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Industrial Wastewater Treatment Plant Market Scope & Growth Projection till 2032
Industrial Wastewater Treatment Plant Market provides in-depth analysis of the market state of Industrial Wastewater Treatment Plant manufacturers, including best facts and figures, overview, definition, SWOT analysis, expert opinions, and the most current global developments. The research also calculates market size, price, revenue, cost structure, gross margin, sales, and market share, as well as forecasts and growth rates. The report assists in determining the revenue earned by the selling of this report and technology across different application areas.
Geographically, this report is segmented into several key regions, with sales, revenue, market share and growth Rate of Industrial Wastewater Treatment Plant in these regions till the forecast period
North America
Middle East and Africa
Asia-Pacific
South America
Europe
Key Attentions of Industrial Wastewater Treatment Plant Market Report:
The report offers a comprehensive and broad perspective on the global Industrial Wastewater Treatment Plant Market.
The market statistics represented in different Industrial Wastewater Treatment Plant segments offers complete industry picture.
Market growth drivers, challenges affecting the development of Industrial Wastewater Treatment Plant are analyzed in detail.
The report will help in the analysis of major competitive market scenario, market dynamics of Industrial Wastewater Treatment Plant.
Major stakeholders, key companies Industrial Wastewater Treatment Plant, investment feasibility and new market entrants study is offered.
Development scope of Industrial Wastewater Treatment Plant in each market segment is covered in this report. The macro and micro-economic factors affecting the Industrial Wastewater Treatment Plant Market
Advancement is elaborated in this report. The upstream and downstream components of Industrial Wastewater Treatment Plant and a comprehensive value chain are explained.
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Battery Free RFID Sensor Market To 2026 Market Segmentation Up To The Second Or Third Level The battery free RFID sensor market is expected to witness major growth in the near future, thanks to rising demand for IoT devices in manufacturing.
#Battery Free RFID Sensor Industry#Battery Free RFID Sensor Manufacturer#Battery Free RFID Sensor Market#Battery Free Rfid Sensor Market Forecast Revenue#Battery Free RFID Sensor Market Growth#Battery Free RFID Sensor Market Revenue#Battery Free RFID Sensor Market Size#Battery Free RFID Sensor Revenue#Battery Free RFID Sensor Sales#Global Battery Free RFID Sensor Market
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Contactless Smart Card Market Share Status, Sales, Outlook Size, , Growth Factors, Comprehensive Research, Analysis by Leading Companies with Forecast | Impact of COVID-19
Market Highlights
Contactless smart cards use radio frequency identification (RFID) technology to wirelessly communicate with a card reader. A copper or aluminum antenna is connected to an integrated circuit (chip) and then securely laminated inside plastic card body under high heat and pressure. Contactless smart cards range from simple memory cards with low security and non-volatile memory structure up to high-security crypto-processor cards and Java / Native operating system (OS) cards.
Contactless smart card systems are being widely used in various applications such as physical security, tracking, payment systems, and many more. The usage of RFID systems has grown quickly over the last decade and is rapidly becoming a common part of everyday life. The aim of contactless smart card technology is to provide low cost “no-touch” communication, which can create an authenticated, and optionally, the encrypted channel of communication between the card reader and the nearest smartcard.
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Segment Overview:
By Type:
Traditional ly Smart Cards were based on the principle of contact-based smart cards. These were generally microchips embedded on smart cards which could be used to connect to different devices using different media devices. Now smart cards are subjected to contactless which can occur as soft-tokens and hard-tokens available that use radio technology for wireless transmission.
By Service:
By service, Contactless Smart Cards are available in government and private sectors. The government has been tracking individuals for record purposes for a long time now earlier it was based on thumb-print tracking now it is more of app tracking through our phones. In the private sector, Contactless Smart Card Industry has boomed in all areas from healthcare, to retail.
Regional Analysis
Asia Pacific region is leading the global contactless smart card market due to the increasing number of forgery cases and duplicate identity cases. For instance, in Indonesia smart card IDs are rolled out to millions of government workers, pointing the way forward to future closed systems that offer identification and payment authentication. The technology is provided by HID Global and its deployment of those cards has come at a lower cost than similar projects, according to the company and the Indonesian agency overseeing the effort.
The contactless smart cards market is growing in Europe and North America. IDEX, a leading developer of advanced fingerprint solutions for mass markets, launched a ground-breaking flexible, low power fingerprint sensor ready to be used in contactless cards operating with standard NFC terminals. The sensor has state of the art power management which supports biometric card operation without a battery. The sensor is specifically designed for proven standard mass production processes. North America is expected to emerge as one of the key regional markets over the forecast period. The growth is mainly attributed to the increasing deployment of cloud-based contactless payment technologies in various verticals such as transportation. Europe is expected to be another major region for contactless payments owing to the growing number of smart card rollouts.
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Battery Free Wireless Sensor Market to Scale New Heights as Battery Free Wireless Sensor Market Players Focus on Innovations 2022 – 2027
Advance Market Analytics released a new market study on Global Battery Free Wireless Sensor Market Research report which presents a complete assessment of the Market and contains a future trend, current growth factors, attentive opinions, facts, and industry validated market data. The research study provides estimates for Global Battery Free Wireless Sensor Forecast till 2027*. Battery-free wireless sensors use an RFID interface and have no battery. The sensor harvests the radio energy from the RFID reader, then powers-on the sensing circuit, then backscatters the digital data back to the RFID reader. Battery-Free Wireless Sensors are UHF RFID wireless sensors that allow the passive sensing of moisture, temperature, and pressure, among others in a variety of applications where size and accessibility are at a premium.
Key Players included in the Research Coverage of Battery Free Wireless Sensor Market are:
On Semiconductor (United States)
Renesas Electronics (Japan)
Infineon Technologies (Germany)
ROHM (Japan)
STMicroelectronics (Switzerland)
Farsens (Spain)
EnOcean GmbH (Germany)
GeneSiC Semiconductor (United States)
RFMicron, Inc. (United States)
What's Trending in Market: RF identification (RFID) In a Number of Applications, Such As Supply Chain Management, Public Transportation, Access Control, Among Others
Opportunities: Battery-Free Wireless Sensor’s For Smart Agricultural Monitoring
The Technological Advancements in Battery-Free Wireless Sensors
Market Growth Drivers: Maintenance Free Due To the Elimination of Battery Replacement
Rising Adoption of Battery-Free Wireless Sensors Primarily in Medical & Healthcare Sector
Battery-Free Wireless Sensor Can Greatly Enhance the Reliability of the End Product and Offers Many Benefits for Deployment in Industrial Settings
The Global Battery Free Wireless Sensor Market segments and Market Data Break Down by Type (Low Frequency (125 kHz to 135 kHz), High Frequency (135 kHz to 13.56 MHz), Ultra-High Frequency (Above 13.56MHZ)), Application (Automotive, Aerospace & Defense, Consumer Electronics, Medical & Healthcare, Agriculture, Others), RFID Sensor Tags (Temperature, Humidity/Moisture, Pressure, Others) To comprehend Global Battery Free Wireless Sensor market dynamics in the world mainly, the worldwide Battery Free Wireless Sensor market is analyzed across major global regions. AMA also provides customized specific regional and country-level reports for the following areas. • North America: United States, Canada, and Mexico. • South & Central America: Argentina, Chile, Colombia and Brazil. • Middle East & Africa: Saudi Arabia, United Arab Emirates, Israel, Turkey, Egypt and South Africa. • Europe: United Kingdom, France, Italy, Germany, Spain, Belgium, Netherlands and Russia. • Asia-Pacific: India, China, Japan, South Korea, Indonesia, Malaysia, Singapore, and Australia. Presented By
AMA Research & Media LLP
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Coin Cell Lithium Chip Market 2022 by Manufacturers, Regions, Type and Application, Forecast to 2030
Global Coin Cell Lithium Chip Market: Description
Lithium-ion coin cell chips are often described as thin, tiny, circular objects that serve as effective sources of power for modestly powered gadgets.
Factors include the adoption of printed flexible batteries in medical devices to treat COVID-19 patients are driving the development of the microchip industry.
The market is expanding as a result of the numerous advantages micro batteries have over conventional batteries, the rising popularity of wearable technology, the demand for thin, flexible batteries in Internet of Things applications, and the expanding use of micro batteries in electronic and medical devices.
They are safe, affordable, and have a long shelf life. High voltage output and energy density are provided by the lithium components in these discs.
Coin Cell Lithium Chip Market are predominantly referred to as small and light circular discs used as efficient power source for low powered devices. They are cost effective, safe, and have a long shelf life. The lithium components in these discs provide high voltage output and energy density and hence can be used as a replacement for multiple conventional batteries.
