Abstract:
A scent delivery system includes a housing that releases a volatile substance from a porous body into the air. The housing may be part of a scent dispersion device that includes volatilization as directed by a fan and a controller within the housing.
Abstract:
A system for inactivation of pathogens on a surface may include a first light source that emits first light having a peak wavelength in a range of 100 nm to 500 nm; a second light source that emits second light that is visible light; control electronics configured to control a first power state of the first light source and a second power state of the second light source. The first power state and the second power state may be independently controlled. The system may be configured such that an illumination area of the first light and the second light is limited to the inactivation area.
Abstract:
본 발명은 도어 핸들 장착용 손 소독기를 제공한다. 상기 도어 핸들 장착용 손 소독기는 구형의 도어 손잡이의 외곽을 둘러싸도록 설치되는 손잡이 수용부와; 상기 손잡이 수용부의 일측부로부터 연장되며, 내부 공간이 형성되며, 다수의 분사홀이 형성되는 핸들부; 및 상기 핸들부의 내부 공간에 설치되며, 상기 분사홀로 돌출되는 돌기들을 포함하고, 상기 돌기들로 외압이 가해지는 경우, 상기 분사홀과 상기 돌기들의 사이 갭을 통해 소독액을 외부로 분사하는 소독액 분사부를 포함한다.
Abstract:
A system for disrupting a biofilm on a medical device that comprises an implantable medical device; a magnetically-sensitive coating on the surface of the implantable device comprising a polymer and magnetic particles embedded within the polymer; and a coil element capable of generating an alternating magnetic field, wherein the coil element is constructed and arranged to be capable of applying an alternating magnetic field to induce heating of the surface of the implantable device.
Abstract:
본 발명은 챔버의 도어 잠금장치에 관한 것으로, 챔버 하우징의 입구 테두리를 따라 상측 및 하측 클램핑블록과 좌측 및 우측 클램핑블록이 동시에 챔버 하우징의 입구 방향으로 전진하여 닫힌 상태의 도어의 사면 가장자리를 동시에 클램핑하여 도어의 밀폐 간격을 균일하게 유지할 수 있고, 모터와 같은 구동수단을 하나만 사용하면서도 도어의 사방 가장자리를 균일하게 밀폐시킴은 물론 도어의 개방을 수행할 수 있어 도어 작동 메커니즘 구현을 위한 챔버 제작 원가를 절감할 수 있으며, 도어의 중량을 낮출 수 있어 대형 챔버용 도어를 제작하는데 유리한 챔버의 도어 잠금장치를 제공한다.
Abstract:
본 발명은 공기압을 이용한 휴대용 살균수 스프레이건에 관한 것으로, 더욱 구체적으로는 살균수를 분사시킬 수 있도록 분사노즐과 작동레버를 갖는 손잡이가 마련되고 상측에 컨트롤러가 설치되는 전원공급본체와, 상기 전원공급본체를 통해 분사되는 살균수를 저장하며, 상기 전원공급본체의 하측에서 분리 및 결합 가능하게 설치되는 저장용기와, 상기 저장용기에 저장된 살균수가 공기압에 의해 상기 전원공급본체로 공급될 수 있도록 상기 전원공급본체의 하측에 고정 설치되는 살균수공급유닛 및 상기 저장용기 내에서 원수를 전기 분해하여 살균수를 생성할 수 있도록 상기 살균수공급유닛의 하측에 고정 설치되는 살균수생성유닛을 포함하여 이루어진 것을 특징으로 한다.
Abstract:
The present invention relates generally to peroxyformic acid forming compositions, methods for forming peroxyformic acid, preferably in situ , using the peroxyformic acid forming compositions. The present invention also relates to the peroxyformic acid formed by the above compositions and methods. The present invention further relates to the uses of the peroxyformic acid, preferably in situ , for treating a surface or a target. The present invention further relates to methods for treating a biofilm using peroxyformic acid, including peroxyformic acid generated in situ .
Abstract:
An apparatus comprising: a sensor configured to sense ambient smell; and a processor configured, responsive to the sensor sensing the ambient smell, to determine smell impact based on the ambient smell, and to conduct at least one counter action based on the smell impact.
Abstract:
A diffusive illuminator is provided. The diffusive illuminator includes a set of light sources and a light guiding structure including a plurality of layers. At least some of the layers can be formed of a fluoropolymer and at least one layer can be formed of a transparent fluid. The light guiding structure also includes an emission surface through which diffused light exits. The light guiding structure can further include diffusive elements associated with at least one of the plurality of layers. Each diffusive element can diffuse the light to within forty percent of Lambertian distribution. The diffusive elements can be arranged based on a desired uniformity of the diffused light at a target distance corresponding to a surface to be illuminated. The diffusive illuminator can emit ultraviolet light, and can be implemented as part of a disinfection system.
Abstract:
A diffusive illuminator is provided. The diffusive illuminator includes a set of light sources and a light guiding structure including a plurality of layers. At least some of the layers can be formed of a fluoropolymer and at least one layer can be formed of a transparent fluid. The light guiding structure also includes an emission surface through which diffused light exits. The light guiding structure can further include diffusive elements associated with at least one of the plurality of layers. Each diffusive element can diffuse the light to within forty percent of Lambertian distribution. The diffusive elements can be arranged based on a desired uniformity of the diffused light at a target distance corresponding to a surface to be illuminated. The diffusive illuminator can emit ultraviolet light, and can be implemented as part of a disinfection system.