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Enhanced Ergonomics for Consumer Electronics

KRAIBURG TPE is enthusiastically developing TPE solutions for consumer electronics to meet new trends that focus on sustainability, safety, and functionality. Thermoplastic elastomers (TPEs) are fast gaining popularity among industry players thanks its durability, flexibility, and reliability in consumer electronics applications – including a wide range of products and devices for entertainment, communication, and recreation.

Designing for Flexibility and Consistency
KRAIBURG TPE’s compounds offer a variety of material solutions for the consumer electronic markets. These include good mechanical properties such as resistance to scratches, abrasions, and chemicals, and allow for colourful and soft-touch designs. The compounds are also free from heavy metals and other substances like latex, PVCs or phthalates to assure hazard-free use of the devices among the consumers.

Furthermore, to ease safety concerns, KRAIBURG TPE has selective TPE compounds, certified as per the UL94HB flammability, which determines the material’s burn rate once ignited to prevent a fire risk.

Typical consumer electronic applications include watch and wrist bands, headphones, ear tips, game consoles, wireless automatic sensor, car phone holders and chargers, virtual reality (VR) devices, remote controls, and more.

Assortment of color options available
Besides benefiting from the compounds that display a wide processing window, KRAIBURG TPE offers worldwide color consistency quality, with various colorability options available for consumer electronic product designers and manufacturers.

World’s first LED lights developed from rice husks

Milling rice to separate the grain from the husks produces about 100 million tons of rice husk waste globally each year. Scientists searching for a scalable method to fabricate quantum dots have developed a way to recycle rice husks to create the first silicon quantum dot (QD) LED light. Their new method transforms agricultural waste into state-of-the-art light-emitting diodes in a low-cost, environmentally friendly way.

“Since typical QDs often involve toxic material, such as cadmium, lead, or other heavy metals, environmental concerns have been frequently deliberated when using nanomaterials. Our proposed process and fabrication method for QDs minimizes these concerns,” said Ken-ichi Saitow, lead study author and a professor of chemistry at Hiroshima University.

Since porous silicon (Si) was discovered in the 1950s, scientists have explored its uses in applications in lithium-ion batteries, luminescent materials, biomedical sensors, and drug delivery systems. Non-toxic and found abundantly in nature, Si has photoluminescence properties, stemming from its microscopic (quantum-sized) dot structures that serve as semiconductors.

Aware of the environmental concerns surrounding the current quantum dots, the researchers set out to find a new method for fabricating quantum dots that has a positive environmental impact. Waste rice husks, it turns out, are an excellent source of high-purity silica (SiO2) and value-added Si powder.

The team used a combination of milling, heat treatments, and chemical etching to process the rice husk silica: First, they milled rice husks and extracted silica (SiO2) powders by burning off organic compounds of milled rice husks. Second, they heated the resulting silica powder in an electric furnace to obtain Si powders via a reduction reaction. Third, the product was a purified Si powder that was further reduced to 3 nanometer in size by chemical etching. Finally, its surface was chemically functionalized for high chemical stability and high dispersivity in solvent, with 3 nm crystalline particles to produce the SiQDs that luminesce in the orange-red range with high luminescence efficiency of over 20%.

“This is the first research to develop an LED from waste rice husks,” said Saitow, adding that the non-toxic quality of silicon makes them an attractive alternative to current semiconducting quantum dots available today.

“The present method becomes a noble method for developing environmentally friendly quantum dot LEDs from natural products,” he said.

The LEDs were assembled as a series of material layers. An indium-tin-oxide (ITO) glass substrate was the LED anode; it is a good conductor of electricity while sufficiently transparent for light emission. Additional layers were spin-coated onto the ITO glass, including the layer of SiQDs. The material was capped with an aluminum film cathode.

The chemical synthesis method the team developed has allowed them to evaluate the optical and optoelectrical properties of the SiQD light-emitting diode, including the structures, synthesis yields, and properties of the SiO2 and Si powders and SiQDs.

“By synthesizing high-yield SiQDs from rich husks and dispersing them in organic solvents, it is possible that one day these processes could be implemented on a large scale, like other high-yield chemical processes,” Saitow said.

