JAN2N706-Transistor Overview
The JAN2N706 transistor is a high-performance silicon NPN bipolar junction transistor designed for switching and amplification tasks in industrial and military-grade applications. Known for its robust construction and reliability, it offers dependable operation in demanding environments with a maximum collector-emitter voltage of 60V and collector current up to 1.5A. Its low noise and high gain characteristics make it suitable for precision analog circuits and power control applications. This transistor is widely supported by IC Manufacturer trusted for consistent quality and compliance with stringent standards.
JAN2N706-Transistor Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | NPN Bipolar Junction |
| Collector-Emitter Voltage (VCEO) | 60 V |
| Collector Current (IC) | 1.5 A |
| Gain Bandwidth Product (fT) | 100 MHz (typical) |
| DC Current Gain (hFE) | 40 to 160 (varies by test conditions) |
| Power Dissipation (PD) | 30 W (max) |
| Package Type | TO-18 Metal Can |
| Transition Frequency | 100 MHz (typical) |
| Operating Temperature Range | -65??C to +200??C |
JAN2N706-Transistor Key Features
- High Voltage and Current Capability: Supports up to 60V collector-emitter voltage and 1.5A collector current, enabling robust switching and amplification in power circuits.
- Wide Operating Temperature Range: Functions reliably from -65??C to +200??C, suitable for harsh industrial and military environments.
- Low Noise Performance: Ideal for low-level signal amplification, enhancing signal integrity in sensitive analog applications.
- Metal Can Package (TO-18): Provides excellent thermal conduction and mechanical durability, improving reliability and heat dissipation.
Typical Applications
- Switching regulator circuits requiring reliable high voltage and current handling capabilities for power management tasks.
- Analog signal amplification in audio and instrumentation systems where low noise and stable gain are critical.
- Military and aerospace electronics demanding rugged components that maintain performance under extreme temperature conditions.
- Industrial control systems where high reliability and robustness ensure long-term operation in harsh environments.
JAN2N706-Transistor Advantages vs Typical Alternatives
This transistor provides superior reliability and a wider operating temperature range compared to standard commercial transistors, making it ideal for mission-critical applications. Its robust metal can package offers enhanced thermal performance and mechanical strength, while its high gain and low noise characteristics deliver precise signal amplification. These advantages make it a preferred choice over typical plastic-encapsulated alternatives in demanding industrial and military settings.
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JAN2N706-Transistor Brand Info
The JAN2N706 is part of the JAN (Joint Army-Navy) series, historically produced to meet stringent military standards for performance and reliability. While multiple manufacturers have produced variants under the JAN designation, the device generally adheres to MIL-STD-750 testing protocols ensuring quality and parameter consistency. This transistor is widely sourced through reputed semiconductor suppliers specializing in military-grade components, reflecting its legacy of durability and precision in challenging operational environments.
FAQ
What is the maximum collector current of the JAN2N706 transistor?
The maximum collector current rating for this transistor is 1.5 amperes, allowing it to handle substantial current loads typical in power switching and amplification applications.
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What package type does the JAN2N706 use, and why is it important?
This transistor is housed in a TO-18 metal can package, which offers superior thermal conductivity and mechanical robustness compared to plastic packages. This enhances heat dissipation and reliability, crucial for high-power or high-temperature operations.
Can the JAN2N706 operate in extreme temperature environments?
Yes, it is rated to operate over a wide temperature range from -65??C to +200??C. This makes it suitable for military and industrial applications where devices must maintain performance under harsh thermal conditions.







