Abstract:
A fixation structure for the fan to be coupled with the heat dissipating device for the central processing unit (CPU), in particular applies to the CPU which is perpendicularly inserted into the housing wherein the fan is mounted to a base set and uniformly formed as a single unit in which that a pair of the fixation plates extendingly from the base set are positioned respectively opposite to each other where the end of the fixation plate bends outward to form a flanged clipping body. The above mentioned base set is constructed in accordance with the heat dissipating device for the CPU, where two clipping holes positioned respectively to the clip structure is formed on the heat dissipating device so as to allow the clipping body be inserted therein and engaged thereto forming a single unit, which provide a sufficient and quick method of assemblement.
Abstract:
A smart electric heating device comprises a storage unit, a first heating unit, a second heating unit, a control unit and a first temperature sensing unit. With the first temperature sensing unit to obtain an ambient temperature, the control unit compares the ambient temperature with a maximum increased temperature and a set temperature for controlling the first heating unit and the second heating unit to actuate. In this way, each user can use hot water of sufficient temperature better.
Abstract:
A holder includes a base plate adapted to secure to a vertical surface and comprising two locking units on a front surface; and a load bearing assembly comprising a load bearing member, a load bearing element projecting forward from the load bearing element; and a plate member releasably secured to the load bearing element. The locking units are releasably fastened between the load bearing member and the plate member. The load bearing member can be replaced with a new one or one having a different load bearing element.
Abstract:
A cooling fan (100) includes a frame (10), a circuit board (20) and a rotor (30). The frame includes a housing (12) and a plate (14) connecting with the housing. The circuit board is mounted on the plate. The rotor is received in the housing and includes a hollow hub (32) and a plurality of blades (38) extending from the hub. A plurality of light emitting diodes (40) is mounted on the circuit board. When the rotor rotates, each LED projects light towards the rotor and to the frame so that the light will be reflected and deflected by the fan whereby the whole fan glows and produces a fantastic visual effect.
Abstract:
A heat dissipation device (100) comprises a heat sink (10) and a fan (40) mounted on the heat sink (10). The heat sink (10) comprises a central core (12), a plurality of branches (122) radially extending outwardly from a periphery of the core (12) and a plurality of fins (14) extending from of the core (12) and the branches (122). The fan (40) comprises a plurality of blades (404). The branches (122) and the fins (14) extend and are oriented in a direction opposite to a rotation direction of the blades (404) of the fan (40).
Abstract:
A lighting device includes a light fixture, a semiconductor light source and a gas-discharge light source mounted in the light fixture, and a controller disposed in the light fixture and connected electrically to the semiconductor light source and the gas-discharge light source. The controller is operable to control activation and deactivation of the semiconductor light source and the gas-discharge light source. Heat generated during operation of the semiconductor light source may increase the ambient temperature in the light fixture such that optimum performance of the gas-discharge light source may be ensured.
Abstract:
A lamp device includes: a lamp unit mounted in a lamp housing; and a circuit unit disposed in the lamp housing for activating the lamp unit to emit light when receiving an external voltage through opposite connecting ports mounted on the lamp housing. The lamp unit includes two cold cathode fluorescent lamps (CCFLs) connected in series. Each CCFL includes a lamp tube that has a first tube segment connected to a first electrode portion and extending in a first direction, a second tube segment connected to a second electrode portion and extending in a second direction transverse to the first direction, and a curved third tube segment interconnecting the first and second tube segments. For each CCFL, a ratio of a length of the lamp tube in the second direction to a length of the same in the first direction is less than 25%.
Abstract:
A liquid cooling device (1) includes a base (2) enclosing working fluid therein and absorbing heat from a heat-generating electronic component, a heat sink (10) fluidically connecting with the base, and a pump (3) driving the working fluid to circulate between the base and the heat sink. The heat sink has closed top and bottom ends, and includes an outer tube (100) and an inner tube (30) disposed in the outer tube. First and second receiving chambers (34, 14) are respectively formed in the inner tube and between an inner surface of the outer tube and an outer surface of the inner tube for receiving the working fluid therein. The first receiving chamber communicates with the second receiving chamber at an end thereof so that the working fluid flows from the first receiving chamber to the second receiving chamber.