MEDICAL DEVICE SYSTEM
    2.
    发明申请

    公开(公告)号:US20220248958A1

    公开(公告)日:2022-08-11

    申请号:US17173181

    申请日:2021-02-10

    Abstract: A system for interfacing an in-body medical device with an external network includes a subdermal wideband on-body network (WON) hub, which in turn includes a hub rechargeable battery, a hub processor coupled to the hub rechargeable battery, a device interface configured to communicate with the in-body medical device, and coupled to the hub processor, and a hub-satellite near field communications wireless interface coupled to the hub processor. The system also includes a wearable WON server that in turn includes a server processor, a server-satellite interface coupled to the server processor, and an external network interface coupled to the server processor. The server processor implements a software controller; and a skin-mountable WON tethered satellite that includes a wired satellite-server interface, coupled to the wearable WON server, and a tethered satellite near-field communications (NFC) wireless interface, configured to communicate with the hub-satellite NFC wireless interface, and coupled to the wired satellite-server interface.

    High speed handling of ultra-small chips by selective laser bonding and debonding

    公开(公告)号:US11222862B2

    公开(公告)日:2022-01-11

    申请号:US16658675

    申请日:2019-10-21

    Abstract: Techniques for high speed handling of ultra-small chips (e.g., micro-chips) by selective laser bonding and/or debonding are provided. In one aspect, a method includes: providing a first wafer including chips bonded to a surface thereof; contacting the first wafer with a second wafer, the second wafer including a substrate bonded to a surface thereof, wherein the contacting aligns individual chips with bonding sites on the substrate; and debonding the individual chips from the first wafer using a debonding laser having a small spot size of about 0.5 μm to about 100 μm, and ranges therebetween. A system is also provided that has digital cameras, a motorized XYZ-axis stage, and a computer control system configured to i) control a spot size of the at least one laser source and ii) adjust a positioning of the sample to align individual chips with a target area of the laser.

    OMNI-CHANNEL ARTIFICIAL INTELLIGENCE (AI) CHATBOT FOR MEDICAL DIAGNOSIS AND MEDICAL TREATMENT

    公开(公告)号:US20240412866A1

    公开(公告)日:2024-12-12

    申请号:US18333404

    申请日:2023-06-12

    Abstract: Provided are techniques for an omni-channel Artificial Intelligence (AI) chatbot module collecting data and performing analysis. Survey questions for a participant are received. A first channel of a plurality of channels of communication and a period of time for contact are identified. A conversation is initiated by attempting to contact the participant using the first channel and during the period of time. in response to the participant accepting the contact, each of the survey questions are converted to natural language. There is interaction with the participant using the first channel to receive survey answers to the survey questions in the natural language. The survey answers are analyzed, and an analysis result is output.

    AUTOMATED LABELING OF USER SENSOR DATA
    9.
    发明公开

    公开(公告)号:US20240177815A1

    公开(公告)日:2024-05-30

    申请号:US18059570

    申请日:2022-11-29

    CPC classification number: G16H10/60

    Abstract: Automated labeling of user sensor data is provided. It is determined that a user is at a medical facility using a location of a user device. User sensor data is collected from one or more user devices while the user is at the medical facility. A result is retrieved of a medical evaluation of the user performed at the medical facility. User sensor data collected during the medical evaluation is tagged with the retrieved result from the medical evaluation.

    MEDICAL DEVICE SYSTEM
    10.
    发明公开

    公开(公告)号:US20230293013A1

    公开(公告)日:2023-09-21

    申请号:US18203619

    申请日:2023-05-30

    Abstract: A system for interfacing an in-body medical device with an external network includes a subdermal wideband on-body network (WON) hub, which in turn includes a hub rechargeable battery, a hub processor coupled to the hub rechargeable battery, a device interface configured to communicate with the in-body medical device, and coupled to the hub processor, and a hub-satellite near field communications wireless interface coupled to the hub processor. The system also includes a wearable WON server that in turn includes a server processor, a server-satellite interface coupled to the server processor, and an external network interface coupled to the server processor. The server processor implements a software controller; and a skin-mountable WON tethered satellite that includes a wired satellite-server interface, coupled to the wearable WON server, and a tethered satellite near-field communications (NFC) wireless interface, configured to communicate with the hub-satellite NFC wireless interface, and coupled to the wired satellite-server interface.

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