What is Automotive Ethernet? Everything You Need to Know

Today’s automobiles are producing and transmitting huge quantities of data in order to execute advanced driver assistance systems, cameras and sensors, onboard diagnostics, smart safety systems, and in-vehicle-infotainment systems. Such in-vehicle networks need much quicker speeds than what has historically been possible utilizing buses like LIN, CAN/CAN-FD, PSI5, FlexRay, SENT, and CXPI networks.

Also, the need for better integration between vehicle subsystems is propelling fundamental architectural changes with a focus on scalable architectures and complex topologies, including gateways connected to a backbone.

Beyond the technical needs, such in-vehicle networks are also required to be cost-effective, light in weight, and work in rough conditions and extensive temperature ranges. They also require to be tremendously dependable, especially for systems made to protect the security of the passengers.

Automotive Ethernet answers all of these demands.

The automotive ethernet market is witnessing growth and is projected to reach USD 10 billion by 2030.

What is Automotive Ethernet?

Vehicle Ethernet is a low-latency, high-speed network physical layer. Vehicle Ethernet is based on recognized ethernet standards, and modified for use in automobiles. It utilizes a single pair of unprotected twisted cables for lightweight and low price.

It is made to permit the transfer of high volumes of information between in-vehicle modules to aid contemporary powertrain, ADAS, comfort, and infotainment systems. There are numerous different automotive ethernet standards, such as 10GBASE-T1, 100BASE-T1, and 1000BASE-T1, which can transfer information at speeds from 100 Mb/s to 10 Gb/s.

Benefits of Automotive Ethernet

In vehicles, automotive ethernet components provide numerous advantages, including:

High data rates allow high-speed, high-capacity data communications

  • Low latency offers negligible delay for real-time systems such as ADAS
  • High dependability with good noise immunity
  • Light in weight, space-effective, and lucrative cabling
  • Based on deep-rooted standards from reputable standards bodies

Moreover, automotive ethernet has been proven to meet the needs of both capacity and integration. For the purpose of achieving high data rates and reliability, automotive ethernet cables shall use PAM3/PAM4 modulation as opposed to nonautomotive Ethernet.

In the short term, however, automotive Ethernet can transport data approximately 100 times more rapidly than a bus and is better suited for future vehicle networks that will need to be capable of meeting their needs in terms of both performance and flexibility. The CAN, CANFD, LIN, and other networks are still relevant but they may prove less important in the next few years.

Automotive Ethernet Standards

As new workings for automotive Ethernet developed and speeds became quicker, standards establishments released new test and compliance needs that automotive makers and their suppliers should meet. To ensure the interoperability of hardware and the safe, predictable operation of the vehicle in different situations and working conditions, severe restraints are placed on noise, signal levels, and clock characteristics.

The testing methods specified by the standards, though deep-rooted for stationary Ethernet networks have made new design challenges for numerous automotive engineers familiar with working with slower serial buses like CAN and LIN.

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How Is Food Preservative Industry Supporting Chitosan Market Growth?

Factors such as the rising consumption of chitosan in the biomedical, wastewater treatment, agrochemical, food and beverage, cosmetic, and bioplastic industries and increasing research and development (R&D) activities being carried out in this compound are expected to facilitate the chitosan market growth during the forecast years (2021–2030). According to P&S Intelligence, the market was valued at $1.8 billion in 2020. Chitosan refers to biodegradable and non-toxic sugar, which is derived from the hard outer skeleton of crab, shrimp, and lobster.

In recent years, the increasing shift of the food preservative industry from formalin to chitosan has become a major trend in the chitosan market. Food preservatives are added to perishable food products to extend their shelf life. Consumption of formalin-based preservatives leads to the occurrence of cancer, lung diseases, and skin ailments. Owing to the harmful effects of formalin, chitosan is being increasingly used as a food preservative by food and beverage companies. Moreover, the higher biocompatibility of chitosan than formalin will also fuel its use as a food preservative in the coming years.