The global coin cell lithium chip market is anticipated to grow substantially over the forecast duration of 2022-2030.
Key Trends of Global Coin Cell Lithium Chip Market:
Demand for thin and flexible batteries in IoT applications
The Internet of Things (IoT) proffers network connectivity with the help of physical objects in which sensors and software are resort to deliver data and exchange it with other connected devices.
With the lowering requirement of power in semiconductors and IoT applications experiencing significant growth, many players are looking for flexible form factors to power distributed electronic devices.
Applications such as smart cards, wireless sensor nodes, sensors, smart labels, RFID tags, and packaging require thinness and flexibility to exchange data efficiently. IoT uses orthodox batteries to supply power to the network.
Integration of micro batteries in smart textiles
Smart textiles, also referred as electronic textiles, are printed fabrics that sense physiological parameters such as blood pressure, body temperature, heart rate and adjust the clothing temperature accordingly.
These textiles are vigorously gaining popularity in the fitness and sports industries. New-generation smart textiles can sense, adapt and respond themselves to different environmental conditions.
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Coin Cell Lithium Chip market: Segmentation Analysis
Based on Diameter
14 mm
15 mm
16 mm
Based on Application
· Medical Industry
· Coin Cell
· Others
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Table of Contents
1. Global Coin Cell Lithium Chip Market Introduction and Market Overview
2. Global Coin Cell Lithium Chip Market - Executive Summary
3. Coin Cell Lithium Chip Market Trends, Outlook, and Factors Analysis
4. Global Coin Cell Lithium Chip Market: Estimates & Historic Trend Analysis (2018 to 2021)
5. Global Coin Cell Lithium Chip Market Estimates & Forecast Trend Analysis, by Deployment
6. Global Coin Cell Lithium Chip Market Estimates & Forecast Trend Analysis, by Component
7. Global Coin Cell Lithium Chip Market Estimates & Forecast Trend Analysis, by Content Type
8. Global Coin Cell Lithium Chip Market Estimates & Forecast Trend Analysis, by End Use
9. Global Coin Cell Lithium Chip Market Analysis and Forecast, by Region
10. North America Coin Cell Lithium Chip Market: Estimates & Forecast Trend Analysis
11. Europe Coin Cell Lithium Chip Market: Estimates & Forecast Trend Analysis
12. Asia Pacific Coin Cell Lithium Chip Market: Estimates & Forecast Trend Analysis
13. Middle East & Africa Coin Cell Lithium Chip Market: Estimates & Forecast Trend Analysis
14. Latin America Coin Cell Lithium Chip Market: Estimates & Forecast Trend Analysis
15. Competitive Landscape
16. Company Profiles
17. Assumptions and Research Methodology
18. Conclusions and Recommendations
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Our strategic market analysis and capability to comprehend deep cultural, conceptual and social aspects of various tangled markets has helped us make a mark for ourselves in the industry. WE MARKET RESEARCH is a frontrunner in helping numerous companies; both regional and international to successfully achieve their business goals based on our in-depth market analysis. Moreover, we are also capable of devising market strategies that ensure guaranteed customer bases for our clients.
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Functional Printing Industry Research Report - Global Forecast to 2030
Global Functional Printing Market Synopsis
The data experts at Market Research Future Reports (MRFR) have analyzed the global Functional Printing Market. The global functional printing market is estimated to value USD 30.27 billion, recording a promising CAGR of 19.26% during the review period. The growing demand for cheaper and fast-paced production is one of the most significant factors driving the global functional printing market 2020. Besides, with the burgeoning technological advancement, the companies are successfully achieving low-cost and face-paced production. Besides, the waste produced is minimalistic, which is why it is preferred.
In addition, the development of 3D printing is estimated to present several opportunities for market expansion in the forthcoming period. However, the functional printing process demands an acute accuracy with being complex in management which is likely to hinder the market growth. In addition, the pandemic COVID-19 has severely affected the global functional printing market. The economy has been affected due to the disturbance caused in the cycle of production and demand. The lockdown imposed across various countries is likely to bring a massive disturbance in the market. The market will start recovering as the lockdown is lifted in a phased manner.
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Market Segmentation
The worldwide functional printing market can be segmented on the basis of printing technology, material, application, and geography.
On the basis of printing technology, the worldwide functional printing market can be segmented into flexography, screen printing, inkjet printing, gravure printing, and others.
On the basis of material, the worldwide functional printing market can be segmented into substrates and inks. The substrates vertical can further be classified into plastic, glass, paper, gallium nitride (GAN), silicon carbide, and others. The inks segment can be further classified into graphene ink, conductive inks, dielectric inks, and others.
On the basis of application, the worldwide functional printing market can be segmented into displays, sensors, lighting, photovoltaics, batteries, RFID tags, others.
On the basis of geography, the worldwide functional printing market can be segmented into North America, Europe, Asia-Pacific, and the Rest of the World.
Geographical Analysis
The worldwide functional printing market is estimated to expand significantly during the assessment period from 2019 to 2024. The geographical analysis of functional printing market has been performed for North America, Europe, Asia-Pacific, and the rest of the world. According to the study, the global market is estimated to be dominated by North America. North America is likely to acquire the largest market share during the assessment period. The region has been experiencing a continuous advancement in technology which is fueling the market. In addition, the growing demand for near-field communication (NFC) in Europe and North America. Furthermore, the application of RFID tags in the retail sector is estimated to bloom the regional market. On the other hand, the APAC region is projected to expand at the highest CAGR during the assessment period. The region is blooming due to the presence of developing economies like India, Japan, and China. In addition, the APAC region also comprises of established printing companies and the electronic companies that are used in the manufacturing processes.
However, the regions have been affected significantly due to the outbreak of coronavirus. Several markets have been shut temporarily due to the lockdown imposed to contain the spread of coronavirus.
Key Players
The established key players of the global market are L.P. (US), HP Development Company, Haiku Tech (US), BASF SE (Germany), Avery Dennison Corporation (US), Blue Spark Technologies (US), E Ink Holdings Inc. (Taiwan), Display Corporation (US), Eastman Kodak Company Ltd (US), GSI Technologies LLC (US), and Enfucell Oy (France).
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MRFR team have supreme objective to provide the optimum quality market research and intelligence services to our clients. Our market research studies by products, services, technologies, applications, end users, and market players for global, regional, and country level market segments, enable our clients to see more, know more, and do more, which help to answer all their most important questions.
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Solid-State Battery Market Worth $3.81 Billion And 7.3 Growth by 2029
Meticulous Research®—a leading global market research company, published a research report titled “Solid-State Batteries Market by Type (Thin Film Batteries, Bulk Batteries, and Other Batteries), Capacity (Less than 20mAh, 21mAh to 500mAh, and Above 500mAh), Application, and Geography — Global Forecasts to 2029”.
The Solid-State Battery Market is expected to grow at a CAGR of 58% from 2022 to reach $3.81 billion by 2029. By volume, this market is expected to grow at a CAGR of 71% from 2022 to reach 7.3 GWh by 2029. This market is driven by factors, such as the high energy density of solid-state batteries, faster-charging rate compared to Li-ion batteries, and a safer alternative to Li-ion batteries. Moreover, increasing R&D for the application of solid-state batteries in EVs and the increase in R&D investments for the development of solid-state batteries for consumer electronics devices are expected to provide attractive growth opportunities for players operating in this market.
However, the higher cost of solid-state batteries and technological challenges regarding the stabilization of electrodes during charging/discharging cycles are expected to restrain the growth of this market to a notable extent. In addition, the challenge for commercialization, challenges with physical properties of ceramic electrolyte, challenge with cell architecture, and business transformation challenges are the major challenges for the growth of the global Solid-State Battery Market.
The global solid-state batteries market study is segmented based on type, capacity, application, and geography. The study also evaluates industry competitors and analyses the market at the country level.
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Scope of the Report
Solid-State Battery Market, by Type
Thin Film Batteries
Bulk Batteries
Other Batteries
Solid-State Battery Market, by Capacity
Less than 20mAh
21mAh to 500mAh
Above 500mAh
Solid-State Battery Market, by Application
Medical Devices
Automotive
Consumer Electronics
Aerospace
Battery Energy storage systems
Industrial Equipment
Solid-State Battery Market, by Geography
China
Japan
South Korea
India
Rest of Asia-Pacific
Germany
U.K.
France
Italy
Spain
Rest of Europe (RoE)
U.S.
Canada
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Based on type, the global solid-state batteries market is mainly segmented into thin film batteries, bulk batteries, and other batteries. In 2022, the thin film batteries segment is expected to account for the largest share of the global solid-state batteries market. The large share of this segment is mainly attributed to their smaller size, higher average output voltage, lighter weight, higher flexibility, higher energy density, lower chances of electrolyte leakage, tighter packing, and longer life cycle than bulky solid-state batteries.
