Electronics supply – Micro Image Video http://microimagevideo.com/ Tue, 27 Jul 2021 08:35:08 +0000 en-US hourly 1 https://wordpress.org/?v=5.8 https://microimagevideo.com/wp-content/uploads/2021/07/icon.png Electronics supply – Micro Image Video http://microimagevideo.com/ 32 32 Global Oxygen-Free Copper Market Generated $ 20 Billion Revenue in 2020: P&S Intelligence https://microimagevideo.com/global-oxygen-free-copper-market-generated-20-billion-revenue-in-2020-ps-intelligence/ Tue, 27 Jul 2021 08:30:00 +0000 https://microimagevideo.com/global-oxygen-free-copper-market-generated-20-billion-revenue-in-2020-ps-intelligence/ NEW YORK, July 27, 2021 / PRNewswire / – The growing demand for high-quality materials in the defense, transportation and aerospace industries, the increasing use of oxygen-free copper in high-end AV systems, and the material’s high electrical conductivity are some of the major factors driving the expansion of the global oxygen-free copper market. In addition, […]]]>

NEW YORK, July 27, 2021 / PRNewswire / – The growing demand for high-quality materials in the defense, transportation and aerospace industries, the increasing use of oxygen-free copper in high-end AV systems, and the material’s high electrical conductivity are some of the major factors driving the expansion of the global oxygen-free copper market. In addition, the growing deployment of electric vehicles (EVs) and the rising demand for oxygen-free copper in the electronics and electrical industry are also expected to propel the market expansion. Due to these factors, the market has reached nearly $ 20.0 billion revenue in 2020 and is expected to experience a huge expansion during 2021-2030, according to market research firm P&S Intelligence.

The COVID-19 pandemic has massively hampered the operations of several industries, due to the imposition of lockdowns and travel bans and the closure of factories and offices in several countries to mitigate the spread of the infection . Additionally, lockdowns and social distancing protocols imposed by multiple governments have caused disruption in the supply chain, which in turn has affected sales of finished products, hampering market progress.

Obtain a copy of this report at @ https://www.psmarketresearch.com/market-analysis/oxygen-free-copper-market/report-sample

The oxygen-free copper market is divided into electronic oxygen-free and oxygen-free categories based on the quality. Among these, the oxygen-free category held the largest market share in 2020, due to the large-scale use of oxygen-free copper wires in the automotive industry, due to the increasing requirement of wires having high formability and good conductivity. in automobiles.

The oxygen-free copper market is also categorized into strips, wires, rods and bus bars, depending on the product. Among these, the category of wires dominated the market in 2020, due to the ability of oxygen-free copper wires to transmit low frequency sound and exhibit high conductivity and durability. In addition, the growing demand for these wires in the automotive, electronics and electrical industries is also contributing to the category’s expansion in the market.

Browse Detailed Report With COVID-19 Impact Analysis on Oxygen-Free Copper Market Research Report: By Category (Oxygen-Free, Oxygen-Free Electronics), Product (Wires, Tapes, Bus Bars, Rods), End User (Electrical & Electronics, Automotive) – Global Industry Analysis & Growth Forecast to 2030 @ https://www.psmarketresearch.com/market-analysis/oxygen-free-copper-market

Globally, Asia Pacific (APAC) held the largest share of the oxygen-free copper market in 2020, and this trend is also expected to continue in the years to come. This will be due to declining manufacturing costs, due to the availability of cheap raw materials and labor, and the increasing adoption of electric vehicles, due to growing concerns over rising costs. greenhouse gas emissions in the region.

Players operating in the global oxygen-free copper market are focusing on acquisitions to strengthen their geographic presence. For example, KME SE announced in July 2019 that it finalized the transaction with ECT-European Copper Tubes Limited and finalized the acquisition of Tréfimétaux SAS. With this acquisition, KME SE obtains 100% control of Tréfimétaux SAS in $ 2.3 million.

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Mitsubishi Materials Corporation, Libo Group, KME Germany GmbH, Metrod Holdings Berhad, Hitachi Metals Neomaterials Ltd., Farmer’s Copper Ltd., KGHM Polska Miedz SA, Hussey Copper Ltd., Sam Dong Co. Ltd., Aviva Metals Inc. and Citizen Metalloys Ltd. is one of the major players in the global oxygen-free copper market.

Browse other related reports

Self-Healing Materials MarketGeographically, Europe held the dominant share of the Self-healing Materials market during the historical period (2015-2020), and it is expected to grow at a substantial growth rate during the forecast period.

Metal Finishing Equipment MarketGeographically, the APAC metal finishing equipment market accounted for the largest share in 2019, and it is also expected to register lucrative growth during the forecast period.

About P&S Intelligence

P&S Intelligence is a provider of market research and consulting services addressing the market information needs of growing industries around the world. Providing the bedrock of market intelligence, P&S as an enterprising research and consulting company, believes in providing in-depth landscape analyzes on the ever-changing market scenario, to enable companies to make informed decisions. and to base their business strategies with astuteness.

Contact:

Prajneesh Kumar
P&S Intelligence
Contact: + 1-347-960-6455
E-mail: [email protected]
Web: https://www.psmarketresearch.com

SOURCE P&S Intelligence


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Dollar General Has Everything On Your Kid’s School Supply List – Here Are 5 Ways To Maximize Your Savings https://microimagevideo.com/dollar-general-has-everything-on-your-kids-school-supply-list-here-are-5-ways-to-maximize-your-savings/ Fri, 23 Jul 2021 14:32:33 +0000 https://microimagevideo.com/dollar-general-has-everything-on-your-kids-school-supply-list-here-are-5-ways-to-maximize-your-savings/ For some, the start of a new school year is a reminder that time is running out. For others, it’s a welcome return to calm (and fewer requests for snacks). No matter what type of mom you are, back to school is here, and that means kids need EVERYTHING. Your first stop? Your neighbourhood General […]]]>

For some, the start of a new school year is a reminder that time is running out. For others, it’s a welcome return to calm (and fewer requests for snacks). No matter what type of mom you are, back to school is here, and that means kids need EVERYTHING.

