Electrophysiological and hemodynamic multi-modal smart wearable device

CN309779561SActive Publication Date: 2026-02-06HANGZHOU RONGNAO TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202530046881.X
Authority / Receiving Office
CN · China
Patent Type
Designs(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2026-02-06
Estimated Expiration
2040-01-23

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Abstract

1.The name of the design product: electrophysiological and hemodynamic multi-modal intelligent wearable device. 2.The use of the design product: used for collecting electrophysiological signals or / and hemodynamic signals of human body by wearing. 3.The design points of the design product: in shape. 4.The picture or photo that best shows the design points: combination state reference Fig.1. 5.Other views are omitted. 6.The component description of other circumstances that need to be explained: the design product is a component design, including three components, component 1 is a signal acquisition host, component 2 is a near-infrared sensing patch, and component 3 is an electrophysiological signal acquisition patch, wherein component 2 and component 3 can be combined with component 1 at the same time. 7.The change state description of other circumstances that need to be explained: when component 1 and component 2 are combined, the interface of component 1 is connected with the joint of component 2, as shown in combination state reference Fig.2, for collecting and transmitting hemodynamic signals; when component 1 and component 3 are combined, the joint of component 3 is turned to the plane and connected with the interface of component 1, as shown in combination state reference Fig.3, for collecting electrophysiological signals; when component 1, component 2 and component 3 are combined, component 2 and component 3 are first combined, then the joint of component 3 is turned to the plane where the joint of component 2 is located, as shown in combination state reference Fig.4, and then the interface of component 1 is combined with the joint of component 2 and component 3, as shown in combination state reference Fig.1, for collecting electrophysiological signals and hemodynamic signals, wherein since component 2 and component 3 are both small-thickness patches, the combination gap between component 2 and component 3 is omitted in combination state reference Fig.1.
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