Abstract:
A sample container carrier for a laboratory sample distribution system is presented. The sample container carrier comprises a magnetic element that is arranged such that a magnetic move force applied to the sample container carrier depends on an angularity. A laboratory sample distribution system comprising such a sample container carrier and a laboratory automation system comprising such a sample distribution system are also presented.
Abstract:
A dispatching device for dispatching sample containers received in respective sample container carriers from a transport surface to an external position and/or from the external position to the transport surface is presented. The dispatching device has a tube and a capsule, a conveying surface with an electromagnetic actuator being formed in the capsule. A sample distribution system with such a dispatching device and a laboratory automation system with such a sample distribution system are also presented.
Abstract:
A laboratory cargo distribution system is presented. The laboratory cargo distribution system comprises a number of transport carriers, a transport plane, a number of electro-magnetic actuators, a storage device and a control device. The storage device is adapted to store at least one of the number of transport carriers. A laboratory automation system comprising such a laboratory cargo distribution system and a method of operating such a laboratory cargo distribution system are also presented.
Abstract:
A sample container carrier for a laboratory sample distribution system is presented. The sample container carrier comprises a magnetic element that is arranged such that a magnetic move force applied to the sample container carrier depends on an angularity. A laboratory sample distribution system comprising such a sample container carrier and a laboratory automation system comprising such a sample distribution system are also presented.
Abstract:
A sample distribution system having a transport surface and sample container carriers arranged thereupon is disclosed. A dirt detection device for limiting the effect of dirt is provided.
Abstract:
A transport device for a sample container is presented. The transport device has a chuck for holding the sample container. The chuck has at least one jaw, which is formed from electrically contractile material. A receiving area for receiving and holding a sample container can thus be enlarged or made smaller. A sample distribution system having such a transport device and a laboratory automation system is also presented.
Abstract:
A sample distribution system having a transport surface on which sample container carriers can be moved is presented. The sample distribution system has ambient-condition influencing device in order to influence ambient conditions over a sub-region of the transport surface in such a way that samples can be kept there for a certain time without impairment.
Abstract:
A laboratory sample distribution system and to a laboratory automation system comprising a printed circuit board arrangement and a coil are presented. The printed circuit board arrangement and the coil are configured such that assembly and maintenance of the laboratory automation system are greatly simplified.
Abstract:
A method of operating a laboratory sample distribution system is presented. The method comprises a number of sample container carriers on a transport plane by a number of electro-magnetic actuators. The method is adapted to compensate deviations regarding physical properties of the sample container carriers, the transport plane and the electro-magnetic actuators compared to reference components. A laboratory automation system comprising such a laboratory sample distribution system is also presented.
Abstract:
A laboratory sample distribution system and to a laboratory automation system comprising a printed circuit board arrangement and a coil are presented. The printed circuit board arrangement and the coil are configured such that assembly and maintenance of the laboratory automation system are greatly simplified.