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Bosch opens wafer fab of the future in Dresden

07.06.2021

Press release

Industry 4.0

Bosch opens wafer fab of the future in Dresden

Dresden, Germany – Fully connected, data-driven, self-optimizing: in Dresden, Bosch is opening one of the world’s most modern wafer fabs. Highly automated, fully connected machines and integrated processes, combined with methods of artificial intelligence (AI) will make the Dresden plant a smart factory and a trailblazer in Industry 4.0. In the virtual presence of Federal Chancellor Dr. Angela Merkel, EU Commission Vice-President Margrethe Vestager, and Saxony’s Minister-President Michael Kretschmer, the high-tech facility was officially inaugurated on June 7, 2021.“The state-of-the-art technology showcased at the new Dresden wafer fab is a great example of what public and private European actors can achieve when they join their efforts. Semiconductors will contribute to the development of industries like transportation, manufacturing, clean energy, and healthcare – where Europe excels. It will help strengthen Europe’s competitiveness as a cradle for cutting-edge innovations,” said Margrethe Vestager, EU Commission Vice-President. “For Bosch, semiconductors are a core technology, and it is strategically important to develop and manufacture them ourselves. In Dresden, with the help of artificial intelligence, we will take semiconductor manufacturing to the next level,” said Dr. Volkmar Denner, chairman of the board of management of Robert Bosch GmbH. “This is our first AIoT factory: fully connected, data-driven, and self-optimizing right from the start.” Bosch is investing roughly one billion euros in this high-tech location. This is the biggest single investment in the company’s more than 130-year history. Production in Dresden will start as early as July – six months earlier than planned. From that time on, semiconductors made in the new plant will be installed in Bosch power tools. For automotive customers, chip production will start in September, and thus three months earlier than planned. The new factory will be an important part of the semiconductor manufacturing network. With it, Bosch is strengthening Germany’s position as a technology and business location. “The new wafer fab is good for Europe, for Germany, and for Saxony. Directly and indirectly, it means many new jobs in a huge growth industry. This billion-euro investment strengthens Silicon Saxony and the entire European semiconductor industry,” said Michael Kretschmer, the minister-president of Saxony. On 72,000 square meters of floor space, 250 people are already working in the wafer fab in Saxony’s state capital. The workforce is set to grow to roughly 700 once construction work has been completed. No other automotive supplier has been working intensively on microelectronics since the 1950s. Since 1958, Bosch has been making semiconductor components itself. And since 1970, the company’s Reutlingen plant has been making special components that are not commercially available. In its wafer fabs in Reutlingen and Dresden alone, Bosch has invested more than 2.5 billion euros since 200-millimeter technology was introduced in 2010. On top of this, billions of euros have been invested in developing microelectronics. In this way, the company is continuing to pursue its growth strategy in semiconductor development and manufacturing. “This expertise is the key to many high-caliber systems solutions made by Bosch,” Denner said. Pioneer in Industry 4.0 Machines that think for themselves, maintenance work from 9,000 kilometers away, glasses with built-in cameras: the wafer fab that has now been built in Dresden is one of the world’s most advanced. “Thanks to the combination of artificial intelligence and the internet of things, we are creating the basis for data-driven, continuous improvement in manufacturing,” Denner said. In concrete terms, this means that all the data in the wafer fab – from machinery, sensors, and products – is collected in a central database. The result: every second, production data equivalent to 500 pages of text is generated. In just one day, this would be equivalent to more than 42 million pages. This data is then evaluated using methods of artificial intelligence. In this process, self-optimizing algorithms learn how to make predictions on the basis of the data. In this way, manufacturing and maintenance processes can be analyzed in real time. For example, an AI algorithm can detect even the tiniest anomalies in products. These anomalies are visible on the wafer surface in the form of specific error patterns known as signatures. Their causes are immediately analyzed and deviations from the process corrected without delay, even before they can affect the reliability of the product. “Artificial intelligence is the key to further improving the manufacturing processes and semiconductor quality, as well as to achieving a high level of process stability.” Denner said. In turn, it means that semiconductor products can go into full-scale production quickly, saving automotive customers the need for the time-consuming trials that would otherwise be necessary before production release. Maintenance work can also be optimized thanks to artificial intelligence. Algorithms can precisely predict whether and when a piece of manufacturing machinery or a robot needs maintenance or adjustment. In other words, such work is not done according to a rigid schedule, but precisely when it is needed – and