MIG30J103H TOSHIBA | Alldatasheet
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TOSHIBA INTELLIGENT POWER MODULE SILICON N CHANNEL IGBT HIGH POWER SWITCHING APPLICATIONS MOTOR CONTROL APPLICATIONS e@ Intelligent Power Module that include IGBT drive circuits, overcurrent, undervoltage lockout, and overtemperature protection. @ =The Electrodes are Isolated from Case. © High speed type IGBT : VOR (sat)=2.7V (MAX.) toff=2.0us (MAX.) trr= 0.258 (MAX.) @ Outline : TOSHIBA 2-99E1A (See page 5 for the device outline) @ Weight : 80g EQUIVALENT CIRCUIT 10 u 15 py 13 12 9 ud 8 & 4 5 3 1 2 mt OOO Oe OO OO OOOO OOO = 9 ! i) ! 1 . — [ | . ! GND Voc VYro VIN VIN VIN IGND Vin Voo IGND VIN Vcc GND Vin Yoo ! ! 1 i Gp, , i . Vs Vo VsVo Vs Vo IGND Vg Vo IGND Vg Vo IGND Vg Vo : 1 I ; LLRLLAL PLR TLR LTR PE Ie AE ee DE! iL PT ! 1 i | i ! od as : ! | ' ! 1
1 N Ww v U pe
eee @ re @ ee ett tT eet te rer) 1. Vinu 2. Vpu 3. GNDU 4. VINV 5. Vpv 6. GNDy 7. VINW 8. Vow 9. GNDw 10. GND], 11 VpL 12. VINX 13. VINY 14.VINZ 15.VFO 9610016082 @ TOSHIBA js continually working to improve the quality and the reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress. It is the responsibilty ‘of the buyer, when utilizing TOSHIBA products, to observe standards of safety, and to avoid situations in which a malfunction or failure of a TOSHIBA product could cause loss of human life, bodily injury or damage to property. In ceveloping. your designs, please ensure that TOSHIBA products are used within specified Operating ranges as set forth in the most recent products specifications. Also, please keep in mind the precautions and conditions set forth in the TOSHIBA Semiconductor Reliability Handbook. @ The information contained herein is presented only as a guide for the applications of our products. No responsibility is assumed by TOSHIBA. CORPORATION for any infringements of intellectual property or other rights of the third partis, which may result from its use. No license is granted by implication or otherwise under any intellectual property or other rights of TOSHIBA CORPORATION oF others. @ The information contained herein is subject £0 change ‘without notice. 1998-07-01 1/10
MAXIMUM RATINGS (Tj = 25°C) Vers |Collector-Bmitter Voltage | = — | conv Inverter Part Collector Current (DC) Te=25°C [30 | a | Collector Power Dissipation |Te=25°C [ 33 S| sw Junction Temperature | | tC Supply Voltage ee ee ee | Vin [input Voltage [Vin=Vp | St Control Part | VIN put Voltage ViN=VD Foul Output Voltage Vro=Vp [20 |v | Foul Output Curent [=| | ma Operating Temperature | — | = 20~ +100 Vigo _ [Isolation Voltage [AG 1min | 2500 | Vamns | [= [Screw Torque fs | ELECTRICAL CHARACTERISTICS (Tj = 25°C) Inverter Part SPEC SYMBOL TEST CONDITION UNIT Ig=30A Vow eat) |ouestorBmitter Saturation |Vp=15V i TOA | = | 24 | y sat) | Voltage Ij=0mA iin . 8 1N T)= 125°C 3.0 Forward Voltage 1p=30A [| = | 20] 27] v | Vec=300V [os | 13 | 20 | cc Switching Time Vp=15V us HN=1mAodmA | — | 05 | 15 | Inductive Toad | = | 0.15 | 0.25 | T= 25°C IcES Collector Cut-off Current Vor =600V | = | = | mA 1998-07-01 2/10
