How Apple Is Already Part Of Industry 4.0 !EXCLUSIVE!
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These can be considered as the overarching themes of industry 4.0. They themselves however are only part of the picture. Industry 4.0 in its current state is made up of more specific technologies that are currently in use, or are being researched for future use in real life settings. This includes: IoT devices (internet-of-things), smart sensors, location technology, 3D printing, user authentication, big data processing and many more.
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At TQMI, we have designed a special workshop to help manufacturing companies understand and rightly adopt Industry 4.0. As a part of this workshop, we look at your organization from the lens of smart manufacturing adoption, identify opportunities to unlock the value in the information already with the organization, and create a systematic and non-invasive roadmap to unlock this value.
Lakeshore Advantage received US$92,787 in state grant funding to help increase the readiness of manufacturers to adopt industry 4.0. The organisation has also been in close collaboration with regional economic development partners, which has allowed Lakeshore Advantage to extended its initiative to Ottawa, Allegan, Muskegon, and Kent.
Industry 4.0 is already transforming how companies manufacture, improve and distribute their products. Manufacturers are integrating new technologies, including Internet of Things (IoT), cloud computing and analytics, AI, and machine learning into their production facilities and throughout their operations. However, according to data from the Department of Statistics Malaysia (DOSM), Industry 4.0 adoption amongst Malaysian firms sits at less than 1%.
This is significantly behind international standards, creating a gap that must be overcome if Malaysian firms are to remain competitive in the long term. The collaboration combines the resources of prominent market leaders across a range of sectors including industry domains, processes and technology. As part of the partnership, UST, Intel and SAP will collaborate to establish a Customer Experience center at a local UST Innovation Lab that will help share ideas on digitizing customized solutions.
Not unexpectedly, respondents continue to adopt AI as part of their solutions. 39% said they are using AI in their designs already and a further 47% say they would be willing to implement AI within future projects. Environmental sensors are reported as the most common sensors used within IoT devices, used to measure temperature, humidity, pressure, gas and more. This has been a consistent trend in each of the three years that Farnell has run the survey. The survey also found that a large number of respondents are using SBCs as the core of IoT designs (48%).
During 2020, the impact of the COVID-19 pandemic on the IoT industry led to rapid growth in the development of new medical devices and systems, with the potential to fuel demand for improved connected medical equipment in the future. IoT is changing the way patients are diagnosed, treated and monitored and supporting vaccine tracking, inventory managements and more. A quarter of survey participants expect healthcare to be the next big industry likely to take advantage of innovation in IoT connectivity. The use of SBCs as the core of IoT design is also in line with anecdotal feedback that Farnell has received from customers that during the COVID-19 pandemic, design engineers have embraced development kits and single board computers as they design at home. 2b1af7f3a8