ANTISEPTIC SYSTEM USING ULTRAVIOLET RAYS
A sterilization system is configured to emit optical energy, e.g., light, for sterilizing a surface, such as a door handle, faucet handle, elevator button, or other target surfaces known in the art. The sterilization system is configured to operate automatically in response to detection of a user's hand interfacing with the handle. In other words, after a user releases a handle, the sterilization system is actuated to sanitize the handle for subsequent users.
1 . An sterilization system configured for use with a door having a user actuated opening mechanism, the sterilization system comprising:
a motion sensor configured to detect placement and removal of a hand of a user adjacent the opening mechanism;
a controller in communication with the motion sensor, the controller being configured to generate a sterilization cycle command in response to detection by the motion sensor of placement and removal of the hand of the user adjacent the opening mechanism; and
a first sanitizing light element in communication with the controller for receiving the sterilization cycle command and positionable in optical range of the opening mechanism, the first sanitizing light element being sized, configured and adapted to emit a first optical sterilization signal toward the opening mechanism for sterilizing the opening mechanism in response to receipt of sterilization cycle command.
2 . The sterilization system recited in claim 1 , further comprising a second sanitizing light element in communication with the controller for receiving the sterilization cycle command and positionable in spaced relation to the first sanitizing light element and in optical range of the opening mechanism, the second sanitizing light element being sized, configured and adapted to emit a second optical sterilization signal toward the opening mechanism, the first and second optical sterilization signals collectively sterilizing the opening mechanism in response to receipt of sterilization cycle command.
3 . The sterilization system recited in claim 1 , further comprising a housing assembly coupled to the first sanitizing light element including a shield and a chassis coupled to the shield, the first sanitizing light element being coupled to the chassis, the shield being configured to block light emitted away from the opening mechanism.
4 . The sterilization system recited in claim 1 , wherein the first sanitizing light element is configured to emit ultraviolet light.
5 . The sterilization system recited in claim 4 , wherein the first sanitizing light element is configured to emit C-spectrum ultraviolet light.
6 . The sterilization system recited in claim 1 , wherein the first sanitizing light element is configured to emit infrared light.
7 . The sterilization system recited in claim 1 , wherein the first sanitizing light element is configured to emit light at a wavelength of approximately 270 nanometers.
8 . The sterilization system recited in claim 1 , wherein the controller is configured to generate a stop command in response to detection of placement of the hand of the user adjacent the opening mechanism during emission of light by the first sanitizing light element.
9 . The sterilization system recited in claim 8 , wherein the first sanitizing light element is configured to stop emitting light in response to receipt of the stop command.
10 . The sterilization system recited in claim 1 , wherein the motion sensor is configured to detect placement and removal of the hand of the user within approximately 5 inches of the opening mechanism.
11 . An sterilization system configured to sterilize a target surface, the sterilization system comprising:
a motion sensor configured to detect placement of a hand of a user adjacent the target surface;
a controller in communication with the motion sensor, the controller being configured to generate a sterilization cycle command in response to detection by the motion sensor of placement of the hand of the user adjacent the target surface; and
a first sanitizing light element in communication with the controller for receiving the sterilization cycle command and positionable in optical range of the target surface, the first sanitizing light element being sized, configured and adapted to emit a first optical sterilization signal toward the target surface for sterilizing the target surface in response to receipt of sterilization cycle command.
12 . The sterilization system recited in claim 11 , further comprising a second sanitizing light element in communication with the controller for receiving the sterilization cycle command and positionable in spaced relation to the first sanitizing light element and in optical range of the target surafce, the second sanitizing light element being sized, configured and adapted to emit a second optical sterilization signal toward the target surface, the first and second optical sterilization signals collectively sterilizing the target surface in response to receipt of sterilization cycle command.
13 . The sterilization system recited in claim 11 , further comprising a housing assembly coupled to the first sanitizing light element including a shield and a chassis coupled to the shield, the first sanitizing light element being coupled to the chassis, the shield being configured to block light emitted away from the target surface.
14 . The sterilization system recited in claim 11 , wherein the first sanitizing light element is configured to emit ultraviolet light.
15 . The sterilization system recited in claim 14 , wherein the first sanitizing light element is configured to emit C-spectrum ultraviolet light.
16 . The sterilization system recited in claim 11 , wherein the first sanitizing light element is configured to emit infrared light.
17 . The sterilization system recited in claim 11 , wherein the first sanitizing light element is configured to emit light at a wavelength of approximately 270 nanometers.
18 . The sterilization system recited in claim 11 , wherein the controller is configured to generate a stop command in response to detection of placement of the hand of the user adjacent the target surface during emission of light by the first sanitizing light element.
19 . The sterilization system recited in claim 18 , wherein the first sanitizing light element is configured to stop emitting light in response to receipt of the stop command.
20 . The sterilization system recited in claim 11 , wherein the motion sensor is configured to detect placement and removal of the hand of the user within approximately 5 inches of the target surface.