Your first stop? Your neighbourhood General Dollar. You will find everything on your child’s list of supplies and then some. It’s a hassle-free one-stop-shop with so many ways to save – starting with this one DG digital coupon for $ 2 of $ 10. Take this list of supplies – Dollar General itself created one for you!

1. Buy essential supplies for $ 1

Even though schools weren’t providing these multi-page supply lists, there are some things we know our kids need for every new school year. You know things we necessary in ancient times. Well, Dollar General has it all: the Ticonderoga pencils, composition notebooks, files, bindings, erasers, the scissors – you got the idea. If you need it for the home, Dollar General has it at great prices with plenty of items starting at $ 1. 100 back to school items at $ 1 to be exact. So you can buy your favorite brands and DG for whatever you need in the $ 1 section.

2. Download digital coupons for the brands you love

If you grew up on Crayola pencils, these are probably the only pencils you will buy. Even with Elmer’s glue. Dollar General offers all your favorite brands like Sharpie, Bic, Scotch, Post-It, Duck Tape and even Lysol. Save more on famous brands with their digital coupon of $ 2 on $ 10 DG. On Saturdays, save even more if you have several children with their $ 5 off the $ 25 DG digital coupon.

Of course, Dollar General also offers many equally good but even more affordable brands such as Office Hub. There are literally 100 back-to-school items available for just a dollar. Download the General application of the dollar to make shopping even easier with digital shopping lists and to maximize your savings.

3. $ 5 backpacks and snack packs

Almost every kid wants a new backpack and a new lunchbox to kick off a new school year. And honestly, they usually have need new because, wow, these things really take a hit. Dollar GenresI has the cutest backpacks and lunchboxes starting at just $ 5. They also have everything we need to get back into the school routine when it comes to feeding children. Which may or may not mean more breakfasts and snacks in the car – hey, no judgment here. You will find Lunches, Capri Sun, Scooby-Doo Fruit Snacks, Snack Pack Pudding Cups – all for less than $ 3. You can also get lunch essentials like Bagel bites, fruit cups and Ravioli Chef Boyardée for just a dollar. Dollar General also has it close at hand snack boxes and organizers. Just make sure to download the General application of the dollar to get all of their coupons and additional savings.

4. Get some fun extras they’ll love for a low price

Just like us, kids love to relax with their music in the car. But we don’t always do it, hum, share the same musical tastes. Let them play their favorites with Vibe bluetooth earphones for only $ 10, or Color Tunes Headphones for just a dollar. (Yes, you read that right.) General Dollar also has other electronics at obvious prices like flash drives for $ 12 and calculators for a dollar.

5. Clean and save on safety essentials

This year more than ever, we are going the extra mile to keep our children safe and healthy. You can’t protect them from everything, but you can be sure to keep plenty of masks, tissues, and hand sanitizer on hand. General Dollar possesses children’s masks at only $ 2. You’ll want to grab a few extra bottles of Purell hydroalcoholic gel (only $ 3.00) and Lysol disinfectant wipes 35 units at just $ 2.65. Oh, and handkerchiefs. Lots and lots of fabrics. General Dollar has 4 packs of Puffs Plus Lotion for only 5 dollars.

Get everything on your list for less at General Dollar and prepare your children (and yourself!) for a fantastic school year!

General Dollar has shelves stocked with the best American brands and great deals so you can buy your entire list for less! Download the General application of the dollar to make shopping even easier with digital coupons and shopping lists.


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Electrolux Reports Strong Second Quarter Growth But Warns Of Supply Chain Uncertainty https://microimagevideo.com/electrolux-reports-strong-second-quarter-growth-but-warns-of-supply-chain-uncertainty/ Wed, 21 Jul 2021 11:05:29 +0000 https://microimagevideo.com/electrolux-reports-strong-second-quarter-growth-but-warns-of-supply-chain-uncertainty/ July 21, 2021 Consumer electronics giant Electrolux reported sales growth of nearly 40% in the quarter through June and returned to profit after the loss in the second quarter of 2020. Sales in the second quarter of this year reached SEK 30.3 billion (£ 2.56 billion) from SEK 23.47 billion in 2020. And while this […]]]>

Consumer electronics giant Electrolux reported sales growth of nearly 40% in the quarter through June and returned to profit after the loss in the second quarter of 2020.

Sales in the second quarter of this year reached SEK 30.3 billion (£ 2.56 billion) from SEK 23.47 billion in 2020. And while this quarter in 2020 recorded a loss of SEK 62 million of crowns, this year the company was back in the dark with operating profit of 1 crown. .98 billion

President and CEO Jonas Samuelson (pictured) said of the results: “A year ago, restrictions linked to the coronavirus pandemic resulted in significant volume drops, which we partially mitigated with actions temporary costs. Compared to the second quarter of 2019, organic sales growth was 16.4%.

“Strong demand as well as global supply shortages, especially of electronic components, have continued to be successfully addressed through the hard work of my colleagues and close collaboration with our suppliers. However, production efficiency and the adequacy of the composition of demand were negatively affected by irregular deliveries. “

Looking ahead, Samuelson added, “The electronic components market is expected to be a bit more constrained in the third quarter and therefore we anticipate challenges to fully meet the product mix requirements of the market. We continue to have a close dialogue with our suppliers to alleviate these supply issues as we expect the situation to remain uncertain for an extended period. “

Referring to the rising cost of raw materials, however, he cautioned against ongoing price increases: “We continue to fully offset headwinds from external factors, electronic components and logistics with price and believe that this will be the case for the full year as well. We have announced and started implementing additional price increases, taking effect gradually throughout the year. This while the costs of raw materials, electronic components and logistics are still increasing, which puts increased pressure on profitability and external cost factors.

