MKC2N5667-Transistor-Die Overview
The MKC2N5667-Transistor-Die is a high-performance semiconductor component designed for precise switching and amplification in electronic circuits. This transistor die features robust electrical characteristics suitable for integration into compact systems requiring reliable signal control and power management. Optimized for industrial and commercial applications, it offers consistent performance under varying environmental conditions. Sourced from a trusted IC Manufacturer, this die is engineered to meet stringent quality standards, ensuring dependable operation in demanding electronic assemblies.
MKC2N5667-Transistor-Die Key Features
- High current handling capability: Enables effective control of power loads, improving circuit efficiency and reliability.
- Low saturation voltage: Reduces heat generation and power loss, optimizing energy consumption in designs.
- Compact die size: Facilitates integration into space-constrained applications without compromising performance.
- Excellent switching speed: Supports rapid signal transitions, beneficial for high-frequency and timing-sensitive circuits.
MKC2N5667-Transistor-Die Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Collector-Emitter Voltage (Vce) | 60 | V |
| Collector Current (Ic) | 5 | A |
| Power Dissipation (Pd) | 1.5 | W |
| Transition Frequency (fT) | 100 | MHz |
| Gain Bandwidth Product (hFE) | 100 | ?C |
| Junction Temperature (Tj) | 150 | ??C |
| Saturation Voltage (Vce(sat)) | 0.3 | V |
| Base-Emitter Voltage (Vbe) | 0.7 | V |
MKC2N5667-Transistor-Die Advantages vs Typical Alternatives
This transistor die offers superior switching speed and lower saturation voltage compared to typical alternatives, enhancing circuit efficiency and thermal management. Its compact footprint allows for better integration in space-limited designs while maintaining high current handling and power dissipation capabilities. These attributes deliver improved reliability and energy savings in industrial and commercial electronic applications.
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Typical Applications
- Power amplification in signal processing circuits requiring stable gain and fast switching performance, ideal for industrial control systems.
- Switching elements in power management modules for efficient energy control and load regulation.
- Integration in compact electronic devices where space constraints demand reduced die size without sacrificing electrical performance.
- Use in frequency modulation and timing circuits benefiting from the device??s high transition frequency and low voltage drop.
MKC2N5667-Transistor-Die Brand Info
The MKC2N5667-Transistor-Die is manufactured by a leading semiconductor producer recognized for delivering high-quality discrete components tailored for industrial electronics. This product embodies the brand??s commitment to precision engineering, reliability, and innovative design, ensuring consistent performance under rigorous operational demands. The brand supports extensive quality assurance processes, making this transistor die a dependable choice for engineers and sourcing specialists.
FAQ
What is the maximum collector current rating for this transistor die?
The maximum collector current rating is 5 amperes, allowing it to handle moderate power loads efficiently in various electronic applications without risk of damage or performance degradation.
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Can this transistor die operate reliably at high temperatures?
Yes, the device supports a maximum junction temperature of 150??C, ensuring stable operation and reliability even in elevated temperature environments commonly found in industrial electronics.
What is the significance of the low saturation voltage in this transistor die?
A low saturation voltage of approximately 0.3 volts reduces power loss and heat generation during conduction, which improves overall energy efficiency and thermal management in circuit designs.
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Is the MKC2N5667 suitable for high-frequency applications?
Yes, with a transition frequency of 100 MHz, this transistor die is suitable for high-frequency switching and amplification tasks, supporting applications requiring rapid signal changes.
How does the compact die size benefit system integration?
The small footprint facilitates easy incorporation into densely packed circuit boards, enabling designers to optimize space without compromising on electrical performance or reliability.






