QPPEDGDW3M Allicdata Electronics
Allicdata Part #:

QPPEDGDW3M-ND

Manufacturer Part#:

QPPEDGDW3M

Price: $ 184.00
Product Category:

Uncategorized

Manufacturer: Panduit Corp
Short Description: QN PLUG PACK ASMBLY, 8 PACK, IG
More Detail: N/A
DataSheet: QPPEDGDW3M datasheetQPPEDGDW3M Datasheet/PDF
Quantity: 1000
1 +: $ 167.27100
Stock 1000Can Ship Immediately
$ 184
Specifications
Series: *
Part Status: Active
Description

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QPPDGDW3M, or Quadrupole Parallel Plate Electrode Design with Three Mats, is a well-known technology in the electrochemical engineering laboratory. It has been used in numerous fields such as fuel cell and battery fabrication and electroplating.

The main components of the QPPDGDW3M system are four parallel flat plates consisting of a base metal or ceramic plate and three metal or ceramic mats. These mats are arranged in a cross formation with the four plates placed in the center. Each of the mats is capacitively coupled to the center plate and a separate potential can be applied to each mat.

When enabled, the system can be used to measure ion currents, electrochemical impedance spectra and different types of electrochemical properties. It can also perform physical measurements such as temperature and pressure.

The QPPDGDW3M system is essentially a 3-terminal electrochemical cell that can be used to measure ionic species diffusion and electrochemical reactions. It also has a wide range of application fields and has been successfully used in many different research areas.

One of the most important application fields of the QPPDGDW3M system is bioelectrochemistry. It can be used to reach deep insight into the biochemical events in living cells. The system makes it possible to perform biocatalytic reactions at controlled and well-defined rates. By utilizing the application field of bioelectrochemistry, researchers are able to develop enhanced enzymatic biocatalysts and better understand the biochemistry and biophysics of living cells.

The working principle of the QPPDGDW3M system basically relies on the fact that each mats acts as a capacitively coupled electrode system. The coulombic force generated by the electric field created between each of the mats is further amplified by a proprietary amplifier to make measurements more accurate. This amplifier is also capable of storing and displaying ion currents and other electrochemical values from the system.

The working principle of the QPPDGDW3M system can be further understood by considering its application in fuel cells and batteries. In such systems, the four plates represent individual cell plates, with chemical reactants being delivered from each side. The applied potential difference between these plates then drives the ionic current flowing through the electrodes.

In addition, the QPPDGDW3M system has also been used in a number of electroplating applications. For instance, it can be used to measure electrochemical immobilization reactions in order to achieve desired properties on surfaces. The system can also measure the behavior of plating baths, which can be used to optimize industrial and research applications.

In conclusion, the QPPDGDW3M system is a highly advanced and widely used technology in the electrochemical engineering laboratory. It has a wide range of application fields such as fuel cells and batteries fabrication, electrochemical engineering and bioelectrochemistry. Its working principle is based on capacitively coupling electrodes with a proprietary amplifier to further amplify coulombic forces for accurate measurements. Furthermore, it has been successfully used in electroplating applications such as electrochemical immobilization reactions.

Whatever the application field, QPPDGDW3M is a powerful tool for obtaining precise electrochemical measurements.

The specific data is subject to PDF, and the above content is for reference

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