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DTA144ECAHZGT116

Active
Rohm Semiconductor

PNP, SOT-23, R1=R2 POTENTIAL DIVIDER TYPE DIGITAL TRANSISTOR (BIAS RESISTOR BUILT-IN TRANSISTOR) FOR AUTOMOTIVE

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Discrete Semiconductor Products

DTA144ECAHZGT116

Active
Rohm Semiconductor

PNP, SOT-23, R1=R2 POTENTIAL DIVIDER TYPE DIGITAL TRANSISTOR (BIAS RESISTOR BUILT-IN TRANSISTOR) FOR AUTOMOTIVE

Technical Specifications

Parameters and characteristics for this part

SpecificationDTA144ECAHZGT116
Current - Collector (Ic) (Max) [Max]100 mA
DC Current Gain (hFE) (Min) @ Ic, Vce [Min]68
Frequency - Transition250 MHz
GradeAutomotive
Mounting TypeSurface Mount
Package / CaseSOT-23-3, TO-236-3, SC-59
Power - Max [Max]350 mW
QualificationAEC-Q101
Resistor - Base (R1)47 kOhms
Resistor - Emitter Base (R2)47 kOhms
Supplier Device PackageSST3
Transistor TypePNP - Pre-Biased
Vce Saturation (Max) @ Ib, Ic300 mV

DTA144 Series

PNP, SOT-416, R1=R2 Potential Divider Type Digital Transistor (Bias Resistor Built-in Transistor) for automotive

PartVoltage - Collector Emitter Breakdown (Max) [Max]Current - Collector (Ic) (Max) [Max]Power - Max [Max]Supplier Device PackageResistor - Base (R1)Vce Saturation (Max) @ Ib, IcFrequency - TransitionCurrent - Collector Cutoff (Max) [Max]Transistor TypePackage / CaseDC Current Gain (hFE) (Min) @ Ic, Vce [Min]Resistor - Emitter Base (R2)Mounting TypeQualificationGrade
SMT3
Rohm Semiconductor
50 V
30 mA
200 mW
SMT3
47 kOhms
300 mV
250 MHz
500 nA
PNP - Pre-Biased
SC-59
SOT-23-3
TO-236-3
33
10 kOhms
Surface Mount
UMT3
Rohm Semiconductor
50 V
30 mA
200 mW
UMT3
47 kOhms
300 mV
250 MHz
500 nA
PNP - Pre-Biased
SC-70
SOT-323
68
47 kOhms
Surface Mount
UMT3
Rohm Semiconductor
100 mA
200 mW
UMT3
47 kOhms
300 mV
250 MHz
PNP - Pre-Biased
SC-70
SOT-323
68
47 kOhms
Surface Mount
Product thumbnail image
Rohm Semiconductor
100 mA
350 mW
SST3
47 kOhms
300 mV
250 MHz
PNP - Pre-Biased
SC-59
SOT-23-3
TO-236-3
68
47 kOhms
Surface Mount
AEC-Q101
Automotive
VMT3 Pkg
Rohm Semiconductor
50 V
30 mA
150 mW
VMT3
47 kOhms
300 mV
250 MHz
500 nA
PNP - Pre-Biased
SOT-723
68
47 kOhms
Surface Mount
2SA2018TL
Rohm Semiconductor
50 V
100 mA
EMT3
47 kOhms
300 mV
250 MHz
500 nA
PNP - Pre-Biased
SC-75
SOT-416
100
Surface Mount
TOREX XP261N70027R-G
Rohm Semiconductor
100 mA
150 mW
VMT3
47 kOhms
300 mV
250 MHz
PNP - Pre-Biased
SOT-723
68
47 kOhms
Surface Mount
AEC-Q101
Automotive
SC-72-3_SPT
Rohm Semiconductor
50 V
30 mA
SPT
47 kOhms
300 mV
250 MHz
500 nA
PNP - Pre-Biased
SC-72 Formed Leads
68
47 kOhms
Through Hole
Product dimension image
Rohm Semiconductor
50 V
100 mA
200 mW
UMT3
47 kOhms
300 mV
250 MHz
500 nA
PNP - Pre-Biased
SC-70
SOT-323
68
47 kOhms
Surface Mount
AEC-Q101
Automotive
7-PDIP Less Pin 6
Rohm Semiconductor
50 V
100 mA
200 mW
SST3
47 kOhms
300 mV
250 MHz
500 nA
PNP - Pre-Biased
SC-59
SOT-23-3
TO-236-3
56
22 kOhms
Surface Mount

Pricing

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

DistributorPackageQuantity$
DigikeyCut Tape (CT) 1$ 0.18
10$ 0.11
100$ 0.07
500$ 0.05
1000$ 0.04
Digi-Reel® 1$ 0.18
10$ 0.11
100$ 0.07
500$ 0.05
1000$ 0.04
Tape & Reel (TR) 3000$ 0.02
6000$ 0.02
9000$ 0.02
15000$ 0.02
21000$ 0.02
30000$ 0.02
NewarkEach (Supplied on Cut Tape) 1$ 0.19
10$ 0.11
25$ 0.10
50$ 0.08
100$ 0.07
250$ 0.06
500$ 0.05
1000$ 0.05

Description

General part information

DTA144 Series

DTA144WCA 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.

Documents

Technical documentation and resources

DTA144ECAHZG Data Sheet

Data Sheet

Method for Monitoring Switching Waveform

Schematic Design & Verification

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

Technical Article

Calculation of Power Dissipation in Switching Circuit

Schematic Design & Verification

What is a Thermal Model? (Transistor)

Thermal Design

Notes for Temperature Measurement Using Thermocouples

Thermal Design

Notes for Calculating Power Consumption:Static Operation

Thermal Design

Impedance Characteristics of Bypass Capacitor

Schematic Design & Verification

What Is Thermal Design

Thermal Design

ESD Data

Characteristics Data

Reliability Test Result

Manufacturing Data

PCB Layout Thermal Design Guide

Thermal Design

Measurement Method and Usage of Thermal Resistance RthJC

Thermal Design

Certificate of not containing SVHC under REACH Regulation

Environmental Data

Taping Information

Package Information

Method for Calculating Junction Temperature from Transient Thermal Resistance Data

Thermal Design

Two-Resistor Model for Thermal Simulation

Thermal Design

Basics of Thermal Resistance and Heat Dissipation

Thermal Design

Precautions When Measuring the Rear of the Package with a Thermocouple

Thermal Design

Temperature derating method for Safe Operating Area (SOA)

Schematic Design & Verification

Moisture Sensitivity Level - Transistors

Package Information

Package Dimensions

Package Information

How to Use LTspice® Models: Tips for Improving Convergence

Schematic Design & Verification

Explanation for Marking

Package Information

Part Explanation

Application Note

Importance of Probe Calibration When Measuring Power: Deskew

Schematic Design & Verification

About Export Regulations

Export Information

Compliance of the RoHS directive

Environmental Data

Types and Features of Transistors

Application Note

About Flammability of Materials

Environmental Data

Anti-Whisker formation - Transistors

Package Information

Notes for Temperature Measurement Using Forward Voltage of PN Junction

Thermal Design

How to Use LTspice® Models

Schematic Design & Verification

Condition of Soldering / Land Pattern Reference

Package Information

List of Transistor Package Thermal Resistance

Thermal Design

AEC-Q101 Automotive Requirements

Related Document

SST3 Part Marking

Related Document