COD Analyzer LE-COD102

COD Analyzer LE-COD102

COD Analyzer LE-COD102 is designed to cover a wide detection range from 0 to 15000 mg/L and 2 to 150 mg/L. It features dual-wavelength functionality using 610 nm for high range and 420 nm for low range COD testing. Integrated 3.5-inch color LCD screen provides clear, real-time visual output for easy monitoring. Equipped with an independent dual optical system, the device ensures high accuracy and consistent performance. Our COD Analyzer is ideal for quick COD determination in surface, reclaimed, municipal, and industrial wastewater.

Specifications

Test Range High: 0 to 15000 mg/L
Measurement Accuracy COD > 50 mg/L, Error ≤ ±5%
Low Range: Error ≤ ±8%
Wavelength High Range: 610 nm
Low Range: 420 nm
Determination Time 20 Minutes
Repeatability ≤±5%
Optical Stability ≤ ±0.005A/20 min
Lamp Life 100000 Hours
Calorimetric Method Cuvette / Tube
Display LCD
Data Storage 12000 Data Points
Packaging Dimension 480 × 390 × 360mm
Gross Weight 9.1 Kg

Features

  • Rapid result
  • Self-calibration function
  • Support USB transmission
  • Self-designed non-metal case
  • Extended data storage

Applications

COD Analyzer LE-COD102 is suitable for quick and accurate measurement of chemical oxygen demand in surface water, reclaimed water, municipal wastewater, industrial effluents, and laboratory analysis.

Related Models Of COD Analyzer

Lab Expo offers a COD Analyzer with a wide temperature range and a compact design, making it ideal for space-efficient lab environments. It features a touch-button interface for easy temperature control, allowing users to set and adjust the heating parameters with precision. Its customizable heating programs enhance versatility, offering flexibility for various analysis requirements. Our analyzer is equipped with an aluminum alloy heating block that ensures uniform heat distribution, and efficient performance in COD testing. Our analyzer also features an LED display that provides clear, real-time visibility of the temperature, ensuring consistent monitoring.