LT4275CIDD#PB...

  • 2022-09-23 17:35:14

LT4275CIDD#PBF

LT4275CIDD#PBF_LT4275CIDD#PBF Introduction

The prospect is self-evident, so it has triggered thousands of troops and swarms of heroes. As a global high-performance analog technology provider and a leading semiconductor manufacturer supported by the underlying technology of new infrastructure, ADI has deeply participated in and experienced the innovation and changes actively promoted by many first-tier industry partners under the wave of new infrastructure and the infinite business opportunities created thereby!

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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.

. Because whether it is a camera, millimeter-wave radar, lidar, or satellite navigation and positioning, it will be affected by the external environment. Only the inertial navigation based on IMU can provide continuous, high-precision, high-speed automatic driving systems without being affected by the external environment. Reliable vehicle position, direction, speed and other multi-dimensional information to ensure the safe driving of the vehicle.

As Cai Zhenyu, Director of Industrial Marketing, ADI China, pointed out, "ADI plays an active role in promoting and leading innovation in both the digital economy and new infrastructure.

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In the field of UHV power transmission, it is urgent to solve the problem of safety and stability of energy transmission from power generation to power consumption. The emerging energy Internet of Things is injecting "new kinetic energy" into the traditional power grid, helping to upgrade the power grid to a smart grid.

They operate from a single 5 V supply with less than 1 mA of bias current and require no external components or interface circuitry. ADI's new high-power silicon switches are better suited for massive MIMO designs.

A side-by-side comparison of printed circuit board (PCB) artwork for a PIN diode-based switch and a new silicon switch on a single-layer PCB design. Compared to PIN diode-based switches, silicon switches occupy less than 1/10 the PCB area. It simplifies power requirements and does not require high power resistors.

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. 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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