
Wireless Real-Time Oxygen Concentration Monitoring System
The wireless real-time oxygen concentration monitoring system is used to monitor oxygen levels in real time during the cultivation of anaerobic and microaerophilic microorganisms, cells, and the like, ensuring that the culture environment meets experimental requirements.
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The HD-AO10 Wireless Real-Time Oxygen Concentration Monitoring System is designed for real-time monitoring of oxygen concentration during anaerobic, microaerophilic, low-oxygen microbial culture, and cell culture processes.
The system uses a non-electrochemical fluorescence quenching principle to detect oxygen concentration. It can monitor oxygen concentration, temperature, and humidity at the same time without consuming oxygen or changing the gas composition inside the culture environment.
With a compact wireless sensor, rechargeable battery, touch screen data processing module, alarm function, monitoring curve generation, and data storage function, the HD-AO10 provides reliable monitoring support for anaerobic culture systems, microaerophilic culture systems, cell culture containers, incubators, culture jars, anaerobic workstations, and other controlled gas culture environments.
Working Principle
The HD-AO10 detects oxygen concentration based on the fluorescence quenching principle.
Unlike electrochemical oxygen detection methods, the monitoring module does not consume oxygen during measurement. Each detection process does not affect the gas environment being measured and does not change the oxygen concentration or gas composition ratio inside the culture container.
The monitoring module sends oxygen concentration, temperature, and humidity data to the data processing module through communication based on the Modbus protocol. The data processing module then displays, stores, analyzes, and exports the monitoring information.
This non-consumptive oxygen monitoring method is especially suitable for anaerobic and microaerophilic culture environments where gas stability is important.
Main Applications
The HD-AO10 Wireless Real-Time Oxygen Concentration Monitoring System is suitable for real-time monitoring in culture environments that require controlled oxygen levels.
Typical applications include:
- Anaerobic microbial culture monitoring
- Microaerophilic microbial culture monitoring
- Low-oxygen culture monitoring
- Cell culture oxygen monitoring
- Anaerobic culture jar monitoring
- Microaerophilic culture system monitoring
- Anaerobic workstation monitoring
- Anaerobic incubator monitoring
- Tri-gas incubator monitoring
- Laboratory oxygen concentration verification
- Culture environment quality control
- Research and teaching laboratories
The system helps users confirm whether the culture environment meets experimental requirements during the incubation process.
Technical Specifications
| Item | Specification |
|---|---|
| Product Name | Wireless Real-Time Oxygen Concentration Monitoring System |
| Model | HD-AO10 |
| Main Function | Real-time monitoring of oxygen concentration, temperature, and humidity |
| Application | Anaerobic, microaerophilic, low-oxygen microbial culture and cell culture monitoring |
| Monitoring Principle | Non-electrochemical fluorescence quenching principle |
| Communication Protocol | Modbus protocol |
| Oxygen Measurement Range | 0%–25% oxygen concentration |
| Accuracy Error | ≤2% FS |
| Channel Expansion | Expandable to multi-channel monitoring |
| Multi-Device Monitoring | Supports simultaneous monitoring of multiple culture devices |
| Battery Type | Rechargeable battery |
| Battery Runtime | Up to 10 days of continuous operation after full charge |
| Sensor Lifetime | More than 2 years |
| Sensor Size | Compact design for placement in different culture containers |
| Display Screen | ≥4-inch touch screen |
| Data Processing | Cortex-M3 + high-speed FPGA dual-core processor |
| Data Reception | Can receive and process 5 groups of data simultaneously |
| Software | Built-in data processing software |
| Calibration | Oxygen concentration calibration at startup |
| Alarm Function | Alarm for concentration values below or above preset range |
| Curve Generation | Automatic oxygen concentration change curve generation |
| Data Storage | SD card storage |
| Computer Connection | Supports direct computer connection for data reading |
| Standard Configuration | Main unit, sensor, charger |

System Functions
Real-Time Oxygen Monitoring
The system can monitor oxygen concentration in real time during microbial or cell culture. This helps users confirm whether the culture environment remains within the required oxygen range.