The team’s next steps include developing higher efficiency luminescence in the SiQDs and the LEDs. They will also explore the possibility of producing SiQD LEDs other than the orange-red color they have just created. Looking ahead, the scientists suggest that the method they have developed could be applied to other plants, such as sugar cane bamboo, wheat, barley, or grasses, that contain SiO2. These natural products and their wastes might hold the potential for being transformed into non-toxic optoelectronic devices. Ultimately, the scientists would like to see commercialization of this eco-friendly approach to creating luminescent devices from rice husk waste.

 

https://www.hiroshima-u.ac.jp/

 

Light, oxygen turn waste plastics into useful benzoic acid

Styrofoam egg cartons, hard plastic compact disc cases, red drinking cups and many other common products are composed of polystyrene, a type of plastic that makes up a third of landfill waste worldwide.

“In terms of plastic production and end-of-life waste streams, we are on the road to an unsustainable future,” said Erin Stache, assistant professor of chemistry and chemical biology in the College of Arts and Sciences.

But there’s good news: Stache has discovered a new path for polystyrene waste that includes being upcycled into benzoic acid, a chemical with wide commercial demand, through a mild process that uses light, an oxygen-rich environment and an abundant iron-based catalyst. The reaction can even take place in a sunny window.

In line with her lab’s mission to tackle environmental concerns through interesting chemistry, the new process is mild, climate-friendly and scalable to commercial waste streams, Stache said. It efficiently produces benzoic acid, a product stocked in undergraduate and high school chemistry labs and also used in fragrances, food preservatives, and other ubiquitous products.

Moreover, the process is tolerant of additives inherent in a flow of consumer waste, including dirt, dyes and other types of plastics.

Polystyrene (PS) plastics vary widely in form, use and texture – from light, airy Styrofoam to hard CD cases, and many forms in between. All these products are similar in chemical composition, Stache said.

“The difference is in how they are processed,” she said. “Polystyrene foam, or Styrofoam, is filled with air, like a meringue, whereas a hard plastic CD case is solid polystyrene.”

At the molecular level, polymers (plastics) are composed of hundreds of small molecules called monomers assembled into long molecular chains through complicated processes, Stache said. Breaking down a polymer can be similarly intricate.

The researchers found that optimized conditions require a PS sample in acetone exposed to LED light in an oxygen-rich environment, using an iron chloride catalyst for 20 hours. In the optimized process, PS broke down to 23% benzoic acid. Other products included smaller plastic molecules that can be repurposed in other ways.

Last summer, Stache’s lab ran some degradation experiments in a sunny window; in a place with strong year-round sunlight, the reaction could be done outdoors.

“The advantage of using light is you can get exquisite control over the chemical process based on some of the catalysts we’ve developed to harness the white light. If we can use sunlight to drive the process, that’s a win-win,” Stache said, noting that many existing polymer recycling require heating a polymer for melting and processing, which usually requires fossil fuel.

To test the tolerance of the process to other materials mixed with the PS plastic, the researchers used several products, ranging from packaging materials to coffee cup lids.

They found that three items – a white coffee cup lid, Styrofoam and a clear lid – degraded efficiently. A black coffee cup lid degraded less efficiently, possibly because the black dyes inhibit light penetration, Stache said.

“These results signify that our system could efficiently break down commercial samples of PS, even with additional composite and insoluble material,” she said.

To demonstrate scalability and potential commercial application, the researchers created a setup with two syringe pumps and two LED lamps in a 3D-printed photoreactor. The efficiency of the breakdown process at the large scale was similar to that in small batches.

“If we can make the process even more efficient, we can think about how to commercialize it and use it to address waste streams,” Stache said.

 

https://www.cornell.edu/

Geissmann Renews Its Confidence in Comexi with the Acquisition of a 10-Color F2 MP Press

The flexographic printing press will allow the Swiss company to further strengthen its leadership position in the highly competitive Swiss market

Comexi, a global supplier of solutions for the flexible packaging printing and converting sector, and Geissmann Papier AG, a Swiss company that specializes in the production of flexible packaging, have strengthened their strategic alliance with the acquisition by the Swiss company of a Comexi F2 MP. This central drum flexographic press machine, to be installed at the Dottikon headquarters in early 2022, will allow Geissmann Papier AG to further strengthen its leading position in the highly demanding Swiss market.

