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The term **"432"** in the electronics industry most commonly refers to the **TL432**, a widely used precision programmable shunt regulator. While it is often grouped with the famous TL431, the 432 has a specific pinout configuration that distinguishes it.
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### 1. What is the TL432?
The TL432 is a three-terminal adjustable shunt regulator with guaranteed thermal stability over applicable automotive, commercial, and military temperature ranges. It acts like a **Zener diode** with a programmable breakdown voltage.
| Feature | Specification (Typical) |
| :--- | :--- |
| **Output Voltage Range** | $V_{ref}$ (approx. 1.25V or 2.5V) to 36V |
| **Reference Voltage Accuracy** | ±0.5%, ±1%, or ±2% |
| **Sink Current Capability** | 1 mA to 100 mA |
| **Output Impedance** | 0.2 $\Omega$ (Typical) |
| **Operating Temperature** | -40°C to +125°C (varies by grade) |
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### 2. Key Differences: TL431 vs. TL432
The primary difference between these two components is the **pinout**. This is crucial because using a TL431 in a spot designed for a TL432 (or vice versa) will cause the circuit to fail or damage the component.
| Component | Standard Package | Pin 1 | Pin 2 | Pin 3 |
| :--- | :--- | :--- | :--- | :--- |
| **TL431** | SOT-23 | Reference | Cathode | Anode |
| **TL432** | SOT-23 | Cathode | Reference | Anode |
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### 3. Common Applications
Due to its precision, the 432 is found in various power management circuits:
1. **Switching Power Supplies (SMPS):** Used in the feedback loop (often paired with an optocoupler) to maintain a constant output voltage.
2. **Voltage Reference:** Provides a stable reference for Analog-to-Digital Converters (ADCs).
3. **Current Limiting:** Can be configured to monitor and limit current in a load.
4. **Replacement for Zener Diodes:** Used where a specific Zener voltage is unavailable or where higher precision is required.
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### 4. Basic Circuit Example
To set the output voltage ($V_{out}$), two external resistors are used to create a divider.
```python
# Formula for Output Voltage
# Vout = Vref * (1 + R1 / R2) + Iref * R1
# Where:
# Vref = 1.25V or 2.5V (depending on the specific model)
# R1 = Resistor between Cathode and Reference
# R2 = Resistor between Reference and Anode
```
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### 5. Other "432" Components
While the TL432 regulator is the most common, "432" can also refer to:
* **Resistor Markings:** A SMD resistor marked "432" represents $43 \times 10^2$, which is **4,300 $\Omega$ or 4.3k$\Omega$**.
* **Operational Amplifiers:** Some manufacturers use 432 in the suffix for dual or quad op-amps (e.g., LMV432).
- ⤷
What is the difference between the 1.25V and 2.5V versions of the TL432?
- ⤷ How do I calculate the resistor values for a specific output voltage?
- ⤷ Can a TL432 be used as a constant current source?