SS060N030DIP25 产品图

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SS060N030DIP25

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IPM(IGBT 型)消费DIP-25
规格书下载

参数规格

应用等级
Consumer
封装
DIP-25
产品类型
IGBT&FRD
结温 Tj
-40~150 °C
集射极电压 VCES
600 V
集电极电流 IC@25°C 最大
30 A
集电极峰值电流 ICP
60 A
饱和压降 VCE(sat) 最大
1.7 V
开通时间 t(on)
1 μs
开通电流上升时间 TC(ON)
0.4 μs
关断时间 t(off)
1.5 μs
关断电流下降时间 TC(OFF)
0.15 μs
反向恢复时间 Trr
0.3 μs
正向压降 VF
2.35 V
样品状态
Ready

在线规格书

以下内容整理自原厂规格书,实际参数以原厂正式文件为准。

SS060N030DIP25

600V / 30A IGBT Intelligent Power Module (DIP-25)

Description

DIP25 is a highly integrated and reliable three phase brushless DC motor drive circuit, which is mainly used in low power variable frequency drives, such as air conditioners, refrigerators, washing machines, etc.

Features
  • Built-in 6 low loss 600V/30A IGBT & FRD
  • Built-in bootstrap diodes with current limiting resistor
  • Built-in under voltage protection and over temperature, over current protection and temperature output
Applications
  • AC 100~240V (DC voltage: 400V or below) three phase low power motor inverter drive
Absolute Maximum Ratings (Tj = 25°C, unless otherwise noted)
Inverter Part
Symbol Parameter Conditions Ratings Unit
VPN Supply voltage Applied between P-NU, NV, NW 450 V
VPN(surge) Supply voltage (surge) Applied between P-NU, NV, NW 500 V
VCE Collector-emitter voltage TC = 25 °C 600 V
±IC Each IGBT collector current TC = 25 °C 30 A
±ICp Each IGBT collector current (peak) TC = 25 °C, less than 1 ms 60 A
Tj Junction temperature -40 to +150 °C
Control Part
Symbol Parameter Conditions Ratings Unit
VD Control supply voltage Applied between VCCH-COM, VCCL-COM 20 V
VDB Control supply voltage (high side) Applied between VBU-U, VBV-V, VBW-W 20 V
VIN Input voltage Applied between HINU, HINV, HINW, LINU, LINV, LINW-COM -0.5 ~ VD+0.5 V
VFO Fault output supply voltage Applied between FO-COM -0.5 ~ VD+0.5 V
IFO Fault output current Sink current at FO terminal 1 mA
VSC Current sensing input voltage Applied between CSC-COM -0.5 ~ VD+0.5 V
Total System
Symbol Parameter Conditions Ratings Unit
VPN(PORT) Self protection supply voltage limit (Short circuit protection capability) VD = 13.5~16.5V, Inverter Part, Tj = 125°C, non-repetitive, less than 2us 400 V
TC Module case operation temperature Measurement point of Tc is described in Fig.1 -30 to +105 °C
TSTG Storage temperature -40 to +125 °C
VISO Isolation voltage 60Hz, Sinusoidal, AC 1min, between connected all pins and heat sink plate 2000 Vrms
T Mounting torque Recommended torque: 0.62 N·m 0.5 - 0.75 N·m
Thermal Resistance
Symbol Parameter Conditions Min Typ Max Unit
Rth(j-c)Q Junction to case thermal resistance Inverter IGBT part (per 1/6 module) 1.8 K/W
Rth(j-c)F Junction to case thermal resistance Inverter FRD part (per 1/6 module) 2.0 K/W

Electrical Characteristics (T = 25°C, unless otherwise noted)

