US20050188582A1 - Trigger lock - Google Patents
Trigger lock Download PDFInfo
- Publication number
- US20050188582A1 US20050188582A1 US11/052,341 US5234105A US2005188582A1 US 20050188582 A1 US20050188582 A1 US 20050188582A1 US 5234105 A US5234105 A US 5234105A US 2005188582 A1 US2005188582 A1 US 2005188582A1
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- United States
- Prior art keywords
- trigger
- locking shaft
- shaft
- locking
- extension
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Abandoned
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- 238000000034 method Methods 0.000 claims abstract description 14
- 230000000994 depressogenic effect Effects 0.000 claims description 3
- 210000005069 ears Anatomy 0.000 description 11
- 210000003813 thumb Anatomy 0.000 description 10
- 239000000463 material Substances 0.000 description 3
- 230000007246 mechanism Effects 0.000 description 3
- 230000003466 anti-cipated effect Effects 0.000 description 2
- 238000010304 firing Methods 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 239000003086 colorant Substances 0.000 description 1
- 230000000295 complement effect Effects 0.000 description 1
- 238000003384 imaging method Methods 0.000 description 1
- 229920000642 polymer Polymers 0.000 description 1
- 238000009877 rendering Methods 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F41—WEAPONS
- F41A—FUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
- F41A17/00—Safety arrangements, e.g. safeties
- F41A17/46—Trigger safeties, i.e. means for preventing trigger movement
- F41A17/52—Thumb-operated sliding safeties mounted on the upside of the stock, e.g. for shotguns
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F41—WEAPONS
- F41A—FUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
- F41A17/00—Safety arrangements, e.g. safeties
- F41A17/02—Key-operated safeties
Definitions
- the invention is directed to a trigger lock mounted in a device having a trigger that includes a trigger locking shaft, the trigger locking shaft having a first extension to extend through a first side of the device, a second extension to extend through a second side of the device, and a locking pin mounted in the trigger locking shaft, the locking pin movable between a first position and a second position, the trigger locking shaft mounted in the device such that the locking pin is mounted on a forward side of the trigger to allow the trigger to move when the locking pin is in a first position and to prevent the trigger from moving when the locking pin is in a second position.
- FIG. 5 shows a partial cross section generally shown along A-A in FIG. 9 , with the trigger lock device in the fire position;
- FIG. 6 shows a partial cross section generally shown along A-A in FIG. 9 , with the key inserted and the trigger lock device in the no-fire position;
- FIG. 9 shows a partial cross section view of the left hand side of the weapon showing the relative arrangement of elements of one embodiment of the invention and the trigger lock device in the no- fire position;
- FIG. 10 shows partial cross section view of the left hand side the weapon showing the relative arrangement of elements of one embodiment of the invention and the trigger lock device in the fire position;
- FIG. 11 shows partial cross section view of the left hand side of the weapon showing arrangement of elements of one embodiment of the invention with the trigger depressed and the trigger lock device in the fire position;
- FIG. 13 shows one embodiment of the work end of the shaft assembled with the bushing
- FIG. 15 shows a side view of one embodiment of a handgun with a thumb lever
- FIG. 18 is a partial view of a device with a trigger locking shaft in place in front of a trigger
- FIGS. 19 a - d illustrate the positioning of a trigger locking shaft relative to a trigger according to one embodiment of the present invention
- FIG. 20 a illustrates another embodiment of a trigger lock according to the present invention installed in a frame of a device
- FIG. 20 c is a side view of the key of FIG. 20 b;
- FIG. 21 illustrates another embodiment of a trigger lock according to the present invention installed in a frame of a device
- FIG. 23 a illustrates another embodiment of a trigger lock according to the present invention installed in a frame of a device
- FIG. 24 a is a plan view of another embodiment of a trigger locking shaft according to the present invention.
- FIG. 24 b is an end view of the trigger locking shaft of FIG. 24 a;
- FIG. 24 c is an end view of the other end of the trigger locking shaft of FIG. 24 a;
- FIG. 25 a is a plan view of another embodiment of a trigger locking shaft according to the present invention.
- FIG. 25 b is a schematic view of the trigger locking shaft of FIG. 25 a illustrating the movement of the trigger locking shaft;
- FIG. 26 a is a side view of another embodiment of a trigger locking shaft according to the present invention.
- FIG. 26 c is an end view of the right end of the trigger locking shaft of FIG. 26 a.
- FIG. 1 a left side view of a handgun 34 and recessed cavity 5 containing an indicator shaft 43 and color indicator 7 , FIG. 2 , of a trigger lock 36 , FIG. 8 . Also visible in FIG. 1 is slide 2 , trigger guard 3 , ammo magazine 24 , and magazine lock 25 .
- the color indicator 7 indicates that the trigger lock is in the fire position.
- FIG. 2 shows a detailed view of the left side of handgun 34 with the shaft end 6 and color indicator 7 of the trigger lock 36 , FIG. 8 . In this figure the fire indicator 7 is in the no-fire position.
- FIG. 4 shows the right hand side of handgun 34 , the bushing 30 and work end 11 of the shaft 32 (not shown).
- FIG. 3 shows a detailed left side partial cutaway of handgun 34 indicator shaft 43 of shaft 32 and the color indicator 7 in the fire position.
- FIG. 5 shows a cutaway view along A-A in FIG. 9 of the trigger lock 36 , FIG. 8 , and related elements with the trigger lock 36 in the fire position.
- the trigger 4 could rotate away from trigger force 21 ( FIG. 10 ) moving trigger linkage 9 in the direction of trigger rotation 22 , FIG. 10 , and trigger 4 would rotate around cross pin 8 to fire the weapon.
- FIG. 9 shows the triggering linkage pivot pin 20 and an arrow showing direction of rotation 23 of the shaft 32 .
- the key 10 ( FIG. 5 ) is used to engage the work end 11 of the shaft 32 .
- the key 10 passes through the bore 29 ( FIG. 13 ) of the bushing 30 to engage the work end 11 of the shaft 32 .
- the indicator shaft 43 could be shortened or lengthened such that less or more could extend form the frame 1 when the key 10 biases the shaft 32 in the direction “B”, FIG. 6 .
- While this particular embodiment shows a key 10 having a key end 28 matching a work end 11 , other matching configurations are anticipated. Other common keys could be used with matching shaft 32 work end 11 such as a handcuff key or common key. Any other type of key devices known in the art could be utilized.
- the trigger 4 cannot move past the shaft 32 , or the weapon is in the no-fire position. If the authorized user biases the shaft 32 to the position shown in FIG. 6 , the trigger 4 will not operate.
- the shaft 32 is depressed with key 10 , the authorized user rotates the key 10 , the shaft 32 turns from the fire position shown by color indicator 7 of FIG. 3 and position of shaft 32 , FIG. 5 , to the no-fire position shown by color indicator 7 of FIG. 2 and position of shaft 32 , FIGS. 7 ;
- the shaft 32 can be turned in either the clockwise or counter clockwise direction to either the fire or no-fire position.
- the bushing ears 14 would ride along contact surface 12 until the bushing ears 14 engaged the shaft cavities 15 of shaft 32 , FIGS. 7, 8 . At this point the spring 16 biases the shaft 32 such that the bushing ears 14 are engaged within the shaft cavities 15 and the trigger lock 36 is in the no-fire position FIG. 7 .
- the bushing ears 14 are on opposite sides of the bore 29 best shown in FIGS. 13, 14 .
- the shaft 32 will prevent the trigger 4 from firing.
- the trigger 4 can only be fired if the shaft 32 is in the proper orientation with respect to the trigger 4 and the bushing ears 14 are engaged within the cavities 15 . This provides for the greatest number of no-fire positions, or once the authorized user inserts the key, all translation and rotation of the key results in the trigger lock 36 being in the no-fire position. There is only one angular position where the trigger lock 36 will allow the weapon to fire.
