Rudolf M.
Rudolf M. Mayer, Neuhausen DE
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20140218793 | APPARATUS FOR MICROSCOPIC DETECTION OF HARDNESS - An adjustable stage mount includes a housing having a base defining a hole and an adjustable stage including a ball joint extension that rotatably engages the hole and is rotatably securable about the x-, y-, and z-axes. An adjustable indenter mount includes a housing defining a hole and an adjustable indenter including a ball joint extension that rotatably engages the hole and is rotatably securable about the x-, y-, and z-axes. A collision protection switch includes a first plate having three pairs of electrically conductive spaced apart pins wired to a voltage source in an open circuit, and a second plate having three electrically conductive balls. A spring pulls the first and second plates together causing the three balls to complete the circuit. A sufficient force against the second plate causes a ball to disengage and open the circuit. A two-objective microscope includes two parallel objectives, upper and lower light sources, three half-mirrors, and a camera. The camera and the half-mirrors are configured such that the camera views through either objective depending on which light source is on. | 08-07-2014 |
Rudolf M. Von Buenau, Jena DE
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20110235167 | CATADIOPTRIC PROJECTION OBJECTIVE - A catadioptric projection objective for imaging a pattern provided in an object plane of the projection objective onto an image plane of the projection objective comprises: a first objective part for imaging the pattern provided in the object plane into a first intermediate image; a second objective part for imaging the first intermediate imaging into a second intermediate image; a third objective part for imaging the second intermediate imaging directly onto the image plane; wherein a first concave mirror having a first continuous mirror surface and at least one second concave mirror having a second continuous mirror surface are arranged upstream of the second intermediate image; pupil surfaces are formed between the object plane and the first intermediate image, between the first and the second intermediate image and between the second intermediate image and the image plane; and all concave mirrors are arranged optically remote from a pupil surface. The system has potential for very high numerical apertures at moderate lens material mass consumption. | 09-29-2011 |
20140111787 | CATADIOPTRIC PROJECTION OBJECTIVE - A catadioptric projection objective for imaging a pattern provided in an object plane of the projection objective onto an image plane of the projection objective has a first, refractive objective part for imaging the pattern provided in the object plane into a first intermediate image; a second objective part including at least one concave mirror for imaging the first Intermediate imaging into a second intermediate image; and a third, refractive objective part for imaging the second intermediate imaging onto the image plane; wherein the projection objective has a maximum lens diameter D | 04-24-2014 |
Rudolf M. Wagner, Daun DE
Patent application number | Description | Published |
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20110035047 | METHOD FOR NEED-BASED ORDER-PICKING OF MEDICINE PORTIONS IN DISPENSING PACKS - In a method for need-based order-picking of medicine portions, several medicine portions of a defined type are firstly identified in several blister packs of different dimensions having receiving chambers and are placed in an automated storage facility. Data identifying the blister packs are saved in association with designations of their storage locations. A dispensing pack is then made ready at an automatic filling station and is filled as needed. Finally, the filled dispensing pack is placed in the same or another automated storage facility, if the dispensing pack is not yet intended to be distributed. | 02-10-2011 |
20140343715 | METHOD FOR NEED-BASED ORDER-PICKING OF MEDICINE PORTIONS IN DISPENSING PACKS - In a method for need-based order-picking of medicine portions, several medicine portions of a defined type are firstly identified in several blister packs of different dimensions having receiving chambers and are placed in an automated storage facility. Data identifying the blister packs are saved in association with designations of their storage locations. A dispensing pack is then made ready at an automatic filling station and is filled as needed. Finally, the filled dispensing pack is placed in the same or another automated storage facility, if the dispensing pack is not yet intended to be distributed. | 11-20-2014 |