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Semiconductor Spares
-
11-50 Employees
2005
Key takeaway
Semiconductor Spares is a leading global supplier of surplus semiconductor manufacturing equipment and parts, offering a range of services to streamline the procurement process. With over 30 years of industry knowledge, the company ensures high-quality products and a commitment to maximizing returns on surplus inventory.
Reference
Core business
Semiconductor Manufacturing Equipment Company | Semiconductor Used Equipment Suppliers
Leading semiconductor equipment company providing high-quality spares and solutions for efficient manufacturing. Explore our offerings now!
Polar Semiconductor
Bloomington, United States
B
501-1000 Employees
1962
Key takeaway
Polar Semiconductor is a major player in the semiconductor manufacturing sector, operating a state-of-the-art facility that produces thousands of semiconductors weekly. Their specialized foundry capabilities and commitment to quality, including a significant cleanroom space, enable them to deliver advanced, custom semiconductor solutions for various applications.
Reference
Service
Semiconductor Manufacturing | Silicon Wafer Manufacturing | Polar
Polar's semiconductor manufacturing process and services utilize cutting-edge tools to deliver high-voltage semiconductors for a rapid run to market.
ProperSys Corporation
Phoenix, United States
B
11-50 Employees
2020
Key takeaway
The company, Propersys, specializes in providing professional facility turnkey projects and system engineering services specifically tailored for the semiconductor fabrication industry. Their commitment to high-quality production and execution has made them a preferred partner for leading semiconductor manufacturers.
Reference
Core business
Propersys
Semiconductor Facility Engineering and Turnkey Solution
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MEMC Electronic Materials
O’Fallon, United States
B
1001-5000 Employees
1984
Key takeaway
GlobalWafers is a prominent player in semiconductor technology, offering advanced solutions to major chip manufacturers. The company emphasizes innovation and quality through its integrated manufacturing strategy, producing high-purity silicon tailored to meet specific customer needs, which enhances yield and delivery efficiency.
Reference
Product
Semiconductor-Wafer-Manufacturing-550 - GlobalWafers
Masimo Semiconductor, Inc.
Hudson, United States
B
11-50 Employees
2012
Key takeaway
Masimo Semiconductor specializes in the development and manufacturing of III-V epitaxial wafers and opto-electronic devices, offering custom solutions that enhance product differentiation. Their extensive capabilities, including advanced wafer processing and a complete fabrication line, facilitate a fast transition from prototype to high-volume production.
Reference
Product
Foundry Services - Masimo Semiconductor
Fabrication, Development & Production Masimo Semiconductor operates a complete compound semiconductor device fabrication line focused on the fabrication of custom devices, as well as development, prototyping, pilot production and manufacturing. Capabilities of the custom and production wafer processing laboratory at Masimo Semiconductor range from prototype development to full production and include CAD design of photolithographic …
SUSS MicroTec
Garching bei München, Germany
A
501-1000 Employees
1949
Key takeaway
The SUSS MicroTec Group is a prominent supplier of equipment and process solutions specifically for semiconductor manufacturing, with a strong focus on backend lithography, wafer bonding, and photomask processing. Their extensive experience and diverse product portfolio, including innovative platforms for permanent wafer bonding, position them as a technology leader in the industry.
Reference
Product
Semiconductor Manufacturing Technologies | SUSS MicroTec
Semefab Ltd.
United Kingdom
A
51-100 Employees
1986
Key takeaway
Semefab, a semiconductor manufacturer established in 1986, specializes in a diverse range of semiconductor technologies, including MEMS sensors and CMOS/Bipolar devices. With a commitment to quality and environmental compliance, Semefab operates two wafer fabs that enable the production of high-quality semiconductor devices, ensuring ultra clean characteristics essential for advanced applications.
Reference
Core business
Semiconductor Manufacturers | Semefab
Semefab are semiconductor manufacturers with an impressive track record of process development, process set-up and volume foundry
Provider
Pendik, Turkey
C
11-50 Employees
2018
Key takeaway
Provider is a regional technology group operating in Turkey and Europe, collaborating with global IT manufacturers and service providers. They offer innovative solutions in areas like IoT, big data and analytics, and cloud technologies.
Reference
Product
Technology – PROVIDER
Semiconductor Industry Association
Washington, United States
B
11-50 Employees
1977
Key takeaway
The Semiconductor Industry Association (SIA) highlights the critical role of semiconductors in driving innovations for a smarter and more efficient digital economy. They focus on industry priorities such as domestic manufacturing and addressing challenges through initiatives like the White House Working Group on Semiconductors.
Reference
Core business
Profile - Semiconductor Industry Association
Semiconductor Equipment Corp
Moorpark, United States
B
11-50 Employees
1975
Key takeaway
The Semiconductor Equipment Corporation specializes in designing and manufacturing a wide range of equipment for semiconductor manufacturing and electronics packaging, including assembly, rework, and handling tools. With a strong reputation and extensive experience, the company provides essential support and spare parts for production units used in the development of microelectronic devices.
