US2014230487A1PendingUtilityA1

Alternating bi-colored pattern necklace formed through a light offset of a first chain and an nth chain interlaced to form the alternating bi-colored pattern necklace

Assignee: VASQUEZ ROBERTPriority: Feb 21, 2013Filed: Feb 19, 2014Published: Aug 21, 2014
Est. expiryFeb 21, 2033(~6.6 yrs left)· nominal 20-yr term from priority
Y10T29/49117A44C 15/0015A44C 15/005
43
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Claims

Abstract

Disclosed are a method, a device and/or a system of an alternating bi-colored pattern necklace formed through a light offset of a first chain and an nth chain interlaced to form the alternating bi-colored pattern necklace. A width of an nth battery chamber forms an approximately one-half period offset from each of a first set of lights that are equally spaced with each other such that, when the first chain and the nth chain are mechanically coupled together when the first clipping end of the male connector orientation is mechanically coupled with the nth clipping end of the female connector orientation, the nth set of lights interlace with the first set of lights to form a bi-colored set of lights equally spaced apart in alternating colors of the first color and the nth color at a density of twice of any one of the first set of lights of the first chain and the nth set of lights of the nth chain.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A necklace, comprising:
 a first chain having a first set of lights that are equally spaced between each other and which are illuminated in a first color when powered through a first battery chamber that forms the first chain into a circular shape when edges of the first chain are coupled together into a first circuit through the first battery chamber,
 wherein the first battery chamber includes a first clipping end in a male connector orientation; 
   an nth chain having an nth set of lights that are equally spaced between each other and which are illuminated in an nth color when powered through an nth battery chamber that forms the nth chain into the circular shape when edges of the nth chain are coupled together into an nth circuit through the nth battery chamber,
 wherein the nth battery chamber includes an nth clipping end in a female connector orientation; 
   wherein a width of an nth battery chamber forms an approximately one-half period offset from each of the first set of lights that are equally spaced with each other such that, when the first chain and the nth chain are mechanically coupled together when the first clipping end of the male connector orientation is mechanically coupled with the nth clipping end of the female connector orientation, an nth set of lights interlace with the first set of lights to form a bi-colored set of lights equally spaced apart in alternating colors of the first color and the nth color at a density of twice of any one of the first set of lights of the first chain and the nth set of lights of the nth chain, and   wherein the necklace is formed of an alternating bi-colored pattern when the first chain is mechanically mated with the nth chain through a union of a male connector of the first chain with a female connector of the nth chain.   
     
     
         2 . The necklace of  claim 1  wherein the first set of lights and the nth set of lights are selected from any one of a fourteen colors selected based on an empirical study in which each of the fourteen colors are normalized to represent approximately 90% of professional baseball, football, and basketball sports teams in the United States. 
     
     
         3 . The necklace of  claim 2  wherein the fourteen colors comprise a Pantone set of colors comprising yellow gold, orange, silver, navy blue, light blue, royal blue, black, white, green, dark red, bright red, purple, burgundy, and dark gold. 
     
     
         4 . The necklace of  claim 3  wherein any one of the first chain and the nth chain includes a set of modes in which lights on either chain can be set to a flashing pattern of varying speed and frequency when the set of modes are set through a button on each of the first chain and the nth chain respectively. 
     
     
         5 . The necklace of  claim 4 :
 wherein the first set of lights and the nth set of lights are at least one of light illuminating diode (LED) lights, compact florescent bulbs, and mini incandescent bulbs, and   wherein any of the first set of lights and the nth set of lights have a decorative three-dimensional form in each light casing based on a preference of a customer of the necklace.   
     
     
         6 . The necklace of  claim 5   wherein the first battery chamber and the nth battery chamber utilize at least one of a lithium battery, a carbon battery, an alkaline battery and a rechargeable battery,   wherein the each light forming the necklace is in a same one the fourteen colors, and   wherein a set of clips assist in joining various junction points of each chain of the necklace with each other, wherein the set of clips are evenly spread out across each chain to assist in joining chains together into the necklace in a unitary manner.   
     
     
         7 . The necklace of  claim 6  wherein a flashing pattern of any one of the first chain and the nth chain as well as an audio playback of any one of the first chain and the nth chain is optionally configurable when any one of the first chain and the nth chain is wirelessly coupled with a mobile device of a wearer of the necklace. 
     
     
         8 . A method, comprising:
 equally spacing a first set of lights between each other in a first chain;   illuminating the first chain in a first color when powered through a first battery chamber;   forming the first chain into a circular shape when edges of the first chain are coupled together into a first circuit through the first battery chamber;   affixing a first clipping end in a male connector orientation on the first battery chamber;   equally spacing an nth set of lights between each other in an nth chain;   illuminating the nth chain in an nth color when powered through an nth battery chamber;   forming the nth chain into the circular shape when edges of the nth chain are coupled together into an nth circuit through the nth battery chamber;   affixing an nth clipping end in a female connector orientation on the nth battery chamber;   forming the nth battery chamber in a width that is approximately one-half period offset from each of the first set of lights that are equally spaced with each other such that, when the first chain and the nth chain are mechanically coupled together when the first clipping end of the male connector orientation is mechanically coupled with the nth clipping end of the female connector orientation, an nth set of lights interlace with the first set of lights to form a bi-colored set of lights equally spaced apart in alternating colors of the first color and the nth color at a density of twice of any one of the first set of lights of the first chain and the nth set of lights of the nth chain, and   forming a necklace an alternating bi-colored pattern when the first chain is mechanically mated with the nth chain through a union of a male connector of the first chain with a female connector of the nth chain.   
     
