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MMDT4413 NPN+PNP Bipolar Transistor SOT-363 MMDT4413 NPN+PNP Bipolar Transistor SOT-363 MMDT4413 NPN+PNP Bipolar Transistor SOT-363
MMDT4413 NPN+PNP Bipolar Transistor SOT-363

Vceo:-40V

Ic:-200mA

Pd:0.2W

VCE(sat)@Ic,Ib:-0.2V@-10mA, -1mA

fT:250MHz

Working temperature:-55~150℃@(Tj)

Product Details

Our advantages    

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:

MMDT4413 NPN+PNP Digital Transistor features a maximum collector-emitter voltage (Vceo) of 40V, making it suitable for various low to moderate voltage applications. With a collector current (Ic) rating of 200mA and a power dissipation (Pd) capability of 0.2W, this transistor ensures efficient operation and thermal management.  It is also designed to withstand extreme temperatures, with a working temperature range of -55°C to 150°C.


FEATURES

● Complementary Pair

● One 4401-Type NPN

● One 4403-Type PNP

● Epitaxial Planar Die Construction

● Ideal for Low Power Amplification and Switching


Application:

MMDT4413 NPN+PNP Digital Transistor is perfectly suited for a variety of electronic applications, including:

● Switching Circuits: Ideal for low to moderate power switching applications due to its efficient switching characteristics and low saturation voltage.

● Amplification: Suitable for high-frequency amplification circuits, leveraging its high transition frequency for reliable performance.

● Signal Processing: Effective in signal processing applications where high-speed operation and stable performance are crucial.

● Power Management: Reliable for power management systems that require precise control and handling of moderate current levels.



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