JANSL2N5004-Transistor Overview
The JANSL2N5004 is a high-performance NPN bipolar junction transistor designed for switching and amplification applications. Featuring a robust collector-emitter voltage rating of 60 V and a collector current capacity of up to 7 A, this transistor delivers reliable performance in demanding industrial environments. Its low saturation voltage ensures efficient power handling, making it suitable for medium-power amplifiers and switching circuits. Packaged in a TO-220 form factor, it supports effective heat dissipation and straightforward PCB integration. Engineers and sourcing specialists can rely on this transistor for consistent operation in power management and control systems. For more details, visit the IC Manufacturer.
JANSL2N5004-Transistor Key Features
- High collector current capacity of 7 A allows handling of significant load currents, ensuring reliability in power switching applications.
- Collector-emitter voltage rating of 60 V supports operation in a wide range of voltage environments, suitable for industrial and consumer electronics.
- Low saturation voltage minimizes power loss and heat generation, enhancing overall circuit efficiency and thermal management.
- TO-220 package offers excellent thermal conductivity and easy mounting options for improved heat dissipation and mechanical stability.
JANSL2N5004-Transistor Technical Specifications
| Parameter | Value | Units |
|---|---|---|
| Collector-Emitter Voltage (Vce) | 60 | V |
| Collector Current (Ic) | 7 | A |
| Power Dissipation (Pd) | 75 | W |
| Gain Bandwidth Product (fT) | 8 | MHz |
| DC Current Gain (hFE) | 40 to 320 | ?C |
| Collector-Base Voltage (Vcb) | 100 | V |
| Emitter-Base Voltage (Veb) | 5 | V |
| Junction Temperature (Tj) | 150 | ??C |
JANSL2N5004-Transistor Advantages vs Typical Alternatives
This transistor offers a superior balance of high current capability and voltage tolerance compared to typical alternatives. Its low saturation voltage reduces power loss, improving circuit efficiency and thermal performance. The broad current gain range enhances design flexibility, while the standardized TO-220 package ensures easy integration and reliable heat dissipation. Together, these features make it a dependable choice for industrial switching and amplification tasks where power, efficiency, and durability are critical.
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Typical Applications
- Power switching and control circuits in industrial automation, providing reliable operation in medium-power load environments with efficient thermal management.
- Audio amplifiers requiring moderate power handling and linear amplification capabilities.
- Motor control circuits where high current switching and voltage handling are necessary for effective drive control.
- General-purpose switching in power supplies and consumer electronic devices with medium power demands.
JANSL2N5004-Transistor Brand Info
The JANSL2N5004 is a trusted component offered by IC Manufacturer, known for producing high-quality semiconductor devices designed for industrial and commercial applications. This transistor embodies the company??s commitment to reliability, performance, and manufacturability. Engineered to meet stringent standards, it supports efficient power management and switching solutions across diverse electronic systems.
FAQ
What is the maximum collector current rating of this transistor?
The transistor supports a maximum continuous collector current of 7 A, enabling it to handle substantial load currents in power switching and amplification applications.
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Which package type does this transistor use, and why is it important?
This device is housed in a TO-220 package, which is significant for its excellent thermal conductivity and ease of mounting, allowing effective heat dissipation and secure PCB integration.
What voltage levels can this transistor safely operate at?
The maximum collector-emitter voltage rating is 60 V, with a collector-base voltage up to 100 V and an emitter-base voltage of 5 V, making it suitable for moderate voltage industrial and consumer electronics circuits.
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How does the low saturation voltage benefit circuit performance?
A low saturation voltage reduces the power lost as heat during switching, improving overall energy efficiency and minimizing thermal stress on the transistor and surrounding components.
Is this transistor suitable for high-frequency applications?
With a gain bandwidth product of approximately 8 MHz, this transistor is suitable for moderate frequency applications but may not be optimal for very high-frequency RF circuits.






