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PMBTA92
+Lista de MateriaisBipolar Transistors - BJT
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Description
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Equivalent
1. MMBTA92
2. KTA1042
3. BC640
4. 2SA1625
These transistors share similar characteristics such as voltage, current ratings, and package type, making them suitable substitutes depending on specific circuit requirements. Always verify the specifications to ensure compatibility with your application.
Features
1. Package Type: It is housed in a SOT-23 surface-mount package, making it suitable for compact circuit designs.
2. Polarity: PNP, meaning it is designed to source current.
3. Collector-Emitter Voltage (Vceo): It has a maximum voltage rating of 100V.
4. Collector-Base Voltage (Vcbo): Maximum rating of 100V.
5. Emitter-Base Voltage (Vebo): Maximum rating of 5V.
6. Collector Current (Ic): It can handle a continuous current of up to 100mA.
7. Power Dissipation: The maximum power dissipation is 250mW, depending on the ambient temperature and heat sink conditions.
8. Gain (hFE): The transistor typically offers a DC current gain ranging from 100 to 300, which is useful for amplification purposes.
9. Low Noise: Suitable for low-noise applications due to its design characteristics.
These features make the PMBTA92 suitable for a variety of low to medium power applications in consumer electronics and general-purpose switching and amplification.
Pinout
1. Pin 1 - Emitter (E): This pin emits carriers, which flow through the transistor. In a PNP transistor, current flows out from the emitter.
2. Pin 2 - Base (B): This is the control pin that modulates the transistor's operation. A small current at the base controls a larger current flow between the collector and emitter.
3. Pin 3 - Collector (C): This pin collects the carriers emitted from the emitter. In a PNP transistor, current flows into the collector.
The PMBTA92 is optimized for high voltage and moderate current applications, featuring a maximum collector-emitter voltage of 300V and a collector current up to 500 mA. This makes it suitable for voltage amplification and high-voltage switching.
Manufacturer
Application
1. Switching Circuits: Used in low-power switching applications due to its ability to efficiently control small loads.
2. Signal Amplification: Employed in audio and signal amplification circuits where low to medium power amplification is needed.
3. Voltage Regulation: Utilized in voltage regulation circuits to maintain stable output voltage levels.
4. Oscillator Circuits: Used in oscillator circuits for frequency generation and modulation.
5. Consumer Electronics: Incorporated in various consumer gadgets for general-purpose amplification and switching tasks.
The transistor's versatility makes it suitable for integration in compact and lightweight electronic devices.