motor control 3 phase dc ac inverter Mitsubishi Group PSS30S92F6 AG transfer molding insulated type

Key Attributes
Model Number: PSS30S92F6-AG
Product Custom Attributes
Mfr. Part #:
PSS30S92F6-AG
Product Description

Product Overview

The PSS30S92F6-AG and PSS30S92E6-AG are transfer molding type, insulated 3-phase DC/AC inverters designed for low power motor control applications. These integrated modules feature drive, protection, and system control functions, including N-side IGBT open emitter, built-in bootstrap diodes with current limiting resistors, and options for temperature output or over-temperature protection. They are suitable for AC 100~240Vrms (DC voltage: 400V or below) class systems.

Product Attributes

  • Type: Transfer Molding Type, Insulated Type
  • Certifications: UL Recognized (UL1557 File E323585)

Technical Specifications

Part NumberMain FunctionRatingsApplicationKey Features
PSS30S92F6-AG3 Phase DC/AC Inverter600V / 30A (CSTBT)AC 100~240Vrms (DC voltage: 400V or below) class low power motor controlTemperature output function, N-side IGBT open emitter, Built-in bootstrap diodes with current limiting resistor, Drive circuit, High voltage high-speed level shifting, Control supply under-voltage (UV) protection (P-side), Drive circuit, Control supply under-voltage protection (UV), Short circuit protection (SC) (N-side), Fault signaling (SC, UV), Input interface (3, 5V line, Schmitt trigger receiver circuit)
PSS30S92E6-AG3 Phase DC/AC Inverter600V / 30A (CSTBT)AC 100~240Vrms (DC voltage: 400V or below) class low power motor controlOT protection function, N-side IGBT open emitter, Built-in bootstrap diodes with current limiting resistor, Drive circuit, High voltage high-speed level shifting, Control supply under-voltage (UV) protection (P-side), Drive circuit, Control supply under-voltage protection (UV), Short circuit protection (SC), Over temperature protection (OT) (N-side), Fault signaling (SC, UV, OT), Input interface (3, 5V line, Schmitt trigger receiver circuit)
ParameterConditionRatingsUnit
Supply voltage (VCC)Applied between P-NU,NV,NW450V
Supply voltage (surge) (VCC(surge))Applied between P-NU,NV,NW500V
Collector-emitter voltage (VCES)-600V
Each IGBT collector current (IC)TC= 25C (Note 1)30A
Each IGBT collector current (peak) (ICP)TC= 25C, less than 1ms60A
Collector dissipation (PC)TC= 25C, per 1 chip47.6W
Junction temperature (Tj)--30~+150C
Control supply voltage (VD)Applied between VP1-VNC, VN1-VNC20V
Control supply voltage (VDB)Applied between VUFB-U, VVFB-V, VWFB-W20V
Input voltage (VIN)Applied between UP, VP, WP, UN, VN, WN-VNC-0.5~VD+0.5V
Fault output supply voltage (VFO)Applied between FO-VNC-0.5~VD+0.5V
Fault output current (IFO)Sink current at FO terminal1mA
Current sensing input voltage (VSC)Applied between CIN-VNC-0.5~VD+0.5V
Self protection supply voltage limit (VCC(PROT))VD = 13.5~16.5V, Inverter Part Tj = 125C, non-repetitive, less than 2s400V
Module case operation temperature (TC)Measurement point of Tc is provided in Fig.1-30~+100C
Storage temperature (Tstg)--40~+125C
