AU702128B2

Automatic exposure single frame imaging systems

Abstract

An automatic exposure imaging system (Fig. 2) operating on a single frame image capture basis is adapted for single chip CMOS type construction. For reading dataforms, such as two-dimensional bar codes and matrix codes, the system can provide automatic gain control (60), automatic exposure control (64), automatic focus sensing (62) and single frame imaging and decoding, with reduced power consumption. A fixed focus distance sensor element array assembly (21b) and optical distance sensing enable automatic initiation of exposure when the image is in-focus (Fig. 4). Exposure provided by image illuminators (50, 54) is automatically controlled by sensing of the cumulative level of reflected light during the exposure period (Fig. 6). Alternatively, exposure time is determined from a look-up table (82a), based upon the level of light reflected during an initial illumination period of fixed duration (Fig. 7). Automatic system turn-off or re-reading can be provided, depending upon whether a dataform is successfully decoded (Fig. 6 and 7). Power use is reduced by terminating the reading of sensor elements upon successful decoding. A complete, light-weight, hand-held reader (10) is described, including provison for transmission of decoded dataform information and a wide range of additional capabilities via plug-in cards (34, 36). Related methods are also described.

AU702128B2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Expired 26 July 2015, 11.2 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

44 claims: 15 independent, 29 dependent

  1. 1
    THE CLAIMS DEFINING THE INVENTION ARE AS FOLLOWS:1. An automatic exposure imaging system, usable as a dataform reader to read a dataform in a target area at a distance from said reader, including: a plurality of sensor elements which are readable to provide image signals and at least some of which are positioned in a two-dimensional array;at least one focus illuminator arranged to illuminate said target area with an area of illumination characterized by at least one of a size, a brightness and a location which varies with the distance between the array and the target area;a user trigger device arranged to activate said at least one focus illuminator and initiate reading of selected sensor elements;an in-focus sensing device responsive to image signals from at least one of said sensor elements and arranged to provide an in-focus signal when said area of illumination is characterized by at least one of a size within a predetermined size range, a brightness within a predetermined brightness range and a location within a predetermined location range;a gain control device responsive, in a period after said in-focus signal, to the level of reflected light as represented by image signals from at least one of said sensor elements and arranged to control image signal amplification;an exposure control device, responsive to image signals from at least one of said sensor elements, and arranged to provide a start signal in response to said infocus signal and a stop signal in response to reflection of a predetermined level of illumination from said target area;at least one exposure illuminator responsive to said start signal and to said stop signal, and arranged to illuminate said target area during an exposure period H:\Susan\Keep\speci\31485 95 metanetics.doc 26/10/98 determined by said start and stop signals;a memory unit coupled to said array and arranged to store image data representative of said image signals;a processing unit coupled to said memory unit and 5 arranged to process stored image data to decode said dataform, and to provide an end-cycle signal effective to terminate reading of selected sensor elements and operation of the dataform reader, upon successful decoding of the dataform;and 10 an output device coupled to said processing unit and arranged to provide output signals representative of decoded dataform information.
  2. 6
    An automatic exposure system, including:a plurality of sensor elements which are readable to provide image signals representative of reflected illumination and at least some of which are positioned in a 5 two-dimensional array;at least one exposure illuminator including an array of illuminator devices arranged to provide a predetermined level of illumination across a selected target area when said array and said target area are 10 separated by a predetermined distance;and an exposure control device responsive to image signals from at least one of said sensor elements and arranged to provide an exposure stop signal in response to a predetermined level of reflected illumination, said 15 exposure stop signal utilized to turn off at least one exposure illuminator which provides illumination resulting in said reflected illumination.
  3. 11
    An automatic exposure imaging system, including:a plurality of sensor elements which are readable 10 to provide image signals and at least some of which are positioned in a two-dimensional array;at least one focus illuminator arranged to illuminate a target area with an area of illumination characterized by at least one of a size, a brightness and a 15 location which varies with the distance between the array and the target area;an in-focus sensing device responsive to image signals from at least one of said sensor elements and arranged to provide an in-focus signal when said area of 20 illumination is characterized by at least one of a size within a predetermined size range, a brightness within a predetermined brightness range and a location within a predetermined location range;an exposure control device, responsive to image 25 signals from at least one of said sensor elements, and arranged to provide a start signal in response to said infocus signal and a stop signal in response to reflection of a predetermined level of illumination from said target area;and 30 at least one exposure illuminator responsive to said start signal and to said stop signal, and arranged to illuminate said target area during an exposure period determined by said start and stop signals.
  4. 17