Samuelson said Electrolux expected demand to normalize in the second half of 2021 with some regional variances, but he warned that the supply problem could worsen as the year progresses: ” The global sourcing challenges encountered in the first half of the year are expected to have a greater impact. in the second half of the year.

He added that Electrolux planned to maintain its outlook for the entire year, but added that “visibility remains limited due to the ongoing pandemic”.


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Top 5 Secrets of High Speed ​​PCBs Revealed by Professionals https://microimagevideo.com/top-5-secrets-of-high-speed-%e2%80%8b%e2%80%8bpcbs-revealed-by-professionals/ Tue, 20 Jul 2021 20:39:01 +0000 https://microimagevideo.com/top-5-secrets-of-high-speed-%e2%80%8b%e2%80%8bpcbs-revealed-by-professionals/ What you will learn: High speed printed circuit board design. Maintains signal integrity for faster signal transmission. Reduction of crosstalk in high speed PCBs. The vigorous competition in the electronics market means that developers have to keep changes in mind when designing systems. High speed PCBs are increasingly important for high performance solutions, but high […]]]>

What you will learn:

  • High speed printed circuit board design.

  • Maintains signal integrity for faster signal transmission.

  • Reduction of crosstalk in high speed PCBs.

The vigorous competition in the electronics market means that developers have to keep changes in mind when designing systems. High speed PCBs are increasingly important for high performance solutions, but high speed PCB assembly is expensive. That’s why you can’t experiment with these cards or generate a lot of prototypes. This article offers five tips to help you streamline and improve these high speed PCB designs while keeping costs down.

1. Design of the assembly

High speed assembly requires additional components compared to any other type of PCB assembly, like a conventional or rigid-flex assembly. These components change according to the needs of each application, but all must be given special care during the manufacturing phase. The main factors that professionals keep in mind during development include:

  • Noise is a very important factor to consider. Minimize noise generation from the source generating the power supply, as well as switch noise generated due to continuation of the power supply.

  • Crosstalk between traces should be cut off.

  • The consequence of bouncing off the ground must be reduced.

  • Termination of signal lines should be considered.

  • Make sure the impedance match is correct.

2. Design in board material and transmission line

The noise generated in the PCB is mainly due to the dielectric material used as a component to make the board. This also causes the generation of crosstalk signals. The high frequency signal directly impacts the PCB due to the strong absorption and high frequency of its dielectric material.

Signal transmission also affects signal performance and noise generation. The physical characteristics of trace tracks, such as width, length and thickness, affect the PCB and the separation between traces. Professionals generally use two routes for circuit layout: microstrip transmission and stripline transmission.

The microstrip transmission works on the outer layer of the PCB, while the stripline transmission works on the inner layers of the PCB. Multilayer PCB. The characteristics of both are almost identical, except for the speed. The microstrip is much faster than the stripline when it comes to modifying the separation of traces.

Impedance is a crucial consideration when developing a high speed PCB prototype.

3. Reduce crosstalk

Reducing crosstalk from nearby signals is important because disturbances will cause interference. It must be applied in microstrip and stripline transmission. Steps to reduce crosstalk include:

  • Try to minimize the gap between signals by handling them, thus preventing routing.

  • Place the transmission lines very close to each other towards the ground reference plane.

Parallel signage is important to some extent, but in the long run road signage is necessary. However, road signs are nothing more than a collection of short parallel track signals.

4. Maintain signal integrity

Signal integrity is essential for the signal to be delivered consistently from its source to destinations within the PCB Assembly. A high speed PCB signal is usually one end signal. To get the best result from a signal at one end, follow these rules:

  • In the trace, do not use vias.

  • For layout use only microstrip or stripline.

  • Decrease signal reflection.

  • Try to maintain a stable area between signals to avoid crosstalk.

5. PCB filtering and grounding

Filtering works well to avoid noise in high speed PCBs. A capacitor can be used in this case, it filters out low frequency noise.

For high speed assembly, grounding is a crucial factor. Ground bounce is a flexible function that regulates the switching of ground voltages. In high speed PCBs, ground bounces can be mitigated / suppressed using one of these methods:

  • Position the vias near the capacitor and unite them with the trace.

  • Connect the power supply with small traces.

  • Put a decoupling capacitor and place it near the IC.

  • Never exceed the buffer charge compared to the capacitor charge.

  • Apply surface mount technology to reduce capacity.

Conclusion

When you venture into manufacturing high speed circuit board assemblies, you may come across several new problems that require quick fixes. However, if you follow the above guidelines, which are maintained by professionals, you can easily deal with these issues.


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The semiconductor foundry market was valued at USD 83.32 billion in 2020 and is expected to reach USD 126.91 billion by 2026, registering a CAGR of 7.3%, during the period 2021-2026. https://microimagevideo.com/the-semiconductor-foundry-market-was-valued-at-usd-83-32-billion-in-2020-and-is-expected-to-reach-usd-126-91-billion-by-2026-registering-a-cagr-of-7-3-during-the-period-2021-2026/ Tue, 20 Jul 2021 12:48:00 +0000 https://microimagevideo.com/the-semiconductor-foundry-market-was-valued-at-usd-83-32-billion-in-2020-and-is-expected-to-reach-usd-126-91-billion-by-2026-registering-a-cagr-of-7-3-during-the-period-2021-2026/ The semiconductor foundry industry has seen strong revenue growth during the year 2020. Despite the effects of the COVID-19 pandemic, major vendors operating in this space have seen significant revenue growth in the year 2020. during the year, which is expected to increase further in 2021, due to growing demand for 5G smartphones and high […]]]>

The semiconductor foundry industry has seen strong revenue growth during the year 2020. Despite the effects of the COVID-19 pandemic, major vendors operating in this space have seen significant revenue growth in the year 2020. during the year, which is expected to increase further in 2021, due to growing demand for 5G smartphones and high performance computing (HPC) products such as PCs, tablets, game consoles, servers and workstations basic 5G.

