System for registration of a fluid level in a receptacle
First Claim
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1. A system for detecting a level of a fluid contained within a fluid chamber of a receptacle, the system comprising:
- a light source directing a beam of light in a path into the fluid chamber of said receptacle;
a reflection member disposed within said fluid chamber along said path and being movable relative to the receptacle based said level of the fluid contained within the receptacle, the reflection member reflecting said beam of light as a reflected beam of light having an intensity related to a position of the reflection member relative to the receptacle; and
, a light detector positioned to receive the reflected beam of light and adapted to determine said level of the fluid contained within the fluid chamber based on said intensity of the reflected beam of light.
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Abstract
A system is provided for registration of a fluid level of a fluid in the fluid chamber of an invention-specific receptacle (1), in particular of ink in an ink cartridge, with a light source (11) which beams into the chamber of the receptacle, a reflection body (2) which is designed as a float, which moves in the chamber of the receptacle in dependency upon the filling level of the fluid and which variably reflects the light in dependency upon its movement, and a light detector (10) which receives a variable amount of light.
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Citations
58 Claims
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1. A system for detecting a level of a fluid contained within a fluid chamber of a receptacle, the system comprising:
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a light source directing a beam of light in a path into the fluid chamber of said receptacle;
a reflection member disposed within said fluid chamber along said path and being movable relative to the receptacle based said level of the fluid contained within the receptacle, the reflection member reflecting said beam of light as a reflected beam of light having an intensity related to a position of the reflection member relative to the receptacle; and
,a light detector positioned to receive the reflected beam of light and adapted to determine said level of the fluid contained within the fluid chamber based on said intensity of the reflected beam of light. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29)
the reflection member defines a cylinder; and
,the at least one cylindrical hollow space extends parallel to a central axis of the cylinder and continuously between opposite end surfaces of the cylinder.
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11. The system according to claim 10 wherein the at least one cylindrical hollow space includes exactly two cylindrical hollow spaces extending through said cylinder parallel to said central axis.
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12. The system according to claim 11 wherein:
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a first fictitious plane is defined through said cylinder along said central axis, the first fictitious plane dividing the cylinder into a first half and a second half;
said recess and said first hollow space are formed in said first half of said cylinder;
said second hollow space is formed in said second half of said cylinder; and
,said first and second hollow spaces define central axes which extend in parallel with said central axis in a second fictitious plane defined through said cylinder, the second fictitious plane intersecting obliquely with said first fictitious plane in the central axis of the cylinder.
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13. The system according to claim 12 wherein a distance between a central axis of said first hollow space relative to said central axis of said cylinder, and a distance of a central axis of said second hollow space relative to said central axis of said cylinder are the same.
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14. The system according to claim 13 further including a second recess formed in said second half of said cylinder.
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15. The system according to claim 3 wherein:
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said reflection member is cylindrical shaped and defines a central axis; and
,the reflection member is arranged rotatably around said central axis in said fluid chamber of the receptacle.
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16. The system according to claim 3 wherein said outer surface of the reflection member defines at least one second recess.
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17. The system according to claim 16 wherein the reflection member is cylindrically shaped.
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18. The system according to claim 17 wherein said first recess and said at least one second recess are formed about the circumference of the cylindrically shaped reflection member.
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19. The system according to claim 18 wherein exactly two recesses are formed on opposite sides of the cylindrically shaped reflection member.
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20. The system according to claim 1 wherein said reflection member has an inhomogeneous distribution of mass.
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21. The system according to claim 1 further including a transport window formed in a wall of said receptacle, said beam of light being directed into said fluid chamber of the receptacle through said transparent window.
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22. The system according to claim 21 wherein said window defines a blunt projection extending into an interior of said receptacle.
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23. The system according to claim 1 wherein said reflection member is pivotally connected at an articulation at a wall of the receptacle by a rigid suspension member, the reflection member being movable in a circular path around an articulated axis defined at said articulation point.
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24. The system according to claim 1 further including a guide way adapted to guide said reflection member in movement relative to said receptacle based on said level of the fluid within the fluid chamber of the receptacle.
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25. The system according to claim 1 further including:
a suspension member for attaching said reflection member to a lid of said receptacle, said reflection member moving together with said level of the fluid contained within said fluid chamber of the receptacle.
