Wireless Bluetooth Lead Ion Meter

The wireless Bluetooth lead ion meter uses ion-selective electrodes to detect lead ion concentration in solutions and transmits data to mobile phones or computers via Bluetooth. It is used for on-site rapid testing of products such as water quality, coatings, and plastics, enabling portable heavy metal monitoring.
Selection
When selecting, focus on ensuring the detection range covers application needs, Bluetooth compatibility with common devices, electrode lifespan and calibration cycles affecting usage costs, protection rating suitable for the working environment, and stable supply of supporting reagents and consumables.

Terms

Standards

Instruments

Dedicated to lead ion composite ElectRode calibrated solution, 250ml standard Encasement, provides a stable lead Ion concentration reference, to ensure ElectRode Measurement accuracy and long-term Stability.

$ 110.00

Supports wireless Bluetooth connection to mobile devices, provides 5 Ion concentration Measuring methods, Measurement accuracy +/- 1% F. S, with 2 to 5 point calibrating and manual temperature compensation function to ensure accurate and reliable data.

$ 733.00

Support wireless Bluetooth connection to Android devices, provide 5 point calibrating and 8 calibrating liquid selection, Measurement accuracy of +/- 0.5% F. S, with automatic end point locking and temperature compensation functions to ensure stable and reliable data.

$ 733.00

Measurement accuracy of +/- 1% F. S, support 5 point calibrating and manual temperature compensation, with automatic end point locking and limit alarm functions, can be connected to a variety of ion selective ElectRode.

$ 733.00

ElectRode composite structure, equipped with 60mL reference filling solution and calibrating solution, built-in ionic strength modifier, support accurate lead Ion concentration measurement, matching polishing strip for easy maintenance.

$ 309.00

Support 0.00001~ 1mol/L wide range measurement, accuracy of +/- 0.5% F. S, with 5 point calibrating, ElectRode management and manual temperature compensation functions, can connect Bluetooth devices to achieve Multi-ParaMeter measurement.

$ 733.00

Dedicated to lead ion detection system, 250ml standard Encasement, ElectRode potential stability is ensured by adjusting ion strength, and measurement accuracy and Repeatability are improved.

$ 127.00

Specially designed for lead chloride ion composite ElectRode, providing stable reference potential to ensure the accuracy of ion measurement, Encasement capacity 250ml, suitable for routine laboratory testing.

$ 99.00

Measurement accuracy of +/- 1% F. S, 5 point calibrated and a variety of Ion concentration units, ElectRode management and temperature compensation functions ensure stable and reliable measurement.

$ 733.00

Supports 5 Ion concentration Measuring methods, Measurement accuracy of +/- 1% F. S, 2 to 5 point calibrating and manual temperature compensation functions to ensure accurate and reliable measurement data.

$ 733.00

Effective transmission distance of 10 Meters, using Bluetooth wireless transmission technology, equipped with RS-232 software CD, to achieve wireless data communication between measurement equipment and computer.

$ 122.00

Universal ion calibrating solution, concentration 1000ppm, PTFE material bottle Encasement, capacity 480mL, to meet the daily calibrating needs of the laboratory.

$ 135.00

Measurement range 0.000005~ 1mol/L, accuracy +/- 0.5% F.S. ElectRode management, temperature compensation and automatic end point locking function ensure stable and reliable measurement.

$ 733.00

Split design, tablet PC control, Bluetooth 4.0 wireless communication, Measurement range Ra 025-12.5 μm, support for a variety of Sensors and auxiliary clamping devices, compact body to adapt to complex working conditions.

$ 1332.00

Support 5 point calibrating and 8 kinds of calibrating liquid, Measurement range 0.00000001~ 0.1mol/L, ElectRode management and manual temperature compensation function to ensure measurement Stability.

$ 733.00

Articles

Cost-performance analysis of single-channel versus multi-channel switching modules when selecting a laboratory ion meter.
This article compares the cost-effectiveness of single-channel and multi-channel switching modules for laboratory ion meters. Single-channel devices have lower purchase costs, but additional instruments are required for each additional detection parameter. Multi-channel units have higher initial investment, but when testing more than three parameters, the total cost over three years is lower and the sample throughput is greater.
Atomic Absorption Spectrometer for Measuring Heavy Metal Content in Rubber
This article introduces a method for determining the heavy metal content in rubber using atomic absorption spectrometry. It first explains that rubber may contain harmful elements such as lead and cadmium, which require accurate measurement.
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Pencil Hardness Plan Outstanding Paint Film Pencil Hardness Grade
The pencil hardness test is a method for evaluating the scratch resistance of paint films. It involves using a series of pencils with known hardness levels to scratch the coated surface under fixed conditions. The hardness grade of the coating is determined by observing whether permanent scratches are produced.
Application of Film Pencil Hardness Tester in Coating Scratch Resistance Testing
The paint film pencil hardness tester is an instrument used to evaluate the scratch resistance of coatings. It works by scratching the surface of the coating with a pencil of known hardness under a fixed load, and then assessing the hardness grade based on whether scratches are produced.
Classification standards for determining the hardness of coatings using a pencil hardness tester.
This article introduces the method of measuring the hardness of coatings using a pencil hardness tester. It involves using pencils of varying hardness to scratch the coating and observing whether scratches are produced to determine the hardness grade, ranging from 6B to 9H.
Atomic Absorption Spectrometer for Determining Heavy Metal Content in Coatings
This article introduces a method for determining the content of heavy metals such as lead, cadmium, chromium, and mercury in coatings using atomic absorption spectroscopy. The method is based on the absorption of characteristic wavelength light by atoms for quantification. It requires acid digestion pretreatment of coating samples and optimization of instrument conditions to improve accuracy.
Key Operational Points and Influencing Factors of Pencil Hardness Method for Determining Coating Film Hardness
The pencil hardness test is a method used to evaluate the scratch resistance of a coating by making marks on the paint film with pencils of known hardness. During the operation, a uniformly cured sample is prepared, and calibrated pencils are used to make marks at a 45-degree angle with a fixed force, aiming to identify the highest hardness grade that does not scratch through the paint film.
How to Select a Pencil Hardness Tester? A Comprehensive Guide from Principles to Practical Application
When selecting a pencil hardness tester, focus on three key points: choose manual or automatic based on standards, use specialized testing pencils, and ensure the instrument can fix a 45-degree angle for uniform force application to achieve accurate and reliable results.