- FIGS. 8, 10 & 11 less material could be removed from the shaft 32 .
- the orientation of the shaft 32 to the trigger 4 could be adjusted such that a small portion of the shaft 32 could be removed requiring a very specific orientation of the shaft 32 relative to the trigger 4 to allow the trigger 4 to fire. This would provide for a larger no-fire rotational orientation of the shaft 32 resulting in the trigger 4 being in a no-fire position and a smaller rotational orientation of the shaft 32 resulting in the trigger 4 being in a fire position.
- FIG. 7 The location of the cutout 60 ( FIG. 7 ) of the shaft 32 could also be angularly adjusted relative to the location of the bushing ears 14 and corresponding shaft cavities 15 . This provides for many different possible angular combinations of the shaft 32 , bushing ears 14 and cavities 15 , to put the trigger lock 36 into a fire position from a no-fire position and vice-versa.
- the spring 16 is inserted over the indicator shaft 43 .
- the shaft 32 is then inserted into the frame 1 from the right hand side such that the spring 16 engages the shoulder 45 , FIG. 8 , near shaft end bore 27 .
- the bushing 30 is then inserted in the right side and aligned in the hole and pressed into the frame 1 such that the flat side 18 abuts shoulder 41 .
- the serrations 19 on bushing 30 engage the frame 1 and discourage the removal of the bushing 30 and other elements from the frame 1 .
- FIGS. 15 & 16 Another embodiment of the trigger lock 36 is shown in FIGS. 15 & 16 .
- a thumb lever 50 is attached to the rod 56 of the shaft 32 with a pin 54 or other attachment method.
- the lever 50 and the shaft 32 can be reversed for the right hand or left hand user.
- FIG. 15 shows the lever 50 positioned on the left side of the handgun 34 for the right handed user.
- the shaft 32 rotates relative to the frame 1 when the user engages the thumb pad 52 on the end of thumb lever 50 .
- Rotating the thumb lever 50 causes the shaft 32 and cutout 60 to rotate In one position of the thumb lever 50 and thumb pad 52 , as shown in FIG. 15 , the trigger 4 and 10 triggering linkage 9 can clear the cutout 60 when the trigger 4 is pulled. In this position, the trigger will operate.
- Rotating the thumb lever 50 towards the butt end of the handgun 34 causes the shaft 32 to rotate such that cutout 60 is positioned where the trigger 4 and triggering linkage 9 cannot move and engage the shaft 32 .
- the handgun 34 is in the no-fire, or no-operation position.
- a first end 62 can likewise be on the shaft 32 and visible on the weapon on the side opposite the thumb lever 50 , or contained within the frame 1 .
- the spring 16 can be used to retain the trigger lock 36 in the frame.
- the sleeve 114 is inserted into the hole 112 of the frame 110 from the outside, with a lip 116 engaging the outside of frame 110 .
- the sleeve 114 is held in the frame with a C-ring 118 that is inserted from the inside of the frame 110 .
- the C-ring 118 rests in a recessed portion 120 of the sleeve 114 to prevent the sleeve from being removed from the frame. While a C-ring is illustrated, other methods and structures to prevent the removal of the sleeve from the frame 110 fall within the scope of the invention. This arrangement prevents the sleeve 114 and/or the trigger locking shaft 102 from being externally or easily removed from the frame 110 of the device.
- the sleeve 114 has an opening 122 to receive the second extension 106 of the trigger locking shaft 102 .
- the sleeve 114 also has a ball 124 that is seated in a groove 126 and the ball 124 engages a corresponding groove 128 in the opening 112 of the frame 110 to prevent rotation of the sleeve relative to the frame, thereby defeating the trigger lock 100 . See FIGS. 17 c & d. Again, while a ball and two grooves are illustrated, a tab on the sleeve to engage the frame or, conversely, a tab on the frame to engage an opening in the sleeve could also be used to prevent rotation of the sleeve.
- the trigger locking shaft 102 also has a cutout portion 102 a located between the two extensions 104 , 106 .
- the cutout portion 102 a comprises about half of the center section 102 b of the trigger locking shaft 102 .
- the cutout portion 102 a may be larger or smaller relative to the center section 102 b of the trigger locking shaft 102 .
- FIG. 19 a illustrates only a trigger 150 and the trigger locking shaft 102 .
- the trigger 150 could be mounted in any type of device that uses a trigger and it would be prudent to lock the trigger so that the device does not operate unintentionally and prevents unauthorized use.
- the device could be a firearm, a weapon, a drill, an electric screw driver, a nail gun, etc.
- the trigger 150 as with the trigger 142 , has a trigger portion 152 to either engage or not engage the trigger lock.
- Trigger portion 152 may be integral with the trigger 150 and be any portion of the trigger 150 as originally manufactured that could engage the trigger lock. However, the trigger 150 may need to have a trigger portion 152 added that would engage the trigger lock 100 , especially if the trigger lock is added later.
- trigger portion 152 has a shape corresponding to the rounded outer surface of the trigger locking shaft 102 , it can be of any appropriate shape.
- the trigger 150 and trigger portion 152 are disposed behind the trigger locking shaft 102 .
- the trigger locking shaft 102 is rotated to a first position so that the cutout portion 102 a is positioned nearest to the trigger 150 .
- the trigger 150 and (more particularly) trigger portion 152 moves in the direction indicated by arrow A and is able to pass through the cutout portion 102 a.
- the trigger 150 and trigger portion 152 need not pass all the way through the cutout portion 102 a.
- FIG. 19 d illustrates the trigger lock 100 in a second position by rotating the trigger locking shaft 102 so that the trigger locking shaft 102 prevents the trigger 150 from moving due to interference of the trigger locking shaft 102 with the trigger 150 .
- the plate 180 also has a hole through which the first extension 164 passes. Rather than having plate 180 provide the depressions 184 , 186 , the depressions could be formed in the frame 182 itself, eliminating the need for the plate 180 .
- cutout portion 168 fits entirely between the sides of the frame 182 in this embodiment.
- the cutout portion 168 could be smaller relative to the opening between the sides of the frame 182 as in the previous embodiment.
- the extensions 202 , 204 are relatively narrow to cooperate with features on the sleeve 194 to make rotating the trigger locking shaft 162 difficult, if not impossible, without the key 192 .
- the sleeve 194 has an opening that corresponds to the outline of the key 192 as illustrated in FIG. 20 b. See also FIG. 20 d.
- the sleeve 194 has a cylindrical outer portion 206 and two partial inner cylindrical portions 208 , 210 , with an opening therebetween to allow the extensions of the key to engage the holes 188 , 190 of the trigger locking shaft 162 .
- the sleeve 194 would preferably have a feature that would prevent it from being rotated in the frame 182 .
- the sleeve 194 may have a tab 212 to prevent rotation.
- the outer configuration of the sleeve may also have a shape that prevents rotation (i.e., square, rectangular, oval, polygonal, etc.).
- FIG. 21 Another embodiment of a trigger lock is illustrated in FIG. 21 .
- the trigger lock 220 is similar to the trigger lock 160 discussed above, but has different components in the shaft opening 222 . It should be noted that the trigger lock 220 operates in the same manner and with the same key 192 . In this embodiment, however, instead of two detents, there is only one detent 224 and then a plug 226 on either end of a spring 228 .
- the plug 226 is illustrated as having a larger portion in the shaft opening 222 and then a smaller portion in the opening 230 . As with the previous embodiment, the plug 226 provides a surface against which the spring 228 can push and provide force for the detent 224 to engage the depressions 232 , 234 in the plate 236 .
- New trigger lock 260 is illustrated in FIGS. 23 a and 23 b.
- the trigger lock 260 has a trigger locking shaft 262 with a shaft opening 264 that extends only partially into the trigger locking shaft 262 .
