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22 results about "Mobile interfaces" patented technology

Mobile Interface. The mobile interface provides access to Agiloft knowledgebases from smart devices such as iPhone, Android, or other tablets. It is designed to give users quick access to their data and contains a subset of the features included in the Power User Interface. Log into Agiloft from any smart device to access the mobile interface.

Heated skate blade with app-controlled temperature adjustment

A heated skate blade system is disclosed for optimizing ice skating performance through app-controlled temperature adjustment. The system includes a nichrome heating coil embedded in or adjacent to the blade, powered by a thin-film lithium-ion battery integrated into the blade holder. A microcontroller governs power delivery to the coil and wirelessly communicates with a mobile application via Bluetooth. The application enables users to input variables such as ice temperature, skater weight, skate size, blade hollow (ROH), and desired blade temperature. Based on these inputs, the system adjusts heating output to reduce the coefficient of kinetic friction between the blade and ice, enhancing glide and top speed. A USB-C port enables battery charging. The invention provides real-time, user-specific thermal tuning for hockey and speed skating applications, delivering improved speed and energy efficiency through compact, embedded electronics and an intuitive mobile interface.
Owner:CERENO MATTHEW

Dynamic augmented reality content delivery platform

A system and method for creating and publishing augmented reality (AR) content using a mobile device and application. The method includes selecting a content theme, presenting associated content templates, receiving user input, and generating an AR content item. Metadata is created indicating AR content type, selected theme, and used template. The AR content item and metadata are published to a server for storage in a manner enabling retrieval and presentation via an AR device application. The system facilitates easy creation of AR content without requiring specialized AR development skills, allowing users to generate content using familiar mobile interfaces. The created content can be accessed and viewed through AR devices, providing an seamless workflow from content creation to AR presentation.
Owner:SNAP INC

Method for controlling and / or operating an automation component

A method for controlling and / or operating an automation component of automation technology using a service of the automation technology. The service is analyzed by a control circuit of an automation component while determining at least one property of the service. Based on the at least one determined property of the service, one of the at least two mobile interfaces of the automation component with the control circuit is determined and / or controlled to process the service.
Owner:VEGA GRIESHABER GMBH & CO

Product link module for video playback graphical user interface of electronic devices

1. Name of the product in this design: Product link module for video playback graphical user interface of electronic device. 2. Application of this design: This design is intended for use in an electronic device. 3. The key design features of this product are the graphical user interface portion for which protection is sought. 4. The picture or photo that best illustrates the key design points: Design 1 Change State Diagram 1. 5. Design 1 is designated as the basic design. 6. Uses of graphical user interface: Overall use: video playback interaction; Local use: to realize product link display and interaction through changes in user operation. 7. Other situations requiring explanation are illustrated in the diagrams: This design protects the product link module; Design 1: Selecting the "View Link" button in the lower left corner of the main view of Design 1 will pop up a pop-up layer, as shown in the change state diagram of Design 1. The pop-up layer displays the product name related to the currently playing content, as well as a button to guide the user to open other terminals to view the link. Selecting the button will synchronously transmit the current product link to the corresponding terminal interface, as shown in the change state diagram of Design 1, Figure 2; Design 2: A pop-up layer will pop up during video playback, as shown in the main view of Design 2. The pop-up layer displays the product name related to the currently playing content, as well as a button to guide the user to open other terminals to view the link. Selecting the button will synchronously transmit the current product link to the corresponding terminal interface, as shown in the change state diagram of Design 2; Design 3: Selecting the "View Link" button in the lower left corner of the main view of Design 3 will pop up a pop-up layer, as shown in the change state diagram of Design 3, displaying the product name related to the currently playing content, as well as a button to guide the user to open the mobile device to view the link. Selecting the button will synchronously transmit the current product link to the mobile device. On the mobile interface, as shown in Design 3, state change diagram 2; Design 4: A pop-up layer appears during video playback, as shown in the main view of Design 4. The pop-up layer displays the product name related to the currently playing content, as well as a button to guide the user to open the mobile app to view the link. Selecting the button synchronously transmits the current product link to the mobile interface, as shown in the state change diagram of Design 4; Design 5 has the same interaction method as Design 3, and Design 6 has the same interaction method as Design 4; The usage state reference diagram is a rendering of the user interaction interface. The main view of Design 1 and state change diagrams 1-2 correspond to usage state reference diagrams 1-3 of Design 1, the main view of Design 2 and state change diagrams correspond to usage state reference diagrams 1-2 of Design 2, the main view of Design 3 and state change diagrams 1-2 correspond to usage state reference diagrams 1-3 of Design 3, the main view of Design 4 and state change diagrams correspond to usage state reference diagrams 1-2 of Design 4, the main view of Design 5 and state change diagrams 1-2 correspond to usage state reference diagrams 1-3 of Design 5, and the main view of Design 6 and state change diagrams correspond to usage state reference diagrams 1-2 of Design 6.
Owner:SHANGHAI BILIBILI TECH CO LTD

