JANTXV2N6300-Darlington Overview
The JANTXV2N6300-Darlington is a high-voltage, high-gain NPN Darlington transistor designed for robust switching and amplification applications. Its rugged construction supports collector-emitter voltages up to 300V, enabling reliable performance in industrial and power control circuits. Featuring a high DC current gain, this device ensures efficient signal amplification with minimal input current, enhancing overall circuit sensitivity. The transistor is housed in a TO-220 package, facilitating effective thermal management and easy integration into various electronic assemblies. Engineers and sourcing specialists will find this component valuable for demanding applications requiring durable and precise switching solutions. For detailed technical data and sourcing, visit IC Manufacturer.
JANTXV2N6300-Darlington Key Features
- High collector-emitter voltage (VCEO) of 300V: Enables operation in high-voltage circuits, providing design flexibility in power electronics.
- High DC current gain (hFE): Offers superior amplification, reducing the required base drive current and improving efficiency.
- TO-220 package: Facilitates effective heat dissipation and easy mounting, enhancing reliability under high power conditions.
- Collector current rating of 4A: Supports high-load switching applications, ensuring robust performance in demanding environments.
JANTXV2N6300-Darlington Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Collector-Emitter Voltage (VCEO) | 300 | V |
| Collector-Base Voltage (VCBO) | 400 | V |
| Emitter-Base Voltage (VEBO) | 5 | V |
| Collector Current (IC) | 4 | A |
| Power Dissipation (PD) | 115 | W |
| DC Current Gain (hFE) | 10000 (min) | ?? |
| Transition Frequency (fT) | ?? | MHz |
| Package | TO-220 | ?? |
JANTXV2N6300-Darlington Advantages vs Typical Alternatives
This Darlington transistor offers a significantly higher voltage rating and current gain compared to standard bipolar junction transistors, allowing for precise control in high-voltage, high-current applications. Its enhanced gain reduces base drive requirements, improving circuit efficiency and reducing power consumption. The rugged TO-220 package ensures superior thermal management, providing greater reliability and longevity under industrial operating conditions.
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Typical Applications
- Switching regulators and power supply circuits where high voltage and high current gain are essential for efficient power control and amplification.
- Motor control systems requiring robust switching devices to handle inductive loads with minimal signal distortion.
- Relay drivers and solid-state switching applications benefiting from the high gain and voltage handling capability of the device.
- Industrial automation circuits where durable and reliable transistor performance is critical for operational stability.
JANTXV2N6300-Darlington Brand Info
The JANTXV2N6300-Darlington is a product designed and qualified under the JANTX military standard, ensuring high reliability and performance consistency in demanding environments. Manufactured for industrial and defense applications, this transistor meets strict quality and durability standards. Its production adheres to rigorous testing protocols that guarantee stable operation under extended thermal and electrical stress. This component is trusted by engineers for critical applications requiring fail-safe switching and amplification solutions.
FAQ
What is the maximum collector current rating of this Darlington transistor?
The device supports a maximum continuous collector current of 4 amperes, making it suitable for high-load switching and amplification tasks in various electronic circuits.
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Can this transistor handle high-voltage applications safely?
Yes, the transistor is designed with a maximum collector-emitter voltage rating of 300 volts, allowing it to operate safely in high-voltage power control and switching systems.
What type of package does the transistor come in, and how does it affect performance?
It is housed in a TO-220 package, which facilitates efficient heat dissipation and straightforward mounting, enhancing reliability and thermal management in power applications.
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How does the high DC current gain benefit circuit design?
The high current gain reduces the base drive current requirements, improving overall circuit efficiency by minimizing power loss in the input stage of the transistor.
Is this transistor suitable for industrial automation use?
Yes, its robust voltage and current ratings combined with durable packaging make it well-suited for industrial automation systems requiring reliable switching and amplification under demanding conditions.






