
( Brand: Motorola ), ( Manufacturer Part Number: 2N6288G ), ( Model: MOTOROLA 2N6288G ), ( Run Method: Bipolar ), ( Country Of Origin: China )
The Motorola 2N6288 is a high performance, bipolar NPN transistor designed for use in various electronic applications. This transistor is known for its excellent electrical characteristics, making it an ideal choice for power amplifiers, switch modes power supplies, and voltage regulators.
The 2N6288 transistor has a collector current capacity of up to 500mA and a collector-emitter voltage (VCE) of up to 40V. Its low saturation resistance (Rs) and high power gain (hfe) of approximately 150 make it highly efficient in delivering power to the load. The device also features a low base current (IB) of 1.2mA, ensuring minimal power consumption in standby mode.
This transistor is designed with a TO-39 metal can package, which provides good thermal conductivity and allows for efficient heat dissipation. It also features a base-emitter junction temperature rating of 125 C, making it suitable for use in high temperature environments.
The Motorola 2N6288 is a versatile component, with a wide operating temperature range of -55 C to 150 C. It can be operated in both linear and switching modes, making it a valuable asset in a wide range of electronic circuits. Its high reliability, combined with its robust construction, ensures that it can withstand the rigors of industrial and automotive applications.
Overall, the Motorola 2N6288 is a high-performance bipolar NPN transistor that offers excellent electrical characteristics, making it an ideal choice for a variety of power and switching applications. Its efficient heat dissipation, low power consumption, and wide operating temperature range make it a reliable and versatile component for any electronic design.
Motorola 2N6288G bipolar transistors are commonly used for various electronic applications due to their good electrical characteristics and reasonable price. Here are some pros and cons of buying these transistors:
Pros:1. Wide Operating Range: The Motorola 2N6288G transistors have a wide operating temperature range, making them suitable for use in various environments.
2. High Power Handling Capability: These transistors can handle high power levels, making them suitable for use in power amplifiers, switch mode power supplies, and other high power applications.
3. Good Electrical Characteristics: The Motorola 2N6288G transistors have good electrical characteristics such as high beta, low hfe, and high current gain, making them suitable for use in amplifier circuits.
4. Reasonable Price: These transistors are reasonably priced, making them an affordable option for hobbyists and small businesses.
Cons:1. Limited Availability: Motorola 2N6288G transistors may not be readily available from all suppliers, making it necessary to check multiple sources to ensure availability.
2. Low Input Impedance: These transistors have a low input impedance, which may require additional circuitry to interface with low-level signals.
3. Limited Frequency Response: The Motorola 2N6288G transistors have a limited frequency response, making them less suitable for use in high-frequency applications.
Conclusion:Motorola 2N6288G bipolar transistors are a good option for applications that require high power handling capability, good electrical characteristics, and a reasonable price. However, they may not be suitable for use in high-frequency applications or where availability is a concern.
Recommendation:If you are looking for a reliable and affordable bipolar transistor for use in low to medium power applications, the Motorola 2N6288G is a good option to consider. However, if you require a transistor with a wider frequency response or better availability, you may want to consider other options such as the 2N3904 or 2N3906 transistors.
The product is a set of ten Motorola 2N6288G bipolar transistors, manufactured in China. Designed for industrial automation and motion control applications, these transistors are ideal stepper controls drives, offering reliable performance in various drive motor systems.