Clevon's T-Mobile Powered Autonomous Delivery Robot Fleet Zooms Into Smart City Peachtree Corners
The company's autonomous robot carriers (ARCs), powered by T-Mobile connectivity, are designed to collect orders at warehouses, retail stores, dark stores and micro fulfillment centers, and then deliver those goods to people and businesses around the city.
Parcel: A Lower-Cost Way To Automate Last-Mile Delivery Hubs
Solving the challenge of the last mile using traditional methods, like human teams and traditional automation systems, can require a massive upfront investment of capital and time - and often isn't enough to gain an edge in an already cutthroat market.
Records 1 to 2 of 2
Featured Product
Strain Wave Gearheads by maxon - Highly precise, compact, and efficient.
Strain wave gearheads are ideal for use in applications requiring precision motion control and high torque transmission in a compact design. maxon strain wave gearheads are a specialized type of gearhead where precision and compact design are crucial. This type of gearhead is often used in applications in a confined space. With their advanced gear tooth design, maxon's strain wave gearheads provide high efficiency and good back drivability. Typical applications include: Robotics, Aerospace, Medical technology and Optical systems .
Robotics and Automation - Featured Company
Freudenberg Sealing Technologies
Freudenberg Sealing Technologies is a proven supplier for demanding products and applications, and a development and service partner to customers in the automotive industries and in general industries. We apply 175 years of engineering and materials expertise. Then and now - we are focused on serving our customers' requirements and needs. Starting with the development of the Simmerring® radial shaft seal in 1929, Freudenberg Sealing Technologies has continuously expanded its industrial seals and component portfolio to include a range of technology solutions that address critical issues like performance, power, friction, emissions and material compatibility.


