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Decoder board for an optical reader utilizing a plurality of imaging formats 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G06K-007/10
출원번호 US-0339439 (2003-01-09)
발명자 / 주소
  • Meier,Timothy P.
  • Gardiner,Robert C.
  • Harper,Jeffrey D.
  • Izzo,John
  • Koziol,Thomas J.
  • Longacre, Jr.,Andrew
  • Pettinelli,John
출원인 / 주소
  • Hand Held Products, Inc.
대리인 / 주소
    Wall Marjama &
인용정보 피인용 횟수 : 198  인용 특허 : 140

초록

The invention relates to a microprocessor-based decoder board for an optical reader having in one embodiment a plurality of imaging modules that provide frames of image data having a plurality of formats. In one method for operating the decoder board of the invention, and a multiple imaging module r

대표청구항

What is claimed is: 1. A method of decoding a frame of image data, the frame of image data having one of a one-dimensional (1D) format and a two-dimensional (2D) format, the method comprising the steps of: providing at least one imaging module selected from a one-dimensional (1D) imaging module and

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  23. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao, Automatic POS-based digital image capturing and processing system employing a plurality of area-type illumination and imaging zones intersecting within the 3D imaging volume of the system.
  24. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao, Automatic POS-based digital image capturing and processing system employing a plurality of area-type illumination and imaging zones intersecting within the 3D imaging volume of the system.
  25. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao, Automatic POS-based digital image capturing and processing system employing object motion controlled area-type illumination and imaging operations.
  26. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao, Automatic POS-based digital image capturing and processing system employing object motion controlled area-type illumination and imaging operations.
  27. Kotlarsky, Anatoly; Au, Ka Man; Veksland, Mikhail; Zhu, Xiaoxun, Automatic digital video image capture and processing system supporting image-processing based code symbol reading during a pass-through mode of system operation at a retail point of sale (POS) station.
  28. Kotlarsky, Anatoly; Au, Ka Man; Veksland, Michael; Zhu, Xiaoxun; Meagher, Mark; Good, Timothy; Hou, Richard; Hu, Daniel, Automatic digital video-imaging based code symbol reading system employing illumination and imaging subsystems controlled within a control loop maintained as long as a code symbol has not been successfully read and the object is detected in the field of view of the system.
  29. Kotlarsky, Anatoly; Au, Ka Man; Veksland, Michael; Zhu, Xiaoxun; Meagher, Mark; Good, Timothy; Hou, Richard; Hu, Daniel, Automatic digital-imaging based bar code symbol reading system supporting a pass-through mode of system operation using automatic object direction detection and illumination control, and video image capture and processing techniques.
  30. Kotlarsky,Anatoly; Au,Ka Man; Veksland,Michael; Zhu,Xiaoxun; Meagher,Mark; Good,Timothy; Hou,Richard; Hu,Daniel, Automatic digital-imaging based bar code symbol reading system supporting pass-through and presentation modes of system operation using automatic object direction detection and illumination control, and video image capture and processing techniques.
  31. Kotlarsky,Anatoly; Au,Ka Man; Veksland,Michael; Zhu,Xiaoxun; Meagher,Mark; Good,Timothy; Hou,Richard; Hu,Daniel, Automatic digital-imaging based code symbol reading system supporting pass-through and presentation modes of system operation using automatic object direction detection, narrow-area and wide-area illumination control, and narrow-area and wide-area video image capture and processing techniques.
  32. Kotlarsky,Anatoly; Au,Ka Man; Veksland,Michael; Zhu,Xiaoxun; Meagher,Mark; Good,Timothy; Hou,Richard; Hu,Daniel, Automatic imaging-based code symbol reading system supporting a multi-tier modular software architecture, automatic illumination control, and video image capture and processing techniques.
  33. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao, Automatic omnidirectional bar code symbol reading system employing linear-type and area-type bar code symbol reading stations within the system housing.
  34. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao, Automatic omnidirectional bar code symbol reading system employing linear-type and area-type bar code symbol reading stations within the system housing.
  35. Kotlarsky, Anatoly; Au, Ka Man; Veksland, Michael; Zhu, Xiaoxun; Meagher, Mark; Good, Timothy; Hou, Richard; Hu, Daniel, Automatic point-of-sale based code symbol reading system employing automatic object motion detection and illumination control, and digital video image capturing and processing techniques.
