ceramic substrate pcb,ceramic pcb boar,Ceramic PCB is an advanced circuit board that is manufactured using ceramic materials, unlike traditional circuit boards made of organic materials such as fiberglass or epoxy resin.
Ceramic PCBs have excellent performance and reliability, especially in demanding high-performance electronic applications. These boards are designed to excel in situations where high thermal conductivity, excellent electrical performance at high frequencies, and robustness in harsh environments are critical.
The manufacture of ceramic PCBs utilizes thermally conductive organic ceramic powders and organic adhesives, prepared at less than 250°C, with a thermal conductivity of 9-20W/m.k. In addition, ceramic PCBs are bonded together by bonding copper foil and ceramic substrate, which has strong bonding and the copper foil will not fall off, so the performance is stable and the reliability is high in high temperature and high humidity environments.
Traditional PCB boards can usually only withstand high temperatures of 100-200°C. Ceramic PCB boards are resistant to high temperatures. The boards are generally made of alumina ceramic base or aluminum nitride ceramic base and can withstand 800-2200°C.
Alumina ceramic PCB boardscan withstand high temperatures of 800°C,
Aluminum nitride ceramic PCB boardscan withstand high temperatures of 2200°C.
The thickness of ceramic PCB ranges from 0.25mm to 3.0mm.
The thickness of ceramic PCB mainly depends on its application field and design requirements. Conventional board thicknesses include 0.25mm, 0.38mm, 0.635mm, 0.8mm, 1.0mm, 2.0mm and 3.0mm, etc. These thicknesses include the thickness of the board itself and the additional thickness of the process layer (such as circuit, solder mask, copper thickness, surface treatment, etc.) Therefore, the finished thickness of ceramic PCB is the thickness of the board plus the thickness of the process layer.
Ceramic PCBs have different types of substrates, such as alumina, aluminum nitride, silicon nitride and silicon carbide, each with its own characteristics of thermal conductivity, strength, insulation, etc. When choosing a ceramic PCB, you need to consider power, temperature, cost and manufacturing difficulty.
Aerospace:The high performance characteristics of ceramic PCB make it an indispensable electronic component in the aerospace field, ensuring the reliable operation of avionics equipment under extreme conditions.
Military: In military applications, the durability and stability of ceramic PCB are essential to ensure the long-term reliable operation of equipment, especially in environments that require high reliability.
Automotive electronics:With the continuous improvement of automotive electronics, ceramic PCBs meet the high performance and high reliability requirements of automotive electronic equipment with their excellent electrical properties and high temperature resistance.
Telecommunications: In the telecommunications field, the excellent electrical properties and signal integrity of ceramic PCBs ensure the stable operation of high-frequency communication systems, and are an important support for the development of modern communication technology.
LED lighting, semiconductor coolers, high-power semiconductor modules, power control circuits, electronic heaters, intelligent power devices, power hybrid circuits, high-frequency switching power supplies, solid-state relays: In these fields, ceramic PCBs provide guarantees for the stable operation of equipment with their high thermal conductivity, chemical resistance and reliability.
With 20 years of experience in Ceramic PCB R&D, design, and manufacturing, BEST Ceramic Substrates Board is the top three ceramic substrate source factories in Shenzhen, China. Obtained ISO9001, IATF16494, UL, RoHS certification, a one-stop service provider from material procurement, design guidance to production.
Is FR4 ceramic? FR4 is not ceramic. FR4 is a glass fiber reinforced plastic, which is a commonly used electronic industry material, mainly used to make printed circuit boards (PCBs). FR4 material has good electrical insulation and mechanical properties, low cost, and is therefore widely used in situations where electronic connections are required. Ceramics are an inorganic non-metallic material, usually based on aluminum oxide, aluminum nitride or beryllium oxide, with extremely high thermal conductivity and dielectric properties, and are usually used in high temperature, high frequency and high power circuit applications, such as LED lights, power amplifiers, semiconductor lasers, etc.
FR4 circuit boards are widely used in the manufacture of electronic devices, including but not limited to LED lights, power modules, electric vehicle motor drivers, etc. It is a low-cost and widely used printed circuit board material. Ceramic substrates are mostly used in high thermal conductivity fields due to their excellent physical and chemical properties, such as chip testing and production of IC substrates.