CONSEJO 142 | transistor equivalent | amplifier circuit | power supply onsemi
- Tipo de transistor: NPN - Darlington
- Colector de corriente (Ic) (Máx.): 10 A
- Tensión de ruptura colector-emisor (máx.): 100 voltios
- Paquete: TO-247-3

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Power supply circuit simple. TIP142
TIP142 Transistor Equivalent
The TIP142 is a widely used NPN Darlington transistor, primarily manufactured by onsemi. It is known for its high voltage (100V) and current (12A) ratings, making it suitable for power amplification in various electronic circuits. The following table lists equivalent transistors that can be used as TIP142 replacements with similar or higher performance.
Imagen | Número de pieza | Fabricante | Tipo | Tipo de paquete | Voltage (V) | Current (A) | Power Dissipation (W) | Ganancia (hFE) |
---|---|---|---|---|---|---|---|---|
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CONSEJO 142 | onsemi | NPN | TO-247-3 | 100 | 12 | 80 | 50-1000 |
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CONSEJO 147 | onsemi | NPN | TO-247-3 | 100 | 12 | 80 | 50-1000 |
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2N5401 | onsemi | NPN | TO-220-2 | 100 | 15 | 80 | 40-800 |
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MJE3055 | ON Semiconductor | NPN | TO-220-2 | 60 | 15 | 115 | 20-300 |
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2N2955 | onsemi | NPN | TO-3 | 60 | 15 | 115 | 20-300 |
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BD139 | STMicroelectrónica | NPN | TO-220-2 | 80 | 8 | 40 | 40-320 |
These alternatives provide designers with flexibility when selecting a replacement transistor, ensuring optimal performance in power amplification applications.
TIP142 Amplifier Circuit
The TIP142 is an NPN-type Darlington power transistor, mostly used in conjunction with the TIP147. It is mostly used in high power applications such as audio amplifiers, switching power supplies, etc.
Tip142 physical picture
Tip142 interior pictures
B (base): controls the direction of current flow.
C (collector): receives the current flowing.
E (emitter): emits current.
Realization diagram of the Darlington structure
Complementary design connectivity of tip142 and tip147
The heart of the Darlington tube lies in the high current increase achieved by cascade amplification.
TIP142 (NPN type) is often used in conjunction with TIP147 (PNP type) for the following reasons:
1. Better control of high current.
2. When working together, amplify the current to both positive and negative directions to enhance the output power.
3. Cooperate with each other to help share the current and heat, prolonging the service life.