Note 1 : Switching Time Test Circuit & Timing Chart a) Low Side Switching Intelligent Power Module i P Vp 15kOF | Vo Vp=15V VIN TU (Vv, W) Yeo o VD i , Vp=15V ©: | VIN i i GND----- hid i iN Input Pulse pq fm barn nine aL lo b) High Side Switching ' —e o4Vp Q 15k0F | | Vo K i Vp=15V o+ VIN H on GND----- iuw,W) Input Pulse nr & > Voc Vp 15kNZ | Vo < ? Vp=15V VIN i ‘ iN Input Waveft a pup venom L VIN (on) [vas (of) i ter i i ae Ig Rating i n Voltage Waveform Vog | Tl! i —— T\\ ule ot rrr | i i : iV Ic¢ Rating ~~ tees i r] i 90% \\ i i i 1 i i i \\ i ! i ! ! i a ‘ow, \\uow Current Waveform I¢ j 10% i i $10% 9 _____ 104 7 “ i i i ! i i 1 i i i ! i i ton toff 1998-07-01 3/10
Control Part (Tj = 25°C) SPEC sypor TEST CONDINION | aa [ys TAK] UN| Cireuit Current Vp=1sv [ish Side | 6 | mA [tow side | 11 | 23 | 35 | Tnput On Signal Voltage [10[ 13] 16] y Input Off Signal Voltage [15 | 18 | as | Foul Output Current (Protection) [| 3] 5| 7| leo Vp=15V, Vro=15V mA Foul Output Current (Normal) | -[-]| 1] Vp=15V 0c —_| Over Current Protection Trip Level |-2. | 46 | | = | A toff(OC) | Over Current Cut Off Time Vp=15V [| 5[{ ww] 18] ys | Over Temperature Trip Level | 100 | 110 | 120 | 6 OT . Case Temperature Cc Protection Reset Level |_ 80 | 90 | 100 | Control Supply Under- y Voltage Protection [118 | 125 | 132 | Foul Output Pulse Width Vp=15V [ 5| 10 | 15 | ms | Thermal Resistance (Tj = 25°C) SPEC sybor TEST CONDITION Dyan [rvp. Pata] UN Junction to Case Thermal INV. IGBT | — [| = | 15 | Resistance INV. FWD |= | — [48 Jogi Case to Fin Thermal Resistance 1998-07-01 4/10
ELECTRICAL CHARACTERISTICS TEST CIRCUIT (Vox (sat), Ve, Ios, Ip, Vin, Ivo, tro) a) VCE (sat) ¥ PU, Vv, W) ov Vp U,V, WO) b)NE PW, V, W) ol Vv; F * vo © Blt 15V O+ VIN RK) y41C oanp-----|-—8 U, V, WO) ©) Ices PUY, Wo otV, Fé ° Vo Voc 15V o-+ VIN 600V oanp-----|-—8 U, V, WO) 4) Ip mon Vp 15V o-| GND e) VIN(OFF) P(U, V, W) VIN(ON) OVD “was 4 15V ae Yo M4 © Stic oanp-----|-—8 a U, V, WN) N oO Fiskal > $ 1, 15V 5 oye al 4 © Stic QD tol anp-----H$ N g)Iro R= ULV, W Fiscal? *O 1, vy k—oovIN Vo M4 3 fic © olonp-.- $ N 1998-07-01 5/10
OUTLINE : TOSHIBA 2-99E1A Unit in mm 8 f : A a me i 45 tr i . 3641 7 3 =
29 FE —— «
fern) Fe LK \\ SS qo ( 2 — | —| | ;|; « | 2 |S [.] # s Stet | | AP lS To Lf | ‘ asl ps “1s5E1_ 1. VINU 2. Vou 3. GNDU 4. VINV 5. Vpv 6. GNDy 7. VINW 8. Vow 9. GNDWw 10. GND, 11 Vp 12. VINX 13. VINY 14.VINZ, 15.VEO 1998-07-01 6/10