Temperature and Humidity Monitoring
In addition to oxygen concentration, the HD-AO10 can also monitor temperature and humidity. This gives laboratories more complete environmental data during culture.
Non-Consumptive Detection
The fluorescence quenching detection method does not consume oxygen during measurement. It also does not affect the gas composition inside the culture container, making it suitable for sensitive anaerobic and microaerophilic environments.
Wireless Monitoring Module
The compact monitoring module can be easily placed inside culture jars, incubators, anaerobic containers, or other culture devices. Its small size makes it suitable for various container sizes.
Multi-Channel Expansion
The system can be expanded to multiple channels, allowing users to monitor several culture devices or containers at the same time.
Touch Screen Operation
The data processing module uses a ≥4-inch touch screen. The display is clear, the information is complete, and the operation is convenient for routine laboratory use.
Fast Data Processing
The system uses a Cortex-M3 + high-speed FPGA dual-core processor. It can receive up to 5 groups of data at the same time and perform data processing and storage efficiently.
Startup Calibration
Each time the system is turned on, it can calibrate the oxygen concentration detection module. This helps the system adapt to different use environments and improves monitoring reliability.
Alarm Function
Users can set the required oxygen concentration range according to experimental needs. If the oxygen concentration is lower than or higher than the preset range, the system will automatically trigger an alarm and record the data at that time.
Monitoring Curve Generation
The system can automatically generate oxygen concentration change curves, making it easier for users to observe and analyze oxygen concentration changes during the culture process.
Data Storage and Export
Monitoring data can be stored on an SD card. Users can also connect the system directly to a computer to read and manage data.
Core Components
The HD-AO10 system includes the main unit, wireless oxygen monitoring sensor, and charger.
Main Unit
The main unit is responsible for data display, data processing, alarm management, curve generation, storage, and communication with the monitoring sensor.
Wireless Oxygen Sensor
The wireless sensor monitors oxygen concentration, temperature, and humidity inside the culture environment. It uses a rechargeable battery and can work continuously for up to 10 days after a full charge.
Charger
The charger is used to recharge the sensor battery, supporting repeated long-term use of the monitoring module.
Monitoring Workflow
A typical HD-AO10 monitoring workflow includes:
- Fully charge the wireless monitoring sensor
- Turn on the main unit and monitoring module
- Perform oxygen concentration calibration at startup
- Place the compact sensor inside the culture container or culture device
- Set the required oxygen concentration range
- Start real-time oxygen concentration monitoring
- Monitor oxygen concentration, temperature, and humidity data
- The system automatically records data and generates monitoring curves
- Alarm is triggered if the oxygen level is outside the preset range
- Store data on SD card or connect to a computer for data reading
This workflow helps laboratories track culture environment changes more clearly and improve process traceability.
Applicable Equipment and Culture Systems
The HD-AO10 can be used with various anaerobic, microaerophilic, and low-oxygen culture systems, including:
- Anaerobic culture jars
- Microaerophilic culture jars
- Anaerobic incubators
- Anaerobic chambers
- Anaerobic workstations
- Anaerobic glove boxes
- Tri-gas incubators
- Cell culture containers
- Low-oxygen culture systems
- Microbial culture systems
- Laboratory-controlled gas culture devices
Applicable Laboratories and Institutions
The system is suitable for:
- Microbiology laboratories
- Food safety testing laboratories
- Pharmaceutical microbiology laboratories
- Biopharmaceutical quality control laboratories
- Cell culture laboratories
- Environmental microbiology laboratories
- Disease control laboratories
- Research institutes
- Universities and teaching laboratories
- Third-party testing laboratories
- Industrial quality control laboratories
Product Advantages
No Oxygen Consumption During Measurement
The fluorescence quenching principle does not consume oxygen, so the monitoring process does not interfere with the culture environment.
Real-Time Culture Environment Verification
The system helps users verify whether anaerobic, microaerophilic, or low-oxygen culture conditions meet experimental requirements.
Oxygen, Temperature, and Humidity Monitoring
Three key environmental parameters can be monitored at the same time, giving users more complete culture process data.
Compact Sensor Design
The small monitoring module can be placed inside different culture containers, making it flexible for various laboratory applications.
