US780717A - Coin-controlled vending-machine and fraud-preventing device for same. - Google Patents

Coin-controlled vending-machine and fraud-preventing device for same. Download PDF

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US780717A
US780717A US20717704A US1904207177A US780717A US 780717 A US780717 A US 780717A US 20717704 A US20717704 A US 20717704A US 1904207177 A US1904207177 A US 1904207177A US 780717 A US780717 A US 780717A
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coin
slide
fraud
preventing device
machine
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US20717704A
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Albert D Grover
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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F5/00Coin-actuated mechanisms; Interlocks
    • G07F5/02Coin-actuated mechanisms; Interlocks actuated mechanically by coins, e.g. by a single coin

Definitions

  • rIhe object of my invention is to provide a -mechanism operated through the medium of -a coin the coin-slot of which will automatically lock itself when an attempt is made to operate it by means other than a coin of the proper denomination.
  • Another object of my invention is to obviate the defects in vending-machines'as heretofore constructed, which defects result in the fraudulent removal of goods by tokens other than coins of the proper denomination.
  • Figure 1 represents an inverted plan view of a coin-slide and the cointesting and locking mechanism attached thereto.
  • Fig. 2 is a sectional elevation through line 2 2, Fig. 1, showing the mechanism in position to receive a coin.
  • Fig. 3 is a sectional elevation through line-2 2, showing a false token in the coin-hole and the slide partially pushed in and in position to lock it against further inward movement.
  • Fig. 4 is a partial sectional elevation through line 2 2,
  • Fig. l showing a proper coin in the coinopening, the locking device unlocked, and the slide pushed inwardly to a point where it will veject the goods.
  • Fig. 5 is a sectional elevation through the line 5 5, Fig. 4C.
  • the coin-slide B is the coin-slide, having therein an, opening B' of a proper size to receive a coin of the proper denomination to operate the unlocking device of a vending-machine.
  • the coinslide B has notches B2 on one of its lsides and locking projections. B3 B3 on its other side.
  • the notches B2 are adapted to receive the cogs of the pinion C and rotate it when the coinslide B is moved in or out.
  • the hook Eis normally in contact with a shaft G, which is mounted at one of its ends in a bracket Gr', attached to the coin-slide support A, its other end sliding in a slot in a bracket G2.
  • the shaft G has mounted upon it the sleeve H, to one end of which is secured the pinion C and upon the other end the cointesting segments I and K.
  • the coin-testing Segment I is securely fastened to the sleeve H to rotate therewith and has secured in its inner face a pin I', located so that the extending point of the testing-segment K will contact with it, as shown in Fig. 2.
  • the cointesting segment K is loosely mounted upon the sleeve H in such manner as to revolve easily thereon, its movement in one direction being limited by the pin I' and controlled in the other direction by the spring L. It has a pin K' secured in its inner face, projecting therefrom sufciently to receive the hooked end of the spring L, the other end of said spring L beingsecured to the pinion C. Said spring L holds the segment K normally in contact with the pin I', but permits it to rotate in an opposite direction.
  • M is a post projecting downwardly from the slide-support A and has a slot in it of awidth suicient to receive the locking-hook E. It also has a philister-head screw M', which head projects over the slot suiiiciently to prevent the hook E from flying downwardly out of the slot.
  • M3 is a spring normally holding the hook upwardly in'the position shown in Fig. 3 and in path of the projections B3 B3.
  • B1 is an opening in'one side of the coin-hole B', adapted to receive the point K2 of the testing-segment K when a false token is placed in said coin-opening and the slide moved inward, as shown in Fig. 3, to permit the lever E to move upwardly until the point E is in the path of one of the projections B3 in order to lock the coin-slide against further inward movement to prevent the removal of a package of the goods through the medium of a false token.
  • O represent a portion of a goods-receptacle, and O O represent packages of goods placed therein.
  • a false token is represented as being in the coin-opening in the coin-slide, the coin-slide moved forward until the point E' is in position to lock it, and a package of the goods O partially shoved out, but not out far enough to allow the operator to procure it.
  • the testing action of the segment K is as follows: When a false token is inserted in the coin-hole B and the slide B moved inwardly, the testing-segment K is revolved until the point K2 contacts with said token. If the surface of the token is smooth, or comparatively so, the said point K2 will slide upon it until it passes off the edge into the opening B4. This allows the shaftG to move upwardly to its normal position and the point E' of the hook E to catch on one of the projections B3 and lock the slide B against further inward movement. If the proper token or coin is placed in the coin-hole B' and the slide B moved inwardly, the point K2 will catch upon the raised edge of the coin, as shown in Fig. 4, thereby revolving the testing-finger K, causing it to press the hook E downwardly until the point E' is out of the path of the projections B3, thereby allowing further inward movement of the slide B to eject the goods.
  • a coin-receiving slide In a fraud-preventing device for coinoperated machines, a coin-receiving slide; a spring-controlled segment provided with a point adapted to contact with the flat surface of a coin as the slide is pushed in; and means whereby the contact of the point of the segment with the milled edge of a coin will unlock the slide and permit its free longitudinal movement.
  • a fraud-preventing device comprising a coin-receiving slide provided with a coin-hole; a notch in one side of the coin-hole; a shaft supported adjacent the coin-slide; means for revolving said shaft; a sleeve mounted on said shaft; a testing-finger loosely mounted upon said sleeve; means for controlling the movement of said testing-finger and to permit it to revolve on said sleeve; a spring-pressed locking-hook mounted adjacent said shaft and bearing thereon; and means whereby said testing-finger will cause said spring-pressed hook to lock said slide when a token other than a coin of the proper denomination is inserted in the coin-hole.
  • a fraudpreventing device comprising a spring-controlled segment revolubly mounted on a sleeve, having a singlepointed projection adapted to contact with the under side of al coin placed in the coin-hole in a coin-slide; said coin-slide; means whereby the coin-slide will be locked against inward movement when a token not provided with a milled edge is placed in the coin-hole; said coin-hole; and a notch in the edge thereof.
  • a coin-operated apparatus having a fraud preventing device, a coin receiving slide; a coin-opening therein, and an opening ⁇ running into and adjacent said coin-opening; a spring-pressed segment mounted in the path of said coin-opening provided with a projection adapted to contact with the under side of the coin as the slide is pushed in, said spring-pressed segment being so arranged as to slide upon a comparatively smooth surface, but to catch upon a milled edge of a coin of the proper denomination to permit the slide to be moved freely longitudinally to the full extent of its normal movement.
  • a coin-slide therein normally locked; means for unlocking said coinslide to permit inward movement operated by contact of said means with the projecting milled edge of a coin of the proper denomination.

