具有積分信號歸零系統的LINK 16收發器
    3.
    发明专利
    具有積分信號歸零系統的LINK 16收發器 审中-公开
    具有积分信号归零系统的LINK 16收发器

    公开(公告)号:TW202005296A

    公开(公告)日:2020-01-16

    申请号:TW108117449

    申请日:2019-05-21

    Abstract: 諸如link 16收發器之一種安全無線收發器利用一天線陣列接收信號,該天線陣列具有與該陣列中每一天線單元相關聯之一SOC。該等SOC將經接收資料數位化及頻道化,用於傳輸至減緩擁塞之一訊息歸零系統。天線陣列可係共形,及可取代一既有之Link 16刀形。所揭示之收發器可係經修改之CMN-4收發器,而數位化及頻道化移至該等SoC且為該歸零系統取代。該收發器在歸零前利用適用之TRANSEC資訊指定經接收資料至邏輯Link 16頻道,及實施例僅應用歸零於所關注頻道,藉此改善該歸零及降低旁波瓣。實施例根據已知的Link 16信號特徵及/或位置感知而非信號振幅區隔所要的信號及不要的信號,藉此能使弱的擁塞信號歸零。

    Abstract in simplified Chinese: 诸如link 16收发器之一种安全无线收发器利用一天线数组接收信号,该天线数组具有与该数组中每一天线单元相关联之一SOC。该等SOC将经接收数据数码化及频道化,用于传输至减缓拥塞之一消息归零系统。天线数组可系共形,及可取代一既有之Link 16刀形。所揭示之收发器可系经修改之CMN-4收发器,而数码化及频道化移至该等SoC且为该归零系统取代。该收发器在归零前利用适用之TRANSEC信息指定经接收数据至逻辑Link 16频道,及实施例仅应用归零于所关注频道,借此改善该归零及降低旁波瓣。实施例根据已知的Link 16信号特征及/或位置感知而非信号振幅区隔所要的信号及不要的信号,借此能使弱的拥塞信号归零。

    奈米材料系物理不可複製功能裝置
    4.
    发明专利
    奈米材料系物理不可複製功能裝置 审中-公开
    奈米材料系物理不可复制功能设备

    公开(公告)号:TW201911747A

    公开(公告)日:2019-03-16

    申请号:TW107126022

    申请日:2018-07-27

    Abstract: 提供用於物理不可複製功能(PUF)裝置之技術。一示例性PUF裝置包含一讀出積體電路(ROIC)(諸如用於焦平面陣列或其他成像應用之ROIC);在該ROIC上的一奈米材料系PUF層;及在該PUF層上的一共用電極。該奈米材料隨機分布遍及該PUF層。一種利用一PUF裝置的方法,該PUF裝置包含耦合至一ROIC的一奈米材料系PUF層,其中該奈米材料隨機分布遍及該PUF層,該方法包含驅動在複數個位置處的該ROIC,該複數個位置耦合至該PUF層的對應複數個位置;感測在該PUF層的該等位置處的該奈米材料;及自該PUF層的該等經感測位置產生一唯一的識別金鑰。該方法可用於例如保全解密或用於識別或鑑認該PUF裝置。

    Abstract in simplified Chinese: 提供用于物理不可复制功能(PUF)设备之技术。一示例性PUF设备包含一读出集成电路(ROIC)(诸如用于焦平面数组或其他成像应用之ROIC);在该ROIC上的一奈米材料系PUF层;及在该PUF层上的一共享电极。该奈米材料随机分布遍及该PUF层。一种利用一PUF设备的方法,该PUF设备包含耦合至一ROIC的一奈米材料系PUF层,其中该奈米材料随机分布遍及该PUF层,该方法包含驱动在复数个位置处的该ROIC,该复数个位置耦合至该PUF层的对应复数个位置;传感在该PUF层的该等位置处的该奈米材料;及自该PUF层的该等经传感位置产生一唯一的识别密钥。该方法可用于例如保全解密或用于识别或鉴认该PUF设备。

    Method of wireless interference mitigation with efficient utilization of computational resources

