Dynamic graphical user interface for the interactive expression display of a robot (optimistic)

CN309308375SActive Publication Date: 2025-05-27BEIJING RENHEJIA TECH CO LTD
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Patent Information

Application Number
CN202430045097.2
Authority / Receiving Office
CN · China
Patent Type
Designs(China)
Current Assignee / Owner
Filing Date
2024-01-23
Publication Date
2025-05-27
Estimated Expiration
2039-01-23

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    Figure 000001_ABST
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Abstract

1. Name of the Design Product: Dynamic Graphical User Interface for Interactive Expressions Display of a Robot (Optimist). 2. Use of the Design Product: A robot for human-computer interaction. 3. Design Key Points of the Design Product: The graphical user interface on the screen. 4. Picture or Photograph Best Illustrating the Design Key Points: The front view. 5. Since the robot is the carrier for demonstrating the graphical user interface, the rear view, left view, right view, top view, bottom view and perspective view are omitted. 6. Human-computer interaction method of the graphical user interface: The main view shows the normal display state after the robot is started; the enlarged view of the interface change state 1 shows the expression of 666 displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head camera recognizes the user's gesture within 30 cm or the robot's head microphone receives voice within 60 cm); the enlarged view of the interface change state 2 shows the expression of AI displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives voice within 60 cm to answer questions using the AI large model); the enlarged view of the interface change state 3 shows the expression of a heart displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged views of the interface change state 4-7 show the continuously changing arrogant expressions displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view of the interface change state 8 shows the expression of Barbie Q displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged views of the interface change state 9-10 show the continuously changing clasped hands and bowing expressions displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged views of the interface change state 11-12 and the enlarged views of the interface change state 148-150 show the scanning expressions displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view of the interface change state 13 shows the sad expression displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives sadness within 60 cm); the enlarged view of the interface change state 14 shows the angry expression displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives anger within 60 cm); the enlarged view of the interface change state 15 shows the happy birthday expression displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives happy birthday within 60 cm); the enlarged views of the interface change state 16-17 show the merry Christmas expressions displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives merry Christmas within 60 cm); the enlarged view of the interface change state 18 shows the expression of clasped hands displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged views of the interface change state 19-20 show the expression of blinking eyes displayed on the user graphical interface when the robot is in human-computer interaction (the robot's head microphone receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application);The enlarged view of the interface change state 21 and the enlarged view of the interface change state 32 are the continuously changing beaten expressions shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view of the interface change state 22 is the sleeping expression shown on the user graphical interface when the robot is in human-robot interaction (while charging the robot and the microphone on the robot's head receives voice within 60 cm to turn on the pet mode); the enlarged view of the interface change state 23 is the expression of raising eyes while sleeping shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view of the interface change state 24 is the speaking expression shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice questions and answers within 60 cm); the enlarged view of the interface change state 25 is the thinking expression shown on the user graphical interface when the robot is in human-robot interaction (thinking before the microphone on the robot's head receives voice questions and answers within 60 cm); the enlarged view of the interface change state 26 is the sighing expression shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view of the interface change state 27 is the questioning expression shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice to wake up by saying "Hi, Xiaole" within 60 cm); the enlarged view of the interface change state 28 is the reminding expression shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view of the interface change state 29 is the expression of sticking out the tongue shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged views of the interface change state 30-31 are the Halloween expressions shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice "Happy Halloween" within 60 cm); the enlarged view of the interface change state 33 is the wronged expression shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view of the interface change state 34 is the helpless expression shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view of the interface change state 35 is the expression of looking left helplessly shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view of the interface change state 36 is the expression of covering the face shown on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice within 60 cm to turn on the expression mode or touch the screen to open the expression application).The enlarged picture 37 of the interface change state is the banana peel expression displayed on the user graphical interface during human-computer interaction (the robot's head microphone receives voice within a range of 60cm to open the expression mode or touches the screen to open the expression application); the enlarged picture 38 of the interface change state is the upward-looking expression displayed on the user graphical interface during human-computer interaction (the robot's head microphone receives voice within a range of 60cm to open the expression mode or touches the screen to open the expression application); the enlarged picture 39 of the interface change state is the downward-looking expression displayed on the user graphical interface during human-computer interaction (the robot's head microphone receives voice within a range of 60cm to open the expression mode or touches the screen to open the expression application); the enlarged picture 40 of the interface change state is the robot's The smiling expression displayed on the user graphical interface when the robot (the robot's head microphone receives voice within a range of 60cm to turn on the expression mode or touches the screen to turn on the expression application); the enlarged picture 41 of the interface change state is the happy new year expression displayed on the user graphical interface when the robot is interacting with the human-computer (the robot's head microphone receives voice within a range of 60cm to turn on the expression mode or touches the screen to turn on the expression application); the