Product name: Electrochemical workstation
Model: CS350M, CS310M, CS300M
CS Series Single Channel Electrochemical Workstation for Lab Research
	
 
Instrument configuration:
| 
					 Serial number  | 
				
					 Item  | 
				
					 Specification/Model  | 
				
					 Quantity  | 
				
					 Remarks  | 
			
| 
					 1  | 
				
					 Electrochemical workstation host  | 
				
					 CS350M、CS310M、CS300M  | 
				
					 1 Set  | 
				
					 
 
 
 
 
 
 
 Standard 
  | 
			
| 
					 2  | 
				
					 Special software for testing and analysis  | 
				
					 CorrTest  | 
				
					 1 Set  | 
			|
| 
					 3  | 
				
					 Power cable/USB cable  | 
				
					 --  | 
				
					 1 Each  | 
			|
| 
					 4  | 
				
					 Electrode cable  | 
				
					 --  | 
				
					 1 Piece  | 
			|
| 
					 5  | 
				
					 Simulated cell (Instrument self-test device)  | 
				
					 --  | 
				
					 1 Piece  | 
			|
| 
					 6  | 
				
					 Regular office computer  | 
				
					 --  | 
				
					 1 Set  | 
				
					 Option  | 
			
	
 
Technical parameter:
	
1. Hardware parameters
2,3,4 electrode system
Constant potential control range: ±10V
Constant current control range: ±2.0A
Potential control accuracy: 0.1% x full scale reading ±1mV
Current control accuracy: 0.1% x full scale reading
Potential resolution: 10μV (> 100Hz), 3μV (< 10Hz)
Current sensitivity: < 1pA
Potential rise time: < 1μS (< 10mA), < 10μS (< 2A)
Reference electrode input impedance: 10^12Ω | | 20pF
Current range: 2A ~ 2nA, a total of 10 stops
Tank pressure: ±21V
Maximum output current: 2.0A
CV and LSV scanning speed: 0.001mV ~ 10000V/s
CA and CC pulse width: 0.0001 ~ 65000s
Current scanning increment: 1mA@1A/mS
Potential increment during potential scanning: 0.076mV @1V/mS
SWV frequency: 0.001 ~ 100KHz
DPV and NPV pulse width: 0.0001 ~ 1000s
AD data acquisition: 16bit@1MHz, 20bit@1KHz
DA resolution: 16bit, setup time: 1μS
The minimum potential increment of CV: 0.075mV
Low-pass filter: 8 segments programmable
Current and potential range: automatic setting
Interface Communication mode: Network port
	
 
2. Electrochemical impedance function index
Signal generator:
Frequency response: 10μHz ~ 1MHz
Frequency accuracy: 0.005%
Ac signal amplitude: 1mV ~ 2500mV
Signal resolution: 0.1mV RMS
Dc bias: -10 ~ +10V
DDS output impedance: 50Ω
Waveform: sine wave, triangular wave, square wave
Sine wave distortion: < 1%
Scanning mode: logarithm/linear, increase/decrease
	
 
Signal analyzer:
Minimum integration time: 10mS or the maximum time of a cycle
Maximum integration time: 10^6 cycles or 10^5S
Measurement time delay: 0 ~ 10^5 seconds
	
Dc offset compensation:
Automatic potential compensation range: -10V ~ +10V
Current compensation range: -1A ~ +1A
Bandwidth Adjustment (Bandwidth) : Automatic or manual Settings, a total of 8 adjustable levels
	
 
3. Main functions of CorrTest measurement and control software
	
 
Steady state polarization: Open circuit Potential measurement (OCP), constant potential polarization (I-t curve), constant current polarization, Dynamic potential scanning (TAFEL curve), dynamic current scanning (DGP), potential scanning - step
	
 
	
Transient polarization: Arbitrary constant potential step wave, arbitrary constant current step wave, constant potential step, constant current step
	
 
	
Timing analysis: Chronopotentiometry (CP), Chronogalvanometry (CA), Chronocoulometry (CC)
	
 
	
Voltammetry analysis: Linear sweep voltammetry (LSV), linear cyclic voltammetry (CV), step cyclic voltammetry (SCV), square wave voltammetry (SWV), Differential pulse voltammetry (DPV), conventional pulse voltammetry (NPV), conventional differential pulse Voltammetry (DNPV) #, differential pulse current detection (DPA), double differential pulse current detection Method (DDPA), three-pulse Current Detection method (TPA), Integrated Pulse Current detection method (IPAD), AC voltammetry (ACV) ", second harmonic AC voltammetry (SHACV), Fourier transform AC voltammetry (FTACV) [numbered methods include the corresponding dissolution voltammetry analysis method]
	
