The KTB764-Y-ATP is a silicon PNP epitaxial planar transistor manufactured by KEC. This transistor is designed for medium power amplification and switching applications. It is commonly found in various electronic circuits requiring a reliable PNP transistor with good current handling capabilities and is often used in audio amplifiers and power supplies.
Applications
- Audio Amplifiers: Used in pre-amplifier and power amplifier stages.
- Power Supplies: Employed in linear voltage regulators and switching power supplies.
- Switching Circuits: Suitable for switching applications where a PNP transistor is required.
- Motor Control: Utilized in small motor control circuits.
- General Purpose Amplification: Used in various general-purpose amplifier circuits.
Features
- PNP Polarity: Enables complementary circuit designs with NPN transistors.
- Medium Power Dissipation: Offers moderate power handling capabilities.
- High Collector Current (Ic): Capable of handling significant collector current.
- Low Saturation Voltage: Ensures efficient switching with minimal power loss.
- Epitaxial Planar Structure: Provides improved performance and reliability.
Benefits
- Versatile Application: Can be used in a wide range of circuits.
- Efficient Performance: Offers good performance in both amplification and switching applications.
- Reliable Operation: The epitaxial planar structure ensures stable operation.
- Easy to Use: Easily integrated into existing circuits.
- Cost-Effective: Provides a balance of performance and price.
Additional Details
The KTB764-Y-ATP is typically packaged in a TO-126 or similar package. Key specifications include collector-emitter voltage (VCEO), collector current (IC), and power dissipation (PD). Proper heat sinking may be required depending on the application to ensure stable operation. Consult the manufacturer's datasheet for detailed electrical characteristics and application notes. The transistor is generally RoHS compliant, adhering to environmental standards. Its characteristics make it a versatile choice for various medium-power applications.