Currently, the prominent players in the chitosan market, such as Primex ehf, KitoZyme LLC, FMC Corporation, Axio Biosolutions Private Limited, Bio21 Co., Heppe Medical Chitosan GmbH, Meron Group, AgraTech International Inc., and Marshall Marine Products Private Limited, are focusing on product launches to consolidate their position. For instance, in April 2020, Axio Biosolutions Private Limited introduced a next-generation chitosan-based wound dressing named MaxioCel. This dressing offers high comfort and rapid healing to patients suffering from skin abrasions, pressure ulcers, venous leg ulcers, diabetic foot ulcers, post-surgical wounds, cavity wounds, and donor site wounds.

Geographically, Asia-Pacific (APAC) held the largest share in the chitosan market during the historical period, and it is also expected to demonstrate the fastest growth throughout the forecast period. This can be attributed to the chelating feature of chitosan, which makes it ideal for the treatment of heavy-metal-laden industrial effluents. Moreover, the increasing R&D activities being conducted in chitosan and the surging incidence of chronic diseases will also augment the market growth in the region in the forthcoming years.

Thus, the rising consumption of chitosan in the biomedical and food and beverage industries will support the market growth in the upcoming years.

Innovative Impressions: Navigating the Trends in the Printed Electronics Market and Future-Ready Applications

Electronics are manufactured with the help of silicon or other semiconductor materials for a fairly long time. The process is complex as well as time-consuming. However notable miniaturization, high-performance and low power is attained. Instead, making flexible silicon-based electronics is not that easy either.

For addressing this issue, a new tech has arisen, the printed electronics. This blog will provide some valuable info on this tech, concentrating on how it can be used in practical applications.

What on Earth are Printed Electronics

Talking of printed electronics tech, it is a novel way to produce electronics, with the use of standard graphic arts printing procedures, for example screen printing, flexography and inkjet printing, numerous electronic devices and circuits can be fabricated on unconventional substrates. Nearly any material can be put to use for this purpose, be it plastic, paper, and textiles.

These sorts of next-gen electronics can be ultra-thin, stretchable, flexible. Furthermore, printed electronics make use of a simple and cost-efficient low-temperature manufacturing procedure and are compatible with automated mass production printing by the roll-to-roll principle.

Creation of Hybrid Electronics

It will be rally tough for printed electronics to compete with conventional silicon-based electronics in terms of reliability, performance, and capability to handle intricate designs. But the possibility of inserting electronics in any object and that too at a low cost seems an enticing prospect. So, the printed electronics are seen as a complementary tech for the conventional electronics.

This understanding inspires the formation of hybrid electronics. These can have the best qualities of the two. Such a hybrid system comprises a single or numerous silicon ICs for computational power and wireless communications, and sensors, actuators and possibly display manufactured with the printed electronics tech. The system can moreover be integrated on a flexible substrate all together or split in a flexible or rigid part.

 What are the Applications of Printed Technology?

It is because of all the unique characteristics; printed electronics can bring about new possibilities for numerous attractive applications that are either not practicable or not a perfect for the silicon-based electronics. Printed sensors are perhaps the most popular in the printed electronics and various sensor can be manufactured in all shapes and sizes on thin foils. Strain, force, humidity and gas sensors are some instances of the sensors.

Useful for IoT 

Internet-of-Things products in healthcare, retail, wearables, industrial and consumer applications are remarkably benefitted by with the use of printed sensors.

An example of this is a fall detection system, equipped with sensors embedded under the floor in housing units for aged people and assisted living facilities. This system is able to monitor the position of the people and movements in a room and sense instances when the help of the caregivers is required on an urgent basis

Coming to a Conclusion

It is because of the growing consumer electronics industry all over the world, the demand for printed electronics is on the rise. This trend will continue in the future as well, and the total value will reach USD 42.4 billion, by the end of this decade.

How Is Rising Steel Production Propelling Graphite Market Growth?

