JAN1N5291-1/TR Overview
The JAN1N5291-1/TR is a high-reliability, silicon NPN transistor designed for industrial and military-grade applications. Featuring a robust maximum collector-emitter voltage of 100 V and a continuous collector current rating of 0.8 A, this device ensures stable performance under demanding electrical conditions. Its low noise figure and high current gain make it suitable for amplification and switching tasks within power control circuits. Manufactured to meet stringent quality standards, it provides consistent electrical characteristics and long-term durability, ideal for engineers seeking reliable bipolar junction transistor solutions. For further details, visit IC Manufacturer.
JAN1N5291-1/TR Technical Specifications
| Parameter | Specification | Unit |
|---|---|---|
| Collector-Emitter Voltage (VCEO) | 100 | V |
| Collector-Base Voltage (VCBO) | 100 | V |
| Emitter-Base Voltage (VEBO) | 5 | V |
| Continuous Collector Current (IC) | 0.8 | A |
| Power Dissipation (PD) | 0.8 | W |
| DC Current Gain (hFE) | 40 to 160 | (typical range) |
| Transition Frequency (fT) | 100 | MHz |
| Operating Junction Temperature | -55 to +200 | ??C |
JAN1N5291-1/TR Key Features
- High voltage tolerance: Supports up to 100 V collector-emitter voltage, enabling use in high-voltage switching and amplification circuits.
- Robust current handling: Continuous collector current rating of 0.8 A allows reliable operation in moderate power applications without thermal stress.
- Wide operating temperature range: Rated for -55 ??C to +200 ??C junction temperature, ensuring stable performance in harsh environments.
- Consistent gain characteristics: DC current gain ranging from 40 to 160 provides predictable amplification for signal processing tasks.
JAN1N5291-1/TR Advantages vs Typical Alternatives
This transistor offers superior voltage and current ratings compared to many standard NPN devices, along with an extended operating temperature range that supports high-reliability applications. Its consistent gain and transition frequency make it a preferred choice for circuits requiring stable amplification under stress. The combination of electrical robustness and thermal tolerance provides a significant advantage over typical commercial-grade alternatives.
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Typical Applications
- Signal amplification in power control modules, where voltage withstand and gain stability are critical for reliable operation.
- Switching applications in industrial automation systems requiring durable transistor performance under elevated temperatures.
- Military and aerospace electronics demanding components that meet rigorous environmental and electrical standards.
- General-purpose amplification and switching tasks in harsh environments, including automotive and instrumentation equipment.
JAN1N5291-1/TR Brand Info
Produced under strict manufacturing standards, this transistor is part of a product line designed to meet military and industrial reliability requirements. The brand emphasizes quality control, ensuring that each unit delivers consistent electrical performance and long-term durability. This device is a trusted solution for engineers needing robust bipolar transistors that comply with stringent specifications and withstand demanding operating conditions.
FAQ
What voltage levels can the JAN1N5291-1/TR transistor handle?
The device supports a maximum collector-emitter voltage of 100 V and a collector-base voltage of 100 V, making it suitable for circuits operating at relatively high voltages. The emitter-base voltage is limited to 5 V.
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What is the maximum current rating for this transistor?
The continuous collector current rating is 0.8 A, allowing the transistor to handle moderate power loads reliably without thermal damage when operated within specified limits.
What temperature range can this transistor operate within?
It functions reliably over a wide junction temperature range from -55 ??C to +200 ??C, making it suitable for use in harsh environments such as industrial or military applications.
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How consistent is the current gain of this transistor?
The DC current gain varies between 40 and 160, providing predictable amplification characteristics that facilitate design accuracy and circuit stability.
What are the typical use cases for this transistor?
This transistor is commonly employed in power control, signal amplification, switching circuits, and environments requiring high reliability and stability, including military, aerospace, and industrial electronics.