well in advance of any problems cropping up. “Digital twin”: the plant and its double One other outstanding feature of the wafer fab is that it exists twice – once in the real world, and once in the digital world. The specialist term for this is “digital twin.” During construction, all parts of the factory and all relevant construction data relating to the plant as a whole were recorded digitally and visualized in a three-dimensional model. The twin comprises roughly half a million 3D objects, including buildings and infrastructure, supply and disposal systems, cable ducts and ventilation systems, and machinery and manufacturing lines. This allows Bosch to simulate both process optimization plans and renovation work without intervening in ongoing operations. Maintenance work in the Dresden factory also makes use of high-tech: data glasses and augmented reality mean that maintenance work on machinery can even be done remotely. In other words, maintenance work in Dresden can be done by an expert from a mechanical engineering company in Asia without any need for that expert to come to Dresden. Thanks to a camera built into data glasses, images are transmitted half way around the world, and the expert there then talks the associate through the maintenance process in real time. This technology also played a crucial role in ensuring that the machinery could be commissioned despite coronavirus-related travel restrictions. Semiconductors for better quality of life and road safety In the shape of microchips, semiconductors are to be found in nearly every technical device – in smartphone, televisions, and fitness bracelets. And without semiconductors, cars would not work, either today or in the future. In 2016, every new vehicle worldwide had an average of more than nine Bosch chips on board, in devices such as the airbag control unit, the braking system, and the park assist system. In 2019, this figure was already more than 17. In other words, their number had nearly doubled in just a few years. In the years to come, experts expect to see the strongest growth in driver assistance systems, infotainment, and the electrification of the powertrain. With its wafer fab in Dresden, Bosch is responding to the increased demand for semiconductors. “Semiconductors are the building blocks of progress. Electronic components equipped with chips from Dresden will make applications such as automated and resource- conserving driving possible, as well as the best possible occupant protection,” said Harald Kroeger, member of the board of management of Robert Bosch GmbH. Surveys confirm this growth in demand: as recently as 1998, according to the ZVEI, the value of the microelectronics in a new car was 120 euros. By 2018, this value had risen to 500 euros, and in 2023 it is expected to exceed 600 euros. This means that semiconductors are a growth area for Bosch as well. Semiconductor expertise as a competitive advantage “Chips for vehicles are the ultimate discipline in semiconductor technology. This is because in cars, these small building blocks have to be especially robust,” Kroeger said. Over a vehicle’s service life, chips are exposed to strong vibrations and extreme temperatures that range from far below freezing to far above the boiling point of water. In other words, chips have to meet higher standards of reliability. This means that the development of automotive semiconductors is more complicated than in other applications. This requires specialist expertise, and Bosch has amassed such expertise over the course of decades. Its developers and engineers understand the physical principles behind microelectronic automotive components. This opens up the possibility of complete systems that prevent accidents and protect the environment – again, the company is a one-stop shop for the development and manufacture of such systems. “This dual strength – the combination of chip and systems expertise – is strategically important for Bosch,” Kroeger said. In addition, Bosch can complement its strength in the development and manufacture of semiconductors with its systems expertise in electronics and software. This allows the company to ensure the quality of its products, to continuously refine them, and to reduce costs. “Silicon Saxony”: Europe’s biggest microelectronics location After comparing sites around the world, Bosch settled on Dresden, in the state of Saxony, as the location for its wafer fab. “Silicon Saxony” is Europe’s biggest microelectronics location, and the fifth biggest worldwide. One in three of all chips made in Europe is produced here. The region offers perfect conditions for this. “The location and construction of the factory demonstrate how much faith people have in Saxony as a high-tech location, with its experienced and qualified specialists and an unrivalled network that has come into being here over the course of the decades,” said Michael Kretschmer, Saxony’s minister-president. He added that Dresden’s infrastructure is excellent: everything is easily accessible, and the transportation connections are good. This includes companies from the automotive supply, services, and other industries, as well as universities and research institutes offering technological expertise. “In Dresden, modern entrepreneurship rubs shoulders with academic excellence and far-sighted industrial policy,” Kroeger said. “For Bosch therefore, the decision to make the single biggest investment in the company’s more than 130-year history here in this region was a deliberate one.”