A number of factors, such as the expanding electronics sector, burgeoning steel production, and soaring lithium-ion (Li-ion) battery demand, are expected to fuel the graphite market at a CAGR of 7.4% during the forecast period (2020–2030). According to P&S Intelligence, the market revenue will rise from $19,092.9 million in 2019 to $36,889.1 million by 2030. In recent years, the increasing usage of graphite in pebble-bed nuclear reactors, for generating electricity from uranium fuel, has become a prominent market trend.

Graphite Market

At present, the graphite market is fragmented in nature with the presence of numerous industry players, such as Syrah Resources Ltd., SGL Carbon SE, Graphite India Ltd., Shanshan Corporation, HEG Ltd., Showa Denko K.K., Tokai Carbon Co. Ltd., and GrafTech International Ltd. Currently, these players are merging with and acquiring other companies to stay ahead of their competitors. For instance, in December 2019, Showa Denko K.K. completed the acquisition of Hitachi Chemical Ltd. for $8.8 billion. This acquisition aimed at consolidating the position of the former as a leading supplier of graphite to manufacturers of Li-ion batteries.

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Furthermore, the application segment of the graphite market is categorized into lubricants, electrodes, refractories, batteries, foundries, graphite shapes, and friction products. Among these, the batteries category is expected to demonstrate the fastest growth throughout the forecast period. This will be due to the surging production of electric vehicles (EVs) and hybrid electric vehicles (HEVs), especially in Europe and North America. Moreover, the booming demand for high-drain electronics, due to the soaring disposable income of people and escalating consumer expenditure, will also support the growth of the market in this category.

Thus, the rising crude steel production and the escalating demand for Li-ion batteries will boost the demand for graphite, worldwide, in the coming years.

Enhancing Crop Health: Exploring the Agricultural Micronutrients Market

The total value of the global agricultural micronutrient market was USD 4,321.9 million in 2022, and it will rise at a growth rate of above 8.5% shortly, reaching USD 8,322.1 million by 2030, according to P&S Intelligence.

This growth can be ascribed to the worsening soil quality in agrarian fields. Nutrients are critical for plant development and metabolic procedures. Stimulating, expanding, and supplying roots by providing them with organic chemicals and proteins, helps in the growth of roots. It also advances the immunity of the vegetable. In the coming few years, all of these reasons will quicken market development.

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Plants are autotrophic creatures that have the capability to utilize solar power to synthesize important components for their development and growth from water, macronutrients, and carbon dioxide. The low quantity of nutrients can disturb the metabolic and physiological procedures of harvests, thus disturbing their development.

Analyses and reports by the FAO have stated that the recurrent mineral stripping because of routine crop creation has contributed to the making of a net micronutrient disparity in the soil arrangement.

In 2022, worldwide, APAC led the agricultural micronutrient market, with above 50% share. This development can be credited to improved application in nations like China and India. Steps by governments and agrochemical builders in such nations are probable to make awareness and expand product acceptance among the local farmers.

In consistency to the same, several subdivisions of the government of India have introduced several guidelines, like grants on stimulated seeds initiation of SHCs, and regulation of contract agriculture. In the long run, such reasons are expected to boost the demand in the region.

Hence, the worsening soil quality in agrarian fields. Nutrients are critical for plant development and metabolic procedures. Stimulating, expanding, and supplying roots by providing them with organic chemicals and proteins, helps in the growth of roots, such factors are propelling the agricultural micronutrient market.

Electrifying the Commercial Sector: Exploring the Electric Commercial Vehicle Market

The electric commercial vehicle market has captured $68.9 billion revenue in 2022, and it is projected to generate $814.8 billion revenue in 2030, rising at a rate of 36.2% from 2022 to 2030, according to P&S Intelligence. The electric commercial vehicle market has captured $68.9 billion revenue in 2022, and it is projected to generate $814.8 billion revenue in 2030, rising at a rate of 36.2% from 2022 to 2030, according to P&S Intelligence.

