EP0782734B1

Extended working range dataform reader with reduced power consumption

Abstract

This record has no abstract on file.

EP0782734B1, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Expired 25 July 2016, 10.2 years ago.

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

19 claims: 2 independent, 17 dependent

  1. 1
    A dataform reader module (10) for imaging a two-dimensional dataform, the reader module comprising:a camera assembly (26) including an image sensor (60) configured to detect a reflected image of an illuminated region including a dataform;an illumination module (28) configured to illuminate a dataform to be detected by the camera assembly (26);a control board (56) including a microprocessor (51) to which the camera assembly (26) and illumination module (28) are operatively coupled;gain control circuitry (51) realized on the control board (56);and image processing circuitry (51) operative to decode the detected dataform image;characterized in that the gain control circuitry (51) comprises an open loop gain control system configured to set in response to power-up a gain value of the camera assembly (26) to a gain setting used during a previous dataform reading session and incrementally adjust the gain value after evaluation of image data to achieve a gain corrected video signal within a short latency period.
  2. 2
    The dataform reader module (10) of Claim 1 wherein the camera assembly (26) comprises a board camera (62) having an input port for receiving a power signal to power generation of a composite video signal, a gain control input port, and gain adjustment circuitry connected to the gain input port configured to bypass analog gain control circuitry.
  3. 3
    The dataform reader module (10) of Claim 2 further comprising a D/A converter, wherein the gain control circuitry (51) provides a digital value to the D/A converter which supplies a voltage signal to the gain adjustment circuitry on the board camera (62).
  4. 4
    The dataform reader module (10) of Claim 3 wherein the gain control circuitry (51) is configured in order to quickly realize a gain corrected video signal via minimal latency time.
  5. 5
    The dataform reader module (10) of Claim 2 wherein the gain control circuitry (51) comprises digital gain control circuitry embodied in code executed by the microprocessor (51).
  6. 6
    The dataform reader module (10) of Claim 5 further comprising a look up table correlating resultant image data to gain values such that a correct gain value can be determined for use for a next field capture.
  7. 7
    The dataform reader module (10) of Claim 1 further comprising exposure control circuitry (51) realized on the control board (56) and configured to set in response to power-up an exposure period for the camera assembly (26) to a period stored in memory used during a previous dataform reading session.
  8. 8
    The dataform reader module (10) of Claim 7 further comprising a board camera (62) including an input port providing operating power to generate a composite video signal, an exposure control input port, and an exposure timing circuit connected to the exposure control input port configured to bypass analog exposure control circuitry.
  9. 9
    The dataform reader module (10) of Claim 8 further comprising a D/A converter, wherein the exposure control circuitry (51) provides a digital value to the D/A converter which supplies voltage signals to the exposure timing circuit on the board camera (62).
  10. 10
    The dataform reader module (10) of Claim 9 wherein the exposure control circuitry (51) comprises digital exposure control circuitry embodied in code executed by the microprocessor (51).
  11. 11
    The dataform reader module (10) of Claim 10 further comprising a look up table correlating resultant field of image data to exposure duration values such that a correct exposure duration value can be determined for use for a next image capture.
  12. 12
    The dataform reader module (10) of Claim 9 wherein the exposure control circuitry (51) is configured in order to quickly realize an exposure corrected video signal via minimal latency time.
  13. 13
    The dataform reader module (10) of Claim 7 wherein the gain control circuitry, the exposure control circuitry, and the image processing circuitry are all realized by the microprocessor (51) of the control board (56).
  14. 14
    The dataform reader module (10) of Claim 1 further comprising a data transfer link (53) configured to interface the control board (56) with a host computer.
  15. 15
    A dataform reader module (10) for imaging a two-dimensional dataform, the reader module comprising:a camera assembly (26) including an image sensor (60) configured to detect a reflected image of an illuminated region including a dataform;an illumination module (28) configured to illuminate a dataform to be detected by the camera assembly (26);a circuit control board (56) including a microprocessor (51) to which the camera assembly (26) and illumination module (28) are coupled;and image processing circuitry (51) operative to decode the detected dataform image;characterized in that the reader module (10) further comprises exposure control circuitry (51) realized on the control board (56) and configured to set in response to power-up an exposure period of the camera assembly (26) to a period stored in memory used during the most recent dataform reading session.
  16. 17
    The dataform reader module (10) of Claim 16 further comprising a D/A converter, wherein the exposure control circuitry (51) provides a digital value to the D/A converter which supplies voltage signals to exposure adjustment circuitry on the board camera (62).
  17. 18
    The dataform reader module (10) of Claim 15 wherein the exposure control circuitry (51) comprises digital exposure control circuitry embodied in code executed by the microprocessor (51).
  18. 19
    The dataform reader module (10) of Claim 15 further comprising a look up table correlating resultant image data to exposure duration values such that a correct exposure duration value can be determined for use for a next image capture.
Independent claims18