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WaveNow Wireless Electrochemical Workstation

Part Number
AFTP4

This newest addition to our WaveNow® electrochemical workstation series lets you enjoy the freedom of controlling your electrochemical experiments wirelessly! The WaveNow Wireless electrochemical workstation is a potentiostat/galvanostat that gives you portability and access to remote lab spaces without creating a cabling problem. This is the perfect system for use in a glovebox – simply put the entire instrument into the glovebox along with your electrochemical cell and conduct your air-sensitive voltammetry experiments from any nearby computer. Under the control of our powerful AfterMath Blue® software package, the WaveNow Wireless is capable of performing a wide variety of popular DC electroanalytical techniques. Start enjoying the benefits of wireless control today!

Related Product Bundles

This product is available in related bundles. View related bundles in the tab below.

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This newest addition to our WaveNow® electrochemical workstation series lets you enjoy the freedom of controlling your electrochemical experiments wirelessly! The WaveNow Wireless electrochemical workstation is a potentiostat/galvanostat that gives you portability and access to remote lab spaces without creating a cabling problem. This is the perfect system for use in a glovebox – simply put the entire instrument into the glovebox along with your electrochemical cell and conduct your air-sensitive voltammetry experiments from any nearby computer. Under the control of our powerful AfterMath Blue® software package, the WaveNow Wireless is capable of performing a wide variety of popular DC electroanalytical techniques. Start enjoying the benefits of wireless control today!

