Description
Gamry’s multichannel potentiostat systems combine multiple research-grade instruments into a single, flexible system. This flexibility gives you the ability to run each channel separately, in groups, or all at once. Contact us to find out what options are available.
Applications include:
- Coatings Analysis
- Microbial Fuel Cells
- Large Scale Supercapacitor and Battery Evaluation
- Continuous Corrosion Monitoring
- Monitoring Electrode Arrays
- Sensor Arrays
- Combinatorial Testing
Multichannel Potentiostat Overview
The multichannel potentiostat combines up to eight Gamry potentiostats into a single system. Our flexibility allows you to pick and choose how you want your multichannel system configured all without having to sacrifice chassis slots for EIS, low-current, or high-current modules.
Perhaps you want the value of eight Interface 1010’s combined with the high performance of a Reference 3000 connected to a Reference 30K Booster. Each channel of a multichannel system has the same capabilities as a single research-grade instrument, but at a greatly discounted cost-per-channel—there is no sacrifice in performance to gain higher experimental throughput.
Note that the Accuracy Contour Plot shown here is the same for each channel in an eight-channel Interface system.
Applications
Gamry’s full line of application software is available for all multichannel systems. Using the flexibility of the Gamry software, each channel can be run both independently and simultaneously. Any experiment can be run on any channel, regardless of which experiments are running on other channels.
Multichannel systems are ideal for any application that benefits from higher throughput.
- Coatings Analysis
- Microbial Fuel Cells
- Large Scale Supercapacitor and Battery Evaluation
- Continuous Corrosion Monitoring
- Monitoring Electrode Arrays
- Sensor Arrays
- Combinatorial Testing
Regardless of the application, a Gamry multichannel potentisotat system gives you the ability to independently and simultaneously control experiments across multiple electrochemical cells.
Power Hub Specifications
USB INPUT |
|
Speed | USB High Speed |
Specification Compliance | USB 2.0 |
Max Input Current | 100 mA |
INSTRUMENT USB PORTS |
|
Speed | USB High Speed |
Specification Compliance | USB 2.0 |
Typical Power Supply Current | <10 mA |
Max Power Supply Current | 50 mA |
EXPANSION USB PORTS |
|
Expansion USB Ports | USB High Speed |
Specification Compliance | USB 2.0 |
Max Power Supply Current (both ports) (assuming 10 mA/instrument) | 420 mA |
ENVIRONMENTAL |
|
Operating Temperature Range | 0 to 45°C |
Relative Humidity | 90 (non-condensing)% |
Storage and Shipping Temperature | -40 to 75°C |
Maximum Shipping acceleration | 30 G |
GENERAL |
|
AC Line Input Voltage | 90 – 264 volts |
Power | 700 W |
Dimensions | 24 x 27 x 6 cm |
Weight | 2.0 kg |