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3inch P Type Silicon Wafer
3inch P Type Silicon Wafer
3inch P Type Silicon Wafer
3inch P Type Silicon Wafer
3inch P Type Silicon Wafer
3inch P Type Silicon Wafer

3inch P Type Silicon Wafer

Price 2900.0 INR/ Piece

MOQ : 1 Piece

3inch P Type Silicon Wafer Specification

  • Product Name
  • Silicon Wafer P Type: Diameter-3 inch
  • Product Type
  • P Type
  • Material
  • Single Crystal
  • Color
  • Shinning grey
  • Application
  • Semi conducted, Device, Solar, Substrate
  • Shape
  • Circular
 

3inch P Type Silicon Wafer Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Payment Terms
  • Paypal
  • Delivery Time
  • 5 Days
  • Packaging Details
  • Wafer Box
  • Main Export Market(s)
  • Asia, North America, Eastern Europe, Middle East
  • Main Domestic Market
  • All India
  • Certifications
  • Technical Data sheets are available upon request
 

About 3inch P Type Silicon Wafer

Product Details

  • Single Crystal Silicon Wafer : Diameter-3 inch
  • Diameter: 76.2mm 0.3mm -3 inch
  • Type: P
  • Orientation:100  Single Crystal
  • Thickness: 400 10um
  • Resistivity: 1-10 ohm-cm
  • Single side polished
  • Any Customized size is also possible

Introduction
A silicon wafer is a thin, flat slice of crystalline silicon that serves as the foundational substrate for the fabrication of semiconductor devices. Silicon wafers are the backbone of modern electronics and are used extensively in integrated circuits (ICs), microprocessors, memory chips, sensors, and photovoltaic devices. Due to silicons excellent electrical properties, thermal stability, and abundance, it has become the most widely used semiconductor material in the world.

Silicon wafers are manufactured with extremely high purity and precise crystal orientation to ensure reliable electrical performance. They form the starting material upon which complex electronic circuits are built through processes such as doping, oxidation, photolithography, and etching.


Material Properties of Silicon Wafer
The popularity of silicon wafers is attributed to their superior physical, electrical, and chemical properties. High-purity silicon crystals are grown using methods such as the Czochralski (CZ) process or the Float Zone (FZ) process.

Key properties include:
Excellent semiconducting behavior with controllable conductivity
High thermal conductivity for effective heat dissipation
Strong mechanical strength and dimensional stability
Ability to form a high-quality native oxide (SiO)
Chemical compatibility with standard semiconductor processing techniques

Silicon wafers are available in various diameters such as 2-inch, 4-inch, 6-inch, 8-inch, and 12-inch, with thickness carefully controlled to meet device fabrication requirements.


Types of Silicon Wafers

1. Based on Conductivity Type
Silicon wafers are classified as P-type or N-type depending on the dopant used. P-type wafers are doped with elements such as boron, while N-type wafers are doped with phosphorus, arsenic, or antimony. The conductivity type directly influences the electrical behavior of semiconductor devices.

2. Based on Crystal Structure
Most silicon wafers are single-crystal (monocrystalline), offering uniform electrical properties across the entire wafer. Polycrystalline silicon wafers are also used, especially in solar cell applications where cost efficiency is important.

3. Based on Surface Finish
Silicon wafers are supplied with different surface finishes, including single-side polished (SSP), double-side polished (DSP), and unpolished wafers. Polished wafers are essential for advanced microfabrication processes that require smooth and defect-free surfaces.


Applications of Silicon Wafer

1. Semiconductor and Integrated Circuits
Silicon wafers are the core material used in the manufacture of integrated circuits, microprocessors, logic devices, and memory chips. Almost all electronic devices, including computers, smartphones, and communication systems, rely on silicon-based ICs.

2. MEMS and Sensors
Silicon wafers are widely used in Micro-Electro-Mechanical Systems (MEMS) such as pressure sensors, accelerometers, gyroscopes, and microphones. The mechanical strength and process compatibility of silicon make it ideal for precise micro-scale structures.

3. Solar Cells and Photovoltaics
In the renewable energy sector, silicon wafers are used to manufacture crystalline solar cells. Both monocrystalline and polycrystalline silicon wafers convert sunlight into electricity with high efficiency and long-term stability.

4. Power Electronics
Silicon wafers are used in power devices such as diodes, transistors, MOSFETs, and IGBTs. These devices are essential for power management in electric vehicles, industrial drives, power supplies, and renewable energy systems.

5. Research and Development
Silicon wafers are extensively used in academic and industrial research laboratories for material studies, thin film deposition, device prototyping, and semiconductor process development.

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