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    • 1. 发明申请
    • METHOD AND ACCESSORY DEVICE TO IMPROVE PERFORMANCES OF BALLISTIC THROWERS
    • 方法和附件设备,以提高弹道导弹的性能
    • US20140215876A1
    • 2014-08-07
    • US13757500
    • 2013-02-01
    • Liviu Popa-Simil
    • Liviu Popa-Simil
    • F41C27/22
    • F41C27/22F41A19/08F41A21/36F41A25/00F41G3/06F41G3/08F41G3/12F41G3/142F41G3/165F41J5/10
    • Disclosed is a accessory device for a ballistic thrower that can be handgun or a gun or other object throwing device that is meant to improve the quality of the action and the comfort and safety of the operator. It is made of accessory devices that stabilize the operation of the throwing device making it reproducible, predictable and controllable. It adds an improved target visualization system and environment monitoring electronics and actuators for accurately firing/throwing after aiming considering all the major perturbations, as movements, wind, humidity, atmospheric pressure, target movement, shooting post movement, etc. The device adds other features of safety for the shooter, as stealth action, by dampening the shock, flames and heat signature and having a remote operation.
    • 公开了一种用于弹道投掷器的附件装置,其可以是手枪或枪或其他物体投掷装置,其旨在提高操作者的动作质量和舒适性和安全性。 它由辅助装置制成,可以稳定投掷装置的操作,使其可重现,可预测和可控。 它增加了改进的目标可视化系统和环境监测电子和执行器,用于在考虑所有主要扰动,运动,风,湿度,大气压力,目标运动,射击后移动等目标之后进行准确的点火/投掷。该装置增加了其他功能 作为隐形动作,通过抑制冲击,火焰和热签名并进行远程操作。
    • 3. 发明申请
    • Method and device for holistic protection and virus transmission suppression
    • US20210016216A1
    • 2021-01-21
    • US17018177
    • 2020-09-11
    • Victor Popa-SimilIoana Livia Popa-SimilAndrei Popa-SimilLiviu Popa-Simil
    • Victor Popa-SimilIoana Livia Popa-SimilAndrei Popa-SimilLiviu Popa-Simil
    • B01D46/44B60H1/00C12M1/12
    • COVID-19 is a large virus with remarkable resilience, propagation and multiplication features that require complex technologic systems and manners to assure a reasonable protection. A transparent, multiuse face mask with valves and for inhalation of air from a specialized filter placed in a cleaner air space, and an exhalation valve that drives the exhaled air via a tube to a filter bladder placed on wrist and from there to a tube that has the release end near ground, or can be connected to the aspiration tube of the infrastructure, that removes it, preventing recirculation. The general convention that defines the usage method is that the building, buss, and any other enclosure provide clean antiseptic air above and consumer s have to release their exhalations down near floor from where the structure to remove them by a controlled air flow similar to clean rooms.
      The main condition is that people to place their exhalation exhaust sterilized and placed near ground in order to increase the probability to inhale clean sterile air at the head level. No filter is perfect, and no sterilization unit, therefore the enclosure has to deal with exhaust gas, and remove into the atmosphere safely. The work to keep people inside safe is done by both the enclosure that may provide vacuum lines to collect the exhaled air, and by the people who will use correctly the infrastructure. The system is designed for smart communities for everybody to wear for about 3 weeks when a covid-19 or other virus infection occurs to suppress its multiplication rate, without perturbation in their activity and then returning to normality.
