IP Library › Granted Patent US 9,212,867
Granted Patent B2
US 9,212,867 · App. 14/613,399 · Granted Dec 15, 2015

Handgun automatic sighting system

Inventors: William Q. Patterson (Crozier, VA); Steven Woodward (N. Chesterfield, VA)
F41G1/345F41C33/029F41C33/0254F41G1/01H01H11/005H05K3/30Y10T29/49105
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Quick Facts
Patent No.
US 9,212,867
App. No.
14/613,399
Granted
Dec 15, 2015
Kind
B2
Abstract

A handgun sighting system that adjusts the intensity of a lighted front sight based on the ambient light conditions. A sighting rib on the handgun includes an electronic circuit having a power supply, a light emitting diode (LED), a photocell, and a reed switch. A holster for use with the sighting system includes a magnet therein. Return of the handgun to the holster brings the reed switch of the weapon in close proximity to the magnet and deactivates the LED and the electronic circuit. Withdrawal of the handgun from the holster activates the LED and the electronic circuit. The handgun sighting system automatically adjusts the intensity of the LED in accordance with changes in the ambient light conditions, as measured by the photocell, to provide an optimal sighting presentation for the shooter.

Claims (40)

1. A weapon sighting system comprising:

a handheld weapon;

a sight rib housing secured to said weapon;

said sight rib housing including an electronic circuit having a power supply, a photocell, a reed switch, and a front sight;

a light emitting diode (LED) in said front sight,

whereby light intensity of said LED is controlled by said electronic circuit in relation to the ambient light measured by said photocell

wherein said sight rib housing includes an electronic control unit compartment including said reed switch;

a current limiting resistor;

a parallel bypass resistor; and

wherein said reed switch, said current limiting resistor, and said parallel bypass resistor are embedded in silicone rubber.

2. The weapon sighting system of claim 1 including a holster.

3. The weapon sighting system of claim 2 wherein said holster is constructed of non-magnetic material.

4. The weapon sighting system assembly of claim 3 including a magnet in said holster.

5. The weapon sighting system of claim 4 wherein said wherein said sight rib housing is constructed of non-magnetic material.

6. The weapon sighting system of claim 5 wherein placement of said handheld weapon in said holster places said reed switch of said handheld weapon in close proximity with said magnet of said holster.

7. The weapon sighting system assembly of claim 1 including

a dove tail groove extending laterally across said sight rib housing; and

a rear sight in said dove tail groove.

8. A weapon sighting system for attachment to a weapon, said weapon sighting system comprising:

a sight rib housing;

said sight rib housing including an electronic circuit having a power supply, a photocell, a reed switch, and a front sight including a light emitting diode (LED);

a fastening arrangement for securing said sight rib housing to the weapon, whereby the light intensity of said LED is controlled by said electronic circuit in relation to the ambient light measured by said photocell;

wherein said sight rib housing includes an electronic control unit compartment including said reed switch;

a current limiting resistor;

a parallel bypass resistor; and

wherein said reed switch, said current limiting resistor, and said parallel bypass resistor are embedded in silicone rubber.

9. The weapon sighting system of claim 8 including an activating holster for activating said electronic circuit.

10. The weapon sighting system of claim 9 wherein said activating holster is constructed of non-magnetic material.

11. The weapon sighting system of claim 8 wherein said sight rib housing is constructed of non-magnetic material.

12. A method of activating the sighting system of a weapon upon withdrawal from a holster, said method comprising:

a) providing a non-magnetic sight rib housing for attachment to the weapon, said sight rib housing including an electronic circuit having a power supply, a photocell, a reed switch, and a front sight including a light emitting diode (LED);

b) securing a magnet in said holster in such a way that said magnet is in close proximity to said reed switch when said weapon is placed in said holster;

c) providing said reed switch with a held open state, whereby withdrawal of the weapon from the holster switches the reed switch to the normally closed state thereby activating the LED and the electronic circuit;

d) providing said reed switch with a normally closed state, whereby return of the weapon to the holster brings the reed switch of the weapon in close proximity to the magnet in said holster and switches the reed switch to its held open state, thereby deactivating the LED and the electronic circuit;

e) providing said electronic circuit with a current limiting resistor to limit the current passing through said LED and a parallel bypass resistor to provide a minimum current flow to operate said LED in total darkness; and

f) embedding said reed switch, said current limiting resistor, and said parallel bypass resistor in silicone rubber.

13. The method of claim 12 wherein said holster is non-magnetic.

14. The method of claim 12 wherein said LED is a red LED.

15. The method of claim 12 that includes mounting said reed switch, said current limiting resistor, and said parallel bypass resistor on a circuit board.

16. The method of claim 12 that includes controlling the light intensity of said LED in relation to the ambient light measured by said photocell.

Continuity (2)
Provisional Application 61965768 · Feb 7, 2014
Related Publication 20150226521A1 · Aug 13, 2015