Ananant Systems Joins India Electronics And Semiconductor Association To Drive Innovation Read more: https://lnkd.in/gi9hXrQ3 hashtag #TechInnovation #IESA #AnanantSystems #Electronics #Semiconductors
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Over the previous blog posts in this series, we explored every process that goes into making a semiconductor integrated circuit (IC). Over the course of the process leading up to validation, semiconductor manufacturers spend a sizeable amount of expenses creating new components as part of the overall design. With so many complex tasks happening at a minuscule level, it is imperative that the IC functions fully and properly under all possible conditions and use cases as desired by the end-user. This is validation. In this final part of our multi-authored blog series, we explore the frontiers of validation and how it impacts the world of semiconductor development. Read on: https://lnkd.in/gBqF9tM3 #Validation #Semiconductors #EngineeringTheChange
Decoding the Semicon Story Part 4: Next Frontiers of Validation
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Rectification:- The remarkable property of Semiconductor Diode!! One of the most fundamental components of Electronics is the Semiconductor diode which is commonly known as the PN junction diode. Individually, when P & N type semiconductors were studied, it has been observed that their behavior resembles the resistor. That means individual P & N type semiconductors can conduct equally in both positive & negative direction & behaves like a linear device. When a P & N type of semiconductor is joined metallurgically, it has been encountered that this combination behaves differently from individual semiconductors. Here, metallurgical joining means, the addition of trivalent impurities into one end & pentavalent impurities into another end of the intrinsic (chemically pure) semiconductor. This metallurgically joined P & N type semiconductor is said to be a PN junction diode. Initially, when the diode operates in an unbiased condition meaning, the diode is working without an external power supply then, the diffusion current will flow till the formation of a depletion region & after that only the drift current flows. For diffusion current majority of charge carriers of the P & N region are responsible & it is measured in mili- Amperes. While drift current flows due to minority carriers, measured in micro- Amperes & it is temperature dependent. When the P of the diode is connected with the positive & N is connected with the negative terminal of the external power supply, the diode is said to be forward-biased. In this bias, the diffusion current dominates the drift current, and the diode works like a closed switch. On the contrary, under reverse bias ; P is connected to the negative & N is connected to the positive of the external power supply, and the diffusion current stops & drift current will flow. And, in this bias, the diode works like an open switch. That means, the diode conducts unequally. It is conducted heavily in forward bias but, poorly or negligibly in reverse bias. Thus, unlike the resistor diode falls under the category of a non-linear device. The property of the conduction of current only in one direction is termed rectification which is a unique property of the PN junction diode. For this reason, the PN junction diode is used as a rectifier in many electric circuits. The invention of the semiconductor diode was one of the major practical developments in the history of semiconductor technology. Also, it was one of the stepping stones to further semiconductors developments to be made.
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The Worldwide Semiconductor Equipment Market Statistics (WWSEMS) Report has revealed that billings for semiconductor manufacturing equipment in Q3 fell by 11% year-on-year to $25.6 billion. Additionally, there was a 1% decline in billings compared to the previous quarter. SEMI CEO Ajit Manocha attributed the Q3 2023 dip in equipment billings to softening chip demand. However, he also highlighted China's strong demand and spending power for mature-node technologies, which indicates the industry's resilience and long-term growth potential. #electricalengineering #electronics #embedded #embeddedsystems #electrical
Q3 SEMI Billings Decline 11% YoY and 1% QoQ
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Learn how mission-critical devices drive system-level test expansion in this interview with Advantest's Sri Ganta and Semiconductor Engineering: https://bit.ly/3KA69Af
Mission-Critical Devices Drive System-Level Test Expansion
https://semiengineering.com
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The article from Analytics India Magazine lists the top 9 semiconductor Global Capability Centers (GCCs) in India. These centers are highlighted for their contributions to the semiconductor industry, focusing on various functions such as research and development, design, and innovation. The piece also discusses the strategic importance of these GCCs to their parent companies and their role in bolstering India's position in the global semiconductor market. https://lnkd.in/dsCiE6KJ
