Advance your Electronics expertise with 9 curated programs covering applied methodologies, analytics, and automation.
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Build a competitive edge with structured learning paths and real implementation support tailored to Electronics adoption.
Develop job-ready Electronics capabilities using real datasets and guided assignments.
Align Electronics proficiency with organizational goals and measurable performance improvements.
Train with industry specialists delivering personalized feedback and implementation support.
Explore instructor-led and hybrid programs aligned to practical Electronics use cases across industries.
Showing 1-9 of 9 courses

Training Course on Advanced Analog Integrated Circuit (IC) Design provides cutting-edge knowledge and practical tools for designing, simulating, and verifying complex analog circuits used in IoT devices, biomedical instruments, telecommunications, and automotive applications.
Training Course on Advanced Analog Integrated Circuit (IC) Design provides cutting-edge knowledge and practical tools for designing, simulating, and verifying complex analog circuits used in IoT devices, biomedical instruments, telecommunications, and automotive applications.

Training Course on Advanced Digital VLSI Design and Verification equips participants with the latest methodologies and industry practices in Very-Large-Scale Integration (VLSI) design, focusing on RTL design, functional verification, timing closure, and design-for-test (DFT) strategies.
Training Course on Advanced Digital VLSI Design and Verification equips participants with the latest methodologies and industry practices in Very-Large-Scale Integration (VLSI) design, focusing on RTL design, functional verification, timing closure, and design-for-test (DFT) strategies.

Training Course on Advanced Printed Circuit Board (PCB) Design and Signal Integrity provides in-depth insights into multi-layer PCB stackups, controlled impedance routing, power integrity, SI/PI simulation, and EMI/EMC considerations, enabling participants to design boards that meet both electrical and mechanical constraints.
Training Course on Advanced Printed Circuit Board (PCB) Design and Signal Integrity provides in-depth insights into multi-layer PCB stackups, controlled impedance routing, power integrity, SI/PI simulation, and EMI/EMC considerations, enabling participants to design boards that meet both electrical and mechanical constraints.

Training Course on EMI/EMC Design and Troubleshooting integrates practical design strategies, regulatory insights, and troubleshooting techniques to minimize EMI and ensure seamless operation in complex electronic environments.
Training Course on EMI/EMC Design and Troubleshooting integrates practical design strategies, regulatory insights, and troubleshooting techniques to minimize EMI and ensure seamless operation in complex electronic environments.

Training Course on Field-Programmable Gate Array (FPGA) Design and High-Level Synthesis (HLS) combines traditional RTL design methods (using VHDL/Verilog) with modern high-level synthesis (HLS) using tools like Xilinx Vitis HLS and Intel HLS Compiler, enabling rapid design cycles from C/C++ to FPGA logic.
Training Course on Field-Programmable Gate Array (FPGA) Design and High-Level Synthesis (HLS) combines traditional RTL design methods (using VHDL/Verilog) with modern high-level synthesis (HLS) using tools like Xilinx Vitis HLS and Intel HLS Compiler, enabling rapid design cycles from C/C++ to FPGA logic.

Training Course on Integrated Circuit Packaging and Reliability provides a comprehensive deep dive into the cutting-edge technologies and advanced methodologies required to design, manufacture, and ensure the long-term reliability of IC packages for diverse applications, from AI accelerators to automotive electronics.
Training Course on Integrated Circuit Packaging and Reliability provides a comprehensive deep dive into the cutting-edge technologies and advanced methodologies required to design, manufacture, and ensure the long-term reliability of IC packages for diverse applications, from AI accelerators to automotive electronics.

Training Course on Mixed-Signal IC Design Techniques is designed to bridge the gap between analog and digital domains, focusing on ADC/DAC design, PLLs, data converters, clock management, and signal conditioning, essential for modern SoC (System-on-Chip) implementations.
Training Course on Mixed-Signal IC Design Techniques is designed to bridge the gap between analog and digital domains, focusing on ADC/DAC design, PLLs, data converters, clock management, and signal conditioning, essential for modern SoC (System-on-Chip) implementations.

Training Course on RF and Microwave Circuit Design for 5G/6Gprovides hands-on training in the design, simulation, and validation of RF front-end modules, power amplifiers, mixers, filters, oscillators, and antennas using industry-standard tools such as Keysight ADS, HFSS, and MATLAB RF Toolbox.
Training Course on RF and Microwave Circuit Design for 5G/6Gprovides hands-on training in the design, simulation, and validation of RF front-end modules, power amplifiers, mixers, filters, oscillators, and antennas using industry-standard tools such as Keysight ADS, HFSS, and MATLAB RF Toolbox.
Training Course on Semiconductor Device Physics and Fabrication offers a deep and structured understanding of the principles, physics, and manufacturing technologies behind modern semiconductor devices.
Training Course on Semiconductor Device Physics and Fabrication offers a deep and structured understanding of the principles, physics, and manufacturing technologies behind modern semiconductor devices.
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1+ specialized courses ready to deliver.
1+ specialized courses ready to deliver.
1+ specialized courses ready to deliver.
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