TIP107-TN3-R
AI

The **TIP107-TN3-R** is a specific variant of the TIP107 Power Darlington Transistor. It is a PNP device designed for general-purpose amplifier and low-speed switching applications where high current gain is required.
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## 1. Technical Specifications
Below are the primary electrical characteristics for the TIP107-TN3-R:
| Parameter | Symbol | Maximum Rating |
| :--- | :--- | :--- |
| **Collector-Emitter Voltage** | $V_{CEO}$ | -100 V |
| **Collector-Base Voltage** | $V_{CBO}$ | -100 V |
| **Emitter-Base Voltage** | $V_{EBO}$ | -5 V |
| **Collector Current (DC)** | $I_C$ | -8 A |
| **Collector Current (Peak)** | $I_{CP}$ | -15 A |
| **Base Current** | $I_B$ | -1 A |
| **DC Current Gain** | $h_{FE}$ | 1000 (Min) @ $I_C = -3A$ |
| **Total Power Dissipation** | $P_D$ | 80 W (at $T_C = 25^\circ C$) |
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## 2. Key Components & Architecture
The TIP107 is not a standard BJT (Bipolar Junction Transistor) but a **Darlington Pair**.
### Internal Configuration
A Darlington pair consists of two transistors connected such that the current amplified by the first is further amplified by the second.
* **High Gain:** The total gain is roughly the product of the individual gains of the two internal transistors.
* **Integrated Resistors:** It typically includes built-in base-emitter shunt resistors to help the device turn off faster by providing a path for stored charge.
* **Integrated Diode:** Usually contains a monolithic free-wheeling diode between the collector and emitter to protect against reverse-bias spikes from inductive loads.
### Package & Naming (TN3-R)
* **TO-220/TO-252:** The "TN3" usually refers to the package type (often a TO-252/DPAK for surface mount or a specific manufacturer's variation of TO-220).
* **Polarity:** Being **PNP**, it is used to switch the "high side" (positive side) of the load.
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## 3. Pin Configuration
For standard packages, the pinout is generally as follows:
| Pin Number | Function | Description |
| :--- | :--- | :--- |
| 1 | **Base** | The trigger pin that controls the current flow. |
| 2 | **Collector** | Connected to the load (connected to the heatsink tab). |
| 3 | **Emitter** | Connected to the positive supply (in a PNP configuration). |
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## 4. Typical Applications
Due to its high gain and power handling, it is commonly found in:
1. **Motor Control:** Driving DC motors where high current is needed from a low-power microcontroller signal.
2. **Relay Drivers:** Handling the inductive kickback and high current of large mechanical relays.
3. **Audio Amplifiers:** Used in the output stages of power amplifiers.
4. **Solenoid Drivers:** Switching heavy electromagnetic coils.
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- ⤷
What is the main difference between the TIP107 (PNP) and the TIP102 (NPN) in a circuit design?
- ⤷ How does the Darlington configuration affect the saturation voltage (Vce sat) compared to a standard transistor?
- ⤷ What type of heatsink is recommended for the TIP107-TN3-R when operating at 5A?