Nova Patents
EP1646014A2

Coin discrimination apparatus and method

Abstract

A coin discrimination apparatus and method is provided. Coins, preferably after cleaning, e.g. using a trommel, are singulated by a coin pickup assembly configured to reduce jamming. A coin rail assists in providing separation between coins as they travel past a sensor. The sensor provides an oscillating electromagnetic field generated on a single' sensing core. The oscillating electromagnetic field is composed of one or more frequency components. The electromagnetic field interacts with a coin, and these interactions are monitored and used to classify the coin according to its physical properties. All frequency components of the magnetic field are phase-locked to a common reference frequency. The phase relationships between the various frequencies are fixed, and the interaction of each frequency component with the coin can be accurately determined without the need for complicated electrical filters. In one embodiment, a sensor having a core, preferably ferrite, which is curved, such as in a U-shape or in the shape of a section of a torus, and defining a gap, is provided with a wire winding for excitation and/or detection. The sensor can be used for simultaneously obtaining data relating to two or more parameters of a coin or other object, such as size and conductivity of the object. Two or more frequencies can be used to sense core and/or cladding properties. Objects recognized as acceptable coins, using the sensor data, are diverted by a controllable deflecting door, to tubes for delivery to acceptable coin bins.

EP1646014A2, drawing sheet 1
Sheet 1 of 60

Term

Term ended

Projected expiry passed 27 June 2017, 9.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

