Transcription of SLLIMM small low-loss intelligent molded module …
1 This is information on a product in full production. April 2015 DocID16098 Rev 81/21 STGIPS20K60 SLLIMM small low-loss intelligent molded module IPM, 3-phase inverter 18 A, 600 V short-circuit rugged IGBTD atasheet - production dataFeatures IPM 18 A, 600 V 3-phase IGBT inverter bridge including control ICs for gate driving and free-wheeling diodes Short-circuit rugged IGBTs VCE(sat) negative temperature coefficient V, 5 V, 15 V CMOS/TTL input comparators with hysteresis and pull-down / pull-up resistors Undervoltage lockout Internal bootstrap diode Interlocking function Smart shutdown function Comparator for fault protection against overtemperature and overcurrent DBC leading to low thermal resistance Isolation rating of 2500 Vrms/min UL Recognized.
2 UL1557 file E81734 Applications 3-phase inverters for motor drives Home appliances, such as washing machines, refrigerators, air conditioners and sewing machineDescriptionThis intelligent power module provides a compact, high performance AC motor drive in a simple, rugged design. Combining ST proprietary control ICs with the most advanced short-circuit-rugged IGBT system technology, this device is ideal for 3-phase inverters in applications such as home appliances and air conditioners. SLLIMM is a trademark of STMicroelectronics.
3 SDIP-25 LTable 1. Device summaryOrder Rev 8 Contents1 Internal block diagram and pin configuration .. 32 Electrical ratings .. maximum ratings .. data .. 63 Electrical characteristics .. part .. definitions .. 124 Smart shutdown function .. 135 Application information .. 166 Package information .. package information .. packing information .. 197 Revision history .. 20 DocID16098 Rev 83/21 STGIPS20K60 Internal block diagram and pin configuration211 Internal block diagram and pin configurationFigure 1.
4 Internal block diagramAM05002v1 WNWPVBOOT UVBOOT WOUT VVBOOT VOUT UOUT WLINSD/ODVCCGNDDTOUTHVGV bootHINLVGCP+LINSD/ODVCCGNDDTOUTHVGV bootHINLVGCP+Pin 16 Pin 1 PPPin 17 Pin 25 GNDLIN-UHIN-VLIN-VHIN-WHIN-ULIN-WCINVCCN UNVUVLINSD/ODVCCGNDDTOUTHVGV bootHINLVGCP+SD/ODInternal block diagram and pin configurationSTGIPS20K604/21 DocID16098 Rev 8 Figure 2. Pin layout (bottom view)Table 2. Pin descriptionPin n SymbolDescription1 OUTUHigh-side reference output for U phase2 VbootUBootstrap voltage for U phase3 LINULow-side logic input for U phase4 HINUHigh-side logic input for U phase5 VCCLow voltage power supply6 OUTVHigh-side reference output for V phase7 Vboot VBootstrap voltage for V phase8 GNDG round9 LINVLow-side logic input for V phase10 HINVHigh-side logic input for V phase11 OUTWHigh-side reference output for W phase12 Vboot WBootstrap voltage for W phase13 LINWLow-side logic input for W phase14
5 HINWHigh-side logic input for W phase15SD / ODShutdown logic input (active low) / open-drain (comparator output)16 CINC omparator input17 NWNegative DC input for W phase18WW phase output19 PPositive DC input20 NVNegative DC input for V phase21VV phase output22 PPositive DC input23 NUNegative DC input for U phase24UU phase output25 PPositive DC input0$5.,1* $5($ DocID16098 Rev 85/21 STGIPS20K60 Electrical ratings212 Electrical Absolute maximum ratingsTable 3. inverter partSymbolParameterValueUnitVPNS upply voltage applied between P - NU, NV, NW450 VVPN(surge)Supply voltage (surge) applied between P - NU, NV, NW500 VVCESEach IGBT collector emitter voltage (VIN(1) = 0 V)1.)
