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2022-09-23 17:35:14
VSC7120QJ
VSC7120QJ_VITESSE 21+ BGA Guide
One of the key factors in this improvement is the use of high-performance Micro-Electro-Mechanical Systems (MEMS) sensors. Drones are on fire again! Whether it is drones spraying disinfectant, drone distribution, or even drones "calling" wearing masks, they have entered a wider range of real life, allowing the public to have A new understanding, rather than a relatively simple "toy" in the traditional concept.
VSC7120QJ_VITESSE 21+ BGA
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ADI's new high power switches using silicon technology provide RF designers and system architects the flexibility to increase the complexity of their systems without making the RF front end a bottleneck in their designs. ADI's new high-power switches using silicon technology were developed to simplify RF front-end design, eliminating the need for peripheral circuits and reducing power consumption to negligible levels.
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However, as the number of parallel transceiver channels increases, so does the complexity and power consumption of peripheral circuits. MIMO architectures allow for relaxing RF power requirements on building blocks such as amplifiers and switches.
VSC7120QJ_VITESSE 21+ BGA
VITESSE 21+ QFP
ADI provides a more accurate and safer lithium battery monitoring solution, which not only improves the reliability and safety of the system, but also brings longer cruising range to the vehicle. Lithium-ion batteries are a common energy storage method for electric and hybrid vehicles.
ADI's new high-power silicon switches are better suited for massive MIMO designs. They operate from a single 5 V supply with less than 1 mA of bias current and require no external components or interface circuitry.
In this regard, Cai Zhenyu gave an example, ADI can work with customers to face the swing of power lines under strong wind, the inclination of power towers on hillsides, and the temperature monitoring of substation cabinets through solutions such as MEMS IMU and integrated temperature measurement products. The smart grid system realizes real-time monitoring and predictive maintenance, and comprehensively promotes the new infrastructure energy innovation model and ecological industry construction.
Multiple-input, multiple-output (MIMO) transceiver architectures are widely used in the design of high-power RF wireless communication systems. As a step into the 5G era, massive MIMO systems covering cellular frequency bands are currently being deployed in urban areas to meet emerging user demands for high data throughput and a range of new services.
VSC7120QJ_VITESSE 21+ BGA
In addition, ADI will increase the frequency of the new design and will lead a similar solution for mmWave 5G systems. .
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