Thin film solid-state batteries have found numerous applications in electronic devices, including renewable energy storage devices, smart cards, radio frequency identification (RFID) tags, portable electronics, defibrillators, neural stimulators, pacemakers, and wireless sensors, contributing to the large market share of this segment.
Based on capacity, the global Solid-State Battery Market is segmented into less than 20mAh, 21mAh to 500mAh, and Above 500mAh. In 2022, the 21mAh to 500mAh segment is expected to account for the largest share of the global Solid-State Battery Market. The large share of this segment is mainly attributed to the rising demand for small energy storage sources and wearable electronics. Solid-state batteries are widely preferred for consumer electronics as they are safer and more stable than liquid li-ion batteries in which the electrolyte is volatile and flammable at high temperatures.
Based on application, the global Solid-State Battery Market is segmented into medical devices, automotive, consumer electronics, aerospace, battery energy storage system, and industrial equipment. In 2022, the medical devices segment is expected to account for the largest share of the global solid-state batteries market. The large share of this segment is mainly attributed to technological advancements and the penetration of IoT in the medical field. Several battery manufacturers are designing and offering solid-state batteries to power medical devices, such as neural stimulators, pacemakers, and defibrillators. Solid-state batteries offer safer power solutions for pacemakers and defibrillators than liquid Li-ion batteries. For instance, in April 2019, Ilika, a U.S. company, launched its new Stereax M50, a miniaturized solid-state lithium-ion cell designed for the needs of the medical device industry.
Based on geography, North America is expected to account for the largest share of the global Solid-State Battery Market in 2022. The large share of this market is mainly attributed to the growing application and uptake of solid-state batteries in consumer electronics and medical devices and research & development activities focused on the commercialization of solid-state batteries for electric vehicles. For instance, in September 2020, The Volkswagen Group invested around $300 million in the U.S.-based solid-state battery startup QuantumScape.
Additionally, a US-based battery company Solid Power announced its plans to begin pilot production of solid-state batteries suitable for use in electric vehicles by early 2022, after receiving an additional $130 million in funding from existing investors, including Ford, BMW, and Volta Energy Technologies. These initiatives are expected to boost the demand for solid-state batteries during the forecast period.
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Key Players
The key players operating in the global Solid-State Battery Market are QuantumScape Corporation (U.S.), Ilika plc (U.K.), Solid Power, Inc. (U.S.), BrightVolt, Inc., (U.S.), Cymbet Corporation (U.S.), Prieto Battery Inc. (U.S.), Sion Power Corporation (U.S.), Hitachi Zosen Corporation (Japan), ProLogium Technology CO., Ltd. (Taiwan), Johnson Energy Storage, Inc. (U.S.), PJP Eye LTD. (Japan), Factorial Inc. (Spain), Volkswagen AG (Germany), Front Edge Technology, Inc. (U.S.), and I-TEN S.A. (Italy).
Key Questions Answered in the Report:
Which are the high-growth market segments in terms of type, capacity, application, and geography?
What is the historical market size for global solid-state batteries across the globe?
What are the market forecasts and estimates for the period 2022–2029?
What are the major drivers, restraints, opportunities, and challenges in the global Solid-State Battery Market?
Who are the major players in the market, and what are their market shares?
How is the competitive landscape for the global solid-state batteries market?
What are the recent developments in the global solid-state batteries market?
What are the different strategies adopted by the major players in the market?
What are the key geographic trends, and which are the high-growth countries?
Who are the local emerging players in the global solid-state batteries market, and how do they compete with other players?
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#solid state batteries#semiconductor and electronics#thin film batteries#bulk batteries#medical devices#automotive#ev battery
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Solid-State Battery Market – Know the Untapped Growth Opportunities to 2030
Solid-state battery, also known as lithium-ion battery, is a higher storage and cost-effective alternative to liquid-based lithium-ion batteries. They find applications in consumer electronics, pacemakers, wearable devices, and RFID. The global solid-state battery market report by Market Research Future (MRFR) covers dynamic variables affecting the industry for the period of 2022 to 2030 (forecast period). MRFR is a research and consultancy firm delivering reliable data on emerging and developed industries using proprietary models.
Market Scope
Solid-state battery market has a CAGR of 28.01% until 2027. The market is expected to be worth USD 411.48 million in 2027, according to Market Research Future (MRFR). This is attributed to investments in electric car production units and large potential in electric vehicles (EVs). According to the International Energy Agency (IEA) report of 2018, electric cars numbers can rise up to 5.1 million. Miniaturization of consumer electronics and wireless sensor applications can bring new opportunities to the market.
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But high capital investments required at initial development stages can hinder market growth. The COVID-19 pandemic had hurt the market with electrode material producers, raw material suppliers, and others suffering a setback.
Segmentation
By type, the global market has been segmented into portable battery, thin-film battery, and others. The thin-film battery segment is expected to hold the largest share during the forecast period owing to the growing adoption of solid-state battery materials and thin-film solid-state batteries in applications like packaging, smart cards, medical devices, wearable devices, and wireless communication.
By capacity, the global market is segmented into less than 20 mAH, 20 mAH – 300 mAH, 301 mAH – 500 mAH, and above 500 mAH. The above 500 mAH segment is expected to grow with the highest CAGR during the forecast period owing to its increasing use in high energy internet of things (IoT) applications. Government policies doled out encouraging clean energy and rise in battery storage capacities can drive the segment demand.
By application, the global solid-state battery market has been segmented into electric vehicles, electronics, medical devices, wearable devices, smart cards, and others. The electric vehicles segment is expected to hold the largest share within the global solid-state battery market. A huge potential in clean energy-driven vehicles and technological advances in batteries can bolster market growth.
Regional Analysis
North America, Asia Pacific (APAC), Europe, and Rest-of-the-World (RoW) are major regions analyzed for measuring the growth of the global solid-state battery market.
North America is anticipated to lead the global market over the assessment period due to high market demand from electric vehicle, smart cards, and packaging sectors. Investments in R&D coupled with encouragement for electric vehicle production by governments can drive the need for solid-state batteries.
APAC is deemed to capture a large market share owing to demand for portable electronic devices coupled with increased energy density and simple battery design. Partnerships and investments in battery manufacturing companies by conglomerates such as BMW, Bosch, and Hyundai can bode favorably for the solid-state battery market.
Competitive Scope
Brightvolt Inc., Toyota Motor Corporation, Excellatron Solid State, LLC, Planar Energy Devices, Inc., Infinite Power Solution, Inc., STMicroelectronics N.V., Cymbet Corporation, Altairnano, Apple Inc., Solid Power, Inc., Quantumscape Corporation, and Robert Bosch GmbH are prominent players of the global solid-state battery market.
Partnerships and collaborations are major strategies of players aiming to take the lead in the market. Recently, Toyota Motor Corporation and Panasonic Corporation joined hands to create a joint venture, Prime Planet Energy & Solutions, Inc., that focuses on development and manufacture of solid-state batteries targeted at the automotive sector.
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Industry News
Hitachi Zosen Corporation, a Japanese industrial engineering company, has developed a solid-state battery with a capacity of 1,000 milliamp hours and an operating mode between 100 degrees to -40 degrees Celsius. It has recently reached an agreement with Japan Aerospace Exploration Agency to test applications of solid-state battery in space.
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DASH7 DEVICES MARKET SIZE FORECAST TO REACH $10.2 BILLION BY 2026
The global Dash7 Devices Market is size is forecast to reach $10.2 billion by 2026, growing at a CAGR of 18.1% in the period 2021-2026. Dash7 is an open source Wireless Sensor and Actuator Network protocol that offers pertinent solutions such as smart-city sensing applications and wide-area tracking technologies. The large-scale adoption of IoT communication protocol coupled with the increasing use of machine-to-machine communication devices, such as smart metering and livestock monitoring is estimated to contribute significantly to the Dash7 Devices Industry growth. Dash 7 devices is a fast-growing market as it has attracted more vendors in the past for powered wireless sensing equipment, low power long-range wireless connectivity between the systems and developments in big data. The growing popularity of green infrastructure in smart cities promotes the wireless Sensor Network and various LPWA variants, such as alarms, sensors and many more across industrial and urban networks, thereby fueling the Dash7 Devices Market revenue.
Dash7 Devices Market Segment Analysis – By Offerings
By Offerings, the Dash7 Devices Market is segmented into Hardware, Software and Services. The Hardware segment held the major share of 65.0% in the Dash7 Devices Market in 2020, owing to the growing demand for dedicated hardware accelerators, modules and chipset to manage customary versions of ultra-low power, advanced global tracking or navigation systems. In April 2019, e-peas, the Energy harvesting chip designer teamed up with SODAQ, the Dutch System integrator and launched e-peas’ AEM10941 devices. This smart tracker battery-free animal tracking device has LoRa communication module, a passive NFC tag and accelerometer to gather data on cattle position as well as grazing pattern, which is presently used on Australian cattle ranches. Hence, the emerging IoT tracking device to cater the various operations is driving the growth of the Dash7 Devices Market.