    An imaging system, including:a plurality of sensor elements which are readable to provide image signals and at least some of which are positioned in a two-dimensional array;at least one focus illuminator arranged to illuminate a target area with an area of illumination characterized by at least one of a size, a brightness and a location which varies with the distance between the array and the target area;and an in-focus sensing device responsive to image H:\Susan\Keep\speci\31485 95 metanetics.doc 26/10/98 signals from at least one of said sensor elements and arranged to provide an in-focus signal when said area of illumination is characterized by at least one of a size within a predetermined size range, a brightness within a 5 predetermined brightness range and a location within a predetermined location range.
  5. 20
    An automatic exposure imaging system including:20 a plurality of sensor elements which are readable to provide image signals and at least some of which are positioned in a two-dimensional array;at least one exposure illuminator arranged to illuminate a target area during a preset initial period and 25 during an adjustable exposure period;and an exposure control device responsive to image signals, from at least one of said sensor elements, which are representative of the level of illumination reflected from said target area during said preset initial period, 30 said exposure control device arranged to provide an exposure control signal representative of the duration of said adjustable exposure period.
  6. 21
    An automatic exposure imaging system as in claim 35 20, additionally including:a memory unit arranged to store a look-up table of exposure periods correlated to exposure control signal H:\Susan\Keep\speci\31485 95 metanetics.doc 26/10/98 value;and a processing unit coupled to said exposure control device and said memory unit and responsive to said exposure control signal to utilize said look-up table to 5 determine the duration of said adjustable exposure period.
  7. 22
    An automatic exposure imaging system as in claim 26, wherein said at least one exposure illuminator includes a plurality of illuminators at least one of which is turned 10 on during said preset initial period and at least one of which is turned on during said adjustable exposure period.
  8. 23
    An automatic exposure imaging system as in claim 20, wherein said at least one of said sensor elements 15 includes two rows of sensor elements positioned in said two-dimensional array;and said exposure control device is arranged to determine said level of illumination by summing the pixel values represented by image signals from all sensors 20 included in said two rows of sensor elements.
  9. 24
    An automatic exposure imaging system as in claim 20, additionally including:at least one focus illuminator arranged to illuminate a target area with an area of illumination characterized by at least one of a size, a brightness and location which varies with the distance between the array and the target area;and an in-focus sensing device responsive to image signals from at least one of said sensor elements and arranged to provide an in-focus signal effective to initiate said preset initial period of illumination by said exposure illuminator when said area of illumination is characterized by at least one of a size within a predetermined size range, a brightness with a predetermined brightness range and a location within a predetermined location range. H:\Susan\Keep\speci\31485 95 metanetics.doc 26/10/98
  10. 25
    An automatic exposure imaging system as in claim 20, additionally including a gain control device responsive to the level of reflected light as represented by image 5 signals from at least one of said sensor elements and arranged to control image signal amplification. 9 · · • · « • · 9 ··· · • · · • · « 9 9 9 9 9 9 • · ·· 99 99 9 9 9 • 9 9 9 9 9 9 9 9 99 9 9 • 9 9 9 9 9 9 9 999 9
  11. 26
    An imaging method, for use with imaging system including an array of sensor elements, including the 10 following steps:(a) illuminating a target area with an area of illumination characterized by at least one of a size, a brightness and a location which varies with the distance between the array and the target area;15 (b) adjusting said distance to cause said area of illumination to be characterized by at least one of a size within a predetermined size range, a brightness within a predetermined brightness range and a location within a predetermined location range;20 (c) providing an in-focus signal when an image signal from at least one sensor element indicates that said area of illumination is characterized as described in step (b);(d) turning on an exposure illuminator in 25 response to said in-focus signal;(e) providing a stop signal when image signals from at least one sensor element indicate reflection of a predetermined level of illumination from said target area;(f) turning off said exposure illuminator in 30 response to said stop signal;and (g) processing image data from sensor elements of said array.
  12. 35
    35 step (b). ’ί/ An imaging method as in claim 36, wherein in step H:\Susan\Keep\speci\31485 95 metanetics.doc 26/10/98 (a) said target area is illuminated with an area of illumination including spots of illumination provided by two angled light beams which intersect at an in-focus distance in front of the array.
  13. 38
    40. An imaging method, for use with an imaging system including an array of sensing elements, including the following steps:(a) turning on an exposure illuminator in 20 response to a start signal;(b) providing a stop signal when image signals from at least one sensing element indicate reflection of a predetermined level of illumination;and (c) turning off said exposure illuminator in 25 response to said stop signal.
  14. 40
    42. An imaging method, for use with an imaging system including an array of sensing elements, including the following steps:35 (a) turning on an exposure illuminator for a preset initial period;and (b) determining the level of illumination sensed Wmelb01\home$\Cgowty\Keep\Nadia\31485.95.doc 18/12/98 by at least one sensing element in said present initial period;and (c) utilizing said level to determine an adjustable exposure period.
  15. 43
    45. An automatic exposure imaging system substantially as herein described with reference to the accompanying drawings.
  16. 44
    46. An imaging method substantially as herein described with reference to the accompanying drawings.
Independent claims16