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2SC2510
+StücklisteBipolar Transistors - BJT SL-OLY,INACTIVE,DISCON(04-04)/OBSOLETE(06-04),
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HerstellerToshiba
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Herstellerteil #2SC2510
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Auf Lager19211
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
Übersicht
Description
The 2SC2510 is favored for its robust performance and reliability in various applications, such as audio equipment, power supplies, and general-purpose amplification. It exhibits good gain characteristics and can operate at high frequencies, making it versatile for different projects.
When using the 2SC2510, adequate heat management should be considered, such as using heat sinks, to maintain optimal performance and prevent thermal overload. Its specifications and characteristics make it a popular choice for many electronics enthusiasts and professionals in the design and repair of electronic circuits.
Equivalent
1. 2N3055
2. BD139
3. TIP31
4. TIP41
Note that equivalency depends on specific circuit requirements, so always verify parameters like voltage, current, and gain before substitution.
Features
1. High Frequency Performance: It is designed for high-frequency applications, making it suitable for RF amplification.
2. High Voltage and Current Rating: The transistor can typically handle a collector-emitter voltage (V_CEO) of around 60V and a collector current (I_C) of up to 1A.
3. Low Noise: It exhibits low noise characteristics, which is important for applications requiring high signal integrity.
4. Power Dissipation: The 2SC2510 can dissipate power efficiently, with a power dissipation (P_D) often around 800mW.
5. Package Type: It is usually available in TO-92 or similar compact package styles, which are common for small-signal transistors.
6. Gain: The transistor typically offers a decent DC current gain (h_FE), often in the range suitable for amplification purposes.
These features make the 2SC2510 suitable for various electronic applications, including RF circuits, amplifiers, and general high-speed switching tasks.
Pinout
1. Pin 1: Base (B) - This pin is used to control the transistor's operation. By applying a small current to the base, you can control the larger current flow between the collector and emitter.
2. Pin 2: Collector (C) - The collector is the pin through which the main current enters the transistor. It is connected to the load in most circuit configurations.
3. Pin 3: Emitter (E) - The emitter is the pin through which the main current exits the transistor. It is typically connected to ground in common-emitter configurations.
The 2SC2510 is designed for applications requiring high-speed switching and amplification, typical in RF and audio circuits. It offers features such as high gain and low noise, making it suitable for various electronic projects.