IP Library › Granted Patent US 12,698,885
Granted Patent B2
US 12,698,885 · App. 19/076,633 · Granted Aug 4, 2026

Beam reducer and control system for a luminaire

Inventors: Pavel Jurik (Prostredni Becva, CZ); Jan Vilem (Valasske Mezirici, CZ); Josef Valchar (Prostredni Becva, CZ)
Assignee: ROBE lighting s.r.o.
F21V15/01F21V11/10F21V21/30F21V23/06F21V31/005F21V33/0052H05B47/17H05B47/175
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Quick Facts
Patent No.
US 12,698,885
App. No.
19/076,633
Filed
Mar 11, 2025
Granted
Aug 4, 2026
Kind
B2
Art Unit
2875
USPC
362/277
Abstract

A luminaire includes a light source configured to generate an emitted light beam, and a beam reducer configured to move between a first position and a second position. In the first position, the beam reducer is outside the emitted light beam, and in the second position, the beam reducer receives the emitted light beam and occludes an outer portion of the emitted light beam to emit a reduced light beam having a smaller beam angle than the emitted light beam. The luminaire also includes an imaging subsystem configured to receive (i) the emitted light beam when the beam reducer is in the first position and (ii) the reduced light beam when the beam reducer is in the second position. The beam reducer is configured to move to the second position in response to a position of the imaging subsystem.

Claims (39)

1 . A luminaire, comprising:

a light source configured to generate an emitted light beam;

a beam reducer configured to move between a first position and a second position, wherein in the first position, the beam reducer is outside the emitted light beam, and in the second position, the beam reducer receives the emitted light beam and occludes an outer portion of the emitted light beam to emit a reduced light beam having a smaller beam angle than the emitted light beam; and

an imaging subsystem configured to receive (i) the emitted light beam when the beam reducer is in the first position and (ii) the reduced light beam when the beam reducer is in the second position,

wherein the beam reducer is configured to move to the second position in response to a position of the imaging subsystem.

2 . The luminaire of claim 1 , wherein the imaging subsystem comprises a beam size iris, and the position of the imaging subsystem comprises an aperture of the beam size iris being smaller than a predetermined threshold value.

3 . The luminaire of claim 1 , wherein the imaging subsystem comprises a framing shutter, and the position of the imaging subsystem comprises an aperture of the framing shutter being smaller than a predetermined threshold value.

4 . The luminaire of claim 1 , wherein the imaging subsystem comprises a gobo wheel, and the position of the imaging subsystem comprises a predetermined gobo of the gobo wheel moving to a position in which the predetermined gobo receives at least a portion of the emitted light beam.

5 . The luminaire of claim 1 , further comprising a wheel, wherein the beam reducer is mounted in the wheel, and wherein the wheel is configured to move the beam reducer between the first and second positions.

6 . The luminaire of claim 1 , further comprising a control system configured to:

receive, via a data link, a command indicating a commanded position of a component of the imaging subsystem; and

control a position of the beam reducer between the first position and the second position based on the commanded position of the component.

7 . The luminaire of claim 1 , wherein the beam reducer is configured to move to the first position in response to an aperture of the imaging subsystem being larger than a predetermined threshold value.

8 . The luminaire of claim 1 , further comprising a control system configured to move the beam reducer to the second position in response to receiving a command via a data link to place the luminaire in a beam reduction mode.

9 . The luminaire of claim 8 , wherein the control system is further configured to ignore a command to move the beam reducer to the first position while the luminaire is in the beam reduction mode.

10 . A luminaire control system, comprising:

an actuator configured to move a beam reducer between a first position and a second position, wherein in the first position, the beam reducer is outside an emitted light beam, and in the second position, the beam reducer receives an emitted light beam and occludes an outer portion of the emitted light beam to emit a reduced light beam having a smaller beam angle than the emitted light beam;

an imaging subsystem configured to receive (i) the emitted light beam when the beam reducer is in the first position and (ii) the reduced light beam when the beam reducer is in the second position; and

a control system electrically coupled to the actuator and the imaging subsystem and configured to:

adjust a component of the imaging subsystem; and

cause the actuator to move the beam reducer between the first position and the second position.

11 . The luminaire control system of claim 10 , wherein the control system is configured to:

receive, via a data link, a command indicating a commanded position of a component of the imaging subsystem; and

control a position of the beam reducer between the first position and the second position based on the commanded position of the component.

12 . The luminaire control system of claim 11 , wherein the position of the component comprises an aperture value, and wherein the control system is configured to move the beam reducer to the second position in response to determining that the aperture value is smaller than a predetermined threshold value.

13 . The luminaire control system of claim 11 , wherein the position of the component comprises an aperture value, and wherein the control system is configured to move the beam reducer to the first position in response to determining that the aperture value is larger than a predetermined threshold value.

14 . The luminaire control system of claim 10 , wherein the control system is configured to:

receive, via a data link, a second command to place a luminaire in a beam reduction mode; and

control the beam reducer to move to the second position in response to the second command.

15 . A method of controlling a luminaire, comprising:

receiving, by a control system of the luminaire, an indication of a position of a component of an imaging subsystem; and

causing, by the control system, a beam reducer of the luminaire to move between a first position and a second position based on the position of the component,

wherein in the first position, the beam reducer is outside a light beam emitted from a light source of the luminaire, and

wherein in the second position, the beam reducer receives the emitted light beam and occludes an outer portion of the emitted light beam to emit a reduced light beam having a smaller beam angle than the emitted light beam.

16 . The method of claim 15 , wherein the position of the component comprises an aperture value, and the method further comprises moving, by the control system, the beam reducer to the second position in response to determining that the aperture value is smaller than a predetermined threshold value.

17 . The method of claim 15 , wherein the position of the component comprises an aperture value, and the method further comprises moving, by the control system, the beam reducer to the first position in response to determining that the aperture value is larger than a predetermined threshold value.

18 . The method of claim 15 , further comprising:

receiving, by the control system via a data link, a first command to place the luminaire in a beam reduction mode; and

causing, by the control system, the beam reducer to move to the second position in response to the first command.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2025
From: JURIK, PAVEL; VILEM, JAN; VALCHAR, JOSEF
To: ROBE LIGHTING S.R.O.
Reel/Frame 071331/0362 →
Continuity (3)
Continuation 18820904 · Aug 30, 2024
Provisional Application 63580290 · Sep 1, 2023
Related Publication 20250207761A1 · Jun 26, 2025
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