The PN200 PNP transistor is a general-purpose semiconductor device commonly used in low to medium power electronic circuits. This article provides clear information about its electrical characteristics, typical applications, operating behavior, and detailed pn200 pinout to support correct and safe use in practical designs.

Introduction
The PN200 is a PNP bipolar junction transistor designed for signal amplification and switching applications. It is widely used in control circuits, complementary amplifier stages, and general electronic projects where stable performance and compact size are preferred. The TO-92 package makes the PN200 easy to handle and suitable for high-density PCB layouts.
Its predictable electrical behavior and simple biasing requirements make the PN200 a practical option for both educational and professional electronics work.

PN200 Pinout

Understanding the PN200 Pinout Configuration
The PN200 pinout follows an Emitter–Base–Collector (E-B-C) arrangement when viewed from the flat side of the TO-92 package. Correct pin identification is important for proper circuit operation and to avoid damage.
| Pin# | Pin Name |
|---|---|
| 1 | Emitter |
| 2 | Base |
| 3 | Collector |
PN200 Key Features
- General-purpose PNP transistor design
- Stable switching and amplification performance
- Compact TO-92 package
- Suitable for low power electronic circuits
- Easy integration into PCB layouts
- Reliable operation in everyday applications
Characteristics / Specifications
- Transistor Type: PNP
- Package Type: TO-92
- Collector-Emitter Voltage (VCE): 45V
- Collector-Base Voltage (VCB): 75V
- Emitter-Base Voltage (VEB): 6V
- Continuous Collector Current (IC): 500mA
- Power Dissipation (PD): 625mW
- Maximum Junction Temperature (Tj): 150°C
- Storage Temperature Range (Tstg): -55°C to 150°C
More Circuit Layouts








Key Applications of PN200 NPN Transistor
- Signal amplification circuits
- Low power switching applications
- Complementary amplifier stages
- Control and logic circuits
- Educational and DIY electronics projects
- Consumer electronic devices
Equivalent of PN200 NPN Transistor
The following transistors can be used as alternatives to the PN200 with suitable circuit adjustments:
Working Principle of PN200
The PN200 operates as a PNP bipolar junction transistor where current flow is controlled by the base relative to the emitter. When the base is at a lower potential than the emitter, the transistor conducts and allows current to flow from emitter to collector.
This operating behavior enables the PN200 to function effectively in signal control, amplification, and low power switching applications.
Frequently Asked Questions (FAQ)
Q1: What package is used for the PN200 transistor?
The PN200 is available in a TO-92 package.
Q2: What is the PN200 pinout order?
The pin configuration is Emitter, Base, and Collector (E-B-C).
Q3: Can PN200 be used as a switch?
Yes, it is commonly used in low power switching circuits.
Q4: Is PN200 suitable for complementary amplifier designs?
Yes, it is often used alongside NPN transistors in complementary stages.
Conclusion
The PN200 PNP transistor is a versatile and reliable component for low power electronic applications. With a clearly defined pn200 pinout, stable electrical characteristics, and wide application range, it is well suited for amplification, switching, and educational circuit designs.
Datasheet of PN200 NPN Transistor
Click the following Button to download the datasheet of PN200 Transistor :
More projects, You may like:
- Video Transmitter DIY Homemade FM Radio Transmitter
- Adjustable Power Supply DIY Battery Charger
- 12V-220V 500 Watt inverter DIY Homemade
- MPPT Solar Charge Controller DIY Homemade
- DIY LA4440 bass amplifier homemade
For more project and circuit diagrams, you can go through the Schematics in the main menu where you can find many interesting projects and circuit diagrams like audio amplifier circuits, voltage booster circuit, battery charger circuit and timer circuits etc., which are all beginner circuit projects. Feel free to check them out!

Thank you for visiting the article.
























