1. Anti-oxidation and anti-corrosion materials and silicone seals
Material selection: CG5032 slim Nano LED Tri Proof Light uses special anti-oxidation and anti-corrosion materials, which can effectively resist oxidation and corrosion factors in the external environment, thereby protecting the internal circuit from damage.
Sealing design: Through sealing elements such as silicone seals, LED tri-proof lamps achieve a tight seal between the lamp housing and the internal circuit. This sealing design can effectively prevent moisture, dust and other pollutants from entering the interior of the lamp, ensuring the dryness and cleanliness of the internal circuit.
2. Waterproof, anti-corrosion and anti-oxidation treatment of the circuit control board
Special treatment: The circuit control board of the LED tri-proof lamp has undergone special waterproof, anti-corrosion and anti-oxidation treatment. These treatment measures can enhance the weather resistance and durability of the circuit control board, enabling it to operate stably for a long time in harsh environments.
3. Sealing and heat dissipation capacity of the electrical box
Sealing design: The electrical box adopts a sealing design to prevent moisture and dust from entering, while ensuring the heat dissipation performance of the internal circuit. This design not only protects the internal circuit, but also ensures the heat dissipation effect of the lamp.
Heat dissipation structure: LED tri-proof lamps are usually equipped with efficient heat dissipation structures, such as heat sinks, fans, etc., to ensure that the lamps will not generate excessive temperatures when working for a long time, thereby protecting the internal circuits from heat damage.
4. Strong electrical isolation protection and double insulation treatment of connectors
Strong electrical isolation: The LED tri-proof lamp adopts a strong electrical isolation design inside to effectively isolate the high-voltage circuit from the low-voltage circuit to prevent the risk of electric shock caused by circuit failure.
Double insulation: Key components such as connectors are double-insulated, which further improves the safety and reliability of the lamp.
5. Special circuit protection design
Overvoltage protection: Metal oxide varistors (MOVs), transient voltage suppression diodes (TVS) and other components are used to protect the circuit from overvoltage to prevent circuit damage caused by voltage fluctuations or lightning strikes.
Overcurrent protection: Fuses, resettable fuses (PTCs) and other components are used to protect the circuit from overcurrent. When the current exceeds the set value, these components will automatically cut off the circuit to prevent the circuit from burning or the LED lamp beads from being damaged due to excessive current.
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