New York, July 20, 2021 (GLOBE NEWSWIRE) – Reportlinker.com announces the publication of the report “Semiconductor Foundry Market – Growth, Trends, COVID-19 Impact, and Forecasts (2021 – 2026)” – https: // www .reportlinker .com / p06106031 /? utm_source = GNW

– Global demand for connected cars is growing at a rapid rate, and a significant portion of all new passenger vehicles produced in recent times include connected solutions. According to various sources and industry data, over 88% of all new vehicles sold in the United States in 2020 were connected. The demand for vehicles with in-vehicle cellular capabilities is increasing at a rapid rate, driving the demand for semiconductor components in industry.
– Foundries are increasingly focusing on the adoption of automation, ML and analytics. The advantages offered by these technologies, such as optimizing the production process and increasing yield without compromising quality, are driving their demand. With the high production capacities and lower costs, suppliers are expected to enter into higher production contracts, which will result in significantly higher supplies, covering the shortages present in various industries.
– Geographically, Asia-Pacific is expected to hold the dominant market share due to major markets such as South Korea, Taiwan and China; North America is expected to increase its investment in foundry business, with the United States focusing on expanding its domestic foundry business. Trade tensions between China and the United States during the Trump administration are expected to continue under the Biden administration. Recent events in China’s progress in unifying Taiwan with it are expected to affect the market.
– The cost of building state-of-the-art chip foundries has increased exponentially, putting pressure on the industry. This is where the number of chipmakers has consolidated lately. Performance improvements slow down, making specialized chips more and more attractive. The design decisions that help make chips universal can be suboptimal for some computing tasks.

Key market trends
The automotive industry will significantly witness the major growth of the market

– Semiconductors are the main components of automotive electronic components such as ECUs, infotainment systems and sensors. The auto industry has recovered, driven by increased demand for safer personal transportation. Additionally, the growth of electric and autonomous vehicles has driven the need for semiconductors.
– According to the International Energy Agency, sales of electric cars exceeded 2.1 million worldwide in 2019, surpassing 2018 – already a record year – to bring the stock to 7.2 million electric cars. After establishing itself as one of the leading markets for the sale of plug-in light vehicles, China has entered a phase of slowdown. Meanwhile, sales of electric vehicles in Europe’s five largest markets surged in 2020. Germany could become the largest market for plug-in electric vehicles due to a combination of regulations and incentive changes.
– In addition, the development of autonomous vehicles has also experienced rapid growth. According to the MHI 2020 Industry Report, it is expected that by 2025, the adoption rate of autonomous vehicles will reach 54%, down from just 18% in 2020. The growth of autonomous vehicles has also created demand for semi -conductors.
– The growth in the development of Advanced Driving Assistance Systems (ADAS) also contributes to the development of autonomous vehicles leading to the growth of the market studied. India’s Ministry of Roads and Motorways has announced that it is working on a mandate that will bring ADAS into all cars by 2022.
– Suppliers, such as Taiwan Semiconductor Manufacturing Co. (TSMC) and United Microelectronics Corp. (UMC), have announced that they are focusing on relocating their production to meet demand from automakers, such as Volkswagen and Toyota, among others. In addition, demand from companies such as Qualcomm and Apple has also caused delays in the supply of semiconductors. According to a new Automotive News survey (April 2021), 53% of respondents suggested sourcing chips from outside the United States, and 55% of manufacturers have looked for alternative chip sources outside the country.
– These factors have led to the entry of new companies into the studied market. For example, recently Intel announced the launch of a new company, Intel Foundry Services, to meet demand from automakers.

Asia-Pacific is expected to hold significant market share

– The Asia-Pacific region has the largest share of semiconductor foundries in the world, with the presence of large companies such as TSMC, Samsung Electronics, etc. Taiwan, South Korea, Japan and China are the main countries in the region with significant market share.
– China has a very ambitious semiconductor agenda. Supported by funding of $ 150 billion, the country is expanding its domestic integrated circuit industry and plans to further develop its chips. Greater China, which encompasses Hong Kong, China and Taiwan, is a geopolitical hotspot. The trade war between the United States and China is escalating tensions in a region where all the advanced process technologies are found, forcing many Chinese companies to invest in their semiconductor foundries.
– The number of newly registered chip-related companies in China has more than tripled in the first five months of the year compared to the same period in 2020, a further sign that China is sparing no effort in its quest for self-sufficiency in semiconductors, for example which the country relies heavily on imports and US technologies to meet domestic demand. According to Qichacha, from January to May 2021, China saw 15,700 new companies involved in everything from design to chip manufacturing.
– Japan aims to attract foreign companies with financial incentives to secure its own supply of chips and cope with the global shortage. Japan imports a large part of its semiconductors from abroad and wants to build a supply chain of this technology at home. In June 2021, Japan signed a JPY 37 billion semiconductor research project to develop chip technology in the country with TSMC. About 20 Japanese companies, including Hitachi High-Tech Corp., will work with TSMC on the project, with the Japanese government paying just over half the cost.
– South Korea said it will do everything it can to strengthen its critical semiconductor industry, with the government announcing a corporate plan to invest KRW 510 trillion and increased tax breaks to boost manufacturers’ competitiveness chips amid an acute global shortage of critical components. Semiconductors are already Korea’s biggest export. However, these are mainly memory, NAND flash memory, and DRAM memory products. The new plan aims to increase the foundry capacity of advanced logic chips.

Competitive landscape
The semiconductor foundry market is consolidated because a large share of the market is occupied by top players. In addition, due to the high installation cost of semiconductor foundry, new players find it difficult to enter the market. Major players include Taiwan Semiconductor Manufacturing Company (TSMC) Limited, Global Foundries, United Microelectronics Corporation (UMC), Semiconductor Manufacturing International Corporation (SMIC), Samsung Group, Dongbu HiTek, STMicroelectronics, among others.

