Spectrum Analyzer Q2
Spectrum analyzer for multiple SDR platforms (PyQtGraph based GUI for soapy_power, hackrf_sweep, rtl_power, rx_power and other backends).
Read More
Spectrum analyzer for multiple SDR platforms (PyQtGraph based GUI for soapy_power, hackrf_sweep, rtl_power, rx_power and other backends).
Read More
Fiber Optic Desktop Insertion Loss& Return Loss Test Machine with color screen has stable and reliable performance, which integrates stable light source, high-precision power meter, insertion loss meter and return loss meter into one multifunction instrument. Desktop IL&RL tester can be widely used for OEM device verification, research institutions R&D and construction maintenance in optical fiber/passive devices/optical communication system industries where demand plug loss, return loss and stability measurement The CL series fiber microscope utilizes. Insertion loss and Return loss are widely used terms in the field of electro-magnetics. These parameters plays an important role in designing and development of high-speed systems.
Read More
The AQ6317C Optical Spectrum Analyzer more than meets the latest needs, with its new waveform analysis function, S-, C- and L-band coverage, superior wavelength accuracy throughout the measurement range, faster measurement speeds in high-sensitivity mode and capability to improve. In conjunction with the AQ8423A/8423B optical amplifi-er analyzer, the system can accurately measure gain and NF with the pulse method, which is optimum for evaluation esolution: 0. Wavelength Range is from 600 to 1750 nm with a Dynamic Range of 60 dB and an absolute Wavelength Accuracy of. This Manual describes the operating procedures and maintenance of the AQ6317B Optical Spectrum Analyzer.
Read More
This system utilizes Independently developed analysis software to accurately measure critical beam quality parameters, including: M² Factor、Beam Divergence Angle、Focus Diameter、Beam Eaist Position、Rayleigh Length and other essential laser beam characteristics. A beam profiler (beam analyzer, mode profiler) is a diagnostic device for laser beam characterization which can measure the whole optical intensity profile of a laser beam, i. Discover the Total Station Autocollimator — an "all for one and one for all" solution that unites beam profiling, alignment, and optical metrology into a single compact system, replacing a full optical lab and ready for mass-production environments.
Read More
There are two main types of fluorescence spectroscopy: steady-state and time-resolved. The extent of the applications has benefited from the development of the Green Fluorescence Protein (GFP) family that allows for the expression of fluorescent proteins in cells and tissues; a feature that allows the experimenter to follow the whereabouts of proteins in live cells and even tissues. shows the fraction of incident light absorbed by the material over a range of frequencies.
Read More+27 10 247 8396
Unit 7, Summit Place, 21 Summit Rd, Midrand, Johannesburg, 1685, South Africa