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Ag-AgCl Half-Cells

Ag-AgCl Half-Cells

Half Cell and reference cell electrodes for laboratory research


Reference Cells

New, improved sintered pellets with lower resistance and high strength. Stable and well balanced in the presence of current, these small and inexpensive half-cells are easy to work with as bath electrodes.

Options

Order code Diagram Description
RC1 RC1/RC1T Reference electrode diagram  4 ft. Lead 
RC1T 4 ft. Lead
2.0mm Pin 
RC2  RC2 Reference Cell diagram 2.0mm Pin 
RC2F RC2F Reference Cell diagram Female connector
RC3 RC3 Reference Cell diagram Epoxy body
4.5mm diameter
50mm long
RC6 RC6 Reference Cell diagram Glass body
1.5mm diameter
50mm long

 

Ag/AgCl Half Cell Electrode

  • Silver/Silver Chloride half cells ideal for use as bath electrodes
  • Low resistance and high strength
  • Stable and well balanced in the presence of current

New, improved sintered pellets with lower resistance and high strength. Stable and well balanced in the presence of current, these small and inexpensive half-cells are easy to work with as bath electrodes.

Options

Order code Image Description
EP05  EP05 electrode
  • 0.5mm Φ x 20mm
  • 40mm long silver wire
  • 0.250 μm diameter
EP08 EP08
  • 0.8mm Φ x 20mm
  • 40mm long silver wire
  • 0.250 μm diameter
EP1 EP1 electrode
  • 1.0mm Φ x 3mm
  • 70mm long silver wire
  • 0.250 μm diameter
EP2 EP2 Electrode
  • 2.0mm Φ x 4mm
  • 5cm long silver wire
  • 0.250 μm diameter
EP4 EP4 Electrode
  • 4.0mm Φ x 1mm
  • 12mm long silver wire
  • 0.250 μm diameter
EP8
  • 8.0mm Φ x 1mm
  • 12mm long silver wire
  • 0.250 μm diameter
EP12  EP12 electrode
  • 12.0mm Φ x 1mm
  • 12mm long silver wire
  • 0.250 μm diameter

 



Choose Quantity
RC1

RC1

Reference Cell with 1.5 m lead. New, improved sintered pellets with lower resistance and high strength. Stable and well balanced in the presence of current, these small and inexpensive half-cells are easy to work with as bath electrodes.


Choose Quantity
RC1T

RC1T

Reference Cell with 1.5 m lead, 2.0 mm pin. New, improved sintered pellets with lower resistance and high strength. Stable and well balanced in the presence of current, these small and inexpensive half-cells are easy to work with as bath electrodes.


Choose Quantity
RC2

RC2

Reference Cell with 2.0 mm pin. New, improved sintered pellets with lower resistance and high strength. Stable and well balanced in the presence of current, these small and inexpensive half-cells are easy to work with as bath electrodes.


Choose Quantity
RC2F

RC2F

Reference Cell with female connector. New, improved sintered pellets with lower resistance and high strength. Stable and well balanced in the presence of current, these small and inexpensive half-cells are easy to work with as bath electrodes.


Choose Quantity
RC3

RC3

Reference Cell with Epoxy body. 4.5 mm diameter x 50 mm. New, improved sintered pellets with lower resistance and high strength. Stable and well balanced in the presence of current, these small and inexpensive half-cells are easy to work with as bath electrodes.


Choose Quantity
RC6

RC6

Reference Cell with Glass body. 1.5 mm diameter x 50 mm. New, improved sintered pellets with lower resistance and high strength. Stable and well balanced in the presence of current, these small and inexpensive half-cells are easy to work with as bath electrodes.


Choose Quantity
EP05

EP05

0.5mm dia. x 20mm Ag/AgCl Electrode. Ag wire 40 mm long.


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EP08

EP08

0.8mm dia. x 20mm Ag/AgCl Electrode. Ag wire 40 mm long.


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EP1

EP1

1.0 mm dia. x 2.5 mm Ag/AgCl Electrode. Ag wire 70 mm long.


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EP2

EP2

2.0 mm dia. x 4 mm Ag/AgCl Electrode. Ag wire 50 mm long.


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EP4

EP4

4.0 mm dia. x 1 mm Ag/AgCl Electrode. Ag wire 12 mm long.


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EP8

EP8

8.0 mm dia. x 8 mm Ag/AgCl Electrode. Ag wire 12 mm long.


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EP12

EP12

12.0 mm dia. x 1 mm Ag/AgCl Electrode. Ag wire 12 mm long.


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3578

3578

Adapter Cable for Ag/AgCl Pellets. Connector A: 2mm pin. Connector B: Pellets.

Our Clients Include:

GlaxoSmithKline
University College London
Novartis
Imperial College
University of Cambridge
University of Oxford

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