IP Library Patent Application 11403528
Patent Application
App. No. 11/403,528

Cover, mobile communications apparatus and method for producing a coated cover

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Quick Facts
Patent No.
US None
App. No.
11/403,528
Abstract

The invention relates to a cover, a mobile communications apparatus and a method for producing a coated cover for an electronic apparatus. According to the invention at least a part of the cover is coated with a DLC-coating, also called an amorphous diamond coating.

Claims (24)

1 . Cover for an electronic apparatus, comprising a basic part and a coating attached thereto, wherein the coating comprises a DLC-coating.

2 . Cover according to claim 1 , wherein the basic part of the cover is of a non-metallic substance, for example plastic, elastomer, fabric or leather.

3 . Cover according to claim 1 , wherein the basic part of the cover is of metal.

4 . Cover according to claim 1 wherein the cover is coated with a DLC-coating over a substantial area.

5 . Cover according to claim 4 wherein the cover is coated with a DLC-coating at least over its one surface at least nearly completely.

6 . Cover according claim 1 wherein at least a part of its DLC-coating is further coated with at least a mainly transparent substance.

7 . Cover according to claim 1 wherein thickness of the DLC-coating is 20-500 nm.

8 . Cover according to claim 1 wherein thickness of the DLC-coating is 0-120 nm.

9 . Cover according to claim 1 wherein thickness of the DLC-coating is 40-80 nm.

10 . Cover according to claim 1 comprising a lens or window, which is coated with the DLC-coating.

11 . Cover according to claim 10 , wherein the lens or window is an infrared beam window of a remote control or of a remote controlled apparatus.

12 . Mobile communications apparatus comprising a cover according to claim 1 .

13 . Method for producing a coated cover for an electronic apparatus with coal plasma produced from solid graphite by means of arc discharge method, the method comprising at least following steps

accelerating coal plasma between two electrodes in order to provide a large amount of kinetic energy to coal ions

adhering the high-energy coal ions to the surface of the cover by penetrating the cover

forming by the coal ions on the surface of the cover an amorphous diamond structure, i.e. a DLC-coating.

14 . Method according to claim 13 , wherein the cover is coated at least over its one surface at least nearly completely with the DLC-coating.

15 . Method according to claim 13 , wherein before the coating

a polymer mixture is injection molded to form a cover to be coated.

16 . Method according to claim 13 , wherein the coating is performed at a temperature of 15-30° C.

17 . Method according to claim 13 , wherein the coating is performed in a vacuum.

18 . Method according to claim 13 , wherein the coating is performed in a batch-type fashion.

19 . Method according to claim 13 , wherein the coating is performed in a semi-continuous fashion.

20 . Method according to claim 13 , wherein the coating is performed in a continuous fashion.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2007
From: NOKIA CORPORATION
To: SPYDER NAVIGATIONS L.L.C.
Reel/Frame 019893/0966 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2006
From: HEINO, MARKKU; KOSKINEN, NINA M.; OIKARINEN, ARI E.
To: NOKIA CORPORATION
Reel/Frame 018012/0925 →