TIP36C Vs TIP41C Transistor: Datasheet, Pinout, and Test Circuits

TIP36C Vs TIP41C Transistor: Datasheet, Pinout, and Test Circuits

 

Catalog

Introduction

TIP36C Description

TIP41C Description

TIP36C Vs TIP41C: Difference in Pinout

TIP36C Vs TIP41C: Difference in CAD Model

TIP36C Vs TIP41C: Difference in Features

TIP36C Vs TIP41C: Difference in Advantages

Specifications

TIP36C Vs TIP41C: Difference in Test Circuits

TIP36C Vs TIP41C: Difference in Functional Alternatives

How to use TIP41C

TIP36C Vs TIP41C: Difference in Application

TIP36C Vs TIP41C: Difference in Package

Datasheet PDF

 

Introduction:

Transistors are essential components in electronic circuits, serving various purposes such as amplification, switching, and voltage regulation. The TIP36C and TIP41C transistors are commonly used in power applications due to their high current and voltage capabilities. This article aims to provide an overview of these transistors, including their datasheets, pinouts, and test circuit examples.

 

TIP36C Transistor:

The TIP36C is a PNP bipolar junction transistor designed for general-purpose power amplifier and switching applications. It features a maximum collector current (IC) of 25A and a collector-emitter voltage (VCEO) of 100V. The TIP36C transistor is housed in a TO-247 package, which provides excellent thermal dissipation capabilities.

 

The TIP36C is a complementary PNP Power Transistor with low collector-emitter saturation voltage. It is manufactured in planar technology with base island layout. The resulting transistor show exceptional high gain performance coupled with very low saturation voltage. Designed for use in audio amplifier and general purpose applications.

Monolithic Darlington configuration.5A Base current.1°C/W Junction-to-case thermal resistance

 

TIP41C Transistor:

The TIP41C is an NPN bipolar junction transistor that complements the TIP36C. It is also used for power amplification and switching purposes. The TIP41C transistor has a maximum collector current (IC) of 6A and a collector-emitter voltage (VCEO) of 100V. It is packaged in a TO-220 package, which is widely used and easy to handle.

The TIP41C is a base island technology NPN Power Transistor for audio, power linear and switching applications.

Complement to TIP42C.

High Switching Speed.

hFE Improved Linearity.

hFE Grouping

 

 

Pinouts:

The pinout configuration of the TIP36C and TIP41C transistors is as follows:

 

TIP36C:

TIP36C-pinout

 

TIP36C PIN figuration


TIP41C:

 

TIP41C PINOUT


TIP41C PIN CONfiguration

Test Circuit Examples:

TIP36C Amplifier Circuit:

The TIP36C can be used in audio amplifier circuits. Here’s a simple example of a TIP36C amplifier circuit:

Connect the input audio signal to the base (B) terminal of the TIP36C transistor through a coupling capacitor.

Connect a resistor between the base (B) terminal and the emitter (E) terminal.

Connect the collector © terminal to the positive supply voltage (+Vcc) through a load resistor.

Connect the emitter (E) terminal to the ground (GND).

TIP41C Switching Circuit:

The TIP41C can be used in switching applications. Here’s a basic example of a TIP41C switching circuit:

Connect the base (B) terminal of the TIP41C transistor to the control signal or microcontroller output through a current-limiting resistor.

Connect the collector © terminal to the load or device that needs to be switched.

Connect the emitter (E) terminal to the ground (GND).

 

TIP36C Vs TIP41C: Difference in CAD Model

TIP36C

Symbol

TIP36C-Symbol

Footprint

tip36c-footprint

 

3D-Model

 

TIP36C-3D MODEL


TIP41C

Symbol

TIP41C-Symbol

Footprint

tip41c-footprint

3D-Model

 

TIP41C-3D MODEL


TIP36C Vs TIP41C: Difference in Features

Features

■Low collector-emitter saturation voltage

1 1 Complementary NPN - PNP transistors

Applications

■General purpose

■Audio amplifier

 

TIP36 Key Features

25 A Collector Current

Low Leakage Current — ICEO = 1.0 mA @ 30 and 60 V

Excellent DC Gain — hFE = 40 Typ @ 15 A

High Current Gain Bandwidth Product — hfe = 3.0 min @ IC = 1.0 A, f = 1.0 M

Type Designator: TIP36C

Material of Transistor: Si

Polarity: PNP

Specification

Ic (mA)

Pd (mW)

Vce (max)  Vcbhfe @Ic  FT (MHz)
25 125 100100  15-7515000 3


TIP36 Equivalent/Alternate:

TIP100, TIP101, TIP102, TIP105, TIP106, TIP107, TIP110, TIP35C


Application

Power Amplifier

Switching Applications


TIP41C Key Features:


6 A Collector Current

Low Leakage Current — ICEO = 1.0 mA @ 30 and 60 V

Excellent DC Gain — hFE = 15-75 Typ @ 4 A

High Current Gain Bandwidth Product — hfe = 3.0 min @ IC = 0.5 A, f = 1.0 MHz

Type Designator: TIP41C

Material of Transistor: Si

Polarity: NPN

TIP41C Equivalent/Alternate:

TIP42, TIP42A, TIP42B, TIP42C


Specification


TIP41C Application:

Power Amplifier

Switching Applications

The TIP41C is also commonly used in audio amplifier circuits, linear power supplies, and general-purpose switching applications.

 It offers a moderate collector current rating and a wide range of DC gain options, making it suitable for various medium-power applications.





