DEVICES, SYSTEMS, AND METHODS FOR A HYBRID COOLING SYSTEM

    公开(公告)号:US20250169044A1

    公开(公告)日:2025-05-22

    申请号:US18958612

    申请日:2024-11-25

    Abstract: In some aspects, the techniques described herein relate to a cooling system for a computing device. The cooling system includes an air-cooled cooling system located in a housing. The air-cooled cooling system includes a heat sink thermally connected to a processor, an air-cooling radiator, and a heat pipe connecting the heat sink to the air-cooling radiator. The cooling system includes a liquid-cooled cooling system located in the housing. The liquid-cooled cooling system includes a cold plate thermally connected to a to the heat sink, a pump, a fluid radiator, and a fluid piping system connecting the pump, the cold plate, and the fluid radiator.

    GUIDED DYNAMIC CONSTRUCTION OF LARGE LANGUAGE MODEL (LLM) PROMPTS

    公开(公告)号:US20250165721A1

    公开(公告)日:2025-05-22

    申请号:US18515246

    申请日:2023-11-20

    Abstract: Example solutions for reducing the likelihood of hallucinations by large language models (LLMs) and improving the relevance of generated text are disclosed. A set of multiple of machine learning (ML) models, each custom-trained to identify a different specific topic within text, dynamically generate multiple topic-specific prompts from a received email in an email thread. A user, responding to the prompts, produces material that is used in conjunction with customer relations management (CRM) data and enterprise suite data (e.g., calendar/schedule information) to dynamically generate an LLM prompt. An LLM, using the prompt, generates output text suitable for a business correspondence, such as a reply email, to the sender of the email. The combination of the responses to the multiple topic-specific prompts and the CRM and enterprise suite data in the LLM prompt both ensures relevance of the reply correspondence and minimizes the risk of hallucinations.

    INTERLOCK MECHANISM FOR OPTICAL FIBERS

    公开(公告)号:US20250164721A1

    公开(公告)日:2025-05-22

    申请号:US18518119

    申请日:2023-11-22

    Abstract: Examples of the present disclosure describe an interlock mechanism for optical fibers. A protective enclosure for selectively covering a manual release mechanism of an optical fiber connector is described. In some examples, an optical system includes the protective enclosure, a mechanical actuator, and an optical device, among other components. A user interacts with the mechanical actuator to move the protective enclosure to a covered position or an uncovered position, disallowing or allowing, respectively, physical access to the manual release mechanism. The user's interaction with the mechanical actuator also concurrently turns the optical device on, off, or to a different power level, which provides, stops, or reduces the power of, respectively, optical signals provided to the optical fibers via the optical connector.

    USE OF CHROMA QUANTIZATION PARAMETER OFFSETS IN DEBLOCKING

    公开(公告)号:US20250159170A1

    公开(公告)日:2025-05-15

    申请号:US19024766

    申请日:2025-01-16

    Inventor: Gary J. Sullivan

    Abstract: Innovations in use of chroma quantization parameter (“QP”) offsets when determining a control parameter for deblock filtering. For example, as part of encoding, an encoder sets a picture-level chroma QP offset and slice-level chroma QP offset for encoding of a slice of a picture. The encoder also performs deblock filtering of at least part of the slice, where derivation of a control parameter considers only the picture-level chroma QP offset. The encoder outputs at least part of a bitstream including the encoded content. As part of decoding, a corresponding decoder sets a picture-level chroma QP offset and a slice-level chroma QP offset for decoding of a slice of a picture, but derivation of a control parameter for deblock filtering considers only the picture-level chroma QP offset.

    CONTROL AND USE OF CHROMA QUANTIZATION PARAMETER VALUES

    公开(公告)号:US20250159168A1

    公开(公告)日:2025-05-15

    申请号:US19023863

    申请日:2025-01-16

    Abstract: Innovations in control and use of chroma quantization parameter (“QP”) values that depend on luma QP values. More generally, the innovations relate to control and use of QP values for a secondary color component that depend on QP values for a primary color component. For example, during encoding, an encoder determines a QP index from a primary component QP and secondary component QP offset. The encoder maps the QP index to a secondary component QP, which has an extended range. The encoder outputs at least part of a bitstream including the encoded content. A corresponding decoder receives at least part of a bitstream including encoded content. During decoding, the decoder determines a QP index from a primary component QP and secondary component QP offset, then maps the QP index to a secondary component QP, which has an extended range.

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