65 claims: 27 independent, 38 dependent

  1. 1
    Apparatus for use in a device for separating acceptable coins from other objects, comprising;a sensor system (58) for sensing at least a first coin characteristic and outputting at least a first signal when a coin is recognised as an acceptable coin;a rail (56) for transporting coins from said sensor to a controllable deflector (62);wherein said deflector (62) is configured to move from a first relaxed configuration to a second configuration (2323) for deflecting a coin off said rail to a path for placement in an acceptable-coin location, in response to said first signal, and wherein items not deflected by said deflector move along said rail (56) to a reject location (68).
  2. 5
    Coin-handling apparatus comprising;an input tray (16) for receiving a plurality of coins of a plurality of denominations;at least a first chute (230) having at least a first coin support surface, configured to transport coins from said input tray to a coin pickup device (54);said coin pickup device including a hopper (1702) for receiving coins in a random orientation and at least a first rail (56) for delivering coins at an exit region of said first rail, with said coins in a substantially coplanar attitude and substantially in single file;at least a first sensor (58), spaced from said exit region, for providing at least a first signal indicative of at least a first coin characteristic;circuitry coupled to said first sensor for receiving at least said first signal and outputting at least a second signal indicative of whether a sensed object is an acceptable coin;a deflector (62) configured to move from a first configuration to a second configuration to deflect a coin off said rail (56) to a first path including at least a second coin contact surface, one of said first and second paths being an accept path and the other of said first and second paths being a reject path;and a second rail for gravitational transport of coins from said exit region, past said sensor, to said deflector.
  3. 9
    Apparatus as claimed in any one of claims 5 to 8, wherein said reject path includes a first chute surface including an edge which is spaced from a second chute surface, wherein coins exiting off said edge free fall before reaching said second chute surface.
  4. 11
    Apparatus as claimed in any one of claims 5 to 10, wherein said sensor comprises a substantially u-shaped magnetic core (282, 314, 2802) defining first and second spaced apart legs having a length at least equal to a width of said second rail (56).
  5. 13
    Apparatus as claimed in any one of claims 5 to 12, wherein said sensor has a thickness, in a dimension substantially parallel to the direction of coin flow, of less than about 0.13cm.
  6. 14
    A method of sorting acceptable coins from non-acceptable objects, comprising:moving objects past a sensor (58) for sensing at least a first characteristic of said objects;and controlling a deflector (62) to strike an object which is determined to be an acceptable coin to divert said acceptable coin from a default path ending in a reject location to an acceptable coin path, ending in an acceptable coin location.
  7. 18
    A method as claimed in any one of claims 14 to 17, comprising refraining from using said deflector to deflect an object if a gap between said object and an adjacent object is not at least equal to a first gap threshold.
  8. 19
    A method as claimed in any one of claims 14 to 18, comprising obtaining at least four signals from said sensor and comparing said four signals with a stored plurality of sets of four upper and lower threshold values corresponding to acceptable coin categories.
  9. 20
    Apparatus for sorting acceptable coins from non-acceptable objects comprising:means (58) for sensing at least a first characteristic of objects;means (56) for moving objects past said sensing means;and deflector (62) means for striking objects to selectively divert a selected object from a default path ending in a reject location to an acceptable coin path ending in an acceptable coin location;and means for controlling said deflector means to strike an object which is determined to be an acceptable coin.
  10. 21
    Apparatus, usable in a coin device, for coin pickup comprising:a hopper (1702) for receiving a plurality of randomly oriented coins;a disk assembly (1806), adjacent a portion of said hopper, forming at least a portion of a coin pickup pathway (56) lying in a substantially annular region, at a first angle with respect to vertical;at least a first paddle (1704, 2018) movable along said coin pickup pathway to provide a normal paddle path, wherein coins which have passed from said hopper into said coin pickup pathway are urged along said coin pickup pathway by said at least first paddle from a coin pickup pathway pickup region to a coin pickup pathway exit region, defining a coin travel direction;said coin pickup pathway having a width (1804-1806) and being configured in the absence of reduction of said width along said coin pickup pathway in said coin travel direction, and wherein said width (1804-1806) increases, in said coin travel direction, over at least a portion of said coin pickup pathway.
  11. 26
    Apparatus as claimed in any preceding claim, comprising a block (1810) including a recess (1808) for receiving at least a portion of said disk assembly (1806), said recess including an edge (1872) which defines an outer perimeter of at least a first portion of said coin path;and a door (2012) movable with respect to said block from a first position defining an outer perimeter of at least a second portion of said coin path, to a second position permitting debris to exit said second portion of said coin path.
  12. 27
    Apparatus as claimed in any preceding claim, wherein said disk assembly comprises a disk-like member (1806) having a front surface, a rear surface and an outer edge (1804) which defines an inner perimeter of at least a portion of said coin path, wherein said outer edge includes a first curved portion adjacent a first part of said coin path and a second portion, adjacent said exit region, wherein the coin path in said exit region has a radially outward component (1836) with respect to said annular region, whereby coins laterally exit said coin pickup pathway without the need for a coin knife.
  13. 29
    Apparatus as claimed in any preceding claim, wherein said hopper (1702) includes extension means (2018) for capturing stray coins that do not follow the pickup coin path.
  14. 30
    Apparatus as claimed in any preceding claim, comprising an activity sensor for detecting the presence of coins in at least one location along said coin path and/or a proximity sensor for sensing the presence of coins in at least one position in said hopper.
  15. 31
    Apparatus as claimed in any preceding claim, comprising an electric motor (2032) for moving said paddle along said normal paddle path;means for sensing an abnormality and means for reversing said electric motor in response to said means for sensing an abnormality.
  16. 32
    Apparatus for transporting coins along a coin transport path (56) from an entrance region to at least a second downstream region comprising:a ledge (2104) for rolling or sliding support edges of coins which are in an attitude with faces thereof inclined at an angle of no more than about 20° from vertical;said transport path including a first shallow portion (2121a) in which said ledge is inclined to horizontal between 0° and 30° degrees;said transport path including a second steep portion (2121G) closer to said downstream region than said first portion, in which said ledge is inclined to horizontal between 30° and 60° degrees such that the center-to-center distance between first and second successive coins which enter said first region will increase as said first and second coins successively enter said second region.
