Abstract:
An Unmanned Aerial Vehicle (UAV) includes a fuselage, a plurality of rotors, and a sensor, wherein the fuselage includes a control module and a signal processing module, and the control module is connected the arms, which is used to control the rotation of arms. The sensor is configured to the fuselage of the UAV, which is used to detect the rotation change value of the UAV. The signal processing module is connected with the sensor and the control module, which is used to receive and analyze the signal of the sensor, and the control module controls the following flying of the UAV.
Abstract:
A body fat measuring apparatus, system and pairing method thereof are provided. The body fat measuring apparatus and system include: a measuring unit provided for determining a current body weight and a current impedance of a user, and the current body weight and the current impedance used as a current analysis data set; a storage unit provided for cumulatively storing a user name, a user characteristic information related to the user name, and a plurality of recorded analysis data sets corresponding to the user names; and a processor provided for pairing the user name, reading the user characteristic information related to the user name, and obtaining a body fat information by calculating with the current body weight and the current impedance of the user.
Abstract:
The present invention provides a residue removing device for removing residues in a partition plate, and a related 3D printer for use on a working platform. The partition plate e.g. of a 3D printer has a plurality of openings arranged in an array, and residues may be filled in the openings. The residue removing device includes a base plate and a plurality of jutting pins disposed on an upper side of the base plate. The jutting pins are arranged in an array corresponding to the openings array such that the jutting pins are capable of being inserted into the openings, in order to easily remove the residues in the openings of the partition plate.
Abstract:
A system for memorizing object location, for detecting an object storage position, includes: a wireless sensor module disposed in an interior space to generate a wireless sensor signal; a mobile device having an application program to start and initialize the wireless sensor module, the application program having a function of using the wireless sensor signal to calculate out a positioning data, and producing an object position integration information; and a cloud storage server connected to the mobile device via a communication link to receive the object position integration information and store the information in an object position memorizing database.
Abstract:
A touch display device including a user interface and a processor is provided. The user interface is for generating a plurality of touch sensing signals and a plurality of drag signals, wherein each drag signal includes information of a touch start position and a touch end position. The processor is configured to generate a plurality of drag vectors using the drag signals by calculating a relative distance and drag direction from the touch start position to the touch end position, determine if the touch sensing signals and the drag vectors match a predetermined condition, and, based on the determination, perform an application program to generate a virtual object displayable on the user interface and control the virtual object in a pilot mode or a settings mode.
Abstract:
A panoramic scene capturing and browsing system includes a panoramic scene capturing device and a mobile device. The headset panoramic scene capturing device in communication with the mobile device by point to point data transmission, whereby the user can instantly view each image capturing screen via the mobile device from headset panoramic scene capturing device, then control the headset panoramic scene capturing device to capture the panoramic scene. Other hand, the present invention utilizes a mobile device contained accelerometers and gyroscopes to detect the status of a mobile device, and corresponding to the panoramic scene position, to increase the panoramic scene reality feeling and to enhance the experience of user.
Abstract:
Disclosed are an intake analysis system and a method thereof comprising an intake sensing device and a cloud computing device. The intake sensing device may be installed in a container containing an ingesta, providing for analyzing a component of the ingesta to generate a detecting signal, and sensing a weight variation of the container having the ingesta therein to generate a weight sensing signal; the cloud computing device receives the detecting signal and weight sensing signal transmitted and calculates a calorie value and an intake value to generate substance ingested information, and compares the calorie value and the intake value. When the calorie value or intake value is greater than a predetermined value respectively, the cloud computing device generates a noticing signal, and transmits the substance ingested information and noticing signal to the intake sensing device, and the intake sensing device displays the substance ingested information and noticing information.
Abstract:
A three-dimensional printer with detecting printing accuracy and a method for detecting printing accuracy is provided. The three-dimensional printer with printing accuracy detection includes a three-dimensional model conversion unit, a printing path locating unit, a printing path drawing unit, and a comparison unit. An actual printing path is drawn according to the real-time captured location information of a nozzle head of the three-dimensional printer and compared with a predetermined printing path, which may implement the detection of printing accuracy. The method for detecting printing accuracy may implement the accuracy detection of the three-dimensional printer and be capable of detecting the accuracy for the three-dimensional printer. The method for detecting printing accuracy also reminds an operator to check and maintain printing accuracy of the three-dimensional printer.
Abstract:
A printing-height increasable three-dimensional printer includes a base, an elevating shaft, an elevating platform, a first driving module, a working platform, a printing nozzle, and a second driving module. The elevating shaft is connected to the base. The elevating platform is slidably connected to the base. The first driving module is configured to drive the elevating shaft to make the base move along a direction, and is configured to drive the elevating platform to reversely move relative to the base along the direction. The working platform is slidably connected to the elevating platform. The printing nozzle is connected to the base and is configured to print on the working platform. The second driving module is configured to drive the working platform to move between the printing nozzle and the elevating platform.
Abstract:
The present invention provides an electrical device having a power saving mode, a sleep mode, and a run mode of an OS system. A modality switch controls an on-off of the battery module and the OS system for achieving to switch between the power saving mode and other modes. The power saving method mentioned above can apply to the shipment and the storage of the electrical device to reduce the power consumption of the battery.