Abstract:
A pad for generating rhythmic sound waves according to an embodiment of the present disclosure comprises: at least two first patterns configured to generate a first sound wave in response to friction; and at least two second patterns configured to generate a second sound wave in response to the friction, wherein each of the first patterns is spaced and positioned in a constant distance, the at least two second patterns are positioned between the spaced first patterns, and for each of specific directions between the spaced first patterns, the first patterns and the second patterns are spaced and positioned in a different distance.
Abstract:
A touch screen guide is provided that includes an edge-shaped frame disposed on a surface of a touch screen and both ends of an inside surface of the edge-shaped frame includes first guide grooves. A menu guide has both ends movably inserted into the first guide grooves of the frame, a substantial center is longitudinally provided with a moving space, and upper and lower portions of an inside are provided with second guide grooves. A touch guide includes upper and lower portions movably inserted into the second guide grooves of the menu guide and a substantial center is provided with an insertion space. Accordingly, a user may recognize which button is being operated when touching the touch screen viewing the screen to prevent the touch screen from being erroneously operated, thereby improving the convenience of use and the marketability.
Abstract:
A device that causes a driver not to feel passive task-related fatigue by performing interaction with the driver at a time when the driver feeling passive task-related fatigue, thereby promoting safe driving. In particular, phrase “the interaction with the driver” refers to a series of operations viewing quiz data or beat sequence data to the driver, receiving a response, and visually, acoustically, and tactilely informing a result according to the response, and a control of each component for the operation.
Abstract:
A BCG analysis system includes a vehicle behavior sensor, a posture measurement sensor, a pattern database, a BCG measurement unit, a signal processing unit, and a biostate recognition unit. The vehicle behavior sensor measures the physical momentum of a vehicle. The posture measurement sensor measures the posture of a testee. The pattern database stores standardized representative patterns. The BCG measurement unit measures the BCG signal of the testee. The signal processing unit obtains desired data by matching the BCG signal with a pattern of the pattern database, searching the pattern database for a new pattern when the posture of the testee and the physical momentum of the vehicle may be changed, and matching the BCG signal of the BCG measurement unit with the new pattern. The biostate recognition unit recognizes the biostate of the testee.