Description

PATENTED IAN. 2A, 1905.
ADDEDVEE.'v DOIN GDN'IEOLLED VENDING MACHINE AND EEAUD PNEVENTING DEVICE FOR SAME.
APPLICATION FILED MAY 9. 1904.
f NIVEA/TUR WWA/55555.
Patented January 24, 190 T.
PATENT OFFICE. i
ALBERTD. GROVER, OF MALDEN, MASSACHUSETTS.
COIN-CONTROLLED VENDlNG-MACHINE AND FRAUD-PREVENTING DEVICE FOR SAME.
SPECIFICATION forming part of Letters Patent N0. 780,717', -da'tefil January 24, 1905. Appiimin filed May 9, 1904. serial No. 207.177.
To @ZZ whom it' may concern.-
Be it known that I, ALBERT D. GRovER, a
- citizen of the United States, residing in Malden, county of Middlesex, andState of Massachusetts, have invented certain new and useful Improvements in Coin-Controlled Vending-Machines and Fraud-Preventing Devices for Same, of which the following lis a specification, reference being had to the accompa-` nying drawings.
rIhe object of my invention is to provide a -mechanism operated through the medium of -a coin the coin-slot of which will automatically lock itself when an attempt is made to operate it by means other than a coin of the proper denomination. i j
Another object of my invention is to obviate the defects in vending-machines'as heretofore constructed, which defects result in the fraudulent removal of goods by tokens other than coins of the proper denomination.
I attain the objects set forth by the mechanism'shown and described in the drawings which accompany this specification.
In the drawings, Figure 1 represents an inverted plan view of a coin-slide and the cointesting and locking mechanism attached thereto. Fig. 2 is a sectional elevation through line 2 2, Fig. 1, showing the mechanism in position to receive a coin. Fig. 3 isa sectional elevation through line-2 2, showing a false token in the coin-hole and the slide partially pushed in and in position to lock it against further inward movement. Fig. 4 is a partial sectional elevation through line 2 2,
Fig. l, showing a proper coin in the coinopening, the locking device unlocked, and the slide pushed inwardly to a point where it will veject the goods.
Fig. 5 is a sectional elevation through the line 5 5, Fig. 4C.
In the drawings, A represents Ithe support for the coin-slide.
B is the coin-slide, having therein an, opening B' of a proper size to receive a coin of the proper denomination to operate the unlocking device of a vending-machine. The coinslide B has notches B2 on one of its lsides and locking projections. B3 B3 on its other side. The notches B2 are adapted to receive the cogs of the pinion C and rotate it when the coinslide B is moved in or out.
Attached to the coin-slide B is a bracket D,
which hasattached to it a plunger D2 in such.
A. 'I The hook Eis normally in contact with a shaft G, which is mounted at one of its ends in a bracket Gr', attached to the coin-slide support A, its other end sliding in a slot in a bracket G2. The shaft G has mounted upon it the sleeve H, to one end of which is secured the pinion C and upon the other end the cointesting segments I and K. The coin-testing Segment I is securely fastened to the sleeve H to rotate therewith and has secured in its inner face a pin I', located so that the extending point of the testing-segment K will contact with it, as shown in Fig. 2. The cointesting segment K is loosely mounted upon the sleeve H in such manner as to revolve easily thereon, its movement in one direction being limited by the pin I' and controlled in the other direction by the spring L. It has a pin K' secured in its inner face, projecting therefrom sufciently to receive the hooked end of the spring L, the other end of said spring L beingsecured to the pinion C. Said spring L holds the segment K normally in contact with the pin I', but permits it to rotate in an opposite direction.
M is a post projecting downwardly from the slide-support A and has a slot in it of awidth suicient to receive the locking-hook E. It also has a philister-head screw M', which head projects over the slot suiiiciently to prevent the hook E from flying downwardly out of the slot.
M3 is a spring normally holding the hook upwardly in'the position shown in Fig. 3 and in path of the projections B3 B3.
B1 is an opening in'one side of the coin-hole B', adapted to receive the point K2 of the testing-segment K when a false token is placed in said coin-opening and the slide moved inward, as shown in Fig. 3, to permit the lever E to move upwardly until the point E is in the path of one of the projections B3 in order to lock the coin-slide against further inward movement to prevent the removal of a package of the goods through the medium of a false token.
O represent a portion of a goods-receptacle, and O O represent packages of goods placed therein.
In Fig. 3 a false token is represented as being in the coin-opening in the coin-slide, the coin-slide moved forward until the point E' is in position to lock it, and a package of the goods O partially shoved out, but not out far enough to allow the operator to procure it.