Top 9 Semiconductor GCCs in India
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SEMI today applauded the first award of U.S. CHIPS and Science Act incentives to strengthen the US semiconductor industry ecosystem: The CHIPS and Science Act provides a 25% tax credit for U.S. facilities that produce semiconductors or chipmaking equipment and $52 billion in funding for new or updated semiconductor-related manufacturing programs. The funding includes $39 billion for grants available to semiconductor manufacturers as well as equipment and materials suppliers and $11 billion for federal semiconductor research programs. Visit SEMI Global Advocacy to learn more about public policy efforts and developments, and SEMI Workforce Development for more information on efforts to address the microelectronics industry’s talent needs. #semiconductor #semiconductorindustry #tsmc #intel #samsung #imec #globalfoundries #smic #umc #innovation #ai #computerchips #machinelearning #broadcomm #transistor #cowos #skhynix #microntechnology #kioxia #nanya #toshiba #ymtc #yangtze #scaling #moore #manufacturing #production #fabrication #apple #nvidia #arm #amd #qualcomm #ibm #huawei #chip #chipdesign #chipmaker #memory #logic #cpu #processor #FEOL #BEOL #interconnects #dram #nand #3Dnand #nandflash #storage #asml #euv #lithography #pellicle
SEMI Applauds Advancement of U.S. CHIPS and Science Act Incentives
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Tata Group, Tower Semiconductor, and Texas Instruments are among the nine companies that have reportedly submitted bids to the government to modernize the Semiconductor Laboratory (SCL) in Mohali. The government has earmarked $1 billion for its modernization. Find out more details about the modernization project in this news coverage. #semiconductor #India #SCL #Mohali #Government #Modernization #Investment #TataGroup #TowerSemiconductor #TexasInstruments #Chipmaking #Tech Tower Semiconductor Texas Instruments
Mohali Chip Lab Revamp: Tata, Tower Among 9 Bidders
blackridgeresearch.com
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The global semiconductor industry is gearing up for a record-breaking year as semiconductor capacity is projected to reach an unprecedented 30 million wafers per month in 2024, according to reports from SEMI. The article delves into the factors contributing to this surge, citing robust demand across various sectors, including automotive, consumer electronics, and industrial applications. As the world increasingly relies on semiconductor technologies, this record-high capacity highlights the industry's efforts to meet the growing demands of a tech-driven era. The SEMI report sheds light on the pivotal role semiconductors play in shaping the global digital landscape. https://lnkd.in/g2cjqaAz #SemiconductorIndustry #TechProjections #RecordHighCapacity #GlobalTechDemand #SEMIReport #DigitalTransformation #TechInnovation #WafersProduction #TechNews #SemiconductorMarketTrends #UnderstandingEnterpriseTech #EnterpriseTechnologyNow #EnterpriseTechnologyToday
Global Semiconductor Capacity Projected to Reach Record High 30 Million Wafers Per Month in 2024, SEMI Reports
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🗞 Electronic News! 🗞 The parent company of CXMT, Innotron, has announced a significant investment in the manufacturing plant for high-bandwidth memory DRAM components. These components are crucial for AI acceleration within datacenter servers, making this investment a strategic move in the semiconductor industry. According to a report by Bloomberg, Innotron secured funds for the advanced assembly fab by signing a contract with the local government in June through a Shanghai subsidiary. The plant is expected to commence production in mid-2026, marking a major milestone for the company's expansion plans. #electricalengineering #electronics #embedded #embeddedsystems #electrical #computerchips Follow us on LinkedIn to get daily news: HardwareBee - Electronic News and Vendor Directory
AI Memory Packaging Fab to Receive $2.35B Investment from CXMT
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According to Semiconductor Intelligence, the question of whether the US Chips Act has been successful in increasing investment in semiconductor wafer fabs in the U.S. is being asked. To answer this question, Semiconductor Intelligence provides a table below that showcases major U.S. fab projects announced in recent years. The total near-term investment for these projects amounts to $142 billion. It is worth noting that most of these projects were announced prior to the passage of the Chips Act. However, it is likely that these companies anticipated future U.S. government subsidies, as indicated by the subsidies listed in the table, which are provided by state and local governments. Good Jobs First, an organization that tracks government financial assistance to businesses, keeps a record of these subsidies. #electricalengineering #electronics #embedded #embeddedsystems #electrical
Assessing the Success of the US Chips Act: A Closer Look
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