Abstract:
An interaction method between wearable devices comprises: sending a detection signal from a first wearable device to detect a second wearable device according to a predetermined interaction rule used by the first wearable device and the second wearable device; sending a response signal to confirm the interaction from the second wearable device to the first wearable device according to the predetermined interaction rule after the second wearable device receives the detection signal; establishing an interaction communication between the first wearable device and the second wearable device after the first wearable device receives the response signal, interacting between the first wearable device and the second wearable device according to the predetermined interaction rule. The method of the present invention enhances the intelligence and social function of the wearable devices.
Abstract:
The present invention relates to a casing and protective shell for a mobile electronic device. The casing includes an outer layer having a first side exposed to the outside, and a second side opposite to the first side; a flexible buffer layer having a first side connected to the second side of the outer layer, and a second side opposite to the first side of the buffer layer; and a layer for holding, which has a side connected to the second side of the buffer layer.
Abstract:
An unmanned vehicle includes a vehicle body having an accommodating space, an arm assembly coupled to the vehicle body, and a floating member connected to a bottom surface of the vehicle body. The arm assembly includes a first rotating member, a second rotating member coupled to the first rotating member, and a propeller. The propeller includes a rotatable axle coupled to the second rotating member and extending along a rotating axis. The second rotating member can turn the propeller by rotating the rotatable axle about the rotating axis. The first rotating member can rotate and effect a movement of the second rotating member so as to selectively adjust the rotatable axle to align the rotating axis with a first axial direction and a second axial direction. The arm assembly can rotate relative to the vehicle body to selectively rotate into or out of the accommodating space.
Abstract:
The present disclosure provides a method of printing self-assembling multiple models and apparatus to proceed the method. The method includes doing an organic combination of a plurality of small-sized three dimension printing models within a printable size range of a three dimension printing machine, and then adopting the three dimension printing machine to print the organic combination of a plurality of small-sized three dimension printing models, after that disassembling the organic combination of the small-sized three dimension printing models into the small-sized three dimension printing models.
Abstract:
An intelligent venue entrance guiding system provides guidance to locations in a venue divided into at least one area, and includes a client wireless device, at least one wireless access point installed in the area, and multiple location indicator devices installed in the area. The location indicator devices emit a first indication light according to the area. The wireless access point records location numbers associated with the location indicator devices respectively, and is connected to the location indicator devices. The client wireless device stores location information and emits a second indication light according to the location information. When the client device is within a scanning region of the wireless access point and the location information is matched with one of the locations numbers recorded, the client device displays a reminder message and controls the state of the first indication light of the location indicator device associated with the location information.
Abstract:
A method of generating a 3D model from an object comprises: gathering a plurality of images of an object, and the object distance is modified to generate different images; computing the sharpness of each pixel of each image; defining each of the images being on a plane, and each of the planes corresponds to a 2D space which also corresponds to a Z-axial value; comparing the sharpness of points with the same 2D coordinate of all the planes, and picking up the plane with the most sharpness point, and then combining the 2D coordinate and the Z-axial value of the picked plane, to get a 3D coordinate; repeating the last process to get a plurality of 3D coordinate; gathering a 3D model according to the 3D coordinate. This invention is able to be achieved with the prior imaging device and the whole process of gathering a 3D model is simplified.
Abstract:
A nozzle adjustment device for a three-dimensional forming equipment assembly includes a first guiding block, a second guiding block, and a moving block. The first guiding block has a first inclined surface and a first bottom surface which is parallel to a printing platform. The first inclined surface and the first bottom surface form an acute angle therebetween. The second guiding block has a second inclined surface. The moving block is located between the first guiding block and the second guiding block. The moving block has a third inclined surface, a fourth inclined surface, and a second bottom surface. The second bottom surface is parallel to the printing platform, and has a nozzle disposed thereon.
Abstract:
A method for watching high-definition cable TV programs includes: a blue-tooth learning remote controller learning remote-controller controlling instructions of a high-definition cable TV set top box, and uploading the learned instructions to a smart terminal such that the smart terminal controls the high-definition cable TV set top box; the smart terminal controlling the high-definition cable TV set top box to choose high-definition cable TV programs; the high-definition cable TV set top box outputting a HDMI signal; the smart TV dongle receiving the HDMI signal, and outputting the HDMI signal to a high-definition TV; the smart TV dongle performing an encoding and a packing on the HDMI signal and then transmitting the packed signal to the smart terminal by using a wireless manner; and the smart terminal performing a de-packing and a decoding on the received signal and then playing the decoded signal on the smart terminal.
Abstract:
A connective transmission device of the invention may include a first interface configured to connect to a first device; a second interface configured to connect to a second device; and a control module connected to the first interface and the second interface. When the first interface is connected to the first device and the second interface is connected to the second device, the control module is configured to connect the first device and the second device for data transmission or power transmission, or configured to receive a media message from the first device or the second device.
Abstract:
A fixture applicable for breaking a circuit board includes: a bottom board, comprising a front side and a back side opposite to the front side; a breaking mechanism, disposed on the front side of the bottom board, and comprising a fixing board and a flap board adjacent to the fixing board, an axis line defined between the fixing board and the flap board, the flap board being flapped along the axis line, and the circuit board being placed on the fixing board and the flap board; a first platen, including a first moving device disposed on a side of the fixing board for fixing the circuit board onto the fixing board by the first moving device; and a second platen, including a second moving device disposed on a side of the flap board for fixing the circuit board onto the flap board by the second moving device.