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Multiparameter Water Quality Sonde Manufacturer
Aquas Inc. is a national manufacturer and supplier that specialize in providing of multiparameter water quality sonde related products. Our goal is to build a long term relationship as your multiparameter water quality sonde supplier by providing quality products and service that exceeds your expectations. We engage to develop enduring relationships with our customers by providing innovative multiparameter water quality sonde products supported by the best customer service in the industry.
| Multiparameter Water Quality Sonde RS485 Communication. All-in-One Solution. ■ pH ■ ORP ■ Conductivity (EC) ■ Dissolved Oxygen (DO) ■ Turbidity ■ Salinity ■ SS ■ Free Chlorine ■ ChlorophyII a ■ BGA ■ CDOM ■ Nitrate (NO3-N) ■ Optical Nitrate (NO33-N) ■ Ammonium (NH4-N) ■ Chloride (CL-) ■ Potassium (K2+) ■ Calcium (Ca2+) ■ Fluoride (F-) ■ Sodium (Na+) ■ Oil in Water ■ UV254 ■ COD ■ BOD ■ Rhodamine ■ Bromide (Br-) ■ Sulfide (S2-) ■ Coliforms ■ Depth ■ Pressure ■ Temperature |
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| The MAX series are compact-sized, simple and cost-effective multiparameter water quality sonde. It is easy to be deployed in groundwater, sewer and surface water to monitor multiple water quality parameters such as pH, ORP, conductivity, salinity, total dissolved solids (TDS), resistivity, density, dissolved oxygen, turbidity, suspended solids, chlorophyII a, blue-green algae, CDOM/fDOM, nitrate, ammonium, chlorine, potassium, hardness, fluoride, sodium, oil in water, BOD, Tryptophan, depth, pressure, temperature....etc. With robust IP68 water submersible enclosure, the product is perfectly used in many applications such as groundwater quifer characterization, sewer system, construction and mine, drilling and well, coastal estuaries and wetlands, lake and reservoir. |
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| Products Advantages
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| Operate independently | Alarm | Burst, Water Hammer | High Speed Computing | IP68 Housing | High Speed Computing |
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| Wide Operating Temperature | Multi-Parameter Monitoring | Intelligent Battery | Smart Function | Flexible Communications | Auto Data Collection |
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| Benefits
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| Borderless deployment without standard cabin, signal transmitter, communication module, power supply, surge isolation and lighting arrester | Eliminate power/networking/sensor/I/O cabling, software configuration, engineering and infrastructure cost | Seamless connection to public or private network and software solutions | Easy to install, no need for calibration and quick connect within seconds. It is Ideal for mobile operation | Low maintenance and troubleshooting. Minimizes running and operating cost | ||||
| Applications
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Groundwater Aquifer- | ||||||||
| Our system utilizes an integrated, fully sealed, and IP68-rated submersible casing with a diameter of less than 2 inches. It is specifically designed for direct installation in outdoor environments that are frequently wet, experience regular rainfall, or are susceptible to flooding. This innovative design is particularly well-suited for monitoring groundwater aquifers, flood situations, and extreme rainfall events, effectively improving water supply safety and efficiency.
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Sewer Systems- | ||||||||
| Our system offers comprehensive operational data for groundwater wells, encompassing groundwater level, discharge pressure, flow rate, water quality, pump operating hours, voltage, current, power consumption, and fault status. This ensures adherence to national regulations and facilitates the efficient management and billing of groundwater resources. With remote monitoring and automated data collection capabilities, our solution significantly reduces the need for on-site visits, saving both time and manpower costs.
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Construction and Mine- | ||||||||
| In construction and mining sites, we employ low-power and energy-saving technology to ensure continuous monitoring of weather and environmental conditions, even in extreme climates ranging from -40 to 85°C. Utilizing mobile and wireless communication, there is no need for on-site data collection. When monitoring data reaches alarm thresholds, the upload frequency can be accelerated for real-time monitoring. This advanced solution enables efficient environmental monitoring, allowing prompt responses and enhancing productivity and safety at construction and mining sites.
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Well- | ||||||||
| During drilling and well construction, we implement advanced technology, including ultra-low-power pressure and flammable gas sensors, along with a 3G wireless transmission hub, enabling real-time monitoring. If any abnormalities are detected, our system allows for immediate dispatch of personnel to inspect the site, thus preventing potential gas explosion accidents. In case of seismic activity or pipeline damage, emergency shut-off valves can be rapidly and automatically closed, either remotely or through automated processes. This comprehensive approach ensures the continuous, real-time, and accurate monitoring of the city's underground gas pipeline network on a daily basis, guaranteeing the safety and reliability of the entire system.
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Estuary Wetlands- | ||||||||
| For estuaries and wetlands, we utilize an integrated, fully sealed, and IP68-rated submersible casing, making it highly suitable for monitoring applications in coastal estuaries and wetlands. The system enables in-situ, real-time monitoring without the need for sampling or pre-processing devices.
