2N3507
Product Description for 2N3507: Bipolar Transistors - BJT Power BJT2N3507
Product Description for 2N3507: Bipolar Transistors - BJT Power BJT
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Manufacturer Part # : 2N3507
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Package/Case: TO-39-3
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Brand: Microchip Technology
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Product Categories : Single Bipolar Transistors
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Series : 2N3507
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2N3507 DataSheet
Pricing (USD)
Quantity | Unit Price | Ext. Price |
---|---|---|
1 | $62.680 | $62.68 |
200 | $25.010 | $5,002.00 |
500 | $24.174 | $12,087.00 |
1000 | $23.761 | $23,761.00 |
These prices are subject to market fluctuations, and a quote submission is required to obtain the latest prices.
Interested Parts
2N3507 Details
The 2N3507 is a high-power NPN transistor designed for various electronic applications. This transistor offers a collector current of up to 15A and a voltage rating of 400V, making it suitable for power amplification and switching applications. It is housed in a TO-3 package, providing excellent thermal conductivity for efficient heat dissipation.
Pinout
- 1 (Base): Controls the transistor's operation.
- 2 (Collector): Drains the current flowing through the transistor.
- 3 (Emitter): Releases the current flowing through the transistor.
(Tip: For detailed pinout information, please refer to the corresponding datasheet.)
Key Features
- High Power Handling: Capable of handling high current and voltage levels.
- TO-3 Package: Features a TO-3 package with excellent thermal conductivity for efficient heat dissipation.
- Reliable Performance: Provides reliable performance in various electronic applications.
- Power Amplification: Suitable for power amplification applications.
- Switching Applications: Can be used in switching circuits for on/off control.
Application
- Power Amplifiers: Ideal for power amplifier circuits requiring high current and voltage handling.
- Switching Circuits: Used in switching circuits for on/off control of various electronic components.
- Motor Control: Suitable for motor control applications where high-power handling is required.
Where to Use
The 2N3507 is suitable for applications that require high-power amplification and switching capabilities. It is commonly used in power amplifiers, switching circuits, and motor control systems.
How to Use
Connect the 2N3507 to your circuit by wiring the base, collector, and emitter pins to their respective connections. Properly calculate the required base current and provide appropriate biasing for reliable operation. Ensure the transistor is properly mounted on a heat sink for efficient heat dissipation. For detailed usage instructions, refer to the datasheet.
Equivalents
- MJ15003: A similar NPN transistor offering comparable power handling capabilities.
- 2N3055: An alternative NPN transistor with similar power handling characteristics.
Complementary
The 2N3507 can be complemented by the 2N2907, which is a complementary PNP transistor. These transistors can be used together in amplifier and switching circuits to achieve complete control of both NPN and PNP configurations.
When selecting complementary transistors, ensure their specifications and characteristics align with your specific application requirements.
Frequently Asked Questions
Q: What is the maximum collector current rating of the 2N3507?
A: The 2N3507 has a maximum collector current rating of 15A. For more details, refer to the datasheet for specific operating conditions and limitations.
Q: Can the 2N3507 be used for high-power amplification?
A: Yes, the 2N3507 is designed for high-power amplification applications, providing reliable performance and high current/voltage handling capabilities.

Specifications
The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.
Product Category ! | Bipolar Transistors - BJT | RoHS | N |
Mounting Style | Through Hole | Package / Case | TO-39-3 |
Transistor Polarity | NPN | Configuration | Single |
Collector- Emitter Voltage VCEO Max | 50 V | Collector- Base Voltage VCBO | 80 V |
Emitter- Base Voltage VEBO | 5 V | Collector-Emitter Saturation Voltage | 500 mV |
Maximum DC Collector Current | 3 A | Pd - Power Dissipation | 1 W |
Minimum Operating Temperature | - 65 C | Maximum Operating Temperature ! | + 200 C |
Brand | Microchip Technology | DC Collector/Base Gain hfe Min | 35 at 500 mA, 1 V |
DC Current Gain hFE Max | 175 at 500 mA, 1 V | Product Type ! | BJTs - Bipolar Transistors |
Factory Pack Quantity | 1 | Subcategory | Transistors |
Technology | Si |
FAQs
What is 2N3507?
The 2N3507 is a high-power NPN bipolar junction transistor (BJT) designed for general-purpose switching and amplifier applications. It is suitable for use in power amplifier stages, audio amplifiers, and high-power switching circuits.
How Does 2N3507 Work?
The 2N3507 works as a high-power NPN transistor that amplifies or switches electronic signals. It is capable of handling higher power levels and currents, making it suitable for applications requiring high power amplification or switching capabilities.
How Many Pins does 2N3507 have and What are the Functions of the Pinout Configuration?
The 2N3507 is housed in a TO-39 metal can package. The pinout configuration includes:
- Emitter (E): Emits electrons into the base.
- Base (B): Controls the flow of electrons from the emitter to the collector.
- Collector (C): Collects the majority charge carriers.
What are the Pros and Cons of 2N3507?
Pros:
- High Power Handling: Capable of handling high power levels and currents.
- General-Purpose: Suitable for a wide range of switching and amplification applications.
- Reliability: Known for its reliability and ruggedness in harsh operating conditions.
Cons:
- Size: The TO-39 package may be larger compared to surface-mount alternatives, limiting use in compact designs.
- Heat Dissipation: May require heat sinking for high-power applications to dissipate heat effectively.
Are There Any Equivalents/Alternatives to 2N3507 for Recommendation?
Some equivalents to the 2N3507 include the 2N3055 and the MJ15003, which are also high-power NPN transistors suitable for similar applications.
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Price details
Prices listed do not include VAT.
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