Abstract:
A method of analyzing power usage and an electronic apparatus are provided. The method includes the following steps. Power usage data from power usage recording devices within a time interval are collected, wherein each of the power usage data includes a plurality of data points. A dissimilarity between every two of the collected power usage data is calculated. The collected power usage data are classified according to the dissimilarities into a plurality of classifications. The power usage data are displayed, wherein the power usage data belonging to different classifications are shown by different colors.
Abstract:
Embodiments of the present disclosure include an apparatus and a method for connecting a first device and second device. An apparatus includes an angled connector configured to connect to a first device to a second device, the first device and the second device configured to communicate through signal paths in the connector, the signal paths configured to pass digital data signals, a fastening device configured to secure the angled connector to the first device.
Abstract:
A bioelectrical impedance measurement apparatus is provided. A power signal and a frequency regulation signal for driving a measurement unit of the bioelectrical impedance measurement apparatus to perform bioelectrical impedance measurement are provided through a first sound channel output terminal and a second sound channel output terminal of a host device, and a bioelectrical impedance measurement result is received by a microphone input terminal of the host device.
Abstract:
A cleaning apparatus adapted to clean at least one object is provided. The cleaning apparatus includes a chamber, a fixed assembly, a movable assembly and a driving unit. The chamber is adapted to receive a cleaning liquid. The fixed assembly is disposed within the chamber. The movable assembly is movably disposed on the fixed assembly. The object is adapted to be hanged on the fixed assembly or the movable assembly. The driving unit is connected to the movable assembly and adapted to drive the movable assembly to perform a reciprocating motion along a first direction, so that the object is clapped by the fixed assembly and the movable assembly.
Abstract:
A method for controlling an electronic apparatus, a handheld electronic apparatus, and a monitoring system are provided. An image within an image capturing range is displayed on a display unit by an image capturing unit. A digital stamp in the image is detected. The digital stamp corresponds to a single or multiple controllable devices. A control interface corresponding to the digital stamp is displayed on the image. An operation action a user executes on the control interface is detected so as to control the controllable device corresponding to the digital stamp.
Abstract:
A bioelectrical impedance measurement method is provided. A power signal and a frequency regulation signal for driving a measuring unit to perform bioelectrical impedance measurement are provided from a first sound channel output terminal and a second sound channel output terminal according to a measuring mode of a host device, and a signal measured and mixed is received by a microphone input terminal of the host device, and a bioelectrical impedance measurement result is analyzed and displayed by the host device.
Abstract:
A dressing is provided. The dressing includes a back layer, a composite substrate, and a gel layer. The back layer has a surface. The composite substrate is disposed on the surface of the back layer, and includes a substrate layer and at least one barrier layer. The barrier layer is disposed between the back layer and the substrate layer. The gel layer is disposed on the composite substrate, wherein the substrate layer is located between the gel layer and the barrier layer. The barrier layer prevents liquid from permeating from the substrate layer to the surface of the back layer.
Abstract:
A channelization method of digital content and an audio-video server system are provided. A received operational behavior is packaged as an execution module, and the execution module is associated with a channel number. A correlation between the channel number and the execution module is recorded in a local channel list. Accordingly, when a switch command that contains the channel number is received, the execution module corresponding to the channel number is obtained from the local channel list, so as to perform the operational behavior to use the digital content.
Abstract:
A fail recovery method and an Internet of Things (IoT) system and a charging system using the same are provided. The fail recovery method includes following steps: providing a plurality of gateway devices, in which at least one of the gateway devices preset to provide a wireless network service to at least one IoT device and at least another one of the gateway devices preset to provide the wireless network service to at least one user device; mutual confirming an operation state of other one of gateway devices by the gateway devices; and when the one of the gateway devices is determined as failed, using the another one of the gateway devices to replace the failed gateway device, so as to simultaneously provide the wireless network service to the IoT device and the user device by the another one of the gateway devices.
Abstract:
A method for automatically establishing a wireless connection, a gateway device and a client device for internet of things (IoT) using the same are provided. According to the provided method, SSID of the gateway device can be composed of an encrypted access password and an index, so that the client device may identify the gateway device to be connected according to the index within the SSID string and acquire the encrypted access password from the SSID string. Therefore, the client device can decrypt the encrypted access password. Accordingly, the wireless connection between the client device and the gateway device can be automatically established since the client device acquires the access password from the SSID of the gateway device.