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BC847C,215
+StücklisteTRANS NPN 45V 0.1A TO236AB
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HerstellerNexperia USA Inc.
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Herstellerteil #BC847C,215
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Paket SOT-23-3
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Auf Lager5633
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Spezifikationen
| Attribut | Wert |
| Package / Case | Tape & Reel (TR),Cut Tape (CT) |
| Series | Automotive, AEC-Q101 |
| Part Status | Active |
| Transistor Type | NPN |
| Current - Collector(Ic)(Max) | 100 mA |
| Voltage - Collector Emitter Breakdown(Max) | 45 V |
| Vce Saturation(Max) @ Ib Ic | 400mV @ 5mA, 100mA |
| Current - Collector Cutoff(Max) | 15nA (ICBO) |
| DC Current Gain(h FE)(Min) @ Ic Vce | 420 @ 2mA, 5V |
| Power - Max | 250 mW |
| Frequency - Transition | 100MHz |
| Operating Temperature | 150°C (TJ) |
| Mounting Type | Surface Mount |
Übersicht
Description
Key specifications include a maximum collector current (Ic) of 100 mA and a collector-emitter voltage (Vceo) of 45V, with a gain (hFE) range typically between 420 and 800, which indicates its high current amplification capability. The BC847C variant offers a higher gain than its BC847A and BC847B counterparts, making it advantageous in circuits where higher amplification is required.
The transistor exhibits excellent thermal stability and frequency response, making it ideal for use in low-power applications such as signal processing, audio amplification, and small signal amplification. Moreover, its high gain and low noise characteristics contribute to its effectiveness in high-frequency applications.
Overall, the BC847C,215 is a reliable and versatile component for a wide range of electronic designs requiring efficient signal amplification or switching.
Equivalent
1. BC847C
2. BC548C
3. BC549C
4. 2N3904
5. 2SC1815
These transistors generally share similar electrical characteristics, such as voltage, current, and gain parameters, suitable for switching and amplification in low-power applications. Always verify the exact specifications and pin configurations when substituting.
Features
1. Package Type: The BC847C is typically housed in a small SOT-23 surface-mount package, making it suitable for compact circuit designs.
2. Collector-Emitter Voltage (V_ceo): It can handle a maximum V_ceo of 45V.
3. Collector Current (I_c): It supports a maximum continuous collector current of 100 mA.
4. DC Current Gain (h_fe): The BC847C offers a high DC current gain range, typically between 420 to 800, making it effective for amplification purposes.
5. Transition Frequency (f_T): The transistor has a transition frequency of approximately 100 MHz, suitable for high-frequency applications.
6. Thermal Characteristics: The maximum power dissipation is around 250 mW.
7. Low Noise: It exhibits low noise performance, which is beneficial for audio and sensitive analog applications.
These features make the BC847C versatile for various low-power and high-frequency applications.
Pinout
### Pin Count and Configuration:
The BC847C transistor comes in a small SOT-23 package which has three pins:
1. Pin 1 (Base): This is the control pin for the transistor, which determines the operation of the device. A small current to the base allows a larger current to flow from the collector to the emitter.
2. Pin 2 (Emitter): This pin is where current flows out of the transistor. In an NPN transistor like the BC847C, the emitter is connected to the ground or a negative voltage.
3. Pin 3 (Collector): This is the pin through which the main current enters the transistor. It's connected to the load or positive voltage.
### Function:
The BC847C is used for switching low-level signals and for amplification purposes in electronic circuits. It can handle moderate power levels and offers high current gain, making it versatile for various applications.
Manufacturer
Application
1. Signal Amplification: Used in amplifying small signals in audio and radio frequency (RF) circuits.
2. Switching Applications: Functions as a switch in low power applications, such as driving small loads like LEDs or relays.
3. Oscillator Circuits: Utilized in oscillators for generating signals in RF applications.
4. Voltage Regulation: Used within regulator circuits for stabilization.
5. Analog and Digital Circuits: Employed in both analog and digital circuits for diverse control and processing tasks.
These applications make it suitable for use in consumer electronics, telecommunications, and industrial control systems.