Abstract:
A video conferencing system is provided. The video conferencing system includes a first video conferencing apparatus and a second video conferencing apparatus. A video/audio connection of a video conference between the first and second video conferencing apparatuses is established via an SIP channel. When the video/audio connection of the video conference has been established, a transparent layer is activated on the first and second conferencing apparatuses. When the first and second video conferencing apparatuses are switched to an external output projection mode, first and second touch events are input on the first and second video conferencing apparatus, and the first and second touch events are respectively transmitted to the second and first video conferencing apparatuses via the SIP channel. The first and second video conferencing apparatuses draw the second and first touch events on a first user interface and a second user interface.
Abstract:
License management methods for use in a license management system are provided. The license management system includes licenses and first devices, each of which obtains one of the licenses. First, a license request from a second device is received and a license grade for each of the first devices and the second device is separately calculated based on a historical record of license usage corresponding to the first devices and the second device and an algorithm in response to the license request. Then, whether to agree the second device to obtain one of the licenses is determined according to the calculated grades and the number of remaining available licenses within the licenses.
Abstract:
In some implementations, a hybrid cooling apparatus can be used to cool computing components within a computing device. For example, the apparatus can comprise a plurality of conductors coupled at one end to a plurality of heat generating computing components. The plurality of conductors can be coupled at another end to a liquid cooling rack. The liquid cooling rack can comprise a radiator, and the plurality of conductors can be coupled to the liquid cooling rack at the radiator. The liquid cooling rack can be adapted to cycle cold liquid coolant through the radiator. Heat generated by the computing components is conducted through the conductors to the radiator and dissipated by the cold liquid coolant.
Abstract:
In some implementations, cooling fans can be mounted in a server chassis using a multi-level vibration dampening mechanism to reduce the transmission of fan vibrations to the server chassis. For example, a plurality of cooling fans can be housed within a plurality of fan cages. The plurality of fan cages can be mounted to a cooling fan tray. The cooling fan tray can be mounted to the chassis. For example, the mountings used to attach the fan cages to the tray and the tray to the chassis can include resilient vibration dampers. Thus, the vibrations generated by the cooling fans can be more effectively reduced and operation of vibration sensitive server components can be improved.
Abstract:
A cloud service system and a cloud service method thereof are disclosed herein. The cloud service method includes the following steps. A target file is downloaded to a private cloud system. A resource allocation setting corresponding to the target file is obtained. A resource establishment is automatically deployed according to the resource allocation setting, and the target file is installed on the resource allocation setting. A data structure and a default data corresponding to the target file are configured automatically.
Abstract:
The invention provides a resource monitoring system. The monitoring unit inputs the collected monitoring data to a data-monitoring queue. The monitoring data stored in data-monitoring queue is inputted into a database. A trigger event is created when the monitor data satisfies the corresponding triggering conditions. In addition, an disposal mechanism is processed according to the triggering event. As such, the system can reply the trigger event at time.
Abstract:
Various embodiments of the present technology provide methods for managing two or more PSUs of a server system according to one or more PSU management algorithms. Some embodiments determine present and/or predicted loading of a server system and loading of each of the two or more PSUs of the server system. A first subset of the two or more PSUs can be turned off based at least upon the current and/or predicted loadings of the server system and the loading of the two or more PSUs. The current loading of the server system can be rebalanced among a second subset of the two or more PSUs that are in operation. One or more PSUs in the first subset and the second subset of the two or more PSUs can be periodically swapped according to the one or more PSU management algorithms.
Abstract:
A computing device can be used to set up cabling connections in a network. The computing device can send a first message to a test device through a switch of a server rack. The computing device can receive a response from the test device, and identify a port of the switch currently connected to the test device based on the response. The computing device can use configuration data mapping ports of the switch to servers in the server rack to identify a particular server corresponding to the identified switch port. The computing device can send a second message to the particular server to cause a light of the particular server to be turned on.
Abstract:
A computer device is disclosed. The computer device includes a central processing unit (CPU), a chipset, an input/output (I/O) chip, a general purpose I/O (GPIO) interface, and a smart battery. The chipset is electrically connected to the CPU. The I/O chip is electrically connected to the chipset. The GPIO interface is electrically connected to the CPU. The smart battery is electrically connected to the GPIO interface and the I/O chip. The CPU reads information of two bytes saved in the smart battery through the GPIO interface and determines a relative processing according to information of two bytes when a status of the smart battery is changed.
Abstract:
A server rack and its server device are provided. The server device includes a chassis, a motherboard module, a power-supply module, a storage array module, and a plurality of input/output interface elements. The chassis is provided with a containing space, a first opening and a second opening in which the first opening and the second opening are located at two opposite ends of the containing space. The power-supply module and the motherboard module are both disposed in the containing space and are pluggable independently, are both capable of plugging in and out from the chassis via the first opening, and are electrically connected to each other. The input/output interface elements are fixed on the motherboard module, and all of them are disposed at the first opening. The storage array module is disposed in the containing space and is slidable.