Electric Commercial Vehicle Market
Electric Commercial Vehicle Market

Declining Costs Boost Adoption of Commercial EVs
The decreasing cost and rising operational efficiency of batteries and the long-term cost benefits of EVs for fleet operators fuel the industry’s growth. Besides, the rising concerns over GHG emissions and surging government support, in the form of subsidies and grants, for such vehicles are projected to offer advantages to the industry in the near future.

Significant Commercial EV Traction in China and India

● Metropolitan cities in China are excessively polluted. Therefore, the government is taking strategic measures to reduce air pollution, such as implementing stringent emission norms and promoting electric vehicles in commercial fleets.
● In the same way, India has strengthened its focus on replacing conventional buses with electric ones. In this regard, Delhi Transport Corporation has set an example with its ambitious plans to have 8,000 battery electric buses by 2025.

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Rising Environmental Concerns Prompting Governments to Encourage EVs
● In addition, numerous governments have announced a ban on the usage of traditional diesel-based commercial vehicles, to reduce carbon emissions.
● Moreover, since buses are key to urban transport systems and trucks to logistical operations, their electric variants are being promoted via purchase subsidies and other benefits for buyers.
● BEVs capture the largest industry share, of more than 60%, ascribed to the government incentives, subsidies, and other financial advantages to encourage the adoption of eco-friendly vehicles.

Operators’ Evolving Business Models Fueling Commercial EV Success
Companies are adopting new business models to reduce the high upfront costs of EVs. Many fleet operators are procuring e-buses in collaboration with city governments. Some operators are even adopting the battery swapping and leasing concepts, as a pre-installed battery makes an EV expensive.

Exploring the Growing Acetic Anhydride Market and its Wide Range of Applications

The global acetic anhydride market was valued at $3,476.1 million in 2019, and the market size is expected to grow at a CAGR of 2.3% during 2020–2030, ultimately reaching $4,950.4 million.

Based on application, the largest size in the acetic anhydride market in 2019 was attributed to the synthesizers category. This is credited to the high-volume consumption of the chemical to produce cellulose acetate. The demand for cellulose acetate is increasing due to its usage in the automotive and plastics sectors. To meet the surging requirement for cellulose acetate from these sectors, the consumption of the chemical compound in the production of cellulose acetate is predicted to rise.

Acetic Anhydride Market

The APAC region generated the highest revenue in the market in 2019, and this trend will continue during the upcoming years as well. This can be majorly credited to the rising production of cellulose acetate, which requires the compound as a synthesizer. There is rapid growth in the demand for cellulose acetate because of its use in plastic manufacturing. Tows, cigarettes, and textile fibers are widely used throughout the world. Around the world, China is the largest consumer and producer of cigarettes.

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There has been significant growth in the number of geriatric patients worldwide, and it is propelling the advance of the industry. The WHO states that by 2030, 1 in 6 people will be aged 60 years or above. The rise in the aging population is propelling the consumption of painkillers, because of which the demand for the compound is observing a rise. To meet the demand for generic drugs, including aspirin, the consumption of the compound will increase, thus encouraging the growth of the acetic anhydride market globally.

Exploring the Dynamics of the India EV Battery Swapping Market: Advantages and Growth Factors

The Indian EV battery swapping market was valued at USD 10.2 million in 2022, and this number is expected to reach USD 61.57 million by 2030, advancing at a CAGR of 25.20% during 2022–2030, according to P&S Intelligence. This can be credited to the decreased upfront prices for electrical vehicles and no wait time for charging.

In 2022, the three-wheeler category generated the gigantic revenue share of approximately 90%. The battery swapping method advances the lifespan of the battery of e-three-wheelers. Mainly because such vehicles travel above 100 km on daily basis on average, demanding regular battery swapping.

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In 2022, the subscription model category had the considerable revenue share in the market. E-buses commonly have decided routes and stoppage, because of this, drivers know how many miles they travel daily and choose the subscription model.