- the shaft opening 264 has a spring 266 that engages the closed end 268 of the shaft opening 264 and detent 270 .
- the end of trigger locking shaft 262 has an extension 278 that preferably has a unique configuration for a key to turn the trigger locking shaft 262 .
- the extension 278 has a hexagonal shape to match with a key that has a hexagonal opening.
- the detent 270 engages the sleeve 280 . As best seen in FIG.
- the sleeve 280 has a rear wall portion 282 in which there are two openings 284 , 286 and the detent engages the openings, but does not pass through the openings.
- the detent 270 has a spherical end face 272 , that when pushed by a flat end of a key that engages the extension 278 , will slip through the opening 284 and behind the rear wall portion 282 , allowing the trigger locking shaft 262 to rotate. The operator continues to rotate the trigger locking shaft 262 until the detent 272 engages the other opening 286 .
- the sleeve 280 illustrated in FIG. 23 b, preferably has a configuration that prevents it from being rotated in the device.
- the sleeve 280 has a tab 288 that engages the device to prevent the sleeve 280 from rotating with the trigger locking shaft 262 .
- the outside configuration of sleeve 280 can be different from circular. It may be square, rectangular, oval, or multi-sided (hexagonal, octagonal, etc.).
- the second extension is also located in a cavity 300 at the end of the trigger locking shaft 290 .
- the cavity is preferably lined with teeth 302 .
- the teeth 302 cooperate with the teeth 304 on the a 306 .
- the key 306 can be used in conjunction with a sleeve (not shown) to align the teeth 304 on the key 306 with the teeth 302 on the trigger locking shaft 290 . When the key 306 is rotated, then the trigger locking shaft 290 will also rotate within the device.
- the trigger locking shaft 290 may also have any of the features of the trigger locks noted above.
- the trigger locking shaft 290 could have a shaft opening adjacent to the first extension 296 that has a detent and spring to prevent unintentional movement of the trigger locking shaft 290 during use.
- the detent could engage depressions similar to the depressions 232 , 234 in trigger lock 220 .
- the trigger locking shaft 310 is rotated about the axis R, and since axis R is off center from the central axis C, the trigger locking shaft 310 itself will move into and out of the path of the trigger 316 as illustrated in FIG. 25 b.
- the trigger locking shaft 310 In the left side of FIG. 25 b, the trigger locking shaft 310 is in a first position that is out of the way of the trigger 316 and its path to move as illustrated by the arrow F.
- the movement of the trigger 316 is illustrated by the arrows T, and the movement of the trigger locking shaft 310 is illustrated by the arrows S.
- the movement of trigger 316 is less than the movement of the trigger locking shaft 310 when it is rotated about axis R.
- the trigger locking shaft 310 when the trigger locking shaft 310 is in the first position (left side of FIG. 25 b ), it is out of the way of trigger 316 . However, in the second position (right side of FIG. 25 b ), due to the rotation about axis R, the trigger locking shaft 310 moves into the path of trigger 316 , preventing the trigger 316 from moving and operating the device.
- FIGS. 26 a - c Another embodiment of the trigger locking shaft according to the present invention is illustrated in FIGS. 26 a - c.
- the trigger locking shaft 320 has a first extension 322 and a second extension 324 as with the prior embodiments.
- the trigger locking shaft 320 does not move relative to the device, but rather a locking pin 326 moves up and down. Therefore, a sleeve is not needed with this embodiment.
- the locking pin 326 When the locking pin 326 is in the up position, it interferes with the trigger and prevents it from moving.
- the locking pin 326 When the locking pin 326 is in the down position, it moves out of the way and allows the trigger to move.
- the locking pin 326 is moved with a key that can be inserted into the opening 328 on the second extension 324 .
- the mechanism to move the locking pin 326 is not critical to the embodiment and can be devised in any number of ways. This embodiment, as well as all of the embodiments, is preferably positioned in the devices
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- Lock And Its Accessories (AREA)
Abstract
A system and method are disclosed for locking a trigger in a device that uses a trigger to operate. The trigger lock includes a locking shaft and extensions that extend into the device. The trigger lock includes a visible locking indicator. The locking shaft may either rotate or include a locking pin mounted in the locking shaft. A detent is also provided to prevent the locking shaft from inadvertently rotation.
Description
- This application is a continuation-in-part application of U.S. Pat. No. 6,851,213, still pending, which is a divisional application of U.S. Pat. No. 6,629,379.
- The present invention relates to a system and method for locking a trigger in a device that uses a trigger to operate. The trigger lock according to the present invention is preferably disposed in a position forward of the trigger and prevents the trigger from moving, thereby rendering the device inoperable.
- There are many ways to prevent a trigger from being moved in the prior art. For example, there are devices that can be attached externally to the trigger to prevent a person from gaining access to the trigger. There are also internal trigger locks that block the trigger from moving. See, e.g., U.S. Pat. No. 6,629,379, to Doiron. However, those internal locks are typically mounted behind the trigger to block the trigger from moving rearwardly. Typically, the space behind the trigger is relatively confined, making it difficult to design a trigger lock that can be installed, especially after the manufacture of the device. This is especially true with firearms. Other prior art locking mechanisms prevent the firing pin from moving, but may allow the trigger to operate. Again, these locking mechanisms cannot be added and are usually rather complex in design to fit within the device.
- Accordingly, the present invention is directed to a system and method for locking a trigger in a device that substantially obviates one or more of the problems and disadvantages in the prior art. Additional features and advantages of the invention will be set forth in the description that follows, and in part will be apparent from the description, or may be learned by practice of the invention. The objectives and other advantages of the invention will be realized and attained by the apparatus and process particularly pointed out in the written description and claims, as well as the appended drawings.
- To achieve these and other advantages and in accordance with the purpose of the invention as embodied and broadly described herein, the invention is directed to a trigger lock mounted in a device having a trigger that includes a trigger locking shaft, the trigger locking shaft having a first extension to extend through a first side of the device, a second extension to extend through a second side of the device, and a sleeve mounted in the second side of the device to receive the second extension of the trigger locking shaft, wherein the trigger locking shaft is mounted on a forward side of the trigger to allow the trigger to move when the trigger locking shaft is in a first position and to prevent the trigger from moving when the trigger locking shaft is in a second position.
- In another aspect, the invention is directed to a trigger lock mounted in a device having a trigger that includes a trigger locking shaft, the trigger locking shaft having a first extension to extend through a first side of the device, a second extension to extend through a second side of the device, and a locking pin mounted in the trigger locking shaft, the locking pin movable between a first position and a second position, the trigger locking shaft mounted in the device such that the locking pin is mounted on a forward side of the trigger to allow the trigger to move when the locking pin is in a first position and to prevent the trigger from moving when the locking pin is in a second position.
- In another aspect, the invention provides A trigger lock mounted in a device having a trigger that includes a trigger locking shaft, the trigger locking shaft having a cutout portion, a first extension on one end of the trigger locking shaft to extend through a first side of the device, and a second extension on another end of the trigger locking shaft to extend through a second side of the device, wherein trigger locking shaft is mounted on a forward side of the trigger to allow the trigger to move when the trigger locking shaft is in a first position and to engage the trigger to prevent the trigger from moving when the trigger locking shaft is in a second position.
- In yet another aspect, the invention provides for a method for locking and unlocking a trigger in a device that includes the steps of providing a trigger locking shaft having a first extension to extend through a first side of the device, a second extension to extend through a second side of the device, and a cutout portion between the first and second extensions, the trigger locking shaft being mounted in a position forward of the trigger, positioning the trigger shaft in a first position, the first position allowing at least a portion of the trigger to pass into the cutout portion of the trigger locking shaft to unlock the device, and positioning the trigger shaft in a second position, the second position preventing the trigger from past a forward portion of the trigger locking shaft to lock the device.