     
         9 . The method of  claim 8  further comprising:
 selecting the first set of lights and the nth set of lights from any one of a fourteen colors selected based on an empirical study in which each of a fourteen colors are normalized to represent approximately 90% of professional baseball, football, and basketball sports teams in the United States. 
 
     
     
         10 . The method of  claim 9  wherein the fourteen colors comprise a Pantone set of colors comprising yellow gold, orange, silver, navy blue, light blue, royal blue, black, white, green, dark red, bright red, purple, burgundy, and dark gold. 
     
     
         11 . The method of  claim 10  further comprising:
 providing a set of modes in which lights on either chain can be set to a flashing pattern of varying speed and frequency when the set of modes are set through a button on each of the first chain and the nth chain respectively. 
 
     
     
         12 . The method of  claim 11 :
 wherein the first set of lights and the nth set of lights are at least one of light illuminating diode (LED) lights, compact florescent bulbs, and mini incandescent bulbs, and   wherein any of the first set of lights and the nth set of lights have a decorative three-dimensional form in each light casing based on a preference of a customer of the necklace.   
     
     
         13 . The method of  claim 12 :
 wherein the first battery chamber and the nth battery chamber utilize at least one of a lithium battery, a carbon battery, an alkaline battery and a rechargeable battery,   wherein the each light forming the necklace is in a different one the of the fourteen colors, and   wherein a set of clips assist in joining various junction points of each chain of the necklace with each other, wherein the set of clips are evenly spread out across each chain to assist in joining chains together into the necklace in a unitary manner.   
     
     
         14 . The method of  claim 13  further comprising:
 optionally configuring a flashing pattern of any one of the first chain and the nth chain as well as an audio playback of any one of the first chain and the nth chain when any one of the first chain and the nth chain is wirelessly coupled with a mobile device of a wearer of the necklace using a processor and a memory. 
 
     
     
         15 . A necklace, comprising:
 a first chain having a first set of lights that are equally spaced between each other and which are illuminated in a first color when powered through a first battery chamber that forms the first chain into a circular shape when edges of the first chain are coupled together into a first circuit through the first battery chamber,
 wherein the first battery chamber includes a first clipping end in a male connector orientation; 
   an nth chain having an nth set of lights that are equally spaced between each other and which are illuminated in an nth color when powered through an nth battery chamber that forms the nth chain into the circular shape when edges of the nth chain are coupled together into an nth circuit through the nth battery chamber,
 wherein the nth battery chamber includes an nth clipping end in a female connector orientation; 
   wherein a width of an nth battery chamber forms an approximately one-half period offset from each of the first set of lights that are equally spaced with each other such that, when the first chain and the nth chain are mechanically coupled together when the first clipping end of the male connector orientation is mechanically coupled with the nth clipping end of the female connector orientation, an nth set of lights interlace with the first set of lights to form a bi-colored set of lights equally spaced apart in alternating colors of the first color and the nth color at a density of twice of any one of the first set of lights of the first chain and the nth set of lights of the nth chain,   wherein the necklace is formed of an alternating bi-colored pattern when the first chain is mechanically mated with the nth chain through a union of a male connector of the first chain with a female connector of the nth chain, and   wherein any one of the first chain and the nth chain includes a set of modes in which lights on either chain can be set to a flashing pattern of varying speed and frequency when the set of modes are set through a button on each of the first chain and the nth chain respectively.   
     
     
         16 . The necklace of  claim 15  wherein the first set of lights and the nth set of lights are selected from any one of a fourteen colors selected based on an empirical study in which each of the fourteen colors are normalized to represent approximately 90% of professional baseball, football, and basketball sports teams in the United States. 
     
     
         17 . The necklace of  claim 16  wherein the fourteen colors comprise a Pantone set of colors comprising yellow gold, orange, silver, navy blue, light blue, royal blue, black, white, green, dark red, bright red, purple, burgundy, and dark gold. 
     
     
         18 . The necklace of  claim 17 :
 wherein the first set of lights and the nth set of lights are at least one of light illuminating diode (LED) lights, compact florescent bulbs, and mini incandescent bulbs, and   wherein any of the first set of lights and the nth set of lights have a decorative three-dimensional form in each light casing based on a preference of a customer of the necklace.   
     
     
         19 . The necklace of  claim 18 :
 wherein the first battery chamber and the nth battery chamber utilize at least one of a lithium battery, a carbon battery, an alkaline battery and a rechargeable battery,   wherein the each light forming the necklace is in a same one of the fourteen colors, and   wherein a set of clips assist in joining various junction points of each chain of the necklace with each other, wherein the set of clips are evenly spread out across each chain to assist in joining chains together into the necklace in a unitary manner.   
     
     
         20 . The necklace of  claim 19  wherein a flashing pattern of any one of the first chain and the nth chain as well as an audio playback of any one of the first chain and the nth chain is optionally configurable when any one of the first chain and the nth chain is wirelessly coupled with a mobile device of a wearer of the necklace.

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