Abstract:
A model constructing method for audio recognition is provided. In the method, audio data is obtained. A predicted result of the audio data is determined by using the classification model which is trained by machine learning algorithm. The predicted result includes a label defined by the classification model. A prompt message is provided according to a loss level of the predicted result. The loss level is related to a difference between the predicted result and a corresponding actual result. The prompt message is used to query a correlation between the audio data and the label. The classification model is modified according to a confirmation response of the prompt message, and the confirmation response is related to a confirmation of the correlation between the audio data and the label. Accordingly, the labeling efficiency and predicting correctness can be improved.
Abstract:
An infrared control device is configured for use in a mesh network environment to control a controlled device by transmitting an infrared signal. The controlled device includes an identification tag. The identification tag includes a first control instruction. The control device includes a tag identification module and a database. The tag identification module scans the identification tag to identify the first control instruction. The database is electrically connected to the tag identification module to store the first control instruction.
Abstract:
An Ethernet transmission line includes two RJ45 connectors and a thin connection line. Each RJ45 connector has a connection terminal group, and the connection terminal group includes a first terminal, a second terminal, a third terminal, a fourth terminal, a fifth terminal, a sixth terminal, a seventh terminal, and an eighth terminal that are sequentially arranged. The thin connection line is connected between the two RJ45 connectors and the thin connection line includes a first flexible printed circuit board layer, a second flexible printed circuit board layer, and a spacing layer. The first flexible printed circuit board layer is provided with two first transmission lines respectively electrically connected to the third terminal and the sixth terminal. The second flexible printed circuit board layer is provided with two second transmission lines respectively electrically connected to the fourth terminal and the fifth terminal.
Abstract:
An assemblable wireless Internet connected apparatus and an integrated function system are provided. The integrated function system includes a function-extended apparatus and the assemblable wireless Internet connected apparatus. The function-extended apparatus includes a first communication interface complied with USB and UART standards. The assemblable wireless Internet connected apparatus includes a wide area network wireless communication module, a second communication interface and a computation-and-controlling unit. The wide area network wireless communication module connects the Internet. The second communication interface is used for engaging with the first communication interface and is complied with the aforementioned two standards. The computation-and-controlling unit communicates with the function-extended apparatus through the second communication interface, and transmits data from the function-extended apparatus to Internet through the wide area network wireless communication module. Accordingly, a separable product with heterogeneous network integration and a novel development way are provided.
Abstract:
A text message transmission apparatus and a method thereof are provided. The text message transmission apparatus includes a mobile network communication module, a subscriber line interface circuit (SLIC) module and a processor. The mobile network communication module receives a text message. The SLIC module is configured to connect to a traditional telephone set in a public switched telephone network (PSTN). The processor is coupled to the mobile network communication module and the SLIC module. The processor decodes the text message to obtain a text content of the text message, transforms the text content into a speech content, and plays back the speech content through the SLIC module. Accordingly, the text messages can be transmitted through the PSTN.
Abstract:
A message pushing system, a client equipment and a message pushing method thereof are provided. In the method, the client equipment resides in a local network, and the client equipment registers with a local server and a remote server via the local network and an external network. Then, the client equipment publishes messages or receives subscribed messages via at least one of the local network and remote network base on a publishing/subscribing mechanism. Accordingly, no matter whether the client equipment can connect to the external network, if another client equipment can connect to any server via the local or external network, published messages can be transmitted to the client equipment or another published message from the client equipment can be successfully received.
Abstract:
A data transmission selection circuit and method select one of data transmission lines between a mother system and daughter systems and transmit data via the selected transmission line. The circuit includes an inputting module, an outputting module, a switching unit, and a processing unit. The inputting module receives and sends the data. to the switching unit and the outputting module. The processing unit receives a previous switching status data (indicating that one of the data transmission lines and one of the daughter systems are connected and) created by a previous data transmission selection circuit. After analyzing the previous switching status data with an algorithm, the processing unit determines a switching status data. different from the previous switching status data, such that the switching unit connects another one of the data transmission lines and another one of the daughter systems according to the switching status data.
Abstract:
A wireless charging holder and an assembly of an electronic device and the wireless charging holder are provided. The wireless charging holder includes a body, a fixing element, a power line, a first coil, and a first magnetic element. The body is used to hold the electronic device. The fixing element has a first end connecting with the body and a second end fixed on a vehicle. The power line has a third end connecting with the body and a fourth end to plug into a socket. The first coil on the body is electronically connected with the power line. The first magnetic element disposed in the body is adjacent to the first coil. The electronic device having a second coil is fixed by the first magnetic element on the body, and the first coil overlaps the second coil to induce current for charging the electronic device.
Abstract:
A transmission station adapted to provide power to at least one network device and transmit signal to the network device is provided. The transmission station includes a housing, a network hub, and a power supply. The housing has a supporting surface, and the network device is disposed on the supporting surface. The network hub is disposed in the housing and transceives a number of transmission signals. The network hub includes a number of signal-transmitting ports to transmit and receive the transmission signals to each network device respectively. The power supply is disposed in the housing and produces multiple output power and operating power. The power supply provides the operating power to the network hub and the power supply includes a number of power-outputting ports to provide the output power to each network device respectively.
Abstract:
A ring-type remote control device, a scaling control method and a tap control method are provided. The ring-type remote control device includes a processing unit, a wireless communication module, a motion sensor module and a proximity sensor. The motion sensor module detects position information of the ring-type remote control device. The proximity sensor detects a distance variation between the first and second fingers of a user. When the processing unit determines the distance decreases according to the position information and the distance information, a reduced signal is generated and transferred to the wireless communication module. When the processing unit determines the distance increases, an enlarged signal is generated and transferred to the wireless communication module. The wireless communication module transmits a command corresponding to the reduced signal or the enlarged signal to an interactive receiving device, so as to generate an interactive operation.