Handheld user interface device for surgical robots

This document discloses a mobile interface device for controlling a robot-assisted surgical system. The mobile interface device provides the surgeon with a direct view of the surgical robot system and allows the surgeon to easily and intuitively select, control, or manipulate various target components of the surgical robot system. The mobile interface device captures real-time images of the surgical robot system to automatically identify the robotic arm appearing at the center of the captured real-time image as the target component selected by the surgeon. Based on the current pose or position of the target component, the mobile interface device generates a list of target poses and control options. The surgeon can select control options to select a target pose and manipulate the target component, thereby commanding the selected robotic arm to perform robot-assisted movement from the current pose to the target pose.
Owner:AURIS HEALTH INC

Smart phone-carrier robot for morning routine regulation and sleep hygiene

PCT designated stageWO2026047651A2Circuit arrangementsEngineeringSleep hygiene
An autonomous mobile robot is provided to support healthier smartphone usage habits by physically removing the device from close proximity during sleep and morning routines The robot is designed to carry a user's mobile phone away from the bedside to a designated area in the room once the user initiates a sleep mode or scheduled timer. This system addresses behavioral tendencies of users who engage in extended smartphone use before sleeping and immediately upon waking— activities known to disrupt natural circadian rhythms and sleep quality. By limiting immediate access to the device upon waking, the robot encourages delayed interaction with digital content, promoting mindful morning routines. The robot may be equipped with autonomous navigation, a secure phone holder, and a user-controlled interface to schedule movements.
Owner:UNIV UTE

Electronic device icons light and shadow changing graphical user interface workbench

