NCP1392DDR2G

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NCP1392DDR2G

IC GATE DRVR HALF-BRIDGE 8SOIC

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Thông số kỹ thuật

Part Status Active
DigiKey Programmable Not Verified
Driven Configuration Half-Bridge
Channel Type Synchronous
Number of Drivers 2
Gate Type MOSFET (N-Channel)
Voltage - Supply 8V ~ 20V
Current - Peak Output (Source, Sink) 500mA, 1A
Input Type Non-Inverting
Rise / Fall Time (Typ) 40ns, 20ns
Operating Temperature -40°C ~ 125°C (TJ)
Mounting Type Surface Mount
Package / Case 8-SOIC (0.154", 3.90mm Width)
Supplier Device Package 8-SOIC
Base Product Number NCP1392
High Side Voltage - Max (Bootstrap) 600 V

Tổng quan

Description

The NCP1392DDR2G is a high-performance resonant mode controller integrated circuit (IC) designed for applications requiring efficient and reliable power conversion. It is suitable for use in resonant half-bridge topologies, commonly used in high-efficiency power supplies and lighting applications.
Key features of the NCP1392DDR2G include:
1. Resonant Mode Operation: Facilitates zero voltage switching (ZVS), which reduces switching losses and improves efficiency.

2. Integrated High-Voltage Startup Circuit: Simplifies the design process by eliminating the need for external high-voltage startup components.
3. Adjustable Dead-Time Control: Allows customization of the dead time between the switching of the transistors, optimizing performance for different loads.
4. Protection Features: Includes over-current protection (OCP), over-voltage protection (OVP), and thermal shutdown to ensure safety and reliability.
5. Light Load Efficiency: Supports burst mode operation to maintain high efficiency under light load conditions.
6. Wide Operational Range: Operates over a broad range of input voltages and frequencies, making it versatile for various applications.
Overall, the NCP1392DDR2G is a robust solution for designing efficient, reliable, and cost-effective power converters.

Features

The NCP1392DDR2G is a resonant mode controller designed for high-performance applications. It primarily operates in half-bridge and full-bridge topologies, making it suitable for efficient power conversion. Key features include:
1. High Efficiency: The device supports resonant operation, which minimizes switching losses and enhances overall efficiency.
2. Frequency Control: It features an adjustable oscillator frequency range, allowing precise control over the switching frequency.
3. Protection Mechanisms: The controller is equipped with multiple protection features like overcurrent protection (OCP), overvoltage protection (OVP), and thermal shutdown, ensuring reliable operation under fault conditions.
4. Soft-start Capability: An integrated soft-start function gradually increases the output voltage, minimizing inrush current and stress on components during power-up.
5. Synchronization: It offers a synchronization feature to align with external clock signals, facilitating better system integration.
6. Low Standby Power: The NCP1392DDR2G is designed to reduce power consumption during standby mode, improving overall energy efficiency.
7. Compact Package: It is available in a compact package, making it suitable for space-constrained applications.
These features make the NCP1392DDR2G ideal for high-density power supplies, LED drivers, and other applications requiring robust power conversion.

Package

The NCP1392DDR2G is a high-performance, resonant mode controller IC typically used in power supply applications. It is available in a SOIC-16 package type, which is a Small Outline Integrated Circuit with 16 pins.

Pinout

The NCP1392DDR2G is a high-performance resonant mode controller used for power conversion applications. It is designed to support a variety of power topologies and provide efficient power management. The NCP1392DDR2G comes in an 8-pin SOIC package. Here is a brief overview of its pin functions:
1. VCC: Power supply pin for the IC.
2. GND: Ground reference for the IC.
3. FB (Feedback): Receives the feedback voltage from the output to regulate the power supply.
4. CS (Current Sense): Monitors the current flowing through the power stage to protect against overcurrent conditions.
5. RT/CT (Timing Resistor/Capacitor): Sets the switching frequency by connecting an external resistor and capacitor.
6. SS (Soft Start): Controls the soft-start time to reduce inrush current during startup.
7. DRV1 (Drive Output 1): Drives the first external MOSFET or IGBT.
8. DRV2 (Drive Output 2): Drives the second external MOSFET or IGBT.
These pins work together to manage power conversion with features like soft start, frequency control, and overcurrent protection, making the NCP1392DDR2G suitable for efficient and reliable power supply designs.

Manufacturer

The NCP1392DDR2G is manufactured by ON Semiconductor. ON Semiconductor is a leading semiconductor supplier company that designs, manufactures, and markets a wide range of semiconductor components. The company focuses on energy-efficient electronics, providing solutions for various industries, including automotive, industrial, cloud power, and the Internet of Things (IoT). They are known for their expertise in power management and analog devices, among other semiconductor technologies.

Application

The NCP1392DDR2G is a high-performance resonant mode controller designed for various power supply applications. It is commonly used in:
1. LCD and LED TV power supplies.
2. Desktop and notebook adapter power supplies.
3. High-performance gaming console power systems.
4. Blu-ray and DVD player power circuits.
5. Industrial power supply units.
Its features, such as high-frequency operation and integrated drivers, make it suitable for efficient and compact power conversion solutions.

Equivalent

The NCP1392DDR2G is a resonant mode controller IC primarily used for power supply applications. Equivalent products include:
1. L6599AD from STMicroelectronics.
2. IRS27951 from Infineon Technologies.
3. UCC256404 from Texas Instruments.
4. TEA1716T from NXP Semiconductors.
These alternatives offer similar functionalities, such as high-frequency resonant mode control, and are suitable for power conversion and management applications.

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