Fully Automatic Potentiometric Titrator

The automatic potentiometric titrator detects changes in solution potential through electrodes, automatically controls the titration process, and determines the endpoint. It is used for titration analysis such as acid-base and redox titrations, and is applied in the chemical, food, and environmental protection industries to determine substance content.

Instruments

Measurement range 0~ 14.00pH and accuracy +/- 0.01pH, built-in automatic polarity reversal circuit, automatic tracking end point potential, no need to manually switch, easy to operate and precise control.

$ 420.00

Adopt sealing solvent system to reduce water vapor interference, support 100 titration methods, Measurement pump resolution up to 1/40000 Burette volume, with automatic drift correction and magnetic stirring function.

$ 11389.00

Adopt sealing solvent system to reduce water vapor interference, support 100 titration methods, Measurement range covers 1ppm to 5%, built-in automatic drift correction function, equipped with electronic adjustment Magnetic Stirrer.

$ 11389.00

Adopt automatic potential Titrimetric method, built-in standard method to directly read the results, support silver nitrate (AgNO3) calibration and blank experiment, data management can store 200 sets of results, titration analysis Repeatability of 0.20%.

$ 3667.00

Support dynamic titration and preset endpoints and other modes, titration analysis Repeatability of 0.20%, Potential Measurement range -1800.0~ 1800.0mV, can store 200 sets of results and comply with GLP specifications.

$ 4066.00

Supports multiple titration types and can store up to 100 titration methods. With a five-point pH calibrate 、 +/- 0.001 pH accuracy and a waterproof body, it can be connected to the Automatic sampler for efficient analysis.

$ 16265.00

It has 0.20% titration analysis Repeatability, supports dynamic titration and other modes, adopts PWM modulation and stirring technology implementation software speed regulation, can store 50 sets of titration results and support firmware upgrade and expansion functions.

$ 3002.00

Supports multiple titration types and Direct Measurement modes with five-point calibrated and 0.001mL resolution Burette, automated setup for Sample injectors, optimized desktop space and waterproof and durable design.

$ 9759.00

Using positive pressure test principle, Measurement range 0~ 1.6MPa, fully automatic operation, support three test modes, built-in calibrating program, suitable for quantitative measurement of various sealing performance indicators.

$ 1332.00

The fully automatic electronically controlled hydraulic pump provides smooth and continuous pulling force with +/- 1% accuracy, built-in rechargeable battery supports 200 tests, and IP65 Protection Rating ensures durability.

$ 4212.00

Measurement range 0.0001% to 100% with Karl Fischer Coulometry, built-in mass storage for 20,000 records, multiple calculation formulas and automatic unit conversion.

$ 1316.00

Pneumatic fixture to achieve automatic clamping, no manual operation; Measurement range covers 10~ 16000mN, support a variety of sheet material Tear strength detection, equipped with 3.2 inch LCD display and thermal printer.

$ 2308.00

Fully enclosed metal Furnace body to enhance Baseline Stability, with imported alloy Sensor to enhance corrosion resistance; Temperature range covering room temperature to 600 ℃, support 0.1~ 100 ℃/min program temperature control, with 0.001 ℃ resolution and Automatic calibration function.

$ 3672.00

Featuring a Cotex-M4 ARM processor, it employs pneumatic sample clamping and an integrated weighing mechanism to achieve fully automated measurement. The oscillation frequency is adjustable from 50 to 200 times per minute, with a weighing resolution of up to 0.001g.

$ 3059.00

Using 7-inch true color Touchscreen and 32-bit microprocessor, Temperature range RT +~ 400 ℃, with automatic atmospheric pressure compensation and over-temperature protection function, the test process is fully automated.

$ 5399.00

Articles

Automatic potentiometric titration method for determining hydrogen peroxide concentration by redox method
This article introduces a method for determining the concentration of hydrogen peroxide using an automatic potentiometric titrator. It is based on the redox reaction between potassium permanganate and hydrogen peroxide under acidic conditions, with the titration endpoint automatically determined by the abrupt change in potential.
Automatic Potentiometric Titration for Rapid Detection of Chloride Ion Content in Cement
This article introduces a method for rapidly detecting the chloride ion content in cement using an automatic potentiometric titrator. Excessive chloride ions can corrode steel reinforcement and affect the lifespan of concrete, making accurate detection crucial.
Key operational points for determining the acid value of oils and fats using potentiometric titration.
This article introduces the key operational points for determining the acid value of oils and fats using potentiometric titration. The method principle involves dissolving the oil or fat sample, titrating it with a standard alkaline solution, automatically determining the endpoint based on the potential jump, and then calculating the acid value using the formula.
Application of Automatic Potentiometric Titrator in Chloride Ion Detection in Drinking Water
This article introduces a method for detecting chloride ions in drinking water using an automatic potentiometric titrator. The principle involves allowing chloride ions in the water sample to react with silver nitrate to form a precipitate. The instrument monitors changes in potential through an electrode, automatically determines the endpoint of the reaction, and calculates the chloride ion content.
Key operational points for determining chloride ion content in water using automatic potentiometric titrators
This article introduces a method for measuring chloride ions in water using an automatic potentiometric titrator. It is based on silver nitrate titration, where the endpoint is automatically determined by a sharp change in electrode potential, offering greater accuracy and higher automation compared to traditional methods.