Overview
The 2N6107G is a PNP bipolar power transistor manufactured by onsemi, designed for general-purpose amplifier and switching applications. This transistor is part of a family of complementary silicon plastic power transistors that include the 2N6109, 2N6111, 2N6288, and 2N6292. The 2N6107G is housed in a TO-220 package, which is known for its compact size and efficient heat dissipation capabilities. This transistor is RoHS compliant and lead-free, making it suitable for a wide range of modern electronic designs.
Key Specifications
Characteristic | Value | Unit |
---|---|---|
Collector-Emitter Voltage (Vce) | 70 | Vdc |
Collector-Base Voltage (Vcb) | 80 | Vdc |
Emitter-Base Voltage (Veb) | 5.0 | Vdc |
Collector Current (Ic) - Continuous | 7.0 | A |
Collector Current (Ic) - Peak | 10 | A |
Total Power Dissipation @ TC = 25°C | 40 | W |
Operating and Storage Junction Temperature Range | -65 to +150 | °C |
DC Current Gain (hfe) | 30 to 150 | |
Transition Frequency (ft) | 4 | MHz |
Package | TO-220 |
Key Features
- High DC Current Gain: The 2N6107G has a DC current gain (hfe) ranging from 30 to 150, making it versatile for various amplification and switching tasks.
- High Current Gain-Bandwidth Product: This feature enhances its performance in high-frequency applications.
- Compact TO-220 Package: The TO-220 package is compact and offers efficient heat dissipation, making it suitable for high-power applications.
- Thermal Management: The metal tab in the TO-220 package aids in thermal management, ensuring stable performance in high-power deployments.
- RoHS Compliant and Lead-Free: The transistor is RoHS compliant and lead-free, aligning with modern environmental standards.
Applications
The 2N6107G is designed for use in a variety of applications, including:
- General-Purpose Amplifier Circuits: It is suitable for linear and switching amplifier applications due to its high current gain and efficient thermal management.
- Power Supplies: The transistor can be used in switch-mode power supplies where high current handling and efficient switching are required.
- Audio Systems: It excels in low-frequency amplification, making it a good choice for audio equipment where clear sound and signal quality are crucial.
- Switching Circuits: The 2N6107G is used in various switching circuits, including relay and LED drivers, due to its high current gain and durability.
- Darlington Pairs: It can be configured in Darlington pairs to increase current output, which is beneficial in high-power control applications.
Q & A
- What is the maximum collector-emitter voltage of the 2N6107G transistor?
The maximum collector-emitter voltage (Vce) of the 2N6107G is 70 Vdc. - What is the maximum collector current of the 2N6107G transistor?
The maximum continuous collector current (Ic) is 7.0 A, and the peak collector current is 10 A. - What is the operating junction temperature range of the 2N6107G transistor?
The operating and storage junction temperature range is -65 to +150 °C. - What is the DC current gain (hfe) of the 2N6107G transistor?
The DC current gain (hfe) ranges from 30 to 150. - What is the transition frequency (ft) of the 2N6107G transistor?
The transition frequency (ft) is 4 MHz. - What type of package does the 2N6107G transistor use?
The 2N6107G transistor is housed in a TO-220 package. - Is the 2N6107G transistor RoHS compliant and lead-free?
Yes, the 2N6107G transistor is RoHS compliant and lead-free. - What are some common applications of the 2N6107G transistor?
Common applications include general-purpose amplifier circuits, power supplies, audio systems, switching circuits, and Darlington pairs. - How does the TO-220 package aid in thermal management?
The metal tab in the TO-220 package ensures a dependable electrical connection for the collector and aids in thermal management, fostering stability and extending longevity in high-power deployments. - Can the 2N6107G transistor be used in high-frequency applications?
Yes, the 2N6107G transistor is suitable for high-frequency applications due to its high current gain-bandwidth product.