Overview
The AELAB Benchtop Touch Screen Electrochemistry Meter Series is designed for laboratories requiring high-precision pH, ORP, Conductivity, Salinity, TDS, Resistivity, and DO measurements with a modern, intuitive user interface. The 7-inch touch display simplifies operation while supporting automatic calibration, automatic temperature compensation, data logging, and workflow optimization.
These benchtop meters convert electrochemical signals from dedicated probes into stable and accurate digital readings. With intelligent compensation algorithms, multi-point calibration, and IP54 protection, the AELAB series ensures reliable analytical performance for research laboratories, industrial quality control, and environmental monitoring facilities.
⚙️ Design & Construction
The AELAB series incorporates a high-resolution 7-inch capacitive touch screen, a flexible probe holder, magnetic stirrer (included in most kits), and sealed IP54-grade housing. Stainless-Steel temperature probes, glass pH electrodes, conductivity probes (K=1.0), and polarographic DO probes provide reliable sensing performance. The benchtop platform stabilizes measurements under laboratory conditions and supports durable, long-term operation.
🔬 Working Principle / Testing Method
The instruments analyze electrochemical potentials using high-sensitivity probes immersed in liquid samples. pH and ORP signals are measured in mV and converted to corresponding chemical values. Conductivity, Resistivity, Salinity, and TDS are quantified using auto-ranging conductivity cells. Dissolved oxygen measurements use polarographic sensor technology with automatic barometric and temperature compensation. Real-time ATC, multi-point calibration, salinity correction (for DO), and automated compensation ensure accurate results across varying sample conditions.
💡 Key Advantages
- High-visibility 7-inch touch control optimizes workflow and reduces user training time
- Advanced compensation: temperature, pressure (DO models), salinity, and electrode parameters
- Automatic buffer recognition and 1–5 point pH calibration support GLP-compliant workflows
- Auto-ranging conductivity measurement ensures stable quantification across micro- to high-salt samples
- Wide multiparameter support enables combined pH/Cond/ORP/DO measurements (PCD100T)
- Data export via Flash disk, PC connection, or optional wireless printer
- Robust IP54 protection and durable probe set ensure long laboratory service life
🔗 Connectivity & Integration
The series supports Flash disk export, direct PC communication, and optional wireless printer output. Measurement parameters, calibration logs, and stored readings (up to 500 entries per parameter) can be saved for GLP documentation and LIMS integration. USB interfaces enable rapid data transfer for QA/QC reporting.
🧠 Model Insight
| Model |
Specifications |
| PH100T |
Single-parameter pH; (–2.000–20.000)pH; 1–5 point calibration; IP54; Flash disk/PC/Printer |
| EC100T |
Single-parameter Conductivity/TDS/Salinity/Resistivity; auto-ranging; 0–200.0mS/cm |
| DO100T |
Single-parameter Dissolved Oxygen; 0.00–20.00mg/L; automatic pressure/temperature compensation |
| PC100T |
Multiparameter pH + Conductivity |
| P1D100T |
Multiparameter pH + DO |
| C1D100T |
Multiparameter Conductivity + DO |
| PCD100T |
Full multiparameter pH/Cond/ORP/DO; simultaneous display |
🧪 Testing Applications
The AELAB Benchtop Touch Screen Electrochemistry Meter Series is suitable for environmental monitoring labs, water & wastewater plants, food and beverage QA, chemical production QC, pharmaceutical laboratories, academic teaching labs, and industrial R&D workflows. The wide parameter coverage enables precise analysis of natural waters, process solutions, fermentation media, and laboratory samples.
Compliance & Quality Assurance
AELAB instruments follow ISO and GLP principles, providing traceable calibration, stable measurement performance, and fully documented parameter logs. IP54 protection ensures durability in laboratory environments, and factory-tested sensor kits ensure reliable analytical repeatability.