| Patent application number | Description | Published |
| 20110074052 | Wind-water ultrasonic humidifier - A wind-water ultrasonic humidifier includes a housing, a hollow connecting portion, a water circulation system, and a power control box. The water circulation system includes an electric base, a rubber cork plugged into the top of the water circulation system and having a baffle inserted into a concave hole, a circular threaded pipe including a nebulizer and a water pump, two arc-shaped bridging support stands provided for connecting both sides of the electric base in an arc shape, a latch structure disposed at a lower end of the support stand, latches disposed on both sides of the electric base, and a water dripping device installed at an upper end of the bridging support stand. | 03-31-2011 |
| 20110091358 | Wall-mounted aromatic air freshener device - A wall-mounted aromatic air freshener device includes a board, and a housing and a frame, both disposed at a backside of the board, a container disposed in the housing for containing an essential oil, a light emitting element and a light emitting control element, both installed in the frame, a switch device for turning on or off the light emitting element, such that an oil wick can absorb and vaporize an essential oil to disperse an aromatic air, and the light emitting element produces an optical decorative effect, so as to constitute the aromatic air freshener device. | 04-21-2011 |
| Patent application number | Description | Published |
| 20090160870 | RUN-TIME RECONFIGURABLE FABRIC FOR 3D TEXTURE FILTERING SYSTEM - The present invention discloses a texture filtering system, comprising a sequence generator, a retrieve unit and a dispatch unit. The sequence generator generates an execution sequence in each duty cycle. The execution sequence is the priority of respectively retrieving multiple pixels from multiple queues. The retrieve unit outputs multiple Boolean signals based on the limitation of the total number of all-purpose texture filters and the above priority in a duty cycle for determining from which queues the pixels are retrieved to perform a texture filtering process, and the dispatch unit assigns the multiple texture filter formats of the pixels to be processed and the anisotropic ratios thereof to multiple address generators. Besides, the present invention utilizes Brute force method to enable multiple bilinear texture filters to satisfy the various texture filter formats of a pixel, thereby markedly reducing the space occupied by the texture filter in a 3D graphic processing unit, provided that the specifications of the address generators and texture cache memory are unchanged. | 06-25-2009 |
| 20100161951 | PROCESSOR AND METHOD FOR RECOVERING GLOBAL HISTORY SHIFT REGISTER AND RETURN ADDRESS STACK THEREOF - A method for recovering global history shift register (GHSR) and return address stack (RAS) is provided, which is applicable to an instruction pipeline of a processor and includes the following steps. First, provide a branch recovery table (BRT) and a backup stack. Whenever a branch instruction enters a predetermined stage of the instruction pipeline, add a record in the BRT according to the branch instruction. Whenever a return address is popped from the RAS of the instruction pipeline, push the return address into the backup stack. When flushing the instruction pipeline, determine a removal range of the BRT according to the condition which triggers the pipeline flush. Recover the RAS according to the records in the removal range and the backup stack. Remove all records in the removal range. Recover the GHSR of the instruction pipeline according to the removed records. | 06-24-2010 |
| 20100250850 | PROCESSOR AND METHOD FOR EXECUTING LOAD OPERATION AND STORE OPERATION THEREOF - A processor and a method for executing load operation and store operation thereof are provided. The processor includes a data cache and a store buffer. When executing a store operation, if the address of the store operation is the same as the address of an existing entry in the store buffer, the data of the store operation is merged into the existing entry. When executing a load operation, if there is a memory dependency between an existing entry in the store buffer and the load operation, and the existing entry includes the complete data required by the load operation, the complete data is provided by the existing entry alone. If the existing entry does not include the complete data, the complete data is generated by assembling the existing entry and a corresponding entry in the data cache. | 09-30-2010 |