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    • 42. 发明申请
    • Non-thermal disinfestation of biological pests with pulsed radio frequency power systems
    • 用脉冲射频电力系统对生物有害生物进行非热灭菌
    • US20060024195A1
    • 2006-02-02
    • US10900990
    • 2004-07-27
    • Manuel Lagunas-SolarTimothy Essert
    • Manuel Lagunas-SolarTimothy Essert
    • A61L2/08A61L2/12
    • A61L2/081A01M1/226A01M17/008A61L2/082A61L2/087
    • An apparatus and method for disinfestation of temperature sensitive and other commodities using short duration, high peak power radio frequency pulses and intense electric fields to preferentially induce drift of conduction charges, spot heating and other mortal damage to infesting insects and mites without raising the temperature of the host commodity. A low frequency mode is provided with a frequency range of approximately 10 Hz to 1 MHz and is particularly suited for large batch processing of pallets or field containers. A high frequency mode is also provided that is suited for continuous or small batch processing and uses a preferred frequency range of approximately 1 MHz to 150 MHz. Both modes preferably have an electric field strength of greater than approximately 5 kV/cm and pulse repetition rates of between one pulse and approximately 10 million pulses per second. The method is non-contact, residue free and effective with all biological stages of an infesting insect, mite or other biological pest including egg, pupa, larvae, juvenile and adult forms. The apparatus and methods of the invention are an effective alternative to methyl bromide fumigation that does not leave any toxic residues or damage the cosmetic appearance or flavor of the commodity.
    • 一种使用短期,高峰值功率射频脉冲和强电场对温敏等商品进行灭虫的装置和方法,以优先诱导传导电荷的漂移,斑点加热和其他对虫害和螨虫致死的危害,而不会提高温度 主机商品。 低频模式具有约10Hz至1MHz的频率范围,并且特别适用于托盘或现场容器的大批量处理。 还提供了适用于连续或小批处理的高频模式,并且使用约1MHz至150MHz的优选频率范围。 两种模式优选地具有大于约5kV / cm的电场强度和每秒一个脉冲与大约1000万个脉冲之间的脉冲重复率。 该方法是非接触的,无残留的,并且对虫害,螨虫或其他生物害虫(包括鸡蛋,蛹,幼虫,幼鱼和成虫)的所有生物阶段都是无接触和有效的。 本发明的装置和方法是甲基溴熏蒸的有效替代品,其不会留下任何有毒残留物或损害商品的美容外观或风味。
    • 43. 发明授权
    • Method for circuit protection during radiation sterilization
    • 辐射灭菌过程中电路保护方法
    • US06880242B2
    • 2005-04-19
    • US10382443
    • 2003-03-06
    • William P. Van AntwerpSheana KarreAdrian ProkopSara Akiko StinsonJason FongJames J. Rosenberg
    • William P. Van AntwerpSheana KarreAdrian ProkopSara Akiko StinsonJason FongJames J. Rosenberg
    • A61L2/08A61L2/26H05K3/30
    • A61L2/087A61L2/081A61L2/082A61L2/26A61L2202/24H01L23/556H01L25/0655H01L2924/0002H01L2924/1435H01L2924/1438H01L2924/145Y10T29/49117Y10T29/4913Y10T29/49137Y10T29/49144H01L2924/00
    • A circuit protection device for protection of sensitive components during high energy radiation sterilization that includes a support substrate and a protective housing. The substrate supports the sensitive components. The protective housing is hermetically coupled to the support substrate to seal the sensitive components within the protective housing. Preferably, the protective housing stops high energy used in the high energy sterilization from damaging the sensitive components from a predetermined exposure level of high energy sterilization. The circuit protection device may further include a protective conductor that is coupled to the support substrate on a side which is opposite the protective housing to prevent high energy from entering the opposite side of the support substrate. The circuit protection device can also include an energy absorbing material contained within an area sealed by the protective housing to absorb high energy byproducts produced by the protective housing stopping the high energy used in the high energy sterilization. Preferably, the support substrate is a circuit board, and the sensitive elements are semiconductors. Also, the high energy sterilization is E-beam sterilization and the high energy are electrons, and the high energy byproducts are x-rays.
    • 一种用于在包括支撑基板和保护壳体的高能量辐射灭菌期间保护敏感部件的电路保护装置。 基板支持敏感元件。 保护壳体气密地联接到支撑基板上以密封保护壳体内的敏感部件。 优选地,保护壳体阻止在高能量灭菌中使用的高能量,以从高能量灭菌的预定暴露水平损坏敏感部件。 电路保护装置还可以包括保护导体,该保护导体在与保护壳体相对的一侧耦合到支撑基板,以防止高能量进入支撑基板的相对侧。 电路保护装置还可以包括容纳在由保护壳体密封的区域内的能量吸收材料,以吸收由保护壳体产生的高能量副产品,从而阻止在高能量灭菌中使用的高能量。 优选地,支撑衬底是电路板,并且敏感元件是半导体。 此外,高能消毒是电子束灭菌,高能量是电子,高能量副产物是X射线。
    • 44. 发明申请
    • Method and apparatus for X-ray irradiation having improved throughput and dose uniformity ratio
    • 用于X射线照射的方法和装置具有改善的生产量和剂量均匀性比
    • US20050053194A1
    • 2005-03-10
    • US10658492
    • 2003-09-08
    • Frederic Stichelbaut
    • Frederic Stichelbaut
    • A61L2/08B65B55/16G21K5/04G01N23/04G21K5/00
    • A61L2/082A61L2202/24B65B55/16G21K5/04
    • The present invention is related to a method and apparatus of radiation processing of a product package in a device having a radiation source, a collimator having a variable aperture, and a turntable, said radiation processing resulting in a point in the product package where the dose is minimal (Dmin point) and a point in said product package where the dose is maximal (Dmax point) comprising the steps of: determining a first value of the collimator aperture, by increasing said aperture from a small value, where the Dmax point is located near the centre of the product package, up to a value where the Dmax point moves near to the centre of a small side of said package's rectangular horizontal cross-section; determining a second value of the collimator aperture, by further increasing the collimator aperture up to a point where the Dmin point moves from a point near the corner of the product package to the centre of said package; processing said package with radiation, the collimator aperture being kept at a constant value comprised between said first and said second value, the turntable being rotated at a variable speed.
    • 本发明涉及一种在具有辐射源,具有可变孔径的准直仪和转盘的装置中的产品包装的辐射处理的方法和装置,所述辐射处理产生产品包装中的一个点,其中剂量 是最小的(Dmin点),并且所述产品包装中的剂量最大的点(Dmax点)包括以下步骤:通过将Dmax点的值从小的值增加所述孔径,从而确定准直器孔径的第一值 位于产品包装的中心附近,直到Dmax点移动到靠近所述包装的矩形水平横截面的小侧的中心的值; 通过进一步增加准直器孔径直到Dmin点从靠近产品包装角的点移动到所述包装的中心的点来确定准直器孔径的第二值; 用辐射处理所述包装,准直器孔保持在包括在所述第一和所述第二值之间的恒定值,转台以可变速度旋转。