“We are very pleased to have Geissmann as a strategic loyal customer for many years,” explains Ramon Jonama, the Comexi Area Manager of this region, who highlights that the F2 MP flexographic press is the third Comexi machine acquired by the Swiss company. Jonama emphasizes that “once again we are able to offer Geissmann the highest quality and technology, as well as impeccable service.” The 10-color F2 MP press achieves these objectives through great mechanical robustness, the most precise electronics and automation at the highest level. Consequently, it is of no importance the difficulty level of print orders; the maximum quality and productivity will be achieved repeatedly. In reference to long runs, the machine effortlessly prints at 500 m/min. Simultaneously, due to the built-in automation, job changeover and set-up are rapidly performed, which greatly increases productivity when runs are short.

Geissmann also benefits from the latest advances in service and spare parts. Comexi has invested a great deal, and constantly integrates the best human team, advanced diagnostic
systems, as well as an exhaustive stock of spare parts that allows all the strategic parts and components ready to ship, etc. As a result, any problem, irregardless of size, is resolved in record time, and all Comexi machines, those installed many years ago as well as recently, unfailingly operate without interruption. Furthermore, production control and traceability are fully implemented.

Founded in 1942 as a family business, Geissmann Papier AG is currently managed by the third generation, with Daniel Geissman as the executive director; the company employs approximately 60 people. In the beginning, primarily mono films and carrier bags were produced. Throughcompany growth as well as high machinery investments, innovation, and new market orientation, Geissmann Papier AG presently produces, for many years, a variety of high-quality papers, films, and complexes. These products are supplied in the form of reels and bags for the flexible packaging industry, primarily food, from a wide range of raw materials.

“We have invested in this flexographic press because we know Comexi’s excellent technology. This press machine has evident synergies with our other Comexi machines, both printing and laminating,” says Daniel Geissmann.

The Comexi F2 MP has been designed to meet long run printing needs of the flexible packaging sector. The F2 MP is the origin and basis of the F2 family, and so it features every ergonomic and robust solution of the F2 family. It incorporates every GeniusTech solution that assists printers to conquer the main challenges they currently face, which include a lack of skilled operators, a job length reduction, and an increased number of job changes, among others.

Between all GeniusTech solutions, maximum importance has been given to all these that focus in providing the highest printing quality at high speed, like the GeniusRun which eliminates the bouncing, the GeniusDry for the maximum drying performances at high speed, and GeniusDoctoring for a trouble-free ink transfer.

Sustainability has also been taken into account in the design of the Comexi F2 MP, so along with the different energy efficiency solutions we can find a dedicated version for Water Base inks, or a hybrid machine for Water Base, Electron Beam or Solvent Base inks

Mondi and Thimonnier team up to make recyclable packaging for liquid soap refills

Mondi and Thimonnier team up to make recyclable packaging for liquid soap refills

  • Mondi and Thimonnier launch a new recyclable mono-material berlingot sachet for liquid soap refills
  • The innovative new packaging reduces plastic usage by more than 75% compared to rigid plastic bottles
  • The solution is designed to replace the current industry standard of non-recyclable plastic

Mondi, a global leader in packaging and paper, has joined forces with French machine supplier Thimonnier to develop a recyclable packaging that reduces plastic waste.

The companies have created a new packaging for liquid refills that is designed so that it can be entirely emptied. The berlingot sachet is made from a recyclable mono-material, coextruded polyethylene (PE). It not only weighs less but also reduces plastic usage by more than 75% compared to rigid plastic bottles. The refill solution can replace the current industry standard of multilayer PVC refill containers, which are effectively not recyclable.

The unusual shape of the sachet is eye catching and differentiated. The durable and leak-proof solution allows consumers to smell the product inside, a particularly useful feature for the liquid soaps it is designed to protect. The lightweight material also makes it more convenient for customers, especially those who are buying in-store.

“Our goal working with Mondi was to find a packaging alternative with low environmental impact and good runnability. We are pleased to have found a solution that achieves both”, explained Eric Duhoo, General Manager at Thimonnier.

For Mondi, the solution was further demonstration of the benefits of partnership and its importance to achieving a truly circular economy. “Our Mondi Action Plan 2030 (MAP2030) sustainability framework sets ambitious goals to tackle global issues across the value chain: creating circular-driven packaging and paper solutions that are made by empowered people taking action on climate. We are proud and excited to partner with customers like Thimonnier to achieve our goal of keeping materials in circulation and making a real difference”, said Olivier Werbrouck, Regional Sales Consumer Flexibles, Mondi.

