Our products

  • Aboat Foldable Unpowered Trimaran

    Aboat Foldable Unpowered Trimaran

    Frankstar Aboat Unpowered Trimaran serves as a universal floating carrier specially developed for ADCP deployment. Its oversized central through-hole is compatible with most mobile survey ADCP models available on the market, enabling convenient installation of acoustic Doppler current profilers for river and estuary flow measurement.
    Lightweight foldable structure simplifies transportation and field deployment. The stable triple-hull design effectively suppresses rolling and pitching under fluctuating flow conditions, ensuring reliable and continuous flow profile data collection during mobile hydrological surveys. It is widely matched with RIV series ADCP to complete mobile river current monitoring projects.
  • FS1600A Precise Echosounder

    FS1600A Precise Echosounder

    The FS1600A is a portable precise single beam echo- sounder that adopts new acoustic signal processing technology and circuit design to obtain more accurate sounding data.The system integrates traditional analog

    recording with advanced digital signal processing tech- nology and underwater tracking gate technology. Even in harsh environments, it performs excellent covering hydrographic applications for shallow waters.

  • Drifting & Mooring Mini Wave Buoy 2.0 to monitor Wave & Surface Current Parameter

    Drifting & Mooring Mini Wave Buoy 2.0 to monitor Wave & Surface Current Parameter

    Mini Wave buoy 2.0 is a new generation of small intelligent multi-parameter ocean observation buoy developed by Frankstar Technology. It can be equipped with advanced wave, temperature, salinity, noise and air pressure sensors. Through anchorage or drifting, it can easily obtain stable and reliable sea surface pressure, surface water temperature, salinity, wave height, wave direction, wave period and other wave element data, and realize continuous real-time observation of various ocean elements.

    The data can be sent back to the cloud platform in real time through Iridium, HF and other methods, and users can easily access, query and download the data. It can also be stored in the SD card of the buoy. Users can take it back at any time.

    Mini Wave buoy 2.0 have been widely used in marine scientific research, marine environmental monitoring, marine energy development, marine forecasting, marine engineering and other fields.

     

     

  • Mini Wave Buoy GRP(Glassfiber Reinforced Plastic) Material Fixable Small Size Long Observation Period Real-time Communication to Monitor Wave Period Height Direction

    Mini Wave Buoy GRP(Glassfiber Reinforced Plastic) Material Fixable Small Size Long Observation Period Real-time Communication to Monitor Wave Period Height Direction

    The mini wave buoy is a compact, high-precision oceanographic buoy engineered by Frankstar for high-mobility marine monitoring. Built to deliver reliable, long-term observation of wave dynamics, sea surface physical elements, and environmental parameters, it seamlessly adapts to both free-drifting ocean profiling and fixed-station mooring deployments. Equipped with low-power multi-channel sensor integration, the system continuously captures high-fidelity ocean data and transmits real-time telemetry back to land stations or cloud platforms via satellite, cellular, or radio networks.

     

  • Mooring Wave Data Buoy (Standard)

    Mooring Wave Data Buoy (Standard)

    The Mooring Wave Data Buoy (Standard) is a versatile, high-precision oceanographic monitoring buoy developed by Frankstar to deliver continuous, long-term sea observation. Engineered with advanced multi-channel acquisition technology, it provides accurate measurements of wave dynamics, physical ocean parameters, and marine environmental elements. Operating effectively in both free-drifting ocean profiling and fixed-station mooring modes, the buoy transmits real-time telemetry back to land stations or cloud platforms via satellite, cellular, or radio communication networks.

  • High Accuracy GPS Real-time communication ARM processor Wind buoy

    High Accuracy GPS Real-time communication ARM processor Wind buoy

    Wind buoy is a small measuring system, which can observe the wind speed, wind direction, temperature and pressure with the current or in fixed point. The inner floating ball contains the components of the whole buoy, including weather station instruments, communication systems, power supply units, GPS positioning systems, and data acquisition systems.The collected data will be sent back to the data server through the communication system, and customers can observe the data at any time.

  • Disposable Lagrange Drifting Buoy (SVP type) to Observe Ocean/ Sea Surface Current Temperature Salinity Data with GPS Location

    Disposable Lagrange Drifting Buoy (SVP type) to Observe Ocean/ Sea Surface Current Temperature Salinity Data with GPS Location

    Drifting buoy can follow different layers of deep current drift. Location via GPS or Beidou, measure ocean currents by using Lagrange’s principle, and observe the Ocean surface temperature. Surface drift buoy supports remote deploy through Iridium,to get the location and data transmission frequency.

