S-WiFi is a proprietary and patented portable stack that is designed specifically for network control and management purposes. It allows users to create a self-organizing Personal Area Network (PAN) that can automatically arrange and manage connected devices without requiring complex manual configuration. This technology supports a scalable and flexible multi-hop architecture, meaning that data can travel through multiple devices or nodes to reach its destination, which improves connectivity and extends the network range. Because of this capability, S-WiFi enables efficient communication among devices within a network while maintaining strong control and management features. Its portable design also allows it to be implemented across different systems and environments, making it useful for various applications where reliable and adaptable networking is required.
| Frequency Band | 2.4 GHz (8 channels) |
|---|---|
| Multi-hop | Depth Up to 5 hops |
| Max Devices | 127 |
| Reliability | ACK mechanism for guaranteed delivery |
| Connectivity | Check Heartbeat mechanism for repeater nodes |
| Wireless Range | ~10 m (PCB antenna), up to 100 m (external antenna) |
| Powerful CPU | 32-bit RISC-V single-core processor, running up to 160 MHz |
|---|---|
| Ultra-low power consumption | Deep sleep power consumption of about 43uA |
| Rich board resources | 400KB SRAM, 384KB ROM built-in 4Mflash |
| Ultra-small size | As small as the thumb (22.52x18mm) classic shape |
| Reliable security features | Encryption hardware accelerators that support AES-128/256, hashing, RSA, HMAC, digital signatures |
| Rich interface | 1x12C, 1xSPI, 2xUART, 11xGPIO(PWM), 4xADC |
Aligned with our Support Services mindset, we deliver practical, end-to-end solutions
Smart Agriculture: Soil moisture sensors, irrigation control, crop health monitoring across large fields
Factory Automation: Wireless control of machinery, predictive maintenance, and sensor networks in harsh environments
Oil & Gas Pipelines: Leak detection, pressure monitoring, and remote diagnostics over long distances
Mining Operations: Underground sensor networks for safety,air quality, and equipment tracking
Building Management Systems (BMS): HVAC control, occupancy sensing, and energy optimization
Smart Parking: Real-time availability updates, automated lighting, and payment integration
Traffic Signal Coordination: Adaptive signal timing based on vehicle flow and pedestrian presenc
Environmental Monitoring: Air quality, noise levels, and temperature tracking in urban zones
Disaster Response Networks: Rapid deployment of communication nodes in disaster zones
Fire Detection Systems: Distributed smoke and heat sensors in large buildings or forests
Security Perimeters: Motion detection and alert systems for remote or sensitive areas
Campus Sensor Networks: Energy usage, occupancy, and environmental data collection
Robotics Swarms: Coordination of autonomous agents for exploration or delivery
IoT Prototyping Platforms: Rapid development and testing of wireless control systems
Patient Health Monitoring
Hospital Asset Tracking
Emergency Response & Disaster Medicine
Smart Clinics & Remote Diagnostics