  17. 37
    Apparatus as claimed in any one of claims 32 to 36, comprising a coin pick up device (54), a lateral gap (2102) positioned between an exit region of said coin pickup device and said entrance region of said transport path, said gap extending downward from said ledge.
  18. 39
    Apparatus as claimed in any one of claims 32 to 38, comprising means (2116) for removing coins from said transport path which are positioned vertically above another coin, said removing means preferably comprising a recess (2116) adjacent a portion of a or said guide (2106) such that the upper edge of a second coin which is positioned vertically above a first coin will tip so as to permit the second coin to fall in front of said first coin.
  19. 40
    Apparatus for use in a coin handling device which includes a rail (56) for transporting coins along a coin path in a coin transport direction with the assistance of gravity during normal coin handling, the apparatus comprising:a pin (2152) movable from a first position retracted out (2154) of said coin path to a second position (2156) within said coin path;and a motive device (2502) coupled to said pin to move said pin from said second position in said coin transport direction.
  20. 42
    Apparatus for sensing coins moving along a coin path comprising:a first magnetic core (1142a) adjacent said coin path (56);a first winding (1144a) coupled to said first magnetic core;a second magnetic core (1142b) adjacent said coin path, spaced from said first magnetic core (1142a);a second winding (1144b) coupled to said second magnetic core;a reference frequency generator (1154) for providing a reference frequency;means (1152a-1154b) coupled to said reference frequency generator, for providing a signal with a first frequency to said first winding and a signal with a second frequency, different from said first frequency, to said second winding.
  21. 44
    Apparatus for sensing coins moving along a coin path comprising:magnetic core means (282, 2802) adjacent said coin path;winding means (288, 2808) coupled to said magnetic core means;means for providing at least a first signal with a first frequency to said winding means;and determination means for tuning said first signal means for using said winding means for frequency determination.
  22. 46
    A method of discriminating coins, comprising the steps of:providing at least a first sensor (58) including a first magnetic core which is non-linear over at least a portion thereof, said first core providing a first gap to generate magnetic flux lines in the vicinity of said first gap;coupling said sensor in an oscillator circuit;detecting the change in Q of the inductance of said sensor as a coin moves past said first gap for deriving conductivity of said coin.
  23. 48
    A method of discriminating among coins and other discrete objects, comprising the steps of;providing at least a first sensor including a first magnetic core which is non-linear over at least a portion thereof, said first core including a first gap to provide magnetic flux lines in the vicinity of said first gap;providing a first periodic reference signal;providing a first periodic waveform to induce a magnetic flux on said first magnetic core wherein said first periodic waveform is phase-locked to said reference signal;measuring the amplitude and a phase locked loop error signal of the voltage induced in said first magnetic core as said object moves past said first gap.
  24. 51
    Apparatus for discriminating among coins and other discrete objects, comprising:a sensor including a first integral magnetic core, said first core including first and second end faces substantially coplanar and spaced apart;first and second coplanar end plates, coupled to said first and second end faces, said first and second end plates including opposed edges providing a first gap to generate magnetic flux lines in the vicinity of said first gap;first circuitry operable to initiate at least a first action in response to discrimination of an object by said sensor;and at least a first communication link coupling said sensor to said first circuitry to provide an output signal from said sensor to said first circuitry.
  25. 58
    Apparatus for coin sorting, comprising:means for providing at least a first magnetic field and for outputting at least a first signal related to at least first and second different parameters of a coin, wherein both said first and second parameters are detected by said sensor means substantially simultaneously and preferably without the need to move the coin from a first to a second location;and signal processing means for receiving at least said first signal and outputting first information related to said first parameter and second information related to said second parameter.
  26. 63
    A coin counting device operable to receive a plurality of coins in a first location and to move coins past a discriminator region for determining the denomination of the coins to calculate the total value of a plurality of coins and to output an indication of said value, including a sensor (58) for measuring coin parameters in said discriminator region, the sensor comprising:a ferrite core substantially in the shape of a section of a torroid and including a gap positioned so that a coin will move through the vicinity of said gap;at least a first coil of conductive material wound about a first position of said core, providing an inductor;an oscillator coupled to said inductor configured to provide current defining at least first and second different frequencies simultaneously on said first coil wherein, when a coin is conveyed past said gap, the signal in said inductor undergoes at least a first frequency shift and a first change in the quality factor of said inductor at said first frequency and a second frequency shift and a second change in quality factor of said inductor at said second frequency;a processor configured to identify the denomination of a coin by comparing at least some of said frequency shifts and changes in quality factor to stored data indicative of frequency shift and quality factor values for a plurality of coins of different denomination.
  27. 65
    A coin counting device operable to receive a plurality of coins in a first location and to move coins past a discriminator region for determining the denomination of the coins, to calculate the total value of said plurality of coins and to output an indication of said value, including a sensor (58) for measuring coin parameters in said discriminator region, the sensor comprising:first and second ferrite cores, each substantially in the shape of a section of a torrus, said first core including a first gap and said second core including a second gap, said core being positioned with said gaps aligned so that a coin will move through said first and second gaps;at least first and second coils of conductive material wound about a first portion of each of said first and second cores, respectively;an oscillator coupled to said first coil configured to provide current defining at least a first frequency defining a first skin depth less than a coin cladding thickness and wherein, when a coin is conveyed past said first gap, the signal in said coil undergoes at least a first change in inductance and a change in the quality factor of said inductor;an oscillator coupled to said second coil configured to provide current defining at least a second frequency defining a second skin depth greater than said first skin depth wherein, when said coin is conveyed past said second gap, the signal in said coil undergoes at least a second change in inductance and a second change in the quality factor of said inductor;and a processor configured to receive data indicative of said first and second changes in inductance and changes in quality factor to permit separate characterization of cladding and core of a coin.
Independent claims27