Abstract:
A lighting device includes: at least one laser light source configured to emit a light beam; and a light conversion element associated with the at least one laser light source and arranged in the beam path of at least one light beam generated by at least one laser light source such that at least a portion of the light beam emitted by the at least one laser light source is directed onto the light conversion element, and in such a way that a laser light spot is illuminated on a face of the light conversion element facing the incident light beam, the light conversion element comprising a material which, through scattering, absorption and conversion of the incident laser light, emits and scatters light of a larger wavelength.
Abstract:
A base body for a light conversion device and/or an illumination device is configured as a heat sink. The base body has a front side which is configured to mount a light conversion element on the base body. The base body includes an indicator for positioning/alignment of a light conversion element on the base body, and/or an indicator for positioning/alignment of the base body relative to a component for retention of the base body.
Abstract:
Lighting devices for providing a secondary light with high luminance are provided. The lighting devices include a light conversion element and a light emitting unit with a light source that emits a primary light. The light conversion element has a front side illuminated with the primary light and, in response to the primary light, to emit a secondary light from the front side. The secondary light has a larger wavelength than the primary light.
Abstract:
A glass is disclosed that is particularly suitable as pharmaceutical packing medium and as a chemically pre-stressable glass comprising at least the following components (in mol-% on oxide basis): 64-77 SiO2, 5-14 Al2O3, 4-12 Na2O, 1-12 CaO, 0-14 MgO, 0 -2 ZrO2, 0-4.5 TiO2, wherein the ratio Al2O3/Na2O≥1, wherein the ratio Al2O3/CaO≥1.5, and wherein the total content SiO2+Al2O3
Abstract:
A glass is disclosed that is particularly suitable as pharmaceutical packing medium and as a chemically pre-stressable glass comprising at least the following components (in mol-% on oxide basis): 64-77 SiO2, 5-14 Al2O3, 4-12 Na2O, 1-12 CaO, 0-14 MgO, 0-2 ZrO2, 0-4.5 TiO2, wherein the ratio Al2O3/Na2O≧1, wherein the ratio Al2O3/CaO≧1.5, and wherein the total content SiO2+Al3O3
Abstract:
An integral homogeneous rod lens and the manufacturing thereof from a raw glass body are provided by melting the raw glass body in a mold, whereby a protruding part of the raw glass body deforms into a dome shape with a spherical or nearly spherical surface that defines a convex lens portion of the rod lens.
Abstract:
In a process and apparatus for treating or processing containers (2) that are used for storing substances for medical, pharmaceutical or cosmetic applications or contain the same, cylindrical containers open at least at one end are automatically led past or pass through processing stations for treatment or processing by means of a conveying device, while said containers are jointly held by a carrier (25; 134) in a regular two-dimensional arrangement. The carrier comprises a plurality of openings or receptacles (32; 39; 87; 120), which determine the regular arrangement.According to the invention, the treatment or processing of the containers is performed on or in at least one of the processing stations while the containers are supported by the carrier. This opens up new possibilities for treating or processing the containers, for example when crimping metal lids or during freeze-drying.
Abstract:
A transport and packaging container for a plurality of pharmaceutical containers and a method for transferring the pharmaceutical containers from the transport and packaging containers into a clean room are provided. By placing a side wall of the transport and packaging container in close proximity to or in contact with the side wall of the clean room and by opening the side wall of the transport and packaging container and a transfer port door of the clean room, the pharmaceutical containers can be transferred into the inside space of the clean room via the access opening.
Abstract:
Disclosed is a transport and packaging container for accommodating a plurality of cylindrical containers for substances, comprising at least two segments of which each can be handled separately and which can be assembled or stuck together to jointly form the transport and packaging container, wherein a first segment of the at least two segments has a bottom for supporting the plurality of containers, and positioning devices are provided for positioning the plurality of containers in the interior of the transport and packaging container in a regular arrangement in such a manner that a collision of the directly adjacent containers is prevented, and wherein at least one of the segments comprises sealing means.
Abstract:
A transport and packaging container for a plurality of pharmaceutical containers and a method for transferring the pharmaceutical containers from the transport and packaging containers into a clean room are provided. By placing a side wall of the transport and packaging container in close proximity to or in contact with the side wall of the clean room and by opening the side wall of the transport and packaging container and a transfer port door of the clean room, the pharmaceutical containers can be transferred into the inside space of the clean room via the access opening.