OhmniLabs Debuts UV-C Cleaning Robot

Robotics company OhmniLabs recently debuted an autonomous cleaning robot that uses UV-C light to disinfect spaces. The robot, OhmniClean, weighs in at 58 pounds, making it the lightest such product in the world, according to a news release. OhmniClean is capable of disinfecting a 3,000-square-foot space in less than 15 minutes and was designed for use in schools, hospitals, hotels and other spaces that require deep cleaning of high-touch surfaces.

“We developed OhmniClean to address a critical need in the market for fast, simple and effective disinfection," said Tra Vu, Chief Operating Officer at OhmniLabs. "At a time when sterile cleaning and infection control are top of mind, OhmniClean is helping to restore normalcy by simplifying existing cleaning processes and making disinfection more intelligent through providing access to efficacy and compliance data. In addition, OhmniClean is made in the U.S.A., so we are able to bypass global shipping and supply chain issues currently faced by other manufacturers.”

OhmniClean UV-C Disinfection Robot
Photo courtesy of Joseph Milholland (Lightspeed PR)

A press release notes that UV-C light has been proven to reduce bacterial counts on high-touch surfaces and that SARS-CoV-2 (the virus that causes COVID-19) is particularly vulnerable to this type of ultraviolet light. Independent testing has confirmed that OhmniClean’s consistent 254-nm UV-C disinfection is effective against pathogens like MRSA, VRE, P. aeruginosa, E. coli and SARS-CoV-2 with a 99.999% efficacy rate, according to the press release.

“The OhmniClean robot is incredibly easy to use," said Hector Garcia, President of ProClean Janitorial. "My team was able to get it up and running after just ten minutes of training. The robot's autonomy allows our staff to clean multiple rooms while the robot disinfects other areas of a property. The whole process is quick and efficient.”

OhmniClean offers a short cleaning cycle time that allows a single person to manage a small fleet capable of disinfecting multiple rooms simultaneously. The automated UV-C disinfection solution also reduces both human error and the risk of injury from mixing cleaning products or handling heavy equipment. The robot features motion sensors, remote switches and an active safety system.

About the Author

Matt Jones is senior editor of Spaces4Learning. He can be reached at [email protected].

Featured

  • Can AI Help Build Stronger Communities in Student Housing?

    Student housing success is shifting from operational performance to student experience, with belonging now at the center. A recent 2025 report underscores a growing emphasis on student well-being, community, and engagement, signaling that expectations now extend beyond logistics to ensure students feel supported in their living environments. AI is enabling that shift by reducing administrative workload and giving teams more time to focus on meaningful student engagement.

  • Homewood-Flossmoor High School NetZero Addition

    Homewood-Flossmoor High School NetZero Addition

    Established in 1999, the Education Design Showcase is a vehicle for showing off innovative — yet practical — solutions in planning, design, architecture, and construction. The Homewood-Flossmoor High School NetZero Addition has been recognized with an EDS 2026 Project of Distinction award in the category of New Construction.

  • Spaces4Learning Launches 2026 Facilities and Construction Brief Survey

    Spaces4Learning recently launched the 2026 Facilities and Construction Brief Survey, which collects data on the previous year’s K–12 and higher education construction projects nationwide.

  • Wold Architects & Engineers Announces Acquisition of JJCA

    Wold Architects & Engineers, based in Minneapolis, Minn., recently announced that it has acquired JJCA, an architecture firm based in Nashville, Tenn., according to a press release. JJCA specializes in healthcare and education design; the partnership allows both firms to expand their presence across the country while building on existing strengths.