- It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory and are intended to provide further explanation of the invention as claimed.
- The accompanying drawings are included to provide a further understanding of the invention and are incorporated in and constitute a part of the specification. The drawings illustrate several embodiments of the invention and together with the description serve to explain the principles of the invention.
-
FIG. 1 shows a left side view of a handgun with one embodiment of the invention showing one location of the device; -
FIG. 2 shows a detailed view of one embodiment of the invention with the trigger lock in the no-fire position; -
FIG. 3 shows a detailed view of one embodiment of the invention with the trigger lock in the fire position; -
FIG. 4 shows a right side view of a handgun with one embodiment of the invention showing one location of the trigger lock device; -
FIG. 5 shows a partial cross section generally shown along A-A inFIG. 9 , with the trigger lock device in the fire position; -
FIG. 6 shows a partial cross section generally shown along A-A inFIG. 9 , with the key inserted and the trigger lock device in the no-fire position; -
FIG. 7 shows partial cross section along A-A inFIG. 9 with the trigger lock device in the no-fire position; -
FIG. 8 shows an exploded view of elements of the trigger lock shown in partial cross section A-A fromFIG. 9 ; -
FIG. 9 shows a partial cross section view of the left hand side of the weapon showing the relative arrangement of elements of one embodiment of the invention and the trigger lock device in the no- fire position; -
FIG. 10 shows partial cross section view of the left hand side the weapon showing the relative arrangement of elements of one embodiment of the invention and the trigger lock device in the fire position; -
FIG. 11 shows partial cross section view of the left hand side of the weapon showing arrangement of elements of one embodiment of the invention with the trigger depressed and the trigger lock device in the fire position; -
FIG. 12 shows a side detailed view of one embodiment of the bushing of the present invention; -
FIG. 13 shows one embodiment of the work end of the shaft assembled with the bushing; -
FIG. 14 shows a perspective view of one embodiment of the bushing; -
FIG. 15 shows a side view of one embodiment of a handgun with a thumb lever; -
FIG. 16 shows a partial cross section generally shown along A-A of a second embodiment of the invention with a thumb lever; -
FIG. 17 a shows another embodiment of a trigger lock according to the present invention; -
FIG. 17 b shows a portion of the trigger lock ofFIG. 17 a; -
FIG. 17 c shows a portion of a frame into which the trigger lock ofFIG. 17 would be installed; -
FIG. 17 d shows a top view of a sleeve to be used with the trigger lock ofFIG. 17 a; -
FIG. 17 e is a side view of a portion of the trigger lock ofFIG. 17 a; -
FIG. 18 is a partial view of a device with a trigger locking shaft in place in front of a trigger; -
FIGS. 19 a-d illustrate the positioning of a trigger locking shaft relative to a trigger according to one embodiment of the present invention; -
FIG. 20 a illustrates another embodiment of a trigger lock according to the present invention installed in a frame of a device; -
FIG. 20 b is a front view of one embodiment of a key to be used with the trigger lock ofFIG. 20 a; -
FIG. 20 c is a side view of the key ofFIG. 20 b; -
FIG. 20 d is a partial side view of the trigger lock ofFIG. 20 a in a frame of a device; -
FIG. 21 illustrates another embodiment of a trigger lock according to the present invention installed in a frame of a device; -
FIG. 22 illustrates another embodiment of a trigger lock according to the present invention installed in a frame of a device; -
FIG. 23 a illustrates another embodiment of a trigger lock according to the present invention installed in a frame of a device; -
FIG. 23 b is a side view of the trigger lock ofFIG. 23 a; -
FIG. 24 a is a plan view of another embodiment of a trigger locking shaft according to the present invention; -
FIG. 24 b is an end view of the trigger locking shaft ofFIG. 24 a; -
FIG. 24 c is an end view of the other end of the trigger locking shaft ofFIG. 24 a; -
FIG. 25 a is a plan view of another embodiment of a trigger locking shaft according to the present invention; -
FIG. 25 b is a schematic view of the trigger locking shaft ofFIG. 25 a illustrating the movement of the trigger locking shaft; -
FIG. 26 a is a side view of another embodiment of a trigger locking shaft according to the present invention; -
FIG. 26 b is a top view of the trigger locking shaft ofFIG. 26 a; and -
FIG. 26 c is an end view of the right end of the trigger locking shaft ofFIG. 26 a. - Referring to the drawings in detail wherein like elements are indicated by like numerals, there is shown in
FIG. 1 a left side view of ahandgun 34 and recessedcavity 5 containing anindicator shaft 43 andcolor indicator 7,FIG. 2 , of atrigger lock 36,FIG. 8 . Also visible inFIG. 1 isslide 2,trigger guard 3,ammo magazine 24, andmagazine lock 25. Thecolor indicator 7 indicates that the trigger lock is in the fire position.FIG. 2 shows a detailed view of the left side ofhandgun 34 with theshaft end 6 andcolor indicator 7 of thetrigger lock 36,FIG. 8 . In this figure thefire indicator 7 is in the no-fire position. -
FIG. 4 shows the right hand side ofhandgun 34, thebushing 30 and work end 11 of the shaft 32 (not shown).FIG. 3 shows a detailed left side partial cutaway ofhandgun 34indicator shaft 43 ofshaft 32 and thecolor indicator 7 in the fire position. -
FIG. 5 shows a cutaway view along A-A inFIG. 9 of thetrigger lock 36,FIG. 8 , and related elements with thetrigger lock 36 in the fire position. InFIG. 5 , thetrigger 4 could rotate away from trigger force 21 (FIG. 10 ) movingtrigger linkage 9 in the direction of trigger rotation 22,FIG. 10 , andtrigger 4 would rotate aroundcross pin 8 to fire the weapon.FIG. 9 shows the triggeringlinkage pivot pin 20 and an arrow showing direction ofrotation 23 of theshaft 32. - The key 10 (
FIG. 5 ) is used to engage the work end 11 of theshaft 32. The key 10 passes through the bore 29 (FIG. 13 ) of thebushing 30 to engage the work end 11 of theshaft 32. When the key 10 engages thework end 11 in direction “B”,FIG. 5 , this compressesspring 16 and thecolor indicator 7 andindicator shaft 43 can extend from theframe 1,FIG. 6 . Theindicator shaft 43 could be shortened or lengthened such that less or more could extend form theframe 1 when the key 10 biases theshaft 32 in the direction “B”,FIG. 6 . - While this particular embodiment shows a key 10 having a
key end 28 matching awork end 11, other matching configurations are anticipated. Other common keys could be used with matchingshaft 32work end 11 such as a handcuff key or common key. Any other type of key devices known in the art could be utilized. - The
bushing 30 is generally four sided on one end and round on an opposite end and has at least one set ofserrations 19. The remaining sides can be smooth; seeFIG. 14 where the round end is illustrated and has around section 17 with abushing contact surface 13. The serrations are needed to engage theframe 1 which in some embodiments is manufactured from a polymer. Other materials can be used depending on the materials used for theframe 1 in which case, thebushing 30 could utilize other methods of engagement with theframe 1. For example, thebushing 30 could be round all along the length and have threads (not shown) and any other methods of attachment to theframe 1 well known in the art. - Once the key 10 biases the
shaft 32, to the position shown inFIG. 6 , thetrigger 4 cannot move past theshaft 32, or the weapon is in the no-fire position. If the authorized user biases theshaft 32 to the position shown inFIG. 6 , thetrigger 4 will not operate. Once theshaft 32 is depressed with key 10, the authorized user rotates the key 10, theshaft 32 turns from the fire position shown bycolor indicator 7 ofFIG. 3 and position ofshaft 32,FIG. 5 , to the no-fire position shown bycolor indicator 7 ofFIG. 2 and position ofshaft 32,FIGS. 7 ; Theshaft 32 can be turned in either the clockwise or counter clockwise direction to either the fire or no-fire position. - It should be noted that once the
shaft 32 is translated or rotated form the fire position, theweapon trigger 4 is in the no-fire position This continues until theshaft 32 is returned to the position, both angular and linear, shown inFIG. 5 . - Once the
