EP3553373A1

Digitally adjustable focused beam lighting system

Abstract

A lighting assembly (130;310) is described. The lighting assembly (130;310) comprises a lighting tower (138;316), wherein the lighting tower comprises: a plurality of layers (402) of lighting elements (404) wherein each layer (402) of lighting elements is configured to provide a different angle of emitted light onto a parabolic reflector (134;314) with respect to light emitted from another layer (402) of lighting elements (404) onto the parabolic reflector (134;314) when activated.

EP3553373A1, drawing sheet 1
Sheet 1 of 23

Term

12.5 yearsto projected expiry

Projected expiry 11 April 2039, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

16 claims: 7 independent, 9 dependent

  1. 1
    A lighting assembly (130;310) comprising:a lighting tower (138;316), wherein the lighting tower (138;316) comprises: a plurality of layers (402) of lighting elements (404) wherein each layer (402) of lighting elements (404) is configured to provide a different angle of emitted light onto a parabolic reflector (134;314) with respect to light emitted from another layer (402) of lighting elements (404) onto the parabolic reflector (134;314) when activated.
  2. 7
    The lighting assembly (130;310) of any preceding claim, wherein each layer (402) of lighting elements (404) is configured to be independently activated.
  3. 8
    The lighting assembly (130;310) of any preceding claim, wherein the lighting elements (404) within each layer (402) are arranged into a plurality of different groups and each group of lighting elements (404) is configured to be independently activated.
  4. 9
    The lighting assembly (130;310) of any preceding claim, wherein each layer (402) of lighting elements (404) is configured to be remotely activated via a controller communicatively coupled to the lighting assembly (130;310).
  5. 10
    The lighting assembly (130;310) of any preceding claim, wherein each layer of lighting elements (404) comprises a layer (402) of light-emitting diodes ("LEDs"),
  6. 11
    The lighting assembly (130;310) of any preceding claim, wherein each layer (402) of lighting elements (404) comprises lighting elements (404) of different sizes.
  7. 12
    A method for adjusting a beam angle of a lighting assembly (130;310), the method comprising:identifying a desired beam angle based upon one or more inputs from a user interface (127);identifying one or more layers (402) of lighting elements (404) in a lighting tower (138;316) that, when activated within a parabolic reflector (134;314), generate the desired beam angle, each layer (402) of lighting elements (404) generating a particular angle of emitted light;and providing a first activation request to the one or more layers (402) of lighting elements (404) in the lighting tower (138;316), wherein the first activation request causes activation of the one or more layers (402) of lighting elements (404) in the lighting tower (138;316), and wherein the activation of the one or more layers (402) of lighting elements (404) in the lighting tower (138;316) generates the desired beam angle.
  8. 16
    The method of any of claims 12 to 15, further comprising:identifying a desired CCT;identifying one or more adjustments to lighting elements (404) of the one or more layers (402) of the lighting tower (138;316) that would generate the desired CCT;and providing a second activation request to the lighting elements (404) of the one or more layers (402) of the lighting tower (138;316), wherein the second activation request causes the one or more adjustments to the lighting elements (404) of the one or more layers (402) of the lighting tower (138;316), and wherein the one or more adjustments causes the lighting elements (404) of the one or more layers (402) of the lighting tower (138;316) to activate, such that the desired CCT is generated.