– March 2021 – Powerchip Semiconductor Manufacturing Corporation (PSMC) announced an investment of NTD 278 billion for a 12-inch plant. The company plans to put a total capacity of 100,000 wafers per month and it will be put into production by 2023 in stages, generating around NTD 60 billion per year and more than 3,000 new jobs in Hsinchu and Miaoli regions.
– August 2020 – Hua Hong Semiconductor Ltd launched an integrated 90nm ultra-low leakage (ULL) flash memory (eFlash) and electrically erasable programmable read-only memory (EEPROM) processing platform to meet the needs of the industry. high capacity microcontroller unit (MCU).

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IoT Gateway Market Revenue To Surpass USD 20 Billion By 2027: Global Market Insights Inc. https://microimagevideo.com/iot-gateway-market-revenue-to-surpass-usd-20-billion-by-2027-global-market-insights-inc/ Mon, 19 Jul 2021 12:00:00 +0000 https://microimagevideo.com/iot-gateway-market-revenue-to-surpass-usd-20-billion-by-2027-global-market-insights-inc/ SELBYVILLE, Del., July 19, 2021 / PRNewswire / – According to the latest report “Market for IoT gateway devices by connectivity technology (Bluetooth, Wi-Fi, ZigBee, Ethernet, Z-Wave), component (microcontroller unit (MCU), Field Programmable Gate Array (FPGA), sensor, memory), application (Wearable Device, Healthcare, Automotive & Transportation, Building Automation, Industry, Consumer Electronics), Regional Outlook, Price Trends, Competitive […]]]>

SELBYVILLE, Del., July 19, 2021 / PRNewswire / – According to the latest report “Market for IoT gateway devices by connectivity technology (Bluetooth, Wi-Fi, ZigBee, Ethernet, Z-Wave), component (microcontroller unit (MCU), Field Programmable Gate Array (FPGA), sensor, memory), application (Wearable Device, Healthcare, Automotive & Transportation, Building Automation, Industry, Consumer Electronics), Regional Outlook, Price Trends, Competitive Market Share, and Forecast 2027 “, by Global Market Insights Inc., on market valuation of IoT gateways will cross $ 20 billion by 2027. Market growth is driven by the increasing adoption of robotics, process automation and Industry 4.0 in the manufacturing sector.

IoT gateway technology helps various manufacturers in the semiconductor, consumer electronics and healthcare industries improve their productivity and output efficiency, accelerating time to market and meeting high demand for industry. Moreover, favorable government initiatives supporting smart manufacturing are expected to support the market expansion during the forecast period.

Request a sample of this research report at https://www.gminsights.com/request-sample/detail/4819

The ZigBee segment in the IoT Gateway market will experience a 13% CAGR through 2027, led by the many high-end features offered by ZigBee connectivity technology, such as high-end encryption, power efficiency and long range wireless communication up to 100 meters. Zigbee connectivity technology operates on the IEEE 802.15.4 radio frequency RF standard and is primarily used to monitor and control devices in the medical, consumer electronics and industrial sectors.

The sensors segment will hold around 18.5% of the IoT gateways market share and is expected to reach a CAGR of 13.5% by 2027 due to the increasing acceptance of these sensors in various applications such as automotive , health, consumer applications and home automation systems. These sensors collect data mainly from the environment and transfer the data to connected devices for signal conversion and processing, which are directly or indirectly connected to IoT networks. These sensors are connected to IoT devices and used to monitor physical parameters such as temperature, humidity, pressure, proximity, flow and others.

The IoT gateways market for healthcare applications segment accounted for 19% of the revenue share in 2020 and is expected to grow at over 17.5% CAGR through 2027. The growing digital transformation and the need for medical devices connected and remote health monitoring in the healthcare industry is expected to drive the market advance. In the healthcare industry, IoT technology provides real-time access and remote monitoring of a patient’s health data. Market players are focused on new product development and innovations in IoT-based devices related to health, thereby accelerating the growth of the industry.

Europe The IoT gateways market captured over 18.5% revenue share in 2020 and is expected to register 14.5% growth from 2021 to 2027, driven by increasing demand for consumer electronics, connected devices and home automation solutions in the region. The introduction of new initiatives and regulations by the European government to protect the data and privacy of its citizens will promote the use of IoT security solutions.

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https://www.gminsights.com/roc/4819

Some of the key companies operating in the IoT gateway market are Dell Technologies, Inc., Huawei Technologies Co., Intel Corporation, Ltd., ADLINK Technology Inc., and Laird Connectivity, Inc., among others. The main participants mainly focus on continuous R&D activities to stimulate their offerings in new industrial sectors.

Some of the key findings of the IoT Gateway Devices Market report include:

  • The growing adoption of point-of-service (PoC) diagnostic devices in the medical and healthcare industry is expected to support market value. These devices collect real-time patient health data such as blood pressure, oxygen levels and heart rate using IoT connectivity platforms including Ethernet, Wi-Fi, Z-wave or Bluetooth in medical devices. These IoT connectivity platforms help achieve early diagnosis and treatment of patients, which is expected to support industry expansion.
  • The proliferation of smart city projects in developed and developing economies will fuel the advancement of the industry. Various IoT use cases, such as smart meters, connected transportation, and smart lighting, are built into smart city infrastructure. This is believed to provide opportunities for IoT gateway device manufacturers.
  • The Bluetooth technology segment will hold a large market share due to several high-end features offered by the technology, such as low power consumption, faster data exchange rates and high-end encryption. for pairing devices. The growing adoption of Bluetooth connectivity on smartphones, tablets, portable electronic devices and other devices will further support industry demand.
  • Growing demand for fleet management and real-time vehicle and logistics tracking in automotive and transportation industries is expected to drive acceptance of IoT gateways
  • The APAC region presents strong growth opportunities in the IoT Gateway market, driven by the increasing investments in the development of smart city infrastructure, automated manufacturing factories and others. The growing penetration of broadband internet and the rapid transformation to a digital economy in countries such as India, Malaysia, Singapore, and Taiwan, will create growth opportunities for IoT gateway manufacturers in the region.
  • The COVID-19 pandemic has severely affected market growth, attributed to the shutdown of various manufacturing facilities in the consumer electronics and automotive sectors. Supply chain disruptions and international trade barriers by various government agencies around the world will further hamper market demand.

