🌟 Silicon is the main raw material used in chip manufacturing, and it is derived from silica sand by removing oxygen through heating.
🔬 To create high-quality chips, an extremely pure mono crystalline silicon ingot called a bull is fabricated with very low impurity levels.
📏 The silicon ingot is then cut into wafer-thin slices, which serve as the foundation for chip production, with larger diameters allowing for more space for chips.
🔬 Doping with boron and phosphorus atoms makes silicon conductive.
💡 Transistors, made of P and n conductive layers, are crucial components in microchips.
🧪 Controlling electric voltages and currents is the main function of transistors.
📌 Microchips are made through a process that involves the formation of a channel underneath the gate of a transistor, allowing electrons to flow and create an electrical circuit.
📌 The manufacturing process starts with the layout and design phase, where complex chips with billions of transistors are designed and simulated.
📌 The design is transferred to photo masks, which are used as templates in the chip fabrication process that takes place in a cleanroom to ensure flawless replication of microscopic structures.
🔬 Microchip manufacturing requires extremely clean environments with sophisticated ventilation and filtration systems.
💼 Strict dress codes and access restrictions are in place in cleanroom production areas.
🔌 The process involves oxidizing the wafer, applying a photoresist material, exposing it to light, and etching off the exposed oxide layer.
🔬 Microscopic layers are removed from the substrate in the reaction chamber.
🔌 Electrically conductive polysilicon is deposited on an insulation layer.
🧪 Impurity atoms are introduced into the silicon to change its conductivity.
🛠️ Metal alloys are deposited onto the wafer for contacts and interconnections.
✨ A chemical mechanical process polishes away excess material for a smooth finish.
🎥 The video is about chip manufacturing and how microchips are made.
💡 During the fabrication process, individual chips are separated from a wafer using a sawing process and a scribe line is left between them.
🔧 After fabrication, the chips are assembled into packages, terminals are attached, and the final semiconductor device is created.
🔬 Researchers use scanning electron microscopes to ensure high quality levels in chip production process.
📏 Microchips are extremely small compared to human hair, and the equipment used to analyze defects is highly precise.
⚙️ Precision and quality are crucial in every stage of chip manufacturing, from silicon bulls production to quality control.
🌍 Micro Electronics is essential for creating innovative semiconductor solutions that improve lives, conserve energy, and are accessible to all.
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