SENSING CONNECTOR ASSEMBLY AND SYSTEM COMPRISING SAID SENSING CONNECTOR ASSEMBLY
20230397871 ยท 2023-12-14
Inventors
Cpc classification
A61B5/256
HUMAN NECESSITIES
International classification
A61B5/256
HUMAN NECESSITIES
Abstract
Sensing connector assembly (100) for providing an electrical connection between an electrical contact (12) of a sensor device (10) and an electrically conductive path (220) on a wearable fabric (200), comprising: a first connecting part (20) comprising an opening (32) configured to receive the sensor device (10); a second connecting part (40) configured to mechanically cooperate with the first connecting part (20) such that the first and second connecting parts (20, 40) can be fastened on each side of the wearable fabric (200) and extend in a connection plane (P). The first connecting part (20) comprises a first connecting rim (34) at the periphery of the opening (32) and configured to cooperate with sensor device (10) such as to attach the sensor device (10) to the first connecting part (20) and such that the electrical contact (12) exerts a predetermined force in a direction substantially orthogonal to the connection plane (P) and against the first side (201) of the wearable fabric (200), when the second connecting part (40) is fastened to the first connecting part (20).
Claims
1. Sensing connector assembly for providing an electrical connection between an electrical contact of a sensor device and an electrically conductive path on a first side of a wearable fabric, the sensing connector assembly comprising: a first connecting part destined to contact the first side of the wearable fabric and comprising an opening configured to receive the sensor device; a second connecting part destined to contact a second side of the wearable fabric, the second connecting part being configured to mechanically cooperate with the first connecting part such that the first and second connecting parts can be fastened on each side of the wearable fabric and extend in a connection plane; wherein the first connecting part comprises a first connecting rim at the periphery of the opening, the connecting rim being configured to cooperate with sensor device, wherein the sensor device comprises a second connecting rim configured to cooperate with the first connecting rim and wherein the first connecting rim comprises a projecting edge and the second connecting rim comprises a grooved edge substantially conformal with the projecting edge, such as to attach the sensor device to the first connecting part such as to form a water-tight form-fitting connection, and such that the electrical contact exerts a predetermined force in a direction substantially orthogonal to the connection plane and against the first side of the wearable fabric, when the second connecting part is fastened to the first connecting part.
2. Sensing connector assembly according to claim 1, wherein the second connecting part comprises an elastic element arranged to contact the second side when the second connecting part is fastened to the first connecting part.
3. Sensing connector assembly according to claim 1, wherein the electrical contact comprises at least one connection pin protruding from the sensor device in a direction substantially orthogonal to the connection plane.
4. (canceled)
5. (canceled)
6. Sensing connector assembly according to claim 5, wherein the first connecting rim comprises a rib and the second connecting rim comprises a groove.
7. Sensing connector assembly according to claim 1, wherein the first connecting part comprises a coupling element configured to pass through the wearable fabric and cooperate with a receiving element of the second connecting part.
8. Sensing connector assembly according to claim 1, wherein the sensor device comprises an electrode sensor comprising an electrode on the side of the electrode sensor opposed to the one comprising the electrical contact.
9. Sensing connector assembly according to claim 1, wherein the sensor device comprises a central electronic unit configured to power and control electrode sensors.
10. System comprising a wearable fabric adapted to be worn by a user and having at least an electrically conductive path on a first side (204), the system further comprising at least one sensing connector assembly, the sensing connector assembly comprising a first connecting part destined to contact the first side of the wearable fabric and comprising an opening configured to receive the sensor device; a second connecting part destined to contact a second side of the wearable fabric, the second connecting part being configured to mechanically cooperate with the first connecting part such that the first and second connecting parts can be fastened on each side of the wearable fabric and extend in a connection plane; wherein the first connecting part comprises a first connecting rim at the periphery of the opening, the connecting rim being configured to cooperate with sensor device, wherein the sensor device comprises a second connecting rim configured to cooperate with the first connecting rim, and wherein the first connecting rim comprises a projecting edge and the second connecting rim comprises a grooved edge substantially conformal with the projecting edge, such as to attach the sensor device to the first connecting part such as to form a water-tight form-fitting connection, and such that the electrical contact exerts a predetermined force in a direction substantially orthogonal to the connection plane and against the first side of the wearable fabric, when the second connecting part is fastened to the first connecting part, wherein the second connecting part is fastened to the first connecting part.