  36. Kotlarsky, Anatoly; Au, Ka Man; Veksland, Mikhail; Zhu, Xiaoxun; Meagher, Mark; Good, Timothy; Hou, Richard; Hu, Daniel, Automatically-triggered digital video imaging based code symbol reading system employing illumination and imaging subsystems controlled in response to real-time image quality analysis.
  37. Kotlarsky, Anatoly; Au, Ka Man; Zhu, Xiaoxun, Automatically-triggered digital video-imaging based code symbol reading system for use in a point-of-sale (POS) environment.
  38. Kotlarsky, Anatoly; Au, Ka Man; Zhu, Xiaoxun, Automatically-triggered digital video-imaging based code symbol reading system supporting dynamically controlled object illumination and digital video-imaging operations.
  39. Wang, Ynjiun; Havens, William H., Bar code reading device with global electronic shutter control.
  40. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Mikhail; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Code symbol reading system.
  41. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy, Compact bar code symbol reading system employing a complex of coplanar illumination and imaging stations for omni-directional imaging of objects within a 3D imaging volume.
  42. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao; Kotlarsky, Anatoly; Veksland, Michael; Hernandez, Mark; Gardner, John; Essinger, Steven; Giordano, Patrick; Kearney, Sean; Schmidt, Mark; Furlong, John; Ciarlante, Nicholas; Liu, Yong; Ren, Jie; Tao, Xi; Liu, JiBin; Zhuo, Ming; Ellis, Duane, Coplanar laser illumination and imaging subsystem employing spectral-mixing and despeckling of laser illumination.
  43. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Countertop-based digital image capture and processing system having an illumination subsystem employing a single array of LEDs disposed behind an illumination focusing lens structure integrated within the imaging window, for generating a field of visible illumination highly confined below the field.
  44. Meier, Timothy P.; Gardiner, Robert C.; Harper, Jeffrey Dean; Izzo, John; Koziol, Thomas J.; Longacre, Jr., Andrew; Pettinelli, Jr., John A., Decoder board for an optical reader utilizing a plurality of imaging formats.
  45. Meier, Timothy P.; Gardiner, Robert C.; Harper, Jeffrey D.; Izzo, John; Koziol, Thomas J.; Longacre, Jr., Andrew; Pettinelli, John A., Decoding utilizing image data.
  46. Meier, Timothy P; Gardiner, Robert C.; Harper, Jeffrey Dean; Izzo, John; Koziol, Thomas J.; Longacre, Jr., Andrew; Pettinelli, John A., Decoding utilizing image data.
  47. Hannon, Marwan; Qu, Peter Qiang; Allison, James W.; Cesane, Cristian, Detecting the location of a phone using RF wireless and ultrasonic signals.
  48. Biss, Charles E.; Havens, William H.; Robinson, Michael D.; Balschweit, Paul; Fitch, Timothy R.; McCall, Melvin D.; Gomez, Garrison; McClaude, Mark A.; Longacre, Andrew; Sonneville, Eunice, Device and system for processing image data representing bar codes.
  49. Biss, Charles E.; Havens, William H.; Robinson, Michael D.; Balschweit, Paul; Fitch, Timothy R.; McCall, Melvin D.; Gomez, Garrison; McClaude, Mark A.; Longacre, Jr., Andrew; Sonneville, Eunice, Device and system for processing image data representing bar codes.
  50. Biss, Charles E.; Havens, William H.; Robinson, Michael D.; Balschweit, Paul; Fitch, Timothy R.; McCall, Melvin D.; Gomez, Garrison; McClaude, Mark A.; Longacre, Jr., Andrew; Sonneville, Eunice, Device and system for processing image data representing bar codes.
  51. Biss, Charles E.; Havens, William H.; Robinson, Michael D.; Balschweit, Paul; Fitch, Timothy R.; McCall, Melvin D.; Gomez, Garrison; McClaude, Mark A.; Longacre, Jr., Andrew; Sonneville, Eunice, Device and system for processing image data representing bar codes.
  52. Biss,Charles E.; Havens,William H.; Robinson,Michael D.; Balschweit,Paul; Fitch,Timothy R.; McCall,Melvin D.; Gomez,Garrison; McClaude,Mark A.; Longacre, Jr.,Andrew; Sonneville,Eunice, Device and system for verifying quality of bar codes.
  53. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao; Kotlarsky, Anatoly; Veksland, Michael; Hernandez, Mark; Gardner, John; Essinger, Steven; Giordano, Patrick; Kearney, Sean; Schmidt, Mark; Furlong, John A.; Ciarlante, Nicholas; Liu, Yong; Ren, Jie; Tao, Xi; Liu, JiBin; Zhuo, Ming; Ellis, Duane, Device for optically multiplexing a laser beam.
  54. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao; Kotlarsky, Anatoly; Veksland, Michael; Hernandez, Mark; Gardner, John; Essinger, Steven; Giordano, Patrick; Kearney, Sean; Schmidt, Mark; Furlong, John A.; Ciarlante, Nicholas; Liu, Yong; Ren, Jie; Tao, Xi; Liu, JiBin; Zhuo, Ming; Ellis, Duane, Device for producing a laser beam of reduced coherency using high-frequency modulation of the laser diode current and optical multiplexing of the output laser beam.
  55. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao; Kotlarsky, Anatoly; Veksland, Michael; Hernandez, Mark; Gardner, John; Essinger, Steven; Giordano, Patrick; Kearney, Sean; Schmidt, Mark; Furlong, John A.; Ciarlante, Nicholas; Liu, Yong; Ren, Jie; Tao, Xi; Liu, JiBin; Zhuo, Ming; Ellis, Duane, Digital illumination and imaging subsystem employing despeckling mechanism employing high-frequency modulation of laser diode drive current and optical beam multiplexing techniques.
