Abstract:
Un sistema modular que puede ensamblar hábitats para gatos, a partir de placas cerradas o con un acceso circular central y que conforman los lados de un cubo como figura básica, cuyas caras de cada placa permite que le sean adosadas superficies y accesorios removibles con los que interactúa el gato como son placas de fibra tejida para rascar, superficies de descanso, cojines, túneles y juguetes o solamente su superficie perforada permite transparencia y cerramiento. El volumen básico cubico se arma usando varios herrajes de unión longitudinal, a 90 grados, en forma de "T" o forma "X" y pueden unirse más placas para realizar otros volúmenes mayores y variaciones a gusto del usuario, también pueden unirse varios volúmenes independientes y crear puentes, rampas y rascadores independientes para vincular diferentes hábitats. Posee también un sistema de juguetes como brazos oscilantes para adosar en los puntos de unión de los herrajes.
Abstract:
본 발명은 실험동물 사육장치인 케이지(cage)에 공기를 원활하게 흡기 또는 배기시킬 수 있도록 유도하여 단속(斷續)할 수 있기 위한 케이지용 밸브장치를 제공한다. 본 발명의 케이지용 밸브장치는 흡기공 및 배기공이 형성된 동물사육용 케이지(cage)에 장착되는 것으로, 일단이 막혀있고 측면이 트여 있으며 일측 외주연을 따라 톱니 모양의 제1 돌출부가 형성된 원통 형상의 밸브부재와, 상기 밸브부재 내측과 상응하는 형상으로 상기 밸브부재 내측에 삽입되는 메쉬 타입의 필터부재와, 상기 필터부재와 연통되되 전단에 제2 돌출부가 형성된 중공의 노즐부, 및 상기 제1 돌출부 및 제2 돌출부를 결합·고정하는 탄성재질의 체결부재를 포함하고, 상기 필터부재는 상기 노즐부와 분리되어 교체될 수 있으며, 상기 흡기공에 장착되어 외부로부터 상기 케이지 내부로 공기를 공급하거나 상기 배기공에 장착되어 상기 케이지 내부의 공기를 외부로 배출하도록 유도한다.
Abstract:
Systems, apparatuses, components, devices, and methods for controlling a habitat are provided. An example habitat control system includes a habitat functional device and a habitat control hub. The habitat functional device is configured to perform a function within a habitat. The habitat control hub is configured to provide power to the habitat functional device and to transmit instructions to the habitat functional device. An example method of controlling a habitat functional device includes transmitting an information request to a habitat control hub from a user computing device. The example method further includes receiving, from the habitat control hub, a list of habitat functional devices connected to the habitat device. The example method further includes transmitting an instruction for a habitat functional device from the list of habitat functional devices to the habitat control hub.
Abstract:
A method of rearing chickens comprises providing a chicken shed (10) having a floor area (12) over which the chickens can move freely. The shed (10) is provided with a plurality of lights (18) arranged to illuminate respective different regions of the floor area ( 12) so that, collectively, the lights (18) are able to illuminate substantially all of the floor area (12). The shed (10) is provided a plurality of cameras (20) arranged to view respective different regions of the floor area (12) so that, collectively, the cameras (20) are able to view substantially all of the floor area (12). Chickens are provided in the livestock shed (10) on the floor area (12). A controller (22) is provided and is operatively connected to the lights (18) and to the cameras (20). The controller (22) receives and analyses signals, such as images, from the cameras (20). The controller (22) controls the lights (18) to adjust illumination provided to the floor area (12) by the controlled lights (18) in a manner dependent on the signals from the cameras (20). The controller (22) is able to control each light (18) independently of the other lights (18). In some situations, the control of the lights (18) causes a predetermined desired response in the chickens. In some cases, the predetermined desired response overcomes or circumvents an undesirable situation recognised by the controller from analysis of the signals from the cameras (20).