Table of contents (ToC) of the report:

Chapter 3 Market Overview of IoT Gateways

3.1 Industry segmentation

3.2 Impact Analysis of Corona Virus Pandemic (COVID-19) on IoT Gateways Market

3.2.1 Global outlook

3.2.2 Impact by region

3.2.3 Industry value chain

3.2.3.1 Research and development

3.2.3.2 Manufacture

3.2.3.3 Marketing

3.2.3.4 Procurement

3.2.4 Competitive landscape

3.2.4.1 Strategy

3.2.4.2 Distribution network

3.2.4.3 Business growth

3.3 Industry Ecosystem Analysis

3.3.1 Component suppliers

3.3.2 Manufacturers

3.3.3 Analysis of distribution channels

3.3.4 Matrix of suppliers

3.4 Technology and innovation landscape

3.4.1 Advances in IoT Edge Gateways

3.5 Regulatory landscape

3.6 Industry impact forces

3.6.1 Growth drivers

3.6.2 Pitfalls and challenges of the industry

3.7 Analysis of growth potential

3.8 Porter’s analysis

3.9 PESTEL analysis

Browse the complete table of contents (ToC) at

https://www.gminsights.com/toc/detail/iot-gateway-devices-market

About Global Market Insights Inc.

Global Market Insights Inc., headquartered in Delaware, USA, is a global provider of market research and consulting services, offering syndicated and personalized research reports as well as growing consulting services. Our business intelligence and industry research reports provide clients with insightful insights and actionable market data specially designed and presented to aid strategic decision making. These comprehensive reports are designed through proprietary research methodology and are available for key industries such as chemicals, advanced materials, technology, renewable energy and biotechnology.

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Related images

iot-gateway-devices-market-growth.png
Market growth for IoT gateway devices expected at 15% through 2027: GMI
The major players in the IoT gateways market are Dell Technologies, Inc., Huawei Technologies Co., Intel Corporation, Ltd., ADLINK Technology Inc., and Laird Connectivity, Inc.

SOURCE Global Market Insights Inc.

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U.S. Arbitrary Tech Blockade Cannot Stop China’s Progress https://microimagevideo.com/u-s-arbitrary-tech-blockade-cannot-stop-chinas-progress/ Sun, 18 Jul 2021 17:51:00 +0000 https://microimagevideo.com/u-s-arbitrary-tech-blockade-cannot-stop-chinas-progress/ Photo: VCG Mainstream US media have once again touted US restrictions on the sale of cutting-edge chip equipment from Dutch tech giant ASML Holding to Chinese companies and touted the measure’s impacts on China’s technological progress. . The Biden administration is trying to make sure ASML doesn’t sell China the Extreme Ultraviolet Lithography (EUV) System, […]]]>

Photo: VCG

Mainstream US media have once again touted US restrictions on the sale of cutting-edge chip equipment from Dutch tech giant ASML Holding to Chinese companies and touted the measure’s impacts on China’s technological progress. .

The Biden administration is trying to make sure ASML doesn’t sell China the Extreme Ultraviolet Lithography (EUV) System, a $ 150 million machine that’s critical to making advanced chips in everything from smartphones advanced and 5G cellular equipment to computers used for artificial intelligence, the Wall Street Journal reported on Saturday.

The New York Times previously claimed that by keeping “the most complicated machine” out of China’s reach, US policymakers appear to have found key leverage to prevent China from building a completely self-sufficient supply chain in technology. semiconductors.

However, this is clearly not the case. Just as ASML CEO Peter Wennink has said, Washington’s anti-China technology blockade is a bad idea and will backfire. Export controls against China will not only fail to stop its technological progress, but will also hurt the US economy.

Even in the midst of the global chip shortage, the US obstruction of a possible deal between ASML and Chinese companies, an arbitrary move that violates a fundamental principle of the market economy, will only have to do with limited impact on China.

ASML’s EUV lithography system is mainly used to produce advanced 7nm, 5nm or 3nm chips, which only account for 17% of the total market. Since the remaining 83% of demand is for chips of 10nm and larger, China has a large space for innovation. It is now more important for China to use mature technology to improve chip performance, according to Wu Hanming, an academic at the Chinese Academy of Engineering and dean of the School of Micro-nano Electronics at the University of China. Zhejiang.

In the immediate term, it is not an easy task for China to achieve technological independence in advanced chip equipment, but if the United States continues its mistaken technology blockade, China will only intensify its efforts. efforts. Under US blockade and containment, China decided to promote its independent research and development capabilities. From an industrial point of view, when the market momentum is strong enough, advancements in chip equipment will come sooner than expected. It is estimated that China will be able to achieve a key breakthrough in the development of deep ultraviolet lithography (DUV) systems in less than three years, and in UVR in less than five years.

What is certain is that if the United States persists in moving forward and continues to impose a technological blockade and containment on China, only its economy will suffer. According to estimates from the US Department of Commerce, if US business with China on semiconductors is completely shut down, it will likely cost between $ 80 billion and $ 100 billion in sales and 125,000 jobs in the United States.

The author is the managing director of the Chinese telecommunications industry information website, cctime.com. bizopinion@globaltimes.com.cn

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New material that cuts down on phone chargers, powers electric cars, and makes 5G possible https://microimagevideo.com/new-material-that-cuts-down-on-phone-chargers-powers-electric-cars-and-makes-5g-possible/ Sat, 17 Jul 2021 04:00:00 +0000 https://microimagevideo.com/new-material-that-cuts-down-on-phone-chargers-powers-electric-cars-and-makes-5g-possible/ If you’re reading this on a screen, chances are you are literally looking into the future. Metallic gallium is present in most LED screens, as well as LED lights which now provide a lot of interior lighting. And while it’s not as well-known as silicon, it’s taking over in many places where silicon once ruled […]]]>

If you’re reading this on a screen, chances are you are literally looking into the future.

