Anonymous Remote Connection Key for Private Device Control
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Solution Overview
Problem
Existing male masturbation devices lack connectivity options, security, complex interfacing, and feedback, making them inadequate for simulating real intimate behavior, especially for remote control and privacy concerns.
Innovation Solution
A penile stimulation device with a brushless motor and external sleeve, controlled remotely through a server-managed connection key, allowing for private and anonymous operation via buttons, voice, or motion control, enabling remote intimacy and third-party access without requiring personal data or smartphone apps.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If prior art devices use smartphone applications for control, then wireless connectivity is achieved, but user privacy is compromised and operation becomes complex
Solution Approach 1:
The patent extracts the control functionality from complex smartphone applications and implements it directly in the device itself through a simplified remote control interface. The device includes a control circuit that can receive control signals directly from remote devices without requiring intermediary smartphone apps, thereby eliminating the complexity of app installation, pairing, and configuration while maintaining wireless connectivity capability.
Solution Approach 2:
The patent introduces a server-based communication system as an intermediary that enables direct device-to-device control through a simplified interface. The server mediates between the patient device and remote control devices, allowing control through a web browser or simple application without requiring complex local pairing or smartphone intermediaries, thus reducing operational complexity while preserving wireless connectivity.
2Adaptability or versatility
If prior art devices require personal identifying information for connectivity, then network connection is established, but user privacy and anonymity are compromised
Solution Approach 1:
The patent implements a device identification system that uses unique device codes instead of personal identifying information. Each device is assigned a unique identifier that can be used for connection without revealing user identity. The system creates a copy or representation of the connection need through device codes rather than requiring actual personal information, thereby maintaining connectivity while protecting privacy.
Solution Approach 2:
The patent introduces a server-based communication system that acts as an intermediary, mediating all connections through device codes rather than direct peer-to-peer identification exchange. The server handles the matching and connection process using only device identifiers, preventing exposure of personal information while maintaining full connectivity capability between devices.
3Ease of operation
If prior art devices use brushed motors, then mechanical motion is achieved, but noise increases and reliability decreases
Solution Approach 1:
The patent replaces the mechanical brushed motor system with an electromagnetic linear actuator or voice coil mechanism. This substitution eliminates mechanical contact and friction inherent in brushed motors, thereby reducing noise and improving reliability. The electromagnetic system provides smooth, controlled linear motion without the wear and tear associated with mechanical brushes and commutators.
4Device complexity
If prior art devices use internal sleeves, then device structure is simplified, but ergonomics and user comfort deteriorate
Solution Approach 1:
The patent segments the device into modular components, including a replaceable sleeve or head portion that can be independently selected and attached. This segmentation allows the main body to remain structurally simple while the interchangeable sleeve provides ergonomic optimization. Users can select different sleeve types or sizes to match their specific comfort preferences, achieving both structural simplicity and ergonomic comfort through modularity.
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
The solution provides reliable, private, and efficient remote control of penile stimulation, enhancing intimacy and accessibility while maintaining user privacy and simplifying setup and operation.
Implementation Method 1
Motors are brushed motors
Data Source
AI summary
A method of connecting a user device anonymously to a remote operator, via an intermediate anonymizing server is described. In this way, a remote operator may control the device, without the remote operator knowing the identity of the owner or of user of the device. A remote operator might provide medical support or entertainment. The user of the device is provided with a connection key, which is then further given by the user to a desired remote operator. Both the user and the remote operator provide the anonymizing server with the connection key. The anonymizing server opens a chat room uniquely associated with the connection key. Electronic connectivity is provided by forwarding messages between the user device and the remote operator through the chat room. No other access to the chat room is permitted. The anonymizing server does not store the connection key. No user application is required.


