DASflect provides a distributed antenna system (DAS) that enhances indoor wireless network capacity, enabling faster connections for more users and devices. This technology addresses the challenge of poor indoor connectivity by optimizing bandwidth utilization at a lower cost.
Funding
$200K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Indoor environments often suffer from poor wireless connectivity due to signal attenuation, interference, and the increasing demand for bandwidth from numerous devices. As wireless frequencies increase, maintaining reliable indoor coverage and capacity becomes more challenging, leading to user frustration and reduced productivity.
Solution
DASflect offers a distributed antenna system (DAS) solution enhanced by Reconfigurable Intelligent Surface (RIS) technology to improve indoor wireless network performance. The system optimizes bandwidth utilization and enhances signal strength, enabling faster and more reliable connections for a greater number of users and devices within a building. By strategically deploying RIS elements, DASflect dynamically adapts to changing network conditions, mitigating signal loss and interference, and providing consistent high-speed wireless access. This approach allows for cost-effective scaling of indoor wireless capacity to meet growing demands.
Target Audience
The primary target audience includes enterprises, building owners, and network operators seeking to improve indoor wireless connectivity for employees, tenants, and visitors.
Features
- Distributed antenna system (DAS) architecture for enhanced indoor coverage
- Reconfigurable Intelligent Surface (RIS) technology for dynamic signal optimization
- Real-time adaptation to changing network conditions and user demands
- Improved bandwidth utilization and reduced signal attenuation
- Support for multiple wireless standards and frequency bands
- Scalable design to accommodate varying building sizes and user densities