enlarged picture 42 of the interface change state is the dizzy expression displayed on the user graphical interface when the robot is interacting with the human-computer (the robot's head microphone receives voice within a range of 60cm to turn on the expression mode or touches the screen to turn on the expression application); the enlarged picture 43 of the interface change state and the enlarged picture 54 of the interface change state are the robot's human-computer interaction (the robot's head microphone receives voice within a range of 60cm to turn on the expression mode or touches the screen to turn on the expression application). The user graphical interface displays a continuously changing expression of being slapped when the robot is in human-machine interaction (the robot's head microphone receives voice within a range of 60 cm to turn on the expression mode or touch the screen to turn on the expression application); the enlarged picture 44 of the interface change state is the expression of being rich displayed in the user graphical interface when the robot is in human-machine interaction (the robot's head microphone receives voice within a range of 60 cm to turn on the expression mode or touch the screen to turn on the expression application); the enlarged picture 45 of the interface change state is the expression of looking right displayed in the user graphical interface when the robot is in human-machine interaction (the robot's head microphone receives voice within a range of 60 cm to turn on the expression mode or touch the screen to turn on the expression application); the enlarged picture 46 of the interface change state is the expression of the robot in human-machine interaction (the robot's head microphone receives voice within a range of 60 cm to turn on the expression mode or touch the screen to turn on the expression application) The user graphical interface displays an expression of looking sideways to the upper right when the robot is in human-computer interaction; the enlarged image 47 of the interface change state is an expression of looking sideways to the lower right when the robot is in human-computer interaction (the robot's head microphone receives voice within a range of 60 cm to turn on the expression mode or the touch screen turns on the expression application); the enlarged image 48 of the interface change state is an expression of looking sideways to the right when the robot is in human-computer interaction (the robot's head microphone receives voice within a range of 60 cm to turn on the expression mode or the touch screen turns on the expression application); the enlarged image 49 of the interface change state is an expression of blinking right when the robot is in human-computer interaction (the robot's head microphone receives voice within a range of 60 cm to turn on the expression mode or the touch screen turns on the expression application);The enlarged view 50 of the interface change state shows the expression of crescent eyes on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 51 of the interface change state shows the expression of dizziness on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 52 of the interface change state shows the normal expression on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 53 of the interface change state shows the frowning expression on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged views 55-59 of the interface change state show the football expression on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to play football); the enlarged view 60 of the interface change state shows the expression of looking left on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 61 of the interface change state shows the expression of looking obliquely up to the left on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 62 of the interface change state shows the expression of looking down to the left on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 63 of the interface change state shows the expression of looking obliquely left on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 64 of the interface change state shows the expression of winking left on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 65 of the interface change state shows the expression of making a heart on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to make a heart or touch the screen to open the expression application); the enlarged view 66 of the interface change state shows the expression of doing a problem on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 67 of the interface change state shows the expression of closing the mouth on the user graphical interface when the robot is in human-machine interaction (the microphone on the robot's head receives voice within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged views 68-71 of the interface change state show the obstacle avoidance expression on the user graphical interface when there is an obstacle within 20 cm in front of the robot during human-machine interaction).The enlarged view of the interface change state 72 shows the expressions of the performance presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for singing or dancing within a range of 60 cm); the enlarged view of the interface change state 73 shows the expressions of the cloth presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for playing rock-paper-scissors within a range of 60 cm); the enlarged views of the interface change states 74-76 show the expressions of playing rock-paper-scissors presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for playing rock-paper-scissors within a range of 60 cm); the enlarged views of the interface change states 77-78 show the expressions of singing presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for singing or dancing within a range of 60 cm); the enlarged view of the interface change state 79 shows the expression of eating soy milk and steamed buns presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for drinking water within a range of 60 cm); the enlarged view of the interface change state 80 shows the expression of eating noodles presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for eating noodles within a range of 60 cm); the enlarged view of the interface change state 81 shows the expression of eating a banana presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for eating a banana within a range of 60 cm); the enlarged views of the interface change states 82-83 show the expression of whistling presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for turning on the expression mode or opening the expression application by touch within a range of 60 cm); the enlarged views of the interface change states 84-85 show the expression of playing the saxophone presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for turning on the expression mode or opening the expression application by touch within a range of 60 cm); the enlarged view of the interface change state 86 shows the expression of yawning presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for turning on the expression mode or opening the expression application by touch within a range of 60 cm); the enlarged view of the interface change state 87 shows the expression of typing presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for typing within a range of 60 cm); the enlarged view of the interface change state 88 shows the expression of sweating profusely presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for turning on the expression mode or opening