TOC Analyzer EZL-TOC100 provides a measurement range of 1 to 1500 µg/L, allowing accurate determination of total organic carbon in wide variety of liquid samples. It uses a UV lamp-based oxidation method, removing the need for extra chemical reagents during analysis. Its sensitive conductivity detector delivers precise TOC quantification and supports online real-time monitoring. The device is equipped with a USB port and Bluetooth printing, ensuring quick data transfer and convenient report generation. Our TOC Analyzer EZL-TOC100 is widely used in pharmaceuticals, power generation, and biotechnology industries.
| Measurement Range | 1 to 1500 µg/L |
|---|---|
| Detection Limit | 1 µg/L |
| Digestion Mode | UV Oxidation by UV Lamp |
| Detector | Conductivity |
| Parameters | TOC (Total Organic Carbon) |
| Application | Liquid Sample |
| Repeatability | Less than or equal to 3 % |
| Maximum Tolerance | ± 5% |
| Sample Flow Speed | 2 ml/ min |
| Power | AC 110/220 V, 50 / 60 Hz, 100 W |
| Operation Mode | PC Software (optional) |
1 | AS-W20 Autosampler |
2 | AS-S200 Autosampler |
TOC Analyzer EZL-TOC100 is designed to measure total organic carbon in liquid samples such as microelectronics water and purified water with high accuracy. It is widely used in pharmaceuticals, power generation, and biotechnology industries for monitoring water quality and detecting organic contaminants.
The TOC Analyzer EZL-TOC100 is ideal for high-purity water testing, including Microelectronics Water, Purified Water (PW), Ultra-Pure Water (UPW), and Water for Injection (WFI). Its high sensitivity and UV oxidation technology make it suitable for industries like pharmaceuticals, semiconductors, and environmental monitoring. The system ensures accurate TOC measurement even at very low concentrations, meeting the strict requirements of regulatory standards such as USP, EP, ChP, and JP.
Ezilab’s TOC Analyzer EZL-TOC100 uses UV lamp oxidation without requiring external reagents like acids, carrier gases, or catalysts. This design simplifies the process, eliminates the recurring cost of consumables, and reduces maintenance. Additionally, one-button sampling minimizes contamination and operator exposure, further improving efficiency. Combined with its robust, modular design, the analyzer ensures long-term reliability and minimal downtime, making it cost-effective for both routine analysis and continuous monitoring applications.
Our TOC Analyzer EZL-TOC100 is fully compliant with major global regulatory standards, including FDA 21 CFR Part 11, USP, EP, ChP, and JP. It supports secure data handling, audit trails, electronic signatures, and user access control through optional PC software. These features ensure traceability and data integrity, which are essential for pharmaceutical and biotechnology industries where strict validation and documentation are required for quality assurance and regulatory inspections.
Ezilab’s TOC Analyzer EZL-TOC100 provides powerful data management tools, including 8GB internal storage, USB export, and Bluetooth printing. Users can search historical data by test date for complete traceability. Optional PC software enhances data security and complies with regulatory standards. This combination allows for easy archiving, reporting, and review of test results, making it convenient for laboratories that require reliable, long-term recordkeeping and efficient data sharing across departments or with regulatory bodies.
Our TOC Analyzer EZL-TOC100 offers online mode functionality, enabling real-time TOC monitoring. This is particularly useful for continuous process control in pharmaceutical and ultrapure water systems. Real-time monitoring ensures that any fluctuation in organic carbon levels is detected immediately, allowing for faster corrective action and improved product quality assurance. This feature is critical for industries that demand uninterrupted water purity verification to maintain compliance and operational efficiency.
The TOC Analyzer EZL-TOC100 includes automated calibration and self-cleaning functions that minimize manual intervention and reduce downtime. Its robust design and modular components simplify routine maintenance and part replacement. These features help maintain consistent performance, extend the instrument’s lifespan, and lower overall maintenance costs, making it ideal for laboratories seeking dependable operation with minimal upkeep. Additionally, its user-friendly interface provides clear alerts and maintenance reminders, ensuring timely servicing and optimal instrument performance.