Abstract:
A manufacturing method of a heat dissipation assembly includes the following steps: an accommodating concave portion and hollow areas are formed on a board body, and the hollow areas are through the board body located in the accommodating concave portion. The board body located in the accommodating concave portion is extended, such that the hollow areas are closed by the board body adjacent to the hollow areas. A heat pipe is placed in the accommodating concave portion, and the width of the heat pipe and the width of the accommodating concave portion are substantially the same. A stamping treatment is performed on the board body surrounding the accommodating concave portion to form positioning protruding portions, and the positioning protruding portions protrude toward the accommodating concave portion, such that the heat pipe is fixed between the positioning protruding portions and the accommodating concave portion.
Abstract:
A storage array module and a hard disk accommodating unit thereof are provided. The hard disk accommodating unit includes a fixing recess, a first tray and a second tray. The first tray is reciprocally and slidably disposed in the fixing recess. The second tray is reciprocally and slidably disposed on the first tray. When the second tray slides a distance in a sliding direction, the second tray pushes the first tray into the fixing recess, after the second tray reversely slides the distance in the sliding direction, the second tray pushes the first tray for protruding out of the fixing recess.
Abstract:
A heat dissipating module includes a bottom cover, a top cover, a fan body, and a heat dissipating structure. The top cover is disposed opposite the bottom cover, in which an air outlet is formed by the top cover and the bottom cover. The fan body is disposed between the top cover and the bottom cover, and the fan body provides an airflow toward the air outlet. The heat dissipating structure is disposed in front of the air outlet, in which the heat dissipating structure and the bottom cover are formed with a one-piece metal sheet. The heat dissipating structure is bent from the bottom cover toward the air outlet. The heat dissipating structure includes openings, such that the airflow passes through the openings from the air outlet and performs heat exchange with the heat dissipating structure.
Abstract:
A system for creating virtual machines, adapted to a virtual management platform, includes a configuration module, a selection module, a determination module and a distribution module. The configuration module creates a plurality of virtual sections according to the resource specifications. The selection module selects one of the virtual sections according to the customized specifications. The determination module creates a virtual section-setting profile according to the customized specifications. The determination module further calculates the quantity of the remaining resources of the virtual section, and determines whether the quantity of the customized specifications will exceed the remaining resources or not. When the quantity of the customized specifications does not exceed the quantity of the remaining resources, the distribution module creates a virtual machine in the virtual section according to the virtual section-setting profile.
Abstract:
A service controller of a computing device can store console messages so that an external management device can retrieve the console messages after a malfunction or crash of the computing device. For example, the service controller can be configured to redirect serial output (e.g., console messages, system log messages, system error message, etc.) to a network interface controller for transmission over a network connection. The service controller can be configured to store the console messages in non-volatile memory of the service controller. The service controller can receive a request for the stored console messages and transmit the stored console messages to an external device.
Abstract:
A battery protection system applicable to an electronic device includes a battery, a control module, a message generating module and an input interface. The control module is electrically connected to the battery for detecting if the battery is in an abnormal state. The message generating module is electrically connected to the control module for generating a battery-error warning message when the control module detects that the battery is in the abnormal state. The input interface is electrically connected to the control module for transmitting a user command to the control module after the battery-error warning message is generated, thereby enabling the control module to release the abnormal state of the battery according to the user command. A battery protection method is also provided.
Abstract:
A communication system and method are provided. In the communication system, a first electrical device has an end point which is configured to connect to a plurality of 3G dongles, wherein the 3G dongles have different IP addresses; a cloud server integrates the IP addresses to generate an integrated IP address when the cloud server detects that the first electrical device is connected to the 3G dongles; and a second electrical device transmits data packets with the first electrical device via the integrated IP address through the cloud server.
Abstract:
A service controller on a computing device can be configured to redirect serial output over a network using HTTP. For example, the service controller can be configured with a web server that can receive the serial output and stream the serial output to a web browser over an HTTP connection. In some implementations, the HTTP connection can be a WebSocket connection, as defined by the HTML5 specification. In some implementations, a proxy server can be configured with a web server that can receive serial over LAN (SOL) output from multiple servers and stream the SOL to a web browser on a client device.
Abstract:
A portable electrical device includes a tablet PC, a bottom plate, a support arm and a pivot portion. The tablet PC includes a breach and a first magnetic inducing member arranged inside the breach. One end of the support arm is pivoted to the bottom plate, and the other end of the support arm is pivoted to the pivot portion, and the other end of the pivot portion is with a second magnetic inducing member. When the second magnetic inducing member is moved into the breach to magnetize the first magnetic inducing member, the tablet PC is securely coupled with the pivot portion so that the tablet PC can be rotated; on the contrary, when the second magnetic inducing member is removed from the breach, the tablet PC can be totally independent to the support arm and the bottom plate.
Abstract:
In some implementations, a system administrator can specify a maximum amount of power for a data center or a rack of servers. If the data center or rack consumes more than a threshold amount of power, the data center or rack can be put into power capping mode. Once in power capping mode, servers in the data center or rack can be power capped. The amount of power at which a server is capped can be dynamically determined based on the amount of discretionary power available to distribute among the power capped servers in the rack or data center and the amount of power that the server consumes relative to other servers in the data center or rack. Once power consumption in the data center or rack falls below a threshold level, power capping for the data center or rack can be disabled.