1. Name of the product of this design: A workbench with a graphical user interface with changing light and shadow icons for electronic equipment. 2. Purpose of this design product: an electronic device. 3. The key design point of this design product lies in the graphical user interface. 4. The picture or photo that best illustrates the key points of the design: Design 1 interface change state diagram 1. 5. Designate Design 1 as the base design. 6. Purpose of the Graphical User Interface: The overall purpose of the interface is to display the process of the lighting effects of icons on the desktop workbench changing with the position of the user's cursor. The local purpose of the interface is to display different lighting, displacement and deformation effects on the icons in the workbench as the user operates the cursor and changes its floating position, prompting the user to the current cursor position. 7. Human-computer interaction mode of graphical user interface: In design 1, the main view is the main interface displayed by the electronic device. When the user operates the cursor to move toward the left in the main view, the interface jumps to interface change state diagram 1; when the user operates the cursor to continue to move toward the left in interface change state diagram 1, the interface jumps to interface change state diagram 2; when the user operates the cursor to continue to move toward the left in interface change state diagram 2, the interface jumps to interface change state diagram 3; when the user operates the cursor to continue to move toward the left in interface change state diagram 3, the interface jumps to interface change state diagram 4; when the user operates the cursor to move toward the upper left in interface change state diagram 4, the interface jumps to interface change state diagram 5; wherein, the desktop background area in the interface is used to display the content screen; the specific interface is shown in the reference figure; in design 2, the main view is the main interface displayed by the electronic device. When the user operates the cursor to move toward the left in the main view, the interface jumps to interface change state diagram 1; when the user operates the cursor to move toward the lower left in interface change state diagram 1, the interface jumps to interface change state diagram 2; use The user operates the cursor to move toward the upper left in interface change state diagram 2, and the interface jumps to interface change state diagram 3; the user operates the cursor to move toward the upper right in interface change state diagram 3, and the interface jumps to interface change state diagram 4; wherein, the desktop background area in the interface is used to display the content screen; the specific interface is shown in the reference diagram; in design 3, the main view is the main interface displayed by the electronic device, and the user operates the cursor to move toward the left in the main view, and the interface jumps to interface change state diagram 1; the user operates the cursor to continue to move toward the left in interface change state diagram 1, and the interface jumps to interface change state diagram 2; the user operates the cursor to continue to move toward the left in interface change state diagram 2, and the interface jumps to interface change state diagram 3; the user operates the cursor to continue to move toward the left in interface change state diagram 3, and the interface jumps to interface change state diagram 4; the user operates the cursor to move toward the upper left in interface change state diagram 4, and the interface jumps to interface change state diagram 5; wherein, the desktop background area in the interface is used to display the content screen; the specific interface is shown in the reference diagram. In Design 4, the main view is the main interface displayed by the electronic device. When the user operates the cursor to move to the left in the main view, the interface jumps to Interface Change State Diagram 1; when the user operates the cursor to move to the lower left in Interface Change State Diagram 1, the interface jumps to Interface Change State Diagram 2; when the user operates the cursor to move to the upper left in Interface Change State Diagram 2, the interface jumps to Interface Change State Diagram 3; when the user operates the cursor to move to the upper right in Interface Change State Diagram 3, the interface jumps to Interface Change State Diagram 4; when the user operates the cursor to move downward in Interface Change State Diagram 4, the interface jumps to Interface Change State Diagram 5; wherein, the desktop background area in the interface is used to display the content screen; the specific interface is shown in the reference figure. 8. Other matters requiring explanation: The dotted lines in the figures indicate parts that do not require protection.
Owner:HUAWEI DEVICE CO LTD

System for measuring skew and speed of an arrow

An archery tuning apparatus includes two light detection units, each comprising a line laser source emitting a planar fan of laser light and a curved array of spaced-apart light sensors. The units are configured with parallel laser fans, creating an overlap target region when viewed along a normal axis. The curved sensor arrays, with radii of curvature approximating their irradiation distances, optimize detection accuracy. Integrated circuitry and software collect and analyze data from arrows shot through the target region during tuning sessions. The apparatus connects to a mobile device, which stores and displays tuning session information through a dedicated app. This system provides archers with precise measurements of arrow speed and skew, offering advantages over traditional paper tuning methods. The mobile interface allows for easy data management, equipment tracking, and remote technical assistance, enhancing the overall archery tuning experience.
Owner:LOIKITS DANIEL

System and method for task-based marketplace platform

PCT designated stageWO2026139732A1Computer networkMobile interfaces
The embodiments herein provides a computer-implemented system and method for facilitating on-demand task assignment and management in a distributed network. The system dynamically connects task requesters with service providers through an algorithmic matching engine that evaluates factors such as skills, location, availability, and reputation. A bidding mechanism allows service providers to compete for tasks, while an integrated escrow-based payment system ensures secure transactions. The platform further incorporates a reputation management system with user ratings and verification features to enhance trust and reliability. By automating task posting, matching, scheduling, and payment processing, the invention optimizes efficiency, transparency, and scalability in peer-to-peer task outsourcing. The system is accessible via web and mobile interfaces, enabling real-time coordination between users across diverse geographic locations.
Owner:HOOD SEYEDEH BAHAREH

