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S9014
+StücklisteTRANS NPN 50V SOT23
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HerstellerMDD
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Herstellerteil #S9014
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Paket TO-236-3
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Auf Lager5488
365 Tage Qualitätsgarantie
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Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Package | Tape & Reel (TR) |
| Series | SOT-23 |
| ProductStatus | Active |
| TransistorType | NPN |
| Voltage-CollectorEmitterBreakdown(Max) | 50 V |
| VceSaturation(Max)@IbIc | 300mV @ 5mA, 100mA |
| Current-CollectorCutoff(Max) | 100nA (ICBO) |
| DCCurrentGain(hFE)(Min)@IcVce | 200 @ 1mA, 5V |
| Power-Max | 200 mW |
| Frequency-Transition | 150MHz |
| OperatingTemperature | -55°C ~ 150°C (TJ) |
| MountingType | Surface Mount |
| Package/Case | TO-236-3, SC-59, SOT-23-3 |
Übersicht
Description
If S9014 refers to a course, it might be a specialized class in a university curriculum, potentially focusing on advanced topics in its respective field. Typically, such courses cover detailed and complex content designed for students with foundational knowledge seeking to deepen their understanding.
If S9014 is a product model, it might pertain to technology, machinery, or consumer electronics. In such cases, an introduction would generally highlight its features, benefits, and potential applications.
In a different context, like a designation in scientific or engineering fields, S9014 might represent a specific standard, protocol, or material specification.
Without further details, this introduction remains broad. If you have additional information or context regarding S9014, please provide it for a more targeted response.
Equivalent
Features
1. Type: NPN Transistor
2. Voltage Rating: Collector-Emitter Voltage (Vce) is typically around 45V.
3. Current Rating: Collector current (Ic) can go up to 500mA.
4. Power Dissipation: Maximum power dissipation is usually around 625mW.
5. Gain (hFE): The DC current gain is generally between 100 and 300, which makes it suitable for amplification tasks.
6. Package: Commonly available in TO-92 package, which is suitable for through-hole mounting.
7. Frequency: It typically operates efficiently up to 100 MHz, making it useful for high-frequency applications.
8. Switching: Can be used in switching circuits due to its fast response and low saturation voltage.
9. Applications: Ideal for low power applications, audio amplification, and signal processing.
These features make the S9014 versatile for both hobbyist projects and professional electronic designs.
Pinout
1. Collector (C): This pin is connected to the load where the amplified current flows out. It usually handles the largest current in the transistor.
2. Base (B): The base is the control pin of the transistor. A small current input at this pin controls the larger current flow between the collector and emitter.
3. Emitter (E): The emitter is the current output pin. Current flows from the emitter to the collector in the case of a NPN transistor when it is in the active region.
The S9014 is used in various applications including audio amplification, switching, and signal processing. It can handle a collector current up to 100 mA and has a collector-emitter voltage rating of 45V.
Manufacturer
These companies are typically involved in the semiconductor and electronics industry, focusing on designing and producing a wide range of electronic components such as transistors, diodes, and integrated circuits. They supply components used in consumer electronics, automotive, telecommunications, and industrial applications. Their expertise lies in creating reliable and cost-effective semiconductor products that meet the needs of global electronics manufacturers and designers.
Application
1. Amplifiers: Utilized in low-power audio amplification and signal amplification circuits.
2. Switching Circuits: Employed in switching applications for controlling low-power devices.
3. RF Circuits: Used in radio frequency (RF) circuits due to its ability to operate at high frequencies.
4. Oscillator Circuits: Implemented in oscillator circuits for generating signals.
5. LED Drivers: Functions as a current driver for LED applications.
6. Voltage Regulators: Used in voltage regulation circuits to maintain stable output.
These applications benefit from the transistor's reliability, efficiency, and cost-effectiveness.