50 GHz Monolithic Microwave Integrated Circuit for High-Speed Wireless Data Transfer
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Solution Overview
Problem
Current high-speed wireless data transfer systems for data management devices, such as computers and smartphones, face limitations in speed and security, as they cannot transfer large amounts of data quickly and are vulnerable to interception.
Innovation Solution
A high-speed wireless data transfer device utilizing monolithic microwave integrated circuits and mass storage elements to transmit data via microwave radio signals at frequencies above 50 GHz, achieving transfer rates greater than 1 Gigabit per second within a short distance, while ensuring security by requiring close proximity to establish a connection.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Speed
If conventional wireless protocols (Wi-Fi, Bluetooth) are used for data transfer, then device compatibility and ease of operation are maintained, but transfer speed is limited to several gigabytes per minute and security is compromised due to vulnerability to interception
Solution Approach 1:
The patent changes the operating frequency parameter from conventional Wi-Fi/Bluetooth bands to microwave frequencies above 50 GHz, enabling transfer rates exceeding 1 Gigabit per second. This parameter change fundamentally improves data transfer speed while the short-range constraint manages the complexity trade-off
2Reliability
If conventional wireless protocols are used, then long transmission distance is achieved, but security is worsened due to vulnerability to diversion and pirating actions
Solution Approach 1:
The patent uses microwave frequencies above 50 GHz with short wavelength characteristics to create a physically limited transmission range, thereby improving security against interception. The high frequency parameter enables both secure short-range transmission and high data transfer rates simultaneously
3Speed
If microwave radio signals with frequency greater than 50 GHz are used for high-speed data transfer, then transfer rate exceeds 1 Gigabit per second and security is improved, but transmission distance is limited to less than a predetermined distance
Solution Approach 1:
The patent applies local quality by concentrating the microwave signal energy in a localized short-range zone, creating a focused high-speed data transfer channel. This local concentration of signal energy enables high transfer rates and security within a limited distance, rather than distributing energy over long distances
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
This solution enables rapid and secure data transfer between data management devices by leveraging high-frequency microwave signals, significantly reducing transfer time and preventing unauthorized access due to the limited range of the signal.
Implementation Method 1
a monolithic microwave integrated circuit capable of carrying out at least one basic operation among a modulation of said microwave radio signals, a demodulation of said microwave radio signals
Implementation Method 2
transmission of said microwave radio signals and a reception of said microwave radio signals via an antenna
Implementation Method 3
a monolithic microwave integrated circuit capable of carrying out at least one basic operation among a modulation of said microwave radio signals, a demodulation of said microwave radio signals
Data Source
AI summary
A high-speed wireless data transfer device for data management devices, includes a first transfer module and a second transfer module able to exchange wirelessly between them, by microwave radio signals with a frequency greater than 50 Gigahertz, and a monolithic microwave integrated circuit. The device further includes at least one mass storage element capable of supplying or storing the transfer data with a rate greater than 1 gigabit per second when the distance separating the first transfer module and the second transfer module transfer is less than a predetermined distance; and a control device configured to control the monolithic microwave integrated circuit, the mass storage element and a communication bus connected to the mass storage element.


