Overview
The STGIPN3H60AT is an Intelligent Power Module (IPM) designed by STMicroelectronics, optimized for 3-phase inverter applications. This module integrates a compact, high-performance AC motor drive in a simple and rugged design. It includes six IGBTs with freewheeling diodes and three half-bridge HVICs for gate driving, ensuring low electromagnetic interference (EMI) and optimized switching speed. The module is particularly suited for built-in motor applications or other low-power applications where space is limited.
Key Specifications
Parameter | Value | Unit |
---|---|---|
Collector-Emitter Voltage (VCE) | 600 | V |
Continuous Collector Current (IC) | 3 | A |
Pulsed Collector Current (ICP) | 18 | A |
Total Power Dissipation (PTOT) | 8 | W |
Isolation Withstand Voltage (VISO) | 1000 | Vrms |
Junction Temperature Range (TJ) | -40 to 150 | °C |
Case Temperature Range (TC) | -40 to 125 | °C |
Thermal Resistance (RthJC) - IGBT | 12.8 | °C/W |
Thermal Resistance (RthJC) - Diode | 15.5 | °C/W |
Thermal Resistance (RthJA) - Module | 22 | °C/W |
Package Type | NDIP-26L | |
Moisture Sensitivity Level (MSL) | 1 (Unlimited) | |
Lead Free Status / RoHS Status | Lead free / RoHS Compliant |
Key Features
- 3 A, 600 V, 3-phase IGBT inverter bridge including control ICs for gate driving and freewheeling diodes.
- Optimized for low electromagnetic interference (EMI).
- VCE(sat) with negative temperature coefficient.
- 3.3 V, 5 V, 15 V CMOS/TTL input comparators with hysteresis and pull-down/pull-up resistors.
- Undervoltage lockout and internal bootstrap diode.
- Interlocking function to prevent simultaneous high and low side switching.
- Optimized pinout for easy board layout.
- 85 kΩ NTC for temperature control.
- Advanced gate driving features and high-speed switching capabilities.
- Low on-state voltage drop due to IGBT structure.
- Short-circuit ruggedness and high current density.
- Energy-efficient design with low conductive losses.
Applications
- 3-phase induction motor (ACIM) control.
- Dishwashers.
- Fans.
- PMSM / BLDC motor control.
- Refrigerators and freezers.
- Inverter for motor drive.
- AC control applications.
- Renewable energy systems.
- Industrial automation systems.
Q & A
- What is the STGIPN3H60AT module used for?
The STGIPN3H60AT is used for 3-phase inverter applications, particularly in AC motor drives and other low-power motor control systems.
- What are the key electrical specifications of the STGIPN3H60AT?
The module has a collector-emitter voltage of 600 V, a continuous collector current of 3 A, and an isolation withstand voltage of 1000 Vrms.
- What type of package does the STGIPN3H60AT come in?
The module is packaged in a 26-lead NDIP-26L type C package.
- What are the thermal characteristics of the STGIPN3H60AT?
The module has a junction temperature range of -40 to 150 °C and a case temperature range of -40 to 125 °C. The thermal resistance from junction to case for the IGBT is 12.8 °C/W and for the diode is 15.5 °C/W.
- Does the STGIPN3H60AT have built-in protection features?
Yes, it includes undervoltage lockout, internal bootstrap diode, and an interlocking function to prevent simultaneous high and low side switching.
- What is the purpose of the NTC thermistor in the STGIPN3H60AT?
The 85 kΩ NTC thermistor is used for temperature control and monitoring, ensuring the module operates within safe temperature limits.
- Is the STGIPN3H60AT compliant with environmental standards?
Yes, it is lead-free and RoHS compliant, and it comes in ECOPACK packages that meet various environmental compliance levels.
- What are some common applications of the STGIPN3H60AT?
Common applications include 3-phase induction motor control, dishwashers, fans, PMSM / BLDC motor control, refrigerators, and industrial automation systems.
- How does the STGIPN3H60AT minimize electromagnetic interference (EMI)?
The module is optimized for low EMI through its design and the use of advanced gate driving features.
- What is the significance of the high-speed switching capability of the STGIPN3H60AT?
The high-speed switching capability enhances the module's performance in applications requiring fast and efficient switching, such as in motor drives and renewable energy systems.