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TIP102
+Lista de MateriaisTRANS NPN DARL 100V 8A TO220
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Fabricanteonsemi
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Peça do Fabricante #TIP102
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Pacote TO-220
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Especificações
| Atributo | Valor |
| Package / Case | Tube,Tube |
| Part Status | Obsolete |
| Transistor Type | NPN - Darlington |
| Current - Collector(Ic)(Max) | 8 A |
| Voltage - Collector Emitter Breakdown(Max) | 100 V |
| Vce Saturation(Max) @ Ib Ic | 2.5V @ 80mA, 8A |
| Current - Collector Cutoff(Max) | 50µA |
| DC Current Gain(h FE)(Min) @ Ic Vce | 1000 @ 3A, 4V |
| Power - Max | 2 W |
| Operating Temperature | -65°C ~ 150°C (TJ) |
| Mounting Type | Through Hole |
Visão Geral
Description
Key specifications of the TIP102 include a collector-emitter voltage of 100V, a continuous collector current of 8A, and a power dissipation of 65W. The transistor features a high current gain, typically over 1000, making it particularly useful in applications requiring significant amplification or driving high-current loads.
The TIP102 is housed in a TO-220 package, which includes a metal tab for heat dissipation, enabling it to handle higher power levels efficiently. It is commonly utilized in motor control, power regulation, and audio amplification systems. With its robust performance and versatility, the TIP102 serves as a reliable component in various electronic circuits, offering both ease of use and efficiency.
Equivalent
Features
1. High Current Gain: The Darlington configuration provides a high current gain, making it suitable for driving heavy loads with minimal input current.
2. High Collector-Emitter Voltage: It can handle a collector-emitter voltage (V_CE) of up to 100V, which makes it versatile for various high-voltage applications.
3. High Current Capacity: The transistor can manage a continuous collector current (I_C) of up to 8A, suitable for power-intensive tasks.
4. Low Saturation Voltage: The TIP102 operates efficiently with a low saturation voltage, ensuring minimal power loss in the switch-on state.
5. Robust Package: It is available in a TO-220 package, which offers good thermal conductivity and facilitates effective heat dissipation.
6. Built-in Base-Emitter Resistor: This feature reduces the need for external components and simplifies design.
Overall, the TIP102 is ideal for applications like motor control, relay driving, and power regulation in various electronic devices.
Pinout
1. Pin 1 - Base (B): This pin is the control terminal. A small current applied to the base controls the larger current flow between the collector and the emitter.
2. Pin 2 - Collector (C): This pin is the main current input terminal. It connects to the load, and current flows from the collector to the emitter when the transistor is turned on.
3. Pin 3 - Emitter (E): This is the output terminal through which the current leaves the transistor. In an NPN configuration like the TIP102, the current flows out from the emitter.
The TIP102 can handle high current (up to 8A) and high voltage (up to 100V), making it suitable for medium to high-power applications. Its built-in Darlington pair configuration provides high current gain, which allows for driving larger loads with smaller input current.
Manufacturer
STMicroelectronics is a global semiconductor company that designs, develops, manufactures, and markets a wide variety of semiconductor products. It serves various applications, including automotive, industrial, personal electronics, and communications equipment. The company is recognized for its innovation and technology leadership in the semiconductor industry.
ON Semiconductor, now rebranded as onsemi, is another leading semiconductor manufacturer. It provides a broad portfolio of energy-efficient power and signal management, logic, discrete, and custom devices for a wide range of industries, including automotive, communications, computing, consumer electronics, industrial, LED lighting, medical, and power applications.
Both companies are integral to the electronics supply chain and play a significant role in the development and manufacturing of electronic components used in various modern devices and systems.
Application
1. Motor Control: It is used in controlling and driving motors due to its high current handling capabilities.
2. Relay Drivers: Commonly employed to drive relays in various automation and control systems.
3. Amplifiers: Used in audio and RF amplification circuits for improved signal strength.
4. LED and Lamp Drivers: Suitable for driving high-power LEDs and lamps in lighting applications.
5. Switching Power Supplies: Utilized in power supply circuits for efficient switching and regulation.
Its robustness and high gain make it ideal for these applications.