shaft 32 is translated to the position shown inFIG. 6 and rotated a preset amount, the user could release the pressure on the key 10 andshaft 32 would bias to the position such that thebushing ears 14,FIGS. 12, 14 , would contact thecontact surface 12,FIG. 8 . This embodiment shows two bushingears 14,FIG. 14 , approximately 180 degrees apart and twocorresponding shaft cavities 15,FIG. 8 —only one shown. It is to be understood that more orfewer bushing ears 14 and corresponding number ofshaft cavities 15 could be utilized and still fall within the scope of this disclosure. - The
bushing ears 14, would ride alongcontact surface 12 until thebushing ears 14 engaged theshaft cavities 15 ofshaft 32,FIGS. 7, 8 . At this point thespring 16 biases theshaft 32 such that thebushing ears 14 are engaged within theshaft cavities 15 and thetrigger lock 36 is in the no-fire positionFIG. 7 . Thebushing ears 14 are on opposite sides of thebore 29 best shown inFIGS. 13, 14 . - If the user rotates the shaft 32 a preset amount, the
shaft 32 will prevent thetrigger 4 from firing. Thetrigger 4 can only be fired if theshaft 32 is in the proper orientation with respect to thetrigger 4 and thebushing ears 14 are engaged within thecavities 15. This provides for the greatest number of no-fire positions, or once the authorized user inserts the key, all translation and rotation of the key results in thetrigger lock 36 being in the no-fire position. There is only one angular position where thetrigger lock 36 will allow the weapon to fire. - While this embodiment shows a
shaft 32 where approximately one half of the of the shaft is removed to allow thetrigger 4trigger surface 39 to pass and operate,FIGS. 8, 10 & 11, less material could be removed from theshaft 32. In other words, the orientation of theshaft 32 to thetrigger 4 could be adjusted such that a small portion of theshaft 32 could be removed requiring a very specific orientation of theshaft 32 relative to thetrigger 4 to allow thetrigger 4 to fire. This would provide for a larger no-fire rotational orientation of theshaft 32 resulting in thetrigger 4 being in a no-fire position and a smaller rotational orientation of theshaft 32 resulting in thetrigger 4 being in a fire position. Other embodiments of this invention could also utilize a cam (not shown) on thetrigger 4 and a slot (not shown) in theshaft 32 where the weapon would only fire if the cam and slot were aligned and various other methods can be anticipated. The location of the cutout 60 (FIG. 7 ) of theshaft 32 could also be angularly adjusted relative to the location of thebushing ears 14 andcorresponding shaft cavities 15. This provides for many different possible angular combinations of theshaft 32,bushing ears 14 andcavities 15, to put thetrigger lock 36 into a fire position from a no-fire position and vice-versa. - Even if an authorized user were able to obtain the key, they would have to know to bias the
shaft 32 away from thebushing 30 and then rotate theshaft 32 the appropriate angular amount. - They would then have to release the bias on the
shaft 32 such that thebushing ears 14 engage theshaft cavities 15 in the correct orientation of theshaft 32 relative to thetrigger 4, to get thetrigger 4 of thehandgun 34 to operate. - To assemble the
trigger lock 36 in theframe 1 requires that there be holes in the frame. These holes can either be included during the manufacture of theframe 1, or cut in the frame at a later time. Thetrigger lock 36 andspring 16 would be inserted from the right hand side of the weapon,FIG. 8 , into the shaft bore 26 until thespring 16 engages both theretainer 47 and theshoulder 45. It should be noted that thetrigger lock 36 could be inserted from the opposite side of the weapon too by mirror imaging the relating structure, should the user prefer to have it configured in this manner.FIG. 8 shows a square hole terminating atshoulder 41 in theframe 1. This corresponds with theflat side 18 of thebushing 30,FIG. 14 . Thisshoulder 41 prevents thebushing 30 from being inserted too far into theframe 1 and also allows for the proper alignment and operable configuration of thetrigger lock 36 andtrigger 4 and triggersurface 39. - The
spring 16 is inserted over theindicator shaft 43. Theshaft 32 is then inserted into theframe 1 from the right hand side such that thespring 16 engages theshoulder 45,FIG. 8 , near shaft end bore 27. Thebushing 30 is then inserted in the right side and aligned in the hole and pressed into theframe 1 such that theflat side 18 abutsshoulder 41. Theserrations 19 onbushing 30 engage theframe 1 and discourage the removal of thebushing 30 and other elements from theframe 1. - Another embodiment of the
trigger lock 36 is shown inFIGS. 15 & 16 . In this embodiment, athumb lever 50 is attached to therod 56 of theshaft 32 with apin 54 or other attachment method. Thelever 50 and theshaft 32 can be reversed for the right hand or left hand user.FIG. 15 shows thelever 50 positioned on the left side of thehandgun 34 for the right handed user. Theshaft 32 rotates relative to theframe 1 when the user engages thethumb pad 52 on the end ofthumb lever 50. Rotating thethumb lever 50 causes theshaft 32 andcutout 60 to rotate In one position of thethumb lever 50 andthumb pad 52, as shown inFIG. 15 , the 4 and 10 triggeringtrigger linkage 9 can clear thecutout 60 when thetrigger 4 is pulled. In this position, the trigger will operate. Rotating thethumb lever 50 towards the butt end of thehandgun 34, causes theshaft 32 to rotate such thatcutout 60 is positioned where thetrigger 4 and triggeringlinkage 9 cannot move and engage theshaft 32. Thehandgun 34 is in the no-fire, or no-operation position. - A
first end 62 can likewise be on theshaft 32 and visible on the weapon on the side opposite thethumb lever 50, or contained within theframe 1. Thespring 16 can be used to retain thetrigger lock 36 in the frame. - Another embodiment of a
trigger lock 100 is illustrated inFIGS. 17 a-e. Thetrigger lock 100 is to be placed in front of a trigger in a device. Thetrigger lock 100 preferably has atrigger locking shaft 102 with afirst extension 104 on one side and asecond extension 106 on the other side. Thefirst extension 104 is configured to extend through ahole 108 in aframe 110 of a device having a trigger. Thesecond extension 106 extends through ahole 112 offrame 110 and asleeve 114. Thesleeve 114 receives thesecond extension 106 in a friction fit and engages thehole 112 in theframe 110. Thesleeve 114 is inserted into thehole 112 of theframe 110 from the outside, with alip 116 engaging the outside offrame 110. Thesleeve 114 is held in the frame with a C-ring 118 that is inserted from the inside of theframe 110. The C-ring 118 rests in a recessedportion 120 of thesleeve 114 to prevent the sleeve from being removed from the frame. While a C-ring is illustrated, other methods and structures to prevent the removal of the sleeve from theframe 110 fall within the scope of the invention. This arrangement prevents thesleeve 114 and/or thetrigger locking shaft 102 from being externally or easily removed from theframe 110 of the device. - The
sleeve 114 has anopening 122 to receive thesecond extension 106 of thetrigger locking shaft 102. Thesleeve 114 also has aball 124 that is seated in agroove 126 and theball 124 engages acorresponding groove 128 in theopening 112 of theframe 110 to prevent rotation of the sleeve relative to the frame, thereby defeating thetrigger lock 100. SeeFIGS. 17 c & d. Again, while a ball and two grooves are illustrated, a tab on the sleeve to engage the frame or, conversely, a tab on the frame to engage an opening in the sleeve could also be used to prevent rotation of the sleeve. It is also within the scope of the present invention that thehole 112 could be of a shape other than circular (i.e., oval, square, or any other shape) and thesleeve 114 could have a corresponding complementary outer shape to prevent rotation of thesleeve 114 in theframe 110. - As best seen in
FIG. 17 b, thetrigger locking shaft 102 also has acutout portion 102 a located between the two 104,106. As illustrated, theextensions cutout portion 102 a comprises about half of the center section 102 b of thetrigger locking shaft 102. However, thecutout portion 102 a may be larger or smaller relative to the center section 102 b of thetrigger locking shaft 102. - The
