JANKCAD2N3637-Transistor-Die Overview
The JANKCAD2N3637-Transistor-Die is a high-performance semiconductor component designed for precision amplification and switching applications. This transistor die exhibits optimized electrical characteristics, including low saturation voltage and high current gain, enabling efficient power management and signal control in compact electronic circuits. Its robust construction ensures stable operation under various thermal and electrical conditions, making it ideal for integration into industrial and consumer electronic devices. Sourced from a reputable supplier, the device supports enhanced reliability and scalability for demanding engineering applications. For detailed procurement and technical support, visit IC Manufacturer.
JANKCAD2N3637-Transistor-Die Key Features
- High Current Gain: Provides efficient amplification reducing power loss and improving circuit sensitivity.
- Low Saturation Voltage: Minimizes energy dissipation during switching, enhancing overall system efficiency.
- Compact Die Size: Enables seamless integration into multi-chip modules and high-density assemblies.
- Thermal Stability: Maintains consistent performance across a broad temperature range, ensuring reliability in industrial environments.
JANKCAD2N3637-Transistor-Die Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Type | NPN Bipolar Junction Transistor | ?? |
| Collector-Emitter Voltage (VCEO) | 45 | V |
| Collector Current (IC) | 1.5 | A |
| Power Dissipation (PD) | 20 | W |
| DC Current Gain (hFE) | 100?C300 | ?? |
| Transition Frequency (fT) | 100 | MHz |
| Saturation Voltage (VCE(sat)) | 0.3 | V |
| Operating Junction Temperature | -55 to +150 | ??C |
JANKCAD2N3637-Transistor-Die Advantages vs Typical Alternatives
This transistor die offers superior current gain and reduced saturation voltage compared to standard alternatives, resulting in enhanced amplification efficiency and lower power losses. Its compact die design and broad thermal tolerance provide improved integration flexibility and operational reliability, especially in high-density industrial electronics where space and thermal management are critical. These advantages make it a preferred choice for engineers seeking optimized performance and longevity.
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Typical Applications
- Power Amplification: Suitable for use in audio and signal amplifiers requiring stable gain and efficient power handling over a wide frequency range.
- Switching Circuits: Ideal for high-speed switching in industrial control systems and automation equipment.
- Voltage Regulation: Employed in linear regulators to maintain consistent voltage levels in power management modules.
- Signal Processing: Utilized in analog circuits for signal conditioning and modulation tasks.
JANKCAD2N3637-Transistor-Die Brand Info
The JANKCAD2N3637-Transistor-Die is produced under stringent quality controls by a recognized semiconductor manufacturer specializing in discrete transistor dies. The product reflects the brand??s commitment to precision engineering, reliability, and scalability for demanding industrial and commercial electronics markets. Their focus on robust design and thorough testing ensures that each die meets high standards for performance consistency and durability, supporting advanced electronic system development.
FAQ
What is the maximum collector current rating for this transistor die?
The maximum collector current is rated at 1.5 amps. This rating ensures the device can handle moderate power loads typical in amplification and switching applications without degradation.
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Can this transistor die operate at high frequencies?
Yes, the device supports a transition frequency up to 100 MHz, making it suitable for many high-speed analog and digital circuits requiring fast switching and signal amplification.
What temperature range does the transistor die support?
The operating junction temperature ranges from -55??C to +150??C, allowing reliable function in harsh thermal environments commonly encountered in industrial electronics.
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Is the transistor die compatible with multi-chip module integration?
Its compact die size and robust electrical characteristics make it well-suited for integration within multi-chip modules and hybrid circuits, facilitating space-efficient designs.
How does the low saturation voltage benefit circuit performance?
A low saturation voltage reduces power dissipation during switching operations, improving overall energy efficiency and minimizing thermal stress on the circuit components.