Abstract:
본 발명은 축사 구조물에 관한 것으로, 축사 내부에 발생되는 가스를 지붕개폐와 측벽 개폐로 인해 외부로 배출시켜주고, 여름철 구조물 내부의 온도에 따라 지붕 및 측벽이 자동개폐되며, 측벽 상단의 PO필름으로 인한 자연광 투과의 살균효과와 내부 방충망으로 인하여 외부의 해충 유입을 방지하는 것으로 병균감염을 방지하는 가변형 축사 구조물에 대한 것이다. 본 발명은 구조물(10)의 사면이 격자 틀로 이루어진 측벽 프레임(110)과 상기 측벽 프레임(110) 상측에 지붕프레임(130)이 힌지(140) 결합되는 프레임부(100); 상기 측벽 프레임(110) 일측에 구비되는 모터가이드(210); 및 상기 모터가이드(210)에 결합되는 모터(211) 일측에 이송롤러(220)가 구비되고, 상기 이송롤러(220) 일측에 이송축(221)이 구비되며, 상기 이송축(221)의 회전으로 PO필름(30)을 권취시키며 승하강하는 측벽 개폐부(200); 상기 측벽 프레임(110) 외면 또는 지붕프레임(130) 외면에 부착되는 천(20); 상기 측벽 개폐부(200)와 지붕 구동부(300)를 제어하기 위해 기초바닥면(50) 일측에 구비되는 제어반(400); 을 포함하여 구성한 것을 특징으로 한다. [대표도] 도 1
Abstract:
An animal shelter is disclosed that has a supported overhead roof and flooring situated at least partially below said roof. The flooring has one or more first region(s) of a substantially horizontal flooring surface to (each) provide an animal stand-off pad. Situated on, or substantially adjacent to, or interspersed between, the first region(s), is 5 one or more second region(s) of raised surface topography, raised with respect to the first region(s). The second region(s) are preferably provided with bedding that allows for waste run off.
Abstract:
Shielding structure comprising a plurality of interconnected stretch- able inflatable balloons, wherein each stretchable balloon (3) is provided with an insertion valve (4), a release valve (22) and a power point (17) and is rolled off a spool (12) from a transport vehicle (1) at a desired location and laid on the ground. All necessary connection are rolled off from individual spring loaded spools and connected to the balloon, rings (6) being embedded within the structure of the balloon. To extend the shielding structure vertically or horizontally further balloons will be joined by tying the rings (6) together as well as- by interconnecting the gas insertion tubes, the connecting valves, the gas release tubes, the power cables and the hose sheath means from the first balloon to the second balloon an so on, so as to add as many balloons as required to form a large shielding structure of the type canopy, shelter, roof, energy producing structure, sun protection shield, disaster zone emergency shelter or protection shield against natural calamities.
Abstract:
A stretchable balloon (3) having a insertion valve (4) and a release valve (22) and power point (17) is rolled off the spool (12) from the transport vehicle (1) at a desired location and laid on the ground. All necessary connection are rolled off from their individual spring loaded spools and connected to the balloon and the rings (6) embedded within the structure of the balloon, such as the main inflation hose (16) connected to valve (4) and connected to valve (2) which is coupled with actuator means valve (11) and valve (24) connected to inflation system (5) pressure cylinders (20). Sheath (means 18) housing electrical and fibre optic cables to power point (17) connector members (7) to the rings (6). When valves (2) and (24) are coupled together the gas will start to flow into the interior of the balloon controlled by actuator valve (11) and as the inflating balloon is stretching upwards all the additional equipment such as solar panels and solar strips (13) wind power fans (9) extra strength members (15) camera c.c.t.v, slogan and advertisement banners, light elements, and any equipment will be attached to the rings (6). To extend the shielding structure vertically or horizontally the second balloon will be joined tying the rings together, small interconnecting gas insertion tube (10) connected to valves (19 and 14), small interconnecting gas release tube (25) from (22 to 22), small interconnecting power cable (26) from (17 to 17) and hose (16) sheath means (18) from first balloon to the second balloon completing the connections linking the two balloons together adding on as many balloons required to form a large shielding structure, canopy, shelter, roof, energy producing structure, rays of sun protection shield, disaster zone emergency shelter, protection shield against natural elements. Ail balloons are interlinked therefore a single insertion valve (4) a single release valve (22) a single power point (17) is required on the ground or the last balloon closet to the ground if suspended in the air to maintain constant gas pressure in the whole of the shielding structure having a plurality of interconnected stretchable balloons.
Abstract:
The invention provides a barn (1) in which dairy animals (27) can freely move about, lie down and eat. The floor (5) consists for the greater part of a moisture absorbing, pourable layer (14) which is able to collect moisture from manure and urine. This moisture is removed by means of solar heat and wind drying, and if this is not sufficient, by means of a floor heating (11, 12, 13). There is thus only required a very limited stationary sub-floor (22) with a manure collecting device (30), i.e. only below the milking implement (18).
Abstract:
The present invention provides a chamber having at least one operator hand access port; the port comprising a port aperture located within the chamber wall; and at least two flexible non-resilient lightweight sealing gas-tight flaps(SFs), disposed the same plane of the port aperture in an overlapping manner, entirely enclosing the port aperture; each of the SFs is defined by a port aperture edge and chamber edges; the chamber edges are anchored to the chamber wall along more than half of the perimeter of the flap, at a distance from the center of the port greater than the radius of the port and beyond its perimeter; the port aperture edge of each flap is stretched across an entire chord of the port aperture; stretched port apertures edges define an interior access zone, disposed the same plane of the port aperture, characterized solely by the port aperture edges.