JANSM2N2369AUB-Transistor NPN Amplifier Transistor in TO-18 Metal Can Package

  • This transistor amplifies electrical signals, enabling efficient switching and control in circuits.
  • It offers high gain, improving signal strength and overall circuit performance.
  • The compact SOT-23 package reduces board space, allowing for dense circuit designs.
  • Ideal for low-power amplification tasks in communication devices or sensor interfaces.
  • Manufactured under standardized processes to ensure consistent reliability and stable operation.
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JANSM2N2369AUB-Transistor Overview

The JANSM2N2369AUB-Transistor is a high-performance NPN bipolar junction transistor designed for general-purpose amplification and switching applications. Known for its robust electrical characteristics and low noise figure, it excels in medium power stages and driver circuits. Its complementary combination of gain and switching speed makes it suitable for industrial and commercial electronics. Engineered with reliable junctions and optimized for linear and switching operations, this transistor delivers consistent performance in demanding environments. For sourcing and detailed technical support, refer to IC Manufacturer.

JANSM2N2369AUB-Transistor Technical Specifications

ParameterSpecification
TypeNPN Bipolar Junction Transistor
Collector-Emitter Voltage (VCEO)60 V
Collector-Base Voltage (VCBO)80 V
Emitter-Base Voltage (VEBO)5 V
Collector Current (IC)0.8 A (max)
Power Dissipation (Ptot)0.8 W
DC Current Gain (hFE)100 to 300
Transition Frequency (fT)100 MHz (typical)
Package TypeTO-92 (AUB variant)
Operating Temperature Range-55??C to +150??C

JANSM2N2369AUB-Transistor Key Features

  • High Voltage Tolerance: Supports up to 60 V collector-emitter voltage, enabling reliable operation in moderate voltage circuits.
  • Wide Current Handling Capability: With a maximum collector current of 0.8 A, it suits medium power amplification and switching tasks.
  • Low Noise Performance: Ideal for low-level signal amplification, improving signal integrity in sensitive electronic applications.
  • Fast Transition Frequency: Typical 100 MHz cutoff frequency supports high-speed switching and RF applications.
  • Robust TO-92 Package: The AUB package ensures ease of PCB integration and reliable thermal management in compact designs.
  • Wide Operating Temperature Range: Suitable for industrial environments, from -55??C to +150??C, ensuring stable performance under harsh conditions.

Typical Applications

  • Signal amplification in audio and RF circuits where low noise and moderate gain are required for clear output.
  • Switching elements in power management circuits, enabling control of loads up to 0.8 A efficiently.
  • Driver stages in relay and motor control circuits, benefiting from its fast switching speed and voltage tolerance.
  • General-purpose amplification and switching roles in measurement instrumentation and industrial control systems.

JANSM2N2369AUB-Transistor Advantages vs Typical Alternatives

This transistor offers a balanced combination of voltage tolerance, current capacity, and gain that outperforms many generic low-power transistors. Its low noise figure and high transition frequency make it advantageous for sensitive signal amplification compared to standard switching transistors. The robust TO-92 AUB packaging and extended temperature range enhance reliability and integration flexibility, making it a dependable choice in industrial-grade applications.

JANSM2N2369AUB-Transistor Brand Info

The JANSM2N2369AUB is produced by a reputable semiconductor manufacturer specializing in discrete components tailored for industrial and commercial use. This transistor variant represents a military-grade or enhanced-reliability version of the classic 2N2369 transistor family, often subjected to stringent quality and screening processes to meet demanding environmental and performance standards. Its brand lineage is associated with consistent quality, making it trusted by engineers and sourcing specialists involved in robust electronics design and manufacturing.

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