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FAN7392N
+БОМHALF BRIDGE BASED PERIPHERAL DRI
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ПроизводительКомпания Fairchild Semiconductor
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Мфр. Часть #FAN7392N
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Лист данных FAN7392N DataSheet
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Пакет DIP-14
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В наличии1441
365 Дни гарантии качества
7*24 часы обслуживания каранти
90-гарантия послепродажного дня
Гарантия подлинного продукта
Спецификации
| Атрибут | Ценность |
| Package | Bulk |
| ProductStatus | Active |
| DrivenConfiguration | Half-Bridge |
| ChannelType | Independent |
| NumberofDrivers | 2 |
| GateType | IGBT, N-Channel MOSFET |
| Voltage-Supply | 10V ~ 20V |
| LogicVoltage-VILVIH | 4.5V, 9.5V |
| Current-PeakOutput(SourceSink) | 3A, 3A |
| InputType | Non-Inverting |
| HighSideVoltage-Max(Bootstrap) | 600 V |
| Rise/FallTime(Typ) | 25ns, 20ns |
| OperatingTemperature | -40°C ~ 150°C (TJ) |
| MountingType | Through Hole |
| Package/Case | 14-DIP (0.300, 7.62mm) |
Обзор
Description
The FAN7392N also includes a separate high-side and low-side output, providing flexibility in different circuit configurations. The compact design and efficient power handling make it an ideal choice for compact and high-performance electronic designs. Additionally, it is available in a variety of package options, which helps in accommodating different design requirements and space constraints. Overall, the FAN7392N offers a robust solution for enhancing the performance and reliability of power control systems.
Equivalent
1. IR2110 from Infineon Technologies
2. TC4427 from Microchip Technology
3. LM5101 from Texas Instruments
4. L6384 from STMicroelectronics
These alternatives offer similar functionality, focusing on driving high-speed MOSFETs and IGBTs in applications like motor drives and power supplies. Always check specific parameters to ensure compatibility with your design.
Features
1. High Voltage Capability: It can operate with a floating supply voltage up to 600V, making it suitable for high-voltage applications.
2. Driver Output: Provides a high peak output current capability to ensure fast switching of power transistors.
3. Bootstrap Operation: The IC supports bootstrap operations, allowing efficient high-side gate driving using a bootstrap capacitor.
4. UVLO Protection: Under-voltage lockout (UVLO) protection for both high-side and low-side, ensuring reliable operation by preventing malfunction under low-voltage conditions.
5. Level Shift Circuitry: It includes integrated level-shift circuitry, facilitating the control of high-side transistors from low-side logic levels.
6. Rugged Design: Designed to withstand harsh operational environments with built-in protection features.
7. Compact Package: Housed in a small form-factor package, making it ideal for space-constrained applications.
These features make the FAN7392N suitable for applications in motor drives, inverters, and other power management systems requiring efficient and reliable high-side driving capability.
Pinout
1. VCC (Pin 1): Supply voltage input for the IC.
2. HIN (Pin 2): Logic input for controlling the high-side gate.
3. LIN (Pin 3): Logic input for controlling the low-side gate.
4. COM (Pin 4): Common ground reference for the IC.
5. VSS (Pin 5): Logic level ground reference.
6. LO (Pin 6): Output for the low-side gate driver.
7. VS (Pin 7): High-voltage floating supply return.
8. HO (Pin 8): Output for the high-side gate driver.
The FAN7392N is used in applications requiring high-speed and reliable switching of power devices, such as power supplies, motor drives, and DC-DC converters. It provides high output current capability, low propagation delay, and built-in protection features.
Manufacturer
Application
1. Switching Power Supplies: Enhances performance in DC-DC converters and AC-DC power supplies.
2. Motor Drives: Used in driving motors for industrial and consumer electronics to ensure efficient operation.
3. Uninterruptible Power Supplies (UPS): Improves conversion efficiency and reliability.
4. Inverters: Essential in solar inverters and other renewable energy systems for effective DC to AC conversion.
5. Lighting Systems: Supports efficient LED and HID lighting control systems.
Its robust performance and reliability make it suitable for high-performance and efficiency-essential applications.