2N5320-Transistor Overview
The 2N5320 transistor is a silicon-controlled device designed for medium-power amplification and switching applications. Known for its robust performance, it offers reliable operation in industrial and consumer electronics environments. This transistor features a high voltage rating and moderate current capacity, making it suitable for a range of signal amplification tasks and switching circuits. Its stable electrical characteristics ensure consistent behavior under varying thermal conditions. Engineers and sourcing specialists value this component for its dependable quality and broad compatibility. For detailed sourcing and additional product details, visit IC Manufacturer.
2N5320-Transistor Technical Specifications
| Parameter | Specification |
|---|---|
| Type | NPN Silicon Transistor |
| Collector-Emitter Voltage (VCEO) | 60 V |
| Collector-Base Voltage (VCBO) | 80 V |
| Emitter-Base Voltage (VEBO) | 5 V |
| Collector Current (IC) | 3 A |
| Power Dissipation (Ptot) | 30 W (at 25??C) |
| DC Current Gain (hFE) | 40 to 160 |
| Transition Frequency (fT) | 3 MHz |
| Package Type | TO-66 Metal Can |
2N5320-Transistor Key Features
- High Voltage Handling: Supports up to 80 V collector-base voltage, enabling use in circuits requiring elevated voltage tolerance.
- Moderate Current Capacity: Rated for 3 A collector current, suitable for medium power amplification and switching tasks.
- Wide Gain Range: DC current gain between 40 to 160 offers flexibility in circuit design and signal amplification precision.
- Durable TO-66 Package: Metal can packaging ensures improved heat dissipation and mechanical robustness for reliable long-term operation.
Typical Applications
- Amplification stages in audio and industrial signal processing circuits where moderate voltage and current are required.
- Switching applications in power control circuits, including relay drivers and motor control interfaces.
- General-purpose transistor use in electronic test equipment and instrumentation amplifiers.
- Voltage regulation and stabilization circuits benefiting from its stable gain and thermal characteristics.
2N5320-Transistor Advantages vs Typical Alternatives
This transistor delivers a balance of voltage tolerance, current handling, and gain stability that makes it advantageous over many general-purpose alternatives. Its robust metal can package enhances thermal dissipation and mechanical reliability. The device??s wide gain range allows precise amplification control, while its moderate power rating suits many industrial and consumer electronics applications without the complexity of higher-power devices.
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2N5320-Transistor Brand Info
The 2N5320 is a well-established transistor design originally introduced by multiple semiconductor manufacturers under JEDEC standard numbering. It is commonly available from reputable suppliers specializing in discrete transistors for industrial and commercial applications. The device??s TO-66 metal can package underscores its reliability and longevity, making it a preferred choice for engineers seeking consistent performance in medium-power transistor applications. It remains a classic component in the transistor portfolio for its proven track record and broad availability.
FAQ
What is the maximum collector current rating for the 2N5320 transistor?
The maximum collector current for the device is 3 amperes. This rating defines the highest continuous current the transistor can safely handle without damage, making it suitable for medium power switching and amplification tasks.
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Which package type does the 2N5320 transistor use, and why is it significant?
This transistor comes in a TO-66 metal can package. This packaging provides excellent thermal conductivity and mechanical protection, enhancing device reliability, especially in environments with elevated temperatures or mechanical stress.
What voltage ratings are important when using this transistor?
The key voltage ratings include a collector-emitter voltage of 60 V, collector-base voltage of 80 V, and emitter-base voltage of 5 V. These maximum voltages ensure safe operation within defined limits and prevent breakdown during circuit operation.