11. System according to claim 8, comprising at least two sensing connector assemblies, wherein the sensor device of at least one sensing connector assembly comprises a central electronic unit and the sensor device of at least one sensing connector assembly comprises an electrode sensor comprising an electrode on the side of the electrode sensor opposed to the one comprising the electrical contact, the central electronic unit being configured to power and control the electrode sensor.
12. System according to claim 9, wherein the electrode is configured to contact the skin of the user when the wearable fabric is worn by the user.
13. System according to claim 8, wherein the wearable fabric comprises a vest, bra, a shirt, a chest band or armband.
14. System according to claim 8, forming a three-lead ECG measuring system.
15. System according to claim 8, wherein said predetermined force is between 0.098 N and 2.94 N per electrical contact.
Description
SHORT DESCRIPTION OF THE DRAWINGS
[0013] Exemplar embodiments of the invention are disclosed in the description and illustrated by the drawings in which:
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
EXAMPLES OF EMBODIMENTS
[0024]
[0025] The first connecting part 20 comprises a first connecting rim 34 at the periphery of the opening 32. The connecting rim 34 is configured to cooperate with sensor device 10 such as to attach the sensor device 10 to the first connecting part 20 and such that the electrical contact 12 exerts a predetermined force in a direction substantially orthogonal to the connection plane P and against the first side 201 of the wearable fabric 200, when the second connecting part 40 is fastened to the first connecting part 20. In one aspect, the predetermined force can be between 10 gf and 300 gf (0.098 N and 2.94 N) per electrical contact 12.
[0026] In the configuration shown in
[0027] In one aspect, the electrical contact comprises at least one connection pin 12 protruding from the sensor device 10 in a direction substantially orthogonal to the connection plane P.
[0028] In one aspect, the sensor device 10 comprises a second connecting rim 14 configured to cooperate with the first connecting rim 34 such as to provide a water-tight fitting connection between the sensor device 10 and the first connecting part 20. As illustrated in
[0029] The first connecting rim 34 can comprise a projecting edge 36 and the second connecting rim 14 can comprise a grooved edge substantially conformal with the projecting edge 36, such as to form a water-tight form-fitting connection between the sensor device 10 and the first connecting part 20. The projecting edge 36 and the first connecting rim 34 can be two separate parts or made integral (as a single part).
[0030] In the variant illustrated in
[0031] The projecting edge 36 can be made of a flexible material, such as a rubber like material. The projecting edge 36 can be more flexible than the first connecting rim 34 and the frame portion 21. Alternatively, the first connecting rim 34 and the projecting edge 36 can be more flexible than the frame portion 21. In a possible configuration, the first connecting rim 34 is over-molded on the frame portion 21.
[0032] In an embodiment, the second connecting part 40 comprises an elastic element 42 arranged to contact the second side 202 when the second connecting part 40 is fastened to the first connecting part 20.
[0033] In one aspect, the second connecting part 40 can comprise a recess 43 configured to accommodate the elastic portion 42. The recess 43 is provided on the side of the second connecting part 40 facing the first connecting part 20 when the second connecting part 40 is fastened to the first connecting part 20. In the specific example of
[0034] The elastic portion 42 can be made of a single elastic element (for example the disc shown in
[0035]
[0036]
[0037] Once the first connecting part 20 is fastened to the second connecting part 40 across the wearable fabric 200, the first connecting part should be located where an electrically conductive path 220 is present. The conductive path 220 is then accessible within the opening 32 of the first connecting part 20 to the sensor device 10.
[0038]
[0039] In one aspect, the electrical contact comprises three pins 12. The three pins 12 can be aligned as illustrated in
[0040] As mentioned above, the connecting rim 34 is configured such that the electrical contact 12 exerts a predetermined force, such as between 10 gf and 300 gf (0.098 N and 2.94 N) per electrical contact 12, in a direction substantially orthogonal to the connection plane P and against the first side 201 of the wearable fabric 200, when the second connecting part 40 is fastened to the first connecting part 20. Thus, when the sensor device 10 is attached to the first connecting part 20, the pins 12 (12c, 12p) exerts the predetermined force on the conductive path 220. The predetermined force further depends on the elastic portion 42 on the opposite side of the wearable fabric 200. The elastic portion 42 provides a spring effect that can permit to retain the conductive path 220 in position and in physical contact relative to the electrical contact 12, ensuring the electric contact between the sensor device 10 and the conductive path 220. The elastic portion 42 can further uniformize the force along the conductive path 220 and the electrical contact 12.