     

  • Oil Polution Tracker/ Oil Spill Detection Monitoring Buoy

    Oil Polution Tracker/ Oil Spill Detection Monitoring Buoy

    The Oil Spill Detection Monitoring Buoy is an advanced marine environmental observation buoy developed by Frankstar to detect, monitor, and track offshore hydrocarbon leaks and oil spill incidents in real time. Equipped with high-precision optical and chemical hydrocarbon sensors, the buoy provides continuous, early-warning surveillance across critical maritime zones, ports, and offshore energy infrastructure. Operating in both free-drifting and fixed mooring modes, it captures high-fidelity environmental data and transmits real-time alerts and telemetry to shore stations or cloud monitoring platforms via satellite, cellular, or radio communication networks.

     

  • Frankstar S30m Multi Parameter Integrated Ocean Monitoring Big Data Buoy

    Frankstar S30m Multi Parameter Integrated Ocean Monitoring Big Data Buoy

    The S30 Multi-Parameter Integrated Observation Data Buoy (Model: FS-MDB-S30) is a large-scale, intelligent ocean observation buoy platform engineered by Frankstar. It is designed for all-weather, continuous, and real-time in-situ monitoring across meteorology, hydrology, water quality, marine ecology, and other marine environmental parameters.

    With high payload compatibility and an advanced industrial design, the buoy platform supports flexible, multi-sensor configurations. The upper tower platform accommodates meteorological, communication, positioning, and navigation safety equipment, while dedicated dual instrument wells allow seamless integration of deep hydrological, water quality, and ecological sensors. Collected data can be transmitted to the Frankstar MEINS (Marine Equipment Intelligent Networking System) platform or user-specific management platforms in real time via Satellite, GSM/GPRS/4G, UHF/VHF, and HF communication options, providing reliable remote access, visualization, and cloud data saving.

  • Frankstar S16m multi parameter Sensors are integrated ocean observation data buoy

    Frankstar S16m multi parameter Sensors are integrated ocean observation data buoy

    The S16 Multi-Parameter Integrated Observation Data Buoy (Model: FS-MDB-S16) is an intelligent ocean observation buoy platform engineered by Frankstar. It provides all-weather, continuous, and real-time in-situ monitoring across meteorology, hydrology, water quality, ecology, and other marine parameters.

    Featuring an optimized structural design and high payload compatibility, the buoy platform supports flexible sensor configurations. The top platform accommodates meteorological, communication, positioning, and navigation safety equipment, while the main hull body and lower bracket allow integration of advanced hydrological and water quality sensors. Collected data can be transmitted to the Frankstar MEINS (Marine Equipment Intelligent Networking System) platform or the user’s own system in real time via Satellite, GSM/GPRS/4G, UHF/VHF, and other communication options, enabling convenient remote access, visualization, and cloud saving.

  • S12 Multi Parameter Integrated Observation Data Buoy

    S12 Multi Parameter Integrated Observation Data Buoy

    The S12 Multi-Parameter Integrated Observation Data Buoy (Model: FS-MDB-S12) is an intelligent, high-performance ocean observation buoy platform engineered by Frankstar. It enables all-weather, continuous, real-time in-situ monitoring across meteorology, hydrology, water quality, ecology, and other marine parameters.

    Featuring excellent industrial design and high payload compatibility, the buoy platform accommodates flexible sensor configurations. The top platform houses meteorological, communication, positioning, and navigation safety equipment, while the structural body and lower frame allow the integration of advanced hydrological and water quality sensors. Collected data can be transmitted to the Frankstar MEINS (Marine Equipment Intelligent Networking System) platform or user-specific management platforms in real time via Satellite, GSM/GPRS/4G, UHF/VHF, and other communication options, enabling remote access, visualization, and cloud storage.

  • Tsunami Buoy

    Tsunami Buoy

    The Frankstar Tsunami Buoy (TB) is a comprehensive system designed for deep-sea tsunami monitoring and early warning applications. It consists of a surface buoy body, seabed base station, underwater acoustic communication link, and satellite communication module. Adopting an architecture of seabed sensing, surface relay, and satellite data transmission, the system continuously monitors tiny variations in seawater pressure via high-precision pressure detectors deployed on the seabed, identifying water level fluctuations caused by tsunamis through data algorithms. During operation, the seabed base station collects, processes, stores, and transmits pressure data via underwater acoustics to the surface buoy, which then sends the data back to the shore receiving center via satellite.

     

     

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