The testing action of the segment K is as follows: When a false token is inserted in the coin-hole B and the slide B moved inwardly, the testing-segment K is revolved until the point K2 contacts with said token. If the surface of the token is smooth, or comparatively so, the said point K2 will slide upon it until it passes off the edge into the opening B4. This allows the shaftG to move upwardly to its normal position and the point E' of the hook E to catch on one of the projections B3 and lock the slide B against further inward movement. If the proper token or coin is placed in the coin-hole B' and the slide B moved inwardly, the point K2 will catch upon the raised edge of the coin, as shown in Fig. 4, thereby revolving the testing-finger K, causing it to press the hook E downwardly until the point E' is out of the path of the projections B3, thereby allowing further inward movement of the slide B to eject the goods.
The principle of my fraud-preventing device is to provide means to unlock the slide through the medium of the raised milled edge of acoin. The form and location of the means may be changed without departing from the spirit of my invention, provided the milled edge of the coin is used in conjunction with the testing-segment to unlock the coin-slide to permit it to move inwardly to eject the goods.
Having described my invention, what I claim is-- l. In a fraud-preventing device for coinoperated machines, a coin-receiving slide; a spring-controlled segment provided with a point adapted to contact with the flat surface of a coin as the slide is pushed in; and means whereby the contact of the point of the segment with the milled edge of a coin will unlock the slide and permit its free longitudinal movement.
2. In a coin-operated machine, a fraud-preventing device, comprising a coin-receiving slide provided with a coin-hole; a notch in one side of the coin-hole; a shaft supported adjacent the coin-slide; means for revolving said shaft; a sleeve mounted on said shaft; a testing-finger loosely mounted upon said sleeve; means for controlling the movement of said testing-finger and to permit it to revolve on said sleeve; a spring-pressed locking-hook mounted adjacent said shaft and bearing thereon; and means whereby said testing-finger will cause said spring-pressed hook to lock said slide when a token other than a coin of the proper denomination is inserted in the coin-hole.
3. In a coin-controlled apparatus, a fraudpreventing device, comprising a spring-controlled segment revolubly mounted on a sleeve, having a singlepointed projection adapted to contact with the under side of al coin placed in the coin-hole in a coin-slide; said coin-slide; means whereby the coin-slide will be locked against inward movement when a token not provided with a milled edge is placed in the coin-hole; said coin-hole; and a notch in the edge thereof.
4. In a coin-operated apparatus having a fraud preventing device, a coin receiving slide; a coin-opening therein, and an opening` running into and adjacent said coin-opening; a spring-pressed segment mounted in the path of said coin-opening provided with a projection adapted to contact with the under side of the coin as the slide is pushed in, said spring-pressed segment being so arranged as to slide upon a comparatively smooth surface, but to catch upon a milled edge of a coin of the proper denomination to permit the slide to be moved freely longitudinally to the full extent of its normal movement.
5. In a fraud-preventing device for coincontrolled machines, a coin-slide therein normally locked; means for unlocking said coinslide to permit inward movement operated by contact of said means with the projecting milled edge of a coin of the proper denomination.
6. In a fraud-preventing device for coincontrolled machines, a coin-slide; a coin-hole in said coin-slide adapted to receive a coin, said coin-slide being normally locked against inward movement; a spring-controlled means adapted to release the locking mechanism when a coin of proper denomination having a milled edge is placed in the coin-slide and same moved inward to its operative position.
In testimony whereof I have hereunto set my hand, in the presence of two subscribing witnesses, this 5th day of May, A. D. 1904.
ALBERT D. Gnovnn.
Witnesses:
H. M. KELso, R. P. ELLIOTT.
lOO
IIO
US20717704A 1904-05-09 1904-05-09 Coin-controlled vending-machine and fraud-preventing device for same. Expired - Lifetime US780717A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090032341A1 (en) * 2004-10-05 2009-02-05 Mitsubishi Electric Corporation Emergency brake of elevator

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090032341A1 (en) * 2004-10-05 2009-02-05 Mitsubishi Electric Corporation Emergency brake of elevator

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