Long Battery Runtime
The rechargeable battery can support up to 10 days of continuous operation after a full charge.
Low Long-Term Use Cost
The monitoring module can be used for more than 2 years, helping reduce later operating costs.
Multi-Channel Expandability
The system can be expanded to monitor multiple culture devices at the same time, suitable for laboratories with several culture systems.
Automatic Alarm Recording
The system can automatically alarm when oxygen concentration is outside the preset range and record the corresponding data.
Easy Data Analysis
Automatic monitoring curve generation helps users visually analyze oxygen concentration changes during the culture process.
Convenient Data Export
Data can be stored on an SD card or read directly through a computer connection, supporting laboratory documentation and traceability.
Installation Requirements
The HD-AO10 should be used in a clean and stable laboratory environment. Before operation, users should ensure that the sensor battery is charged and the main unit is placed in a convenient location for data display and operation.
The sensor should be placed securely inside the culture container without affecting the culture samples. For multi-channel monitoring, each sensor should be assigned to the corresponding culture device or container.
Professional setup and user training are recommended when the system is used together with multiple incubators, anaerobic systems, or laboratory monitoring workflows.
Maintenance Requirements
Routine maintenance includes charging the sensor, checking sensor communication, cleaning the sensor surface, verifying calibration status, checking data storage, and backing up monitoring records.
Users should avoid damaging the sensor during placement or removal from culture containers. The sensor should be kept clean and dry when not in use.
The monitoring module should be calibrated according to laboratory requirements to maintain reliable oxygen concentration readings.
Packaging and Export
The HD-AO10 system can be packed with protective materials to ensure safe transportation of the main unit, wireless sensor, charger, and related accessories.
For export projects, technical documents, operation instructions, configuration guidance, and after-sales support can be provided according to customer requirements.
Customization Service
The system can be configured according to different laboratory monitoring needs and culture workflows.
Customization options may include:
- Multi-channel monitoring expansion
- Additional sensors
- Data output configuration
- Monitoring alarm range settings
- Integration with culture systems
- Laboratory workflow support
- Custom monitoring and reporting requirements
Product appearance, structure, performance, and technical parameters may change due to continuous product upgrades. Final specifications should be confirmed according to the latest product information.
Related Equipment and Applications
The HD-AO10 can be used as part of a complete anaerobic and microaerophilic culture monitoring solution. Related equipment and applications include:
- Wireless oxygen monitoring system
- Real-time oxygen concentration monitor
- Anaerobic culture monitoring system
- Microaerophilic culture monitoring system
- Low-oxygen culture monitoring system
- Cell culture oxygen monitoring system
- Anaerobic workstation monitoring
- Anaerobic incubator monitoring
- Tri-gas incubator oxygen monitoring
- Culture jar oxygen monitoring
- Laboratory environmental monitoring system
FAQ
1. What is the HD-AO10 used for?
The HD-AO10 is used for real-time monitoring of oxygen concentration during anaerobic, microaerophilic, low-oxygen microbial culture, and cell culture.
2. What detection principle does the system use?
The system uses a non-electrochemical fluorescence quenching principle to detect oxygen concentration.
3. Does the sensor consume oxygen during measurement?
No. The system does not consume oxygen during detection and does not change the gas composition inside the culture environment.
4. What parameters can the system monitor?
The system can monitor oxygen concentration, temperature, and humidity.
5. What is the oxygen measurement range?
The oxygen concentration measurement range is 0%–25%.
6. What is the accuracy error?
The accuracy error is ≤2% FS.
7. How long can the sensor work after charging?
After a full charge, the sensor can work continuously for up to 10 days.
8. Can the system monitor multiple culture devices?
Yes. The system can be expanded to multiple channels for simultaneous monitoring of multiple culture devices.
9. Does the system have an alarm function?
Yes. Users can set oxygen concentration limits. If the value is lower or higher than the preset range, the system will alarm and record the data.
10. How is data stored or exported?
Data can be stored on an SD card or read directly by connecting the system to a computer.
11. Can the system generate monitoring curves?
Yes. The system can automatically generate oxygen concentration change curves for data analysis.
12. What is included in the standard configuration?
The standard configuration includes the main unit, sensor, and charger.