Abstract:
A detector arrangement, which comprises a rotatable microfluidic disc and a spectrophotometric detector unit. The arrangement is characterized in that the detector unit is based on surface plasmon resonanc (SPR) and is capable of measuring an analyte within the detection microcavities, each of which is part of a microchannel structure. A microfluidic disc having an axis of symmetry and comprising microchannel structures, each of which has an upstream functional part that is at a shorter radial position than a downstream functional part. The disc is characterized in that there are detection microcavities (DMCs) in at least a part of said microchannel structures, and that each of said DMCs has an SPR surface on an inner wall and a detection detection window extending from the SPR surface to the surface of the disc. The use of the detector arrangement and microfluidic disc described above for determining: a) if the content in one or more of the DMCs is a liquid or a solid state or a gas, and/or b) a feature of an analyte that may be present in a liquid which is present in one or more of the DMCs.
Abstract:
A method for printing a conductive coating on an electronic unit by means of tampon printing is provided. During the tampon printing phase, a tampon pad is moved in small movements in one or more directions in relation to the electronic unit. The movements are made while the tampon pad is in contact with the surface to be printed.
Abstract:
Seal strip for a hollow circular cylindrical screening device, which screening device is intended to be used in a paper or cardboard machine for the production of paper or cardboard, the seal strip having an indicator for indicating wear of the seal strip. The indicator is arranged to continuously give a measure of a remaining wear allowance and preferably also a wear rate, of the seal strip.
Abstract:
The invention relates to an electrically conductive unit having electrically conductive paths, which are directly or indirectly applied onto a case for creating a screening against electromagnetic radiation and for the draining of electrical currents.
Abstract:
Arrangement at tiller truck, at which the communication between the handle and the truck itself is done via a serial connection, for instance a serial cable (31) between a logic unit in the handle and a logic unit in the truck itself. A drive control (7, 8) includes a number of Hall-sensors (19) that are successively activated by a magnet (17) that is in turn mechanically activated, so that via a logic circuit a varied drive current is fed to the drive motor. The Hall-sensors (18) are arranged on a circuit card 19 that also include logic circuits. A safety control (belly button) (9) that is arranged on the handle. If the belly button is depressed this is on an inward protruding arm (21) provided with a magnet 22 that at this movement is moved so that it will influence one or several Hall elements belonging to the drive control (7, 8), at which however the magnet (22) is on the other side of a circuit card (20) that carries the Hall elements. The logic of the circuit card is programmed to activate an anti squeeze operation where the truck moves away from the driver until the button has been released and has returned to its initial position. On the bottom side of the handle a key board (14) is arranged for authentication and starting and stopping of the truck instead of with a key.
Abstract:
Tamp printing of at least one picture (4) occurs by means of at least one tamp pad (1, 18, 24, 34) on a piece (3), which has boundary surfaces (5, 13) forming angles relative to each other, the tamp pad first printing in one direction (10) against a boundary surface (13, 43) and thereafter, after further compression of the tamp pad (1) against said boundary surface (13) due to its deformation, prints in another direction (45) than the direction (10) against another boundary surface or other boundary surfaces (5, 43), whereby the picture is transferred to said boundary surfaces.
Abstract:
A layer may be produced on the surface of a detail to thereby provide electromagnetic radiation shielding. The layer (e.g., a metallic layer) is transferred either directly or indirectly onto the detail, which may be all or a portion of, for example, a telephone casing. The transfer may be effectuated through a variety of techniques. For example, a tampon pad may be crafted to conform to the surface of the detail. After the tampon pad is coated by collecting the layer (e.g., from a foundation onto which the layer was pressed through a screen frame or from an etched plate), the layer is transferred to the detail from the tampon pad. Additional examples include transferring the layer by using a screen printing method or by sinking the detail into a fluid bath.
Abstract:
A materials-handling fork-lift truck comprising a chassis (11) which is fitted with two forwardly extending, mutually parallel support legs (18), and a chassis-mounted lifting mast assembly (16) provided with a raisable and lowerable lifting fork (17). The lifting mast assembly can be moved along the support legs (18), between a first, mast-withdrawn position and a second, mast-extended position, in which the lifting fork is located close to the outer ends (19) of the support legs. The lifting mast assembly (18) is intended to be supported on the support legs (18), and a linkage mechanism (20) is provided for effecting movement of the mast assembly along the support legs. The linkage mechanism is also intended to constitute a horizontal support for the mast assembly (16).
Abstract:
The disclosure relates to opening window, door or the like comprising a frame (1, 2), a casement (3, 4) and an exteriorly disposed protective cladding (7).The invention is designed to offer such a simple solution to the suspension of the casement and the mounting of the protective cladding as also permits that the casement may be pivoted so that its outside will be interiorly accessible.The window has at least one portion of the protective cladding (7) designed as a retainer unit which is pivotal and is fixedly retained in the frame (1, 2) by means of hinges (9). The casement (3, 4) is connected to the retaining unit by means of second hinges (10). The window is further provided with releasable locking devices (11) on the casement and the retaining unit, or grooves (13, 14) in the frame and a corresponding pin on the casement so as to hold together the casement and retaining unit whereby these, on normal opening and closing, are pivotal together as one unit while the casement, in certain positions, may be swung out away from the retaining unit and turned with its outside facing inwardly.