Allicdata Part #: | 2SC5265LS-1HX-ND |
Manufacturer Part#: |
2SC5265LS-1HX |
Price: | $ 0.00 |
Product Category: | Discrete Semiconductor Products |
Manufacturer: | ON Semiconductor |
Short Description: | TRANSISTOR RF |
More Detail: | Bipolar (BJT) Transistor |
DataSheet: | 2SC5265LS-1HX Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | * |
Part Status: | Obsolete |
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The Two SC5265LS-1HX is a NPN single bipolar transistor typically used in low-power radio frequency applications. This type of transistor is a type of semiconductor device which has three terminals, the base, collector, and emitter. The transistor is made up of two PN junctions which are connected together in a three-layer structure. This structure is known as an NPN structure.
The Two SC5265LS-1HX is used as a switch to turn electronic signals on or off. The transistor acts as an amplifier or a switch when an electric signal is applied to its base. The applied signal at the base causes the transistor to act as an amplifier or switch depending on the amount of current flowing through it. By using the transistor as an amplifier, it is possible to increase the signal power or signal strength.The transistor also helps reduce noise, distortion and other signal degradation.
When the transistor is used as a switch, the signal at the base is applied to the collector and the current flows through the transistor, allowing the circuit to be switched on. When the signal at the base is not applied, the current does not flow and the transistor acts as an open switch, allowing the circuit to remain off. The transistor can be used in digital circuits and analog circuits to control the flow of current or voltage.
The Two SC5265LS-1HX can be used in several different application fields. It is commonly used in low-power amplifiers, medium-power electronic devices, logic circuits, and radio frequency (RF) circuits. It can be used in logic circuits for switching the input and output signals of logic gates, such as AND gates and OR gates. In radio frequency (RF) applications, the Two SC5265LS-1HX can be used to amplify signals from radio transmitters and receivers. It is also used in low-power amplifiers to increase the voltage and current of the signal.
The Two SC5265LS-1HX is a current-controlled device, meaning that the amount of current flowing through the transistor is proportional to the voltage applied at the transistor’s base. As the voltage is increased at the base, the current flowing through the transistor also increases. This increases the gain of the amplifier or increases the switching speed of the transistor. As the voltage at the base is decreased, the current through the transistor decreases, and the gain of the amplifier is reduced or the switching speed is decreased.
The Two SC5265LS-1HX has several advantages over other transistors, including its ability to operate at higher temperatures and its low cost. It is also suitable for use in high-noise environments, as it has a high noise immunity. It is also robust enough to be used in high-reliability systems, such as aircraft, trains, and automotive applications.
The Two SC5265LS-1HX can be operated in temperatures ranging from -65°C to +180°C, making it suitable for applications where high-temperature performance is required. It is also suitable for applications where noise is a major concern, as it has an extremely high noise immunity. The two SC5265LS-1HX also offers low resistance and low cost.
In conclusion, the Two SC5265LS-1HX is a NPN single bipolar transistor which is commonly used in low-power radio frequency applications. The transistor is used as a switch to turn electronic signals on or off, and can also be used as an amplifier to increase the signal power or signal strength. It can be used in a variety of application fields, including logic circuits and radio frequency (RF) applications. It is suitable for use in high-temperature environments, as well as in high-noise environments. The Two SC5265LS-1HX is also a current-controlled device, offering low resistance and low cost.
The specific data is subject to PDF, and the above content is for reference
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