Abstract:
A blade server equipped with hot plug function mainly includes a plurality of small servers which have respectively a logic processing main board and a power adapter card to be electrically connected to the logic processing main board in normal conditions. A power integration panel is provided that has a coupling port to be coupled with a power input port of the power adapter card in a hot plug fashion. Thus a general logic processing main board can be used on a blade server and equipped with hot plug function without the need of fabricating another logic processing main board of a special specification.
Abstract:
A power output error free apparatus includes a power supply having a circuit board inside and a power transmission port on the surface. The circuit board has a plurality of electric connection zones electrically connected to the power transmission port. The power transmission port is connected to a connection line which has a connection port on one end corresponding and connecting to the power transmission port and a coupling end on other end connecting to a computer main board. The coupling port has a ps-on (power-supply-on) signal pin to control activation of the power supply. The power transmission port has a dummy pin or HIGH potential on a location corresponding to the ps-on signal pin. As a mistaken connection occurs by switching the connection port with the coupling port, the ps-on signal cannot be transmitted through the dummy pin or HIGH potential of the power transmission port.
Abstract:
A backup-type power supply system aims to integrate power output according to different potentials through different power supply modules. Each power supply module includes backup-type N+1 power supply devices and an independent power balance unit to output power in a balanced fashion so that users can add the power supply module of independent potential according requirements. Thereby transformation power loss of the power supply devices can be reduced. The power supply devices can be designed with different specifications and dimensions corresponding to different electronic devices.
Abstract:
A power supply power compensation structure uses a connector as power output ports. The power supply has a feedback signal connector. A power output connector is coupled with a transmission line set which joins another connector to couple with the feedback signal connector. Thereby power output quality can be monitored to maintain optimal output power delivered to electronic devices.
Abstract:
Provided is a backup power supply comprising at least one DC/DC power electrically connected to a DC power source for taking DC current therefrom prior to providing regulated DC current, at least one AC/DC power electrically connected to an AC power source for taking AC current therefrom prior to providing rectified DC current, and a power control device including a power balance unit, a power output circuit, and a detection circuit each interconnected the AC/DC power and the DC/DC power. The power control device can combine DC current from both the AC/DC power and the DC/DC power prior to providing to an electronic device (e.g., computer). The invention can continue providing electricity to the computer in the event of not only a malfunctioning of the AC/DC or DC/DC power but also a power outage of either the AC or DC power source.
Abstract:
A power supplying system includes a switching control circuit connected to a stand-by power source so as to receive electrical power therefrom. The switching control circuit is further connected to a power-supplying unit and is activated to control operation of the power-supplying unit in a selected one of an ON state, where the power-supplying unit supplies electrical power for operating a heat-dissipating fan, and an OFF state, where the power-supplying unit ceases to supply the electrical power to the heat-dissipating fan. A delayed closing device receives a power-OFF signal from the power-supplying unit at an instant the power-supplying unit is operated from the ON state to the OFF state, and connects the heat-dissipating fan to the stand-by power source upon receiving the power-OFF signal to enable the heat-dissipating fan to receive electrical power from the stand-by power source and permit continued operation of the heat-dissipating fan even after the heat-dissipating fan ceases to receive the electrical power from the power-supplying unit.