Metallic gallium is present in most LED screens, as well as LED lights which now provide a lot of interior lighting. And while it’s not as well-known as silicon, it’s taking over in many places where silicon once ruled supreme, from antennas to load bricks and other energy conversion systems called “power electronics.” . In the process, it enables a surprising array of new technologies, from faster-charging cell phones and lighter electric vehicles, to more energy-efficient data centers that run the services and applications we use.

A byproduct of extracting aluminum from rock, gallium has such a low melting temperature that it turns into a silvery-white liquid that flows when you hold it in your hand. In itself, it is not very useful. Combine it with nitrogen, to make gallium nitride, and it becomes a hard crystal with valuable properties. It appears in the laser sensors used in many self-driving cars, the antennas that enable today’s fast cellular wireless networks and, increasingly, in essential electronics for making renewable energy harvesting more efficient. .

Many of the more tangible things made possible by gallium nitride, also known as GaN, are happening in power electronics. Today you can buy small USB-C chargers with enough power to power your laptop, phone and tablet simultaneously, although they are no bigger than the much less powerful versions that have accompanied our gadgets since. years.

After years of shipping iPhones with a horribly slow charging brick, Apple has finally killed it. WSJ’s Joanna Stern kills harder, then recommends the best fast chargers and wireless options from Anker, Aukey, Belkin, and others. Photo illustration: Preston Jessee for The Wall Street Journal

Power electronics that convert one voltage level to another are also essential to many aspects of electric vehicles. They’re smaller, lighter, more efficient, and emit less heat, so EVs can travel farther on a charge, says Jim Witham, general manager of chipmaker GaN Systems. These properties are also excellent for extracting much more electricity from renewable energy sources such as solar panels, he adds. Even small efficiency gains in converting electricity add up when they occur multiple times, such as in a renewable energy grid that includes battery storage.

A miracle material that GaN is, it faces competition from proven silicon and a growing list of new materials that show the potential to revolutionize our electronics. However, its uses are increasing. GaN Systems also has customers who test its chips in data centers, where reduced power consumption and waste heat can translate into massive savings on electricity bills. None of its data center customers have publicly acknowledged using this technology.

There was a time, not so long ago, that GaN was just a laboratory curiosity. Then, the Pentagon became interested in researching new types of electronics to control new generation radars and wireless communications. From 2000, the financing of Darpa, the Defense Ministry’s advanced research agency, has conducted the experimentation necessary to overcome many obstacles to its commercialization, says Rachel Olivier, professor of materials science and director of the Center for Gallium Nitride at the University of Cambridge.

Along with its myriad of applications in the civilian world, GaN is now appearing in military hardware used for everything from radio jamming to missile defense, all made possible by its unique properties.

Unlike silicon, GaN can handle relatively large amounts of electricity. It has the unusual property of being both very good at moving electrons and very good at not allowing them to go where you wouldn’t want them to be, which makes it both useful and relatively safe. says Dr. Oliver.

Metallic form of gallium; the unusual properties of a crystalline compound, gallium nitride, make it useful in a range of high-tech electronics.


Photo:

Gabriel Zimmer for the Wall Street Journal

In addition to its talent for conducting electricity, it is GaN’s ability to operate at much higher frequencies than possible with silicon – between 30 and 500 times faster in commercial applications – that allow much larger chargers. small or provide more power than traditional chargers.

As our entire world becomes increasingly electrified, from our energy sources to the devices that use it, anything that performs the critical but easily overlooked function of converting electricity from one form to another more efficiently. has the potential to become both ubiquitous and a huge source of income. That’s why there are dozens of startups and companies established in this space, including Navitas Semiconductor, GaN Systems, Power Integrations, Texas Instruments, Infineon, and STMicroelectronics.

The GaN power electronics market, however, is still fairly nascent. In 2019, the overall market for all transistors was around $ 16 billion, while the market for the type offered by Navitas, GaN Systems and others was $ 45 million, said George Brocklehurst, vice -President of research at Gartner.

There are other potentially revolutionary materials that are starting to compete with silicon, such as graphene, but GaN microchips have the huge advantage that they can be produced in the same type of manufacturing facilities – called factories – that make conventional microchips. , explains Stephen Oliver, Marketing Director at Navitas.


Toyota recently presented a prototype vehicle loaded with gallium nitride electronics.

Because they don’t require the most advanced chip manufacturing technology, GaN chips can be produced in older, premium factories that might otherwise be idle. A happy side effect has been that the supply of GaN chips has not been caught up by the wider global semiconductor shortage, says Oliver. Navitas chips are currently manufactured in the oldest factory still operated by TSMC, the Taiwanese titan of chipmaking.

The adoption of GaN is now so widespread that prices are falling rapidly. That’s why you can now buy a GaN charger for $ 20 to $ 70 which is better in every way than the ones that came with your gadgets.

Companies like GaN Systems are pushing technology into other areas. BMW and Toyota are both investors in GaN Systems. In 2019, Toyota presented a prototype vehicle with fully GaN-based power electronics, from the car’s on-board charger to its LED lights.

That said, GaN chips aren’t a slam-dunk winner. Advances in materials science have generated a handful of competitors. Traditional silicon power electronics are still dominant in most applications, and in the automotive world, silicon carbide, an alternative with many of the same properties as GaN, has a much longer track record, explains Mr. Gartner’s Brocklehurst.

A range of promising but less well understood substances could make all of the previously mentioned good value for money, including gallium oxide and aluminum oxide. Both are semiconductors that can be turned into microchips, says Dr Oliver.

SHARE YOUR THOUGHTS

What kind of futuristic new electronics would you like to see? Join the conversation below.

Where the hardware revolution hasn’t taken root is in the biggest semiconductor market: the processors that power our computers. Until recently, says Dr Oliver, GaN only did half of the things a traditional silicon transistor can do.

Until now, GaN cannot handle the flow of electric current required to perform the type of calculations performed by traditional silicon logic chips. But recent findings suggest that may change.