first extension 104 has an end with anindicator 130 that indicates the position of thetrigger lock 100.Indicator 130 is preferably divided into least two 132,134. Each of the twoportions 132,134 preferably has indicia that will indicate to the operator or user of the device the position theportions trigger lock 100. For example, theindicator 130 may haveportion 132 with a red color to indicate that the trigger may be operated andportion 132 may have a green color to indicate that the trigger or device is not operable. There may also be other indicia, including, for example, numbers, symbols, letters, colors, etc., to indicate the position of thetrigger lock 100. - A side view of the
trigger lock 100 is illustrated inFIG. 18 in adevice 140. As can be seen in this partial cross sectional view, thetrigger locking shaft 102 is positioned in front oftrigger 142. Aportion 144 of thetrigger 142, whentrigger 142 rotates aroundpivot point 146, will either pass by thetrigger lock 100 or engage thetrigger lock 100. This is shown in more detail inFIGS. 19 a-d. -
FIG. 19 a illustrates only atrigger 150 and thetrigger locking shaft 102. Thetrigger 150 could be mounted in any type of device that uses a trigger and it would be prudent to lock the trigger so that the device does not operate unintentionally and prevents unauthorized use. For example, the device could be a firearm, a weapon, a drill, an electric screw driver, a nail gun, etc. Thetrigger 150, as with thetrigger 142, has atrigger portion 152 to either engage or not engage the trigger lock.Trigger portion 152 may be integral with thetrigger 150 and be any portion of thetrigger 150 as originally manufactured that could engage the trigger lock. However, thetrigger 150 may need to have atrigger portion 152 added that would engage thetrigger lock 100, especially if the trigger lock is added later. It should also be noted that whiletrigger portion 152 has a shape corresponding to the rounded outer surface of thetrigger locking shaft 102, it can be of any appropriate shape. As illustrated inFIG. 19 a, thetrigger 150 andtrigger portion 152 are disposed behind thetrigger locking shaft 102. InFIGS. 19 a-c, thetrigger locking shaft 102 is rotated to a first position so that thecutout portion 102 a is positioned nearest to thetrigger 150. In this first position, as best seen inFIG. 19 b, thetrigger 150 and (more particularly)trigger portion 152 moves in the direction indicated by arrow A and is able to pass through thecutout portion 102 a. Thetrigger 150 andtrigger portion 152 need not pass all the way through thecutout portion 102 a. It only needs to move far enough into or through thecutout portion 102 a to allow the device to be operated. Then as illustrated inFIG. 19 c, the trigger moves in the direction of arrow B and back into the normal position.FIG. 19 d illustrates thetrigger lock 100 in a second position by rotating thetrigger locking shaft 102 so that thetrigger locking shaft 102 prevents thetrigger 150 from moving due to interference of thetrigger locking shaft 102 with thetrigger 150. - The
trigger locking shaft 102 is preferably rotated by a key that mates with an end portion of thesecond extension 106. For the present invention, the make up of the key or the configuration of the key and the end portion of the second extension is not critical. The shape of the key and the end portion should be relatively uncommon so that it is more difficult to rotate thetrigger locking shaft 102. For example, it would not be wise for a single slot to be use so that a screw driver could be used to rotate the lock. - Another embodiment of a trigger lock is illustrated in
FIG. 20 a. Thetrigger lock 160 also has atrigger locking shaft 162, as with the previous embodiment. Thetrigger locking shaft 162 also has afirst extension 164 and asecond extension 166. Acutout portion 168 is similar to the cutout portion of the previous embodiment. Thetrigger lock 160 is also installed in a frame 170 of a device, also as with the previous embodiment and in a position in front of the trigger. - Trigger locking
shaft 162 also has ashaft opening 172 that passes through thetrigger locking shaft 162 in this embodiment. Theshaft opening 172 has an axis S that is parallel to but apart from the axis of rotation R of thetrigger locking shaft 162. Two 174,176 are disposed in thedetents shaft opening 172 and separated by aspring 178. Thedetent 174 engages aplate 180 placed inside theframe 182. Theplate 180 also has two 184,186 or cavities, grooves, or any other appropriate structure, into which thedepressions detent 174 is urged by thespring 178. The 184,186 correspond to locations when thedepressions trigger lock 160 allows the trigger to move or does not allow the trigger to move (first and second positions, respectively). This arrangement prevents thetrigger locking shaft 162 from rotating inadvertently during use of the device. Theplate 180 also has a hole through which thefirst extension 164 passes. Rather than havingplate 180 provide the 184,186, the depressions could be formed in thedepressions frame 182 itself, eliminating the need for theplate 180. - It should be noted that the
cutout portion 168 fits entirely between the sides of theframe 182 in this embodiment. However, thecutout portion 168 could be smaller relative to the opening between the sides of theframe 182 as in the previous embodiment. - On the end of the
trigger locking shaft 162 with thesecond extension 166, there are two 188,190. One of theholes holes 188 corresponds to one end of theshaft opening 172. Theother hole 190 is used in conjunction withhole 188 and a key 192 used to rotate thetrigger locking shaft 162. Thetrigger lock 160 also includes asleeve 194 that can be secured into theframe 182 of the device, to prevent the trigger locking shaft from being rotated without the key 192. - It should be noted that other than the
detent 174 cooperating with the 184,186, the trigger locking sleeve is positioned into thedepressions frame 182 with an interference fit. Therefore, the turning of the trigger locking sleeve is protected with thesleeve 194 and the key 192. The key 192 is illustrated inFIGS. 20 b and 20 c. As can be seen best inFIG. 20 c, the key 192 has anenlarged end portion 196 to allow a person to grasp and rotate it. The key 192 has ashaft 198, which has anopening 200 to allow thesecond extension 166 to fit therein. The key also has two 202,204 to engage theextensions 188,190 in theopenings trigger locking shaft 162. However, the 202,204 are relatively narrow to cooperate with features on theextensions sleeve 194 to make rotating thetrigger locking shaft 162 difficult, if not impossible, without the key 192. Thesleeve 194 has an opening that corresponds to the outline of the key 192 as illustrated inFIG. 20 b. See alsoFIG. 20 d. Thesleeve 194 has a cylindrical outer portion 206 and two partial inner 208,210, with an opening therebetween to allow the extensions of the key to engage thecylindrical portions 188,190 of theholes trigger locking shaft 162. The two partial inner 208,210 extend only partially from the outward side of thecylindrical portions sleeve 194 toward thetrigger locking shaft 162, creating achamber 212. When the key 192 is inserted into thesleeve 194, the 202,204 engage theextensions 188,190 and thehole opening 200 ofshaft 198 slides oversecond extension 166. When the key 194 is turned to rotate thetrigger locking shaft 162, the 202,204 are behind the two partial innerextensions 208,210 and the key may rotate freely incylindrical portions chamber 212 to turn the trigger locking shaft 162 (apart from the fiction fit and the detents/depressions). However, if a person were to try and turn thetrigger locking shaft 162 with two straight pins, for example, the two partial inner 208,210 would prevent thecylindrical portions trigger locking shaft 162 from rotating as they would be in the way. - As mentioned above with respect to the previous embodiment, the
sleeve 194 would preferably have a feature that would prevent it from being rotated in theframe 182. As illustrated in the front view of thesleeve 194 mounted in theframe 182 inFIG. 20 d, thesleeve 194 may have atab 212 to prevent rotation. Similarly, the outer configuration of the sleeve may also have a shape that prevents rotation (i.e., square, rectangular, oval, polygonal, etc.). - Another embodiment of a trigger lock is illustrated in
FIG. 21 . Thetrigger lock 220 is similar to thetrigger lock 160 discussed above, but has different components in theshaft opening 222. It should be noted that thetrigger lock 220 operates in the same manner and with thesame key 192. In this embodiment, however, instead of two detents, there is only onedetent 224 and then aplug 226 on either end of aspring 228. Theplug 226 is illustrated as having a larger portion in theshaft opening 222 and then a smaller portion in theopening 230. As with the previous embodiment, theplug 226 provides a surface against which thespring 228 can push and provide force for thedetent 224 to engage the 232,234 in thedepressions plate 236. -
