Address
No. 29, Lieu Giai Street, Ba Dinh District, Hanoi City
Work Hours
Monday to Friday: 9AM - 5PM
Weekend: 10AM - 5PM
Address
No. 29, Lieu Giai Street, Ba Dinh District, Hanoi City
Work Hours
Monday to Friday: 9AM - 5PM
Weekend: 10AM - 5PM
Các bạn đã có kinh nghiệm thiết kế PCB, nhưng cần kỹ năng nâng cao hơn để có thể bắt đầu thiết kế với các ứng dụng RF, Highspeed.
| Lecture ID | Contents | Outputs |
| Lecture 1 | R, L, C & PCB Characteristics | Master how R, L, C components and PCB materials impact high-frequency designs. Learn to select the optimal components for specific hardware requirements. |
| Lecture 2 | RF Fundamentals & Frequency Management | Understand essential RF terminology and the physical meaning of Maxwell’s Equations. Explore RF wave generation and global frequency band management. |
| Lecture 3 | ADS & CST Practical Training | Gain hands-on experience with industry-standard RF design tools. Learn to configure and use distributed libraries (Murata, Johanson, etc.) within the design environment. |
| Lecture 4 | Wireless Communication Architecture | Explore common wireless system architectures. Analyze the impact of LO and PLL on system performance and establish a theoretical foundation for deep-dive modules. |
| Lecture 5 | [Transceiver] Nonlinear Models & RF Mixers | Deep dive into nonlinear circuit modeling. Understand RF Mixer architectures, their internal workings, and how they function within a transceiver chain. |
| Lecture 6 | [Transceiver] Modulation & Demodulation | Comprehensive study of modulation methods. Visualize the signal flow from LO and Mixer to Modulation, analyzing inter-component dependencies. |
| Lecture 7 | ADC/DAC & Transmission Line EM Modeling | Master critical ADC/DAC specifications for proper application selection. Practice Electromagnetic (EM) modeling to analyze Transmission Line effects on signal integrity. |
| Lecture 8 | [Transceiver] PA, LNA & Antenna | Evaluate key specifications for Power Amplifiers (PA), Low Noise Amplifiers (LNA), and Antennas. Understand their collective impact on communication link budgets. |
| Lecture 9 | Inverted-F Antenna (IFA) Design & VNA/VSA | Understand antenna physics and practice designing an Inverted-F Antenna (popular in IoT). Correlate system-level knowledge with VNA/VSA measurement techniques. |
| Lecture 10 | Impedance Matching, Smith Chart & S-Params | Master matching theory and the necessity of impedance transformation. Learn to represent RF impedance on the Smith Chart and verify designs using S-Parameters. |
| Lecture 11 | Matching Methods & Antenna Tuning Practice | Explore various matching topologies and troubleshooting techniques for mismatch issues. Practical session: Tune the matching network for your designed antenna. |
| Lecture 12 | SI Basics & High-Speed EM Modeling | Analyze Signal Integrity (SI) in both Time and Frequency domains. Learn to verify and tune layouts to meet stringent high-speed design requirements. |
| Lecture 13 | EMI, EMC, EMS & ESD Protection | Understand the generation of Electromagnetic Interference (EMI) and implement effective mitigation strategies for EMC/EMS compliance and ESD protection. |
| Lecture 14 | Final Capstone Project | Practical Verification: 1. Match ADRV9009 (Analog Devices) non-50Ω ports to 50Ω RF ports. 2. Validate a 3 GHz high-speed layout. 3. Design and match an Inverted-F antenna from scratch. |