Tired of complex workstation interfaces? Search for various help files to learn how to control instrument operation and understand instrument working status? Phone help, WeChat video help to find software function modules and tool menus?
PHXTEC NextLab AA Workstation, revolutionize your atomic absorption workflow management from now on! A newly designed instrument workstation with a more flexible human-machine interface, based on workflow design, reflecting design details everywhere.
AA68Flame graphite furnace atomic absorption spectrometerContinuous innovation:
Newly designed instrument hardware
>Industrial design of instrument appearance, more in line with industry trends
>The main control board adopts faster ARM chips and richer peripheral interfaces
Comprehensively improved performance indicators
>Enhanced background correction deduction firmware algorithm for more reliable background subtraction
>Adopting a new atomization system, the detection limit of the instrument has been doubled
>More precise wavelength correction, with wavelength repeatability increased to 0.05nm
>Intelligent peak locking technology to avoid interference from adjacent wavelengths
Newly designed instrument workstation
>A human-machine interface that better fits the usage habits of contemporary users
>Rich functional modules, user customized page layout
>Fully enhanced automation operation, one click task creation
Fully supported instrument cloud
>Cloud platform push recommendation analysis method and case study
>Check the operating status of the instrument anytime, anywhere
>Remote diagnosis assists in controlling and quickly resolving issues
>Regularly push upgrades and experience the latest features of the instrument in a timely manner
AA68Flame graphite furnace atomic absorption spectrometerAdvantage:
>A safe and reliable flame system that automatically shuts down in case of abnormal conditions to prevent backfire
>Efficient atomization system enhances sensitivity
>Integrated floating optical path design ensures the stability of the optical system
>Accurate dual background deduction method
>Compact modular design, smaller in size compared to similar instruments
>Switching between flame and graphite furnace within seconds
>Excellent high-precision automatic sampling technology for graphite furnaces
>Stable and reliable graphite furnace atomization system with more precise temperature control
>High sensitivity flame sensor to eliminate interference from external light
>The simple lifting platform structure makes it easier for users to adjust
>Adopting stainless steel atomization cylinder, with strong corrosion resistance
>ATOMView Graphite Furnace Visualization System, Image Dynamic Detection Technology
>Flexible online dilution system can greatly simplify analysis operations
safety measures
>Identifying flames through temperature eliminates interference from external light on the sensor, improving the reliability of flame recognition
>Computer controlled automatic ignition ensures that ignition can only be carried out under the premise of safety
>When the flame stalls abnormally, it will automatically sound an alarm and cut off the gas supply
>Air pressure sensor, automatically alarms when the air pressure is insufficient
>Insert the burner into the interlocking device to ensure safe operation
>Power interruption, automatic cut-off of gas
NextLab AA Instrument Workstation
>Full floating window, users can freely adjust the functional modules, and freely close or restore the default layout
>The dual layer data architecture is secure and reliable, with all operation records and data methods traceable and traceable
>Can execute custom multi condition historical data statistics, making it easy for users to query and compare analysis
>Support task reservation function, one click task creation sequence running
>Up to eight calibration equations, call new equations at any time to reprocess data
>Multiple data report templates, customizable user templates can be downloaded and updated online
>Workstation memory function, automatically restores to the current user interface after logging in, adapting to the operating habits of different personnel
Specifications