Abstract:
An electronic product and its cable set are provided in which the cable set includes a cable assembly and a connector. The connector includes a single magnet block, a metal unit and two conductive ends. The metal unit is fixed and contacted with outer surfaces of the single magnet block, and is electrically connected to the cable assembly for attracting and electrically connecting to a portable electronic device. The conductive ends respectively penetrate through the single magnet block and electrically connect to the cable assembly for electrically connecting to the portable electronic device.
Abstract:
An electronic device is provided, including a housing, a circuit board, a fixed member, a curved groove formed on the fixed member, a slider, and a supporting member. The circuit board is disposed in the housing. The fixed member is fixed to the housing. The slider is movably disposed in the groove, and the supporting member is connected to the slider. When the slider moves from a first position to a second position in the groove, the slider protrudes from the housing for supporting the housing, and an angle is formed between the supporting member and the housing.
Abstract:
A telehealth care system is configured to provide a first service, in which the first service includes a first operation and a second operation. The telehealth care system includes a first host terminal, first electronic devices, and a central data center. The first electronic devices are configured to correspond to the first host terminal. The central data center is connected to the first host terminal and the first electronic devices. The first electronic devices are configured to perform the first operation via the central data center, and to perform the second operation via the first host terminal. The data processed by the first operation has a first data attribute, the data processed by the second operation has a second data attribute that is different from the first data attribute.
Abstract:
A video conferencing system is provided. The video conferencing system includes: a first video conferencing terminal; a second video conferencing terminal, for establishing a video conference with the first video conferencing terminal via a peer-to-peer connection; and a management server. When a user needs to add a third video conferencing terminal to the video conference to establish a multi-way video conference, the first video conferencing terminal and the second video conferencing terminal automatically terminate the peer-to-peer connection, and connect to the third video conferencing terminal through the management server to perform the multi-way video conference.
Abstract:
An optical touch module and an optical multi-touch device are disclosed. The optical touch module includes a glass panel, a control board unit and plural optical sensing sets. The glass panel is divided into a sensing zone and a peripheral zone surrounding the sensing zone. The control board unit is disposed on a rear surface of the glass panel and located completely within the peripheral zone. The optical sensing sets are disposed at intervals within the peripheral zone of the glass panel. The optical sensing sets are electrically connected to the control board unit, and the optical sensing sets and the control board unit jointly form a single-row serial connection structure.
Abstract:
An apparatus adapted to house a component oriented in a first direction used for facilitating insertion and removal of the component in a second direction to/from a chassis, the first direction orthogonal to the second direction. The apparatus can be a caddy with an attached pivoting handle. Pivoting the handle in the first direction down towards the caddy causes the hard drive to slide in the second direction to couple with a hard drive coupling on the chassis. In some implementations, the caddy houses a hard drive in a vertical orientation, such that multiple hard drives can be coupled side-by-side to each other. In some implementations, the caddy is removably attached to the chassis. The chassis can comprise a rail, and the handle can comprise a hook. The hook attaches to the rail forming a removable attachment that allows for easy removal and insertion of the caddy.
Abstract:
A portable electronic apparatus and a power management method are disclosed. The portable electronic apparatus comprises a processor and an embedded controller (EC). The EC determines whether the processor starts a throttling mechanism according to a current power consumption, a proportional term, a last power consumption, a lower bound, a delta power and a derivative term. The EC determines whether the processor cancels the throttling mechanism according to the current power consumption, the lower bound, a count that the power consumption is lower than the lower bound, and an integral term.
Abstract:
A rack server system and an operating method applicable thereto are provided. The rack server system includes a battery backup unit (BBU) and at least one server. The operating method includes: communicating the server and the BBU with each other; the BBU providing a status information and a previous self-discharging test information to the server for the server to judge a status of the BBU; and providing power from the BBU to the server and adjusting a loading of the server according to the status information of the BBU when an input power is interrupted.
Abstract:
An example method to perform rate control in a parallel encoding system including a plurality of parallel encoders is disclosed. The method may comprise determining a quantization parameter for one of the plurality of parallel encoders based on a measure of parallelism of the plurality of parallel encoders. The method may further comprise providing the quantization parameter to the one of the plurality of parallel encoders to encode a chunk of a video sequence to generate an encoded chunk based on the quantization parameter.
Abstract:
A rack server system and a control method thereof are provided. The rack server system establishes a communication link for communicating with a battery backup unit. The battery backup unit is connected to a power input port of the rack server system, and includes a number of battery modules connected with each other in parallel. The rack server system controls the battery backup unit to perform validity test on a first battery module during a first period and to perform validity test on a second battery module during a second period, wherein the first period and the second period are not overlapped with each other.