NI MULTISIM - An Introduction to Electronics Workbench Staff In-charge Dr. R N Ponnalagu Dr. Karum Chappanda 7-Aug-19 Teaching Assistants: Madhusudan B Kulkarni, Samit Kumar Ghosh and Sharda Sharma ELECTRONICS & INSTRUMENTATION LAB II B.TECH II SEMESTER 2019-20
Outline Introduction Parameters Tool Box Virtual Vs Real Components Application Areas Introduction NI Multisim
NI Multisim & Ultiboard is world’s most popular software for learning electronics and having 1,80,000 industrial and academic users. It includes as follows: Multisim simulation and capture Ultiboard PCB layout Multisim MCU Module controller simulation Multisim software integrates powerful SPICE simulation and schematic capture entry into highly intuitive electronics lab on the PC. NI provides software that has become a teaching and learning tool of choice for thousands of educators. Introduction(1/2)
Multisim (Simulation & Capture): Multisim is an intuitive, drag-and-drop schematic capture and simulation program that educators and students can use to create complete circuits containing both analog and digital components. It also adds microcontroller unit co-simulation capabilities, so you can include an MCU, programming in assembly code, within your SPICE-model circuit. Ultiboard ( PCB Layout) : With Ultiboard, students can gain exposure to the physical implementation and manufacturing of circuits on PCBs. Students can import the Multisim schematic into Ultiboard with a single mouse click. Introduction(2/2)
NI Multisim Integrated with NI LabVIEW
Outline Introduction Parameters Tool Box Virtual Vs Real Components Application Areas Parameters
Multisim- Schematics: Easy-to-use schematics, simple click and drag, 3D animated parts and wire drag without breaking connections. Multisim- Virtual Breadboard: Breadboard techniques, synchronized with schematic and Wiring report for NI ELVIS (step 5) Multisim- Simulation: 13,000+part library, 22+ NI ELVIS Virtual instruments, Microcontroller simulation. Ultiboard- PCB Layout: Integrated with Multisim, Flexible interface, 3D view, Design rule check and Built-in auto routing. NI ELVIS- Test: Instrumentation, Data acquisition and prototyping LabVIEW- Compare: Automatically import like Multisim virtual data and NI ELVIS measured data. Compare ideal and real data. Parameters
Outline Introduction Parameters Tool Box Virtual Vs Real Components Application Areas Tool Box
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Outline Introduction Parameters Tool Box Virtual Vs Real Components Application Areas Virtual Components Vs. Real Components
Virtual vs. Real Components Real components have a specific value that cannot be changed and a footprint used for circuit board layout. Virtual components are for simulation only. For our purposes, there is almost no difference between the component types.
Outline Introduction Parameters Tool Box Virtual Vs Real Components Application Areas Multisim Application Areas
Acquiring Data and Process Signals: Measure any sensor, perform advanced analysis, display data and custom user interfaces. Automating Test and Validation Systems: Automate the validation and control multiple instruments. Academic Teaching: Apply an interactive, hands-on approach to learning, combine algorithm design with real time data measurements. Instrument Control: Automated data collection, analyze and display signals. Embedded Monitoring and Control Systems: Reuse ASCII C and HDL code, prototype with FPGA technology. Multisim Application Areas