Abstract:
An electronic device is provided in disclosure. The electronic device includes a processor and a plurality of touch displays. The touch display is electrically connected to the processor, the touch display including: a touch detection unit and a touch processing unit. The touch detection unit is configured to detect a touch operation and generate a touch signal, and the touch processing unit is electrically connected to the touch detection unit for receiving the touch signal. The touch detection unit is configured to transmit the touch signal to the touch processing unit or the processor. The electronic device reduces a burden of the processor and enhances efficiency of the processor.
Abstract:
A wearable electronic device comprising a wearable component and a device body is provided. The device body is connected to the wearable component. The device body includes a processor, a main light source, an auxiliary light source and a light sensor. The light sensor is electrically connected to the processor. An absorptivity to main rays from the main light source by human blood is more than twice of the absorptivity to auxiliary rays from the auxiliary light source. The light sensor detects intensities of the main rays and the auxiliary rays reflected by the human body. The processor corrects an error of the intensity of the main rays received by the light sensor according to the intensity of the auxiliary rays received by the light sensor to obtain a heart rate. A method for detecting a heart rate is also provided.
Abstract:
A wearable electronic device comprising a wearable component and a device body is provided. The device body is connected to the wearable component. The device body includes a processor, a main light source, an auxiliary light source and a light sensor. The light sensor is electrically connected to the processor. An absorptivity to main rays from the main light source by human blood is more than twice of the absorptivity to auxiliary rays from the auxiliary light source. The light sensor detects intensities of the main rays and the auxiliary rays reflected by the human body. The processor corrects an error of the intensity of the main rays received by the light sensor according to the intensity of the auxiliary rays received by the light sensor to obtain a heart rate. A method for detecting a heart rate is also provided.
Abstract:
An optical measurement device and an optical measurement method for measuring a gap on an electronic device are provided. The optical measurement device includes an image capture device and an image processing device. The image capture device is used to capture an image including a gap. The electronic device includes a body and a component assembled on the body. The gap of the electronic device is existed between the body and the component. The image processing device is coupled to the image capture device. The image processing device is used to receive the image, and the image scanning operation is executed to the image to measure the breadth of the gap. The precise measurement result is quickly obtained.
Abstract:
An optical measurement device and an optical measurement method for measuring a gap on an electronic device are provided. The optical measurement device includes an image capture device and an image processing device. The image capture device is used to capture an image including a gap. The electronic device includes a body and a component assembled on the body. The gap of the electronic device is existed between the body and the component. The image processing device is coupled to the image capture device. The image processing device is used to receive the image, and the image scanning operation is executed to the image to measure the breadth of the gap. The precise measurement result is quickly obtained.