MAP2030 includes a target to make 100% of Mondi’s products reusable, recyclable or compostable by 2025. The sustainability plan also includes other commitments and targets in relation to circular driven solutions, people and climate – all of which are underpinned by a set of responsible business practices. Mondi has a long history of working with industry leaders to design packaging that is both effective and sustainable by design. The berlingot refill packaging was launched during the 25th edition of the CFIA in Rennes, France from 8 March to 10 March.

Solvay Launches new Biodegradable Guar- Based Polymers for Beauty Care

The Group is expanding its biodegradable offering with two additional guarbased functional polymers for responsible hair and skin care formulations

Solvay, a global leader in naturally-derived beauty polymers, expands its range of biodegradable guar-based solutions, introduced in December 2021, with two additional thickening and conditioning polymers for beauty care. The two new ingredients, Jaguar® NAT SGI and Jaguar® Excel, will enable beauty brands to address stringent global regulations and growing consumer expectations for more responsible and sustainable beauty products.

“Until recently, the availability of biodegradable functional polymers in the market has been limited,” explains Jean-Guy Le-Helloco, Home & Personal Care Vice-President at Solvay. “Our biodegradable Jaguar® ingredients offer formulators a range of sustainable game changers to create a wider choice of responsible hair and skin care products.”

Next to developing the new biodegradable Jaguar® ingredients, Solvay experts created the Beauty Biodeg Score chart based on the OECD1 guidelines ranging from A to D. The two new ingredients Jaguar® NAT SGI, a readily biodegradable thickening polymer (score A), and Jaguar® Excel, an inherently ultimately biodegradable conditioning polymer (score B), meet the toughest criteria for biodegradability2. They complement Jaguar® HP-8 COS SGI for thickening and Jaguar® C500 STD for conditioning, both rated score B. Typical applications include shampoos, hair treatments, hair conditioners, styling gels, body washes and powder-to-liquid cleansers. It will be presented at Solvay’s booth during the in-cosmetics global exhibition in Paris from April 5 to 7.

“By assigning a biodegradability score to our products, we help external stakeholders appreciate the swift progress Solvay is making in the development of biodegradable and sustainable products with full and transparent traceability,” says Galder Cristobal, Home and Personal Care Research & Innovation Director at Solvay. “We have entered a new phase of innovation with new polymer technologies and are investing in advanced biodegradation testing for next-generation beauty ingredients. Our new biodegradable Jaguar® ingredients are just the beginning.”

The guar beans used to produce the Jaguar® polymers are a natural and renewable resource, partially sourced through Solvay’s Sustainable Guar Initiative (SGI) program in Rajasthan, India. The SGI program is designed to implement best farming practices, conserve groundwater, improve local quality of life and empower women farmers while securing high-quality guar supplies.

Solvay’s commitment to sustainable beauty is at the essence of “Beauty for the Planet”, an initiative aimed at delivering sustainable beauty ingredients that work for consumers and the environment through innovation and partnerships with customers.

 

OE-A Business Climate Survey – Printed Electronics Industry Braves the Storm

OE-A Business Climate Survey – Printed Electronics Industry Braves the Storm
• For 2022 revenue growth of 12 % forecasted compared to 2021
• Companies anticipate growth to continue in 2023: +16 %
• Business recovery period “back to normal” expected to take longer

The signs are set for growth in the flexible, organic, and printed electronics industry. This is the clear message from the latest business climate survey conducted by the OE-A (Organic and Printed Electronics Association), with 86 percent of the survey participants expecting the industry to continue its positive development in 2022. “We have seen that innovation has continued through the pandemic, and our members throughout the supply chain and product cycle are looking forward to positive near-term growth” summarizes Stan Farnsworth, chair of the OE-A board and chief marketing officer of NovaCentrix, regarding the results of the latest OE-A Business Climate Survey for the international press at LOPEC 2022 in Munich, Germany.

The semi-annual business climate survey sheds light on the anticipated growth of the organic and printed electronics industry. The leading user industries for printed electronics applications are Consumer Electronics, Automotive, and Medical & Pharmaceutical. In the survey, OE-A members – from material suppliers to end users – are asked to provide qualitative data on the state of the industry and their expected sales development.

