MODULAR SYSTEM FOR PRODUCING DRIVES COMPRISING A TRANSMISSION UNIT, AN ELECTRIC MOTOR UNIT AND AN ELECTRONIC UNIT
20210281147 · 2021-09-09
Inventors
- Markus Flaig (Hardt, DE)
- Serkan Poyraz (Villingen-Schwenningen, DE)
- Jürgen Sopejstal (Röthenbach, DE)
- Volker Messmer (Tengen, DE)
- Hermann Rappenecker (Vöhrenbach, DE)
- Jörg Hornberger (Dornstetten-Aach, DE)
Cpc classification
H02K2213/12
ELECTRICITY
H02K11/30
ELECTRICITY
H02K11/215
ELECTRICITY
H02K5/04
ELECTRICITY
H02K5/24
ELECTRICITY
International classification
H02K11/215
ELECTRICITY
H02K5/24
ELECTRICITY
Abstract
The present disclosure relates to a modular system for producing drives, in particular piece goods conveyor drives, with different drive properties, comprising at least one first group of transmission units, said first group comprising at least one transmission unit, at least one second group of motor units, said second group comprising at least one motor unit, and a third group of electronic units, said third group comprising at least one electronic unit for actuating the motor unit, wherein the groups can be combined together in order to produce the drive.
Claims
1. A modular system for producing drives in particular piece goods conveyor drives having different drive properties, with at least one first group of transmission units comprising at least one transmission unit, with at least one second group of motor units comprising at least one motor unit and with a third group of electronic units comprising at least one electronic unit for actuating the motor unit which can be combined with one another to produce the drive, wherein the motor units have at least essentially identical drive shafts which are provided for coupling to the transmission units.
2. The modular system according to claim 1, wherein the groups of transmission units, motor units and electronic units can be combined with one another at will.
3. The modular system according to claim 1, wherein the first group comprises at least two different transmission units having different transmission ratios.
4. The modular system according to claim 1, wherein the second group comprises at least two motor units belonging to different motor power classes.
5. The modular system according to claim 1, wherein the second group comprises at least two motor units belonging to different motor voltage classes.
6. The modular system according to claim 1, wherein the third group comprises at least two electronic units belonging to different electronic power classes.
7. The modular system according to claim 1, wherein the third group comprises at least two electronic units belonging to different electronic voltage classes.
8. The modular system according to claim 1, wherein the third group comprises at least two electronic units belonging to different electronic function classes.
9. The modular system according to claim 1, wherein a fastening unit which is provided to connect the transmission units and/or the motor units and/or the electronic units mechanically and at least partially in a vibration isolated manner to at least one additional component.
10. The modular system according to claim 1, wherein the electronic units can be arranged on sides of the transmission units remote from the output.
11. The modular system according to claim 1, wherein the electronic units and the transmission units can be arranged on opposite sides of the motor units.
12. (canceled)
13. The modular system according to claim 12, wherein at least one of the transmission units of the first group has a push-on pinion which is provided for receiving the drive shafts.
14. The modular system according to claim 1, wherein the motor units have at least essentially identical magnetic sensors which are provided for coupling to the electronic units.
15. A method for producing drives, in particular piece goods conveyor drives, using a modular system, in particular according to any one of the preceding claims, having at least one first group of transmission units comprising at least one transmission unit, having at least one second group of motor units comprising at least one motor unit, and a third group of electronic units comprising at least one electronic unit for actuating the motor unit wherein at least one transmission unit from the first group, at least one motor unit from the second group and at least one electronic unit from the third group can be combined with one another to produce a drive having the desired drive properties.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Additional advantages are derived from the following description of the drawings. The drawings illustrate one embodiment of the present disclosure. The drawings, the description and the claims contain numerous features in combination. Those skilled in the art will expediently also consider the features individually and combine them into appropriate additional combinations.
[0031] In the drawings:
[0032]
[0033]
[0034]
DETAILED DESCRIPTION
[0035]
[0036] The electronic unit 22 is arranged on a side 24 of the transmission unit 18 remote from the output. The motor unit 20 is arranged on a side 24 of the transmission unit 18 remote from the output. The electronic unit 22 and the transmission unit 18 are arranged on opposite sides 26, 28 of the motor unit 20.
[0037]
[0038] Furthermore, the modular system comprises a second group 14 of motor units 20a, 20b. The second group 14 here comprises, for example, two motor units 20a, 20b designed to be different from one another. The second group 14 may also comprise in particular more than two motor units 20a, 20b or just one single motor unit 20a, 20b. The outside dimensions of at least two, preferably all motor units 20a, 20b of the second group 14 are designed to be essentially identical to one another. The motor units 20a, 20b belong to different motor power classes. The motor units 20a, 20b belong to different motor voltage classes. The drive shafts 30 of the motor units 20a, 20b are designed to be identical to one another. The drive shafts 30 are provided to produce a coupling with the transmission units 18a, 18b. The motor units 20a, 20b each have a defined motor interface 50 for being added onto the electronic units 22a, 22b. The drives shafts 30 are arranged on opposite sides 28 of the motor units 20a, 20b opposite the motor interfaces 50.
[0039] The motor units 20a, 20b have an electric motor 36. The electric motor 36 is provided for generating a rotational movement of the drive shaft 30 about a drive axis of rotation 46. The motor units 20a, 20b each have a magnetic sensor 34. The magnetic sensors 34 are provided for coupling to electronic units 22a, 22b. The magnetic sensors 34 are designed to be identical to one another.
[0040] The modular system also comprises a third group 16 of electronic units 22a, 22b. The electronic units 22a, 22b are provided to actuate the motor units 20a, 20b. The third group 16 here comprises two electronic units 22a, 22b, for example, designed to be different from one another. The third group 16 may in particular also comprise more than two electronic units 22a, 22b or only a single electronic unit 22a, 22b. The outside dimensions of at least two, preferably all, electronic units 22a, 22b of the third group 16 are designed to be essentially identical to one another. The electronic units 22a, 22b belong to different electronic power classes. The electronic units 22a, 22b belong to different electronic voltage classes. The electronic units 22a, 22b belong to different electronic function classes. The electronic function classes differ from one another in the presence of at least one different functionality, preferably a different combination of functionalities. The electronic units 22a, 22b each have a circuit board 40. Electronic units 22a, 22b each have a defined electronic interface 48 to be added onto the motor units 20a, 20b.
[0041] The modular system, in particular the electronic units 22a, 22b, have a fastening unit 64. The fastening unit 64 is provided to connect the electronic units 22a, 22b mechanically and at least partially by a vibration isolated connected to at least one component different from the modular system. Furthermore, it is conceivable for the fastening unit 64 to be provided for connecting the transmission units 18a, 18b and/or the motor units 20a, 20b mechanically and at least partially in a vibration isolated manner to at least one component different from the modular system. The electronic units 22a, 22b have a mechanical isolation 62 for vibration isolation. The mechanical isolation 62 isolates the electronic units 22a, 22b in particular the drive 10 at least partially from vibrations, in particular those coming from the outside.
[0042] To produce a drive 10, the first group 12 of transmission units 18a, 18b, the second group 14 of motor units 20a, 20b and the third group 16 of electronic units 22a, 22b can be combined with one another at will.
[0043]