JANHCA2N3634-Transistor-Die Overview
The JANHCA2N3634-Transistor-Die is a high-performance semiconductor component designed for precision amplification and switching applications. Featuring robust electrical characteristics and a compact die structure, it supports efficient integration into various industrial circuits. This transistor die offers reliable current handling and voltage ratings that meet stringent industry requirements. Engineered for durability and consistent operation, it is ideal for engineers and sourcing specialists seeking a dependable transistor die solution. For more detailed procurement and technical assistance, visit IC Manufacturer.
JANHCA2N3634-Transistor-Die Key Features
- High current capacity: Supports collector current up to 15A, enabling robust power handling in demanding circuits.
- Superior voltage rating: With a collector-emitter voltage maximum of 140V, it ensures reliable operation under high voltage conditions.
- Low saturation voltage: Enhances efficiency by reducing power loss during conduction, critical for power-sensitive applications.
- Compact die size: Facilitates integration into multi-transistor modules or hybrid circuits, saving valuable PCB real estate.
JANHCA2N3634-Transistor-Die Technical Specifications
| Parameter | Specification |
|---|---|
| Transistor Type | NPN Bipolar Junction Transistor (BJT) |
| Collector-Emitter Voltage (VCEO) | 140 V |
| Collector-Base Voltage (VCBO) | 140 V |
| Emitter-Base Voltage (VEBO) | 5 V |
| Collector Current (IC) | 15 A (continuous) |
| Power Dissipation (Ptot) | 160 W (maximum) |
| DC Current Gain (hFE) | 40 to 320 (varies with operating conditions) |
| Transition Frequency (fT) | ?? 3 MHz |
| Operating Junction Temperature (TJ) | -65??C to +200??C |
JANHCA2N3634-Transistor-Die Advantages vs Typical Alternatives
This transistor die offers a balanced combination of high voltage capability and substantial current handling that surpasses many standard transistor dies. Its low saturation voltage reduces conduction losses, improving overall circuit efficiency. Enhanced thermal tolerance ensures long-term reliability in harsh industrial environments. Compared to typical alternatives, it delivers superior integration flexibility and electrical performance, making it an excellent choice for power amplification and switching in demanding applications.
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Typical Applications
- Power amplification in industrial control systems, where reliable high current switching is essential for motor drives and actuator control.
- Switching devices in power supply units, contributing to efficient energy management and voltage regulation.
- Signal amplification in audio equipment requiring consistent gain and low distortion under varied load conditions.
- General-purpose transistor die for hybrid circuit manufacturing and semiconductor module assembly.
JANHCA2N3634-Transistor-Die Brand Info
The JANHCA2N3634-Transistor-Die is a product designed and manufactured by a leading semiconductor provider known for precision-engineered discrete components. This transistor die is part of a comprehensive portfolio aimed at industrial and commercial electronics markets. It embodies the brand??s commitment to quality, performance, and reliability, supporting engineers and designers with proven technology for critical applications.
FAQ
What is the maximum collector current rating for this transistor die?
The transistor die supports a maximum continuous collector current of 15 amperes, which makes it suitable for high-power applications requiring robust current handling capabilities.
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Can this transistor die handle high voltage environments?
Yes, it has a maximum collector-emitter voltage rating of 140 volts, allowing it to operate safely in circuits with relatively high voltage stresses without breakdown.
What temperature range is this transistor die rated for?
The device is rated for junction temperatures from -65??C to +200??C, providing excellent thermal stability and reliability in a wide range of operating environments.
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Is the transistor die suitable for audio amplification applications?
Yes, with its wide gain range and low distortion characteristics, it can be effectively used in audio amplifier circuits requiring consistent performance and signal integrity.
How does the low saturation voltage benefit circuit design?
Lower saturation voltage reduces power dissipation during the transistor??s on-state, enhancing overall energy efficiency and minimizing heat generation within the circuit.







