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LNK363PN
+Lista de MateriaisIC OFFLINE SWITCH FLYBACK 8DIP
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FabricanteIntegrações de Potência
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Peça do Fabricante #LNK363PN
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Pacote DIP-8
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Especificações
| Atributo | Valor |
| Package | Tube |
| Series | LinkSwitch®-XT |
| ProductStatus | Active |
| OutputIsolation | Isolated |
| InternalSwitch(s) | Yes |
| Voltage-Breakdown | 700V |
| Topology | Flyback |
| DutyCycle | 60% |
| Frequency-Switching | 132kHz |
| Power(Watts) | 7.5 W |
| FaultProtection | Current Limiting, Open Loop, Over Temperature, Short Circuit |
| OperatingTemperature | -40°C ~ 150°C (TJ) |
| Package/Case | 8-DIP (0.300, 7.62mm), 7 Leads |
| SupplierDevicePackage | 8-PDIP-B |
Visão Geral
Description
Key features include high efficiency, accurate current limit, and support for designs requiring minimal external components. It operates with a wide input voltage range, making it suitable for global applications. The device is commonly used in LED drivers, auxiliary power supplies, and charger applications.
The IC utilizes a primary-side regulation (PSR) technique to eliminate the need for an optocoupler or secondary feedback components, simplifying the design and reducing costs. With features like auto-restart for short circuit and open loop protection, it ensures reliable operation. The LNK363PN is available in an 8-pin DIP package, contributing to its ease of use in a variety of electronic applications.
Equivalent
1. LNK362PN: Similar functionality with slightly different parameters.
2. TNY264PN TinySwitch series for low-power applications with comparable performance.
3. VIPER12A: From STMicroelectronics, an alternative low-power offline switcher.
4. NCP1014: From ON Semiconductor, offers similar functionality in power conversion.
Always verify the specifications and pin compatibility before substitution.
Features
1. Integrated Design: Combines a power MOSFET, oscillator, high-voltage switched current source, current limit, and thermal shutdown circuit into a single IC, minimizing external components.
2. Energy Efficiency: Features EcoSmart™ technology for low standby power consumption, making it suitable for energy-efficient designs.
3. Wide Input Range: Supports a broad input voltage range from 85 to 265 VAC, making it versatile for global applications.
4. Output Power: Capable of delivering up to 360 mA of output current with a maximum power output of around 3.7 W, depending on the application conditions.
5. Protection Features: Includes built-in auto-restart for short-circuit protection, over-temperature protection, and over-voltage protection to enhance safety and reliability.
6. Package and Ease of Use: Available in a compact DIP-8 package, simplifying PCB layout and reducing board space.
7. Applications: Ideal for charger adapters, industrial controls, and smart home devices due to its robust performance and reliability.
Pinout
1. BP/M (Bypass/Multi-Function Pin): Connects to an external bypass capacitor for the internal regulator and can be used in some configurations for additional functions.
2. D (Drain): Connected to the primary-side winding of the transformer, this pin handles the high voltage switching.
3. S (Source): This is the power return pin, acting as the ground reference for the IC.
4. NC (No Connect): Not internally connected and may be used for mechanical support in PCB designs.
5. EN/UV (Enable/Under-Voltage Pin): Used to enable or disable the IC and for under-voltage lockout functionality.
6. F (Feedback): Used to provide feedback from the output, usually via an opto-coupler, to regulate output voltage.
7. F (Feedback): Another feedback pin similar to above.
8. NC (No Connect): Another no-connect pin for mechanical support.
These pins work together to allow the LNK363PN to operate efficiently in power supply designs, providing regulation, protection, and control.
Manufacturer
Application
1. Household appliances, such as microwave ovens and washing machines.
2. Standby power supplies for TVs, PCs, and other electronics.
3. Industrial controls and metering applications.
4. LED drivers for lighting solutions.
5. Chargers for mobile devices and small battery-powered gadgets.
Its high efficiency and low component count make it cost-effective for low-power designs.