[0041] Other configurations of the sensor device 10 are contemplated. In one aspect not illustrated, the sensor device 10 comprises an electrode sensor including no electronic circuit. The electrode sensor 10 can include several electrodes on the side of the electrode sensor 10 opposed to the electrical contact 12. In another aspect, the sensor device 10 can comprise an electronic circuit to control an electrode sensor and a powering means to power the sensor device.
[0042] A system 1 for monitor physical parameters of a user is shown in
[0043]
[0044] The sensing connector assembly 100a comprising the central electronic unit 11 can be fastened on the wearable fabric 200 in an opposed fashion to the connector assembly 100 comprising the electrode sensor 10. In other words, the first connecting part 20 is mounted on the first side 201 and the second connecting part 40 is mounted on the second side 202 of the wearable fabric 200. In such configuration, the central electronic unit 11 is on the first side 201 of the wearable fabric 200 and cannot come in contact with the user's body 60 when the wearable fabric 200 is worn. A protective fabric layer 230 can be inserted on the external surface of the second connecting part 40 of the sensing connector assembly 100a comprising the central electronic unit 11 such that the protective fabric layer 230 is between the second connecting part 40 and the user's body 60 when the wearable fabric 200 is worn. An insulating layer 231 can further be inserted on top of the conductive path 220 such as to electrically insulated the user's body 60 from the conductive path 220 when the wearable fabric 200 is worn.
[0045]
[0046] The conductive path 220 can be printed, deposited, or can comprise electrically conductive yarns sewn or woven onto the fabric substrate. The conductive path 220 can be used for transmitting electrical signals, information signals and/or power signals. Transmission of information signals can be achieved by using multi-communication stream using different frequencies. For example, a single wire can be used to transmit simultaneously multiple signals, each signal having a different frequency band, for instance between 1 k and 1 MHz.
[0047] The wearable fabric 200 can comprise a piece of garment such as a vest, a bra or a shirt. The wearable fabric 200 can further comprise a harness, a chest band or an armband.
[0048] The wearable fabric 200 can be provided with the conductive path 220 and the first connecting part 20 as a reusable or disposable system.
[0049]
[0050] The first connecting part 20 and/or the second connecting part 40 can be over-molded on the wearable fabric 200.
[0051] The system 1 can form a three-lead ECG measuring system, or standard three-lead configuration.
[0052] Advantages of the system 1 disclosed herein include the use of dry electrodes, allowing the monitoring for a long period of time (minimum 2 weeks or months). The system 1 does not cause hindrance to user movements, can be easily worn and can be adapted to any fashion. It is adapted for all age groups. The system 1 does not require the use of cables.
[0053] The system 1 can be further used for other applications than ECG measuring or monitoring, such as measuring/monitoring SpO.sub.2, blood pressure, body temperature or any other vital sign parameters or signals to be detected outside a user's body as e.g. room temperature, gas concentration (CO.sub.2, CO, O.sub.2), proximity, etc.
[0054] The system 1 can be worn by a user (person, namely a human being or an animal) to monitor or measure the above physical parameters in relation with the user's body or in relation with the environment of the user.
REFERENCE NUMERAL USED IN THE FIGURES
[0055] 1 system
[0056] 10 sensor device, electrode sensor
[0057] 11 central electronic unit
[0058] 12 electrical contact
[0059] 14 second connecting rim
[0060] 141 groove
[0061] 15 electronic circuit
[0062] 16 PCB
[0063] 17 electrode
[0064] 20 first connecting part
[0065] 21 frame portion
[0066] 22 open side
[0067] 25 roller
[0068] 32 opening
[0069] 34 first connecting rim
[0070] 36 projecting edge
[0071] 40 second connecting part
[0072] 41 receiving element, slot
[0073] 42 elastic portion (foam pad)
[0074] 43 recess
[0075] 50 joining element
[0076] 60 body
[0077] 100, 100a sensing connector assembly
[0078] 200 wearable fabric
[0079] 201 first side
[0080] 202 second side
[0081] 220 conductive path
[0082] 221 outer contact
[0083] 221a non-electrically conducting portion
[0084] 222 inner contact
[0085] 230 protective fabric layer
[0086] 231 insulating layer
[0087] P connection plane