Abstract:
A medical delivery system comprising a container (202) for accommodation of a medicament and a dosing assembly (204) adapted to be fastened to the container. The medical delivery system comprises a coding mechanism for ensuring that only a predetermined container can be fastened to a predetermined dosing assembly. A container for use in the medical delivery system. A dosing assembly for use in the medical delivery system.
Abstract:
A self configuring headset system comprising an interface unit, a method of setting up a headset system to a telephone device using and interface unit and a telephone interface unit is provided. The telephone interface unit is configured to automatically set up a headset system to a telephone device, the headset system comprising a headset and the telephone interface unit, the telephone interface unit comprising a switching unit configured to switch at least a headset transmit signal line and a headset receive signal line to a telephone transmit signal line and a telephone receive signal line, respectively, and a processor being pre-programmed with one or more telephone device permutation settings, wherein the processor is configured to receive, from the telephone device, telephone configuration information on the basis of which a specific permutation setting is selected among the one or more pre-programmed permutation settings, the processor being configured to control the switching unit according to the specific permutation setting.
Abstract:
A medical delivery system comprising a container (202) for accommodation of a medicament and a dosing assembly (204) adapted to be fastened to the container. The medical delivery system comprises a coding mechanism for ensuring that only a predetermined container can be fastened to a predetermined dosing assembly. A container for use in the medical delivery system. A dosing assembly for use in the medical delivery system.
Abstract:
A dosing assembly (204) and/or a container (202) comprising fastening means (206,208) for fastening the container to the dosing assembly, the fastening means of the dosing assembly and/or the container defining an asymmetrical pattern in a plane transverse to an axial direction of the dosing assembly and/or a container.
Abstract:
A mobile telephone has a display (240) and a rotator input device (250) comprising a rotatable element and capable of generating commands for browsing and selecting objects on the display. It also has a wireless telecommunication interface to a mobile telecommunications network. A processing device is coupled to the display, the rotator input device and the wireless telecommunication interface. A text-handling software application is executable by the processing device. The processing device is configured, in a first operating mode, to provide first user input by way of the rotator input device (250), said first user input including a number sequence representative of a desired telephone number which is to be reached over the mobile telecommunications network, and to use said first user input when establishing a telephone call connection through the wireless telecommunication interface. Moreover, the processing device is configured, in a second operating mode, to provide second user input by way of the rotator input device, said second user input including a character sequence representative of a desired text, and to forward said second user input to the text-handling software application No numeric or alphanumeric character keyboard is involved in neither of the first and second operating modes.
Abstract:
A device for injecting preparations is controlled by a sealed circuit block (10) containing integrated sensors (17, 21, 22, 23 24) which monitors selected parameters. Two pairs of integrated Hall elements (21, 23 and 22, 24) monitors movements relative to a sine formed magnetic field presented along the perimeter of a multipoled magnetized ring (7). The Hall elements in each pair are displaced 180° magnetically relative to each other and the two pairs of Hall elements are displaced 90° magnetically from each other. Each pair is coupled to a differential amplifier (25, 26) to provide a cosine and a sine signal, respectively. The sine signal is divided by the cosine signal to create a tangent signal as an entrance to a table showing the angle of the movement.
Abstract:
A communications system and a method of detecting and learning new ringtones in an automatic manner, comprising a desk phone (1), a hook switch, a ringtone detector (3), and a communications device (2). In a first embodiment a mechanical hook switch device is connected to the desk phone (1), and in a second embodiment an electronic hook switch unit (9) is connected to the desk phone (1). The ringtone detector (3) adaptively sets the filter and amplifier parameters according to the sensor position and pick-up sensitivity. The ringtone detector (3) automatically detects and learns the characteristics of new ringtones. The communications device (2) may comprise a base station (6) and a headset (7).
Abstract:
Disclosed is a stop for preventing a threaded rod from screwing thru a nut. The stop is formed by manufacturing a threaded rod having an unthreaded cylindrical portion and one or more grooves cut or manufactured longitudinally in the rod across both the threaded section and the unthreaded portion. A nut having an interior thread complementary to that of the rod has a hole bored thru its wall over a peak in the interior thread. The hole creates a stop surface on the interior thread that abuts a stop surface created by the groove in the unthreaded portion of the rod.
Abstract:
This invention relates to a mobile communication device (200) having a functional cover (202) for controlling sound applications by means of measuring motion of said functional cover (202). In particular, the present invention relates to a functional cover (202) for a mobile communication device (200) measuring motion and providing a control signal to the mobile communication device (200) in accordance herewith.
Abstract:
A manufacturing and packaging arrangement for cards, especially playing cards, includes a sheet cutting and card stacking station, two corner punching stations, and a packaging stations which are connected with one another by a conveyor arrangement that is driven by a motor. In the cutting and stacking station, printed sheets are cut up into individual cards and those cards which belong to respective sets are assembled into respective card stacks which are then discharged from the cutting and stacking station by a discharge arrangement and transferred by a transfer conveyor to an intermittently driven main conveyor. At the main conveyor, the individual card stacks are engaged by entraining fingers which extend into a transporting channel, and are intermittently transported longitudinally of the channel to the corner punching stations. A translationally displaceable supply and return conveyor moves and card stacks transversely to the main conveyor into and out of the respective corner punching station during the time periods of standstill of the main conveyor, for the arcuate punching of two corners of the card stack in each instance. At the downtream end of the main conveyor, the card stacks are transferred by an additional transfer conveyor to the packaging station. The various stations and conveyors are jointly driven by a single motor and synchronizing transmissions.