EI-DVI Model 1015 Microprocessor pH Meter | 5-Point Calibration & ATC
EI-DVI
The EI-DVI Model 1013 Microprocessor pH Meter is a highly advanced research-grade laboratory instrument engineered for precise pH, millivolt (mV), and temperature measurement across demanding scientific, industrial, pharmaceutical, and environmental applications. Designed with advanced microprocessor technology and intelligent electrochemical analysis capabilities, this benchtop pH meter delivers exceptional measurement accuracy, stability, and repeatability for critical analytical workflows.
Built for modern laboratory efficiency, the Model 1013 features a high-resolution 128 × 64 graphical LCD display with intuitive operational prompts, enabling users to easily monitor readings, calibration status, and measurement parameters. The soft-touch membrane keyboard with 8 responsive keys ensures smooth navigation and simplified operation during routine and research-grade analysis.
This high precision microprocessor pH meter supports automatic and manual calibration with up to 3-point calibration functionality for improved analytical accuracy across wide pH ranges. Integrated automatic buffer recognition for standard pH buffers (4.00, 7.00, and 9.20) simplifies calibration procedures while minimizing operator error. Automatic and manual temperature compensation from 0 to 100°C further enhances pH accuracy under varying sample temperatures.
The EI-DVI Model 1013 also incorporates advanced data handling capabilities with storage capacity for up to 1000 samples and built-in memory retention during power loss. For laboratory reporting and documentation, the instrument supports external printer connectivity through an RS 232 serial interface compatible with dot matrix and thermal printers.
Widely used in chemical laboratories, pharmaceutical manufacturing, water treatment facilities, agriculture, soil testing laboratories, breweries, petroleum refineries, educational institutions, and environmental research centers, the EI-DVI Model 1013 offers the ideal combination of precision, reliability, intelligent diagnostics, and operational simplicity for modern laboratory environments.
| Feature | Details |
|---|---|
| Model Number | 1013 |
| Product Type | Microprocessor pH Meter (Benchtop/Table-Top) |
| Measurement Parameters | pH / mV / Temperature |
| pH Range | -2.000 to 20.000 pH |
| pH Resolution | 0.001 pH |
| pH Accuracy | ±0.001 pH, ±1 Digit |
| mV Range | 0 to ±1999.9 mV |
| mV Resolution | 0.1 mV |
| mV Accuracy | ±0.1 mV, ±1 Digit |
| Temperature Range | -5 to 110°C |
| Temperature Resolution | 0.1°C |
| Temperature Accuracy | ±0.1°C |
| Temperature Compensation | 0 to 100°C Auto / Manual |
| Calibration Method | Auto / Manual (2 or 3 Point Calibration) |
| Auto Buffer Recognition | 4.00, 7.00, and 9.20 pH |
| Display | 128 × 64 Dots Graphical LCD Display |
| Keyboard | 8 Keys Soft Touch Membrane Type |
| Storage Capacity | Up to 1000 Samples |
| Printer Interface | External Serial RS 232 Dot Matrix / Thermal Printer Interface |
| Electrode Slope | 80% to 120% |
| Power Supply | 12V DC using 230V ±10% AC Adapter |
| Dimensions (L × B × H) | 270 × 202 × 80 mm (Approx.) |
| Weight | 0.8 Kg (Approx.) |
| Country of Origin | India |
| Included Accessories | Combination pH Electrode, Temperature Probe, Electrode Stand, Buffer Tablets, Dust Cover, Operation Manual |
The EI-DVI Model 1013 Microprocessor pH Meter is designed to deliver highly stable electrochemical analysis, simplified calibration, intelligent diagnostics, and dependable laboratory performance for research, industrial quality control, and environmental testing applications.
What is the primary application of the EI-DVI Model 1013 Microprocessor pH Meter?
The EI-DVI Model 1013 Microprocessor pH Meter is designed for highly accurate pH, mV, and temperature analysis in laboratories, pharmaceutical industries, water testing facilities, soil analysis, and research environments. Its precision measurement system ensures reliable electrochemical analysis for scientific and industrial quality control applications.
The instrument is widely used for chemical analysis, water quality monitoring, pharmaceutical formulation, environmental testing, agricultural soil testing, and industrial process control where dependable pH measurements are essential.
How accurate is the EI-DVI Model 1013 pH Meter?
The EI-DVI Model 1013 offers exceptionally high precision with 0.001 pH resolution and ±0.001 pH accuracy, making it suitable for advanced laboratory and research applications requiring highly stable and reproducible analytical results.
The advanced microprocessor technology combined with automatic temperature compensation and multi-point calibration improves overall measurement consistency and reliability across varying sample conditions.
Does the Model 1013 support automatic calibration?
The EI-DVI Model 1013 supports both automatic and manual calibration with 2-point and 3-point calibration options. It also includes automatic buffer recognition for standard 4.00, 7.00, and 9.20 pH buffers to simplify calibration procedures.
This intelligent calibration system reduces setup time, minimizes operator errors, and improves long-term analytical accuracy during routine laboratory testing.
Can the EI-DVI Model 1013 store and print measurement data?
The instrument can store up to 1000 samples internally with memory retention functionality even after power loss. It also supports external printer connectivity through an RS 232 serial interface for result printing and documentation.
This data management capability improves laboratory record keeping, traceability, and reporting efficiency for quality control and research applications.
Which industries commonly use the EI-DVI Model 1013 Microprocessor pH Meter?
The EI-DVI Model 1013 is commonly used in chemical laboratories, pharmaceutical manufacturing, agriculture, water treatment facilities, breweries, petroleum refineries, environmental testing centers, and academic research laboratories.
Its combination of precision measurement, intelligent diagnostics, and user-friendly operation makes it suitable for both industrial quality assurance and advanced scientific research applications.