Dash7 Devices Market Segment Analysis – By Industry Verticals
By Industry Verticals, the Dash7 Devices Market is segmented into Healthcare, Agriculture, Logistics and Transportation, Manufacturing, Utilities, Consumer Electronics, Government and Others. The Logistics & Transportation held the major share of 16.9% in the Dash7 Devices Market in 2020, owing to the high demand of IoT enabled devices to track valuable assets that are in transit. The industry 4.0 is about to be amplified by 5G technology and thus, denotes faster speed, lower latency, and higher bandwidth to functionalize as a smarter technology. In October 2019, Semtech launched LoRa Edge™ Tracker in reference to enhance geolocation applications and thus, provides automated asset management solutions. Many logistic enterprises are adopting M2M (Machine-to-Machine) Solutions with incorporated GPS and GPRS/3G technologies to prevent risks and enhance the freight transportation economy on a global level. In April 2019, the business intelligence solutions Detego launched Smart Shield, the RFID-based inventory management software to determine the relative location. Therefore, the varied implementation of IoT connections technology, such as power line carrier solution and wireless ad hoc networks service are some of the factors that are driving the growth of the Dash7 Devices Market.
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Dash7 Devices Market Segment Analysis – By Geography
North America dominated the Dash7 devices market in 2020 with a share of 38.9%. This is owing to the high demand for multiple applications ranging from agriculture monitoring, traffic monitoring, health and wellbeing monitoring to wireless sensor networks. In March 2019, DoorKing launched new 900MHz Wireless Expansion Kits that can add access points from anywhere and seamlessly connect with keypads, card readers and other devices. To strengthen IoT application deployments, the cloud service providers are integrating best connectivity options, thus, relying more on network solutions. In addition, the high investment in the mobility landscape across the U.S.A such as advanced sensors for the driving-assistance system, e-hailing and semiconductors, are driving the market of Dash7 devices. In 2019, Tesla sold 367,500 cars (Model 3) that have the over-the-air updates ability because of the tracker by Bloomberg. Asia Pacific is set to be the fastest-growing Dash7 devices market during the forecast period 2021-2026 owing to emerging adoption of IoT technologies, specifically NB-IoT and LoRa. In September 2019, KONE India launched intelligent and IoT connected elevators and escalators in collaboration with IBM Watson, the leader in cognitive computing. Therefore, to offer high-end managed services across the competitive market landscape, major companies are investing to develop advanced LPWAN solutions such as wireless mesh networks and other designed wireless coverage, thereby driving the demand of the Dash7 Devices Market.
Dash7 Devices Market Drivers
Increasing demand for an efficient Green Infrastructure
To restore the natural environments in urban areas and design a better living environment, it is imperative to adopt DASH7 for midrange WSN/IoT green development applications, and thus, represent a major factor to drive the Dash7 Devices Market. A massive demographic transit to urbanization is taking place globally and thus, poses climate change, environmental pollution and many more. Therefore, to attain green infrastructure, DASH7 based WSN system is one of the apt solutions deployed for green monitoring. In June 2020, Delta curated “Smart Well Being” to denote energy-efficient solutions. This state-of-the-art ecosystem by Delta is designed to facilitate IoT-based healthy green buildings. Hence, the growing demand for improved smart technology frameworks is influencing the Dash7 Devices Market.
High demands of WSNs (wireless sensor networks) across Industrial sectors
The LPWAN technologies are expeditiously evolving owing to large scale roll-outs in various industries, and also, the growing demand for robust data transmission across various industrial environments are estimated to contribute to the growth of the LPWAN market. In September 2020, Synopsys, Inc collaborated with Nestwave to combine Nestwave’s soft core GPS navigation IP with the Synopsys DesignWare® ARC® IoT Communications IP Subsystem, which deliver a complete solution for low-power global navigation satellite systems (GNSS) application for integration into IoT modems. This strategic collaboration further provides advanced GPS solutions with power-efficient and high-accuracy battery-operated devices to deliver an enhanced geolocation solution. In the last few years, these technologies have shown significant growth because of the wireless data transfer reliability and robust network coverage. Moreover, the majority of the business sectors include applications such as monitoring, surveillance, tracking, building automation, agriculture and military, which again contributes to the growth of the Dash7 Devices Market.
Dash7 Devices Market Challenges
Security complexities across networking technology
There are impeccable advantages of Dash7 enabled devices to the market but the rapid deployments of IIoT application across the industrial networks can create severe chances of security breaches due to increasing cyber threats. Thus, these unforeseen attacks that can disrupt various automation process across the industry represents as a hindrance to the growth of the Dash7 Devices Market.
Dash7 Devices Market Landscape
Technology launches, acquisitions, Partnerships and R&D activities are key strategies adopted by players in the Dash7 Devices Market. The Dash7 Devices market top 10 companies include Hitachi Construction Machinery Co., Ltd., Huawei Technologies Co. Ltd., Aloxy n.v., Intel Corporation, Telefonaktiebolaget L. M. Ericsson, Telensa Ltd., Semtech Corporation, Sigfox S.A., Nwave Technologies, Link Labs, Actility and among others.
Developments
In October 2020, the market leader in low power?indoor?&?outdoor?fused?geolocation and a provider of disruptive IoT tracking solutions worldwide, Actility’s subsidiary Abeeway launched the Abeeway Smart Badge. The Abeeway Smart Badge is a portable multi-mode tracker in ID card format that has embedded sensors with a high-end integration of GPS, Low-power GPS, Wi-Fi Sniffer, BLE and LoRaWAN TDoA geolocation technologies, which provides enhanced outdoor and indoor geolocation solution.
Relevant Reports
A. Low Power Wide Area (LPWA) Network Market
https://www.industryarc.com/Report/15107/low-power-wide-area-lpwa-network-market.html
B. LPWAN Devices Market
https://www.industryarc.com/Report/19421/lpwan-devices-market.html
For more Electronics related reports, please click here
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Printed Electronics Market Size, Share With Top Companies, Region Forecast 2021-2027
Printed Electronics Market 2020-2026
A New Market Study, Titled “Printed Electronics Market Upcoming Trends, Growth Drivers and Challenges” has been featured on fusionmarketresearch.
Description
This global study of the Printed Electronics market offers an overview of the existing market trends, drivers, restrictions, and metrics and also offers a viewpoint for important segments. The report also tracks product and services demand growth forecasts for the market. There is also to the study approach a detailed segmental review. A regional study of the global Printed Electronics industry is also carried out in North America, Latin America, Asia-Pacific, Europe, and the Near East & Africa. The report mentions growth parameters in the regional markets along with major players dominating the regional growth.
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Printed Electronics is one of the fastest growing technologies in the world. It is of vital interest to industries as diverse as consumer goods, healthcare, aerospace, electronics, media and transit. It is allowing electronics to be used in places it has never been before and it is improving existing electronics and electrics.
The report offers detailed coverage of Printed Electronics industry and main market trends with impact of coronavirus. The market research includes historical and forecast market data, demand, application details, price trends, and company shares of the leading Printed Electronics by geography. The report splits the market size, by volume and value, on the basis of application type and geography. First, this report covers the present status and the future prospects of the global Printed Electronics market for 2015-2024.
And in this report, we analyze global market from 5 geographies: Asia-Pacific[China, Southeast Asia, India, Japan, Korea, Western Asia], Europe[Germany, UK, France, Italy, Russia, Spain, Netherlands, Turkey, Switzerland], North America[United States, Canada, Mexico], Middle East & Africa[GCC, North Africa, South Africa], South America[Brazil, Argentina, Columbia, Chile, Peru]. At the same time, we classify Printed Electronics according to the type, application by geography. More importantly, the report includes major countries market based on the type and application. Finally, the report provides detailed profile and data information analysis of leading Printed Electronics company.
Key Companies GSI Technologies,LLC (U.S.) ThinFilm Electronics ASA (Norway) PARC,Inc. (U.S.) BASF SE (Germany) E.I. DuPont de Nemours & Co. (U.S.) NovaCentrix (U.S.) Enfucell OY (Finland) Molex,Inc. (U.S.) E Ink Holdings Inc. (China) YD Ynvisible S.A. (Portugal) T-ink,Inc. (U.S.).