Isolation voltage (Viso)60Hz, Sinusoidal, AC 1min, between connected all pins and heat sink plate1500Vrms
Junction to case thermal resistance (Rth(j-c)Q)Inverter IGBT part (per 1/6 module)2.1K/W
Junction to case thermal resistance (Rth(j-c)F)Inverter FWDi part (per 1/6 module)3.0K/W
Collector-emitter saturation voltage (VCE(sat))VD=VDB = 15V, VIN= 5V IC= 30A, Tj= 25C1.65-2.00V
Collector-emitter saturation voltage (VCE(sat))IC= 30A, Tj= 125C1.85-2.20V
Collector-emitter saturation voltage (VCE(sat))IC=3.0A, Tj= 25C0.90-1.10V
FWDi forward voltage (VEC)VIN= 0V, -IC= 30A2.30-2.80V
Switching times (ton)VCC= 300V, VD= VDB= 15V IC= 30A, Tj= 125C, VIN= 05V Inductive Load (upper-lower arm)0.90-1.55s
Switching times (tC(on))-0.40-0.65s
Switching times (toff)-1.65-2.40s
Switching times (tC(off))-0.15-0.30s
Switching times (trr)-0.30s
Collector-emitter cut-off current (ICES)VCE=VCES Tj= 25C1mA
Collector-emitter cut-off current (ICES)Tj= 125C10mA
Circuit current (ID)Total of VP1-VNC, VN1-VNC VD=15V, VIN=0V3.40mA
Circuit current (ID)VD=15V, VIN=5V3.40mA
Each part of VUFB-U, VVFB-V, VWFB-W (IDB)VD=VDB=15V, VIN=0V0.30mA
Each part of VUFB-U, VVFB-V, VWFB-W (IDB)VD=VDB=15V, VIN=5V0.30mA
Short circuit trip level (VSC(ref))VD = 15V (Note 4)0.455-0.505V
P-side Control supply under-voltage protection(UV) Trip level (UVDBt)Tj 125C10.0-12.0V
P-side Control supply under-voltage protection(UV) Reset level (UVDBr)-10.5-12.5V
N-side Control supply under-voltage protection(UV) Trip level (UVDt)-10.3-12.5V
N-side Control supply under-voltage protection(UV) Reset level (UVDr)-10.8-13.0V
Temperature Output (VOT)PSS**S92F6-AG) (Note 5) Pull down R=5k LVIC Temperature=90C2.63-2.91V
Temperature Output (VOT)LVIC Temperature=25C0.88-1.39V
Over temperature protection (OTt)(PSS**S92E6-AG) (Note6) VD = 15V Trip level100-140C
Detect LVIC temperature Hysteresis of trip-reset (OTrh)-10C
Fault output voltage (VFOH)VSC = 0V, FO terminal pulled up to 5V by 10k4.9V
Fault output voltage (VFOL)VSC = 1V, IFO = 1mA0.95V
Fault output pulse width (tFO)(Note 7)20s
Input current (IIN)VIN = 5V0.70-1.50mA
ON threshold voltage (Vth(on))Applied between UP, VP, WP, UN, VN, WN-VNC2.10-2.60V
OFF threshold voltage (Vth(off))-0.80-1.30V
ON/OFF threshold hysteresis voltage (Vth(hys))-0.35-0.65V
Bootstrap Di forward voltage (VF)IF=10mA including voltage drop by limiting resistor (Note 8)0.9-1.7V
Built-in limiting resistance (R)Included in bootstrap Di48-72
ParameterConditionLimitsUnit
Mounting torqueMounting screw : M3 (Note 9) Recommended0.59-0.78Nm
Terminal pulling strengthControl terminal: Load 4.9N Power terminal: Load 9.8N JEITA-ED-470110-
Terminal bending strengthControl terminal: Load 2.45N Power terminal: Load 4.9N 90deg. bend JEITA-ED-47012times
Weight-8.5g
Heat-sink flatness (Note 10)--50 - 100m
ParameterConditionLimitsUnit
Supply voltage (VCC)Applied between P-NU, NV, NW0-400V
Control supply voltage (VD)Applied between VP1-VNC, VN1-VNC13.5-16.5V
Control supply voltage (VDB)Applied between VUFB-U, VVFB-V, VWFB-W13.5-16.5V

2507311540_Mitsubishi-Group-PSS30S92F6-AG_C22413446.pdf

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