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26. The system according to claim 25 wherein an underside of said reflection member defines a recess, and walls of said recess re-direct said light beam from said light source.
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27. The system according to claim 1 wherein said reflection member is a prism shaped float movable relative to the receptacle based on said level of the fluid contained within the receptacle.
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28. The system according to claim 27 wherein said prism shaped float is adapted to re-direct said beam of light from said light source into said light detector when said receptacle is empty of said fluid.
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29. The system according to claim 27 further including a guide way in the fluid chamber of the receptacle, said guide way guiding said reflection member along a straight line movement path within said receptacle.
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30. An ink cartridge for use with an associated ink jet printer including a light source directing a beam of light in a path toward said cartridge and a light detector positioned to receive a reflected beam of light from the cartridge and adapted to determine a level of fluid contained within the cartridge based on an intensity of the reflected beam of light, the ink cartridge comprising:
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a set of receptacle walls defining a fluid chamber for containing ink within the cartridge; and
,a reflection body floatable on said fluid contained within the cartridge, the reflection body being movable relative to a receptacle wall of the cartridge based on a level of the fluid contained within the receptacle, the reflection body reflecting said beam of light from said light source as a reflected beam of light toward said light detector, the reflected beam of light having an intensity related to a position of the reflection body relative to said receptacle wall. - View Dependent Claims (31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58)
the reflection body defines a cylinder; and
,the at least one cylindrical hollow space extends parallel to a central axis of the cylinder and continuously between opposite end surfaces of the cylinder.
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40. The system according to claim 39 wherein the at least one cylindrical hollow space includes exactly two cylindrical hollow spaces extending through said cylinder parallel to said central axis.
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41. The system according to claim 40 wherein:
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a first fictitious plane is defined through said cylinder along said central axis, the first fictitious plane dividing the cylinder into a first half and a second half;
said recess and said first hollow space are formed in said first half of said cylinder; and
,said first and second hollow spaces define central axes which extend in parallel with said cylinder, the second fictitious plane in the central axis of the cylinder.
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42. The system according to claim 41 wherein a distance between a central axis of said first hollow space relative to said central axis of said cylinder, and a distance of a central axis of said cylinder are the same.
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43. The system according to claim 42 further including a second recess formed in said second half of said cylinder.
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44. The system according to claim 32 wherein:
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said reflection body is cylindrical shaped and defines a central axis; and
,the reflection body is arranged rotatably around said central axis in said fluid chamber of the receptacle.
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45. The system according to claim 32 wherein said outer surface of the reflection body defines at least one second recess.
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46. The system according to claim 45 wherein the reflection body is cylindrically shaped.
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47. The system according to claim 46 wherein said first recess and said at least one second recess are formed about the circumference of the cylindrically shaped reflection body.
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48. The system according to claim 47 wherein exactly two recesses are formed on opposite sides of the cylindrically shaped reflection body.
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49. The system according to claim 30 wherein said reflection body has an inhomogeneous distribution of mass.
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50. The system according to claim 30 further including s transparent window formed in a wall of said receptacle, said beam of light-being directed into said chamber of the receptacle through said transparent window.
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51. The system according to claim 50 wherein said window defines a blunt projection extending into an interior of said receptacle.
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52. The system according to claim 30 wherein said reflection body is pivotally connected at an articulation at a wall of the receptacle by a rigid suspension member, the reflection body being movable in a circular path around an articulated axis defined at said articulation point.
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53. The system according to claim 30 further including a guide way adapted to guide said reflection body in movement relative to said receptacle based on said level of the fluid within the fluid chamber of the receptacle.
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54. The system according to claim 30 futher including:
a suspension member for attaching said reflection body to a lid of said receptacle, said reflection body moving together with said level of the fluid contained within said fluid chamber of the receptacle.
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55. The system according to claim 54 wherein an underside of said reflection body defines a recess, and walls of said recess re-direct said light beam from said light source.
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56. The system according to claim 30 wherein said reflection body is a prism shaped float movable reative to the receptacle based on said level of the fluid contained within the receptacle.
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57. The system according to claim 56 wherein said prism shaped float is adapted to re-direct said beam of light from said light source into said light detector when said receptacle is empty of said fluid.
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58. The system according to claim 56 further including a guide way said guide way guiding said reflection body along a stright line movement path within said receptacle.
Specification