The present disclosure relates to a laser device and system, and in particular to a laser device and system for identifying a target location.
In an emergency situation, occupants or people in a residence or building may be required to leave the building for their safety. The building or residence that they are in may be dark or filled with smoke depending on the emergency situation. An alarm system such as a smoke detector or fire alarm may go off to notify the occupant(s) that they should leave the building.
However, such an alarm system does not provide the occupant(s) with a way to exit the building. In dark or smoky situations, the occupant(s) may be unaware or may be unable to determine where the exit is to bring them to safety. This can cause additional stress for the occupant(s) in an already stressful situation.
Accordingly, an additional, alternative, and/or improved system for identifying a target location to an occupant is desired.
In accordance with one aspect of the present disclosure, an apparatus is disclosed, the apparatus comprising a body, a laser rotatably coupled to the body, and at least one sensor connected to the body. The at least one sensor is configured to detect an alarm, and when the at least one sensor detects the alarm, the laser is configured emit a light to identify a target location.
In the apparatus, the laser is rotatably coupled to the body via a housing, the housing being rotatable with respect to the body, and configured to direct the laser to the target location.
In the apparatus, the body may be formed of fire resistant materials.
The apparatus may further comprise a power source and indicator for indicating when the power source is low.
In the apparatus, the laser may be configured to emit the light in accordance with sounds of the alarm.
In the apparatus, the laser may be configured to emit the light during predetermined time intervals.
The apparatus may further comprise a printed circuit board (PCB) to which the laser and the at least one sensor are connected to.
In the apparatus, the at least one sensor is a microphone configured to detect sounds of the alarm.
In accordance with another aspect of the present disclosure, a method of identifying a target location is disclosed, the method comprising detecting, by at least one sensor of an apparatus, an alarm, in response to detecting the alarm, outputting, by the at least one sensor, a signal, and in response the signal, activating a laser rotatably coupled to a body of the apparatus to identify the target location.
In the method, the signal may indicate that the alarm has been detected by the at least one sensor.
The method may further comprise activating the laser for predetermined time intervals.
In the method, the sensor detects a sound of the alarm.
The method may further comprise activating the laser during each sound of the alarm.
In accordance with another aspect of the present disclosure, a system for identifying a target location is disclosed, the system comprising at least one sensor of an apparatus for detecting an alarm, and a laser rotatably coupled to the apparatus and configured to activate in response to the at least one sensor detecting the alarm. The laser is directed to a target location, and when the laser is activated, the laser identifies the target location.
In the system, the at least one sensor is a microphone.
In the system, the at least one sensor detects a sound of the alarm.
In the system, the laser may be configured to emit the light in accordance with sounds of the alarm.
In the system, the laser may be configured to emit the light during predetermined time intervals.
The system may further comprise a power source for providing power to the apparatus, and an indicator located on the apparatus for indicating when the power source is low.
The system may further comprise a switch located on the apparatus for activating the laser.
Further features and advantages of the present disclosure will become apparent from the following detailed description, taken in combination with the appended drawings, in which:
Apparatuses, methods, and systems for identifying a target location to an occupant are disclosed herein. The apparatus comprises a laser rotatably or pivotably coupled to a body of the apparatus, and at least one sensor connected to the body. The at least one sensor is configured to sense an alarm, and when the at least one sensor senses the alarm, the laser is configured to emit a laser beam to indicate a target location to an occupant. The method for identifying or indicating a target location comprises sensing, by a sensor of an apparatus, an alarm, outputting, by the sensor, a signal, in response to receiving the signal, activating a laser rotatably coupled to a body of the apparatus to identify or indicate the target location. It will be appreciated that the technology described in this application may be applicable to laser apparatuses or devices, such as the Laser Exit®.
It will be appreciated that the device may additionally or instead comprise a fold out plug on a rear of the body as a power source. It will be appreciated that the laser 102 may be a class one line laser or a class two line laser that is configured to be directed to a target location. In some embodiments, the laser 102 is a laser from Qingdao Lasence Co., Ltd.
