Claims
- 1. A device for measuring a mass of a flowing medium in an air intake of an internal combustion engine, which comprisesa temperature-sensitive measuring element, around which the flowing medium flows and which is arranged in a measuring duct running in the device and extending in an axial direction from an inlet mouth of the measuring duct to a deflecting duct, into which the medium flowing out of the measuring duct flows and which flows out of an outlet orifice of the deflecting duct, an entry plane (55) defined by the cross-section of the inlet mouth (36) of the measuring duct (33), said entry plane extends through the outlet orifice (46) of the deflecting duct (34), wherein the inlet mouth (36) of the measuring duct (33) has a rectangular cross-section and the measuring duct has a rectangular cross section which narrows in an axial direction.
- 2. The device as claimed in claim 1, wherein an axial distance (a) from the entry plane (55) of the inlet mouth (36) to a centroid plane (56) limited by a centroid (S) of the outlet orifice (46) is at most approximately 50 percent of a minimum dimension (b) of a cross section of the inlet mouth (36).
- 3. The device as claimed in claim 1, wherein there is a measuring part (17) of a cuboid shape.
- 4. The device as claimed in claim 1, wherein the outlet orifice (46) of the deflecting part (34) has a rectangular cross section.
- 5. The device as claimed in claim 1, wherein the inlet mouth (36) of the measuring duct (33) has rounded edge faces (41).
- 6. The device as claimed in claim 1, wherein the measuring element (20) is designed in the form of a micromechanical component.
- 7. The device as claimed in claim 1, in which said device (1) is designed as a pluggable component.
- 8. A device for measuring a mass of a flowing medium in an air intake of an internal combustion engine, which comprises:a temperature-sensitive measuring element, around which the flowing medium flows and which is arranged in a measuring duct running in the device and extending in an axial direction from an inlet mouth of the measuring duct to a deflecting duct, into which the medium flowing out of the measuring duct flows and which flows out of an outlet orifice of the deflecting duct, said measuring duct being formed by a top wall, a bottom wall, and two side walls, each having a forward extent, said inlet mouth (36) of the measuring duct (33) being formed in an entry plane (55) which includes the forward extent of the two side walls, the entry plane (55) being defined by the cross-section of the inlet mouth (36) of the measuring duct (33) and said entry plane extends through the outlet orifice (46) of the deflecting duct (34).
- 9. The device as claimed in claim 8, wherein an axial distance (a) from the entry plane (55) of the inlet mouth (36) to a centroid plane (56) limited by a centroid (S) of the outlet orifice (46) is at most approximately 50 percent of a minimum dimension (b) of a cross section of the inlet mouth (36).
- 10. The device as claimed in claim 8, wherein there is a measuring part (17) of a cuboid shape.
- 11. The device as claimed in claim 8, wherein the inlet mouth (36) of the measuring duct (33) has a rectangular cross section.
- 12. The device as claimed in claim 11, wherein the measuring duct (33) has a rectangular cross section and narrows in the axial direction.
- 13. The device as claimed in claim 8, wherein the outlet orifice (46) of the deflecting part (34) has a rectangular cross section.
- 14. The device as claimed in claim 8, wherein the inlet mouth (36) of the measuring duct (33) has rounded edge faces (41).
- 15. The device as claimed in claim 8, wherein the measuring element (20) is designed in the form of a micromechanical component.
- 16. The device as claimed in claim 8, in which said device (1) is designed as a pluggable component.
- 17. A device for measuring a mass of a flowing medium, which device comprises:a temperature-sensitive measuring element, around which the flowing medium flows in a direction, and which measuring element is arranged in a measuring duct being formed by a top face, a bottom face, and two side faces, each having a forward extent in a direction opposite to the direction of flow of the flowing medium, with the forward extent of the two side faces being less than the forward extent of the top and bottom faces, the forward extent of the two side faces defining an entry plane, the measuring duct extending from the entry plane to a deflecting duct which includes an outlet orifice, wherein the medium flowing out of the measuring duct flows into the deflecting duct and then flows out of the outlet orifice of the deflecting duct, the deflecting duct being arranged such that the entry plane passes through the outlet orifice.
- 18. The device as claimed in claim 17, wherein the entry plane includes an entry mouth which is bounded by the top, bottom and side faces of the measuring duct, and an axial distance (a) from the entry plane (55) to a centroid plane (56) limited by a centroid (S) of the outlet orifice (46) is at most approximately 50 percent of a minimum dimension (b) of a cross section of the inlet mouth (36).
- 19. The device as claimed in claim 18, wherein the inlet mouth (36) of the measuring duct (33) has a rectangular cross section.
- 20. The device as claimed in claim 17, wherein the measuring duct (33) has a rectangular cross section and narrows in the axial direction.
Priority Claims (1)
Number |
Date |
Country |
Kind |
44 07 209 |
Mar 1994 |
DE |
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Parent Case Info
This application is a continuation of Ser. No. 08/545,583, filed Nov. 3, 1995 which is a 371 of PCT/DE95/00184 filed Feb. 15, 1995.
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Continuations (1)
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Number |
Date |
Country |
Parent |
08/545583 |
|
US |
Child |
09/866721 |
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US |