MIG200Q101H TOSHIBA | Alldatasheet

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TOSHIBA INTELLIGENT POWER MODULE SILICON N CHANNEL IGBT HIGH POWER SWITCHING APPLICATIONS MOTOR CONTROL APPLICATIONS e@ Integrates Inverter Power Circuits & Control Circuits (IGBT drive units, Protection units for Over- Current, Under-Voltage & Over-Temperature) in One Package. @ The Electrodes are Isolated from Case. @ High Speed Type IGBT : VCR (sat)=3-5V (Max.) toff=3.84s (Max.) trp =0.24 ys (Max.) @ Outline : TOSHIBA 2-121A1A @ Weight : 510g EQUIVALENT CIRCUIT 12 3 4 5 6 7 8 9 10 ! 1 1 ! I 1 ! 1 1 1FO GND IN Vp} IFOGND IN Vp} 1 I 1 i GND Vg OUT GND Vg OUT i i Lv Lim i io ops re I 1 i I 1 ! : E2 C2/E1 C1 : Limca prc imsmsmin( jorermimimen( raid 961001EAA @ TOSHIBA is 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 responsibility 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 developing 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 parties which may result from its use. No license is granted by implication or otherwise under any intellectual property or other rights of TOSHIBA CORPORATION or others. @ The information contained herein is subject to change without notice. 1998-07-01 1/7

MAXIMUM RATINGS (Tj = 25°C) STAGE CHARACTERISTIC CONDITION SYMBOL | RATINGS Supply Votiage [PN power terminal | Veo | 900 | v_

1 Collector Current Te=25°C, DC [ Ic | 200 | A |

verter Te=25°C, DC [| 200 | A _| Collector Power Dissipation |Tc=25°C [ Po | 1600 | w | Control Supply Voltage Vp-GND terminal [| VD | 2 |v | Tnput Voltage IN-GND terminal | Vin | 20 | V_| Control 7 Fault Output Voltage FO-GND (L) terminal [| Vero | 20, [ V_ | Fault Output Current FO sink current | Iro | 14 | mA | woaute _|St2F88e Temperature Range [| Tag | =40= +195 =| edule [Taolation Voltage Viso_| 2500 ELECTRICAL CHARACTERISTICS (Tj =25°C) a. Inverter stage CHARACTERISTIC SYMBOL TEST CONDITION

7 Tee | — [= 13]

Collector Cut-Off Current Icgx | VcEx=1200V T=1250| — | — | 40] mA Collector-Emitter Saturation v, Vp=15V, Ic=200A [T\\=25°C | — | 27] 35 | v Voltage CE (sat) | vin =3V—0V T)=125°C| — | 26] — | Forward Vollage [Vr __[tr=200a [= [a0[a7| Vv [ten ton Voc=600V, I¢=200A Los | | 22 | witehing Time trr__ltaduetive load ae os 1998-07-01 2/7

b. Control stage (Tj = 25°C) CHARACTERISTIC SYMBOL TEST CONDITION [ xan. | rye. [max.[unzr] Control Great Current | Ip | Vp=15V [= [20 [30 [an] Input On Signal Voltage Vp=15V, Ic =200mA | o9 | i1][ 13] v_ | Fault Output [ s[ 1] 1] Vp=15V mA Current pois [== 7 isgemmreen | oe fosmnsare [awl aw] — || Level ad ae ce coe Ve! Over Current Cut-Off Time | tofr(oc) |Vp=15V [| — | 10{ — | gs | Temperature Case temperature °C Under Voltage Vv Fault Output Pulse Width p= iv Dat 2, 3] ms | c. Thermal resistance (Tj = 25°C) CHARACTERISTIC SYMBOL TEST CONDITION | aa. | rye. [ax. [unr] Junction to Case Thermal Ring IGBT [| — | — [0.078 “Cr Resistance eo [rrp = T0885] Case to Fin Thermal . . 0.03 °C/W nace [ompannonia | — [wm] ~ form 1998-07-01 3/7

Note 1 : Switching time test circuit & timing chart Intelligent Power Module i Hi i Vp

1 Ay H

' i OUT i_lenp enn} Soceseent H Vcc pocccnas ' 1C2/E1 He i |¥p 1 i iT 1 | : 50nf t 11 GND enp| 3 ze Hl Hl Hl Hl woes t ! Input Pulse Vin WAVEFORM l I | 1 | Ig WAVEFORM \\ | 90%) | 1 ;! | ! | i! | | y | Vcg WAVEFORM ! 10% 10% | 10%f | 10% | ! | tor te (of) | ton’? + te(on) er p>—on—_ 1998-07-01 4/7

400) to = Vor 400) ir Vr common mare || IT | | | LT TT Pay Ty Ty + — : T)=25°C if . Sod zee | YN | | | ef | Ye [ww \\ || LT TT FAT Ty TI PE ee 7 oees eee Bod 7 f—13v 2 200] 7 e LIT TIAA TT e Lit Vy Tt tl Ba LLY YT | | zt tPA TTT 3 200 } 2 109 JH ge LL TAL TTT BLL LAL | commor cxmone is} iy [| A — : T= 25°C ane 46eeee Leet | | ==s rive a a a a COLLECTOR-EMITTER VOLTAGE Vcg (V) FORWARD VOLTAGE Vy (V) SWITHING TIME - Ic SWITHING TIME - Ic __— _ — a [ [toate CAPE EEE EEE EEE & ooo gz =

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2 Sr veg=eo0v ° Voc=e00v [fff

z fy) vp=t6v = Vp=15V a E on | _bLOnD E 8) teLoap eps | PCE} epee =.= SSS a a a A A A 0 a 3020 160 00 Bao 04080120 Tad B00 B40 COLLECTOR CURRENT Ig (A) COLLECTOR CURRENT Ig (A) 2 ter, Irr — IF 7 OC — Te i fee fee T TOT “3 Vp=15V a ie} 5X — : H= 25°C ae es & g, M[raiteere Pet aio 2 Bote t) ge “OE & - Se eet Fe Lt = SS ee Be _——— ee a ee) = ee ee ee er = & o_o eT TTT ae Eo | e & 0 30 100 150 200 a a ee FORWARD CURRENT Ip (A) CASE TEMPERAURE Te (°C) TX 1998-07-01 5/7

q “Low TT TTT TT] woo e PTEPEEEE ET) 2 ee ae 60 Som PN g “COPE SEES EERE SES

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a ttt tt | pee | 2 LE 5 1 | = 34 S$ = S a a a GG | e ert ti tl | § EEE CECE) od Re SSS aaa === E ool tome ESE g LITi ti ttt i] way FEE 0 a 0200 00600800000" 1200 Tao CARRIER FREQUENCY f, (kHz) COLLECTOR-EMITTER VOLTAGE Vcog (V)

1 Rth (t) — tw

z [ooo FHF Aprope srace {i 5 ee QU = (SSS SSS ae Zs aa aan | 22 oo ee 3 ER a Cn ee Sool LUM TTI LEM TT too 00r 01 r 10 PULSE WIDTH ty (s) TT “BOTT O/T

OUTLINE : TOSHIBA Unit : mm 3-M6 42°83 4-580 sa5to8 soto s2sto.8 @ on F 27st rT 7.16°88 “LGA =] [Sa | ai D Bate] | Ql: = | = | Hae al dito aus | cael 32] 21 |s¢ Ay | a 2 , | RP som DI af! Lb ‘ a 29.6408 wane ] \\ 1. FO (L) 2. GND (L) 3. IN (L) 4, Open 5. Vp (L) 1998-07-01 7/7