Related Bundles
Specifications
References
Documents
The WaveNow Wireless Electrochemical Workstation is available as part of a product bundle. A product bundle is a combination of products that are compatible and often sold together for convenience and confidence. Below is a list of product bundles that contain WaveNow Wireless Electrochemical Workstation.
Basic System Bundle (No Additional Products Included)
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Bundle Name
Bundle Part #
WaveNow Wireless System Bundle
[WNW-BASIC]
Bundled with MSR evo Electrode Rotator and RDE Electrode
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Bundle Name
Bundle Part #
Complete RDE System Bundle: WaveNow Wireless, MSR evo, E5 Series RDE
[WNW-MSR-RDE-E5]
Complete RDE System Bundle: WaveNow Wireless, MSR evo, E5TQ Series RDE
[WNW-MSR-RDE-E5TQ]
Bundled with WaveVortex 10 Electrode Rotator and RDE Electrode
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Bundle Name
Bundle Part #
WaveVortex 10 Electrode Rotator with WaveNow Wireless Electrochemical Workstation
Complete RDE System Bundle: WaveNow Wireless, WaveVortex 10, E5 Series RDE
[WNW-WV10-RDE-E5]
WaveVortex 10 Electrode Rotator with WaveNow Wireless Electrochemical Workstation
Complete RDE System Bundle: WaveNow Wireless, WaveVortex 10, E5TQ Series RDE
[WNW-WV10-RDE-E5TQ]
Bundled with Honeycomb Cell and UV/Vis Instrumentation
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Bundle Name
Bundle Part #
WaveNow Wireless Spectroelectrochemistry System Bundle
[WNW-SPEC]
Electrochemical Workstations
Electrode Connections
Reference electrode
Sense line with driven shield
Counter electrode
Drive line with grounded shield
Working electrode channels
Working electrode #1 (WK1)
Separate sense and drive lines, each with driven shield (current measurement via passive shunt)
Working electrode #2 (WK2)
N/A
Ground Connections
DC common (signal)
The DC Common is isolated from the USB port, the instrument chassis, and earth ground. The DC Common is accessible via the Control Port on the back panel.
Chassis terminal
The instrument chassis terminal is accessible via a banana binding post (metal) on the back panel. The GRAY banana plug on the cell cable also provides a chassis connection.
Earth
No direct connection to earth ground is provided.
Measured Current (Potentiostatic Mode)
Current ranges (measured)
±150 mA, ±5 mA, ±150 µA, ±5 µA, ±150 nA, ±5 nA
Current resolution at each range (measured)
4.7 µA, 157 nA, 4.7 pA, 157 fA, 4.7 nA, 157 pA
Autoranging
Yes
Practical current range
40 fA to 1.5 mA
DC accuracy (current, measured)
±0.2% of setting plus ±0.05% of upper five current ranges; ±0.5% of 50 pA range with ±1 pA offset
DC leakage current
< 20 fA at 0 VDC, < 130 fA at 5 VDC
AC accuracy (measured)
N/A
AC leakage current
N/A
ADC input
16 bits
Filters (for DC Experiments)
1 kHz, 12 Hz
Applied Current (Galvanostatic Mode)
Current ranges (applied)
±5 mA, ±150 µA, ±5 µA, ±150 mA, ±150 nA, ±5 nA
Current resolution at each range (applied)
4.7 µA, 157 nA, 4.7 pA, 157 fA, 4.7 nA, 157 pA
DC accuracy (current, applied)
±0.2% of setting; ±0.05% of range
DAC output (current)
16 bits
Power Amplifier (Counter Electrode Amplifier)
Output current
±150 mA (maximum)
Short circuit current limit
all ranges: 160 mA
Compliance voltage
>±11 V
Bandwidth
>30 kHz (on fastest speed setting)
Noise and ripple
undetermined
Slew rate/rise time
800 V/ms (galvanostatic mode, on fastest speed setting), 180 V/ms (on fastest speed setting)
Electrometer (Reference Electrode Amplifier)
Input impedance
>10¹³ in parallel with <10 pF
Input current
6 fA leakage/bias current typical, <100 fA max at 25°C
CMRR
>73 dB, 0 - 100 Hz, >60 dB ≤1 kHz, >39 dB ≤10 kHz
Electrometer bandwidth
> 800 kHz (3 dB)
Measured Potential
Potential ranges (measured)
±8 V
Potential resolution at each range (measured)
250 µV per ADC bit
DC accuracy (potential, measured)
±0.2% of setting; ±0.05% of range
ADC output
16 bits
Filters (for DC Experiments)
1 kHz, 12 Hz
Applied Potential (Potentiostatic Mode)
Potential ranges (applied)
±8 V
Potential resolution at each range (applied)
250 µV per DAC bit
DC accuracy (potential, applied)
±0.2% of setting; ±0.05% of range
DAC output (potential)
16 bits
CV sweep rate (minimum)
10 µV/s
CV sweep rate (maximum)
10 V/s
Data Acquisition (for DC Experiments)
Clock resolution
500 ns (minimum time base)
Point interval
1 ms (minimum)
Synchronization
Simultaneous current and potential input
Raw point total
<10 million per experiment
Electrochemical Impedance Spectroscopy (EIS)
EIS capable
EIS frequency range
N/A
EIS frequency resolution
N/A
EIS frequency stability
N/A
Modes
N/A
Voltage excitation setpoint
N/A
Current excitation setpoint
N/A
Frequency sweeping
N/A
EIS accuracy
N/A
Rotator Control Connections
Rotator connector A
N/A
Rotator connector B
4-pin connector includes chassis ground, rotator enable output signal (+15 V tolerant), analog signal ground (DC Common), and analog rotation rate control output signal
Rate control signal
±10 V
Digital enable signal
Open drain with 4.7 kΩ pull up to +4 V (TTL compatible), open drain (TTL compatible)
Accessories
Dummy cell
External dummy cell included
Cell cable
HD-15 male connector to multiple banana plugs via shielded coaxial cables (included)
Auxiliary Connections
Connector C
N/A
Trigger input
N/A
Trigger output
N/A
Potential (E1) output
N/A
Current (I1) output
N/A
Potential (E2) output
N/A
Current (I2) output
N/A
Auxiliary analog input
N/A
Auxiliary analog output
N/A
WK1 input
N/A
WK2 input
N/A
General
Power input
5.0 VDC, 2 A (low voltage DC device)
Power supply input
100 to 240 VAC, 0.5 A, 50 to 60 Hz
Power supply output
5 VDC, 2.0 A Power supply (included) has a C14 type input connector
Power cord
Various international cables sold separately (C13 type)
LED indicators
Power, USB/wireless connection, status, and overload
Instrument dimensions
55 × 170 × 130 mm (2.17 × 6.69 × 5.12 in)
Workstation shipping dimensions
305 × 254 × 102 mm (12 × 10 × 4 in)
Instrument weight
0.6 kg (1.25 lb)
Workstation shipping weight
1.8 kg (4 lb)
Temperature range
10°C - 40°C
Humidity range
80% RH maximum, non-condensing
Workstation modes
Potentiostat (POT), Galvanostat (GAL), Open-Circuit Potential (OCP), Zero-Resistance Ammeter (ZRA)
Communication
Interface
Wireless capable
When possible, we add published articles, theses and dissertations, and books to our references library. When we know this product has been used, we will include it in this list below. If you have a reference where our product was used and it's not in this list, please contact us with the details and we will add it.
  1. O’Donnell et al. Metastability and Photoelectrochemical Properties of Cu2SnO3 and Cu2–xLixTiO3: Two Cu(I)-Based Oxides with Delafossite Structures. Chemistry of Materials, 2023, 35, 1404-1416.
Document #
Title
Type
Download
DRU10249
WaveNow/WavePico Wireless Electrochemical Workstation User Guide