CONNECTION BETWEEN TWO INTELLIGENT PIECES OF CLOTHING
20200367576 ยท 2020-11-26
Inventors
Cpc classification
H04B5/266
ELECTRICITY
International classification
Abstract
Various aspects of the present disclosure are directed to establishing a simple and secure connection between two intelligent pieces of clothing. A first connecting part is provided on a first intelligent piece of clothing and a second connecting part is provided on a second intelligent piece of clothing. The first connecting part and the second connecting part are magnetically connected in order to align and interconnect a first signal connecting part in the first connecting part with a second signal connecting part in the second connecting part for establishing a signal connection between first electronics of the first intelligent piece of clothing and second electronics of the second intelligent piece of clothing.
Claims
1. A system of connecting intelligent pieces of clothing, the system comprising: a first intelligent piece of clothing including integrated first electronics, and a first connecting part having a first signal connecting part; a second intelligent piece of clothing including integrated second electronics (2b) connected to the first intelligent piece of clothing by means of a connection (20), and a second connecting part having a second signal connecting part, the second connecting part is configured and arranged to be magnetically connected to the first connecting part wherein the magnetic connection between the first and second connecting parts aligns and interconnects the first signal connecting part with the second signal connecting part thereby establishing a signal connection between the first electronics and second electronics.
2. The system of claim 1, characterized in that the first signal connecting part and the second signal connecting part form an electrical contact.
3. The system of claim 1, wherein the first signal connecting part and the second signal connecting part include high-frequency coils, which are arranged respectively, the high-frequency coils are configured and arranged to be aligned with one another by the magnetic connection and facilitates contactless data transmission between the integrated first and second electronics.
4. The system of claim 1, wherein the first signal connecting part further includes a transmission coil and the second signal connecting part further includes a reception coil, wherein the transmission coil and the reception coil are configured and arranged when aligned to facilitate inductive energy transmission or data transmission therebetween.
5. The system of claim 1, wherein the first connecting part further includes at least one permanent magnet, and the second connecting part further includes at least one magnetic coupling part, wherein the at least one permanent magnet and the at least one magnetic coupling part are configured and arranged to magnetically interact with one another.
6. The system of claim 5, wherein the at least one magnetic coupling part is a permanent magnet.
7. The system of claim 3, further including at least one permanent magnet integrated into a magnetic circuit via a yoke, on which a first high-frequency coil of the high-frequency coils is arranged, and a magnetic coupling part is a core on which another high-frequency coil of the high-frequency coils is arranged.
8. The system of claim 3, further including at least one permanent magnet integrated in a magnetic circuit via a yoke, on which the transmission coil, or the reception coil is arranged, and a magnetic coupling part configured and arranged as a core on which the reception coil, or the transmission coil, is arranged.
9. (canceled)
10. (canceled)
11. The system of claim 4, wherein the first connecting part further includes at least one permanent magnet, and the second connecting part further includes at least one magnetic coupling part, wherein the at least one permanent magnet and the at least one magnetic coupling part are configured and arranged to magnetically interact with one another.
12. The system of claim 11, wherein the at least one magnetic coupling part is a permanent magnet.
13. The system of claim 6, further including a magnetic circuit with the at least one permanent magnet integrated therein, a yoke integrating the magnetic circuit and the at least one permanent magnet by connection to the at least one permanent magnet, a high-frequency coil arranged on the yoke, and wherein the magnetic coupling part is a core on which the other high-frequency coil is arranged.
14. The system of claim 6, further including a magnetic circuit with the at least one permanent magnet integrated therein, a yoke integrating the magnetic circuit and the at least one permanent magnet by connection to the at least one permanent magnet; wherein the first signal connecting part further includes a transmission coil and the second signal connecting part further includes a reception coil, and the transmission coil and the reception coil are configured and arranged when aligned to facilitate inductive energy transmission or data transmission therebetween; the system further including a magnetic coupling part that is a core on which the reception coil, or the transmission coil, is arranged; and wherein the transmission coil, or the reception coil, is arranged on the yoke.
15. A method of monitoring electrical voltage across workwear including first and second intelligent pieces of clothing which are interconnected, the method comprising: detecting an electrical voltage, via electronics within each of the first and second intelligent pieces of clothing, between a first point on the first piece of clothing and a second point on the second piece of clothing.
16. The method of claim 2 further including de-energizing live parts being worked on by a user of the intelligent pieces of clothing in response to the electronics determining that a predetermined limit value for the detected electrical voltage is exceeded.
17. A method of establishing a connection between first and second intelligent pieces of clothing, the method comprising: aligning a first connecting part of the first intelligent piece of clothing to a second connecting part of the second intelligent piece of clothing via a magnetic field induced between the first and second connecting parts, and whereby alignment of the first and second connecting parts also aligns a first signal connecting part of the first connecting part and a second signal connecting part of the second connecting part; interconnecting the first intelligent piece of clothing with the second intelligent piece of clothing via the magnetic field induced between the first and second connecting parts; and establishing a connection between the first signal connecting part of the first intelligent piece of clothing and the second signal connecting part of the second intelligent piece of clothing, and thereby establishing a signal connection between integrated first electronics within the first intelligent piece of clothing and integrated second electronics within the second intelligent piece of clothing.
