Suzi: Long-Range Zigbee
Suzi extends Zigbee connectivity into the Sub-GHz spectrum, bringing longer range and improved signal propagation to the interoperable, low-power mesh networking capabilities of Zigbee.
Designed for residential, commercial, and industrial IoT applications, Suzi helps connected devices communicate reliably across greater distances and through challenging environments where traditional 2.4 GHz connectivity may be limited.
Why Suzi
Extended Range
Better Signal Propagation
Low-Power Connectivity
Mesh Networking
Zigbee Interoperability
Extended Range
Sub-GHz connectivity enables devices to communicate across greater distances, expanding coverage for large homes, buildings, campuses, and industrial environments.
Extend Zigbee Beyond 2.4 GHz
IoT networks increasingly need to connect devices across larger spaces, through multiple walls, between floors, and in locations that are difficult to reach with traditional 2.4 GHz wireless networks.
Suzi brings Zigbee to Sub-GHz spectrum to provide greater range and stronger signal propagation while maintaining the benefits of low-power, interoperable mesh networking. This opens new possibilities for Zigbee across residential, commercial, and industrial environments.
Use Cases
Extend connected device coverage throughout larger homes and multi-dwelling environments, including locations such as garages, basements, utility areas, outdoor spaces, and devices separated by multiple walls or floors.
Suzi can help expand the reach of sensors, controls, security devices, energy management systems, and other connected products without relying solely on 2.4 GHz coverage.
Connect devices across larger buildings and challenging indoor environments where walls, floors, equipment, and distance can affect wireless performance.
Suzi can support building automation applications including lighting, HVAC controls, energy management, access systems, sensors, and other low-power connected devices.
Extend low-power wireless connectivity across warehouses, manufacturing facilities, campuses, agricultural environments, and other large properties.
Longer range and improved signal propagation can help connect sensors, monitoring systems, controls, and other IoT devices in locations where network coverage has traditionally been difficult to achieve.