 

 

TIP36C Vs TIP41C: Difference in Test Circuits


TIP36C Vs TIP41C: Difference in Functional Alternatives


Alternatives:TIP36AG,BD243C,BD243C-S, BNSBD243CS,TIP36CW, 2STA2510, TIP36C-S, NTE393, TIP36CL

 

TIP36C Vs TIP41C: Difference in Application

 

TIP36C Vs TIP41C: Difference in Package

Package Type: The TIP36C is available in a TO-247 package, which provides better thermal dissipation and is suitable for high-power applications. The TIP41C is available in a TO-220 package, which is smaller and more commonly used for medium-power applications.

Voltage and Current Ratings: The TIP36C has a higher voltage rating of 100V compared to the TIP41C, which has a voltage rating of 60V. 

In terms of current handling, the TIP41C can handle higher collector current (6A) compared to the TIP36C (25A).


Power Dissipation: The TIP36C has a higher power dissipation capability (125W) compared to the TIP41C (65W). This means that the TIP36C

 can handle higher power levels without overheating.


Gain and Frequency Response: The TIP36C typically has a higher gain (hFE) compared to the TIP41C, which means it provides higher current

 amplification. However, the TIP41C has a slightly wider frequency response range.





Datasheet PDF

 

 

 

Conclusion:

The TIP36C and TIP41C transistors are widely used in power amplifier and switching applications. Their high current and voltage capabilities make them suitable for various electronic projects. By referring to their datasheets, understanding their pinout configurations, and implementing appropriate test circuits, engineers and hobbyists can effectively utilize these transistors in their designs. Whether it’s for amplification or switching purposes, the TIP36C and TIP41C transistors offer reliable performance and versatility.

 



Related Articles

2N5551 vs BC547 BJTs Comparison

Release time:2024-05-05       Page View:2153
The 2N5551 and BC547 are both NPN bipolar junction transistors (BJTs) commonly used in various electronic circuits. While they share some similarities, there are also key differences between them, making them suitable for different applications. This article provides a comprehensive comparison of these two transistors, focusing on their specifica...

LM3914 vs LM3915 vs LM3916 vs LM3917 How They Work?

Release time:2024-05-04       Page View:1696
This post is about LM3914 vs LM3915 vs LM3916 vs LM3917 detailed comparison.

Top 12 electronic component distributors 2024

Release time:2024-04-25       Page View:6219
Explore the leading electronic component distributors of 2023. From Arrow Electronics to WPG Holdings, discover how top distributors are shaping the global market.

TPS5450DDAR Datasheet, Pinout, Specification

Release time:2024-04-22       Page View:553
Understanding the : A Comprehensive GuideThe TPS5450DDAR is a highly integrated, step-down converter with an integrated MOSFET, designed to deliver up to 3A of continuous output current.

C945 Transistor Datasheet:C1815 VS C945 Comparison

Release time:2024-04-18       Page View:3154
C945 Transistor Datasheet: Features, Applications, and Comparison with C1815. Learn about the C945's pinout, circuits,operation, and how to use it. C945 VS C1815

Lithium Battery Charger TP4056: Datasheet, Schematic, Price

Release time:2024-04-15       Page View:12770
TP4056 charging module: Single-cell Li-ion charger. Find TP4056 datasheet & TP4056 pinout & TP4056 power path circuit here

TDA7265 Audio Amplifier:How To Connect And Test?

Release time:2024-04-02       Page View:3068
TDA7265 DatasheetTDA7265 PinoutTDA7265 Circuit DiagramTDA7265 EquivalentTDA7265 ICPriceTDA7265 FeaturesTDA7265 PackageTDA7265 ApplicationsTDA7265 Applications CircuitHow to Connect and TestTDA7265 Audio Amplifier?TDA7265 VS TDA7269VS TDA2050VS TDA7294What isTDA7265?The TDA7265 is a pop...

1n4007 vs 1n5399 Rectifier Diode: Pinout, Datasheet, Specifications

Release time:2024-03-30       Page View:5129
**1N4007 vs 1N5399 Rectifier Diode: Pinout, Datasheet, Specifications****Introduction**Rectifier diodes are essential components in electronic circuits, responsible for converting alternating current (AC) to direct current (DC). Among the commonly used rectifier diodes are the 1N4007 and 1N5399.

SN74HC595N vs SN74HC574N Shift Register Datasheet,Specs

Release time:2024-03-20       Page View:729
Dear friends,this post will help you make a better choice betweenSN74HC595N vs SN74HC574N for you, and revealShift Register Datasheet,Specs.SN74HC595N:Shift Register 2/6V -40°C~85°C Shift Register 74HC Series 74HC595 16 Pin 5V 16-DIP (0.300, 7.62mm)SN74HC574N:2V~6V 36MHz 8 Bit D-Type Flip Flop DUAL 74...

H6 vs H7 vs H8 vs H9 Battery Difference and Choosing Guide

Release time:2024-03-14       Page View:11195
This post is about H6 vs H7 vs H8 vs H9 Battery Difference and Choosing Guide: Understanding the Variances and Making Informed Decisions

ADRV9009BBCZ RF Description, Datasheet, Specification

Release time:2024-03-14       Page View:360
This post will help you go through the infomation about ADRV9009BBCZ,including Datasheet,Pinout, block diagram, Specification ,etc.ADRV9009BBCZOverviewADRV9009BBCZGeneral DescriptionTheADRV9009is a highly integrated, radio frequency (RF), agiletransceiver offering dual transmitters and receivers, integratedsynthesizers, ...

A3141, A3142, A3143, and A3144 Hall Effect Sensor Differences

Release time:2024-03-11       Page View:1598
Introduction:Hall effect sensors are widely used for various sensing applications, ranging from position sensing to current measurement. The A3141, A3142, A3143, and A3144 are popular Hall effect sensor models manufactured by Allegro Microsystems. While they may appear similar at first glance, each sensor in this series offers unique features and ...
RFQ