JANKCAM2N3635-Transistor-Die Overview
The JANKCAM2N3635 transistor die is a high-performance semiconductor component designed for precise switching and amplification within electronic circuits. Manufactured to exacting standards, this transistor die delivers reliable electrical characteristics crucial for industrial and commercial applications. It offers excellent current handling capabilities and thermal stability, making it suitable for integration in power management, signal processing, and control systems. Sourced from a trusted IC Manufacturer, this transistor die supports enhanced device miniaturization and system efficiency by enabling optimized circuit designs.
JANKCAM2N3635-Transistor-Die Key Features
- High current capacity: Supports up to 25A continuous collector current, enabling robust power switching with minimal losses.
- Low saturation voltage: Ensures efficient conduction with reduced heat dissipation, improving overall energy efficiency.
- Thermal stability: Designed to operate reliably at junction temperatures up to 150??C, enhancing device longevity in demanding environments.
- Compact die size: Facilitates integration into high-density modules, supporting compact and lightweight electronics.
JANKCAM2N3635-Transistor-Die Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Collector Current (Ic) | 25 | A |
| Collector-Emitter Voltage (Vce) | 60 | V |
| Base-Emitter Voltage (Vbe) | 5 | V |
| Power Dissipation (Pd) | 100 | W |
| Transition Frequency (ft) | 40 | MHz |
| Junction Temperature (Tj) | 150 | ??C |
| Saturation Voltage (Vce(sat)) | 1.5 | V |
| Gain Bandwidth Product | 40 | MHz |
JANKCAM2N3635-Transistor-Die Advantages vs Typical Alternatives
This transistor die delivers superior current handling and thermal performance compared to typical alternatives, enabling efficient power management in demanding applications. Its low saturation voltage reduces energy loss, while the compact die size allows for seamless integration into dense circuit layouts. These advantages combine to offer enhanced reliability, improved system efficiency, and long-term operational stability.
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Typical Applications
- Power regulation circuits requiring high current switching and thermal endurance, such as DC-DC converters in industrial automation systems.
- Signal amplification stages in audio and RF communication equipment.
- Motor control applications where robust switching and thermal management are crucial.
- General-purpose switching tasks in power supplies and embedded control units.
JANKCAM2N3635-Transistor-Die Brand Info
The JANKCAM2N3635 transistor die is developed by a reputable semiconductor manufacturer known for precision-engineered components tailored for industrial and commercial electronics. This product reflects the brand??s commitment to quality, performance, and reliability, ensuring compatibility with rigorous engineering standards and diverse application demands. It is part of a broad portfolio aimed at supporting advanced electronic system designs worldwide.
FAQ
What is the maximum collector current rating for this transistor die?
The maximum continuous collector current rating for this transistor die is 25 amperes, allowing it to handle substantial current loads in power switching and amplification applications without compromising performance.
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What voltage levels can the JANKCAM2N3635 transistor die withstand?
This transistor die supports a collector-emitter voltage up to 60 volts and a base-emitter voltage of 5 volts, making it suitable for medium-voltage circuit designs requiring reliable switching elements.
How does the transistor die perform under high-temperature conditions?
It is designed to operate reliably with a maximum junction temperature of 150??C, ensuring stable performance and durability in environments with elevated thermal stress.
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Can this transistor die be integrated into compact electronic modules?
Yes, the compact die size facilitates integration into high-density circuit boards and modules, enabling designers to create smaller, lighter, and more efficient electronic systems.
What are the key benefits of its low saturation voltage characteristic?
The low saturation voltage reduces conduction losses and heat generation during operation, which enhances the overall efficiency and longevity of the electronic device in which the transistor is used.







