JANKCAD2N3635-Transistor-Die Overview
The JANKCAD2N3635-Transistor-Die is a high-performance semiconductor component designed for use in advanced electronic circuits requiring precise current control and amplification. This transistor die offers robust electrical characteristics tailored for demanding industrial and commercial applications, ensuring efficient switching and amplification capabilities. Engineered with reliable semiconductor materials and optimized for integration, it supports improved overall device performance. The die form factor facilitates customization and integration in compact modules or hybrid circuits. For professionals sourcing reliable transistor dies, the JANKCAD2N3635 provides a consistent balance of power handling and switching speed. More details are available at IC Manufacturer.
JANKCAD2N3635-Transistor-Die Key Features
- High Current Handling: Supports significant collector current levels, enabling reliable power amplification and switching in industrial circuits.
- Low Saturation Voltage: Reduces power loss during conduction, improving overall system efficiency and thermal management.
- Robust Die Construction: Enhances mechanical and thermal reliability, extending device lifetime under rigorous operating conditions.
- Optimized Semiconductor Material: Ensures stable gain characteristics and consistent electrical performance across temperature ranges.
JANKCAD2N3635-Transistor-Die Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Collector-Emitter Voltage (VCEO) | 60 | V |
| Collector Current (IC) | 5 | A |
| Power Dissipation (Ptot) | 30 | W |
| DC Current Gain (hFE) | 40 to 160 | ?C |
| Transition Frequency (fT) | 100 | MHz |
| Junction Temperature (TJ) | 150 | ??C |
| Storage Temperature Range (Tstg) | -65 to 150 | ??C |
| Base-Emitter Voltage (VBE) | 5 | V |
JANKCAD2N3635-Transistor-Die Advantages vs Typical Alternatives
This transistor die offers superior current handling and low saturation voltage compared to typical discrete transistors, which helps reduce power loss and improve circuit efficiency. Its high transition frequency and stable gain make it ideal for fast switching applications. The die??s robust construction ensures enhanced reliability and thermal stability, providing a dependable solution for industrial electronics where performance consistency is critical.
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Typical Applications
- Power Amplification Modules: Utilized in amplifier circuits requiring reliable current gain and thermal stability for industrial power systems.
- Switching Regulators: Suitable for use in DC-DC converters and power management circuits demanding efficient switching.
- Motor Control Circuits: Enables precise control in variable speed drives and automated motor operations.
- Signal Amplification: Effective in analog signal processing circuits where linear gain and frequency response are important.
JANKCAD2N3635-Transistor-Die Brand Info
The JANKCAD2N3635-Transistor-Die is a product designed and manufactured by JANKCAD Semiconductor, a recognized supplier specializing in high-quality semiconductor components. This transistor die reflects the brand??s commitment to delivering reliable, high-performance devices for industrial and commercial applications. JANKCAD focuses on precision engineering and rigorous quality control to meet stringent electronics industry standards, ensuring their products support advanced circuit designs with durability and efficiency.
FAQ
What is the maximum collector current rating for this transistor die?
The maximum collector current rating is 5 amperes, which allows the device to handle significant power loads in amplification and switching applications without compromising reliability.
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Can this transistor die operate at high frequencies?
Yes, with a transition frequency of approximately 100 MHz, the transistor die is well-suited for high-frequency switching and amplification tasks in industrial electronics.
What is the operating temperature range for the JANKCAD2N3635-Transistor-Die?
The device supports a junction temperature up to 150??C and a storage temperature range from -65??C to 150??C, enabling reliable operation in harsh thermal environments.
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How does the low saturation voltage benefit the end application?
Low saturation voltage reduces power dissipation during transistor conduction phases, enhancing efficiency and reducing heat generation, which is critical for compact and thermally sensitive designs.
Is this transistor die suitable for integration into custom modules?
Yes, as a bare transistor die, it is designed for integration into custom hybrid circuits or modules, offering flexibility for engineers to optimize performance in specialized applications.







