Modern Plastics Turkey

BASF materializes charging infrastructure solutions with conceptual autonomous wireless charger

ZMP, B&Plus and BASF have created MobiPOWER, a conceptual autonomous wireless charger, to meet the growing demand for charging infrastructure solutions.

“Over 75 billion connected devices – such as phones and electric vehicles – will need charging by 2025. MobiPOWER enables us to meet this market demand, with a convenient charging solution that is robust enough to house sophisticated components and sensors combining 5G, IoT and AI capabilities, as well as durable enough for the outdoors,” said Dr. Hisashi Taniguchi, Founder & CEO, ZMP Inc. “BASF expanded my creativity and the possibility of our robots.”
Besides the technical challenges of autonomous charging solutions, MobiPOWER’s wireless charging concept also required more advanced material considerations and design support by BASF’s Creation Center to enable more reliable and highest safety standards charging.
“There are multiple considerations that go with wireless charging,” said Atsushi Kameda, President & CEO, B & Plus. “By combining our technology and expertise, we are creating a new future.”
Driving new applications by exploring co-development opportunities
BASF’s broad portfolio of advanced material solutions have been used in the creation of MobiPOWER.
Ultradur PBT and Ultramid PA are best-in-class materials to be applied for MobiPOWER’s radar housing, lidars, protective films and other electrical devices.

The paint protection film made of Elastollan® thermoplastic polyurethane provides good hydrolysis resistance, excellent weatherability with anti-abrasion performance properties, and scratch resistance behavior. Its properties can be further optimized to enhance their durability, insulation, and chemical resistance.
Partnership to create value for businesses, the environment, and society
“Through this co-creation, we once again demonstrate the potential of BASF’s material solutions and competencies in supporting customers to overcome emerging challenges for demanding applications,” said Andy Postlethwaite, Senior Vice President, Performance Materials Asia Pacific, BASF. “Further, the co-creation helps demonstrate our ability to empower greater sustainability with energy efficiency and long-lasting material solutions that improve the shelf life of end products.”
The charger made of high-performance plastics instead of metal is lighter in weight, hence, consuming less energy. It enables the charger’s energy-efficient operation.
https://www.basf.com/

Exit mobile version