CXT2907A TR Discrete Semiconductor Products |
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Allicdata Part #: | CXT2907ATR-ND |
Manufacturer Part#: |
CXT2907A TR |
Price: | $ 0.18 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | Central Semiconductor Corp |
Short Description: | TRANS PNP 60V 0.6A SOT-89 |
More Detail: | Bipolar (BJT) Transistor PNP 60V 600mA 200MHz 1.2W... |
DataSheet: | CXT2907A TR Datasheet/PDF |
Quantity: | 1000 |
1000 +: | $ 0.16511 |
2000 +: | $ 0.14963 |
5000 +: | $ 0.13931 |
10000 +: | $ 0.13759 |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Transistor Type: | PNP |
Current - Collector (Ic) (Max): | 600mA |
Voltage - Collector Emitter Breakdown (Max): | 60V |
Vce Saturation (Max) @ Ib, Ic: | 1.6V @ 50mA, 500mA |
Current - Collector Cutoff (Max): | 10nA (ICBO) |
DC Current Gain (hFE) (Min) @ Ic, Vce: | 100 @ 150mA, 10V |
Power - Max: | 1.2W |
Frequency - Transition: | 200MHz |
Operating Temperature: | -65°C ~ 150°C (TJ) |
Mounting Type: | Surface Mount |
Package / Case: | TO-243AA |
Supplier Device Package: | SOT-89 |
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CXT2907A TR Application Field and Working Principle
The CXT2907A TR is a NPN transistor designed for use in RF serial and transmission applications. It features a wide dynamic range, high-gain linearity, low DC offset, and low or no frequency asymmetry. The transistor provides high linearity and excellent thermal stability in RF amplifier designs. In addition, it offers enhanced efficiency in serial communications applications. This article will discuss the application field of the CXT2907A TR, as well as its working principles.
Application Field
The CXT2907A TR is a high speed switching transistor designed for use in RF serial and transmission applications. It is well suited for RF amplifiers, mixers, frequency converters, and transmitters. It can also be used in digital signal processing applications, and it has been specifically designed to provide improved linearity and stability in both digital data and analog communications. Applications include high-speed data processing, digital signal processing, fast switching RF amplifiers, communication systems, and high-power RF transmitters.
Working Principle
As a NPN transistor, the CXT2907A TR works using the principles of a p-type and n-type semiconductor, or N-type and P-type semiconductor. The transistor contains two n-type regions and a p-type region. When a voltage is applied to the n-type regions, electrons are produced in the n-type region and holes are created in the p-type region. The electrons from the n-type region move towards the positive terminal of the applied voltage, while the holes created in the p-type region move towards the negative terminal. As these electrons and holes move through the transistor, they form a current flow that can be used to control other electrical signals.
The CXT2907A TR is a low voltage, low impedance NPN transistor, which is ideal for high-speed switching applications such as digital signal processing. It has a high gain linearity and a low noise, making it highly suitable for use in RF amplifiers, mixers, frequency converters, and transmitters. Its improved thermal stability and linearity, combined with its low-cost, makes it an ideal choice for low cost applications that require high output linearity.
Conclusion
The CXT2907A TR is a NPN transistor designed for use in RF serial and transmission applications. It has a wide dynamic range, high-gain linearity, low DC offset, and low or no frequency asymmetry. Additionally, it provides enhanced efficiency in serial communications applications. The working principles of the transistor involve the principle of p-type and n-type semiconductor, where a voltage is applied to the n-type regions, producing electrons and holes which form a current flow to be used to control other electrical signals. The CXT2907A TR is an ideal choice for high-speed switching, digital signal processing and RF amplifiers as its high gain linearity provides improved thermal stability and linearity.
The specific data is subject to PDF, and the above content is for reference
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