2N5153L-Transistor Overview
The 2N5153L is a high-performance NPN bipolar junction transistor designed for medium power and high voltage switching and amplification applications. Featuring a maximum collector-emitter voltage of 60V and a collector current rating up to 1.5A, it delivers robust operation in industrial and consumer circuits. Its complementary configuration and stable gain characteristics make it suitable for driving loads and interfacing in analog signal processing. The device is manufactured with proven semiconductor technology ensuring consistent performance and reliability. For precise sourcing and detailed product data, visit the IC Manufacturer website.
2N5153L-Transistor Key Features
- High Voltage Tolerance: Supports up to 60V collector-emitter voltage, enabling use in circuits requiring medium to high voltage handling.
- Moderate Current Handling: Collector current rating of 1.5A allows effective switching and amplification of moderate power loads.
- Reliable Gain Performance: DC current gain (hFE) ranges from 40 to 160, providing stable amplification in analog signal paths.
- Enhanced Switching Speed: Low transition times improve switching efficiency, reducing power loss in switching applications.
2N5153L-Transistor Technical Specifications
| Parameter | Specification | Unit |
|---|---|---|
| Collector-Emitter Voltage (Vceo) | 60 | V |
| Collector-Base Voltage (Vcbo) | 70 | V |
| Emitter-Base Voltage (Vebo) | 5 | V |
| Collector Current (Ic) | 1.5 | A |
| DC Current Gain (hFE) | 40 to 160 | ?? |
| Transition Frequency (fT) | 50 | MHz |
| Power Dissipation (Pd) | 1.0 | W |
| Operating Junction Temperature (Tj) | -65 to +200 | ??C |
2N5153L-Transistor Advantages vs Typical Alternatives
Compared to typical small-signal transistors, this device offers enhanced voltage and current ratings, making it suitable for medium power applications. Its wide gain range and high transition frequency enable precise signal amplification and fast switching, improving circuit responsiveness. The transistor??s robust thermal tolerance increases reliability in demanding environments, offering engineers a dependable choice without compromising efficiency or integration complexity.
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Typical Applications
- Switching circuits requiring medium voltage and current capabilities, such as relay drivers and power control stages, benefit from its reliable performance and voltage handling.
- General-purpose amplifier stages in audio and signal conditioning circuits where moderate gain and frequency response are needed.
- Interfacing components in industrial control systems that need rugged transistor solutions for load driving.
- Complementary transistor pairs in analog circuits for improved linearity and signal fidelity.
2N5153L-Transistor Brand Info
This transistor is produced under stringent manufacturing standards by a reputable semiconductor supplier. The 2N5153L is recognized for its stability, electrical performance, and widespread availability, supporting engineers in designing reliable and efficient electronic solutions. Its consistent quality and technical support make it a preferred component in industrial and commercial applications worldwide.
FAQ
What is the maximum voltage rating for this transistor?
The maximum collector-emitter voltage rating is 60 volts, which allows the transistor to operate safely in circuits with relatively high voltage demands without risk of breakdown.
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Can this transistor handle high current loads?
Yes, it supports a collector current up to 1.5 amperes, making it suitable for moderate power switching and amplification tasks in various applications.
What frequency range is suitable for this transistor?
With a transition frequency of approximately 50 MHz, this transistor performs well in medium-frequency amplification and switching applications, balancing speed and power handling.
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Is this transistor suitable for high-temperature environments?
The device is rated for junction temperatures up to 200??C, which provides enhanced reliability and durability in high-temperature operating conditions typical in industrial settings.
How does the DC current gain affect circuit design?
The DC current gain, ranging from 40 to 160, impacts the transistor??s amplification capability. Designers can leverage this range for precise current amplification, optimizing circuit sensitivity and performance.