OE-A expects 12 percent sales growth for 2022
The positive trend for printed electronics echoes the results seen in the October survey. Yet, the full recovery of the printed electronics industry is taking longer than was expected last fall.

The coronavirus crisis left its mark on the industry, with 88 percent of respondents noting the negative impact of the pandemic, primarily manifested in supply chain issues. The current challenge in particular is the procurement of electronic components and chemicals. But the prospects are promising, and companies are seeing an increasing recovery of customer demand, especially in USA and Europe. Notably, fewer companies used or plan to use government aid and support programs in comparison to last October.

With an expected 12 percent growth in sales revenue, the printed electronics community turns out to be slightly less optimistic compared to autumn 2021 (+14 %). Sales revenue growth for 2023 has a positive outlook of 16 percent. This may or may not reflect concerns about the Russian war in Ukraine, which was initiated during the survey period, and which is judged by the OE-A as an unjustified act of aggression that needs to be countered with sanctions. “The war in Ukraine and the worldwide implications are adding to the uncertainties the industry has had to endure in the past two years. While it will add headwind, we remain optimistic that the printed electronics industry will continue to grow and develop”, adds Stan Farnsworth. More than 75 percent of the survey participants plan investments in the upcoming 6 months, emphasizing a positive outlook. Furthermore, according to the survey, the employment situation develops very positively: 69 percent planning to increase their staff, which is compared to October 2021 (23 %) a significant increase and the highest since the start of the survey 8 years ago.

Continuous growth of investment in R&D and Marketing
“Looking back to the OE-A Business Climate results of past years and in long-term comparison we clearly see a continuous growth of investments in R&D as well as in marketing. These are two sides of the same coin. Continuous investment in R&D will foster our industry’s innovative power and new products. With a growing part of these products are already in or close to market, marketing expenditures to promote successful customer engagements are expected to increase”, concludes Stan Farnsworth.

Toyochem Develops Low-odor, Low-VOC Acrylic Adhesive for Vehicle & Building Interiors

Toyochem Co., Ltd., the polymers and coatings arm of Japan’s Toyo Ink Group, today launched a new low-odor, low-VOC acrylic pressure-sensitive adhesive (PSA), the Oribain™ EXK 21-046, for use in enclosed spaces such as vehicles and building interiors. EXK 21-046 PSAs not only demonstrate good bonds to metals, plastics, textiles and other substrates, but they are also are capable of reducing total volatile organic compounds (T-VOCs), or the indoor air concentration of a mixture of multiple VOCs, to levels less than one-tenth of that of conventional products. The new low-VOC acrylic PSAs also effectively reduce odor levels, resulting in the increased health and comfort of indoor occupants.

The demand for low-impact interior materials has become a global trend as VOC emission regulations tighten worldwide due to growing public and industry awareness of the importance of indoor air quality. VOCs are suspected to be one of the major causes of sick building syndrome and sensory irritation, so building interior materials made from low VOC-emitting materials are being used where possible. In addition, the rise in electric vehicles and automated driving technology is expected to drive the demand for low-odor, low-VOC materials used in automobile interiors.

“While our conventional PSAs clear the indoor VOC concentration guidelines set by the Japanese government, the newly developed EXK 21-046 system were able to dramatically reduce trace amounts of T-VOCs that remain in standard-type products and to improve air quality,” explains Nao Nakamura, general manager of Toyochem’s adhesives division. “Toyochem research teams achieved this by developing a material that is not easily retained in the adhesive system and by applying our original polymerization and compounding technologies to better control viscoelasticity of the adhesive material. This results in a substantial reduction in T-VOC concentrations and lower odor intensity without compromising adhesive performance – a feat that had once been difficult to achieve. We believe the new EXK 21-046 PSA will help to realize indoor living spaces that are healthier for their occupants and for the Earth.”

As depicted in Figure 1, the EXK 21-046 PSA achieves T-VOC emissions rates of 18 µgC/g, substantially down from 310 µgC/g registered by Toyochem’s conventional PSAs. Moreover, the new PSA system realizes a 3.5 grade (clearly noticeable, but still not objectionable) on a 6-grade odor intensity scale, a reduction of 1.5 points from the typical 5 grade (very objectionable) recorded by the company’s standard-type products.

