Abstract:
A massage device includes a housing, and a first driving assembly, a second driving assembly, and a massage assembly received in the housing. The first driving assembly includes a first driving motor. The second driving assembly includes a second driving motor mounted to the housing, and a shaft handle mounted to the second driving motor and abutting against a bottom surface of the second end. The massage assembly includes a fixing frame and a massager received in the fixing frame. The fixing frame includes a first end pivotally connected to the housing and an opposite second end. The first driving motor can drive the massager reciprocally. The second driving motor can drive ends of the shaft handle to move circumferentially, thereby causing the second end to move back and forth perpendicular to the extending direction.
Abstract:
The BLUETOOTH® indoor positioning system can include a plurality of mobile phones forming a signal coverage area indoor and a server. The mobile phone is configured to transmit, receive BLUETOOTH® signals and generate, transmit position information. The server is configured to receive the position information and process the position information to be position coordinates. A method for BLUETOOTH® indoor position executed by a BLUETOOTH® indoor positioning system is also provided. A wearable terminal is also provided.
Abstract:
A high density sensor module includes a first substrate, a plurality of first sensors positioned on the first substrate, a plurality of first conductive rods positioned on the corresponding first sensors, a first package resin member covering the first sensors and one end of each of the first conductive rods, a second substrate positioned on the first package resin member, a plurality of second sensors positioned on the second substrate, and a second package resin member covering the second sensors and another end of each of the first conductive rods. The first conductive rods pass through the first package resin member and the second substrate. The high density sensor module has a two-layer structure to increase the number of the sensors such that the sensing density and resolution of the high-density sensor module are increased.
Abstract:
An interactive personal robot includes a basal body, a memory set in the basal body, a rotating mechanism connected to the basal body, a camera and a microphone assigned on the basal body and a control system set in the basal body. The camera is used to capture an image of a user's eyes. The microphone is configured to record audio of the user. The control system is used to process the image and the audio, to compare the image and the audio processed with the image and audio stored in the memory to gain a corresponding instruction, and to control the rotating mechanism, the rotating mechanism in turn the interactive personal robot to move.
Abstract:
A fetal health monitoring belt includes a main body and a fixing part, wherein the main body includes an ultrasonic sensor, at least one ECG sensor and a microcontroller which includes a control module, a signal processing module and a data transmitting module, and the control module electrical connects the ultrasonic sensor. The ultrasonic sensor detects the location of the beating heart of the fetus, and transmits a location signal to the control module. The control module receives the location signal and transmits a detection signal to the corresponding ECG sensor. The ECG sensor detects the ECG signal and processes the signal by the signal processing module, and transmits the signal by the data transmitting module.
Abstract:
An item of luggage can communicate with a mobile terminal via NFC protocol. A first NFC reader is attached to the luggage item. The first NFC reader includes a reading unit and a memory. The reading unit receives object identification information from an NFC tag attached to every object brought into the near field of the luggage item, and stores the object identification information in the memory. When the mobile terminal is itself brought into the near field of the luggage item, the mobile terminal is given the stored object identification information from the memory, and the object identification information read by the mobile terminal is output for the information of a user.
Abstract:
An ultrasonic sensor can include a substrate, a first electrode, a sensing layer and a second electrode. The first electrode is coupled on the substrate. The sensing layer is coupled on the first electrode. The sensing layer has piezoelectric properties. The second electrode is coupled on the sensing layer. The second electrode has an electric conduction circuit formed thereon. A method for manufacturing the ultrasonic sensor is also provided. An ultrasonic sensor array is also provided.
Abstract:
The present disclosure relates to a robot control system, the robot control system includes a mobile terminal coupled to a robot. The robot includes a sensing module, a controller and a first display, the mobile terminal includes a control system and a wireless communication module, the control system includes an image module; the sensing unit is used to sense a force acting on the robot and a direction of the force, the controller controls the robot to transfer the information of the force and the direction to the wireless communication module by a cloud, the image module processes the information of the force and the direction of the force to gain an emotion signal, the wireless module and the cloud transfer the emotion signal to the robot, the controller controls the first display to display a corresponding emotion icon.
Abstract:
A driving component for robot can include a communicating module configured to receive control signals, a motor, a controller coupled to the communicating module and configured to drive the motor according to the control signals received by the communicating module, a sensor configured to detect environment and providing detected results to the controller, a battery configured to provide electric power to the communicating module, the motor, the controller and the sensor, and a housing containing the communicating module, the motor, the controller, the sensor and the battery. The housing can include a coupling structure configured to couple to another driving component.
Abstract:
A touch pen includes a casing, a pen core received in the casing, a vibrating member, a pressure sensor received in the casing, and a processor. The pressure sensor is attached to the pen core, and can generate an electric signal after sensing a pressure delivered by the pen core. The processor is electrically coupled to the vibrating member, and configured to convert the electric signal to a control command. The control command is configured to control the vibrating member to vibrate.