A mobile interface device for instantaneous coral species identification

ActiveIN498840001SMobile interfacesZoology
Owner:DR REKHA GANGULA +3

Simplified sports betting system and methos

A simplified sports betting system and method is disclosed, designed for both online and physical betting environments. The system presents pre-packaged bet options to users, each including a fixed bet amount, potential winning amount, and unique identifier. This approach eliminates the need for users to interpret complex odds or perform calculations. In online platforms, users select bets through web or mobile interfaces. In physical locations, large displays show pre-packaged bets, allowing customers to place bets by referencing simple identifiers to tellers or via self-service kiosks. The system dynamically updates potential winnings based on real-time odds data, maintaining accuracy while preserving a user-friendly interface. The betting process is streamlined to selecting a pre-packaged bet, confirming the selection, and receiving a receipt. This invention simplifies sports betting, making it more accessible to a broader audience while maintaining essential wagering elements, potentially expanding the market for sports betting.
Owner:BRIE VINCENT

Method and Device for Portable, Modular and Compact Optical Microscopy for Studying Material Dynamics at the Nanoscale

PendingUS20260065454A1Image enhancementImage analysisMobile interfacesNanoscopic scale
A set of compact microscopes, one of which works as an attachment to a camera-equipped cell phone, that can fit in a 3 U CubeSat and be used as a platform for high-resolution optical microscopy and characterization of nanoscale dynamics. An advanced software package, which can be deployed via a mobile interface, enabling users to reliably capture image sequences of moving particles with their smartphone cameras, and enabling immediate access to precise rheological results.
Owner:UNIVERSITIES SPACE RES ASSOC

Dynamic augmented reality content delivery platform

A system and method for creating and publishing augmented reality (AR) content using a mobile device and application. The method includes selecting a content theme, presenting associated content templates, receiving user input, and generating an AR content item. Metadata is created indicating AR content type, selected theme, and used template. The AR content item and metadata are published to a server for storage in a manner enabling retrieval and presentation via an AR device application. The system facilitates easy creation of AR content without requiring specialized AR development skills, allowing users to generate content using familiar mobile interfaces. The created content can be accessed and viewed through AR devices, providing an seamless workflow from content creation to AR presentation.
Owner:SNAP INC

Display screen panel with light management graphical user interface

1. The name of the design product: display screen panel with light management graphical user interface. 2. The use of the design product: the design product is used for running programs, information display and human-computer interaction. 3. The design points of the design product: the content of the graphical user interface in the screen. 4. The picture or photo that best indicates the design points: front view. 5. The use of the graphical user interface: the interface is used for the user to interact with the light management and adjustment of the electric skateboard; the main view interface is the initial interface, selecting the function module interface in the middle of the main view interface switches to the interface change state diagram 1; selecting the "hue" function button in the interface change state diagram 1 switches the interface to the interface change state diagram 2, and the user can move the focus in the interface change state diagram 2 to adjust the light of the electric skateboard. 6. Other circumstances that need to be explained: the display screen panel can be used for electric skateboards and electric skateboard remote controllers.
Owner:SHENZHEN HONGHUZHIZHI TECH CO LTD

Smart interactive shirt system for real-time multi-modal pain and fatigue monitoring using embedded IoT sensors

The Smart Interactive Shirt System is an advanced wearable biosensing platform engineered for real-time, multi-modal monitoring and predictive management of pain, fatigue, and physiological stress. Embedded within a flexible textile, the system integrates 15 specialized IoT sensors—spanning biochemical, biomechanical, thermal, and neurophysiological domains—to deliver continuous high-resolution insight into the wearer's physiological state. Key innovations include plasmonic nano-optical modules for real-time cortisol and CRP detection, EMG-based neuromuscular sensing, and thermopile arrays for deep-tissue inflammation mapping. A hybrid AI engine combining convolutional and recurrent neural networks (CNN-LSTM) processes incoming data locally, enabling early prediction of acute fatigue and pain episodes 10–15 minutes before physiological onset. The system incorporates triboelectric nanogenerators (TENGs) that harvest kinetic energy from body motion, minimizing reliance on external power sources and supporting extended autonomous operation. Validated through pilot deployments in elite European sports organizations, the shirt also features screen-printed electronic circuits, vibrotactile feedback mechanisms, and seamless Bluetooth Low Energy (BLE) integration with mobile interfaces. This invention marks a significant advancement over conventional wearables by offering proactive, data-driven physiological management, setting a new benchmark in intelligent, AI-powered textile systems.
Owner:ALMANI KHULOOD

