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JAN2N5015
Product Overview
Category
The JAN2N5015 is a silicon NPN power transistor.
Use
It is commonly used in high-power amplifier and switching applications.
Characteristics
- High voltage capability
- High current capability
- Fast switching speed
Package
The JAN2N5015 is typically available in a TO-5 metal can package.
Essence
This transistor is essential for amplifying and switching high-power signals in electronic circuits.
Packaging/Quantity
It is usually packaged individually and sold in quantities suitable for small to medium-scale production.
Specifications
- Collector-Emitter Voltage: 300V
- Collector Current: 7A
- Power Dissipation: 50W
- Transition Frequency: 2MHz
- Operating Temperature: -65°C to 200°C
Detailed Pin Configuration
- Base (B)
- Emitter (E)
- Collector (C)
Functional Features
- High voltage and current handling capabilities
- Fast switching speed
- Low saturation voltage
Advantages
- Suitable for high-power applications
- Reliable performance under high voltage and current conditions
- Fast response time
Disadvantages
- Relatively large package size
- Limited frequency response compared to smaller signal transistors
Working Principles
The JAN2N5015 operates based on the principles of bipolar junction transistors, where the flow of current between the collector and emitter is controlled by the current at the base terminal.
Detailed Application Field Plans
- Power amplifiers
- Switching power supplies
- Motor control circuits
- High-voltage regulators
Detailed and Complete Alternative Models
- 2N3055
- MJ15003
- TIP31C
- MJE13005
In conclusion, the JAN2N5015 is a robust silicon NPN power transistor with high voltage and current capabilities, making it suitable for various high-power applications. Its fast switching speed and reliable performance make it a popular choice in electronic circuit design.
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10 pirs û bersivên hevpar ên têkildarî sepana JAN2N5015 di çareseriyên teknîkî de navnîş bikin
What is the JAN2N5015 transistor used for?
- The JAN2N5015 is a high-power NPN bipolar junction transistor (BJT) commonly used in power amplifier and switching applications.
What are the key specifications of the JAN2N5015 transistor?
- The JAN2N5015 transistor typically has a collector current rating of 15A, a collector-emitter voltage rating of 60V, and a power dissipation of 150W.
What are some typical applications of the JAN2N5015 transistor?
- Common applications include power amplifiers, motor control, voltage regulators, and general switching circuits.
What are the important considerations when designing with the JAN2N5015 transistor?
- It's crucial to consider heat dissipation, proper biasing, and ensuring that the maximum ratings are not exceeded to ensure reliable operation.
What are the potential alternatives to the JAN2N5015 transistor?
- Alternatives may include similar high-power NPN transistors such as the MJL21193, 2N3773, or TIP35C, depending on specific application requirements.
How do I properly mount and heatsink the JAN2N5015 transistor?
- Mount the transistor using appropriate hardware and insulating materials, and use a heatsink with adequate thermal conductivity to dissipate heat effectively.
What are the common failure modes of the JAN2N5015 transistor?
- Common failure modes include thermal runaway due to inadequate heatsinking, overvoltage or overcurrent conditions, and excessive junction temperatures.
What are the recommended operating conditions for the JAN2N5015 transistor?
- Operating within the specified temperature range, current, and voltage limits provided in the datasheet is essential for reliable performance.
How can I protect the JAN2N5015 transistor from overcurrent and overvoltage conditions?
- Implementing proper current-limiting and overvoltage protection circuits, such as fuses, current-limiting resistors, and transient voltage suppressors, can help protect the transistor.
Where can I find detailed technical information about the JAN2N5015 transistor?
- Detailed technical information, including electrical characteristics, thermal data, and package dimensions, can be found in the manufacturer's datasheet or technical documentation.