semiconductors, communications and electronics webinar series -凯发k8网页登录

semiconductors, communications, and electronics webinar series

matlab, simulink, and polyspace are used by engineers working on semiconductors, communications and electronics in a variety of ways, from algorithm and system design, to implementation, verification, manufacturing, characterization and validation. this series of webinars will illustrate some of their most exciting capabilities.

upcoming events

date webinar title register 
16 may 2023 rf design of wideband mmwave beamforming systems 
17 may 2023 power electronics control design using active disturbance rejection controllers (adrc)
24 may 2023 radar systems engineering and data synthesis in matlab 
25 may 2023 using matlab with python
31 may 2023 satellite scenario modeling and satcom link simulation in matlab
1 june 2023 accelerate software innovation through target-optimized code generation and virtual prototypes
21 june 2023 serdes design and signal integrity analysis of usb4 v2.0 with matlab

past events

category webinar title link
matlab/simulink platforms introduction to matlab

21 matlab features you need now
  15 simulink features you need now
  modeling and simulation of battery systems with simulink
wireless communications beamforming for mu-mimo in 5g new radio
  o-ran modeling and simulation with matlab
  ai for wireless communications
  bluetooth modeling in matlab
  5g design: from waveform generation to hardware implementation and verification
  wireless positioning and localization design with matlab
  what is new with wi-fi and wlan design in matlab
  automated remote testing of 5g mmwave rf systems with xilinx rfsoc
  5g nr hdl cell search and mib recovery reference application  watch
  model, simulate, and test 5g nr phy in matlab
  array design and beamforming for wireless mimo systems
  high speed data capture with usrp sdr hardware
  wireless over-the-air testing using sdrs
analog, mixed-signal, and rf mixed-signal circuit design and analysis with matlab  watch
  radar system engineering: from requirements to deployment
  rf propagation, ray tracing and wireless scenario modeling in matlab  watch
  rf power amplifier behavioral modeling using matlab
  three steps to simulate rf transceivers in matlab
  design optimization of miniaturized antennas  watch
  modeling and simulating otava mmwave beamformer ic
software development and testing cybersecurity for your c and c embedded software with advanced static code analysis
  shift left to optimize your software development and devops workflows
  hardware-aware, model-based software development to speed up embedded designs
  position control of a pmsm with simulink and microchip 32-bit mcus 
  effective ways to debug and enhance the quality of your embedded software using polyspace static analysis solutions
artificial intelligence introduction to ai with matlab
  artificial intelligence: how to upskill and prepare future engineers
  getting started with deep learning for radar systems
  building ai applications for signals and time series data
  deep learning and machine learning for signal processing applications
  signal analysis and feature extraction for ai with wavelets
  predictive maintenance using deep learning
fpga design and verification early fpga/soc design verification with simulink and the vivado simulator from amd-xilinx
  full-switching electric drive fpga-based hardware-in-the-loop simulation
  implementing field-oriented control for a motor on an fpga
  optimize fpga and asic speed and area using hdl coder
  performing hardware-based verification and testing on fpgas with matlab and simulink
  performing hardware/software co-design for xilinx rfsocs gen3 devices using matlab and simulink
  implementing motor and power electronics control on an fpga-based soc 
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