BB Engineering GmbH records order intake from Thai Polyester for four VacuFil recycling systems

BB Engineering GmbH (Germany), a subsidiary of Oerlikon Textile, is pleased to announce that Thai Polyester Co., Ltd (Thailand) has placed a major order for four VacuFil systems for recycling bottle flakes with connected direct spinning. The polyester manufacturer, established in 2001 and with an overall annual capacity of 316,800 tons, is one of Thailand’s leading producers and exclusively uses German technology. To this end, the company already operates Oerlikon Barmag and Oerlikon Neumag systems. The BB Engineering VacuFil systems will be deployed to convert existing spinning plant equipment from processing polyester to processing PET bottle flakes without loss of performance.

BB Engineering supplies the complete recycling process – from the drying stage and extrusion, all the way through to the spinning plant-appropriate fine filtration stage. Thanks to decades of experi- ence in spinning plant technology, the German machine constructor also provides comprehensive spinning plant know-how and is aware of how the recycling process must be designed to ensure that the product manufactured using the spinning plant ultimately has the right quality. The four new VacuFil systems will be integrated into the existing building infrastructure and process landscape at Thai Polyester, with a total output of approx. 4,000 kg/h. The VacuFil systems will be complemented by BB Engineering 3DD mixers for directly feeding dyes into the recycled melt flow. Commissioning has been scheduled for 2023.

 

Thai Polyester will be using the new VacuFil systems to manufacture its ‘EcoTPC’ recycling-brand yarns. 100% of these polyester yarns are produced from bottle, fiber and yarn waste and are all GRS certified.

Bomplastic Will Offer More Diversified and Innovative Products After Acquiring a Comexi F2 MB

The Brazilian company, with 27 years of experience in the sector, chooses the Comexi flexographic press for its production quality and development

Girona, March 24, 2022.- Comexi, a specialist in solutions for the flexible packaging printing and converting industry, and Bomplastic, a company that specializes in practical and innovative solutions for the flexible packaging sector, have reached an agreement for the Brazilian company to acquire a Comexi F2 MB flexographic press. This acquisition will allow Bomplastic to offer more diversified and innovative products, thus meeting the needs of various market niches.

“We are very pleased with the acquisition of a Comexi F2 MB”, explains César Mangaravite, manager of Bomplastic, who highlights that “we are among the leading Brazilian companies in the packaging sector, and this flexographic press will allow us to enter new markets”. In this regard, Mangaravite adds that the Comexi F2 MB will contribute to the development of the company, which invariabily pursues continuous improvement, as well as innovative and distinctive technologies. “We are going to generate more employment opportunities in the region”, concludes the manager of the Brazilian company.

The quality of production and development are the two main principal characteristics that have made Bomplastic choose the Comexi F2 MB; the Brazilian company will use the flexographic press to print packaging of high-quality and high-definition. Mangaravite highly and positively values the relationship between the two companies. Furthermore, he expresses that Bomplastic is interested in acquiring more Comexi machinery in the future, thus reinforcing the new partnership between the two companies.

“At Comexi Brazil we are very delighted with this new business relationship; we are certain that the acquisition of an F2 MB press by Bomplastic will be successful. This is the first step of many”, explains Ariston Galli, the commercial manager of Comexi Brazil.

Bomplastic, founded in 1994 in the city of Bom Jesus do Itabapoana (Rio de Janeiro), has 27 years of experience in the development, manufacturing, and production of plastic containers. The company prints high-performance technical films, polyethylene and polypropylene containers, laminates, 3-barrier protected coextruded materials, food containers, and a variety of bags. “We produce 350 tons per month as a result of our investment in state-of-the-art machinery,” says the company’s manager. Bomplastic has a strategic position in Brazil, as it is located on the border between the states of Rio de Janeiro and Espírito Santo. Furthermore, the company is a few kilometers from the border with the state of Minas Gerais.

The Comexi F2 MB press is an advanced machine designed to satisfy the print needs of medium runs in the flexible packaging sector of the retail and wholesale channel. This flexographic press shares the patented FLEXOEfficiency concepts of ergonomics and accessibility, as well as the level of performance and robustness with the rest of the Comexi F2 range. This is all integrated with a simplified drying system design. Without a doubt, the Comexi F2 MB is a highly productive and performing machine.