“If you had asked me a few years ago if we would see GaN for logic, I would say, ‘Oh, don’t be stupid,’” she said. “But now it’s possible and it can lead to faster devices. “

—For more WSJ Technology analysis, reviews, tips and headlines, sign up for our weekly newsletter.

Write to Christopher Mims at christopher.mims@wsj.com

Copyright © 2021 Dow Jones & Company, Inc. All rights reserved. 87990cbe856818d5eddac44c7b1cdeb8

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Fresno Electronics Recycler Announces Investment and Strategic Partnership https://microimagevideo.com/fresno-electronics-recycler-announces-investment-and-strategic-partnership/ Thu, 15 Jul 2021 19:51:45 +0000 https://microimagevideo.com/fresno-electronics-recycler-announces-investment-and-strategic-partnership/ Image via electronic recyclers published on July 15, 2021 – 12:51 PMWritten by Business Journal staff An investment firm focused on sustainable businesses has made a strategic investment in a Fresno-based company. ERI, the world’s largest cybersecurity-focused hardware destruction company, has partnered with New York-based Closed Loop Partners. The investment was described as “significant” in […]]]>

Image via electronic recyclers

published on July 15, 2021 – 12:51 PM
Written by Business Journal staff

An investment firm focused on sustainable businesses has made a strategic investment in a Fresno-based company.

ERI, the world’s largest cybersecurity-focused hardware destruction company, has partnered with New York-based Closed Loop Partners. The investment was described as “significant” in a press release, but the amount and terms were not disclosed.

The private equity group’s Leadership fund focuses on investing in companies that keep packaging, organics, electronics and clothing out of landfills and in a circular system, commonly known as the circular economy. The Fund’s investors include Microsoft, Nestlé and Unilever as well as institutional investors and family offices.

Ron Gonen, Founder and CEO of Closed Loop Partners was also elected to ERI’s Board of Directors.

“ERI is the premier electronics recycler in the United States, consistently demonstrating the viability of closed loop systems for high value materials,” said Gonen. “As Americans throw away $ 55 billion in e-waste a year and the waste stream is expected to grow faster in the years to come, it is critical to divert these materials from landfills to manufacturing supply chains. Our partnership with ERI will strengthen circular supply chains that will ultimately benefit people, planet and businesses. “

“Now is the perfect time for a partnership between ERI and Closed Loop Partners,” said John Shegerian, President and CEO of ERI. “Due to a perfect storm of innovation, the Internet of Things, cars becoming essentially computers on wheels, an increase in wearable technology, the switch from 4G to 5G, the increase in Consumption, data privacy concerns and other factors, e-waste is experiencing the fastest growing waste stream in the world – growing at a rate five times faster than any other waste stream. to our longtime friends at Closed Loop Partners, we are uniquely positioned to play a meaningful role in accelerating change.

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Wilson wins grant to explore rare earth element opportunities https://microimagevideo.com/wilson-wins-grant-to-explore-rare-earth-element-opportunities/ Wed, 14 Jul 2021 17:41:40 +0000 https://microimagevideo.com/wilson-wins-grant-to-explore-rare-earth-element-opportunities/ The 17 metallic rare earth elements – 57 to 71 in the periodic table plus scandium and yttrium – are essential resources used in a wide range of technological applications. They are found in wind turbines, liquid crystal displays, batteries and portable electronic devices. The 17 rare earth metal elements are essential resources used in […]]]>

The 17 metallic rare earth elements – 57 to 71 in the periodic table plus scandium and yttrium – are essential resources used in a wide range of technological applications. They are found in wind turbines, liquid crystal displays, batteries and portable electronic devices.

The 17 rare earth metal elements are essential resources used in a wide range of technological applications, including wind turbines, liquid crystal displays, batteries and portable electronic devices.

Since the purified form of these elements is mainly sourced from foreign countries, the US supply chain for rare earth elements presents a problem.

Justin wilson, associate professor of chemistry and chemical biology at the College of Arts and Sciences, received a grant from the US Department of Energy Basic Energy Sciences Program develop more efficient methods of separating rare earth elements that will make their domestic availability economically viable.

Although natural mineral deposits of rare earth elements are present in the United States, environmental and cost concerns make them economically inaccessible, Wilson said. Thus, the majority of rare earth elements currently come from foreign countries, such as China, where environmental regulations are less stringent. In nature, these elements are always found mixed within the same mineral deposits. As such, the main economic and environmental factor in obtaining rare earth elements in their pure forms is their separation.

Because these elements have similar chemical properties, their separation is not trivial, Wilson said. Current methods require several steps in a process known as liquid-liquid extraction which is energy intensive and produces a significant amount of hazardous waste.

“The more efficient and environmentally friendly separation of rare earth elements is a chemical problem at its heart,” Wilson said. “We are delighted to apply our expertise in this area to address this important issue. Given the widespread use and growing demand for new technologies and devices using rare earth elements, we hope that our separation strategies can make these critical resources more widely available in the United States.

Wilson’s project addresses these challenges by exploring new strategies for separating rare earth elements. The project is studying chemical receptors, or ligands, which can bind, or chelate, different rare earth elements with different degrees of efficiency or affinities. By adjusting the relative affinities of these ligands, Wilson aims to use this approach to design separation strategies to differentially extract chemically similar rare earth elements. This research will strengthen the basis for more efficient domestic separation of rare earth elements.

Baotou rare earth; a geology exhibition in Inner Mongolia, China

The first objective of this project is to design and synthesize new ligands to modify their rare earth selectivity profiles. Further modifications of the ligand to modify the so called “secondary coordination sphere” of rare earth elements are targeted in the second objective. In the end goal, these ligands are applied to demonstrate the separation of individual rare earth elements using solvent extraction techniques.

With this project, Wilson hopes to find more energy-efficient and environmentally friendly ways to separate rare earth elements, making purified critical resource supply chains accessible in the United States.

Read the story on the College of Arts and Sciences website.

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