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EL1002

See all products by Zahner

Price: On Request

Description

The EL1002 single-quadrant potentiostat was designed as an extension for the ZENNIUM series to perform measurements on high-power electrochemical systems such as PEM or solid oxide fuel cells. This highly dynamic electronic load was optimized for EIS measurements on frequencies on the order of 10 µHz to 100 kHz at high current densities.

The EL1002 is suited for power dissipation up to 1 kW at voltages up to 100 V. It can modulate and control currents of up to 200 A. Due to the innovative connection concept of the EL1002, additional power supplies or electronic loads can extend the current range up to 680 A. The EXT-concept allows for outstanding EIS quality at high currents and conserves a good value-to-price ratio.

The versatile interconnection capabilities of the EL1002 give access to measurements at high currents on large-scale batteries, electrolyzers or fuel cells.

  • Power extension of ZENNIUM potentiostat for battery, fuel cells, or electrolyzer stack measurements up 68 kW
  • EIS measurements at high power from 10 µHz bis 100 kHz
  • High bandwitdh and outstanding EIS data quality

Specifications

General

Type

Potentiostat/Galvanostat

Dimensions - WxDxH / cm

160 x 185 x 327 mm 3

Weight

4.6 kg

PC Interface

USB, Ethernet

General Potentiostat

Form Factor

Benchtop / Lab

Cell connection

4 electrode, 3 electrode

Potentiostat modes

Potentiostatic, Galvanostatic, pseudo-galvanostatic, off

ADC resolution

24 bit

Ground reference

floating

Memory

64 Gb

Ambient temperature when measuring

+10 °C to +25 °C

Input impedance

2 MΩ

Digital-to-Analog Converters

18 bit

Potentiostatic

Max. Potential range (±) / V

100

Voltage resolution (output)

38.14 µV

Min. Voltage resolution (output) / μV

38.14

Accuracy voltage (output)

± 500 µV ± 0.1% of reading

Voltage resolution (input)

1.192

Min. Voltage resolution (input) / μV

0.596

Potential Range Required (±) / V

±1 V or higher, ±4 V or higher, ±10 V or higher, ±20 V or higher, ±15 V or higher

Galvanostatic

Current Resolution (output)

3.81 µA

Min. Current Resolution (output) / pA

3810000

Current Accuracy (output)

±68 mA ​± 0.1% of reading

Current Resolution (input)

11.9 µA

Min. Current Resolution (input) / pA

11900000

Impedance

EIS Capability

Optional

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References

Scientific publications where researchers have utilized this equipment.Are you an author? Contact us to add your research.

Unraveling processes in an alkaline water electrolysis cell with reference electrodes and electrochemical impedance spectroscopy

Jakob Scholl, Christian Plank, Jann Odrobina, Michael A. Danzer, Karl Skadell, Michael Stelter•International Journal of Hydrogen Energy,203 (2026) 152987
https://doi.org/10.1016/j.ijhydene.2025.152987

Spatially Resolved Current Density and Electrochemical Impedance Spectroscopy in PEM Fuel Cells

Eva Fensterle, Frank Rabsahl, Jürgen Hunger, Florian Wilhelm, Joachim Scholta, Markus Hölzle•Fuel Cells,2026; 26:e70057
https://doi.org/10.1002/fuce.70057

Exploring electrochemical impedance spectroscopy to identify and quantify degradation in commercial solid oxide electrolysis stacks

Daniel B. Drasbæk, Peter Blennow, Thomas Heiredal-Clausen, Jeppe Rass-Hansen, Giovanni Perin, Jens V. T. Høgh, Anne Hauch•Fuel Cells,2023;23:454–462
https://doi.org/10.1002/fuce.202300023

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