Push window controller control graphical user interface for electronic device

1. The name of the design product: electronic device push window control graphical user interface. 2. The use of the design product: for an electronic device. 3. The design points of the design product: in the graphical user interface. 4. The picture or photo that best shows the design points: design 1 front view. 5. Design 1 is designated as the basic design. 6. The use of the graphical user interface: the use of the graphical user interface is the control interface of the push window, used to control the push window. 7. The human-computer interaction mode of the graphical user interface: the front view of design 1-design 6 is the push window control graphical user interface of the electronic device, and the user can click the virtual button in the interface or move the window in the interface to control the push window. In the front view of design 5, the user can first click the virtual button at the lower left, then click the virtual button in the middle of the lower part when the window is opened to 50%, and the interface changes to design 5 change state diagram; or move the right window to the 50% position to the left, and the interface changes to design 5 change state diagram; or click the middle of the left window, and the interface changes to design 5 change state diagram. In the front view of design 6, the user can first click the virtual button at the lower left, then click the virtual button in the middle of the lower part when the window is opened to 50%, and the interface changes to design 6 change state diagram; or move the right window to the 50% position to the left, and the interface changes to design 6 change state diagram; or click the middle of the left window, and the interface changes to design 6 change state diagram.
Owner:WUHAN LINPTECH

Display operation section of split-screen switching graphical user interface of window of electronic device

ActiveCN309710080SGraphical user interfaceMobile interfaces
1. The name of the design product: the display operation part of the split-screen switching graphical user interface of the window of the electronic device. 2. The use of the design product: an electronic device. 3. The design points of the design product: the part of the graphical user interface requested for protection. 4. The picture or photo that best shows the design points: design 1 front view. 5. Design 1 is designated as the basic design. 6. The use of the graphical user interface: the whole interface is the graphical user interface for switching the window in split-screen mode, and the local part is the display operation part of the window switching in split-screen mode. The front view of designs 1 to 6 is the initial state of the interface, displaying the window in picture-in-picture (PIP) mode. When the user clicks the round-cornered square split-screen icon in the upper part of the pop-up window, the interface changes from the front view to the changed state view, the pop-up window moves downward (designs 1 to 3) or to the right (designs 4 to 6), and the window in the interface changes from PIP mode to split-screen mode, so that the original window and the pop-up window are displayed side by side in the interface, making it convenient for the user to browse multiple windows at the same time. In designs 4 and 5, the user can also click the gear icon in the upper left corner of the pop-up window to set the parameters. 7. Other circumstances that need to be explained: the dashed part in the figure is not requested for protection.
Owner:SAMSUNG ELECTRONICS CO LTD

Method and device for portable, modular and compact optical microscopy for studying material dynamics at the nanoscale

A set of compact microscopes, one of which works as an attachment to a camera-equipped cell phone, that can fit in a 3U CubeSat and be used as a platform for high-resolution optical microscopy and characterization of nanoscale dynamics. An advanced software package, which can be deployed via a mobile interface, enabling users to reliably capture image sequences of moving particles with their smartphone cameras, and enabling immediate access to precise rheological results.
Owner:UNIVERSITIES SPACE RES ASSOC

System for eatery ordering with mobile interface and point-of-sale terminal

A non-transitory computer-readable medium is configured to store instructions executable by one or more processors to perform operations including receiving, via an audio signal interface, audio data, processing the audio data to identify one or more speakers from which the audio data is produced, determining, from the processed audio data, an intention to place one or more orders, and communicating, in response to determining the intention, with at least one point-of-sale (POS) terminal to execute order processing.
Owner:XENIAL INC