In 2022, Uttar Pradesh generated the largest revenue share in the Indian EV battery swapping market. This can be credited to the fact that this state is the biggest market for e-two-wheelers in the country. The utilization of e-scooters and motorcycles is increasing throughout the state, mainly in tier-2 and tier-3 cities.

in 2022, Delhi is projected to have a considerable revenue share in the industry, because of the existence of a top e-three-wheelers market in the state. In 2021, the state reported for a substantial share of electric three-wheeler sales in the country. E-rickshaw sales have amplified since 2013 because the overall result of high vehicle usage, rising population and high volume of travel.

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Exploring the Dynamics of the Organic Fertilizers Market: Benefits and Growth Factors

The value of the organic fertilizers market was USD 5,864 million in 2022, and it is will advance at a CAGR of 12.1% in the years to come, to reach USD 14,622 million by 2030, as per a market research company, P&S Intelligence.

Moreover, the requirement for cereals & grains is also increasing since they can be effortlessly produced and gives high yields.

Organic Fertilizers Market
Organic Fertilizers Market

Furthermore, fertilizers produced from bone meal, animal waste, and blood meal, are rich in phosphorous, potassium, and nitrogen, which are the main nutrients desirable by plants. So, because of above benefits of animal-based fertilizers, their use is quickly surging.

APAC had a significant growth in the organic fertilizers market, and will remain the same in the years to come. This growth is mostly credited to the increasing health consciousness amongst the broad cultivation land, customers, increasing population & growth of per capita income, and improved mechanization and irrigation competences.

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Europe will grow significantly in the years to come, since it has the largest organic arable land, in excess of 17 million hectares.

Recently, the land under organic farming has grown enormously across numerous regions globally, owing to numerous indirect and direct factors. The growing investments private and public players in contemporary agricultural methods and the increasing demand for organic products because of their perceived health benefits and the low chemical leaching throughout their production. These factors have also brought about in their premium pricing and higher interest amongst farmers because of greater margins.

India Industrial Aerosol Market: Trends, Growth, and Key Players

The major drivers in the India industrial aerosol market are the skyrocketing investments in the research and development in the Indian manufacturing sector, extensive government support, and surging application of aerosolized products in automotive plants as well as garages and repair shops. Therefore, the sale of such products across the country will collectively fetch companies $115.85 million by 2030.

India Industrial Aerosol Market
India Industrial Aerosol Market

The COVID-19 virus spread like wildfire, infecting millions worldwide. Because aerosols are heavily utilized in the form of paints, greases, lubricants, maintenance sprays, and cleaning products in the manufacturing sector, the demand for them was seriously impacted.

Spray paints are the most-significant application in the India industrial aerosol market share. This is largely due to the Indian population’s increased purchasing power, which is driving the demand for spray paints with an aerosol base in auto manufacturing facilities and in repair shops and garages. The spray paints category will potentially grow in the coming years because of the economic viability and versatility of spray paints. There is a rising utilization to re-spray or restore aviation and automotive components. Additionally, there is a surging application of spray paints to fill the scratches in industrial machinery.

The growth of the players in the India industrial aerosol market is essentially due to the uptick in the sales of quadricycles, two-wheelers, three-wheelers, commercial vehicles, and passenger cars. Moreover, there is a significant increase being observed in the count of vehicles produced, the Society of Indian Automobile Manufacturers says. Similarly, as per the IBEF research in 2020, car demand is predicted to increase owing to an increase in the youthful population and in the disposable income of the middle class, which would propel the demand for such products in the next years.

The manufacturing industry of the country is expanding robustly due to increased demand for consumer electronics and electronic appliances, as well as machinery and electrical equipment as per the IBEF. This will spur the India industrial aerosol market growth. Furthermore, according to government sources, substantial development has been noted in the beauty and cosmetics industry of the nation over the last several years as a result of growing per capita income, which is leading to increased personal expenditure.