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MBT3946 NPN Bipolar Transistor SOT-363 MBT3946 NPN Bipolar Transistor SOT-363 MBT3946 NPN Bipolar Transistor SOT-363
MBT3946 NPN Bipolar Transistor SOT-363

Type:NPN/PNP

Vceo:40V

Ic:200mA

Pd:150mW

fT:300MHz

Product Details

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Chinese manufacturing processes have undergone years of iteration, resulting in mature and reliable technologies. Many international corporations opt for production outsourcing in China.  As an electronic components manufacturer in China, our products can fully replace those of major international brands in 99% of applications without the need for testing verification. Our products boast high consistency in quality, reasonable pricing, ample inventory, flexible supply, short lead times, and professional after-sales service. 


Description:

The MBT3946 is a versatile bipolar junction transistor (BJT) capable of operating in both NPN and PNP configurations, offering flexibility in various circuit designs. With a maximum collector-emitter voltage (Vceo) of 40V and a collector current (Ic) rating of 200mA, it is suitable for low-power applications where moderate voltage and current handling are required. The transistor is designed to dissipate up to 150mW of power (Pd) and operates efficiently at frequencies up to 300MHz (fT), making it suitable for applications requiring high-frequency performance.


Features:

● Type: NPN/PNP
● Vceo: 40V
● Ic: 200mA
● Power Dissipation (Pd): 150mW
● Transition Frequency (fT): 300MHz, ideal for applications requiring high-speed switching and amplification.
● Versatile Configuration: Can be used as either an NPN or PNP transistor, offering flexibility in circuit design and integration.
● Compact Design: Suitable for space-constrained applications due to its small form factor and low power dissipation.


Applications:
The MBT3946 transistor finds application in a wide range of electronic circuits, including:

● Switching Circuits: Used in logic-level shifting, digital circuits, and low-power switching applications due to its moderate voltage and current ratings.
● Amplification: Suitable for audio amplifiers, signal amplification stages in communication equipment, and instrumentation circuits requiring high-frequency response.
● RF Applications: Used in radio frequency (RF) circuits, oscillators, and frequency synthesizers due to its high transition frequency (fT) capability.
● Sensor Interfaces: Employed in sensor signal conditioning circuits, where precise amplification and low noise are crucial.

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