Market Segment as follows: By Region Asia-Pacific[China, Southeast Asia, India, Japan, Korea, Western Asia] Europe[Germany, UK, France, Italy, Russia, Spain, Netherlands, Turkey, Switzerland] North America[United States, Canada, Mexico] Middle East & Africa[GCC, North Africa, South Africa] South America[Brazil, Argentina, Columbia, Chile, Peru]
Market by Type Ink Substrate
Market by Application Sensors Displays Batteries RFID Lighting Photovoltaic
Check Discount @ https://www.fusionmarketresearch.com/request_discount/(COVID-19-Version)-Global-Printed-Electronics-Market-Status-(2015-2019)-and-Forecast-(2020-2025)-by-Region,-Product-Type-&-End-Use
Table of Contents
Part 1 Market Overview 1.1 Market Definition 1.2 Market Development 1.2.1 Current Situation 1.2.2 Aspects of COVID-19 Impact 1.3 By Type Table Type of Printed Electronics Figure Global Printed Electronics Market Share by Type in 2019 1.4 By Application Table Application of Printed Electronics Figure Global Printed Electronics Market Share by Application in 2019 1.5 By Region Figure Global Printed Electronics Market Share by Region in 2019 Figure Asia Printed Electronics Market Share by Region in 2019
Part 2 Key Companies 2.1 GSI Technologies,LLC (U.S.) 2.1.1 Company Profile Table GSI Technologies,LLC (U.S.) Overview List 2.1.2 Products & Services Overview 2.1.3 Sales Data List Table Printed Electronics Business Operation of GSI Technologies,LLC (U.S.) (Sales Revenue, Sales Volume, Price, Cost, Gross Margin) 2.2 ThinFilm Electronics ASA (Norway) 2.3 PARC,Inc. (U.S.) 2.4 BASF SE (Germany) 2.5 E.I. DuPont de Nemours & Co. (U.S.) 2.6 NovaCentrix (U.S.) 2.7 Enfucell OY (Finland) 2.8 Molex,Inc. (U.S.) 2.9 E Ink Holdings Inc. (China) 2.10 YD Ynvisible S.A. (Portugal) 2.11 T-ink,Inc. (U.S.).
Part 3 Global Market Status and Future Forecast 3.1 Global Market by Region Table Global Printed Electronics Market by Region, 2015-2019 (Million USD) Figure Global Printed Electronics Market Share by Region in 2019 (Million USD) Table Global Printed Electronics Market by Region, 2015-2019 (Volume) Figure Global Printed Electronics Market Share by Region in 2019 (Volume) Table Price List by Region, 2015-2019 3.2 Global Market by Company Table Global Printed Electronics Market by Company, 2015-2019 (Million USD) Figure Global Printed Electronics Market Share by Company in 2019 (Million USD) Table Global Printed Electronics Market by Company, 2015-2019 (Volume) Figure Global Printed Electronics Market Share by Company in 2019 (Volume) Table Price List by Company, 2015-2019 3.3 Global Market by Type Table Global Printed Electronics Market by Type, 2015-2019 (Million USD) Figure Global Printed Electronics Market Share by Type in 2019 (Million USD) Table Global Printed Electronics Market by Type, 2015-2019 (Volume) Figure Global Printed Electronics Market Share by Type in 2019 (Volume) Table Price List by Type, 2015-2019 3.4 Global Market by Application Table Global Printed Electronics Market by Application, 2015-2019 (Million USD) Figure Global Printed Electronics Market Share by Application in 2019 (Million USD) Table Global Printed Electronics Market by Application, 2015-2019 (Volume) Figure Global Printed Electronics Market Share by Application in 2019 (Volume) Table Price List by Application, 2015-2019 3.5 Global Market by Forecast Figure Global Printed Electronics Market Forecast, 2020-2025 (Million USD) Figure Global Printed Electronics Market Forecast, 2020-2025 (Volume)
….
Part 9 Market Features 9.1 Product Features 9.2 Price Features 9.3 Channel Features 9.4 Purchasing Features Part 10 Investment Opportunity 10.1 Regional Investment Opportunity 10.2 Industry Investment Opportunity
PART 11 Coronavirus Impact 11.1 Impact on Industry Upstream 11.2 Impact on Industry Downstream 11.3 Impact on Industry Channels 11.4 Impact on Industry Competition 11.5 Impact on Industry Obtain Employment Part 12 Conclusion
Continue…
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Fusion Market Research is one of the largest collections of market research reports from numerous publishers. We have a team of industry specialists providing unbiased insights on reports to best meet the requirements of our clients. We offer a comprehensive collection of competitive market research reports from a number of global leaders across industry segments.
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Printed Electronics Market Manufacturers, Regions, Type and Application, Forecast 2021 to 2027
Printed Electronics Market 2020-2026
A New Market Study, Titled “Printed Electronics Market Upcoming Trends, Growth Drivers and Challenges” has been featured on fusionmarketresearch.
Description
This global study of the Printed Electronics market offers an overview of the existing market trends, drivers, restrictions, and metrics and also offers a viewpoint for important segments. The report also tracks product and services demand growth forecasts for the market. There is also to the study approach a detailed segmental review. A regional study of the global Printed Electronics industry is also carried out in North America, Latin America, Asia-Pacific, Europe, and the Near East & Africa. The report mentions growth parameters in the regional markets along with major players dominating the regional growth.
Get Free Sample Report @ https://www.fusionmarketresearch.com/sample_request/(COVID-19-Version)-Global-Printed-Electronics-Market-Status-(2015-2019)-and-Forecast-(2020-2025)-by-Region,-Product-Type-&-End-Use
Printed Electronics is one of the fastest growing technologies in the world. It is of vital interest to industries as diverse as consumer goods, healthcare, aerospace, electronics, media and transit. It is allowing electronics to be used in places it has never been before and it is improving existing electronics and electrics.
The report offers detailed coverage of Printed Electronics industry and main market trends with impact of coronavirus. The market research includes historical and forecast market data, demand, application details, price trends, and company shares of the leading Printed Electronics by geography. The report splits the market size, by volume and value, on the basis of application type and geography. First, this report covers the present status and the future prospects of the global Printed Electronics market for 2015-2024.
And in this report, we analyze global market from 5 geographies: Asia-Pacific[China, Southeast Asia, India, Japan, Korea, Western Asia], Europe[Germany, UK, France, Italy, Russia, Spain, Netherlands, Turkey, Switzerland], North America[United States, Canada, Mexico], Middle East & Africa[GCC, North Africa, South Africa], South America[Brazil, Argentina, Columbia, Chile, Peru]. At the same time, we classify Printed Electronics according to the type, application by geography. More importantly, the report includes major countries market based on the type and application. Finally, the report provides detailed profile and data information analysis of leading Printed Electronics company.
Key Companies GSI Technologies,LLC (U.S.) ThinFilm Electronics ASA (Norway) PARC,Inc. (U.S.) BASF SE (Germany) E.I. DuPont de Nemours & Co. (U.S.) NovaCentrix (U.S.) Enfucell OY (Finland) Molex,Inc. (U.S.) E Ink Holdings Inc. (China) YD Ynvisible S.A. (Portugal) T-ink,Inc. (U.S.).
Market Segment as follows: By Region Asia-Pacific[China, Southeast Asia, India, Japan, Korea, Western Asia] Europe[Germany, UK, France, Italy, Russia, Spain, Netherlands, Turkey, Switzerland] North America[United States, Canada, Mexico] Middle East & Africa[GCC, North Africa, South Africa] South America[Brazil, Argentina, Columbia, Chile, Peru]
Market by Type Ink Substrate
Market by Application Sensors Displays Batteries RFID Lighting Photovoltaic
Check Discount @ https://www.fusionmarketresearch.com/request_discount/(COVID-19-Version)-Global-Printed-Electronics-Market-Status-(2015-2019)-and-Forecast-(2020-2025)-by-Region,-Product-Type-&-End-Use
Table of Contents
Part 1 Market Overview 1.1 Market Definition 1.2 Market Development 1.2.1 Current Situation 1.2.2 Aspects of COVID-19 Impact 1.3 By Type Table Type of Printed Electronics Figure Global Printed Electronics Market Share by Type in 2019 1.4 By Application Table Application of Printed Electronics Figure Global Printed Electronics Market Share by Application in 2019 1.5 By Region Figure Global Printed Electronics Market Share by Region in 2019 Figure Asia Printed Electronics Market Share by Region in 2019
Part 2 Key Companies 2.1 GSI Technologies,LLC (U.S.) 2.1.1 Company Profile Table GSI Technologies,LLC (U.S.) Overview List 2.1.2 Products & Services Overview 2.1.3 Sales Data List Table Printed Electronics Business Operation of GSI Technologies,LLC (U.S.) (Sales Revenue, Sales Volume, Price, Cost, Gross Margin) 2.2 ThinFilm Electronics ASA (Norway) 2.3 PARC,Inc. (U.S.) 2.4 BASF SE (Germany) 2.5 E.I. DuPont de Nemours & Co. (U.S.) 2.6 NovaCentrix (U.S.) 2.7 Enfucell OY (Finland) 2.8 Molex,Inc. (U.S.) 2.9 E Ink Holdings Inc. (China) 2.10 YD Ynvisible S.A. (Portugal) 2.11 T-ink,Inc. (U.S.).
