METHOD AND SYSTEM FOR BOOTING FROM A SPLIT BIOS IMAGE

    公开(公告)号:US20210200555A1

    公开(公告)日:2021-07-01

    申请号:US16728960

    申请日:2019-12-27

    Inventor: Feng-Chou WU

    Abstract: A system and method for booting a computer system is disclosed. Code is loaded from a minor BIOS image stored on an electrically erasable programmable read-only memory (EEPROM) to a cache of a central processing unit. The central processing unit executes the code from the minor BIOS image to initialize a system memory. A major BIOS image is accessed from a remote site via a controller. Code from the major BIOS image is loaded to the system memory. The code from the major BIOS image is executed via the central processing unit to boot an operating system.

    METHOD AND DEVICE FOR ELIMINATING RING EFFECT

    公开(公告)号:US20210174480A1

    公开(公告)日:2021-06-10

    申请号:US16933150

    申请日:2020-07-20

    Abstract: A method for eliminating a ring effect is provided. The method includes: capturing, by a camera, a standard ring image generated by light illuminating a standard Fresnel lens; establishing a compensation lookup table according to the standard ring image and obtaining a standard ring center point; capturing, by the camera, a ring image generated by the light illuminating a Fresnel lens to be tested; obtaining a ring center point according to the ring image; obtaining a conversion relationship between the ring center point and the standard ring center point; and performing a compensation procedure on the ring image according to the compensation lookup table and the conversion relationship to eliminate the ring effect in the ring image.

    Electronic device and method for securing electronic device

    公开(公告)号:US10990661B2

    公开(公告)日:2021-04-27

    申请号:US16375949

    申请日:2019-04-05

    Inventor: Li-Te Hung

    Abstract: An electronic device includes a power button, a fingerprint sensor, and a controller. The fingerprint sensor is integrated into the power button. The controller connects to the fingerprint sensor and the power button. The controller performs a booting process of the electronic device when the power button is pushed by an external object. The controller then compares the fingerprint pattern of the external object sensed by the fingerprint sensor with a previously stored fingerprint pattern. If the fingerprint pattern does not match the previously stored fingerprint pattern, the controller stops the booting process.

    External air baffle nozzle
    176.
    发明授权

    公开(公告)号:US10986751B1

    公开(公告)日:2021-04-20

    申请号:US16773007

    申请日:2020-01-27

    Abstract: An external air baffle nozzle has a top surface, a bottom surface, and a pair of sidewalls separating the top surface from the bottom surface. An end of the pair of sidewalls, an end of the top surface and an end of the bottom surface define an inlet. An opposite end of the pair of sidewalls, an opposite end of the top surface, and an opposite end of the bottom surface define an outlet. The outlet has a smaller cross section than a cross section of the inlet.

    Streamlined air baffle for electronic device

    公开(公告)号:US10973149B2

    公开(公告)日:2021-04-06

    申请号:US15895345

    申请日:2018-02-13

    Abstract: A streamlined air baffle for efficiently directing air flow from a fan unit to a heat sink is disclosed. The streamlined air baffle has a top cover plate and a pair of side walls. The side walls are connected to the top cover plate. The top cover plate and one end of the side walls define an inlet. A curved surface of the top cover plate defines the outlet with the opposite ends of the side walls. The cross section area of the outlet is smaller than the cross section area of the inlet.

    Flexible modularized support device
    178.
    发明授权

    公开(公告)号:US10973139B1

    公开(公告)日:2021-04-06

    申请号:US15929855

    申请日:2020-05-26

    Abstract: A flexible modularized system is configured to support graphics processing unit (GPU) cards of different dimensions. The system includes a riser bracket with attachment features for being coupled to a printed circuit board (PCB). The system further includes a fixing plate that is coupled to the riser bracket and which includes a plurality of adjustable holes. The system also includes a moving plate that is adjustably coupled to the fixing plate. The moving plate is movable between a plurality of positions. The moving plate has a first end that includes at least one latch, which engages the first adjustable hole in a first position and the second adjustable hole in a second position. The moving plate has a second end that is configured to secure in place one of the GPU cards relative to the PCB.

    Wearable device
    179.
    发明授权

    公开(公告)号:US10969606B2

    公开(公告)日:2021-04-06

    申请号:US16293132

    申请日:2019-03-05

    Abstract: A wearable device includes a casing member, a lifting assembly, an elastic element, and a pressing member. The casing member has a supporting portion. The lifting assembly is housed in the casing member and is liftable above the casing member. The elastic element is connected to the casing member and the lifting assembly. The pressing member faces toward the supporting portion. The pressing member is movably connected to the lifting assembly and is configured to move along with the lifting assembly, whereby the temple is capable of being clamped between the pressing member and the supporting portion.

    ANTENNA STRUCTURE
    180.
    发明申请

    公开(公告)号:US20210066801A1

    公开(公告)日:2021-03-04

    申请号:US16747124

    申请日:2020-01-20

    Abstract: An antenna structure includes a nonconductive supporting element, a feeding radiation element, a first radiation element, a second radiation element, a third radiation element, and a fourth radiation element. The first radiation element is coupled to a ground voltage. A first coupling gap is formed between the first radiation element and the feeding radiation element. The second radiation element is coupled to the first radiation element. A second coupling gap is formed between the second radiation element and the feeding radiation element. The third radiation element is coupled to the first radiation element. The fourth radiation element is coupled to the ground voltage. A third coupling gap is formed between the fourth radiation element and the feeding radiation element. The feeding radiation element, the first radiation element, the second radiation element, the third radiation element, and the fourth radiation element are all disposed on the nonconductive supporting element.

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