    • 4. 发明申请
    • Method of using micro-nano-hetro structures to make radiation detection systems and devices with applications
    • 使用微纳米结构的辐射检测系统和设备的应用方法
    • US20120082283A1
    • 2012-04-05
    • US12924577
    • 2010-09-30
    • Liviu Popa-Simil
    • Liviu Popa-Simil
    • G21C17/00G21D7/00
    • G21D7/00G01T1/204G01T3/00G21C17/108G21G1/00G21H1/00Y02E30/30
    • Method and devices for development of nuclear particle detectors, meant to operate in wide temperature range, with and without cooling that can be integrated in various arrays, able to identify radiation type and provide information on it's parameters as position, mass, energy, direction. The device will operate by enhancing the radiation detection by using materials that generates fission, transmutation and/or directly converting the energy of radiation into photonic or pressure waves, or into electricity, device acting on a plurality of conductor insulator junction making it able to identify radiation type, spectrum, direction and position usable for a large range of electronics from detectors to complex imagers.The method relies on an assembly of three components with generic function as generator, insulator and absorber, in different aggregation states, dimensioned by calculating the effective length for the specific moving entity i.e. fission products, charged particles, recoiled nuclei, driving to a wide range of micro-nano-hetero structures and applications. The resulted devices are structural and dimensional varieties of method's application in specific configurations. Applications are in thermal nuclear fission reactors, non-proliferation, radioactive fields measurements, space. Liquid materials are used inside the device to serve as damage free absorbers detection scintillation restorer, and carriers of resulted fission products and transmutation nuclei draining them out the reactor's active zone into specialized measurement devices. The electricity generator device uses repetitive nano-hetero-structure generically called “CIci”, and may be used in combinations.
    • 用于开发核粒子探测器的方法和装置,旨在在宽温度范围内运行,具有和不具有冷却功能,可集成在各种阵列中,能够识别辐射类型,并提供有关其参数的位置,质量,能量和方向的信息。 该装置将通过使用产生裂变,蜕变和/或直接将辐射能量转换为光子或压力波的材料或作用于多个导体绝缘体结的电力的装置来增强辐射检测,使其能够识别 辐射类型,光谱,方向和位置可用于从检测器到复杂成像器的大范围电子。 该方法依赖于具有通用功能的三个组件的组件,其具有不同聚集状态的发电机,绝缘体和吸收体,其尺寸通过计算特定移动实体的有效长度,即裂变产物,带电粒子,反冲核,行驶到较宽范围 的微纳米异质结构和应用。 所得到的器件是具体构造中方法应用的结构和尺寸变化。 应用于热核裂变反应堆,不扩散,放射性场测量,空间。 液体材料用于设备内,用作无损检测器,检测闪烁体恢复器,以及所产生的裂变产物和转化核的载体,将其从反应器的活性区域排入专用的测量装置。 发电装置使用通常称为“CIci”的重复纳米异质结构,可以组合使用。
    • 5. 发明授权
    • Multi-band terahertz receiver and imaging device
    • 多频带太赫兹接收机和成像设备
    • US07851761B2
    • 2010-12-14
    • US11732523
    • 2007-03-23
    • Liviu Popa-Simil
    • Liviu Popa-Simil
    • G01J5/02H01P7/00H01Q15/00
    • H01Q19/30
    • Multi-band polarized receiver-emitter THz domain visualization device that includes a group of elemental receiver units made from a resonant system sensitive to frequency and polarization, a micro-bead solid-state voltage amplifier in the gate of a differential FET system. The detection is based on the carrier perturbation method detected by a set of double gate comparator circuits that further generates an integrated signal driven to a digital analog converter. The signal from here is accessing event-based memory used to generate the 3D images. Multiple detection modules are coupled into a triangular detection element detecting a multitude of frequencies, in a cascade of bands from 2 mm to 1 micron. This THz chromatic detector is integrated in a surface morph array, or in an image area of a focusing device generating a pixel of information with band, amplitude, polarization and time parameters, driving to a complex 3D substance level visualizations.
    • 多频带极化接收 - 发射极THz域可视化装置,包括由频率和极化敏感的谐振系统构成的一组元件接收器单元,差分FET系统栅极中的微珠固态电压放大器。 检测是基于由一组双栅极比较器电路检测的载波扰动方法,其进一步产生驱动到数字模拟转换器的积分信号。 来自这里的信号是访问用于生成3D图像的基于事件的内存。 多个检测模块耦合到检测多个频率的三角形检测元件中,从2毫米到1微米的级联级联。 这种THz色度检测器被集成在表面变形阵列中,或者在聚焦装置的图像区域中,产生具有带,振幅,极化和时间参数的信息像素,从而驱动到复杂的3D物质水平的可视化。