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Lakes and Reservoirs.- | ||||||||
| For lakes and reservoirs, we use an integrated, fully sealed, and IP68-rated submersible casing, which can be directly installed in outdoor environments that are often wet, experience frequent rainfall, or are prone to flooding. It is suitable for monitoring applications in lakes and reservoirs and ensures lower costs and maintenance expenses.
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ALG Algae Analyzer Technical Comparison
| Comparison Item | ALG Algae Analyzer | Traditional Manual Sampling / Microscopic Analysis | Single-Parameter Chlorophyll or Cyanobacteria Sensor | General Multiparameter Water Quality Instrument / Laboratory Analysis |
|---|---|---|---|---|
| Product Positioning | In-situ online multiparameter analyzer for algae and chlorophyll a monitoring | Manual sampling followed by laboratory identification of algae species and biomass | Monitoring of a single algae-related indicator or chlorophyll a | Primarily used for multiple water quality parameters or laboratory testing |
| Monitoring Parameters | Cyanobacteria, green algae, diatoms, cryptophytes, CDOM/fDOM, turbidity, transparency, and total chlorophyll a | Can be identified through microscopy or laboratory methods, but requires manual operation | Usually limited to chlorophyll a or cyanobacteria as a single indicator | Depending on the instrument configuration, it can monitor routine water quality parameters or laboratory test items |
| Measurement Principle | Uses 9 different light sources to excite the water sample, analyze fluorescence signals, and calculate algae and chlorophyll a concentrations | Sampling, preservation, pretreatment, and manual interpretation | Single-wavelength or limited-wavelength fluorescence measurement | Electrochemical, optical, colorimetric, or laboratory analysis methods |
| Interference Compensation | Capable of compensating for interference from turbidity, yellow substances, and organic matter | Corrections depend on operator experience and laboratory procedures | Compensation capability is generally limited | Depends on the specific analytical method or module used |
| Reagent Requirement | No chemical reagents required | Preservation or pretreatment reagents may be required depending on the testing procedure | Usually no reagents required | Some parameters may require reagents or pretreatment |
| Real-Time Capability | Provides online real-time measurement and can be integrated with data loggers and cloud platforms for remote monitoring | Requires waiting for sampling, transportation, and laboratory analysis results | Real-time monitoring is possible, but with fewer monitored parameters | Field instruments can provide real-time data; laboratory analysis requires waiting for reports |
| Installation Environment | IP68 submersible anti-corrosion housing, suitable for underwater installation at depths of more than 100 meters | No fixed installation; manual on-site sampling is required | Depends on the product’s protection rating | Depends on the configuration of the controller and sensors |
| Communication Integration | RS485 / Modbus RTU, compatible with PLC, HMI, ECO, FLO, ARK, HMI, and other data loggers | Requires manual data entry or a separately established data workflow | Depends on the product | Requires system integration according to the selected architecture |
| Maintenance Requirements | Sapphire glass, nano-coating, and automatic cleaning brush reduce the impact of sludge and biofouling | Requires regular sampling and laboratory manpower | Requires regular cleaning and calibration | Depends on the maintenance cycle of each parameter and sensor |
| Data Logging | Supports SD card storage, 2 million cyclic records, and calibration parameter storage | Mostly stored through manual forms or laboratory information systems | Depends on the device | Depends on the data logger or platform used |
| Suitable Applications | Algal bloom and aquatic ecosystem monitoring in rivers, lakes, reservoirs, and marine environments | Regulatory testing, algae species confirmation, and periodic water quality surveys | Basic algae trend monitoring | General water quality monitoring or laboratory verification |
| Main Advantages | Simultaneous monitoring of multiple algae groups, reagent-free operation, real-time measurement, low maintenance, and remote integration capability | Allows detailed algae species identification and laboratory confirmation | Lower cost and simpler configuration | Greater flexibility in test items |
Traditional manual sampling and microscopic analysis are suitable for algae species confirmation and laboratory verification, but they cannot provide real-time continuous data. The ALG uses 9 different light sources to excite the water sample and analyze fluorescence signals. With compensation for turbidity, yellow substances, and organic matter interference, it provides more timely monitoring data for algae and chlorophyll a. For algal bloom early warning in rivers, reservoirs, lakes, or marine environments, the ALG can serve as a long-term online monitoring and remote data integration solution.
MAX Series
MAX1. Multiparameter Water Quality Sonde (includes 4 sensors ports)
The MAX Multiparameter Water Quality Sonde is designed for continuous online monitoring of multiple water quality parameters in environmental, industrial, drinking water, aquaculture, and wastewater applications. By integrating multiple sensors into a single platform, the sonde enables comprehensive water quality assessment while reducing installation complexity and maintenance requirements.
The system supports a wide range of water quality parameters, including pH, ORP, dissolved oxygen, conductivity, salinity, turbidity, temperature, chlorophyll-a, blue-green algae, and other optional sensors. Real-time monitoring capabilities allow operators to quickly identify water quality changes and improve decision-making for environmental management and process control.
Designed for long-term deployment in demanding environments, the sonde features rugged construction, digital communication, and low-maintenance operation. Its modular design allows flexible sensor configuration to meet various monitoring requirements.