Part 3 Global Market Status and Future Forecast 3.1 Global Market by Region Table Global Printed Electronics Market by Region, 2015-2019 (Million USD) Figure Global Printed Electronics Market Share by Region in 2019 (Million USD) Table Global Printed Electronics Market by Region, 2015-2019 (Volume) Figure Global Printed Electronics Market Share by Region in 2019 (Volume) Table Price List by Region, 2015-2019 3.2 Global Market by Company Table Global Printed Electronics Market by Company, 2015-2019 (Million USD) Figure Global Printed Electronics Market Share by Company in 2019 (Million USD) Table Global Printed Electronics Market by Company, 2015-2019 (Volume) Figure Global Printed Electronics Market Share by Company in 2019 (Volume) Table Price List by Company, 2015-2019 3.3 Global Market by Type Table Global Printed Electronics Market by Type, 2015-2019 (Million USD) Figure Global Printed Electronics Market Share by Type in 2019 (Million USD) Table Global Printed Electronics Market by Type, 2015-2019 (Volume) Figure Global Printed Electronics Market Share by Type in 2019 (Volume) Table Price List by Type, 2015-2019 3.4 Global Market by Application Table Global Printed Electronics Market by Application, 2015-2019 (Million USD) Figure Global Printed Electronics Market Share by Application in 2019 (Million USD) Table Global Printed Electronics Market by Application, 2015-2019 (Volume) Figure Global Printed Electronics Market Share by Application in 2019 (Volume) Table Price List by Application, 2015-2019 3.5 Global Market by Forecast Figure Global Printed Electronics Market Forecast, 2020-2025 (Million USD) Figure Global Printed Electronics Market Forecast, 2020-2025 (Volume)
….
Part 9 Market Features 9.1 Product Features 9.2 Price Features 9.3 Channel Features 9.4 Purchasing Features Part 10 Investment Opportunity 10.1 Regional Investment Opportunity 10.2 Industry Investment Opportunity
PART 11 Coronavirus Impact 11.1 Impact on Industry Upstream 11.2 Impact on Industry Downstream 11.3 Impact on Industry Channels 11.4 Impact on Industry Competition 11.5 Impact on Industry Obtain Employment Part 12 Conclusion
Continue…
ABOUT US :
Fusion Market Research is one of the largest collections of market research reports from numerous publishers. We have a team of industry specialists providing unbiased insights on reports to best meet the requirements of our clients. We offer a comprehensive collection of competitive market research reports from a number of global leaders across industry segments.
CONTACT US
PH : +(210) 775-2636
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Position Tracking System Market, Global Size, Share, Emerging Trends, Business Growth, Gross Margin Analysis, Competitive Landscape, Segmentation and Regional Forecast 2027
The intensifying traction for vehicle tracking and fleet analytics is predicted to shape the position tracking system market in the impending period. The mounting demand for indoor position tracking systems from retailers is anticipated to shape the position tracking system market in the coming period.
Segmental Analysis
The segmental study of the position tracking system market is segmented on the basis of connectivity, technology, type, component, and application. Based on the component, the position tracking system market is divided into hardware and software. The hardware segment is additionally segmented into the sensors, display, battery, resistors, capacitors, and diodes. Based on the connectivity, the position tracking system market is segmented into wired and wireless. On the basis of technology, the position tracking system market is segmented into GIS, RFID, GPS, internet tracking, WLAN, and others.
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Competitive Analysis
The scope of development of the market shows a high growth potential that the market can achieve in the coming years. The strategic allocation and positioning of assets are expected to aid each competitor in the mart with their growth goals.
The central players in the position tracking system market are Position Tracking Systems (U.S.), Advanced Realtime Tracking (Germany), Axestrack (U.S.), Trinetra Technologies (India), Inmotio (Amsterdam), Kongsberg Maritime (Norway), Rilapp Technologies (India), GPATS (U.S.), and Cisco Ssytems, Inc (U.S.) to name a few.
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Market Research Future (MRFR) is an esteemed company with a reputation of serving clients across domains of information technology (IT), healthcare, and chemicals. Our analysts undertake painstaking primary and secondary research to provide a seamless report with a 360 degree perspective. Data is compared against reputed organizations, trustworthy databases, and international surveys for producing impeccable reports backed with graphical and statistical information.
We at MRFR provide syndicated and customized reports to clients as per their liking. Our consulting services are aimed at eliminating business risks and driving the bottomline margins of our clients. The hands-on experience of analysts and capability of performing astute research through interviews, surveys, and polls are a statement of our prowess. We constantly monitor the market for any fluctuations and update our reports on a regular basis.
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User Experience and Measurement Lessons From Bike Sharing at the Beach
Let’s pretend for a second that the bike and scooter sharing startups have sound business models. They’ll break even on the bikes/software/maintenance, and make money selling the route data to mapping and advertising companies or something. Have you suspended your disbelief? Great. Now picture the perfect setup for customer acquisition for these startups…
It might look something like this:
A sunny day at Alki Beach in Seattle. A jogging & biking path that goes on for 4 miles of beautiful views and people-watching. A place where it’s really hard to find parking, there are tons of people outside, and they can’t walk all the way back to their cars in flip flops. Where couples and families come specifically to move around in the sun, to see all the views, and to make it all the way from one end to the other and back.
People at Alki have the need for temporary bikes. Pedestrians see folks riding colorful mobile-app-rented bikes all around them. It’s like free advertising to a perfect target market.
This is the situation I found myself in a few weekends ago. On a beautiful sunset walk with my wife. Enjoying the views with tired legs and a hungry belly. Bikers, skateboarders, and foursomes on rented rickshaws zooming by us. We saw a number of people using bright green Limebikes, yellow Ofo bikes, and orange Spin bikes. We parked our car and walked two miles West to a pirate-infested beach bar with bacon pizza and Adirondack chairs (no joke about the pirates). On the way back, we wanted to pedal. I’d used Limebike twice before, so I knew what to expect: a heavy, poorly-fitting bike that we could ride for a few miles for a dollar. My wife was a bikeshare n00b.
Bike Sharing #ProductFail x3 Companies
So what was the #ProductFail? Where are the lessons? Basically everything about the user experience starting at the point where I decided I wanted us to bike back to our car.
There was a Limebike right outside our pirate beach bar. “Perfect!” I thought, and started fiddling with my phone to unlock it.
Problem #1: “This bike no worky.”
No dice. “OK - well let’s walk a little farther away from the car to get a bike - I think I see another Limebike way down there.”
Problem #2: Two would-be bikers interested at the same time.
Just as we made it to the bike at the end of the line, another guy was walking toward it with his friend. We talked about it awkwardly for a minute and he decided to let me have the bike. OK, time to try unlocking it.
Problem #3: Out of battery
Two bad bikes in a row, ouch.
“Wait, can’t we pedal an electric bike that’s out of battery? No. I can’t believe this. OK, let’s start walking back the way we came from and keep our eyes peeled, there are lots of bikes around.”
After 5 minutes of walking back the way we’d come from… “Here’s a Yellow one. I guess I can download another app and enter my credit card info - they all work the same way, one brand’s as good as another, right?”
Wait for the download over cellular. Open the app and create an account. Fiddle with my credit card out on the sidewalk - you can’t get your first free ride without a credit card entered...
Problem #4: This yellow bike no worky either :-(
At this point I was wondering if I just had unbelievably bad luck, or if all of these bikes are running on such a rickety operational model and software platform, that they’re basically unsuited for busy outdoor areas.
It also occurs to me that when there’s high rideshare bike demand, there’s a much higher chance that any idle bikes which appear to be available are actually the ones no one can get to work.
...more walking with the wife… she’s resigned to walk back, but my feet hurt and I’m more determined than ever to get a working bike to ride.
Problem #5: Third green bike no worky.
“OMG - this is a laughably bad experience. I’m gonna blog about it.”
...more walking...
Problem #6: Vandalism.
“We don’t want a third app do we?”
“Don’t bother, it has no seat. (orange)
...more walking...
Problem #7: I use my app to unlock a bike, but someone standing nearby says it’s his.
We see a bunch of parked yellow bikes and I’m thinking “finally, these must work!”
I unlock the first one. But then a kid looking at the view with his family says “that’s my bike, wasn’t it already unlocked?” But my app has the bike checked out to me… “Oh, sorry, but my app is counting time now.” There are four yellow bikes here and three of you, is that OK? He agrees, and I get a sweet, sweet, ride on a heavy, poorly-fitting bike.
