HH6100 Fluorescence Dissolved Oxygen Sensor| DO Electrode High Resistance to Corrosion and Abrasion
US$150.00
A digital optical dissolved oxygen sensor for water and wastewater monitoring. The HH6100 combines fluorescence-based measurement, salinity compensation up to 50 ppt, an integrated RS485 Modbus interface, and a replaceable optical sensing cap for aquaculture, seawater, municipal water, and biological treatment systems.
Key features
- Fluorescence-based dissolved oxygen measurement
- No electrolyte filling or polarization time
- Measurement up to 50 mg/L or 500% saturation
- Salinity compensation from 0 to 50 ppt
- Direct Modbus RTU over RS485 output
- Replaceable long-life optical sensing cap
- POM housing with IP68-rated construction
- Size Guide
Technique Guide
Temperature Compensation Options NTC 2.252K, NTC 5K, NTC 10K, NTC 22K, NTC 30K, PT100, PT1000 (optional) Cable Connection Integrated direct-connection cable, S8, S8M, S7, K8S, VP4, VP, K2, K9, 4 PIN - Delivery & Return
Shipping
At HH SCIENCE, we serve both B2C and B2B customers with global shipping options tailored to your needs.
B2C Orders
We offer free international shipping to the EU and USA on all retail items via EMS/EUB. Customers are responsible for any applicable customs duties and local taxes in their country. The standard delivery time is 15–20 business days.B2B Orders
For wholesale and business orders, we ship via air freight, sea freight, or other available international logistics methods. Shipping methods, costs, and lead times vary based on order volume and destination, and are discussed on a case-by-case basis.As most of our products are customizable, the production lead time may vary and will be confirmed upon order placement.
Refund Policy
We offer 100% refunds only in cases of confirmed factory defects.
Refunds are processed after the returned item is received and inspected. Our quality control team will issue a written inspection report within 3–5 business days. Approved refunds will be issued through the original payment method.
Return Policy
Customers are responsible for return shipping costs unless the return is due to a confirmed factory defect.
In cases where a full refund is approved, we will cover the return shipping cost and include it in the refund process. All other returns are handled at the customer’s expense, and products must be returned in their original condition and packaging.
- Ask a Question
The HH6100 is a digital optical dissolved oxygen sensor based on fluorescence-quenching technology. Unlike electrochemical dissolved oxygen electrodes, it does not consume oxygen at the sensing surface and does not require liquid electrolyte or transmitter polarization.
The optical sensing cap contains a luminescent material excited by the sensor’s internal light source. Dissolved oxygen changes the luminescence response, and the internal electronics use this change to calculate oxygen concentration and percent saturation.
Because the method does not consume oxygen, the HH6100 is less dependent on sample flow than membrane-based electrochemical sensors. The sensing surface must still remain in representative contact with the water and free from bubbles, deposits, biofilm, and other coatings.
The sensor measures dissolved oxygen from 0 to 50 mg/L and saturation from 0 to 500%. Integrated compensation supports salinity values from 0 to 50 ppt, covering freshwater, brackish-water, and many seawater applications. Temperature, salinity, and pressure conditions must be correctly accounted for when calculating concentration or percent saturation.
Signal processing and communication electronics are integrated into the sensor body. The HH6100 operates from a 12–36 VDC supply and connects directly to compatible controllers, PLCs, gateways, and data loggers using Modbus RTU over RS485.
The sensor has a POM housing, ABS+PC optical cap, 3/4-inch NPT process connection, integrated cable, and IP68-rated construction. Its optical cap is replaceable when its response no longer meets the application requirements.
Key benefits
- Optical measurement technology: Requires no electrolyte replacement and no polarization period.
- Reduced flow dependence: Does not consume oxygen at the sensing surface.
- Integrated digital electronics: Measurement, compensation, and Modbus communication are handled inside the sensor.
- Freshwater and saline-water use: Supports salinity compensation from 0 to 50 ppt.
- Wide measurement coverage: Measures up to 50 mg/L and 500% saturation.
- Direct system integration: Connects to compatible automation platforms using RS485.
- Replaceable sensing cap: Optical cap can be renewed without replacing the complete sensor body.
Configuration options
- Extended cable: Cable lengths up to 100 metres, subject to DC voltage drop and RS485 network design.
- Process installation: Compatible immersion, pipeline, and flow-through assemblies can be selected for the application.
- Communication configuration: Device address, baud rate, parity, register map, and byte order should be matched to the receiving system.
- Replacement optical cap: Cap type, identification, calibration-data handling, and replacement procedure should be confirmed when ordering.
Measurement and maintenance notes
“Optical” does not mean maintenance-free. Inspect and clean the sensing cap at an interval appropriate to the process. Biofilm, sludge, scale, oil, algae, and trapped bubbles can isolate the optical surface from the sample and cause biased or slow readings.
Clean the cap only with methods compatible with the optical coating and cap material. Abrasive tools, aggressive solvents, and inappropriate chemicals may scratch, swell, cloud, or remove the sensing layer.
The claim of one year without calibration should be treated as an expected verification interval only under defined conditions. Critical applications should use periodic checks based on process risk, observed drift, cleaning frequency, and the site’s quality procedures.
Salinity compensation requires the correct salinity value. If the actual salinity changes but the configured value remains fixed, the reported dissolved oxygen concentration can be incorrect.
Percent saturation also depends on temperature and pressure. Confirm whether the sensor incorporates atmospheric-pressure or process-pressure compensation, or whether pressure data must be supplied externally.
For long RS485 networks, use appropriate twisted-pair cabling, daisy-chain topology, correct polarity, unique addresses, and suitable termination and biasing.
Classification
Product Type
- Industrial Sensors
Parameter
- Dissolved Oxygen
- Oxygen Saturation
- Temperature
Connectivity
- Digital
- RS485
- Modbus RTU
Application
- Municipal Wastewater Treatment
- Domestic Sewage Treatment
- Industrial Wastewater Treatment
- Aquaculture
- Seawater & Brackish Water
- Surface & Natural Water Monitoring
- Municipal Water Systems
- Biological Treatment & Aeration Control
- Remote Water-Quality Monitoring
- OEM Monitoring & Automation Systems
| Measurement Range | 0~50mg/L, 0-500% |
| Resolution | 0.01mg/L |
| Measurement Accuracy | <±0.2mg/L |
| Zero Offset Error | <0.1mg/L |
| Temperature Range | 0~50℃ |
| Pressure Range | 0~10Bar |
| Salinity Compensation Range | 0~50ppt |
| Response Time | <30S |
| Calibration Method | Zero-point and full-scale calibration |
| Installation Thread | NPT 3/4 |
| Housing Material | Housing: POM; Membrane Cap: ABS+PC |
| Length | 180mm |
| Cable Connection | Integrated direct-connect type |
| Protection Rating | IP68 |
| Power Supply | 12-36VDC |
| Communication Protocol | MODBUS RTU via RS485 |
| Membrane Cap Lifespan | Not less than 2 years |
| Weight | 0.3 kg |
|---|---|
| Dimensions | 20 × 6 × 6 cm |
| Measurement | Dissolved Oxygen |
| Insertion Depth | 120 mm, 150 mm, 225 mm, 325 mm, 425 mm, custom |
| Parameters | Dissolved Oxygen |
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