Sensor unit and gear having at least one such unit
11754052 ยท 2023-09-12
Assignee
Inventors
Cpc classification
F03D15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D17/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G01D11/30
PHYSICS
Y02E10/72
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F03D80/82
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G01L5/00
PHYSICS
B33Y80/00
PERFORMING OPERATIONS; TRANSPORTING
H02K7/1838
ELECTRICITY
International classification
F03D15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B33Y80/00
PERFORMING OPERATIONS; TRANSPORTING
F03D17/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D80/80
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G01D11/30
PHYSICS
G01L5/00
PHYSICS
Abstract
A sensor unit includes sensor constituent parts of various sensor devices and at least one printed circuit board that has voltage supply and signal transmission components for the sensor constituent parts and to which the sensor constituent parts are connected. The sensor unit has an annular base body that receives the sensor constituent parts and the at least one printed circuit board. A gear having such a sensor unit is also provided. A drive train having such a gear, a wind power installation having such a drive train, and an industrial application having such a gear are provided.
Claims
1. A sensor unit comprising: sensor constituent parts of various sensor devices; and at least one printed circuit board that has voltage supply and signal transmission components for the sensor constituent parts and to which the sensor constituent parts are connected, wherein the sensor unit has a base body that is annular and receives the sensor constituent parts and the at least one printed circuit board, wherein the base body of the sensor unit is arranged between a gear mount that is arranged on a gear shaft and a gear housing cover, wherein a measurement variable pickup and a signal transmitter are provided on the gear shaft radially inward of the base body as sensor constituent parts of a torque sensor device, wherein the various sensor devices include at least one torque sensor device, and wherein a signal receiver of annular design is positioned on an inner periphery of the base body as a sensor constituent part of the at least one torque sensor device.
2. The sensor unit of claim 1, wherein the various sensor devices have at least one temperature sensor device, at least one vibration sensor device, or any combination thereof.
3. The sensor unit of claim 1, wherein a single interface that is accessible from outside is provided on the base body for connection of external voltage supply and signal transmission lines.
4. The sensor unit of claim 3, wherein a measurement variable pickup of at least one temperature sensor device and a measurement variable pickup of at least one vibration sensor device are positioned on a first end side of the base body as sensor constituent parts, and wherein the single interface is positioned on a second end side of the base body, the second end side being opposite the first end side.
5. The sensor unit of claim 1, wherein the at least one printed circuit board is positioned in an interior of the base body.
6. The sensor unit of claim 1, wherein the base body is produced from an oil-resistant, temperature-resistant, and pressure-resistant material.
7. The sensor unit of claim 6, wherein the base body is made of a plastic.
8. The sensor unit of claim 7, wherein the base body is made of poly amide.
9. The sensor unit of claim 1, wherein the base body is an additive manufactured base body.
10. The sensor unit of claim 1, wherein the signal receiver is in the form of a brass strip.
11. The sensor unit of claim 1, wherein the signal receiver is in the form of a ring section.
12. A gear comprising: a sensor unit comprising: sensor constituent parts of various sensor devices; and at least one printed circuit board that has voltage supply and signal transmission components for the sensor constituent parts and to which the sensor constituent parts are connected, wherein the sensor unit has a base body that is annular and receives the sensor constituent parts and the at least one printed circuit board, wherein the base body of the sensor unit is arranged between a gear mount that is arranged on a gear shaft and a gear housing cover, wherein a measurement variable pickup and a signal transmitter are provided on the gear shaft radially inward of the base body as sensor constituent parts of a torque sensor device, wherein the various sensor devices include at least one torque sensor device, and wherein a signal receiver of annular design is positioned on an inner periphery of the base body as a sensor constituent part of the at least one torque sensor device.
13. The gear of claim 12, wherein the base body of the sensor unit is arranged between the gear mount that is arranged on the gear shaft and the gear housing cover, and bears against the gear mount and the gear housing cover.
