Abstract:
A milking parlor has a holding gate and a parallel spaced individually loaded-occupied-unloaded milking stall with an operator pit located intermediate the holding gate and the milking stall. The operator pit can be recessed from the holding gate and the milking stall, wherein a bridge or a bridge cart selectively connects a holding gate to an unoccupied milking stall. A robotic or human operator can function from the operator pit to implement the milking process.
Abstract:
A method of testing a biological fluid for the presence of an infection. The method includes the steps of introducing a sample of biological fluid and a reagent including light amplifying compound into a reaction chambers, the light amplifying compound reacting with a substance present only in an infected sample to emit light, and immediately measuring the intensity of any light emitted from the sample.
Abstract:
A pulsator controller for monitoring and controlling a designated pulsator in a milking system and method of using same is shown. The pulsator controller includes a first sensor operatively connected to a designated pulsator for receiving a pulsating vacuum and for producing a first signal representing the pulsating vacuum level. A processor has a memory for storing pulsator malfunction criteria reference table and reference signals representing a predetermined vacuum range of pulsating vacuum levels programmed as acceptable for milking system pulsators. The processor generates a one control signal when the designated pulsator pulsating vacuum level is at a vacuum level outside of the predetermined vacuum range and an information signal from the pulsator malfunction criteria reference table identifying the pulsator malfunction represented by the control signal. A control circuit is responsive to the at least one control signal for producing a signal representing a programmed condition.
Abstract:
A delivery head for delivering a milk portion is connected via a connection line to a milk container in a refrigerator. A rinsing agent source is connected via a first line to a connection part in the connection line. A first on-off valve is inserted in the first line. The connection part is also connected via a second line and a second valve to a fresh air source. The container, the valves, and the connection part are installed in a refrigerator. Through this implementation, complete emptying of the connection line and the delivery head of rinse water after the rinsing procedure, as well as efficient rinsing during the rinsing procedure, are achieved.
Abstract:
The present invention refers to a method of disinfecting or sterilizing at least a portion of any of a resting, a milking, or a feeding station (3, 24, 26) provided with an animal identification device (18) and located in an area (1), in which milking animals are allowed to move. Each of the animals visiting the resting, the milking, or the feeding station is identified and is admitted to enter the station depending on the identification. The inventive method comprises the steps of retrieving information regarding the health of each of the animals entering the station; and automatically disinfecting or sterilizing the portion of the station only if the information retrieved reveals that an animal entering the station has an infection that is capable of being transmitted to other animals. The disinfection or the sterilization is performed after that said infectious milking animal has left the station.
Abstract:
An assembly for feeding and milking animals. The assembly is provided with a feeding system comprising a movable feed platform and a drive unit for driving the feed platform, a number of feeding places being provided on the feed platform. The assembly is further provided with a milking system for, in particular automatically, milking animals on the feed platform, which milking system comprises a number of sets of teat cups. The feed platform is at least for the greater part free from separating elements between the feeding places, i.e. the feed platform is at least for the greater part free from separating elements for confining animals.
Abstract:
A milking device and method for removing a teat cup from a teat of an animal are disclosed. The teat cup has a teat space for containing a teat and is connected via a milk tube to a vacuum source for generating a milking vacuum. A drawing-away device is provided for drawing the teat cup away from the animal only after a vacuum-lowering device has lowered the milking vacuum in the teat space below a threshold value. The level of vacuum may be measured by means of a vacuum sensor.
Abstract:
A rotary milking apparatus having a rotating support structure having a plurality of milking stations, each having a milking unit and a wash unit. Each wash unit has a washing connecting device positioned to travel in a circumferential path of travel through a washing location There is a wash control valve for each wash unit having a first location to cause milk to be deliverd from the milking unit to a collecting location, and a second position to enable wash liquid to be delivered to the milking unit. There is a single wash liquid supply section having a nozzle which travels in an arcuate back and forth pass to travel to connect to the connecting device of each wash unit. The wash liquid supply section delivers wash liquid individually to each wash unit as it passes through the wash location.
Abstract:
In a method of positioning means for automatically milking animals, such as cows, there is used a robot construction. The means for automatically milking are positioned, by means of said robot construction, in the longitudinal direction of the milking parlour relative to a reference plane situated transversely to said longitudinal direction, in which reference plane the centre of gravity of the relevant animal is located.
Abstract:
Methods and apparatus enabling a diagnostic test to be carried out on milk flowing in a milk line from an animal being milked, without interrupting the milking process, in which a portion of the milk is diverted through a by-pass in which an extracting means (14) in the form of a vacuum-operable pump and timer acts to separate from the milk flowing in the by-pass a milk sample and to deliver said sample through an associated sampling valve (16) to a testing device (18).