1460921088-c12e8fb1-6b1c-4825-a4af-7249d0ff5621

1. Method of fabricating a transparent electrode based on zinc oxide, possibly doped, characterized in that a layer based on zinc oxide is deposited on at least one of the faces of a substrate or on at least one layer in contact with one of the faces of said substrate, and in that this layer is subjected to a controlled oxidation so as to over-oxidize a portion of the surface of said layer to a fraction of its thickness.
2. Fabrication method according to claim 1, characterized in that the controlled oxidation is provoked by the addition of oxygen during the zinc oxide deposition phase.
3. Fabrication method according to any one of the preceding claims, characterized in that the layer based on zinc oxide is deposited on a barrier layer.
4. Fabrication method according to any one of claims 1 to 3, characterized in that the layer based on zinc oxide is deposited on an anchoring layer.
5. Photovoltaic cell (1) with absorbent photovoltaic material, notably cadmium based, said cell comprising a front face substrate (10), notably a transparent glass substrate, comprising, on a main surface, a transparent electrode coating (100) consisting of a stack of thin layers comprising at least one transparent conductive layer obtained by the method according to any one of claims 1 to 4.
6. Cell according to claim 5, characterized in that it comprises between the substrate (10) and the transparent conductive layer (100) at least one anchoring layer (23).
7. Photovoltaic cell (1) according to claim 6, characterized in that the anchoring layer (23) is zinc oxide based or mixed zinc and tin oxide based or mixed indium and tin oxide based (ITO).
8. Photovoltaic cell (1) according to claim 7, characterized in that it comprises between the substrate (10) and the transparent conductive layer (100) at least one alkali-barrier layer (24).
9. Photovoltaic cell (1) according to claim 8, characterized in that the alkali-barrier layer (24) is based on a dielectric material, notably of nitrides, oxides or oxynitrides of silicon, or of nitrides, oxides or oxynitrides of aluminium, used alone or in a zinc oxide mixture or based on mixed zinc and tin oxide.
10. Substrate (10) coated with a stack of thin layers for a photovoltaic cell (1) according to any one of claims 5 to 9, notably substrate for architectural glazing, notably substrate for architectural glazing that can be hardened or is to be hardened.
11. Use of a substrate coated with a stack of thin layers to produce a front face substrate (10) for a photovoltaic cell (1), in particular a photovoltaic cell (1) according to any one of claims 5 to 9, said substrate comprising a transparent electrode coating (100) consisting of a stack of thin layers comprising at least one transparent conductive layer, notably zinc oxide based.
12. Use according to the preceding claim in which the substrate (10) comprising the electrode coating (100) is a substrate for architectural glazing, notably a substrate for architectural glazing that can be hardened or is to be hardened.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A replaceable footpad structure for electronic device having a shell, on which a hanging hole is configured, the footpad structure including:
a rotary buckling assembly, which has a seat plate, from which a bolt and an arm are extended, and which is connected by passing through the hanging hole, while the arm is snapped in the shell by a rotary manner;
a rotary knob, which has a threaded hole inter-engaged with the bolt; and
a pad body, which is connected to the rotary knob.
2. The replaceable footpad structure for electronic device according to claim 1, wherein the rotary knob has a plate, from a center of which a convex cylinder is extended, and from a periphery of which a circular ring is extended.
3. The replaceable footpad structure for electronic device according to claim 2, wherein the threaded hole is a blind hole arranged in both the plate and the convex cylinder to be formed an abutting fixation with the bolt.
4. The replaceable footpad structure for electronic device according to claim 2, wherein a plurality of teeth are formed at an outer peripheral edge of the circular ring.
5. The replaceable footpad structure for electronic device according to claim 2, wherein the pad body is accommodated in a space enclosed by the convex cylinder and the circular ring and is interconnected by adhering to the plate via an adhesive.
6. The replaceable footpad structure for electronic device according to claim 5, wherein a side face of the pad body remote from the plate is convexly exposed to a side face of the circular ring.
7. The replaceable footpad structure for electronic device according to claim 1, wherein the pad body is made of a material of rubber.
8. The replaceable footpad structure for electronic device according to claim 1, wherein the pad body is a magnetic element.
9. A replaceable footpad structure for electronic device having a shell, on which a hanging hole is configured, the footpad structure including:
a rotary buckling assembly, which has a seat plate, from which a bolt and an arm are extended, and which is connected by passing through the hanging hole, while the arm is snapped in the shell by a rotary manner;
a rotary knob, which has a threaded hole inter-engaged with the bolt;
a metallic plate, which is connected to the rotary knob; and
a pad body, which is connected to the metallic plate.
10. The replaceable footpad structure for electronic device according to claim 9, wherein the rotary knob has a plate, from a center of which a convex cylinder is extended, and from a periphery of which a circular ring is extended.
11. The replaceable footpad structure for electronic device according to claim 10, wherein the threaded hole is a blind hole arranged in both the plate and the convex cylinder to be formed an abutting fixation with the bolt.
12. The replaceable footpad structure for electronic device according to claim 10, wherein a plurality of teeth are formed at an outer peripheral edge of the circular ring.
13. The replaceable footpad structure for electronic device according to claim 10, further including a soft spacer, which is interconnected by adhering to a side face of the plate remote to the metallic plate via an adhesive.
14. The replaceable footpad structure for electronic device according to claim 10, wherein the pad body is accommodated in a space enclosed by the convex cylinder and the circular ring and is interconnected by adhering to the plate via an adhesive.
15. The replaceable footpad structure for electronic device according to claim 14, wherein side faces of both the metallic plate and the pad body remote from the plate are exposed to a side face of the circular ring.
16. The replaceable footpad structure for electronic device according to claim 15, wherein side faces of both the metallic plate and the pad body are convexly exposed to the side face of the circular ring and are arranged by flushing with each other.
17. The replaceable footpad structure for electronic device according to claim 9, wherein the pad body is made of a material of rubber.
18. The replaceable footpad structure for electronic device according to claim 9, wherein the pad body is a magnetic element.