Products

Fujitsu Develops and Tests State-of-the-Art 40 Gbps Optical Transponder

“By including circuit-level simulation results in our Simulink models we can simulate millions of cycles with the accuracy needed to account for noise and other transient effects. Simulink is the only tool fast enough for our jitter-tolerance simulations.” —William Walker, Fujitsu Laboratories of America

Novartis Accelerates Model Development Process with MathWorks Tools

"Having a single, widely used package in our industry that has many capabilities for solving ordinary differential equations as well as optimization and statistical capabilities is quite valuable. That is why we use MathWorks tools." - Anna Georgieva, Novartis

Instrument Control Toolbox

Control and communicate with test and measurement instruments

instrument-control-toolbox- 384 wm ic mainpage w 7438
Typical test setup showing Instrument Control Toolbox controlling and communicating with a power supply and oscilloscope. Resulting data is read into MATLAB for analysis and visualization.

 

Instrument Control Toolbox™ lets you connect MATLAB® directly to instruments such as oscilloscopes, function generators, signal analyzers, power supplies, and analytical instruments. The toolbox connects to your instruments via instrument drivers such as IVI and VXIplug&play, or via text-based SCPI commands over commonly used communication protocols such as GPIB, VISA, TCP/IP, and UDP. You can also control and acquire data from your test equipment without writing code.

With Instrument Control Toolbox, you can generate data in MATLAB to send out to an instrument, or read data into MATLAB for analysis and visualization. You can automate tests, verify hardware designs, and build test systems based on LXI, PXI, and AXIe standards.

For remote communication with other computers and devices from MATLAB, the toolbox provides built-in support for TCP/IP, UDP, and Bluetooth® serial protocols.

Description