TIMING CHART (High side) Typical example of drive circuit Intelligent Power Module photocoupler poverty Ip=lema ln VD - anal 2 Vou i irene eo ee *1) or Vav, VAW *2) or VINV, VINW *3) or Vav, Vow *4) or V, W UVr Vb UV H L H L oT Te 7 \\ OTr 25°C k tg A eee 8 oc Ic UV : Under-Voltage Trip Level ty : 2.548 (Typ.) UVr : Under-Voltage Reset Level tg : 10s (Typ.) OT : Over Temperature Trip Level tg : 10ms (Typ.) OTr : Over Temperature Reset Level OC : Over Current 1998-07-01 7/10
TIMING CHART (Low side) Typical example of drive circuit Intelligent Power Module Yro ke) photocoupler = =o U _ cette WD ; Tp=16mA! o * Vax i an mT, Pe i Fin + Driver Y i TLP559 (IGM) : *1) or Vay, Vaz *2) or VIny, VINZ *3) or Vay, Vaz *4) or V, W UvVr VD uv H VAX L H VINX L oT Te / \\or 25°C tg k- tg 4 +t ty oc Ic TA L ~~ LPF LP H VFO | L UV : Under-Voltage Trip Level ty : 2.5ys (Typ.) UVr : Under-Voltage Reset Level tg : 104s (Typ.) OT : Over Temperature Trip Level tg : 10ms (Typ.) OTr : Over Temperature Reset Level OC : Over Current 1998-07-01 8/10
7 Ic — VCE a5 Ic — VCE
2 as f| 2 os fh 7 er 7 gs 2 Hy Zz 2 jar / 13V zl f/ E y et ETAL one 4a 8 i 8 PCO COAT 3 3 S35 8 4 Wi Y % 05 = 1S 2 25 3 35 % 05 1 LS 2 25 3 35 COLLECTOR-EMITTER VOLTAGE Veg (V) COLLECTOR-EMITTER VOLTAGE VcoR (V) Ip — VF SWITCHING TIME - I¢ 35) 10) comm | | | |_| common exe [=== EEE = 30 CATHODE Voc=300V cs s Vor= LAST IL Vp=15V es ‘GE=0V > i Tro) EP i if 2] TH 20) Te=100°C BS Ty 8 LL ee UL 3 | | | AZ | | 5 errr Stevo EET é a ee PLT VAL TT ° il ean ge , LL } of peer {Til 0 06 1 16 2 28 8 35 1 10 100 FORWARD VOLTAGE Vp (V) COLLECTOR CURRENT Ig (A) SWITCHING TIME - Ic s ter, Ter — IF 10 ——— ae] X eT — ee] COMMON EMITTER F774 s COMMON CATHODE FEF Veo=s00v —oo ees SS Pavaesooare | PFE vp=15v es a a | thoes tht gS |Yonsv oe oi < Laesto0'e a gg [ose 1 Hee TP Ey PLL e ee Il
2 Be Pte pp
Fy} See (of TT 3 es ee os eo | a — oe FAH 88 Ee =} a a ge a a po com LT ae a | | | ai gz [Ti Tra ee we LETIT T UU BS 1 10 100 8 1 10 100 COLLECTOR CURRENT Ig (A) io FORWARD CURRENT Ip (A) 1998-07-01 9/10
s tem ler — I Eon, Bott — Ic 19 reer Sq [commons cammone FFF Comsron germs FFE a di/dt=300A/ us Voc=300V_ ss es ey [wae HE gfe HR} ge [eewe g fee Ee a e | 1 Beall ze Ltt Spd omar pe | LN ES g (Sere FES 8s a a 6 CH Be tee gE re re ee ee i E ib ae Cit : rel ge 2 0 10 100 ot 0 100 i = FORWARD CURRENT Ip (A) COLLECTOR CURRENT I¢ (A) REVERSE BIAS SOA Reh (t) — tw _ SSS 10 Sa > (LESS THAN OC TRIP LEVEL) mM SSS ff | ft | CE A ——— Pm emis? cen esi emcee 5 a es es Sn ee Se ee | ee wh | | | Bo et pee iia a oe ee 22 oC Difmanssron srace [TT ll 8 < ee ee en en | & a | a a yew [OP a ae ote | fT TT ont LLIZME TET ETI CINE TT 100 20000 avd 609 — 600700 19-100 4009 30000100000 COLLECTOR EMITTER VOLTAGE Vox () PULSE WIDDHL ty (ns) OVERCURRENT — TEMP UNDERVOLTAGE — TEMP 2 60 BEA Uvr ef Sse | |g > : jf ET ESS SSS a 10 a a | s Ee $3 5 g 20) "Ed
03403980 T0020 2040 30 36 00 20
CASE TEMP Te (°C) CASE TEMP Te (°C) 1998-07-01 10/10