Portable Potentiostat / Galvanostat for Battery Research - MSE Supplies LLC

Portable Potentiostat / Galvanostat for Battery Research

  • $ 3,19500

Portable Potentiostat / Galvanostat for Battery Research

MSE Supplies offers portable electrochemical workstation (potentiostat / galvanostat) in two variants, one with EIS and one without EIS. Both are powered by a lithium battery and can be placed in a glove box or used outdoors. The lithium battery can be charged in advance, and the Type-C interface is used for charging and communication. The electrochemical parameters of the grounding system can be measured without an isolation transformer. The portable electrochemical analyzer are mainly used for battery testing, electro analytical chemistry, and corrosion electrochemical testing.


(1) Reaction mechanism of electrosynthesis, electrodeposition (electroplating), anodic oxidation, etc

(2) Electrochemical analysis and sensor

(3) New energy materials (Li-ion battery, solar cell, fuel cell, super capacitors), advanced functional materials, photoelectronic materials

(4) Corrosion study of metals in water, concrete, soil, etc

(5) Fast evaluation of corrosion inhibitor, water stabilizer, coating and cathodic protection efficiency

Technical Specifications:

Dimension 150mm x 90mm x 30mm
Weight ~ 500g
Power Supply  Built-in lithium-battery 6000mAH at 3.7V / USB

Without EIS (SC100)

With EIS (SC100E)

Potential Control Range ± 10V
Potential Control Accuracy 0.1% × full range 
Maximum Current ± 45mA
Minimum Potential Resolution 10mV
Current Control Accuracy 0.1% × full range
Minimum Current Resolution 100fA
Reference Electrode Input Impedance 1013Ω || 8pF
Potential Range ± 2.5V, ± 5V, ± 10V
Current Range 200pA ~ 50mA (10 ranges)
Compliance Voltage ± 12V
EIS Frequency Range 10μHz ~ 1MHz
Maximum Acquisition Rate 150,000 data points/s
AC Amplitude 0 ~ ± 2.5V
Signal Response Bandwidth 1MHz
CV and LSV Scan Rate 0.001mV ~ 10V/s
Warranty 5 years

Electrochemical Impedance Spectroscopy (EIS)

Signal Generator:

Frequency Range 10μHz~1MHz
Frequency Accuracy 0.005%
AC Signal Amplitude 1mV~2500mV
Signal Resolution 0.1mV RMS
DC Bias -10V ~ +10V
Output Impedance 50Ω
Waveform Sine wave, triangular wave and square wave
Wave Distortion < 1%
Scan Mode Logarithmic/linear, increase/decrease


Signal Analyzer:

Integral Time Minimum 10ms or the longest time of a cycle
Maximum 106 cycles or 105s
Measurement Delay 0 ~ 105s


DC Offset Compensation:

Potential Automatic Compensation Range -10V ~ +10V
Current Compensation Range -1A ~ +1A
Bandwidth 8-decade frequency range, automatic and manual setting


OS Requirement

Communications Interface: USB / Bluetooth

Operating System: Windows7/win8/win10/11

Software/ Techniques (only applicable to SC100E)

Stable Polarization Open Circuit Potential (OCP)
Potentiostatic (I-T Curve)
Potentiodynamic (Tafel Plot)
Transient Polarization Multi-Potential Steps
Multi-Current Steps
Potential Stair-Step (VSTEP)
Galvanic Stair-Step (ISTEP)
Chrono Methods Chronopotentiometry (CP)
Chronoamperometry (CA)
Chronocoulometry (CC)
Voltammetry Cyclic Voltammetry (CV)
Linear Sweep Voltammetry (LSV)
Staircase Voltammetry (SCV)
Square Wave Voltammetry (SWV)
Differential Pulse Voltammetry (DPV)
Normal Pulse Voltammetry (NPV)
Differential Normal Pulse Voltammetry (DNPV)
AC Voltammetry (ACV) 
2nd Harmonic A.C.Voltammetry (SHACV)
Fourier Transform AC Voltammetry (FTACV)
Amperometric Differential Pulse Amperometry (DPA)
Double Differential Pulse Amperometry (DDPA)
Triple Pulse Amperometry (TPA)
Integrated Pulse Amperometric Detection (IPAD)
Stripping Voltammetry Potentiometric Stripping
Linear Stripping
Staircase Stripping
Square Wave Stripping
Differential Pulse Voltammetry Stripping
Normal Pulse Voltammetry Stripping
Differential Normal Pulse Voltammetry Stripping
EIS EIS vs Frequency (IMP)
EIS vs Time (IMPT)
EIS vs Potential (IMPE) (Mott-Schottky)
Corrosion Test Electrochemical Potentiokinetic Reactivation (EPR)
Electrochemical Noise (EN)
Zero Resistance Ammeter (ZRA)
Battery Test Battery Charge and Discharge
Galvanostatic Charge and Discharge (GCD)
Potentiostatic Charging and Discharging (PCD)
Potentiostatic Intermittent Titration Technique (PITT)
Galvanostatic Intermittent Titration Technique (GITT)
Extensions Data Logger
Electrochemical Stripping/Deposition
Bulk Electrolysis with Coulometry (BE)
Rs Measurement

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