IP Library Granted Patent US 8,256,915
Granted Patent B2
US 8,256,915 · App. 12/267,588 · Granted Sep 4, 2012

Illuminated mirror with comfort augmentation

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Quick Facts
Patent No.
US 8,256,915
App. No.
12/267,588
Granted
Sep 4, 2012
Kind
B2
Abstract

An illuminated mirror includes a central reflective mirror portion and a surrounding transmissive portion supported to a housing. Spacing between an outer diameter of the transmissive portion and the housing allows airflow to exit from the housing. A chamber behind the mirror surface may comprise a dish reflector surface. In one form, the dish reflector comprises a white enamel surface. Lamps, which may comprise LEDs, are mounted to the reflector surface. The LED lamps may be placed in a pattern on the reflector surface. Circuitry may be provided to illuminate either all or selected ones of the LEDs. Lamps of selected colors may be provided. Preselected combinations of lamp illumination vary the level and composite color of illumination. In order to enhance the comfort of a user, a fan may be positioned in the housing behind the reflector. A cooling device may cool airflow from the fan.

Claims (41)

1. A mirror, comprising:

a housing having a circular and open-faced front end and a rear end displaced from the front end in a longitudinal dimension, so that the housing defines a volume in the transverse, vertical, and longitudinal dimensions;

a circular plate with at least one specular surface that is mounted within the volume of the housing adjacent to the front end thereof so that (1) the plate is substantially parallel with a transverse-vertical plane of the front end of the housing and (2) the plate is suspended therein said open-face of the housing so that the space between the periphery of said plate and the housing remains open;

a power source; and,

at least one fan, situated behind said specular surface within the volume of said housing and mechanically connected to the rear-end of said housing, said fan configured to forcibly discharge air from the opening between the housing and the periphery of said plate;

a reflector that is mechanically connected to the periphery of the plate and that longitudinally extends therefrom said periphery in a conical manner to a rear end which is mechanically connected to the fan so as to result in said suspension of said plate within the housing.

2. The mirror of claim 1 wherein said forcible discharge is longitudinally directed from around the periphery of said specular surface.

3. The mirror of claim 1 further comprising an illumination system behind said plate.

4. The mirror of claim 3 wherein said illumination system comprises:

a transmissive surface circumscribing said specular surface;

the reflector; and,

at least one selectively illuminable LED lamp positioned on said reflector whereby light is emitted via said transmissible surface when said LED lamp is illuminated.

5. The mirror of claim 1 further comprising a cooling unit that is configured to cool said air.

6. The mirror of claim 5 wherein said cooling unit is from the group comprising:

a Peltier effect device, a refrigeration unit, and, a capillary pumped loop.

7. The mirror of claim 1 wherein said power source is at least one battery.

8. The mirror of claim 1 wherein said power source is a power cord associated with an A.C. output.

9. The mirror of claim 1 wherein said fan comprises:

a brushless DC motor; and,

at least one vane, configured to be driven by said motor.

10. A mirror comprising:

a housing with an open-ended front end and a rear end;

a circular plate with at least one planar specular surface and that is suspended within the housing at the front end so that an opening is defined between the periphery of the plate and the front end of the housing;

said plate being suspended by means of a bowl-shaped reflector with a rim that is coupled to the periphery of the plate and a base that is mechanically connected the rear of the housing;

a fan that is positioned intermediate the rear of the housing and the reflector, wherein said fan is concentric with said reflector and wherein said fan is configured to selectively force air through the opening between the periphery of said plate and said front-end of the housing; and,

a power supply with an on-off switch for selectively forcing said air.

11. The mirror of claim 10 wherein said reflector is positioned to guide the air to said opening so that said air is discharge longitudinally at the periphery of said plate.

12. The mirror of claim 11 further comprising a cooling means that is configured to cool said air.

13. The mirror of claim 10 wherein:

said specular surface is circumscribed by a transmissive surface of said plate, wherein said transmissive surface is configured to be selectively illuminable, said mirror further comprising an illumination means behind said specular surface; and,

said discharge occurs longitudinally at the periphery of said plate.

14. The mirror of claim 10 further comprising a cooling means that is configured to cool said air.

15. The mirror of claim 10 wherein said power source is at least one battery.

16. A mirror comprising:

a housing with an open front end and a rear end;

a bowl-shaped reflector with a rim and a basin that is mechanically connected to the rear end of the housing;

a plate mounted to the rim of the bowl-shaped reflector so that the plate is suspended within the open front end of the housing, wherein said plate features a specular surface;

a fan that is mounted between the reflector and the rear end of the housing and that is operationally configured to blow air across the reflector so that air is discharged at the open end of the housing around the periphery of the plate; and,

a power source for said fan.

17. The mirror of claim 16 wherein said plate comprises a transmissive surface which is configured to be selectively illuminable, said mirror further comprising an illumination means behind the specular surface that is powered by said power source.

18. The mirror of claim 17 further comprising a cooling means that is configured to cool said air.

Continuity (2)
Provisional Application 61129201 · Jun 11, 2008
Related Publication 20100118520A1 · May 13, 2010