - 220 400 a itrip input bias current v itrip = 5v i itrip+ - 75 120 a leakage current of high side t j,ic = 125 dynamic characteristics 1 allowed number of short circuits: <1000; time between short circuits: >1s. 2 test is not subject of product test, verified by characterisation
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 11/ 18 jun. 20 10 (t c = 25c, v dd = 15v, if not stated otherwise) description condition symbol value unit min typ max turn - on propagation delay high side or low side v lin,hin = 0v; i out = 6 a, v dc = 300v t d(on) - 638 - ns turn - on rise time high side or low side v lin,hin = 5v i out = 6 a, v dc = 300v t r - 22 - turn - off propagation delay high side or low side v lin,hin = 5v; i out = 6 a, v dc = 300v t d(off) - 812 - turn - off fall time high side or low side v lin,hin = 0v i out = 6 a, v dc = 300v t f - 30 - shutdown propagation delay itrip v itrip = 1v, i u , i v , i w = 6 a t itrip - 900 - input filter time itrip v itrip = 1v t itripmin 155 210 380 input filter time at lin for turn on and off and input filter time at hin for turn on only v lin,hin = 0 v & 5v t filin 120 270 - input filter time at hin for turn off v hin = 5v t filin1 - 220 - input filter time at hin for turn off v hin = 5 v t filin2 - 400 - fault clear time after itrip - fault v lin,hin = 0 v & 5v v itrip = 0 v t fltclr - 4.7 - ms min. deadtime between low side and high side dt pwm - 1 - s deadtime of gate drive circuit dt ic - 380 - ns igbt turn - on energy (includes reverse recovery of diode) i out = 6 a, v dc = 300v t vj = 25c t vj = 150c e on - - 138 188 - - j igbt turn - off energy i out = 6 a, v dc = 300v t vj = 25c t vj = 150c e off - - 117 151 - - diode recovery energy i out = 6 a, v dc = 300v t vj = 25c t vj = 150c e rec - - 33 84 - - integrated components
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 12/ 18 jun. 20 10 description condition symbol 1 value unit min typ max resistor rbs - 10 - ? ?
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 13/ 18 jun. 20 10 characteristics (t c = 25c, v dd = 15v, if not stated otherwise) i c , collector current 0v 1v 2v 3v 0a 3a 6a 9a 12a 15a 125 figure 4 . typical igbt output characteristic (v dd = 15v ) figure 5 . typical diode forward current as a function of forward voltage t, switching times 0a 5a 10a 15a 10ns 100ns 1000ns t f t d(on) t r t d(off) t, switching times 25 t f t d(on) t r t d(off) i c , collector current t vj , junction temperature figure 6 . typical switching times as a function of collector current (inductive load, t j =150 c, v ce = 3 00v, v dd = 15v dynamic test circuit in figure a ) figure 7 . typical switching times as a function of junction temperature (inductive load, v ce = 3 00v, v dd = 15v, i c = 6 a dynamic test circuit in figure a )
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 14/ 18 jun. 20 10 e , switching energy 0a 5a 10a 15a 0.00mj 0.25mj 0.50mj 0.75mj 1.00mj 1.25mj e on e rec e off e , switching energy 25 e rec e on e off i c , collector current t vj , junction temperature figure 8 . typical switching energy losses as a function of collector current (inductive load, t vj = 150 c, v ce = 3 00v, v dd = 15v dynamic test circuit in figure a ) figure 9 . typical switching energy losses as a function of junction temperature (inductive load, v ce = 3 00v, v dd = 15v, i c = 6 a dynamic test circuit in figure a ) r ts , ntc resistance -25 figure 10 . characteristic of ntc as a function of ntc temperature figure 11 . t ransient thermal impedance as a function of pulse width ( d = t p / t )
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 15/ 18 jun. 20 10 test circuits and parameter definition figure a: dynamic test circuit leakage inductance l i rrm t erec ? = erec t f d dt i v erec 0 v r i f 90% i igbt t en 90% 1v v en v lin1 ,2,3 hin1,2,3 0.9v 2.1v i cu , i cv , i cw 90% 10% v ceu , v cev , v cew 2% 90% t d(off) t f t d(on) t r t eon 10% t eoff 2% ? = eoff t cx cex dt i v eoff 0 ? = eon t cx cex dt i v eon 0 10%
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 16/ 18 jun. 20 10 figure e: short pulse suppression hin hin hin ho ho ho high t filin1 t filin2 t off,hinx < t filin1 t off,hinx t off,hinx t filin1 < t off,hinx < t filin2 t off,hinx > t filin2 t off,hinx lin hin lin ho lo high low on t filin t filin off on off lo
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 17/ 18 jun. 20 10 package outline i kcs 12 f60 b2a note: there may occur discolorations on the copper surface without any effect of the thermal properties.
cipos? ikcs12f60b2a IKCS12F60B2C data sheet 18/ 18 jun. 20 10 package out line i kcs 12 f60b2c package data description condition symbol value unit min typ max weight m p - 17 - g note: there may occur discolorations on the copper surface without any effect of the thermal properties.


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