CES 2018: Bosch sees future in smart-city business

09.01.2018

Press release

Internet of Things

CES 2018: Bosch sees future in smart-city business

Las Vegas, NV – Urban populations are growing: according to the United Nations, roughly two-thirds of the global population will live in conurbations by 2050. In 2014, this figure was just one-half. Urbanization is increasing, and with it the challenges cities have to solve. Even today, therefore, there is a considerable need for smart solutions. Speaking at CES in Las Vegas, the Bosch management board member Stefan Hartung said: “We need a new conception of the city. One key factor here is technologies that make cities smart and worth living in. In the long run, cities without intelligence will not survive, but succumb to gridlock.” Bosch is working to equip cities and neighborhoods for the future, offering smart mobility, better air quality, more convenience, greater security, and many new services. In short, the aim is significantly better quality of life in cities and neighborhoods. “When it comes to smart cities, few other companies can match Bosch’s comprehensive portfolio, cross-domain knowledge, and outstanding expertise in sensors, software, and services – and all this from a single source,” Hartung said. From January 9 to 12, the supplier of technology and services will be presenting many new solutions that make cities smart at CES 2018, the world’s largest electronics show. These range from a new compact unit that measures and analyzes air quality in real time, to a system that digitally monitors river water levels and gives early warning of flood risks, to a completely automatic parking space service that makes drivers’ lives easier. For more business: the smart-city market is booming Some of the world’s major metropolises are already synonymous with the term “smart,” among them Barcelona, Seoul, and London. Across the globe, cities large and small are investing in smart-city technologies. According to a study on behalf of Bosch, the smart-city market will grow 19 percent each year between now and 2020, reaching a volume of 800 billion dollars (680 billion euros). Bosch believes this is a great business opportunity: “For a long time, the smart city was a vision. We’re helping make it reality. Bosch is in an excellent position to make the connected city a technological and commercial success,” Hartung said. The company is currently involved in 14 extensive smart-city projects in places such as San Francisco, Singapore, Tianjin, Berlin, and Stuttgart. Others are planned to follow. Within the past two years, the company has doubled its sales from cross-domain projects to nearly one billion euros, and this figure is set to rise further. In the Bay Area city of San Leandro, for example, the company has equipped roughly 5,000 streetlights with LEDs and supplied a system for remote management of the city’s street lighting. In this way, the lights are only switched on when they are actually needed. With this solution, San Leandro will be able to save roughly 8 million dollars over the next 15 years. At the Bosch CES press conference, Mike Mansuetti, the president of Bosch North America, said: “Whether cities are big or small, our smart solutions will help them save energy, and money too.” In the case of San Leandro and its 100,000 inhabitants, sensors can be used to measure and analyze air quality, and cameras can automatically re-route traffic in the event of congestion. For more connectivity: IoT and artificial intelligence The internet of things (IoT) has laid one of the main foundations for the connected city. The IoT is finding its way into all walks of life: a Gartner study predicts that some 230 million homes worldwide – roughly 15 percent of all homes – will be intelligently connected by 2020. Here as well, the potential is huge, with market volume estimated to reach 250 billion dollars annually by 2020. By the same year, more than 20 billion devices worldwide will be connected with each other – smoke detectors, burglar alarms, electricity meters, home appliances, and many more. “Bosch recognized this potential early on,” Hartung said. “Even now, more than half our electronic product classes are web-enabled – and the aim is for this to be 100 percent by 2020. Not only that: for each of our products, we want to offer accompanying services.” Another driver of the rapid development of smart cities is artificial intelligence (AI). Bosch intends to further expand its research in this field. Last year, the company opened a research center for artificial intelligence, which now employs some 100 associates in Renningen, Germany, Palo Alto, CA, and Bengaluru, India. By 2021, Bosch will invest some 300 million euros in expanding the center. The company anticipates that, ten years from now, scarcely any product will be conceivable without AI. For better air quality: Climo creates basis for targeted action Air quality is one of the greatest challenges cities face. Thanks to smart technologies, cities can take faster and more targeted action to improve it. However, this depends on accurate measurements. At CES 2018, Bosch is presenting a new solution