Aluminum substrate features 1. Using surface mount technology (SMT); 2. Very efficient treatment of thermal diffusion in the circuit design method; 3. Reduce product operating temperature, increase product power density and reliability, and extend product life; 4. Reduce product size and reduce hardware and assembly costs; 5. Replace the fragile ceramic substrate for better mechanical durability. PCB aluminum substrate structure PCB aluminum-based copper clad laminate is a metal circuit board material consisting of copper foil, thermal conductive insulation layer and metal substrate. Its structure is divided into three layers: Cireuitl.Layer circuit layer: equivalent to ordinary PCB copper clad, line copper foil thickness loz to 10oz. Dielcctric Layer: The insulation layer is a low thermal resistance thermal insulation material. The thickness is from 0.003" to 0.006". The core is the core of the aluminum-based copper clad laminate and has obtained UL certification. Base Layer: It is a metal substrate, usually aluminum or copper. Aluminum-based copper clad laminates and conventional epoxy glass cloth laminates. The PCB aluminum substrate is composed of a circuit layer, a thermally conductive insulating layer and a metal base layer. The circuit layer (ie, copper foil) is usually etched to form a printed circuit, so that the various components of the assembly are connected to each other. In general, the circuit layer is required to have a large current carrying capacity, so that a thick copper foil should be used, and the thickness is generally 35 μm. 280μm; thermal conductive insulation layer is the core technology of PCB aluminum substrate. It is generally composed of special polymer filled with special ceramics. It has small thermal resistance, excellent viscoelasticity, anti-heat aging ability, and can withstand mechanical and thermal stress. . Thermal insulation layers of high-performance PCB aluminum substrates such as T-101, T-111, T-112, T-113, T-114 and T-200, T-300, T-400, T-500, T-600 This technology is used to make it have excellent thermal conductivity and high-strength electrical insulation properties; the metal base layer is a supporting member of an aluminum substrate, and it is required to have high thermal conductivity, generally aluminum plate or copper plate (where copper plate can Provides better thermal conductivity) for general machining such as drilling, punching and cutting. PCB materials have advantages that are unmatched by other materials. Suitable for power component surface mount SMT public art. No need for a heat sink, greatly reduced size, excellent heat dissipation, good insulation and mechanical properties. PCB aluminum substrate use 1. Audio equipment: input, output amplifier, balanced amplifier, audio amplifier, preamplifier, power amplifier, etc. 2. Power supply equipment: switching regulator `DC/AC converter `SW regulator, etc. 3. Communication electronic equipment: high frequency amplifier <filtering appliance` reporting circuit. 4. Office automation equipment: motor drives, etc. 5. Car: Electronic regulator `igniter` power controller, etc. 6. Computer: CPU board `floppy disk drive` power supply unit, etc. 7. Power module: Inverter 'solid relay' rectifier bridge and so on. 8. Lighting fixtures: With the promotion of energy-saving lamps, aluminum substrates used in LED lamps have also begun to be applied on a large scale. Concerned about surprises Label: aluminum substrate Previous: What should I pay attention to when plating silver on aluminum? Next: Performance and application characteristics of zinc and zinc alloys
Explosion Proof LED Lamp is a specialized lighting fixture designed for use in hazardous environments where there is a risk of explosion due to the presence of flammable gases or vapors. These lamps are constructed with materials that prevent the ignition of explosive gases or dust particles, such as aluminum or stainless steel, and are equipped with a sealed, explosion-proof housing to contain any potential explosions. LED technology is used to provide bright, energy-efficient lighting that is ideal for use in areas such as oil refineries, chemical plants, and other industrial settings where safety is a top priority. These lamps are also designed to withstand harsh environmental conditions, such as extreme temperatures and weather conditions, making them a reliable and durable lighting solution for hazardous environments.
The explosion-proof light, also known as the hazardous location light, possesses several distinctive features. Firstly, it is designed to operate safely in environments where flammable gases, vapors, liquids, or combustible dusts are present, thereby minimizing the risk of explosions. Secondly, these lights are constructed using materials that can withstand high temperatures, shocks, and impacts, ensuring their durability and reliability in challenging conditions. Additionally, explosion-proof lights are equipped with special seals and gaskets to prevent the entry of hazardous substances into the lighting fixture, thereby maintaining a safe and secure environment. Furthermore, these lights are designed to provide efficient illumination while consuming minimal energy, making them energy-efficient and cost-effective. Lastly, explosion-proof lights often come with advanced features such as dimming options, remote control capabilities, and compatibility with smart lighting systems, allowing for enhanced control and customization.
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