VIPERG
AI

The **VIPERGAN** (often referred to as **VIPer-GaN**) is a series of high-voltage power converters from STMicroelectronics. These devices are "System-in-Package" (SiP) solutions that integrate a Gallium Nitride (GaN) power transistor with a sophisticated PWM controller.
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### 1. Key Internal Components
The VIPer-GaN family combines several electronic elements into a single 6x8 mm QFN package:
| Component | Description |
| :--- | :--- |
| **GaN Power Transistor** | A 650V or 730V Gallium Nitride HEMT that provides high electron mobility and low RDS(on). |
| **PWM Controller** | An advanced pulse-width modulation engine that handles startup, regulation, and protection. |
| **SenseFET Architecture** | Built-in current sensing that eliminates the need for bulky external shunt resistors. |
| **Startup Regulator** | An internal high-voltage startup cell that allows the chip to power itself directly from the rectified mains. |
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### 2. Technical Specifications
The use of GaN technology allows these parts to operate at much higher frequencies and efficiencies than traditional Silicon (Si) MOSFETs.
* **Drain-Source Voltage ($V_{DS}$):** Typically 650V to 730V (robust against line surges).
* **Operating Modes:**
* **Quasi-Resonant (QR):** Minimizes switching losses.
* **Frequency Folding:** Improves efficiency during medium/light loads.
* **Burst Mode:** Reduces power consumption to < 30mW during no-load conditions.
* **Switching Frequency:** Up to 240 kHz (allows for smaller transformers/inductors).
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### 3. Protection Features
One of the main advantages of the VIPer-GaN series is the integrated suite of protection circuits:
1. **Overvoltage Protection (OVP):** Protects against feedback loop failures.
2. **Overload Protection (OLP):** Prevents damage during output short-circuits.
3. **Brown-out Protection:** Monitors input voltage to prevent operation during "sag" conditions.
4. **Thermal Shutdown:** Automatically turns off the device if the junction temperature exceeds safety limits (typically 150°C).
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### 4. Applications
Because of the high integration and efficiency of GaN, these parts are used in high-density power supplies:
* **USB-C PD Chargers:** Fast chargers for smartphones and laptops.
* **Home Appliances:** High-efficiency power boards for smart home devices.
* **Industrial Power:** Auxiliary power supplies for servers and motor drives.
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What are the primary differences between VIPer-GaN and traditional Silicon VIPer chips?
- ⤷ What is the maximum output power supported by the VIPERGAN65?
- ⤷ How does Gallium Nitride improve the efficiency of these power converters?