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  • Fiber Optic Sensor Development in Congo

    Fiber Optic Sensor Development in Congo

    Genew Technologies and Zhongshi Wosen, both Chinese companies, will help the Democratic Republic of Congo (DRC) build its fiber optic network. pics) The Democratic Republic of the Congo's. On April 7, 2025, in Kinshasa, the Minister of Posts, Telecommunications, and Digital Affairs, Augustin Kibassa Maliba, signed a memorandum of understanding with two Chinese companies, Genew and Zhongshi Wosen. This project will form the foundation for the digital transformation in DRC.


  • Guinea Tower Communications Development Department

    Guinea Tower Communications Development Department

    Telecommunications in Guinea include radio, television, fixed and mobile radio, and the Internet. The people of Guinea are among the poorest in West Africa and this reality is reflected in the development of the country's telecommunications environment. Radio is the most important source of information for the public in Guinea, and the only one to reach the entire country. There is a single government-owned radio network, a growing number of private radio stations, and on.


  • Development of Fiber Bragg Grating Demodulators

    Development of Fiber Bragg Grating Demodulators

    Fiber Bragg gratings (FBGs) are widely used as sensors for temperature, strain, and vibration measurement. Their most important advantage is signal modulation consisting in shifting the spectrum in the wavelength domain. Determining the wavelength shift is the most important issue in precise measurements of. This paper introduces the design principle of high-speed optical fiber grating demodulator based on scanning laser source, elaborated on high-speed fiber Bragg grating demodulation system principle. By changing the step size of each calculation.


  • PCB optical module printed circuit board

    PCB optical module printed circuit board

    Optical Module PCB refers to the printed circuit board (PCB) used within optical modules. It serves to mount components such as optoelectronic chips, driver circuits, and control chips, enabling high-speed signal transmission, electro-optical/optical-electrical conversion, and. The Printed Circuit Board (PCB) at the heart of these modules is no longer a simple substrate but a highly engineered system. This concept bridges electronics and photonics into one platform. Traditional PCB vs Optical PCB: Traditional PCBs use copper traces to carry electrical. The optical PCB incorporates an optical data transmission layer in its design, achieving higher transfer rates than the traditional board that relies on conductive materials. With the increasing demand for massive parallel data computation in AI large-scale model training and inference, the world is facing greater demands for network bandwidth. Traditional circuit boards hit physical limits as global data traffic grows 25% annually.

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