IP Library Granted Patent US 12675666
Granted Patent B2
US 12675666 · App. 19/026,583 · Granted Jul 7, 2026

Limit value detection device comprising a counting unit

Inventors: Sven Spieth (Dauchingen, DE); Simon Herrlich (Unterkirnach, DE); Daniel Hoffmann (Villingen-Schwenningen, DE)
Assignee: HAHN-SCHICKARD-GESELLSCHAFT FÜR ANGEWANDTE FORSCHUNG E.V.
G06M1/083G06M1/14
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Quick Facts
Patent No.
US 12675666
App. No.
19/026,583
Granted
Jul 7, 2026
Kind
B2
Abstract

A limit value detection device for multiple detection of a limit value event has a catch mechanism manufactured using microstructuring technology, having a first and a second catch element, each having a plurality of catches, a pawl configured to engage in a catch intermediate space between two adjacent catches of the first catch element, the first catch element being movable relative to the pawl in a freewheeling direction and movement thereof relative to the pawl in a blocking direction being blockable by the pawl, and an actuating device configured to move the first catch element and the pawl relative to each other in a catch-by-catch manner in the freewheeling direction. The first and second catch elements together form a counting unit in which the counter status for indicating the detected limit value events is determined based on the position of the two catch elements relative to each other.

Claims (55)

1 . A limit value detection device for multiple detection of a limit value event, comprising:

a catch mechanism manufactured using microstructuring technology, comprising a first catch element and at least a second catch element, wherein each catch element comprises a plurality of catches each, wherein the catches of the first catch element engage in the catches of the second catch element, such that the first catch element moves the second catch element continuously and also in a catch-by-catch manner during a catch-by-catch movement,

a pawl configured to engage in a catch intermediate space between two adjacent catches of the first catch element, wherein the first catch element is movable relative to the pawl in a freewheeling direction and movement of the first catch element relative to the pawl in a blocking direction is blockable by means of the pawl, and

an actuating device configured to move the first catch element and the pawl relative to each other in a catch-by-catch manner in the freewheeling direction,

wherein the catch elements of the catch mechanism together form a counting unit in which the counter status for indicating the detected limit value events is determined on the basis of the position or positioning of the catch elements relative to each other,

wherein the individual catch elements of the catch mechanism can each assume a plurality of different unique positions relative to each other, wherein each of these unique positions represents exactly one counter status of the counting unit, and

wherein the counter status is indicated in the sense of a coding, in which the number of possible unique positions of the individual catch elements relative to each other determines the number of available code words.

2 . The limit value detection device according to claim 1 ,

wherein the number of catches of the first catch element differs from the number of catches of the second catch element.

3 . The limit value detection device according to claim 1 ,

wherein the number of catches of the first catch element and the number of catches of the second catch element do not comprise a greatest common divisor except 1 .

4 . The limit value detection device according to claim 1 ,

wherein the first catch element comprises fewer catches and a smaller diameter than the second catch element.

5 . The limit value detection device according to claim 1 ,

wherein the catch mechanism also comprises one or more additional catch elements in addition to the first and second catch elements, wherein each additional catch element engages in the catches of the first catch element such that the first catch element also moves the second and all additional catch elements.

6 . The limit value detection device according to claim 1 ,

wherein the catch mechanism also comprises one or more additional catch elements in addition to the first and second catch elements, wherein, in the sense of a series connection, every two adjacent ones of the catch elements engage with each other.

7 . The limit value detection device according to claim 1 , additionally comprising:

an end stop configured to prevent further movement of the catch elements after a complete counting pass of the counter unit.

8 . The limit value detection device according to claim 7 ,

wherein the end stop comprises a first and a second stop element, and

wherein the first stop element is arranged in a catch intermediate space of the first or second catch element, and thus protrudes further from the outer circumference of the respective catch element than its respective catches,

such that the catches run past the second stop element in an unhindered manner while the first stop element strikes the second stop element.

9 . The limit value detection device according to claim 1 ,

wherein the microstructured limit value detection device is arranged on a substrate, and wherein movement of the actuation device takes place in a plane parallel to the substrate plane.

10 . The limit value detection device according to claim 1 ,

wherein the catch elements of the catch mechanism are each configured in the form of a gearwheel, and wherein the associated catches are each configured in the form of toothing arranged radially on the outside or radially on the inside on the respective catch element.

11 . The limit value detection device according to claim 1 ,

wherein the limit value detection device is configured as a sterilization cycle counter in which the counter unit increases the counter status by one after each successfully performed sterilization process.

12 . A limit value detection device for multiple detection of a limit value event, comprising:

a catch mechanism manufactured using microstructuring technology, comprising a first catch element and at least a second catch element, wherein each catch element comprises a plurality of catches each,

a pawl configured to engage in a catch intermediate space between two adjacent catches of the first catch element, wherein the first catch element is movable relative to the pawl in a freewheeling direction and movement of the first catch element relative to the pawl in a blocking direction is blockable by means of the pawl, and

an actuating device configured to move the first catch element and the pawl relative to each other in a catch-by-catch manner in the freewheeling direction,

wherein the catch elements of the catch mechanism together form a counting unit in which the counter status for indicating the detected limit value events is determined on the basis of the position or positioning of the catch elements relative to each other,

wherein the limit value detection device comprises a second pawl configured to engage in a catch intermediate space between two adjacent catches of the second catch element, wherein the second catch element is movable relative to the second pawl in a freewheeling direction and movement of the second catch element relative to the second pawl in a blocking direction is blockable by means of the second pawl, and

wherein the actuating device is configured to move the second catch element relative to the second pawl in a catch-by-catch manner in the freewheeling direction.

13 . The limit value detection device according to claim 12 ,

wherein, during actuation, the actuating device moves both the first catch element and the second catch element together by one catch each.

14 . A limit value detection device for multiple detection of a limit value event, comprising:

a catch mechanism manufactured using microstructuring technology, comprising a first catch element and at least a second catch element, wherein each catch element comprises a plurality of catches each,

a pawl configured to engage in a catch intermediate space between two adjacent catches of the first catch element, wherein the first catch element is movable relative to the pawl in a freewheeling direction and movement of the first catch element relative to the pawl in a blocking direction is blockable by means of the pawl, and

an actuating device configured to move the first catch element and the pawl relative to each other in a catch-by-catch manner in the freewheeling direction,

wherein the catch elements of the catch mechanism together form a counting unit in which the counter status for indicating the detected limit value events is determined on the basis of the position or positioning of the catch elements relative to each other,

wherein the catches of the first catch element and the catches of the second catch element do not engage in one another, and

wherein, in addition to the plurality of catches, the first catch element comprises a drive element configured to engage in the catches of the second catch element in order to move the second catch element on in a catch-by-catch manner.

15 . The limit value detection device according to claim 14 ,

wherein, per completed 360° rotation of the first catch element, the drive element moves the second catch element by one catch each.

16 . The limit value detection device according to claim 14 ,

wherein the first catch element comprises exactly one single drive element.

17 . The limit value detection device according to claim 14 ,

wherein the first catch element is of annular configuration, and the catches are arranged in the form of external toothing on the outer circumference of the annular first catch element, and

wherein the drive element is arranged on the inner circumference of the annular first catch element.

18 . The limit value detection device according to claim 17 ,

wherein the outer diameter of the second catch element is smaller than the inner diameter of the annular first catch element, and

wherein the second catch element is arranged inside the annular first catch element.