Inverter Part
Symbol Parameter Conditions Min Typ Max Unit
VCE(sat) Collector-emitter saturation voltage VCC = VBS = 15V, VIN = 5V, IC = 30A, Tj = 25°C 1.7 2.0 V
VCC = VBS = 15V, VIN = 5V, IC = 30A, Tj = 125°C 1.85 2.3 V
VF Forward voltage VIN = 0V, IF = -30A, TJ = 25°C 2.35 2.5 V
VIN = 0V, IF = -30A, TJ = 125°C 2.45 2.6 V
ton Switching times VPN = 400V, VCC = VBS = 15V, IC = 30A, Tj = 125°C, VIN = 0↔5V, Inductive Load (upper-lower arm) 1.0 2.0 μs
tC(on) 0.4 0.6 μs
toff 1.5 2.0 μs
tC(off) 0.15 0.3 μs
trr 0.3 μs
ICES Collector-emitter cut-off current VCE = VCES, Tj = 25°C 1 mA
VCE = VCES, Tj = 125°C 10 mA
Control Part
Symbol Parameter Conditions Min Typ Max Unit
IQCC Quiescent circuit current Total of VCCH-COM, VCCL-COM; VCC = 15V, VIN = 0V 0.3 mA
VCC = 15V, VIN = 5V 0.3 mA
IQBS Each part of VBU-U, VBV-V, VBW-W; VCC = VBS = 15V, VIN = 0V 0.10 mA
VCC = VBS = 15V, VIN = 5V 0.10 mA
VSC(ref) Short circuit trip level VCC = 15V 0.45 0.50 0.55 V
UV_BSD HIGH-side Control supply under-voltage protection (UV) - Trip level Tj ≤ 125°C 8.0 9.0 10.0 V
UV_BSR HIGH-side Control supply under-voltage protection (UV) - Reset level Tj ≤ 125°C 9.0 10.0 11.0 V
UV_CCD LOW-side Control supply under-voltage protection (UV) - Trip level Tj ≤ 125°C 8.0 10.0 11.0 V
UV_CCR LOW-side Control supply under-voltage protection (UV) - Reset level Tj ≤ 125°C 10.0 11.0 12.0 V
VOT Temperature Output (Fig 3), LVIC Temperature = 95°C 2.63 2.77 2.91 V
LVIC Temperature = 25°C 0.88 1.13 1.39 V
OT_t Over temperature protection VCC = 15V, Detect LVIC temperature - Trip level 120 130 140 °C
OT_rh Hysteresis of trip-reset 10 °C
VFOH Fault output voltage VSC = 0V, FO terminal pulled up to 5V by 10kΩ 4.8 V
VFOL VSC = 1V, IFO = 10mA 0.5 V
tFO Fault output pulse width (Fig.5) 65 μs
IIN Input current VIN = 5V 1.0 1.5 mA
Vth(on) ON threshold voltage Applied between HINU, HINV, HINW, LINU, LINV, LINW-COM 2.6 V
Vth(off) OFF threshold voltage 0.8 V
Vth(hys) ON/OFF threshold hysteresis voltage 0.25 1.8 V
R Built-in limiting resistance Included in bootstrap Diode 80 90 100 Ω

Recommended Operation Conditions

Symbol Parameter Conditions Min Typ Max Unit
VPN Supply voltage Applied between P-NU, NV, NW 0 300 400 V
VCC Control supply voltage Applied between VCCH-COM, VCCL-COM 13.5 15.0 16.5 V
VBS Control supply voltage Applied between VBU-U, VBV-V, VBW-W 13.0 15.0 18.5 V
dV_CC/dt, dV_BS/dt Control supply variation -1 +1 V/μs
tdead Arm shoot-through blocking time For each input signal 1.0 μs
fPWM PWM input frequency TC ≤ 100°C, Tj ≤ 125°C 20 kHz
IO Allowable r.m.s. current VPN = 300V, VCC = VBS = 15V, P.F = 0.8, Sinusoidal PWM, fPWM = 5kHz, TC ≤ 100°C, Tj ≤ 125°C 15 Arms
fPWM = 15kHz 10 Arms
PW_IN(on) Minimum input pulse width 0.7 μs
PW_IN(off) 0.7 μs
VCOM COM variation Between COM-NU, NV, NW (including surge) -5.0 +5.0 V
Tj Junction temperature -20 +125 °C

Notes:

Confidential Shared Under NDA.