Proximity switch having sensor with decorative metal
A proximity switch assembly is provided having a sensing pad and a proximity sensor extending around the sensing pad for generating an activation field. The proximity sensor comprises at least one electrode that forms a decorative trim component that is visibly exposed. The proximity switch assembly also includes a controller for determining activation of the switch based on a signal generated from the activation field.
1. A proximity switch assembly for a vehicle, comprising:
a sensing pad;
a proximity sensor proximate the sensing pad for generating an activation field, wherein the proximity sensor comprises at least one electrode that is viewable by a user on a front side and that forms a decorative trim component, wherein the proximity sensor comprises a first electrode comprising a first plurality of electrode fingers and a second electrode comprising a second plurality of electrode fingers, wherein the first and second electrode fingers are interdigitated and electrically coupled to generate the activation field, and wherein the second electrode surrounds the first electrode;
an opaque portion covering a portion of the at least one electrode so as to expose a portion of the decorative trim component; and
a control circuitry for determining activation of the proximity switch based on a signal generated from the activation field.
2. The proximity switch assembly of claim 1 , wherein the proximity sensor further comprises a capacitive sensor.
3. The proximity switch assembly of claim 1 , wherein the proximity switch assembly is employed on the vehicle.
4. The proximity switch assembly of claim 3 , wherein the proximity switch assembly is provided on a vehicle lamp.
5. The proximity switch assembly of claim 4 , wherein the sensing pad comprises a lens.
6. The proximity switch assembly of claim 1 , wherein the proximity sensor further comprises chrome.
7. The proximity switch assembly of claim 6 , wherein the chrome forms an electrical circuit for transmitting signals for the proximity sensor.
8. A proximity switch assembly for a vehicle, comprising:
a sensing pad;
a capacitive sensor extending around the sensing pad for generating an activation field, wherein the capacitive sensor comprises at least one electrode that is viewable by a user on a front side and also forms a decorative trim component, wherein the capacitive sensor comprises a first electrode comprising a first plurality of electrode fingers and a second electrode comprising a second plurality of electrode fingers, wherein the first and second electrode fingers are interdiqitated and electrically coupled to generate the activation field, and wherein the second electrode substantially surrounds the first electrode;
an opaque portion covering a portion of the at least one electrode so as to expose a portion of the decorative trim component; and
a control circuitry for determining activation of the proximity switch based on a signal generated from the activation field.
9. The proximity switch assembly of claim 8 , wherein the proximity switch assembly is employed on the vehicle.
10. The proximity switch assembly of claim 9 , wherein the proximity switch assembly is provided on a vehicle lamp.
11. The proximity switch assembly of claim 8 , wherein the capacitive sensor further comprises chrome.
12. The proximity switch assembly of claim 11 , wherein the chrome forms an electrical circuit for transmitting signals for the capacitive sensor.
13. A vehicle proximity switch assembly comprising:
a sensing pad;
a capacitive sensor extending around the sensing pad for generating an activation field, wherein the capacitive sensor comprises at least one electrode that is viewable by a user on a front side and also forms a decorative trim component, wherein the capacitive sensor comprises a first electrode comprising a first plurality of electrode fingers and a second electrode comprising a second plurality of electrode fingers, wherein the first and second electrode fingers are interdigitated and electrically coupled to generate the activation field, and wherein the second electrode substantially surrounds the first electrode;
an opaque layer covering only a portion of the capacitive sensor so as to expose the trim component; and
a control circuitry for determining activation of the proximity switch based on a signal generated from the activation field.