the expression application by touch within a range of 60 cm); the enlarged views of the interface change states 89-90 show the expression of having uneven eyes presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for turning on the expression mode or opening the expression application by touch within a range of 60 cm); the enlarged view of the interface change state 91 shows the expression of laughing heartily presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for smiling within a range of 60 cm); the enlarged views of the interface change states 92-94 show the expression of being dull presented on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands for turning on the expression mode or opening the expression application by touch within a range of 60 cm);The enlarged view of the interface change state 95 - 104 shows the expressions of the pinball presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm for the 3D pinball); the enlarged view of the interface change state 105 shows the expression of the current presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm to activate the expression mode or touch - screen to open the expression application); the enlarged view of the interface change state 106 shows the expressions of Tetris presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm for Tetris); the enlarged view of the interface change state 107 shows the expression of the devil presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm to activate the expression mode or touch - screen to open the expression application); the enlarged view of the interface change state 108 shows the expression of anger presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm to activate the expression mode or touch - screen to open the expression application); the enlarged view of the interface change state 109 shows the expression of a toast presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm to activate the expression mode or touch - screen to open the expression application); the enlarged view of the interface change state 110 shows the expression of fear presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm to activate the expression mode or touch - screen to open the expression application); the enlarged view of the interface change state 111 shows the expression of shyness presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm to activate the expression mode or touch - screen to open the expression application); the enlarged view of the interface change state 112 - 113 shows the expression of suspicion presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm to activate the expression mode or touch - screen to open the expression application); the enlarged view of the interface change state 114 shows the expression of scissors presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm for rock - paper - scissors); the enlarged view of the interface change state 115 shows the expression of surprise presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm to activate the expression mode or touch - screen to open the expression application); the enlarged view of the interface change state 116 - 117 shows the expression of raising hands presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm for raising hands); the enlarged view of the interface change state 118 - 122 shows the expression of lifting dumbbells presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm to activate the expression mode or touch - screen to open the expression application); the enlarged view of the interface change state 123 shows the expression of happiness presented on the user graphical interface when the robot is in human - robot interaction (the microphone on the robot's head receives voice within a range of 60 cm for smiling).The enlarged view 124 of the interface change state shows the expression of reading a newspaper on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to read a book); the enlarged view 125 of the interface change state shows the expression of looking at the clouds on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 126 of the interface change state shows the resistant expression on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 127 of the interface change state shows the expression of about to cry on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 128 of the interface change state shows the tearful expression on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 129 of the interface change state shows the cold expression on the user graphical interface when the robot is in human-robot interaction (the robot is connected to the Mijia to set up an intelligent scene to trigger the shivering action); the enlarged views 130 - 131 of the interface change state show the chatting expression on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to type); the enlarged view 132 of the interface change state shows the sweating expression on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 133 of the interface change state shows the drooling expression on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 134 of the interface change state shows the crying expression on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 135 of the interface change state shows the squinting expression on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 136 of the interface change state shows the squinting smile expression on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 137 of the interface change state shows the uncomfortable expression on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application); the enlarged view 138 of the interface change state shows the expression of a bird flying on the user graphical interface when the robot is in human-robot interaction (the microphone on the robot's head receives voice commands within a range of 60 cm to turn on the expression mode or touch the screen to open the expression application);The enlarged view 139 of the interface change state shows the expression of the user graphical interface during human-robot interaction (the microphone on the robot's head receives the photo within a range of 60 cm); the enlarged views 140-143 of the interface change state show the expression of splashing paint of the user graphical interface during human-robot interaction (the microphone on the robot's head receives the voice to turn on the expression mode or the touch screen to turn on the expression application within a range of 60 cm); the enlarged view 144 of the interface change state shows the expression of boxing of the user graphical interface during human-robot interaction (the microphone on the robot's head receives the voice to turn on the expression mode or the touch screen to turn on the expression application within a range of 60 cm); the enlarged view 145 of the interface change state shows the expression of a fist of the user graphical interface during human-robot interaction (the microphone on the robot's head receives the game of rock-paper-scissors within a range of 60 cm); the enlarged view 146 of the interface change state shows the expression of heat of the user graphical interface during human-robot interaction (the robot accesses the Mijia to set up an intelligent scene to trigger a heating action); the enlarged view 147 of the interface change state shows the expression of a racing car of the user graphical interface during human-robot interaction (the microphone on the robot's head receives the operation of driving a racing car within a range of 60 cm).;
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