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Discrete Semiconductor Products

DTC124XE3HZGTL

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Rohm Semiconductor

DIGITAL TRANSISTORS NPN, SOT-416, R1?R2 LEAK ABSORPTION TYPE DIGITAL TRANSISTOR (BIAS RESISTOR BUILT-IN TRANSISTOR)

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2SA2018TL
Discrete Semiconductor Products

DTC124XE3HZGTL

Active
Rohm Semiconductor

DIGITAL TRANSISTORS NPN, SOT-416, R1?R2 LEAK ABSORPTION TYPE DIGITAL TRANSISTOR (BIAS RESISTOR BUILT-IN TRANSISTOR)

Technical Specifications

Parameters and characteristics for this part

SpecificationDTC124XE3HZGTL
Current - Collector (Ic) (Max) [Max]100 mA
Current - Collector Cutoff (Max) [Max]500 nA
DC Current Gain (hFE) (Min) @ Ic, Vce [Min]68
Frequency - Transition250 MHz
GradeAutomotive
Mounting TypeSurface Mount
Package / CaseSOT-416, SC-75
Power - Max [Max]150 mW
QualificationAEC-Q101
Resistor - Base (R1)22 kOhms
Resistor - Emitter Base (R2)47 kOhms
Supplier Device PackageEMT3
Transistor TypeNPN - Pre-Biased
Vce Saturation (Max) @ Ib, Ic300 mV
Voltage - Collector Emitter Breakdown (Max) [Max]50 V

Pricing

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

DistributorPackageQuantity$
DigikeyCut Tape (CT) 1$ 0.46
10$ 0.32
100$ 0.16
500$ 0.13
1000$ 0.10
Digi-Reel® 1$ 0.46
10$ 0.32
100$ 0.16
500$ 0.13
1000$ 0.10
Tape & Reel (TR) 3000$ 0.08
6000$ 0.08
9000$ 0.07
30000$ 0.07
75000$ 0.06
150000$ 0.05
MouserN/A 1$ 0.34
10$ 0.21
100$ 0.13
500$ 0.10
1000$ 0.08
3000$ 0.07
6000$ 0.06
9000$ 0.06
24000$ 0.05

Description

General part information

DTC124 Series

DTC124EU3HZG is an digital transistor (Resistor built-in type transistor). Built-in bias resistors enable the configuration of an inverter circuit without connecting external input resistors. This is a high-reliability product of automotive grade qualified to AEC-Q101.

Documents

Technical documentation and resources

DTC124XE3HZGTL Datasheet (PDF)

Datasheet

Calculation of Power Dissipation in Switching Circuit

Schematic Design & Verification

What Is Thermal Design

Thermal Design

What is a Thermal Model? (Transistor)

Thermal Design

Basics of Thermal Resistance and Heat Dissipation

Thermal Design

About Export Regulations

Export Information

Precautions When Measuring the Rear of the Package with a Thermocouple

Thermal Design

Notes for Temperature Measurement Using Thermocouples

Thermal Design

Notes for Temperature Measurement Using Forward Voltage of PN Junction

Thermal Design

How to Use LTspice® Models: Tips for Improving Convergence

Schematic Design & Verification

Importance of Probe Calibration When Measuring Power: Deskew

Schematic Design & Verification

Method for Calculating Junction Temperature from Transient Thermal Resistance Data

Thermal Design

Anti-Whisker formation - Transistors

Package Information

Compliance of the RoHS directive

Environmental Data

About Flammability of Materials

Environmental Data

Impedance Characteristics of Bypass Capacitor

Schematic Design & Verification

Package Dimensions

Package Information

Certificate of not containing SVHC under REACH Regulation

Environmental Data

Moisture Sensitivity Level - Transistors

Package Information

Types and Features of Transistors

Application Note

Measurement Method and Usage of Thermal Resistance RthJC

Thermal Design

Condition of Soldering / Land Pattern Reference

Package Information

Taping Information

Package Information

Notes for Calculating Power Consumption:Static Operation

Thermal Design

Method for Monitoring Switching Waveform

Schematic Design & Verification

PCB Layout Thermal Design Guide

Thermal Design

Two-Resistor Model for Thermal Simulation

Thermal Design

How to Use LTspice® Models

Schematic Design & Verification

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

Technical Article

Temperature derating method for Safe Operating Area (SOA)

Schematic Design & Verification

List of Transistor Package Thermal Resistance

Thermal Design

Part Explanation

Application Note

Explanation for Marking

Package Information