Copper Ion Meter

The copper ion meter adopts the electrode method, utilizing a copper ion-selective electrode and a reference electrode to form a measurement cell. The potential difference exhibits a linear relationship with the logarithm of the copper ion concentration. It is used to detect the copper ion content in samples such as water bodies and electroplating solutions, with applications in environmental monitoring and industrial wastewater treatment.
Selection
When selecting a copper ion meter, it is essential to consider that the measurement range covers the sample concentration, the accuracy meets the detection requirements, the electrode material is corrosion-resistant, the instrument has temperature compensation functionality, the operation interface is user-friendly, data storage and output are supported, maintenance is convenient, and the supply of supporting reagents is stable.

Terms

Standards

Instruments

Providing stable copper Ion concentration standards to ensure ElectRode Measurement accuracy, 250ml Encasement meets the daily calibrating needs of the laboratory and is suitable for a variety of copper ion detection scenarios.

$ 110.00

Concentration 1000ppm of copper ion standard solution, PTFE bottle Encasement, capacity 480mL, suitable for daily ion calibrating applications.

$ 135.00

Measurement range 0.00~ 5.00 ppm, accuracy +/- 0.05 ppm, using LED@575nm Illuminant, chemical reaction based rapid detection of copper Ion concentration, suitable for field and laboratory applications.

$ 215.00

Designed for Bromo Iodine Copper Ion Composite ElectRode, it provides a stable reference potential to ensure measurement accuracy, and 250ml Encasement meets the needs of routine laboratory use.

$ 99.00

The ElectRode is a composite design with a 60mL reference filler and calibrating solution combined with an ionic strength modifier for accurate measurement of Cu Ion concentration and comes with a polishing strip for easy maintenance.

$ 309.00

Suitable for a variety of ion composite ElectRode measurement, providing a stable ion background, 250ml Encasement to meet the needs of routine use in the laboratory, to ensure the stability of ElectRode performance.

$ 127.00

Measurement range 6.35μg/L to 63.5mg/L, resolution up to 0.01 pCu, support pCu and concentration conversion, easy operation and high Stability.

$ 382.00

ElectRode filling solution is suitable for ammonia Gas sensing electRode maintenance, copper ion type, capacity 480 ml, to ensure ElectRode performance stability and measurement accuracy.

$ 135.00

Measurement accuracy of +/- 1% F. S with 5 point button calibrating and automatic end point locking, 500 data storage and automatic temperature compensation to ensure measurement Stability and accuracy.

$ 696.00

With 0.001mg/L high resolution, Measurement range 0~ 2.0mg/L, Microprocessing technology and high Reliability integrated circuit, support custom Linear dispersion calibrated to ensure long-term stable operation.

$ 356.00

Equipped with 7-inch TFT display, supports 5 ion Measuring methods, automatically recognizes ion selective ElectRode, can store 1000 sets of data, Measurement accuracy of +/- 1% F. S, suitable for a variety of Ion concentration detection.

$ 864.00

The copper Cup ensures durability, the diaMeter of the flow hole is 4mm with the capacity of 100ml, and the measurement time range is 0~ 150s, which is suitable for conditional viscosity determination.

$ 141.00

Equipped with 7-inch TFT display, supports 5 ion Measuring methods, automatically recognizes ion selective ElectRode, can store 1000 sets of data, Measurement accuracy of +/- 0.5% F. S, suitable for a variety of Ion concentration detection.

$ 864.00

Universal ion standard solution concentration 1000ppm, suitable for daily ion calibrating, PTFE bottle Encasement, capacity 480mL, to ensure calibrating accuracy and Stability.

$ 135.00

Measurement range of 10-1~ 5 × 10-7mol/L, temperature range of 5-60 ℃, equipped with standard BNC interface for easy connection of various analytical instruments.

$ 125.00

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.
The film coater achieves controllable coating of lithium-ion battery anode slurry on copper foil.
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Applicable Scenarios for Neutral Salt Spray and Copper-Accelerated Acetic Acid Salt Spray Tests
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The coating machine is a key device for preparing copper nanowires and zinc oxide thin films, which uniformly coats slurry onto a substrate through methods such as blade coating to form a thin film.
From aluminum foil and copper foil to electrode coating, the laboratory coating machine handles it all in one go.
A laboratory coating machine is a sample preparation device used for material research and development and quality control. It evenly applies slurry onto substrates such as aluminum foil and copper foil, forming a film of specific thickness by controlling the drying process.
The coating machine in the laboratory ensures a more stable functional layer on the surface of copper and aluminum foils.
The laboratory coating machine is used to apply functional layers on the surfaces of copper foil and aluminum foil. By precisely controlling parameters such as coating speed, slurry viscosity, and drying temperature, it enhances the uniformity and adhesion of the coatings.
Application of Tensile Testing Machine in Coating Peel Strength Testing of Silicon-Carbon Anode Materials
This article introduces how to use a tensile testing machine to measure the bonding strength between silicon-carbon anode material coatings and copper foil substrates in lithium-ion battery research and development. During the test, the coating is peeled off using the 180-degree peel method at a constant speed, and the force variations throughout the peeling process are recorded.