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Discrete Semiconductor Products

RGS40NL65HRBTL

NRND
Rohm Semiconductor

8ΜS SHORT-CIRCUIT TOLERANCE, 650V 20A, AUTOMOTIVE FIELD STOP TRENCH IGBT

Product thumbnail image
Discrete Semiconductor Products

RGS40NL65HRBTL

NRND
Rohm Semiconductor

8ΜS SHORT-CIRCUIT TOLERANCE, 650V 20A, AUTOMOTIVE FIELD STOP TRENCH IGBT

Technical Specifications

Parameters and characteristics for this part

SpecificationRGS40NL65HRBTL
Current - Collector (Ic) (Max)42 A
Current - Collector Pulsed (Icm)60 A
Gate Charge28 nC
GradeAutomotive
IGBT TypeTrench Field Stop
Mounting TypeSurface Mount
Operating Temperature [Max]175 °C
Operating Temperature [Min]-40 °C
Package / CaseD2PAK (2 Leads + Tab), TO-263-3, TO-263AB
Power - Max [Max]177 W
QualificationAEC-Q101
Supplier Device PackageTO-263L
Switching Energy560 µJ, 490 µJ
Td (on/off) @ 25°C [custom]87 ns
Td (on/off) @ 25°C [custom]24 ns
Test Condition20 A, 10 Ohm, 400 V, 15 V
Vce(on) (Max) @ Vge, Ic2.1 V
Voltage - Collector Emitter Breakdown (Max) [Max]650 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyN/A 820$ 4.61
NewarkEach (Supplied on Cut Tape) 1$ 4.54
10$ 3.18
25$ 2.75
50$ 2.50
100$ 2.24
250$ 1.99
500$ 1.83
1000$ 1.82

Description

General part information

RGS40NL65HRB Series

RGS40NL65HRB is a 8μs SCSOA guaranteed IGBT, suitable for general inverter for automotive and industrial use. This product complies AEC-Q101 qualification.

Documents

Technical documentation and resources

The Problem with Traditional Vaccine Storage Freezers and How ROHM Cutting-edge Power Solutions Can Take them to the Next Level

White Paper

RGS40NL65HRB Data Sheet

Data Sheet

Judgment Criteria of Thermal Evaluation

Thermal Design

About Export Administration Regulations (EAR)

Export Information

Precautions for Thermal Resistance of Insulation Sheet

Thermal Design

Package Dimensions

Package Information

Impedance Characteristics of Bypass Capacitor

Schematic Design & Verification

Importance of Probe Calibration When Measuring Power: Deskew

Schematic Design & Verification

Notes for Calculating Power Consumption:Static Operation

Thermal Design

What is a Thermal Model? (IGBT)

Thermal Design

Moisture Sensitivity Level

Package Information

4 Steps for Successful Thermal Designing of Power Devices

White Paper

Types and Features of Transistors

Application Note

Calculation of Power Dissipation in Switching Circuit

Schematic Design & Verification

Method for Calculating Junction Temperature from Transient Thermal Resistance Data

Thermal Design

Power Eco Family: Overview of ROHM's Power Semiconductor Lineup

White Paper

What Is Thermal Design

Thermal Design

Part Explanation

Application Note

Notes for Temperature Measurement Using Forward Voltage of PN Junction

Thermal Design

Semikron Danfoss: Partnering for the Safe Supply of Industrial Power Modules

White Paper

How to Use the Thermal Resistance and Thermal Characteristics Parameters

Thermal Design

θ<sub>JA</sub> and Ψ<sub>JT</sub>

Thermal Design

Two-Resistor Model for Thermal Simulation

Thermal Design

Anti-Whisker formation

Package Information

How to Use LTspice&reg; Models

Schematic Design & Verification

Measurement Method and Usage of Thermal Resistance RthJC

Thermal Design

Compliance of the ELV directive

Environmental Data

Notes for Temperature Measurement Using Thermocouples

Thermal Design

Estimation of switching losses in IGBTs operating with resistive load

Schematic Design & Verification

About Flammability of Materials

Environmental Data

Method for Monitoring Switching Waveform

Schematic Design & Verification

PCB Layout Thermal Design Guide

Thermal Design

Basics of Thermal Resistance and Heat Dissipation

Thermal Design

How to Use LTspice&reg; Models: Tips for Improving Convergence

Schematic Design & Verification

Precautions When Measuring the Rear of the Package with a Thermocouple

Thermal Design

Generation Mechanism of Voltage Surge on Commutation Side (Basic)

Technical Article

Overview of ROHM's Simulation Models(for ICs and Discrete Semiconductors)

Technical Article

θ<sub>JC</sub> and Ψ<sub>JT</sub>

Thermal Design