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JAN2N1016C
Product Overview
- Category: Transistor
- Use: Amplification and switching in electronic circuits
- Characteristics: High voltage, high current, low frequency
- Package: TO-5 metal can package
- Essence: NPN silicon transistor
- Packaging/Quantity: Typically sold individually or in small quantities
Specifications
- Maximum Collector-Emitter Voltage: 60V
- Maximum Collector-Base Voltage: 80V
- Maximum Emitter-Base Voltage: 7V
- Collector Current - Continuous: 1A
- Power Dissipation: 800mW
- Transition Frequency: 1MHz
- Operating Temperature: -65°C to 200°C
Detailed Pin Configuration
The JAN2N1016C transistor has three pins:
1. Collector (C): Connects to the positive supply in a circuit.
2. Base (B): Controls the flow of current between the collector and emitter.
3. Emitter (E): Connects to the ground or negative supply in a circuit.
Functional Features
- High voltage capability
- Low leakage current
- Good amplification characteristics
- Suitable for low-frequency applications
Advantages and Disadvantages
Advantages
- High voltage and current ratings
- Low leakage current
- Reliable performance in low-frequency applications
Disadvantages
- Limited frequency response
- Relatively large package size
Working Principles
The JAN2N1016C operates as a bipolar junction transistor (BJT). When a small current flows into the base, it controls a larger current flowing between the collector and emitter, allowing for amplification or switching of signals.
Detailed Application Field Plans
The JAN2N1016C is commonly used in audio amplifiers, power supplies, and general-purpose switching circuits due to its high voltage and current capabilities.
Detailed and Complete Alternative Models
- 2N3904: Lower voltage and current ratings, suitable for low-power applications
- 2N3055: Higher power dissipation, suitable for higher current applications
- 2N2222: General-purpose NPN transistor with lower voltage and current ratings
Note: The above information is for reference purposes only. Always refer to the manufacturer's datasheet for precise specifications.
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기술 솔루션에 JAN2N1016C 적용과 관련된 10가지 일반적인 질문과 답변을 나열하세요.
Sure, here are 10 common questions and answers related to the application of JAN2N1016C:
What is the voltage rating of JAN2N1016C?
- The voltage rating of JAN2N1016C is typically around 60V.
What is the maximum current rating for JAN2N1016C?
- The maximum current rating for JAN2N1016C is usually around 1A.
What are the typical applications for JAN2N1016C?
- JAN2N1016C is commonly used in low-power switching applications, amplification, and signal processing circuits.
What is the temperature range for JAN2N1016C?
- The operating temperature range for JAN2N1016C is typically -65°C to 200°C.
Is JAN2N1016C suitable for high-frequency applications?
- JAN2N1016C is not specifically designed for high-frequency applications, but it can be used in moderate frequency circuits.
Does JAN2N1016C require a heat sink for operation?
- In most cases, JAN2N1016C does not require a heat sink for normal operation due to its low power dissipation.
Can JAN2N1016C be used in audio amplifier circuits?
- Yes, JAN2N1016C can be used in low-power audio amplifier circuits and other audio applications.
What are the key differences between JAN2N1016C and similar transistors?
- JAN2N1016C offers higher reliability and better performance compared to some similar transistors, especially in harsh environments.
What are the recommended biasing and operating conditions for JAN2N1016C?
- The recommended biasing and operating conditions can vary based on the specific circuit design, but generally, a common-emitter configuration is often used.
Are there any known failure modes or reliability issues with JAN2N1016C?
- JAN2N1016C is known for its high reliability, but like any electronic component, it can fail due to excessive stress or improper usage.
I hope these questions and answers provide helpful information about the application of JAN2N1016C in technical solutions. Let me know if you need further assistance!