Maurice Gerovitz
Vice President
With more than 25 years of experience in low-voltage design, security systems integration, and large-scale development projects, Maurice Gerovitz is a recognized leader in the multifamily, hospitality, and commercial technology sectors. As Vice President at Systems Design & Integration, he leads the company’s capabilities in technology consulting, smart building infrastructure, and integrated security solutions for complex properties.
Maurice has played a pivotal role in shaping technology strategies for some of the most prominent developments across the United States. His portfolio includes major projects such as the Miami World Center site infrastructure and the Paramount Tower at Miami World Center, as well as landmark luxury properties including The Ritz-Carlton Sunny Isles Beach, Mansions at Acqualina Residences, and 2000 South Ocean, where he oversaw advanced implementations including facial recognition access control and destination-driven elevator integration.
His experience also spans large-scale mixed-use and commercial developments such as Wynwood Plaza — including the Amazon Miami Headquarters office component — Env Tower in Chicago, Hanover Tower in Fort Lauderdale, Mosaic Towers in Houston, and Brickell World Plaza. Through these projects, Maurice has helped developers and ownership groups establish technology standards that enhance operational efficiency, security, and long-term asset value.
Known for his collaborative approach with architects, engineers, and development teams, Maurice specializes in aligning technology planning with construction realities to reduce change orders, streamline implementation, and deliver scalable, future-ready solutions. His forward-thinking perspective ensures that clients remain competitive in an increasingly technology-driven real estate landscape.
Under his leadership, SDI continues to strengthen its position as a trusted partner for developers and property owners seeking integrated security, audiovisual, and smart building solutions that perform as seamlessly as they are designed.
