Connecting Everything, Everywhere
Building and operating the next-generation integrated satellite-terrestrial IoT network. Powered by NTN narrowband and broadband constellations, delivering ubiquitous, low-cost, wide-coverage connectivity and data services to industry customers worldwide.
Learn MoreShenzhen VANSAT Technology Co., Ltd., founded in 2024, is a satellite IoT communications company driving the next generation of connectivity. Anchored in 3GPP NTN standards as its core technology roadmap, VANSAT is committed to building and operating the next-generation integrated satellite-terrestrial IoT network, delivering ubiquitous, low-cost, wide-coverage connectivity and data services to industry customers worldwide.
Developing a 3GPP NTN-standard satellite IoT constellation with integrated narrowband and broadband capabilities, compatible with existing cellular ecosystems to ease industry migration.
Enabling seamless coordination between satellite and terrestrial cellular networks, with automatic switchover to satellite connectivity in areas beyond terrestrial network coverage.
Combining the low-power, low-cost efficiency of narrowband with the medium-speed throughput of broadband, addressing connectivity needs from simple sensor telemetry to richer data applications.
Delivering low-cost, wide-coverage, and highly reliable connectivity across key industries β including the low-altitude economy, intelligent transportation, energy and power, smart agriculture, marine fisheries, and emergency safety.
Over 80% of the Earth's land surface and 95% of its ocean areas remain beyond the reach of terrestrial cellular networks. Satellite IoT is not a replacement for terrestrial networks β it completes the final piece of the connectivity puzzle.
Oceans, mountains, forests, deserts, borders, cross-border transport corridors, and low-altitude airspace are areas where ground base stations are economically unfeasible to deploy β yet these are precisely the core operating zones for the energy, transportation, and agriculture industries.
Remote equipment monitoring, asset tracking, fleet management, environmental data collection, and emergency communications all require persistent, all-weather, all-terrain connectivity. Any interruption can result in data loss, delayed decisions, and even safety risks.
The maturity of 3GPP NTN standards is unifying satellite and cellular networks at the technical level. Satellite networks fill the coverage gaps, terrestrial networks provide primary coverage, and terminals and platforms work in concert β forming the integrated space-terrestrial connectivity infrastructure of the future.
"Satellite IoT is not a replacement for terrestrial networks β it completes the final piece of the connectivity puzzle."
VANSAT spans the full satellite IoT value chain β from network connectivity services and terminal ecosystem development, to industry application deployment and global market expansion β forming a complete, closed-loop business model.
Providing wide-area satellite connectivity and data transmission services for industry customers, supporting both narrowband and medium-speed data modes with flexible, on-demand configuration.
Partnering with chip, module, terminal, and antenna manufacturers to accelerate the rollout of sub-$100 NTN modules, lowering the barrier for industry terminals to access satellite networks.
Delivering end-to-end satellite IoT solutions for core scenarios including the low-altitude economy, intelligent transportation, energy and power, smart agriculture, marine fisheries, and emergency safety.
Helping Chinese IoT terminal manufacturers and solution providers expand globally through NTN networks, offering cross-regional connectivity, compliance operations, and localized support.
From Network β Terminal Ecosystem β Industry Applications β Global Services
Built on 3GPP NTN open standards, VANSAT has developed a satellite IoT technology system that integrates narrowband and broadband, converges satellite and terrestrial networks, and is engineered for low-cost scalability.
Built around 3GPP R19 NTN as the core technology roadmap, this constellation balances the low-power, low-cost efficiency of narrowband IoT with the medium-speed throughput of broadband β targeting the 10kbps to 2Mbps connectivity range to cover use cases from simple sensor telemetry to video backhaul.
This architecture enables deep coordination across satellite networks, cellular IoT platforms, core networks, SIM/Profile management, and terminal ecosystems. Terminals default to terrestrial networks when available and switch seamlessly to satellite connectivity beyond terrestrial coverage β with zero user-perceptible handover.
By maximizing reuse of existing cellular chips, modules, antennas, certification systems, and development toolchains, VANSAT dramatically reduces NTN terminal R&D and manufacturing costs β driving sub-$100 NTN modules into mass production and making satellite connectivity accessible beyond premium devices.
Open Standards Β· Space-Terrestrial Convergence Β· Scalable Ecosystem
Keeping more devices connected where terrestrial networks fall short β providing the ubiquitous connectivity foundation for industrial digital transformation.
Real-time tracking and remote dispatch for drones, eVTOL, fleet management, and cross-border logistics
Pipeline monitoring, power equipment inspection, remote O&M for wind and solar farms, and asset status reporting
Vessel positioning and navigation, maritime safety communications, ocean environment monitoring, and aquaculture data collection
Large-scale soil moisture monitoring, pasture and livestock tracking, and remote weather and soil data collection
Backup communications and emergency command support for natural disasters, border patrol, and forest fire prevention
Built on robust satellite IoT connectivity, VANSAT delivers a broad set of capabilities across diverse industry devices and application scenarios.
Providing global real-time position reporting and historical trajectory playback for vehicles, drones, vessels, containers, and other mobile assets.
Supporting scheduled and event-triggered data uploads from sensors and industrial equipment, enabling continuous remote equipment monitoring.
Delivering automatic anomaly detection and remote equipment awareness, with multi-level alerts spanning threshold alarms, trend warnings, and coordinated response.
Enabling standardized access and integration for terminal devices, business platforms, and industry systems, with open APIs and protocol adaptation capabilities.
Providing reliable backup communication links in weak-signal, disconnected, and disaster scenarios, ensuring timely delivery of critical data and commands.
Providing unified connectivity management, traffic billing, device O&M, and compliance support for cross-regional and multinational operations.
VANSAT's core team combines cross-domain expertise across communications networks, terminal ecosystems, and industry deployment.
A core team drawn from telecom operators, satellite communications, IoT platforms, and the commercial space industry chain β bringing end-to-end experience from standards development to commercial operations.
End-to-end network capabilities spanning NTN standards, constellation system design, terminal ecosystem development, industry operations, and global partnerships.
An in-house ground core network combined with deep module and terminal customization capabilities, enabling flexible service policy configuration and low-cost, rapid network deployment.
With a proven track record in satellite communications and global project experience, our team understands both network standards and architecture, as well as the industrial logic of terminal ecosystems and the practical demands of industry deployment β delivering complete solutions from network and terminal to application and operations.
VANSAT aims to bring satellite connectivity to more industries and scenarios through open standards, low-cost terminals, and integrated space-terrestrial networks β so that every device that needs connectivity is no longer limited by geography.
Keeping more devices connected across wider spaces.