that it developed together with Intel – the Climo microclimate monitoring system. Climo measures and analyzes 12 parameters that are important for air quality, including carbon dioxide, nitrogen oxide, temperature, and relative humidity. The appliance is one-hundredth the size of conventional systems – and one-tenth the cost. Climo won a CES Honoree Innovation Award in the “smart cities” category. For early warning: digital monitoring of rivers In many regions, climate change is resulting in unpredictable weather. Researchers expect that heavier rainfall will result in more frequent flash flooding. Up to now, mechanical devices have been used to measure river water levels. Hours may pass before these measurements become available for others. However, the flood monitoring system changes all this. In real time, it monitors the water level in rivers and other bodies of water close to cities, and warns of an impending flood. In a pilot project, Bosch is testing the new system on the Neckar river near Ludwigsburg, Germany. Ultrasonic sensor probes and cameras track changes in water level, speed, and throughput. The data is sent to the Bosch IoT Cloud for processing. Should critical thresholds be exceeded, the affected municipalities, residents, and business owners are alerted well in advance by text message. This gives them enough time to take precautions against flooding and flood-related damage. Among those interested in the solution are a number of Indian and South American municipalities that frequently have to combat flooding. For more time: connected parking Urban traffic will increase by roughly one-third by 2050. Bosch is working to make tomorrow’s mobility free of accidents, stress, and emissions. At CES 2018, the company is presenting many solutions that lead toward this goal. Urban traffic plays a role in roughly half the smart-city projects Bosch is involved in. Parking is a particular focal point. U.S. drivers now spend more than 40 hours a year stuck in congestion, wasting some 160 billion dollars in the process. Of this time, roughly one-third is wasted on the search for parking alone. This is where Bosch can help: with its community-based parking, the company simplifies the search for a suitable space. As they drive by, cars automatically recognize and measure the size of the gaps between parked cars, transmitting the data in real time to a digital map. In this way, drivers can have themselves guided directly to free parking spaces. Bosch is already testing this service in German cities, including Stuttgart. This year, as many as 20 U.S. cities will follow, including Los Angeles, Miami, and Boston. In early 2018, moreover, Bosch and Daimler will be launching a new automated valet parking service. Cars in the Mercedes-Benz Museum parking garage in Stuttgart will look for a parking space and park themselves, without a driver. This cuts out stress, and makes more efficient use of parking lots – the same amount of space can accommodate up to 20 percent more vehicles. One factor making fully automated parking a reality is smart parking-garage infrastructure, which connects with the vehicle’s on-board software. Bosch recently won a Frost & Sullivan’s 2017 Technology Innovation Award for this driverless parking solution. For energy and cost savings: Bosch DC microgrids According to the International Panel on Climate Change (IPCC), cities account for roughly 75 percent of total global energy consumption. Forty percent of this is attributable to buildings alone. And the BP Energy Outlook 2035 estimates that global energy consumption will rise 30 percent by 2035. Bosch has many smart energy management solutions that can reduce power consumption. One of these is the Bosch DC (direct current) microgrid, which can be used to supply power to large buildings or building complexes. Since microgrids are generally fed by renewable sources, they are especially eco-friendly. DC microgrids consume up to 10 percent less energy than conventional power plants. Another major advantage is their self-sufficiency, which makes them a reliable source of power when a weather- or security-related outage affects the broader grid. Bosch at CES 2018: PRESS CONFERENCE: In Ballrooms B, C, and D, Mandalay Bay Hotel, Las Vegas South Convention Center, Level 2 , from 8:00 to 8:45 a.m. local time on Monday, Jan 8. BOOTH: Tuesday to Friday, Jan 9–12 , in the Central Hall, booth #14028 FOLLOW the Bosch CES 2018 highlights on Twitter: #BoschCES PANELS WITH BOSCH EXPERTS: PANELS WITH BOSCH EXPERTS: Tuesday, January 9, 1:30 – 3:15 p.m. (local time) “Connect2Car: Next-Gen Automobility” session with Kay Stepper, Vice President of Bosch in North America, head of driver assistance and automated driving, Las Vegas, Convention Center, North Hall, N256 Wednesday, Jan 10, 1:45–2:30 p.m. (local time) “Connected Vehicles in Connected Ecosystems” session with Mike Mansuetti, President Bosch North America, Smart Cities Conference, Westgate. Thursday, Jan 11, 11:30 a.m to 12:30 p.m. (local time) “The Future of Robots at Work and Home” session with Phil Roan, Senior Engineer Robotics, BSH Hausgeräte GmbH, Las Vegas Convention Center, North Hall, N258