Problem #8: A second Ofo bike is “closed for maintenance.”
The only problem is the other yellow bike that my wife tries (after downloading the same new app to her own phone, creating an account and entering a credit card) also doesn’t work and shows an error message.
So we pretend we’re 10 again and we actually try riding two people to a bike. I thought it was hilarious. But, my wife can’t keep from sliding off the seat and this is a bit nuts - we don’t really want to explain a bike crash with both of us on one bike with no helmets to our kids. We decide to walk back.
===
Building a Better Bike Sharing Product
OK - so we can all agree that was a horrible customer experience. How could the bike share companies build better products?
Let’s follow a straightforward approach that starts with understanding users and the problems they run into, prioritizes a good user experience, and tracks success in the metrics.
Understanding users and their bike share problems:
User feedback will come in through many mechanisms, including app store reviews and twitter… but to tangibly improve our user understanding, we want to survey some small percentage of our users. When? All the important times: right after they’ve finished a bike ride, right after they’ve encountered a problem, and when they’ve used the app an unusually long amount of time (this indicates a problem or an uncommon use case). And we should couple this quantitative survey work with qualitative work (e.g. tag-alongs or diary studies involving frequent bike share users, and in-person street intercepts of new users in busy bike-sharing areas like Alki Beach).
Prioritize a good user experience and track success:
In addition to our “understand work” above, we want to log all the bad experiences we can catch (such as bike inoperable error messages), and set goals to drive down the number of users having bad experiences per day/week/month. With a goal set to minimize bad experiences, it will be easy to prioritize fixes to problems, and we can rank those problems based on how often they are experienced X the severity of the effect on user sentiment (e.g. Net Promoter Score).
Some ways to fix the problems I encountered:
Bike inoperable product fixes:
In all the cases that I hit bike inoperable error messages above, I was clearly, obviously “having a bad time.” This is the equivalent of a crash or hang with most software. I was all ready to ride a bike and pay for my ride, but I could not.
The product teams could make major improvements by doing the following:
Log all these errors by type
Goal on reducing them both in terms of raw counts and in terms of total people affected
Do follow up field research in areas where error rates are abnormally high
Goal the maintenance teams on reducing the length of time bikes are inoperable and out in the field generating bad user experiences
Help users avoid these situations in the first place by much more obviously directing them to the closest working bikes, and warning them boldly in app (both visually and audibly) about any very nearby bikes that are offline for maintenance or out of battery.
Help users who hit a bike inoperable case find a working ride as quickly as possible, and both apologize and compensate them for the bad experience to turn a negative situation into a positive if possible.
Vandalism product fixes:
A bike with a missing seat, missing front wheel, or missing chain is just another form of inoperable bike.
The product team could invest in:
Detecting missing bike components via bluetooth or RFID sensors
Treating any bike with a missing component just like an inoperable bike (with the techniques above)
Social product fixes:
People will occasionally walk around and want the same bike at the same time. But we can both minimize these cases, and help folks navigate these cases via the product. The product team could:
Attempt to steer nearby users with the app open to different nearby bikes
Institute rules about scanning bikes that are still on someone else’s clock - buzzing both phones and asking the current bike holder if they’re willing to release the bike to someone new or not.
Put a “two people want this bike” button front and center on the apps map view. Hitting this button could suggest the next closest bike, offer some suggestions for communication and decision-making, and have an option to randomly select a “winner” in the case that neither person is willing to defer. Underneath the random assignment function, the team could prioritize any person who just came off a bad experience such as losing a random assignment or finding an inoperable bike recently.
Wrap-up:
Many products are a combination of physical goods, software, and operations. Many products are used in complex social environments that can complicate usage. Some products are local, and may perform well in terms of metrics at the top level (like across a city or a country), while still harboring very broken user experiences in lower-level locations and for a minority of users. But any product with these attributes will hit a growth ceiling, as the bad experiences result in churn and negative word-of-mouth that creates a drag on the overall product.
Today we looked at three high-flying bike sharing companies with plenty of VC money, that are likely in this zone right now: showing positive growth and usage numbers, but perhaps also struggling with declining growth and metrics ceilings. Thinking about your best case and worst case scenarios… doing a deeper level of understand work, and then prioritizing and thoroughly solving your top user problems can unstick your product and unlock a new round of growth.
Have a story like this? A horrible user experience or a product with strong top-level metrics that’s slowing down or burdened by some bad user experiences? Ping me on LinkedIn or Facebook Messenger - I’d love to hear about it.
--
- Mike
#product#Product Owner#Product Management#product planning#Web metrics#software engineering#engineering management#engineering process#ridesharing#bike sharing#ofo#limebike#spin#user research#user experience#product design
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Global Thin Film and printed battery Market Thriving: Likely to Grow at a CAGR of 24.0% by 2027
Global thin film and printed battery market is growing at a high CAGR because of the emerging and expanding application of thin film and printed batteries in implantable medical devices, such as tiny defibrillators, and other smart devices, such as smart cards, radio frequency identification (RFID), sensors, etc.
A recent study conducted by the strategic consulting and market research firm BlueWeave Consulting revealed that global thin film and printed battery market was worth USD 98.2 million in the year 2020. The data yielded by the study reveals that the market is estimated to grow at a CAGR of 24.0%, earning revenue of around USD 442.0 million by the end of 2027. The global thin film and printed battery market has grown due to factors such as the increasing production of IoT devices and sensors and technological advancements in solid-state lithium-ion batteries. Thin film and printed battery manufacturers are experiencing growth due to the growing demand for lightweight, flexible, and thin batteries for certain consumer electronics and implantable medical devices. However, the small size of thin-film and printed batteries may limit the growth of the market because of their limited energy density and power capacity.
Technological Advancements in Thin Film and Printed Battery is Driving Market Growth
With the demand for batteries and other electric devices growing, investments are being made to make thin-film and printed batteries more technologically advanced. For instance, using low resistance electrode/solid electrolyte interfaces, scientists from Tokyo Tech Company and Tohoku University have developed batteries with less resistance to tackle the disadvantage of all-solid-state batteries. According to recent studies, lithium-ion battery prices have declined dramatically by more than 97%. Their production capacity is expected to triple by 2025, while the cost per kilowatt-hour will drop below USD 100. Innovations like these are expected to spur the market in the forecast period.
Secondary Batteries are Powering the Global Thin Film and Printed Battery Market
Based on rechargeability, the global thin film and printed battery market is segmented into primary batteries and secondary batteries. The demand for secondary batteries is very prominent in the global thin film and printed battery market. That’s why this segment holds the largest market share. Rechargeable batteries, also known as secondary batteries, can be recharged and discharged multiple times. Electronic waste and improper disposal of batteries have very lethal effects on the environment, which has driven the demand for secondary batteries in electronic devices.
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Consumer Electronics Segment is Fueling the Growth of the Global Thin Film and Printed Battery Market
Based on applications, the global thin film and printed battery market is segmented into consumer electronics, wireless sensors, medical devices, smart packaging, smart cards, and others. Consumer electronic products account for most of the market share as thin film and printed batteries are commonly used in portable devices like wearables. The burgeoning consumer electronics industry in emerging economies like China and India is significantly influencing the growth of the global thin film and printed battery market. Moreover, the growing demand for these battery types in implantable medical devices such as pacemakers is driving the thin film and printed batteries market in the Asia Pacific.
North America Holds the Largest Market Share
Geographically, the global thin film and printed battery market is0 segmented into North America, Europe, Asia-Pacific, Latin America, Middle-East & Africa. The largest market share belongs to North America. It is, however, projected that the Asia-Pacific will witness the highest CAGR during the forecast period. The growing manufacturing capacity of consumer electronics and medical devices in emerging economies like China, India, Japan, etc., is driving the demand for thin-film and printed batteries in these countries. In addition, the growth of the market is fueled by the production of solid-state batteries in the Asia-Pacific region.
Impact of COVID-19 on Global Thin Film and Printed Battery Market
The global thin film and printed battery market were negatively affected by the COVID-19 induced pandemic. The lockdown imposed by countries to halt the spread of the virus completely halted manufacturing and production operations. There was a sharp decline in the demand for thin film and printed batteries as a result. The acute shortage of chips in the market is still hindering market growth even in the post-COVID-19 period. As a result, a huge demand and supply gap for consumer electronics has been created, which is impacting the growth of the global thin film and printed battery market.