The at least one sensor 106 may be a microphone or similar type of sensor positioned adjacent to the laser housing 204. The at least one sensor 106 is configured to detect or sense an alarm signal, such as an alarm or noise from a smoke detector. The device 200 may further comprise a light indicator 110 for notifying the user when the power source is low, which may be positioned adjacent the laser housing 204, as depicted. It will be appreciated that in some embodiments, the sensor 106 and the light indicator 110 may be positioned at a different locations on the device 200 so that the sensor can reliably sense the alarm, and the user can easily identify when the power source is low. The device 200 may further comprise a switch 108 for testing the power source's strength. The switch 108 is present at a location on the device 200 such that a user can easily test the strength of the power source. The power source 104 may be covered by a cover 206 that is removably fastened to a body of the device 200.
As depicted in
One or more sensors, including sensor 106, are located on a printed circuit board (PCB) 404 which is located within the device 200. The laser, switches and indicator are also present on or connected to the PCB 404 via soldering or other connection means. A body and cover of the device 200 further comprises holes or openings to allow for the elements on the PCB 404 to be accessed or visible to a user. For example, the switches and openings are positioned to be accessed by the user, the indicator and openings to be visible by the user, and the sensors and openings to sense the alarm. A Micro Processor may also be installed on the PCB to reduce the sensitivity of the microphone (not depicted).
One or more sensors, including sensor 106, are located on a printed circuit board (PCB) which is located within the section 606. The sensor 106 may be soldered or connected to the PCB. The laser, switches and/or indicator are also present on or connected to the PCB via soldering or other connection means. The section 606 for the sensor 106 may be positioned below the section 604. The section 606 may further comprise holes or openings at a front of the section 606 to allow for the sensor 106 to sense the noise of an alarm.
The section 608 for the laser 102 may be positioned below the section 606, and comprises the laser 102. The section 608 may act as a laser housing that is set on an angle so as to direct the laser 102 towards the target location. It will be appreciated that the section for the laser 102 may be moveable to set the appropriate angle for the laser 102, for example, the section 608 may be rotatable and/or may be pivotable to ensure the laser 102 is directed at the target location. The section for the laser 102 may further comprise one or more holes or openings at a front or side to allow the laser 102 to point through towards the target location and/or to allow the heat of the laser 102 to dissipate from the section 608. The section 608, or other section of device 600 may further comprise a switch, similar to switch 302 for testing the laser during set up. The switch is configured to activate the laser 102 such that a user can use the switch while setting up the device 600 to ensure that the laser 102 accurately points to the target location.
Although, the sections are depicted in a particular order, the sections or compartments 604, 606, and 608 may instead be placed in a different order or in another orientation. The cover of the laser device 600 may have a square type shape as depicted, or may have an oblong or rectangular shape. In embodiments, where the device 600 has a square shape, the device 600 comprises a square electrical cover with a slot at the bottom, in section 608, for the laser. The device 600 may be secured to a wall or ceiling to allow for the laser 102 to be directed to the target location. The device may be secured to the wall or ceiling of a building or residence via connection means at a top of section 604, or at another surface of the device 600 such that the laser 102 can be directed to the target location. It will be appreciated that the outer elements of the device may be fire resistant elements, so that the device will operate and indicate an exit during an emergency situation, for example, during a fire.
It will be appreciated that the device 200, 600 may further comprise a direct hook up, a voltage regulator, and/or an internal smoke detector (not depicted).
The laser 102 of the device 200, 600 may be configured to emit a laser beam in conjunction with a fire alarm, smoke detector, or other alarm system. This allows an exit or another target location to be identified for occupants of a residence or building during an emergency situation. The laser device 200, 600 may be configured to emit the laser beam when the alarm sounds its alarm in response to detecting smoke. Depending on the emergency situation, it may be dark or smoky in the building, and/or the occupant(s) may be stressed or confused in response to hearing the alarm. The laser beam emitted from the laser device 200, 600 is visible in many different conditions and can make it clear for an occupant where the exit or target location is. For example, the laser 102 may emit a green or red coloured laser beam that is visible in the dark and through smoke. It will be appreciated that the laser 102 may emit a laser beam of another colour that is still visible in the dark and through smoke, and that can identify a target location for the occupant(s). The laser beam will indicate the location of an exit or target location for the occupant or people in the residence or building to go towards. This allows for a safe exit from the residence or building in an emergency. In some embodiments, the laser beam is configured to point to the floor near a target location or exit. It will be appreciated that near the floor, there may be the thinnest covering of smoke, making the laser beam more visible. It will be further appreciated that the laser beam may reach up to approximately 24 feet.
