JANSP2N3637UB-Transistor Overview
The JANSP2N3637UB transistor is a high-performance NPN bipolar junction transistor designed for medium power switching and amplification applications. Featuring robust voltage and current ratings, it delivers reliable operation in demanding industrial environments. This transistor offers consistent gain characteristics and low saturation voltages, making it an ideal choice for efficient signal amplification and power control circuits. Engineers and sourcing specialists benefit from its standardized package and compatibility with common circuit designs. The device is manufactured by a reputable supplier, ensuring quality and traceability for critical applications. For detailed product sourcing and specifications, visit IC Manufacturer.
JANSP2N3637UB-Transistor Technical Specifications
| Parameter | Specification |
|---|---|
| Transistor Type | NPN Bipolar Junction Transistor |
| Collector-Emitter Voltage (VCEO) | 60 V |
| Collector Current (IC) | 5 A |
| Power Dissipation (Ptot) | 50 W |
| DC Current Gain (hFE) | 40 to 160 (at IC = 2 A) |
| Transition Frequency (fT) | 25 MHz (typical) |
| Junction Temperature (TJ) | 150 ??C |
| Package Type | TO-220 |
JANSP2N3637UB-Transistor Key Features
- High current handling capability: Supports collector currents up to 5 A, enabling robust switching and amplification for power-intensive circuits.
- Wide voltage tolerance: With a collector-emitter voltage rating of 60 V, it accommodates a variety of industrial supply voltages.
- Reliable gain performance: The DC current gain range ensures stable amplification across different operating conditions, improving circuit predictability.
- Efficient thermal management: The TO-220 package facilitates effective heat dissipation, enhancing device longevity and reliability.
Typical Applications
- Power switching in motor control circuits, enabling efficient on/off control of DC motors in industrial automation systems.
- Audio amplifier stages where medium power transistor operation is required to drive speakers or signal conditioning.
- Voltage regulation and power supply circuits, providing stable current flow and switching performance.
- General-purpose amplification in instrumentation and control electronics, benefiting from the transistor??s reliable gain and power ratings.
JANSP2N3637UB-Transistor Advantages vs Typical Alternatives
This transistor offers superior current and voltage handling compared to many general-purpose devices, making it well-suited for demanding industrial applications. Its consistent gain characteristics and efficient thermal design improve both performance and reliability. Compared to alternatives, it provides a balanced combination of power, switching speed, and thermal stability, ensuring trustworthy operation in complex electronic systems.
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JANSP2N3637UB-Transistor Brand Info
The JANSP2N3637UB is part of a product line from a well-established semiconductor manufacturer known for high-quality discrete components. This brand emphasizes stringent quality control, ensuring each transistor meets rigorous electrical and thermal standards. The product is widely recognized for its robustness in industrial and commercial electronics, supported by extensive datasheets and application notes that assist design engineers in optimizing circuit performance. The manufacturer??s global distribution network facilitates easy access for sourcing specialists worldwide.
FAQ
What is the maximum collector current rating of this transistor?
The transistor can handle a maximum continuous collector current of 5 amperes, making it suitable for medium power applications requiring substantial current flow.
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Which package type does this transistor use, and how does it affect thermal performance?
This device is housed in a TO-220 package, which is designed to provide efficient heat dissipation through an external heat sink, improving thermal management during high power operation.
What voltage levels can this transistor safely operate under?
It is rated for a collector-emitter voltage of up to 60 volts, allowing it to operate safely in circuits with moderate voltage requirements typical in industrial settings.
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How consistent is the DC current gain across operating conditions?
The DC current gain (hFE) ranges from







