Abstract:
A burn-in includes a base, a number of contacts received in the base, and a cover pivotally mounted to the base and rotatably moving between an open position and a closed position. The base defines a receiving space and a plurality of recesses adjacent to and communicating with the receiving space. Two hard stoppers are mounted to the recesses of the base and support upwardly the cover.
Abstract:
A control apparatus, a signal transmission method and a computer program product for the control apparatus are provided. The control apparatus, which is for use in a wireless network comprising at least one mobile station (MS), comprises a storage module, a receiving module, and a determination module. The storage module is configured to store a multicast group list. The receiving module is configured to receive an idle mode entry signal which comprises information of the at least one MS. The determination determines whether the multicast group list has the information of the at least one MS. If the multicast group list does not have the information of the at least one MS, the determination module adds the information of the at least one MS into the multicast group list.
Abstract:
A burn-in socket for receiving an IC package (2) is provided. The burn-in socket includes a socket body with a plurality of contacts (7) disposed therein and a cover (6) rotatablely coupled to the socket body. The socket body defines a receiving space (500) for receiving the IC package (2) to be tested therein. The cover (6) has a pushing portion (611) capable of pressing on the IC package (2) toward the socket body when the cover (6) is turned to a closed position. At least one pair of pick-up arrangements (8) are provided around the pushing portion (611) for automatic pick-up of the IC package (2).
Abstract:
An apparatus of light source includes a cathode structure, an anode structure, a fluorescent layer, a secondary electron generating layer, and a low-pressure gas layer. The fluorescent layer is located between the cathode structure and the anode structure. The low-pressure gas layer is filled between the cathode structure and the anode structure. The secondary electron generating layer is located on the cathode structure. The secondary electron generating layer can generate additional secondary electrons to hit the fluorescent layer for improving the performance of the light source.
Abstract:
A telecommunication system intended for providing telecommunication services at a semiconductor manufacturing plant under the circumstances of shielded areas of clean rooms comprises a GSM base station installed at the plant and equipped with a plurality of low power antennas, a private branch exchange and at least two dedicated lines of E1 type connecting the base station and the PBX to a public switched telephone network. Software incorporated in the base station and PBX allows for telecommunication connections set up at the plant to use abbreviated four-digit numbers for both wireless mobile stations and wired stations, while keeping the possibility to reach a mobile station, even if it is outside the plant at the time of the connection, dialing the abbreviated four-digit number.
Abstract:
A telecommunication system intended for providing telecommunication services at a semiconductor manufacturing plant under the circumstances of shielded areas of clean rooms comprises a GSM base station installed at the plant and equipped with a plurality of low power antennas, a private branch exchange and at least two dedicated lines of E1 type connecting the base station and the PBX to a public switched telephone network. Software incorporated in the base station and PBX allows for telecommunication connections set up at the plant to use abbreviated four-digit numbers for both wireless mobile stations and wired stations, while keeping the possibility to reach a mobile station, even if it is outside the plant at the time of the connection, dialing the abbreviated four-digit number.
Abstract:
A juicer comprises a base. A motor electrically connected to a controller disposed inside the base. The controller controls an axis of the motor to turn clockwise or anti-clockwise. The axis of the motor has a first end and a second end in an opposite direction to the first end. The first end of the axis is axially connected with a first unidirectional bearing coupled with a first connecting element coaxially. The second end of the axis is axially connected with a second unidirectional bearing coupled with a second connecting element coaxially. The second connecting element is moved together with a third connecting element. Thereby, the axis of the motor turns in clockwise or anti-clockwise direction for selectively enabling the first connecting element to move upwardly together with a first cutter inside a first container and to turn the first cutter for cutting.
Abstract:
A circulating processor includes a base, a container, a cutlery and a pressurizing mechanism. An operating motor is disposed in the base and is disposed with a mandrel therein. The container is disposed above the base, where a space is formed on its bottom part, and a reflux opening is formed on its upper half part and in communication with the space. The cutlery is positioned on the container's bottom part and connected to the mandrel. Thereby, when the operating motor operates, the mandrel and the cutlery are enabled to rotate synchronously, to mash food, vegetables and fruits in the container. The pressurizing mechanism is in communication with the space of the container. Through the pressurizing effect of the pressurizing mechanism, the mashed food, vegetables and fruits can be transferred into the container via the reflux opening, so as to perform circulating mashing treatment.
Abstract:
A circulating processor includes a base, a container, a cutlery and a pressurizing mechanism. An operating motor is disposed in the base and is disposed with a mandrel therein. The container is disposed above the base, where a space is formed on its bottom part, and a reflux opening is formed on its upper half part and in communication with the space. The cutlery is positioned on the container's bottom part and connected to the mandrel. Thereby, when the operating motor operates, the mandrel and the cutlery are enabled to rotate synchronously, to mash food, vegetables and fruits in the container. The pressurizing mechanism is in communication with the space of the container. Through the pressurizing effect of the pressurizing mechanism, the mashed food, vegetables and fruits can be transferred into the container via the reflux opening, so as to perform circulating mashing treatment.