14. A drive train comprising: a rotor shaft that is connected in a torque-transmitting manner to a gear, the gear being connected in a torque-transmitting manner to a generator, wherein the gear comprises: a sensor unit comprising: sensor constituent parts of various sensor devices; and at least one printed circuit board that has voltage supply and signal transmission components for the sensor constituent parts and to which the sensor constituent parts are connected, wherein the sensor unit has a base body that is annular and receives the sensor constituent parts and the at least one printed circuit board, wherein the base body of the sensor unit is arranged between a gear mount that is arranged on a gear shaft and a gear housing cover, wherein a measurement variable pickup and a signal transmitter are provided on the gear shaft radially inward of the base body as sensor constituent parts of a torque sensor device, wherein the various sensor devices include at least one torque sensor device, and wherein a signal receiver of annular design is positioned on an inner periphery of the base body as a sensor constituent part of the at least one torque sensor device.
15. A wind power installation comprising: a rotor that is attached to a nacelle; and a drive train that is arranged in the nacelle and is connected in a torque-transmitting manner to the rotor, the drive train comprising a rotor shaft that is connected in a torque-transmitting manner to a gear, the gear being connected in a torque-transmitting manner to a generator, wherein the gear comprises: a sensor unit comprising: sensor constituent parts of various sensor devices; and at least one printed circuit board that has voltage supply and signal transmission components for the sensor constituent parts and to which the sensor constituent parts are connected, wherein the sensor unit has a base body that is annular and receives the sensor constituent parts and the at least one printed circuit board, wherein the base body of the sensor unit is arranged between a gear mount that is arranged on a gear shaft and a gear housing cover, wherein a measurement variable pickup and a signal transmitter are provided on the gear shaft radially inward of the base body as sensor constituent parts of a torque sensor device, wherein the various sensor devices include at least one torque sensor device, and wherein a signal receiver of annular design is positioned on an inner periphery of the base body as a sensor constituent part of the at least one torque sensor device.
16. An industrial application comprising: a gear; and a drive that is connected in a torque-transmitting manner to the gear, the gear being coupled in a torque-transmitting manner to a mechanical application, wherein the gear comprises: a sensor unit comprising: sensor constituent parts of various sensor devices; and at least one printed circuit board that has voltage supply and signal transmission components for the sensor constituent parts and to which the sensor constituent parts are connected, wherein the sensor unit has a base body that is annular and receives the sensor constituent parts and the at least one printed circuit board, wherein the base body of the sensor unit is arranged between a gear mount that is arranged on a gear shaft and a gear housing cover, wherein a measurement variable pickup and a signal transmitter are provided on the gear shaft radially inward of the base body as sensor constituent parts of a torque sensor device, wherein the various sensor devices include at least one torque sensor device, and wherein a signal receiver of annular design is positioned on an inner periphery of the base body as a sensor constituent part of the at least one torque sensor device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(7) The sensor unit 1 illustrated in the embodiments shown in
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(9) A significant advantage is that the measurement variable pickups 6, 7 and the signal receiver 8 (e.g., for sensor components of various sensor devices) may be fitted in a mechanical system with a low level of expenditure with respect to time and cost since the measurement variable pickups 6, 7 and the signal receiver Bare arranged on a single base body 4. A further advantage is that the sensor unit 1, owing to the single interface 10, may also be connected to the external voltage supply and signal evaluation device 18 in a rapid and simple manner.
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(13) Although the invention has been described and illustrated in greater detail via the exemplary embodiments, the invention is not limited by the examples that are disclosed; other variations may be derived therefrom by a person skilled in the art, without departing from the scope of protection of the invention.
(14) The elements and features recited in the appended claims may be combined in different ways to produce new claims that likewise fall within the scope of the present invention. Thus, whereas the dependent claims appended below depend from only a single independent or dependent claim, it is to be understood that these dependent claims may, alternatively, be made to depend in the alternative from any preceding or following claim, whether independent or dependent. Such new combinations are to be understood as forming a part of the present specification.
(15) While the present invention has been described above by reference to various embodiments, it should be understood that many changes and modifications can be made to the described embodiments. It is therefore intended that the foregoing description be regarded as illustrative rather than limiting, and that it be understood that all equivalents and/or combinations of embodiments are intended to be included in this description.