To emit the laser beam in conjunction with the smoke detector system or other alarm system, the laser device 200, 600 comprises the at least one sensor 106. The sensor 106 may be a microphone or other sound sensor that is configured to sense the sound of the smoke detector. The sensor 106 is configured to output a positive voltage, in response to sensing the sound of the smoke detector or other alarm, which can activate the laser 102. The laser 102 may be activated with each beep or sound of the smoke detector such that the laser beam is emitted only while the alarm is making the sound or beep. The intermittent blinking of the laser beam allows for a safer environment for the occupant(s) should they inadvertently look towards the laser 102 during an emergency situation. It will be appreciated that other lengths of intermittent blinking or longer or shorter lengths of emitting the laser beam may instead be configured for the laser device 200, 600. In some embodiments, the laser 102 is a class two safety laser that will not damage the occupant(s) eyes should they inadvertently look at the laser beam.
As described above, the laser device 200, 600 may be mounted to a wall or ceiling, or other element in a building or residence. The device may be mounted at least 2 feet above the floor on a ceiling, wall, or other element. Once the laser device 200, 600 is placed and secured to the ceiling, wall or other element, the direction of the laser 102 is adjustable via the laser housing, section 608, or other rotatable elements, manually or using an automated system. In some embodiments, the device 200, 600 may be secured to a wall or ceiling using an easy mounting bracket which may allow the device 200, 600 to turn up to 180 degrees once mounted to the wall or ceiling. To verify that the laser will point to the target location, the laser device 200, 600 further comprises the sensor or switch 302 which may be a button or switch allowing for directional setup. The user can activate the laser 102 using the sensor 302 to emit a laser beam so that they can ensure the laser beam is pointed towards the target location.
As depicted in
As described above, the described laser devices and system may be useful in buildings during emergency situations, where there may be smoke or other poor visibility conditions. The device and systems can be used when there may not be any power or electricity and can allow for an exit or other location to be clearly identified for an occupant in the building, to help them get to safety during a fire or other emergency situation.
It will be apparent to persons skilled in the art that a number of variations and modifications can be made without departing from the scope of the invention. Although specific embodiments are described herein, it will be appreciated that modifications may be made to the embodiments without departing from the scope of the current teachings. For simplicity and clarity of the illustration, elements in the figures are not necessarily to scale, are only schematic and are non-limiting of the elements structures. It will be apparent to persons skilled in the art that a number of variations and modifications can be made without departing from the scope of the invention as described herein.
This application claims the benefit of U.S. Provisional Application Ser. No. 63/274,088, filed Nov. 1, 2021, the entire content of which is incorporated herein by reference.
Number | Name | Date | Kind |
---|---|---|---|
4365238 | Kollin | Dec 1982 | A |
4754266 | Shand | Jun 1988 | A |
5297011 | Triunfol | Mar 1994 | A |
5561412 | Novak | Oct 1996 | A |
6142649 | Beghelli | Nov 2000 | A |
6150943 | Lehman | Nov 2000 | A |
6181251 | Kelly | Jan 2001 | B1 |
8376567 | Zozula | Feb 2013 | B1 |
10553085 | Derickson | Feb 2020 | B1 |
10976794 | Robotham | Apr 2021 | B2 |
20050174251 | Terry, III | Aug 2005 | A1 |
20070064433 | Wright | Mar 2007 | A1 |
20120092183 | Corbett | Apr 2012 | A1 |
20230016786 | Kim | Jan 2023 | A1 |
20230055364 | Lewis | Feb 2023 | A1 |
Number | Date | Country | |
---|---|---|---|
20230134071 A1 | May 2023 | US |
Number | Date | Country | |
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63274088 | Nov 2021 | US |