Trigger lock 240 is illustrated inFIG. 22 , and is quite similar to the two previous embodiments. The difference withtrigger lock 240 is that theshaft opening 242 has only onedetent 244 and aspring 246. Thespring 246 abuts against aninside portion 248 of theshaft opening 242. The key 192 would still work withtrigger lock 240 in the same manner as above. -
New trigger lock 260 is illustrated inFIGS. 23 a and 23 b. Thetrigger lock 260 has atrigger locking shaft 262 with ashaft opening 264 that extends only partially into thetrigger locking shaft 262. Theshaft opening 264 has aspring 266 that engages theclosed end 268 of theshaft opening 264 anddetent 270. The end oftrigger locking shaft 262 has anextension 278 that preferably has a unique configuration for a key to turn thetrigger locking shaft 262. In the present embodiment, theextension 278 has a hexagonal shape to match with a key that has a hexagonal opening. Intrigger lock 260, thedetent 270 engages thesleeve 280. As best seen inFIG. 23 b, thesleeve 280 has arear wall portion 282 in which there are two 284,286 and the detent engages the openings, but does not pass through the openings. Theopenings detent 270 has aspherical end face 272, that when pushed by a flat end of a key that engages theextension 278, will slip through theopening 284 and behind therear wall portion 282, allowing thetrigger locking shaft 262 to rotate. The operator continues to rotate thetrigger locking shaft 262 until thedetent 272 engages theother opening 286. - The
sleeve 280, illustrated inFIG. 23 b, preferably has a configuration that prevents it from being rotated in the device. In this embodiment, thesleeve 280 has atab 288 that engages the device to prevent thesleeve 280 from rotating with thetrigger locking shaft 262. However, the outside configuration ofsleeve 280 can be different from circular. It may be square, rectangular, oval, or multi-sided (hexagonal, octagonal, etc.). - Another embodiment of a trigger locking shaft that can be used with the trigger locks discussed above is illustrated in
FIGS. 24 a-c. Thetrigger locking shaft 290 has acentral portion 292 with acutout portion 294 that is not as deep or as wide as in the previous embodiments. However, thecutout portion 294 could be either deeper or wider that the illustration inFIG. 24 a or both. Thetrigger locking shaft 290 has afirst extension 296 as with the other embodiments. While not illustrated, thefirst extension 296 may have indicia to indicate a status of thetrigger locking shaft 290, either locked or unlocked. Thetrigger locking shaft 290 also has asecond extension 298 at the other end, but it is illustrated as being smaller than the previous embodiments. The second extension is also located in acavity 300 at the end of thetrigger locking shaft 290. The cavity is preferably lined withteeth 302. Theteeth 302 cooperate with theteeth 304 on the a 306. The key 306 can be used in conjunction with a sleeve (not shown) to align theteeth 304 on the key 306 with theteeth 302 on thetrigger locking shaft 290. When the key 306 is rotated, then thetrigger locking shaft 290 will also rotate within the device. - It should be noted that the
trigger locking shaft 290 may also have any of the features of the trigger locks noted above. For example, thetrigger locking shaft 290 could have a shaft opening adjacent to thefirst extension 296 that has a detent and spring to prevent unintentional movement of thetrigger locking shaft 290 during use. The detent could engage depressions similar to the 232,234 indepressions trigger lock 220. - Another embodiment of a trigger locking shaft according to the present invention is illustrated in
FIGS. 25 a and 25 b. Thetrigger locking shaft 310 has afirst extension 312 and asecond extension 314 as with the prior embodiments. It should be noted that all of the extensions may be integral with the trigger locking shafts or be attached to the trigger locking shafts by an appropriate process. It should also be noted that thetrigger locking shaft 310 has a central axis C and that the 312,314 are aligned on an axis R, which is also the axis of rotation for theextensions trigger locking shaft 310. The rotational axis R is parallel to but disposed away from the central axis C. Thetrigger locking shaft 310 can be rotated with thesecond extension 314 about the rotational axis R with any of the previously mentioned keys or methods. - The
trigger locking shaft 310 is rotated about the axis R, and since axis R is off center from the central axis C, thetrigger locking shaft 310 itself will move into and out of the path of thetrigger 316 as illustrated inFIG. 25 b. In the left side ofFIG. 25 b, thetrigger locking shaft 310 is in a first position that is out of the way of thetrigger 316 and its path to move as illustrated by the arrow F. The movement of thetrigger 316 is illustrated by the arrows T, and the movement of thetrigger locking shaft 310 is illustrated by the arrows S. As can be seen in the left side ofFIG. 25 b, the movement oftrigger 316 is less than the movement of thetrigger locking shaft 310 when it is rotated about axis R. So, when thetrigger locking shaft 310 is in the first position (left side ofFIG. 25 b), it is out of the way oftrigger 316. However, in the second position (right side ofFIG. 25 b), due to the rotation about axis R, thetrigger locking shaft 310 moves into the path oftrigger 316, preventing thetrigger 316 from moving and operating the device. - Another embodiment of the trigger locking shaft according to the present invention is illustrated in
FIGS. 26 a-c. Thetrigger locking shaft 320 has afirst extension 322 and asecond extension 324 as with the prior embodiments. In this embodiment, thetrigger locking shaft 320 does not move relative to the device, but rather a lockingpin 326 moves up and down. Therefore, a sleeve is not needed with this embodiment. When thelocking pin 326 is in the up position, it interferes with the trigger and prevents it from moving. When thelocking pin 326 is in the down position, it moves out of the way and allows the trigger to move. Thelocking pin 326 is moved with a key that can be inserted into theopening 328 on thesecond extension 324. The mechanism to move thelocking pin 326 is not critical to the embodiment and can be devised in any number of ways. This embodiment, as well as all of the embodiments, is preferably positioned in the devices in front of the trigger. - It will be apparent to those skilled in the art that various modifications and variations can be made in the trigger lock and methods of the present invention without departing from the spirit or scope of the invention. Thus, it is intended that the present invention cover the modifications and variations of this invention provided they come within the scope of the appended claims and their equivalents.
Claims (20)
1. A trigger lock mounted in a device having a trigger comprising:
a trigger locking shaft, the trigger locking shaft having a first extension to extend through a first side of the device, a second extension to extend through a second side of the device; and
a sleeve mounted in the second side of the device to receive the second extension of the trigger locking shaft,
wherein the trigger locking shaft is mounted on a forward side of the trigger to allow the trigger to move when the trigger locking shaft is in a first position and to prevent the trigger from moving when the trigger locking shaft is in a second position.
2. The trigger lock according to claim 1 , further comprising a locking position indicator associated with the first extension, the locking position indicator visible from the first side of the device and indicating the position of the trigger locking shaft.
3. The trigger lock according to claim 1 , wherein in the second position, the locking shaft engages at least a portion of the front of the trigger when the trigger is pulled.
4. The trigger lock according to claim 1 , further comprising a cutout portion in the trigger locking shaft between the first and second extensions.
5. The trigger lock according to claim 1 , wherein in the second position at least a portion of the trigger passes at least through a portion of the cutout portion of the locking shaft when the trigger is pulled.