Competitive Landscape
The leading players in the global thin film and printed battery market are Blue Spark Technologies, STMicroelectronics, Brightvolt, Inc., Samsung SDI Co Ltd, Cymbet Corporation, Prologium, Excellatron Solid State, Inc., Panasonic Corporation, Jiangsu Enfucell Flexible Electronics Co., Ltd., Fullriver Battery New Technology Co., Ltd., Apple Inc., LG Chem Ltd., Enfucell Oy Ltd., Ultralife Corporation, Prelonic Technologies, Flexel, Molex, and other prominent players.
The market is highly fragmented, with the presence of several industry players. The companies invest heavily in R&D, innovations, and improving the power capacity of their products. They also focus on regional penetration to extend their consumer base. Furthermore, the adoption of competitive strategies like mergers, acquisitions, partnerships, collaborations, etc., is also very prominent in the market.
Don’t miss the business opportunity of the global thin film and printed battery market. Consult our analysts to gain crucial insights and facilitate your business growth.
The in-depth analysis of the report provides information about growth potential, upcoming trends, and statistics of the global thin film and printed battery market. It also highlights the factors driving forecasts of total market size. The report promises to provide recent technology trends of the global thin film and printed battery market and industry insights to help decision-makers make sound strategic decisions. Furthermore, the report also analyses the growth drivers, challenges, and competitive dynamics of the market.
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Hermetic Packaging Market Segmentation and Competitive Analysis Report till 2025
September 20, 2021: The global hermetic packaging market size was valued at USD 2.83 billion in 2016 and is anticipated to reach USD 5.03 billion by 2025. Packaging refers to the enclosures provided for products intended for storage, sale, distribution and use. These packages involve tins, cans and are barrier sealed to prevent air from entering into cans and help in preserving the contents from decaying. This is one side of the story. An application for hermetic sealing includes semiconductor electronics, thermostats, optical devices, MEMS and switches. Prevention of foreign bodies and water bodies in them is an essential requisite for maintaining proper functioning and reliability.
Hermetic by standard definition goes as being impervious to air. A cavity sealed microelectronic package that passes both gross and fine leak test as per TM1014 test method is named hermetic otherwise christened a “leaker”. The factors boosting hermetic packages include high-performance and limitations in plastic encapsulate I.C and ceramic packages on account of industry gravitating towards surface-mount switches. Restraints for hermetic packages include the on-demand re-start of hermetic lines as opposed to continuous production lines of plastic packages.
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Segmentation of hermetic packaging by configuration comprises multilayer ceramic packages, pressed ceramic packages and metal can packages. Market by type is classified as ceramic-metal sealing (CERTM), Glass Metal sealing (GTMS), Passivation glass, Transponder glass and Reed Glass. Market by Application includes transistors, sensors, lasers, photodiodes, airbag igniters, oscillating crystals, MEMS switches and others. Market by end-user industry comprises military and defense, aeronautics and space, automotives, energy and nuclear safety, medical, telecommunication and others. By geography, the market is further segmented into North America, Europe, Asia Pacific, MEA and Latin America.
Automotives are further broken down into airbag initiation, battery protection and RFID transponder operation. Energy and nuclear safety comprises electrical penetration control, oil and gas applications, fuel cell manufacturing. Medical truncates into dental applications and veterinary applications. MEM’s are proven devices of low-cost and reliability such as gyroscopes and resonators and excel in restricting chemically inert gases from escaping thanks to the hermetic packaging such as discrete and wafer level hermetic packaging employed. Electronic packaging is a science with hermetic ceramic packaging comprising I.C chips in Dual-Inline-Package (DIP) form which is further divided into two main types viz: multilayer ceramic packages (LTCC and HTCC) and pressed ceramic packages.
CERM sealing enables high speed data transmission with minimum trace. H/LTCC offers significant advantages and hence indicates vertical growth in this segment. Hermeticity or hermetic packages to prevent moisture condensation from forming on IC chips and causing corrosion or occurrence of electro-chemical reactions is reason to hermetically seal the packages pursuant to military applications. Plastic encapsulate microelectronics (PEM’s) are still finding favor o account of die passivation and metallization technology but this is not the end for hermetic sealed packages with their feature-rich characteristics will find favor in electronics industry.
Hermetic connectors including DC and RF connectors machined housing and integrated hermetic electronic packaging are in use in extreme temperatures for carrying electric current in and out of the housing and disallow ingress of dust or moisture to settle on the electronic components. Connectors with specifications such as leak rate of 1x10-5 are hermetic. Target Audience includes OEM’s, OEM technology solution providers, Research Institutes, Market research and consulting firms and Technology Investors.
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As a news article dated Aug 2016 suggests trends in food packaging have completely taken over the industry with minimization of food waste and matters with severity such as using lesser preservatives in food are here to stay. Key industry players include Teledyne microelectronics, Schott AG, Ametek, Inc, Amkor Technology, Texas Instruments Inc., Micross Components, Inc., Legacy Technologies, Kyocera Corporation, and Materion Corporation.
Market Segment:
Hermetic Packaging Product Outlook (USD Million, 2014 - 2025)
• Ceramic to Metal Sealing
• Glass to Metal Sealing
• Transponder Glass
• Reed Glass
• Passivation Glass
Hermetic Packaging Application Outlook (USD Million, 2014 - 2025)
• Aeronautics & Space
• Military & Defense
• Automotive
• Healthcare
• Telecom
• Others
Hermetic Packaging Regional Outlook (Revenue, USD Million, 2014 - 2025)
• North America
• U.S.
• Europe
• Germany
• France
• Asia Pacific
• China
• Japan
• Central & South America
• Brazil
• Middle East & Africa
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Functional Printing Market Latest Innovation And Technology By Forecast 2027
Summary:
A new study title “Functional Printing market size, status and forecast 2027” has been featured on market research future.
Market Overview:
In the past decade, the printing industry has seen a lot of development and evolution of technology in the electronics market. Notably, there is more demand for printed electronic materials for wearable electronics, IoT devices, and medical sensors among others. Functional printing, multi-functional printing, and 3D printing are some of the advanced printing techniques that are in high demand across the world owing to its ability to develop fully printed functional devices. Applications of functional printing include RFID tags for inventory control and drug packaging that monitors and communicates patient compliance, interactive product packaging, among others. Many manufacturers have started adopting functional printing to print electronic parts and components owing to its various benefits in terms of design, cost, and material utilization.
Functional printing market is expected to grow from USD 10.52 billion in 2018 to USD 30.27 billion by 2024, at a compound annual growth rate (CAGR) of 19.26% during the forecast period.
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Key Players:
The prominent players in the functional printing market are HP Development Company, L.P (US), Haiku Tech (US), Avery Dennison Corporation (US), BASF SE (Germany), Blue Spark Technologies (US), Display Corporation (US), E Ink Holdings Inc. (Taiwan), Eastman Kodak Company Ltd (US), Enfucell Oy (France) and GSI Technologies LLC (US).
Other player in functional printing market are Isorg (France), Mark Andy Inc. (US), Nanosolar Inc. (US), Novaled AG (Germany), Optomec Inc. (US), Toppan Forms Co. Ltd (Japan), Toyo Ink Sc Holding Co. Ltd (US), Vorbeck Materials Corporation (US), Xennia Technology Limited (UK), Xaar PLC (UK) among others.
Segments:
functional printing market has been segmented on the basis of material, printing technology, application, and region.
Based on the material, the functional printing market has been segmented into substrates and inks. The substrates segment has been further segmented into glass, plastic, paper, silicon carbide, gallium nitride (GAN), and others. The inks segment has been sub-segmented into conductive inks, graphene ink, dielectric inks, and others.
On the basis of printing technology, the functional printing market has been segmented into inkjet printing, screen printing, gravure printing, flexography, and others.
Based on the application, the functional printing market has been segmented into sensors, displays, lighting, batteries, photovoltaics, RFID tags, others.
By region, the functional printing Industry has been segmented into North America, Europe, Asia-Pacific, and the rest of the world.
Regional Analysis:
The global market for functional printing is estimated to grow at a significant rate during the forecast period from 2019 to 2024. The geographical analysis of functional printing market has been done across North America, Europe, Asia-Pacific, and the rest of the world.
North America is dominating the market owing to a surge in demand for near-field communication (NFC) and early adoption of new technologies by the region. 3D printing is being highly adopted by the countries in this region, pushing the manufacturers to change their business models and supply chains through distributed 3D printing. Countries such as Canada and the US possess an established technical infrastructure which helps in adoption and implementation of advanced technologies. Asia-Pacific is expected to be the fastest growing region in the coming years owing to the presence of large printing companies supplying electronics and environment materials, films, and interior decor materials. Also, the presence of many giant electronic companies that uses printing as part of the manufacturing process of membrane switches, circuitry, tags, displays, and photovoltaics is expected to enhance the growth of functional printing market in the forecast period. Furthermore, South America, and the Middle East and Africa are expected to show considerable growth in the functional printing market during the forecast period.
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