6 Applied between HINi, LINi and GND for i = U, V, W600V IC (2)2. Calculated according to the iterative formula:Each IGBT continuous collector current at TC = 25 C18A ICP (3)3. Pulse width limited by max junction temperatureEach IGBT pulsed collector current40 APTOTEach IGBT total dissipation at TC = 25 C52 WtscwShort circuit withstand time, VCE = V(BR)CESTJ = 125 C, VCC = Vboot= 15 V, VIN (1)= 0 to 5 V5 sTable 4. Control voltage applied betweenOUTU, OUTV, OUTW - GNDV boot - 21 Vboot + voltage power supply- input voltage- + voltage- input voltage applied between HIN, LIN and GND- drain voltage- output slew rate50V/nsICTC()Tj max()TC Rt hj c VC E sat()max()Tj max()ICTC(),() ---------------------------------------- ---------------------------------------- -----------------------=Electrical ratingsSTGIPS20K606/21 DocID16098 Rev Thermal dataTable 5.
7 Total systemSymbolParameterValueUnitVISOI solation withstand voltage applied between each pin and heatsink plate (AC voltage, t = 60 s)2500 VTjPower chips operating junction temperature- 40 to 150 CTCM odule case operation temperature- 40 to 125 CTable 6. Thermal dataSymbolParameterValueUnitRthJCThermal resistance junction-case single C/WThermal resistance junction-case single diode5 DocID16098 Rev 87/21 STGIPS20K60 Electrical characteristics213 Electrical characteristicsTJ = 25 C unless otherwise :tON and tOFF include the propagation delay time of the internal drive.
8 TC(ON) and tC(OFF) are the switching time of IGBT itself under the internally given gate driving 7. inverter partSymbolParameterTest (sat)Collector-emitter saturation voltageVCC = Vboot = 15 V, VIN(1)= 0 5 V, IC = 12 = Vboot = 15 V, VIN(1)= 0 to 5 V, IC = 12 A, TJ= 125 off current (VIN(1)= 0 logic state )VCE = 550 V, VCC = VBoot = 15 V-150 AVFD iode forward voltageVIN(1) = 0 V logic state , IC = 12 load switching time and energytonTurn-on timeVPN = 300 V,VCC = Vboot = 15 V, VIN(1) = 0 to 5 V, IC = 12 A(see Figure 3)-300-nstc(on)Crossover time (on)-150-toffTurn-off time-730-tc(off)Crossover time (off)
9 -170-trr Reverse recovery time-60-EonTurn-on switching losses-290- JEoffTurn-off switching losses-250-1. Applied between HINi, LINi and GND for i = U, V, W. (LIN inputs are active-low).Electrical characteristicsSTGIPS20K608/21 DocID16098 Rev 8 Figure 3. Switching time test circuitNote:Figure 4: Switching time definition refers to HIN inputs (active high). For LIN inputs (active low), VIN polarity must be inverted for turn-on and 4. Switching time definition VBOOT>VCCRSDLICVCE+5 VVCCINPUT01 BUS/Lin/SDHinVccDTLVGHVGOUTBOOTCP+GNDAM1 7166v1 VCEICICVINtONtC(ON)VIN(ON)10% IC 90% IC 10% VCE(a) turn-on(b) turn-offtrr100% IC 100% ICVINVCEtOFFtC(OFF)VIN(OFF)10% VCE10% ICAM09223V1 DocID16098 Rev 89/21 STGIPS20K60 Electrical Control part Table 8.
10 Low voltage power supply (VCC = 15 V unless otherwise specified)SymbolParameterTest UV UV turn ON UV turn OFF threshold quiescent supply current VCC = 10 VSD/OD = 5 V; LIN = 5 V; HIN = 0, CIN = 0450 AIqccQuiescent current VCC = 15 V SD/OD = 5 V; LIN = 5 VHIN = 0, CIN = VrefInternal comparator (CIN) reference 9. Bootstrapped voltage (VCC = 15 V unless otherwise specified)SymbolParameterTest UV VBS UV turn ON threshold VBS_thOFF VBS UV turn OFF threshold IQBSUU ndervoltage VBS quiescent currentVBS < 9 VSD/OD = 5 V; LIN and HIN = 5 V; CIN = 070110 AIQBSVBS quiescent current VBS = 15 VSD/OD = 5 V; LIN and HIN = 5 V; CIN = 0210300 ARDS(on)Bootstrap driver on resistance LVG ON120 Table 10.
