Abstract:
A communication and charging method using a human body channel, and a device performing the communication and charging method are disclosed. The communication and charging method of an electronic device includes generating a high-frequency data signal and a low-frequency power signal by performing frequency modulation on a data signal and a power signal, and transmitting the generated high-frequency data signal and the generated low-frequency power signal to another electronic device connected to the electronic device through a human body channel.
Abstract:
Provided is a peptide including X2SX1AAX2X3P (SEQ ID NO. 1), X2X2PX3X2AX3P (SEQ ID NO. 2), SX1AAX2X3P (SEQ ID NO. 3), or X2PX3X2AX3P (SEQ ID NO. 4), which bind to graphitic materials or volatile organic compounds.
Abstract translation:提供了结合石墨材料或挥发性有机物的X2SX1AAX2X3P(SEQ ID NO.1),X2X2PX3X2AX3P(SEQ ID NO.2),SX1AAX2X3P(SEQ ID NO.3)或X2PX3X2AX3P(SEQ ID NO.4)的肽, 化合物。
Abstract:
Provided are a biosensor and a wearable device for detecting bioinformation including a hybrid electronic sheet. The biosensor has high electrochemical activity, allows DET-based detection of an analyte in a sample, and has an electrode harmless to the human body to detect an analyte with high sensitivity and selectivity, thereby being usefully applied to a wearable device of detecting bioinformation.
Abstract:
The present disclosure provides a peptide including one or more amino acid sequence selected from a group consisting of SEQ ID NO 1 and SEQ ID NO 2 and binding specifically to a graphitic material, a phage including same, and a graphitic material including a graphitic surface on which the peptide or the phage is arranged.
Abstract translation:本公开内容提供了包含一个或多个选自SEQ ID NO 1和SEQ ID NO 2的氨基酸序列并且特异性结合石墨材料的肽,包含其的噬菌体和包含石墨表面的石墨材料 其中肽或噬菌体被排列。
Abstract:
A perspiration mapping patch according to the present disclosure is attached to skin of a user to absorb sweat, and includes: a sweat absorbing layer in which a plurality of opening units is arranged: a first support layer which is stacked on a first surface of the sweat absorbing layer and includes an opening opened to correspond to each of the plurality of opening units: and a second support layer stacked on a second surface facing an opposite side of the first surface of the sweat absorbing layer.
Abstract:
Provided is a sensor patch configured to be attached to the skin of a user. The sensor patch may include: at least one opening; and a frame surrounding the at least one opening, wherein the frame may include at least one senor configured to measure a biosignal of the user. Therefore, since the at least one sensor for measuring a biosignal is provided on the frame surrounding at least one opening, it may be possible to continuously obtain a biosignal of the user for a long period of time.
Abstract:
Disclosed herein is a smart wearable lens mounted with an all-solid-state thin film secondary battery including a flexible substrate, a cathode current collector, a cathode, a solid electrolyte, an anode, and an anode current collector. The smart wearable lens mounted with the all-solid-state thin film secondary battery may be stably and continuously supplied with power and has a low self-discharge rate. In addition, the smart wearable lens may minimize aversion when humans are wearing the smart wearable lens and be suitably used for a curved lens, especially a micro-lens such as a contact lens.
Abstract:
Disclosed are a circuit for providing an artificial tactile neuron, and an apparatus for predicting a disease based on the circuit for providing an artificial tactile neuron. The circuit for providing an artificial tactile neuron according to an embodiment includes a piezoresistive device that receives pressure applied from an external object and changes a magnitude of resistance based on the pressure; and a switching device that changes a magnitude of resistance based on a voltage applied from an input voltage, wherein the pressure and a mechanical property of the external object are quantified from an output voltage set based on the input voltage and the voltage applied to the switching device.
Abstract:
Disclosed is an electronic skin sensor patch which is attached to a skin of a user and measures a bio signal, the electronic skin sensor patch including: a patch body including a frame which is formed with an opening and is made of a mechanical metamaterial; a sensing unit disposed on a first region of the patch body; a sensor system unit disposed on a second region of the patch body and configured to maintain a nonadherent state with the skin; and a wiring disposed along the frame of the patch body and configured to connect the sensing unit and the sensor system unit.
Abstract:
A sweat sensor patch of the present disclosure is a sweat sensor patch attached to a skin of a user and used, and includes: an opening formed layer which has a first surface and a second surface which face in opposite directions, and includes an opening penetrating in a thickness direction from the first surface to the second surface; an electrode layer formed on an inner wall surface of the opening; a porous layer which is stacked on the second surface of the opening formed layer and is formed to cover the opening; and a porous pillar which extends in the thickness direction of the opening formed layer within the opening and is connected with the porous layer.