Technology
Wizconn develops a complete technology stack for remote sensing and connectivity: satellite NTN/NB-IoT, multi-protocol edge gateways, phased-array SDR with digital beamforming (DBF), high-precision sensing radar, and cloud data pipelines.
Keywords: Satellite NTN • NB-IoT • SDR • Phased Array • Beamforming • DBF • X-band • SFCW • Remote Monitoring
System Architecture
A “space–ground integrated” data closed-loop: from field sensing to cloud analytics and operational workflows.
Wizconn platforms are modular. You can start from a field device or gateway, then extend to satellite uplink and cloud ingestion as the deployment scales.
Data originates from sensing nodes and field instruments.
- Weather stations & monitoring nodes
- Alarm / safety beacons
- RS485 / analog / digital sensors
Local integration and protocol bridging at the edge.
- RS485 sensor buses
- LoRa sensor networks
- Local buffering & power-aware operation
Connectivity and advanced RF platforms for remote links.
- NTN / NB-IoT modules
- Multi-antenna SDR platforms
- Phased array / beamforming (DBF)
Remote connectivity where terrestrial networks are limited.
- Satellite telemetry / messaging
- Resilient remote coverage
- Deployment-oriented integration
Ingestion, device management, monitoring and analytics.
- Fleet/device management
- Dashboards, alerts, APIs
- Integration into workflows
Technology Platforms
Core platforms that combine into deployable products and solutions.
Satellite NTN + NB-IoT
Satellite-connected IoT modules supporting NTN and NB-IoT connectivity for remote telemetry and sensing deployments.
Integration paths for gateways, field devices and monitoring systems.
Multi-Protocol Gateways
Data gateways bridging RS485 sensor buses and LoRa networks to NB-IoT/NTN uplinks.
Designed for remote deployments with power-aware operation and reliable telemetry.
Phased Array & Beamforming
SDR-based multi-antenna RF platforms enabling beamforming, spatial filtering and advanced wireless experimentation.
Digital beamforming (DBF) workflows support scalable array architectures.
High-Precision Radar
Sensing radar platforms with phased-array components for geotechnical monitoring and infrastructure stability use cases.
X-band SFCW approaches for mm-level displacement monitoring.
Phased Array SDR & Digital Beamforming (DBF)
Low-cost multi-antenna SDR architectures that support scalable beamforming and multi-antenna processing pipelines.
What we focus on
Practical phased-array and SDR platform development: array architectures, synchronization concepts, real-time DSP pipelines, and integration into deployable gateways and sensing front-ends.
Outcome: multi-antenna RF platforms that can evolve into products and field systems.
Why it matters
Beamforming and spatial processing improve link robustness and enable advanced sensing architectures. A low-cost platform approach accelerates iteration and reduces total system cost.
This is a core R&D theme supported by Callaghan Innovation.
X-band SFCW Sensing Radar
High-precision sensing radar platforms for geotechnical monitoring and infrastructure stability analysis.
Geotechnical monitoring
For slope stability and landslide monitoring, we are developing distributed sensing radar platforms using SFCW techniques, designed to integrate with satellite telemetry and cloud monitoring workflows.
Engineering integration
Radar sensing is only useful when it becomes operational data. We design the pipeline: sensing → data reduction → remote uplink → cloud ingestion → alerting and dashboards.
Quick Technical Capabilities
A concise engineering view of key platform capabilities.
| Capability | Specifications |
| Connectivity | Satellite NTN + NB-IoT dual-mode, NB-IoT cellular uplinks, LoRa and RS485 sensor integration via gateways. |
| Phased Array | SDR-based multi-antenna platforms supporting phased-array architectures, beamforming and spatial signal processing. |
| Digital Beamforming | DBF pipelines for scalable multi-antenna processing and array experimentation. |
| Sensing Radar | X-band SFCW sensing radar with phased-array components for high-precision deformation monitoring. |
| System Stack | End-to-end architecture from sensors → gateway → RF/NTN → satellite link → cloud data platform. |
| Data Platform | Data collection, device/fleet management, monitoring dashboards, alerting and analytics integration workflows. |
Work With Wizconn
From architecture discussions to prototypes and deployable systems.
If your team is building satellite-connected sensing, remote monitoring, phased-array platforms, SDR gateways or geotechnical sensing radar, email us with your deployment constraints and we will propose a system architecture.