6. The trigger lock according to claim 1 , wherein the sleeve is secured in the device by a locking element in an inside portion of the device.
7. The trigger lock according to claim 1 , further comprising an alignment element to prevent the sleeve from rotating relative to the device.
8. The trigger lock according to claim 1 , wherein the locking shaft has an opening therein, the opening having a spring and at least one detent therein to prevent the trigger locking shaft from inadvertent rotation.
9. The trigger lock according to claim 1 , wherein the locking shaft has an opening extending through at least a portion thereof, the opening having a spring and at least one detent therein to prevent the trigger locking shaft from inadvertent rotation.
10. The trigger lock according to claim 9 , wherein the trigger locking shaft has an axis of rotation about which the trigger locking shaft rotates to move between the first and second positions, and wherein the opening is disposed along an axis apart from and parallel to the axis of rotation.
11. The trigger lock according to claim 1 , wherein the trigger locking shaft has a central axis, and a rotational axis parallel to the central axis, the first and second extensions disposed on the rotational axis and the locking shaft rotating around the rotational axis.
12. The trigger lock according to claim 8 , wherein the shaft opening extends through the locking shaft.
13. The trigger lock according to claim 8 , wherein the detent is depressed with a key having at least one extension element, the key having a longitudinal axis therethrough, the extension element being disposed radially outward on the key from the longitudinal axis.
14. The trigger lock according to claim 1 , wherein the trigger locking shaft has a surface configured to mate with a rotating shaft, whereby rotating the rotating shaft will cause the trigger locking shaft to move between the first and second positions.
15. The trigger lock according to claim 14 , wherein the surface configured to mate with the rotating shaft is on one end of the trigger locking shaft.
16. A trigger lock mounted in a device having a trigger comprising:
a trigger locking shaft, the trigger locking shaft having a first extension to extend through a first side of the device, a second extension to extend through a second side of the device; and
a locking pin mounted in the trigger locking shaft, the locking pin movable between a first position and a second position,
the trigger locking shaft mounted in the device such that the locking pin is mounted on a forward side of the trigger to allow the trigger to move when the locking pin is in a first position and to prevent the trigger from moving when the locking pin is in a second position.
17. The trigger lock according to claim 16 , further comprising a locking position indicator associated with the first extension, the locking position indicator visible from the first side of the device and indicating the position of the locking pin.
18. The trigger lock according to claim 16 , wherein in the second position, the locking pin engages at least a portion of the front of the trigger when the trigger is pulled.
19. A trigger lock mounted in a device having a trigger comprising:
a trigger locking shaft, the trigger locking shaft having a cutout portion;
a first extension on one end of the trigger locking shaft to extend through a first side of the device; and
a second extension on another end of the trigger locking shaft to extend through a second side of the device,
wherein trigger locking shaft is mounted on a forward side of the trigger to allow the trigger to move when the trigger locking shaft is in a first position and to engage the trigger to prevent the trigger from moving when the trigger locking shaft is in a second position.
20. A method for locking and unlocking a trigger in a device comprising the steps of:
providing a trigger locking shaft having a first extension to extend through a first side of the device, a second extension to extend through a second side of the device, and a cutout portion between the first and second extensions, the trigger locking shaft being mounted in a position forward of the trigger;
positioning the trigger shaft in a first position, the first position allowing at least a portion of the trigger to pass into the cutout portion of the trigger locking shaft to unlock the device; and
positioning the trigger shaft in a second position, the second position preventing the trigger from past a forward portion of the trigger locking shaft to lock the device.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US11/052,341 US20050188582A1 (en) | 2001-02-14 | 2005-02-07 | Trigger lock |
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US09/783,652 US6629379B1 (en) | 2001-02-14 | 2001-02-14 | Trigger lock |
| US10/662,804 US6851213B1 (en) | 2001-02-14 | 2003-09-15 | Trigger lock |
| US11/052,341 US20050188582A1 (en) | 2001-02-14 | 2005-02-07 | Trigger lock |
Related Parent Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US10/662,804 Continuation-In-Part US6851213B1 (en) | 2001-02-14 | 2003-09-15 | Trigger lock |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US20050188582A1 true US20050188582A1 (en) | 2005-09-01 |
Family
ID=34890611
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US11/052,341 Abandoned US20050188582A1 (en) | 2001-02-14 | 2005-02-07 | Trigger lock |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US20050188582A1 (en) |
Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20080216376A1 (en) * | 2007-03-07 | 2008-09-11 | Dov Pikielny | Lockable safety for firearm |
| US20100083550A1 (en) * | 2008-10-06 | 2010-04-08 | Brenshok Llc | Rifle trigger safety block |
| US20150330736A1 (en) * | 2012-12-18 | 2015-11-19 | Revol Arms Llc | Semiautomatic pistol |
| US20180080731A1 (en) * | 2016-09-22 | 2018-03-22 | Skunk Labs Llc | Firearms Trigger Assembly |
| US20180224231A1 (en) * | 2017-02-06 | 2018-08-09 | Brian Weinberg | Firearm and method for using a firearm |
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-
2005
- 2005-02-07 US US11/052,341 patent/US20050188582A1/en not_active Abandoned
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|---|---|---|---|---|
| US989817A (en) * | 1910-08-27 | 1911-04-18 | Herman F Siegel | Safety-lock for triggers. |
| US1352413A (en) * | 1919-08-18 | 1920-09-07 | Auto Ordnance Corp | Gun |
| US2387669A (en) * | 1943-07-17 | 1945-10-23 | Remington Arms Co Inc | Firearm |
| US2563720A (en) * | 1947-08-26 | 1951-08-07 | Guisasola Bonifacio | Magazine-operated safety for automatic firearms |
| US4004488A (en) * | 1975-04-01 | 1977-01-25 | The United States Of America As Represented By The Secretary Of The Navy | Dual-motion firing device |
| US4300301A (en) * | 1979-05-16 | 1981-11-17 | Morrison Donald C | Rotary action firearm safety assembly operable with finger on the trigger |
| US4754568A (en) * | 1985-10-23 | 1988-07-05 | Brandt Raymond W | Rotating safety mechanism for projectile weapons |
| US5025582A (en) * | 1990-08-20 | 1991-06-25 | Mote Sr Charles R | External safety for handgun |
| US5465517A (en) * | 1993-09-29 | 1995-11-14 | Htm Sport S.P.A. | Safety catch for underwater guns |
| US5465517C1 (en) * | 1993-09-29 | 2001-04-24 | Htm Sport Spa | Safety catch for underwater guns |
| US5903994A (en) * | 1996-11-19 | 1999-05-18 | Tange; Mark L. | Normally-on safety on a pistol, and method of converting a pistol to include a normally-on safety |
Cited By (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20080216376A1 (en) * | 2007-03-07 | 2008-09-11 | Dov Pikielny | Lockable safety for firearm |
| US7726059B2 (en) * | 2007-03-07 | 2010-06-01 | Dov Pikielny | Lockable safety for firearm |
| US20100083550A1 (en) * | 2008-10-06 | 2010-04-08 | Brenshok Llc | Rifle trigger safety block |
| US8186087B2 (en) * | 2008-10-06 | 2012-05-29 | Brenshok Llc | Rifle trigger safety block |
| US20150330736A1 (en) * | 2012-12-18 | 2015-11-19 | Revol Arms Llc | Semiautomatic pistol |
| US20180080731A1 (en) * | 2016-09-22 | 2018-03-22 | Skunk Labs Llc | Firearms Trigger Assembly |
| US11385009B2 (en) * | 2016-09-22 | 2022-07-12 | Daniel Defense, Llc | Firearms trigger assembly |
| US20180224231A1 (en) * | 2017-02-06 | 2018-08-09 | Brian Weinberg | Firearm and method for using a firearm |
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |