Product Detail
SS060N006DIP26
SineSemi 中晶新源Core Authorized Distributor
Specifications
- Application Level
- Consumer
- Package
- DIP-26
- Product Type
- RC-IGBT
- Tj
- -30~150 °C
- VCE_MAX
- 600 V
- IC_MAX @25°C
- 6 A
- ICP
- 12 A
- VCESAT_MAX
- 1.6 V
- T(ON)
- 0.7 μs
- TC(ON)
- 0.1 μs
- T(OFF)
- 0.6 μs
- Turn-Off Current Fall Time TC(OFF)
- 0.1 μs
- Reverse Recovery Time Trr
- 0.15 μs
- Forward Voltage Drop VF
- 1.5 V
- Sample Status
- Ready
Not sure how to choose? Read the IGBT-Based IPM Selection Guide →
Online Datasheet
Compiled from the manufacturer's datasheet; the official document prevails.
SS060N006DIP26
600V / 6A RCIGBT Intelligent Power Module (DIP-26FR)
Description
DIP-26FP is a highly integrated, high reliability 3-phase brushless DC motor drive circuit. It provides low electromagnetic interference (EMI) characteristics with optimized switching speed. It is composed of HVIC and LVIC for IGBT gate driving, 6 low loss RC-IGBTs for inverter, 3 bootstrap diodes with current limiting resistor.
Features
- Built-in 6 low loss 600V/6A RCIGBT
- Built-in bootstrap diodes with current limiting resistor
- Built-in under voltage protection and over temperature, over current protection and temperature output
Applications
- Refrigerator compressor motor
- Air conditioner compressor motor
- Washing machine main motor
- Fan motor
- Pump motor
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 RCIGBT collector current | TC = 25 °C | 6 | A |
| ±ICp | Each RCIGBT collector current (peak) | TC = 25 °C, less than 1 ms | 12 | A |
| Tj | Junction temperature | Note 1 | -30 to +150 | °C |
Note 1: The maximum junction temperature rating of built-in power chips is 175°C (@TC ≤ 125°C), however, to ensure safe operation of DIPIPM, the average junction temperature should be limited to Tj(Ave) ≤ 150°C (@TC ≤ 125°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 | 1.2 | 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 | -40 to +100 | °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 RCIGBT part (per 1/6 module) | — | — | 8.88 | K/W |
Electrical Characteristics (TJ = 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 = 6A, Tj = 25°C | — | 1.55 | — | V |
| VCC = VBS = 15V, VIN = 5V, IC = 6A, Tj = 125°C | — | 1.75 | — | V | ||
| VF | Forward voltage | VIN = 0V, IF = 6A, TJ = 25°C | — | 1.50 | — | V |
| VIN = 0V, IF = 6A, TJ = 125°C | — | 1.60 | — | V | ||
| ton | Switching times | VPN = 400V, VCC = VBS = 15V, IC = 6A, Tj = 25°C, VIN = 0↔5V, Inductive Load (upper-lower arm) | — | 0.70 | — | μs |
| tC(on) | — | 0.10 | — | μs | ||
| toff | 0.40 | 0.60 | 0.80 | μs | ||
| tC(off) | — | 0.1 | — | μs | ||
| trr | — | 0.15 | — | 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 | — | — | 3.10 | mA |
| VCC = 15V, VIN = 5V | — | — | 3.10 | 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 (Note 4) | 0.455 | 0.480 | 0.505 | V |
| UV_BSD | HIGH-side Control supply under-voltage protection (UV) - Trip level | Tj ≤ 125°C | 9.0 | 10.0 | 11.0 | V |
| UV_BSR | HIGH-side Control supply under-voltage protection (UV) - Reset level | Tj ≤ 125°C | 10.0 | 11.0 | 12.0 | V |
| UV_CCD | LOW-side Control supply under-voltage protection (UV) - Trip level | Tj ≤ 125°C | 9.0 | 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 | Pull down R = 5.1kΩ (Note 5), LVIC Temperature = 95°C | 2.76 | 2.89 | 3.03 | V |
| LVIC Temperature = 25°C | 0.86 | 1.16 | 1.39 | V | ||
| OT_t | Over temperature protection | VCC = 15V, Detect LVIC temperature - Trip level | 100 | 120 | 140 | °C |
| OT_rh | Hysteresis of trip-reset | — | 10 | — | °C | |
| VFOH | Fault output voltage | VSC = 0V, FO terminal pulled up to 5V by 10kΩ | 4.9 | — | — | V |
| VFOL | VSC = 1V, IFO = 10mA | — | — | 0.95 | V | |
| tFO | Fault output pulse width | (Note 7) | 40 | — | — | μs |
| IIN | Input current | VIN = 5V | — | 650 | 850 | μA |
| Vth(on) | ON threshold voltage | Applied between HINU, HINV, HINW, LINU, LINV, LINW-COM | — | 1.70 | 2.35 | V |
| Vth(off) | OFF threshold voltage | 0.70 | 1.30 | — | V | |
| Vth(hys) | ON/OFF threshold hysteresis voltage | 0.25 | 0.40 | — | V | |
| VF | Bootstrap Di forward voltage | IF = 10mA including voltage drop by limiting resistor | 2.3 | 2.9 | 3.5 | V |
| R | Built-in limiting resistance | Included in bootstrap Di | — | 250 | — | 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 | — | — | 2.5 | Arms |
| fPWM = 15kHz | — | — | 2.0 | 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.
