A projectile launcher includes a receiver and a dual cylindrical-shaped magazine (“DCM”) wherein the receiver contains a propelling mechanism and an ammunition receiving port. The propelling mechanism is used for launching a projectile. The ammunition receiving port, which may be situated at bottom
A projectile launcher includes a receiver and a dual cylindrical-shaped magazine (“DCM”) wherein the receiver contains a propelling mechanism and an ammunition receiving port. The propelling mechanism is used for launching a projectile. The ammunition receiving port, which may be situated at bottom of the receiver, is able to receive projectiles. It should be noted that the projectile launcher can also be a gun or firearm. The DCM includes two canisters and an ammunition supply port which is situated between the two canisters. The DCM carries multiple projectiles in such a way that a first portion of projectiles moves toward the receiver against gravity for supplying projectiles from the ammunition supply port to the ammunition receiving port while a second portion of projectiles move in a direction parallel to the receiver for replenishing projectiles from the second portion of projectiles to the first portion of projectiles.
대표청구항▼
1. An ammunition storage comprising: a dual cylindrical-shaped magazine (“DCM”) containing an ammunition supply port situated between two canisters, wherein the DCM carries a plurality of paintballs in such a way that a first portion of paintballs moves in a direction against gravity for supplying p
1. An ammunition storage comprising: a dual cylindrical-shaped magazine (“DCM”) containing an ammunition supply port situated between two canisters, wherein the DCM carries a plurality of paintballs in such a way that a first portion of paintballs moves in a direction against gravity for supplying paintballs to an ammunition receiving port of a receiver and a second portion of paintballs move in a direction parallel to the receiver for replenishing paintballs from the second portion of paintballs to the first portion of paintballs,wherein a paintball is able to leave at least one colored mark upon breakage of the paintball. 2. The ammunition storage of claim 1, wherein the receiver contains a propelling mechanism for launching a paintball and the ammunition receiving port configured to receive paintballs. 3. The ammunition storage of claim 1, wherein the DCM includes at least one ammunition carrier which contains delivery capsules with fins. 4. The ammunition storage of claim 1, wherein the receiver includes a top surface, a bottom surface, a front side, and a back side, wherein the top surface faces sky, the bottom surface faces ground, the front side launches a paintball, and the back side faces a user, wherein the ammunition receiving port is situated at the bottom surface of the receiver. 5. The ammunition storage of claim 1, wherein the two canisters of the DCM include a left-side drum-shaped cylinder (“LDC”) and a right-side drum-shaped cylinder (“RDC”), wherein LDC and RDC are bridged by a magazine base. 6. The ammunition storage of claim 5, wherein the ammunition supply port couples to the ammunition receiving port of receiver for channeling paintballs traveling from the canisters to the receiver via the magazine base and the magazine extender. 7. The ammunition storage of claim 1, wherein each canister of the DCM includes a round-shaped ammunition carrier able to rotate along its axis within the canister, wherein the ammunition carrier includes a range of six (6) to twenty (20) ammunition chambers. 8. The ammunition storage of claim 7, wherein each ammunition chamber includes a loading opening for paintball entrance and a dispensing opening for paintball departure, wherein each ammunition chamber is configured to hold a plurality of paintballs. 9. The ammunition storage of claim 1, wherein each canister of the DCM includes, a rotating agitator coupled to an ammunition carrier and capable of providing spinning motion for the ammunition carrier; anda pressure pedal coupled to ammunition chambers and having a plurality of pressing pads, wherein each of the plurality of pressing pads is configured to force the paintball moving from the loading opening to the dispensing opening. 10. The ammunition storage of claim 9, wherein each canister of the DCM further includes, a dispensing wheel situated adjacent to a dispensing end of the ammunition carrier and configured to dispense one projectile from dispensing openings of ammunition chambers in a predefined rate; anda ramp coupled to the dispensing wheel and configured to guide dispensed paintball from the ammunition carrier to the ammunition supply port. 11. A storage, comprising a dual cylindrical-shaped magazine (“DCM”) containing an ammunition supply port situated between two canisters configured to facilitate ammunition moving in a direction against gravity to a receiver, wherein each canister of the DCM further includes, a rotating agitator coupled to an ammunition carrier and capable of providing spinning motion for the ammunition carrier; anda pressure pedal coupled to ammunition chambers and having a plurality of pressing pads, wherein each of the plurality of pressing pads is configured to force a projectile moving from a loading opening to a dispensing opening. 12. The storage of claim 11, wherein one of the two canisters of the DCM includes a dispensing wheel situated adjacent to dispensing end of the ammunition carrier and configured to dispense one projectile from dispensing openings of ammunition chambers in a predefined rate. 13. The storage of claim 12, wherein one of the two canisters of the DCM includes a ramp coupled to the dispensing wheel and configured to guide dispensed ammunition from the ammunition carrier to the ammunition supply port. 14. The storage of claim 11, wherein the DCM carries ammunition in such a way that a first portion of the ammunition moves toward a receiver against gravity for supplying projectiles from the ammunition supply port to an ammunition receiving port and a second portion of the ammunition move in a direction parallel to the receiver for replenishing ammunition from the second portion of the ammunition to the first portion of the ammunition. 15. The storage of claim 11, wherein the receiver includes a top surface, a bottom surface, a front side, and a back side, wherein the top surface faces sky, the bottom surface faces ground, the front side launches ammunition, and the back side faces a user, wherein an ammunition receiving port is situated at the bottom surface of the receiver. 16. The storage of claim 11, wherein the DCM is a bottom mounted ammunition magazine. 17. The storage of claim 11, wherein the receiver is a paintball receiver containing a striker, a valve, and a launch chamber configured to launch a paintball, andwherein the ammunition is a plurality of paintballs. 18. A method for supplying ammunition to a paintball launcher, comprising: installing a first ammunition carrier having a plurality of ammunition chambers in a first canister of a dual-cylindrical magazine (“DCM”) and a second ammunition carrier in a second canister of the DCM;loading paintballs into loading openings of the plurality of ammunition chambers and setting a pressure pedal to guide the paintballs moving in a predefined direction;engaging an ammunition supply port of the DCM with an ammunition receiving port in a paintball launcher; andreleasing paintballs queued in a substantially vertical direction in a magazine extender through the ammunition supply port while portions of paintballs in the plurality of ammunition chambers move in a horizontal direction for replenishing released paintballs. 19. The method of claim 18, further comprising applying a pressure to the paintballs in the plurality of ammunition chambers by a follower and a spring. 20. The method of claim 19, further comprising leaving color marks upon breakage of a paintball upon hitting a target per QS.
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