LD1085D2T90-R
AI

## LD1085D2T90-R Electronic Component Overview
The **LD1085D2T90-R** is a high-performance, low-dropout (LDO) positive voltage regulator produced by **STMicroelectronics**. It is designed to provide a stable, fixed output voltage while maintaining high efficiency even when the input voltage is only slightly higher than the output voltage.
---
### 1. Key Technical Specifications
The following table outlines the core electrical characteristics of the LD1085D2T90-R:
| Feature | Specification |
| :--- | :--- |
| **Output Voltage** | 9.0 V (Fixed) |
| **Output Current** | Up to 3.0 A |
| **Dropout Voltage** | Typically 1.3 V at 3A |
| **Input Voltage (Max)** | 30 V |
| **Package Type** | D2PAK (TO-263) |
| **Operating Temperature** | -40°C to 125°C |
| **Voltage Tolerance** | ±1% at 25°C; ±2% over full temperature range |
---
### 2. Internal Architecture & Components
The device integrates several protective and functional circuits within its silicon structure:
* **Pass Transistor:** An internal NPN transistor capable of handling high current (up to 3A).
* **Thermal Overload Protection:** Automatically shuts down the device if the internal junction temperature exceeds safe limits (typically around 150°C).
* **Current Limiting:** Includes internal circuitry to limit output current in case of a short circuit, preventing permanent damage to the regulator.
* **Reference Voltage:** A precise internal bandgap reference ensures the 9V output remains stable across varying loads and temperatures.
---
### 3. Pin Configuration (D2PAK)
The D2PAK package is a surface-mount device designed for high power dissipation.
| Pin Number | Name | Function |
| :--- | :--- | :--- |
| **1** | **GND** | Ground / Common |
| **2 / TAB** | **Vout** | Regulated Output Voltage (9V) |
| **3** | **Vin** | Unregulated Input Voltage |
---
### 4. Application Considerations
To ensure stable operation of the LD1085D2T90-R, the following external components are typically required:
1. **Input Capacitor ($C_{in}$):** A 10µF tantalum or electrolytic capacitor is recommended if the regulator is located far from the power supply filter.
2. **Output Capacitor ($C_{out}$):** A minimum of **10µF** (tantalum or low-ESR electrolytic) is **required for stability**. This capacitor helps manage the internal control loop.
3. **Heat Sinking:** Since this is a linear regulator, it dissipates power as heat ($P_d = (V_{in} - V_{out}) \times I_{out}$). The D2PAK tab should be soldered to a large copper area on the PCB to act as a heat sink.
---
### 5. Common Use Cases
* High-efficiency linear power supplies.
* Post-regulation for switching power supplies.
* Battery-powered equipment requiring high current delivery.
* Logic systems requiring a stable 9V rail.
- ⤷
What is the maximum power dissipation for the D2PAK package in this specific regulator?
- ⤷ Can this regulator be used in parallel to increase the total output current beyond 3A?
- ⤷ How does the dropout voltage change if the load current is decreased to 1A?