Reference
Core business
Semiconductor Equipment Corporation – Forty Years of Innovation
Technologies which have been searched by others and may be interesting for you:
Semiconductor manufacturing involves the process of producing semiconductor devices that are essential for various electronic applications. This complex process includes several stages such as design, fabrication, assembly, and testing. During fabrication, silicon wafers are treated with various chemicals and processes to create integrated circuits, which are the building blocks of modern electronics. The manufacturing process requires advanced technology and precision equipment to ensure the quality and performance of the semiconductors. Cleanroom environments are maintained to prevent contamination, while photolithography techniques are employed to imprint circuit patterns onto the silicon wafers. As a result, semiconductor manufacturing is a critical component of the electronics industry, driving innovation in devices like smartphones, computers, and automotive systems.
The semiconductor manufacturing process involves several intricate steps that transform raw materials into functional electronic components. Initially, a silicon wafer is created from purified silicon, which serves as the substrate for semiconductor devices. The process begins with oxidation, where a thin layer of silicon dioxide is formed on the wafer's surface to act as an insulator. Next, photolithography is employed to transfer circuit patterns onto the wafer. This involves applying a photosensitive material, or photoresist, to the wafer, exposing it to ultraviolet light, and developing it to reveal the desired patterns. Following this, etching removes unwanted material, creating the intricate circuit designs. Doping introduces impurities into the silicon to modify its electrical properties, allowing for the creation of p-type and n-type semiconductors. Multiple layers are built up through successive applications of these processes, including deposition techniques like chemical vapor deposition (CVD) and physical vapor deposition (PVD). Finally, the wafers undergo packaging, where they are sliced into individual chips, tested for functionality, and enclosed in protective materials. This comprehensive process ensures the production of high-performance semiconductors crucial for modern electronics.
1. Wafer Fabrication
This stage involves creating the semiconductor wafers from raw silicon. The process includes layering materials, etching patterns, and doping to create the electronic properties needed for various components.
2. Assembly and Packaging
After fabrication, the semiconductor devices are diced from the wafers and packaged for protection and connectivity. This step is crucial for ensuring reliability and performance in electronic applications.
3. Testing
Final testing is performed to ensure that each semiconductor device meets the required specifications. This includes functional tests and quality assurance to eliminate defective products before they reach the market.
In semiconductor manufacturing, a variety of materials are essential for creating integrated circuits. Silicon is the primary substrate material due to its excellent electrical properties and availability. Other critical materials include gases such as nitrogen and argon, which are used in various processes. Photoresists, which are light-sensitive materials, play a crucial role in photolithography, allowing for pattern transfer onto the silicon wafers. Additionally, metals such as copper and aluminum are commonly used for interconnects, while dielectrics like silicon dioxide and silicon nitride serve as insulating layers. These materials work together to facilitate the intricate processes that define modern semiconductor devices.
Technological advancements have significantly reshaped semiconductor manufacturing, leading to improved efficiency and performance. The introduction of cutting-edge lithography techniques, such as extreme ultraviolet (EUV) lithography, allows for the creation of smaller, more powerful chips by enabling finer feature sizes on silicon wafers. Additionally, automation and robotics in production lines enhance precision and speed, reducing human error and operational costs. Furthermore, advancements in materials science have led to the development of new semiconductor materials, such as gallium nitride (GaN) and silicon carbide (SiC), which offer superior performance in high-temperature and high-frequency applications. These innovations not only boost the overall efficiency of semiconductor devices but also expand their applicability in emerging technologies, including artificial intelligence, IoT, and electric vehicles.
Some interesting numbers and facts about your company results for Semiconductor Manufacturing
Country with most fitting companies | United States |
Amount of fitting manufacturers | 7452 |
Amount of suitable service providers | 6602 |
Average amount of employees | 11-50 |
Oldest suiting company | 1949 |
Youngest suiting company | 2020 |
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Some interesting questions that has been asked about the results you have just received for Semiconductor Manufacturing
What are related technologies to Semiconductor Manufacturing?
Based on our calculations related technologies to Semiconductor Manufacturing are Magnets, Printed Electronics, Industrial Amplifiers, Electronic Transducers, Electronic Oscillators
Who are Start-Ups in the field of Semiconductor Manufacturing?
Start-Ups who are working in Semiconductor Manufacturing are ProperSys Corporation
Which industries are mostly working on Semiconductor Manufacturing?
The most represented industries which are working in Semiconductor Manufacturing are Electronics and Electrical engineering, Other, IT, Software and Services, Semiconductor, Manufacturing
How does ensun find these Semiconductor Manufacturing Companies?
ensun uses an advanced search and ranking system capable of sifting through millions of companies and hundreds of millions of products and services to identify suitable matches. This is achieved by leveraging cutting-edge technologies, including Artificial Intelligence.