18. The method of claim 17, further including aligning high frequency coils of the first and second signal connecting parts in response to alignment of the first and second connecting parts in response to a magnetic field induced therebetween; and conducting contactless data transmission between the integrated first and second electronics.
19. The method of claim 17, wherein the magnetic field induced between the first and second connecting parts is caused by at least one permanent magnet within the first connecting part and at least one magnetic coupling part within the second connecting part.
20. The method of claim 17, further including conducting inductive energy transmission or data transmission between a transmission coil within the first signal connecting part and a reception coil within the second signal connecting part when aligned.
Description
[0010] The present invention is described in greater detail below with reference to the
[0011]
[0012]
[0013]
[0014]
[0015]
[0016] Such a voltage measurement is of course only a specific application in which two intelligent pieces of clothing 1a, 1b have to be interconnected. The connection 20 does not have to be electrical either, but could also be in the form of a data connection. Of course, depending on the application and functionality of the electronics 2a, 2b, the connection 20 can establish both an electrical connection 20 and a data connection. The connection 20 can also be either wireless or wired. The connection 20 can also serve to transfer electrical energy from one piece of clothing 1a to the other piece of clothing 1b if an energy storage 3, for example a Li-ion battery, a primary battery (button cell), etc., is only provided on one piece of clothing 1a for energy supply. The connection 20 according to the invention is described in detail below.
[0017] A connection 20 according to the invention is shown schematically in
[0018] In addition, a signal connecting part 21a, 21b is arranged in each of the two connecting parts 20a, 20b in order to establish via the connection 20 the required signal connection(s) 21, i.e. for example a data connection, an electrical connection or an energy transmission. Due to the magnetic coupling of the two connecting parts 20a, 20b, the two signal connecting parts 21a, 21b are simultaneously aligned and arranged in the correct position and orientation in order to produce the desired signal connection. The signal connection 21 thus takes place automatically through the magnetic coupling in the defined position. The connection 20 can thus be handled very easily since the user only has to establish the magnetic coupling and, moreover, does not have to worry about anything. Possible signal connections 21 are shown in
[0019] A simple signal connection 21 is made by electrical contacts 23a, 23b, which are contacted by the magnetic connection of the two signal connecting parts 21a, 21b, as shown in
[0020]
[0021] The magnetic connection between the two connecting parts 20a, 20b also ensures in particular that the first energy coupling part 6 (for example the transmitting coil 8) and the second energy coupling part 9 (for example the receiving coil 10) are arranged at the correct distance from one another and in the required relative position to one another, to enable contactless energy transfer. Due to the magnetic connection, the first connecting part 20a snaps onto the second connecting part 20b in the correct position and orientation.
[0022] In a further advantageous embodiment, contactless data transmission could also be provided as a signal connection 21, as shown in
[0023] The data transmission can be used in particular to exchange data or information between the two pieces of clothing 1a, 1b or their electronics 2a, 2b. For example, a status of the energy storage 3 (state of charge SoC or state of health SoH) could be queried or transmitted. However, such data can also be measurement data recorded with the electronics 2a, 2b on the piece of clothing 1a, 1b, for example EKG data, movement data, temperatures, electrical voltages between two points on the piece of clothing 1a, 1b. Such data can be stored in a storage unit of a piece of clothing 1a, 1b or also of the energy storage 3, for example in order to be read out later.
[0024] In an advantageous embodiment of the invention according to
[0025] A particularly advantageous application of the connection 20 according to the invention is in workwear consisting of a first piece of clothing 1a and a second piece of clothing 1b (as shown in
[0026] For this purpose, electronics 2a, 2b can also comprise a transmission device, for example a radio transmitter, which, in the event of an excessively high voltage between the measured points, sends an emergency stop signal to an external switching unit in order to de-energize the live parts when the voltage exceeds the defined limit. A transmitting device of the energy storage 3 could also be used for this. In this way, possible injuries to the person wearing the workwear due to electric shock can be restricted, and fatal accidents can even be avoided entirely if this safety function is used correctly. It can also be provided that a signal device on a piece of clothing 1a, 1b (also as part of the electronics 2a, 2b) indicates whether the safety function is ready for operation, for example whether the connection 20 or the signal connection 21 has been established.
[0027] The correct connection could be determined, for example, with a reed contact 22 which is arranged in the connecting part 20b in which the magnetic coupling part 5 is arranged. The magnetic field of the permanent magnet 4 can thus be detected with the reed contact 22. If the magnetic connection between the two connecting parts 20a, 20b is established, the reed contact could be designed and arranged such that it closes by the magnetic field of the permanent magnet 4, with which the correct connection could be determined.