JANTXV2N6052-Darlington Overview
The JANTXV2N6052-Darlington is a high-voltage, high-current NPN Darlington transistor designed for rugged industrial applications requiring reliable switching and amplification. This device supports a collector-emitter voltage (Vce) of 100 V and a continuous collector current (Ic) up to 4 A, making it suitable for demanding power control tasks. With a gain bandwidth product optimized for switching efficiency and a TO-3 metal case package for enhanced thermal dissipation, it ensures durability under harsh operating conditions. Engineered for military and aerospace-grade reliability, this transistor offers stable performance with built-in avalanche energy rating for transient protection. Available via IC Manufacturer, it is an ideal choice for engineers and sourcing specialists focused on robust power transistor solutions.
JANTXV2N6052-Darlington Technical Specifications
| Parameter | Specification |
|---|---|
| Collector-Emitter Voltage (Vce) | 100 V |
| Collector Current (Ic) | 4 A (continuous) |
| Gain Bandwidth Product (fT) | ?? 10 MHz |
| DC Current Gain (hFE) | Minimum 1000 at Ic = 1 A |
| Power Dissipation (Pd) | 115 W (case limited) |
| Saturation Voltage (Vce(sat)) | Typically 2.0 V at Ic = 4 A |
| Transition Frequency | ?? 10 MHz |
| Operating Temperature Range | -65 ??C to +200 ??C |
| Package | TO-3 Metal Can |
| Avalanche Energy Rating (EAS) | 100 mJ |
JANTXV2N6052-Darlington Key Features
- High Voltage and Current Handling: Supports up to 100 V and 4 A continuous current, enabling robust operation in power switching and amplification circuits.
- High DC Current Gain: Minimum gain of 1000 facilitates efficient control with low base current, improving overall circuit efficiency.
- Rugged TO-3 Package: The metal can design offers superior thermal dissipation and mechanical strength, ensuring reliability under demanding thermal and mechanical stress.
- Avalanche Energy Capability: Built-in avalanche energy rating of 100 mJ protects the device from transient voltage spikes, enhancing durability in inductive load switching.
Typical Applications
- Industrial motor control circuits where high current switching and thermal robustness are critical for reliable operation and longevity.
- Power amplifier stages in audio and RF equipment requiring high gain and linearity within a ruggedized package.
- High-voltage switching in relay driver circuits for automotive and aerospace control systems.
- General purpose switching in power supplies and inverters that demand consistent performance at elevated temperatures.
JANTXV2N6052-Darlington Advantages vs Typical Alternatives
This Darlington transistor offers superior current gain and voltage ratings compared to typical bipolar junction transistors, providing engineers with enhanced sensitivity and reduced drive requirements. Its TO-3 package ensures better heat dissipation and mechanical durability than plastic-encapsulated alternatives. Additionally, the integrated avalanche energy rating improves reliability in transient conditions, making it a preferred choice for industrial and military-grade applications where accuracy, power handling, and long-term stability are essential.
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JANTXV2N6052-Darlington Brand Info
The JANTXV2N6052 is part of the JAN (Joint Army-Navy) series of transistors, produced under strict military standards for quality and reliability. These components are manufactured to meet or exceed MIL-STD-750 test methods, ensuring rugged performance in mission-critical environments. Typically offered by established semiconductor manufacturers specializing in military and aerospace-grade discrete devices, this transistor adheres to stringent screening and burn-in processes that guarantee durability under extreme conditions. Its legacy and proven design make it a trusted component among engineers deploying high-reliability power switching solutions.
FAQ
What is the maximum collector current rating for the JANTXV2N6052-Darlington?
The maximum continuous collector current for this device is 4 A. It is designed to safely handle this current level under specified thermal conditions, making it suitable for medium to high
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