    公开(公告)号:AU2021258141A1

    公开(公告)日:2022-10-13

    申请号:AU2021258141

    申请日:2021-04-20

    Abstract: A method of mitigating interference in a received wireless signal by adaptive digital filtering efficiently deploys computational resources by using at least one of a DDC, weight generator, and scrubber to perform calculations necessary to generate a plurality of output streams. Embodiments transition a weight generator and scrubber between receiver frequencies according to a known frequency hopping pattern of an FHSS transmission. Other embodiments dedicate scrubbers to receiver frequencies while transitioning a weigh generator between the frequencies to generate sets of weights that can be persistently used by the scrubbers. Embodiments generate sets of weights according to one received multipath signal copy, and then apply the generated weights to filter additional multipath copes received at the same frequency. Various embodiments dedicate a DDC to each receive frequency to form a bank of down-converted outputs, from among which each weigh generator can select primary and reference inputs.

    STRAHLUNGSFESTES EFUSE-MAKRO
    6.
    发明专利

    公开(公告)号:DE112022006007T5

    公开(公告)日:2024-10-24

    申请号:DE112022006007

    申请日:2022-12-14

    Inventor: ROSS JASON F

    Abstract: [0067] Asynchrones Multibit-eFuse-Makro, wobei das Makro umfasst: die folgenden Eingaben: eine Eingabe/Ausgabe-Freigabe, ein Power-On-Reset, eine Schreibadresse, eine Eingabeschreibfreigabe, eine Erdungsklemmenfreigabe und einen Schreibtakt; eine Vielzahl von eFuse-Bits; eine Speisespannung, die konfiguriert ist, um Programmierung von mindestens einem der eFuse-Bits zuzulassen; mindestens eine Fuse-Ausgabe; und Selbsttiming- und Steuerschaltkreis(e), der/die konfiguriert ist/sind, um Signalgebung durchzuführen, wobei jede der Eingaben in elektrischer Kommunikation mit dem eFuse-Makro ist.

    System for detecting trojans in an artificial network and method therof

    公开(公告)号:AU2021246445B2

    公开(公告)日:2024-06-13

    申请号:AU2021246445

    申请日:2021-03-30

    Abstract: A system and method is provided that tests and determines whether candidate artificial intelligence model contains a Trojan from when it was trained and using the outcome determination of the Trojan to determine whether the candidate artificial intelligence model should be deployed. The system utilizes a first artificial intelligence that operates as a data generator and a second artificial intelligence that operates as a discriminator to determine whether the candidate artificial intelligence contains a Trojan. The first artificial intelligence combines sets of data with random Trojan triggers and the second artificial intelligence discriminates output classifications from the candidate artificial intelligence model to determine whether the Trojan is present based on probability outputs.

    Chaff dispensing systems and methods of operation

    公开(公告)号:IL306027B1

    公开(公告)日:2025-05-01

    申请号:IL30602723

    申请日:2023-09-18

    Abstract: A chaff dispensing system that is provided on an aircraft and includes a container, a dispensing assembly, a controller, and a volume of chaff material. The container has a first end, a second end, and a chamber that extends between the first and second ends, and the second end defines an ejection port. The dispensing assembly is operably engaged to the container. The controller is electrically connected to the dispensing assembly. The volume of chaff material is disposed inside the chamber of the container. The volume of chaff material is dispensed by the dispensing assembly operably through the controller in metered volumes of chaff material. In addition, a first volume of chaff material may be metered at a first time and a second volume chaff material may be metered at a second time in which the second volume of chaff material is different than the first volume of chaff material.

    Transimpedance amplifier having t-network feedback architecture and method thereof

    公开(公告)号:IL315229A

    公开(公告)日:2024-10-01

    申请号:IL31522924

    申请日:2024-08-25

    Abstract: A transimpedance amplifier system (TIA) for stabilizing high gain and high frequency signals while minimizing parasitic capacitance effects on the transimpedance amplifier system. The TIA includes an operational amplifier having a first input terminal, a second input terminal, and an output terminal. The TIA also includes a signal generating device operatively connected with the first input terminal of the operational amplifier. The TIA also includes a T-network feedback architecture operatively connected with the operational amplifier at the first input terminal of the operational amplifier and the output terminal of the operational amplifier. The T-network feedback architecture has a first impedance network and a second impedance network. The T-network feedback architecture is configured to suppress parasitic capacitance from the transimpedance amplifier system.

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