 
Ac impedance: Electrochemical impedance (EIS) ~ frequency scanning, electrochemical impedance (EIS) ~ time scanning, electrochemical impedance (EIS) ~ potential scanning (Mott-Schottky curve), constant current impedance testing
Battery test: Battery charging and discharging test, constant current charging and discharging, constant current intermittent titration GITT, constant potential intermittent titration PITT
	
 
Extended measurement: Electrochemical noise (EN), galvanic corrosion measurement (ZRA), electrochemical dissolution/deposition, Controlled potential electrolysis Coulometry (BE), solution resistance measurement, cyclic polarization curve
	
 
| 
				 Functional approaches  | 
			
				 CS300M  | 
			
				 CS310M  | 
			
				 CS350M  | 
		|
| 
				 
					 Steady-state polarization  | 
			
				 Open circuit potential measurement (OCP)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		
| 
				 Constant potential polarization (i-t curve)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Constant current polarization  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Potentiodynamic scanning (TAFEL curve)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Dynamic current scanning (DGP)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Potential sweep - Step  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 
 
					 Transient polarization 
 
  | 
			
				 Arbitrary constant potential step wave  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		
| 
				 Arbitrary constant current step wave  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Constant potential step (VSTEP)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Constant current step (ISTEP)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Timing analysis  | 
			
				 Chronopotentiometry (CP)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		
| 
				 Chronoamperometry (CA)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Chronoelectric Method (CC)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Voltammetric analysis  | 
			
				 Linear sweep voltammetry (LSV) #  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		
| 
				 Linear cyclic voltammetry (CV)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Step cycle voltammetry (SCV) #  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Square wave voltammetry (SWV) #  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Differential pulse voltammetry (DPV) #  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Conventional pulse voltammetry (NPV) #  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Conventional differential pulse voltammetry (DNPV) #  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Differential Pulse Current Detection (DPA)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Dual Differential Pulse Current Detection (DDPA)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Three-pulse Current Detection (TPA)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Integrated Pulse Current Detection (IPAD)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Ac voltammetry (ACV) #  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Second harmonic AC voltamperes (SHACV)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Fourier transform alternating current voltammetry (FTACV)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Dissolution voltamperes  | 
			
				 Potential stripping analysis (PSA)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		
| 
				 Linear sweep stripping voltammetry (LSSV)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Stepped stripping voltammetry (SCSV)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Square wave stripping voltamere (SWSV)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Differential pulse stripping voltammetry (DPSV)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Conventional pulse stripping voltammetry (NPSV)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Differential conventional pulse stripping voltammetry (DNPSV)  | 
			
				 ·  | 
			
				 
  | 
			
				 ·  | 
		|
| 
				 Alternating-current impedance  | 
			
				 Electrochemical impedance (EIS) ~ frequency scanning  | 
			
				 
  | 
			
				 ·  | 
			
				 ·  | 
		
| 
				 Electrochemical impedance (EIS) ~ time scanning  | 
			
				 
  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Electrochemical negative reactance (EIS) ~ potential scanning  | 
			
				 
  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Constant current impedance test  | 
			
				 
  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Battery testing  | 
			
				 Battery charging and discharging test  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		
| 
				 Constant current Charge and Discharge (GCD)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Potentiostatic intermittent titration technique (PITT)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Constant current Intermittent titration Technique (GITT)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Biconstant measurement  | 
			
				 Hydrogen diffusion test (HDT)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		
| 
				 Disk ring electrode test  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Extended measurement  | 
			
				 Electrochemical noise (EN)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		
| 
				 Galvanic Corrosion Measurement (ZRA)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Controlled Potential Electrolysis Coulomb (BE)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Potentiodynamic reactivation (EPR)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Solution resistance measurement  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
| 
				 Cyclic polarization curve (CPP)  | 
			
				 ·  | 
			
				 ·  | 
			
				 ·  | 
		|
	
	
 
Contact: Jason Wang
Phone: 13580725992
E-mail: sales@aooser.com
Whatsapp:13580725992
Add: No.429 Guangming Road, Shenzhen City, Guangdong Province
We chat