Mobile interface wave excitation and reception system and method

The invention provides a mobile interface wave excitation and receiving system and method. The mobile interface wave excitation and receiving system comprises a crawler detection platform, an interface wave signal excitation unit, an interface wave signal acquisition unit and a computer control unit, the interface wave signal excitation unit comprises an interface wave excitation transducer, a signal source and a power amplification unit; the interface wave signal acquisition unit comprises an interface wave receiving transducer and a signal acquisition module; the computer control unit comprises a signal parameter setting and control module, a signal acquisition control module, a crawler motion control module and a man-machine interaction function module. According to the invention, the technical problems of low interface wave excitation efficiency, poor signal stability and lack of maneuverability in the prior art are solved.
Owner:SHANGHAI MARINE ELECTRONIC EQUIP RES INST (NO 726 RES INST OF CHINA STATE SHIPBUILDING CORP)

Main body for cloud phone operation graphical user interface of electronic device

ActiveCN309849928SGraphical user interfaceMobile interfaces
1. The name of the design product: the main body of the cloud mobile operation graphical user interface for electronic equipment. 2. The use of the design product: an electronic device. 3. The design points of the design product: the graphical user interface in the electronic device. 4. The picture or photo that best indicates the design points: design 1 front view. 5. Design 1 is designated as the basic design. 6. The use of the graphical user interface: the graphical user interface is used for cloud mobile operation. The graphical user interface can interact through user click operations on the graphical user interface or through mouse and keyboard operations. When detecting content that needs user operation, the graphical user interface displays prompt information prompting the user to operate as shown in design 1 front view; the user clicks the "take control" button in the upper right corner of the graphical user interface, and the graphical user interface changes from design 1 front view to design 1 change state diagram 1 to display a prompt box interrupting the execution task; the user clicks the "confirm takeover" button in the prompt box, and the graphical user interface changes from design 1 change state diagram 1 to design 1 change state diagram 2 to display the cloud mobile interface to be operated in full screen; the user clicks the "end takeover" button in the upper right corner of the graphical user interface, and the graphical user interface changes from design 1 change state diagram 2 to design 1 change state diagram 3 to continue generating execution content. When detecting content that needs user operation, the graphical user interface displays prompt information prompting the user to operate as shown in design 2 front view; the user clicks the "take control" button in the upper right corner of the graphical user interface, and the graphical user interface changes from design 2 front view to design 2 change state diagram 1 to display a prompt box interrupting the execution task; the user clicks the "confirm takeover" button in the prompt box, and the graphical user interface changes from design 2 change state diagram 1 to design 2 change state diagram 2 to display the cloud mobile interface to be operated in full screen; the user clicks the "end takeover" button in the upper right corner of the graphical user interface, and the graphical user interface changes from design 2 change state diagram 2 to design 2 change state diagram 3 to display a prompt box prompting whether to continue generating execution content; the user clicks the "continue" button in the prompt box, and the graphical user interface changes from design 2 change state diagram 3 to design 2 change state diagram 4. When the content requiring user operation is detected, the graphical user interface displays prompt information prompting the user to operate as shown in the design 3 main view; the user inputs the execution instruction in the input box at the lower left of the graphical user interface and clicks the enter key to send, the graphical user interface changes from the design 3 main view to the design 3 change state diagram 1, after the execution of the instruction is completed, the graphical user interface changes from the design 3 change state diagram 1 to the design 3 change state diagram 2, the user clicks the "continue" button, the graphical user interface changes from the design 3 change state diagram 2 to the design 3 change state diagram 3, and the execution of the content continues. 7. Other situations requiring explanation Other explanations: The dashed lines in each view of design 1 to design 3 show part of the graphical user interface, which does not constitute part of the appearance design claimed.
Owner:GUANGZHOU DULING TECH CO LTD +1

Method and device for portable, modular and compact optical microscopy for studying material dynamics at the nanoscale

A set of compact microscopes, one of which works as an attachment to a camera-equipped cell phone, that can fit in a 3U CubeSat and be used as a platform for high-resolution optical microscopy and characterization of nanoscale dynamics. An advanced software package, which can be deployed via a mobile interface, enabling users to reliably capture image sequences of moving particles with their smartphone cameras, and enabling immediate access to precise rheological results.
Owner:UNIVERSITIES SPACE RES ASSOC