The MAX Multiparameter Water Quality Sonde is widely used in rivers, reservoirs, lakes, coastal waters, aquaculture systems, drinking water sources, and wastewater treatment facilities. It provides an efficient and reliable solution for modern water quality monitoring and smart water management applications.
The system supports a wide range of water quality parameters, including pH, ORP, dissolved oxygen, conductivity, salinity, turbidity, temperature, chlorophyll-a, blue-green algae, and other optional sensors. Real-time monitoring capabilities allow operators to quickly identify water quality changes and improve decision-making for environmental management and process control.
Designed for long-term deployment in demanding environments, the sonde features rugged construction, digital communication, and low-maintenance operation. Its modular design allows flexible sensor configuration to meet various monitoring requirements.
The MAX Multiparameter Water Quality Sonde is widely used in rivers, reservoirs, lakes, coastal waters, aquaculture systems, drinking water sources, and wastewater treatment facilities. It provides an efficient and reliable solution for modern water quality monitoring and smart water management applications.
MAX Series
MAX2. Multiparameter Water Quality Sonde (includes 7 sensors ports)
The MAX Multiparameter Water Quality Sonde is designed for continuous online monitoring of multiple water quality parameters in environmental, industrial, drinking water, aquaculture, and wastewater applications. By integrating multiple sensors into a single platform, the sonde enables comprehensive water quality assessment while reducing installation complexity and maintenance requirements.
The system supports a wide range of water quality parameters, including pH, ORP, dissolved oxygen, conductivity, salinity, turbidity, temperature, chlorophyll-a, blue-green algae, and other optional sensors. Real-time monitoring capabilities allow operators to quickly identify water quality changes and improve decision-making for environmental management and process control.
Designed for long-term deployment in demanding environments, the sonde features rugged construction, digital communication, and low-maintenance operation. Its modular design allows flexible sensor configuration to meet various monitoring requirements.
The MAX Multiparameter Water Quality Sonde is widely used in rivers, reservoirs, lakes, coastal waters, aquaculture systems, drinking water sources, and wastewater treatment facilities. It provides an efficient and reliable solution for modern water quality monitoring and smart water management applications.
The system supports a wide range of water quality parameters, including pH, ORP, dissolved oxygen, conductivity, salinity, turbidity, temperature, chlorophyll-a, blue-green algae, and other optional sensors. Real-time monitoring capabilities allow operators to quickly identify water quality changes and improve decision-making for environmental management and process control.
Designed for long-term deployment in demanding environments, the sonde features rugged construction, digital communication, and low-maintenance operation. Its modular design allows flexible sensor configuration to meet various monitoring requirements.
The MAX Multiparameter Water Quality Sonde is widely used in rivers, reservoirs, lakes, coastal waters, aquaculture systems, drinking water sources, and wastewater treatment facilities. It provides an efficient and reliable solution for modern water quality monitoring and smart water management applications.
MAX Series
MAX3. Multiparameter Water Quality Sonde (includes 11 sensors ports)
The MAX Multiparameter Water Quality Sonde is designed for continuous online monitoring of multiple water quality parameters in environmental, industrial, drinking water, aquaculture, and wastewater applications. By integrating multiple sensors into a single platform, the sonde enables comprehensive water quality assessment while reducing installation complexity and maintenance requirements.
The system supports a wide range of water quality parameters, including pH, ORP, dissolved oxygen, conductivity, salinity, turbidity, temperature, chlorophyll-a, blue-green algae, and other optional sensors. Real-time monitoring capabilities allow operators to quickly identify water quality changes and improve decision-making for environmental management and process control.
Designed for long-term deployment in demanding environments, the sonde features rugged construction, digital communication, and low-maintenance operation. Its modular design allows flexible sensor configuration to meet various monitoring requirements.
The MAX Multiparameter Water Quality Sonde is widely used in rivers, reservoirs, lakes, coastal waters, aquaculture systems, drinking water sources, and wastewater treatment facilities. It provides an efficient and reliable solution for modern water quality monitoring and smart water management applications.
The system supports a wide range of water quality parameters, including pH, ORP, dissolved oxygen, conductivity, salinity, turbidity, temperature, chlorophyll-a, blue-green algae, and other optional sensors. Real-time monitoring capabilities allow operators to quickly identify water quality changes and improve decision-making for environmental management and process control.
Designed for long-term deployment in demanding environments, the sonde features rugged construction, digital communication, and low-maintenance operation. Its modular design allows flexible sensor configuration to meet various monitoring requirements.
The MAX Multiparameter Water Quality Sonde is widely used in rivers, reservoirs, lakes, coastal waters, aquaculture systems, drinking water sources, and wastewater treatment facilities. It provides an efficient and reliable solution for modern water quality monitoring and smart water management applications.
With our advance research on a day to day needs of the consumer, our products are at the front. We are best in the manufacturing of multiparameter water quality sonde. Our strict inspections and testing have ensured that all our multiparameter water quality sonde achieve a high level of performance even in harsh conditions. We strive to provide the same level of service to our clients as our products enable our clients to provide. This means we will customize orders, negotiate fairly, and it means that we look forward to working with you!
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