Category: Integrated Circuit (IC)
Use: Power Management IC
Characteristics: - Low power offline switcher - High voltage power conversion - Energy-efficient design - Compact size - Cost-effective solution
Package: DIP-7 (Dual In-line Package)
Essence: LNK306PN is a power management IC designed for low power offline switchers. It provides high voltage power conversion with energy-efficient performance in a compact package.
Packaging/Quantity: The LNK306PN is typically sold in reels or tubes, with a quantity of 1000 units per reel/tube.
The LNK306PN has the following specifications:
The LNK306PN features a DIP-7 package with the following pin configuration:
The LNK306PN offers several functional features, including:
Advantages: - Simplified design due to primary-side control - Cost-effective solution for low power applications - High efficiency and energy savings - Compact size for space-constrained designs - Built-in protection features enhance system reliability
Disadvantages: - Limited output power capability (up to 3 W) - Not suitable for high-power applications
The LNK306PN utilizes a primary-side control scheme, eliminating the need for an optocoupler feedback circuit. It operates by regulating the duty cycle of the internal power switch based on the feedback signal from the secondary side. This allows for efficient power conversion while maintaining accurate voltage regulation.
The IC incorporates various protection mechanisms such as auto-restart, thermal shutdown, and cycle-by-cycle current limit to ensure safe operation under fault conditions. The frequency jittering feature helps reduce electromagnetic interference (EMI) emissions, ensuring compliance with regulatory standards.
The LNK306PN is commonly used in various low-power applications, including:
Some alternative models that offer similar functionality to the LNK306PN include:
These models are part of the same product family and provide comparable performance and features.
In conclusion, the LNK306PN is a low power offline switcher IC designed for efficient power management in various applications. Its primary-side control scheme, compact size, and built-in protection features make it a cost-effective and reliable solution for low-power systems.
Sure! Here are 10 common questions and answers related to the application of LNK306PN in technical solutions:
Q: What is LNK306PN? A: LNK306PN is an integrated offline switcher IC (integrated circuit) designed for low-power applications.
Q: What are the typical applications of LNK306PN? A: LNK306PN is commonly used in applications such as LED lighting, smart home devices, power adapters, and industrial controls.
Q: What is the input voltage range supported by LNK306PN? A: LNK306PN supports a wide input voltage range from 85V AC to 265V AC.
Q: What is the maximum output power that can be achieved with LNK306PN? A: The maximum output power depends on the specific design and application, but typically ranges from 3W to 15W.
Q: Does LNK306PN require an external MOSFET? A: No, LNK306PN integrates a high-voltage MOSFET, eliminating the need for an external one.
Q: Can LNK306PN operate in a constant current mode? A: Yes, LNK306PN can be configured to operate in a constant current mode, making it suitable for driving LEDs.
Q: Is LNK306PN capable of providing overvoltage protection? A: Yes, LNK306PN includes built-in overvoltage protection, ensuring the safety of the connected load.
Q: What is the efficiency of LNK306PN? A: LNK306PN offers high efficiency, typically above 80%, which helps reduce power consumption and heat generation.
Q: Can LNK306PN operate in a wide temperature range? A: Yes, LNK306PN is designed to operate reliably in a wide temperature range, typically from -40°C to 150°C.
Q: Are there any recommended external components for using LNK306PN? A: Yes, LNK306PN requires a few external components such as resistors, capacitors, and an input filter for proper operation. The datasheet provides detailed application circuit examples.
Please note that these answers are general and may vary depending on the specific design requirements and application conditions. It's always recommended to refer to the datasheet and consult with the manufacturer for accurate information.