  56. Kotlarsky, Anatoly; Au, Ka Man; Zhu, Xiaoxun; Meagher, Mark; Good, Timothy; Hou, Richard; Hu, Daniel, Digital image capture and processing engine employing optical waveguide technology for collecting and guiding LED-based illumination during object illumination and image capture modes of operation.
  57. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Digital image capture and processing system employing a linear LED-based illumination array mounted behind an illumination-focusing lens component integrated within the imaging window of the system.
  58. Zhu, Xiaoxun; Liu, Yong; Au, Ka Man; Hou, Rui; Yu, Hongpeng; Tao, Xi; Liu, Liang; Zhang, Wenhua; Kotlarsky, Anatoly, Digital image capture and processing system employing a micro-computing platform with an event-driven multi-tier modular software architecture and supporting an image-processing based illumination metering program for automatically adjusting illumination during object illumination and imaging operations.
  59. Kotlarsky, Anatoly; Zhu, Xiaoxun; Au, Ka Man, Digital image capture and processing system employing a multi-mode illumination subsystem adaptable to ambient illumination levels.
  60. Kotlarsky, Anatoly; Au, Ka Man; Veksland, Michael; Zhu, Xiaoxun; Meagher, Mark; Good, Timothy; Hou, Richard; Hu, Daniel, Digital image capture and processing system employing an illumination subassembly mounted about a light transmission aperture, and a field of view folding mirror disposed beneath the light transmission aperture.
  61. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; Foney, Shawn De; Allen, Christopher; Wilz, Sr., David M., Digital image capture and processing system employing an image formation and detection subsystem having an area-type image detection array supporting periodic occurrance of snap-shot type image acquisition cycles at a high-repetition rate during object illumination.
  62. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Digital image capture and processing system employing an image formation and detection subsystem having image formation optics providing a field of view (FOV) on an area-type image detection array, and a multi-mode illumination subsystem having near and far field LED-based illumination arrays for illuminating near and far field portions of said FOV.
  63. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Digital image capture and processing system employing an image formation and detection system having an area-type image detection array supporting single snap-shot and periodic snap-shot modes of image acquisition during object illumination and imaging operations.
  64. Kotlarsky, Anatoly; Zhu, Xiaoxun, Digital image capture and processing system employing multi-layer software-based system architecture permitting modification and/or extension of system features and functions by way of third party code plug-ins.
  65. Kotlarsky, Anatoly; Au, Ka Man; Zhu, Xiaoxun, Digital image capture and processing system employing real-time analysis of image exposure quality and the reconfiguration of system control parameters based on the results of such exposure quality analysis.
  66. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Digital image capture and processing system having a printed circuit (PC) board with a light transmission aperture, wherein an image detection array is mounted on the rear side of said PC board, and a linear array of light emitting diodes (LEDS) is mounted on the front surface of said PC board, and aligned with an illumination-focusing lens structure integrated within said imaging window.
  67. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Digital image capture and processing system having a printed circuit (PC) board with light transmission aperture, wherein first and second field of view (FOV) folding mirrors project the FOV of a digital image detection array on the rear surface of said PC board, through said light transmission aperture.
  68. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Digital image capture and processing system having a single printed circuit (PC) board with a light transmission aperture, wherein a first linear array of visible light emitting diodes (LEDs) are mounted on the rear side of the PC board for producing a linear targeting illumination beam, and wherein a second linear array of visible LEDs are mounted on the front side of said PC board for producing a field of visible illumination within the field of view (FOV) of the system.
  69. , Digital image capture and processing system having automatic illumination measurement and control capabilities realized using a photodetector operating independently of the image sensing array, and an image-processing based illumination metering program for automatically adjusting the illumination duration of the system during object illumination and imaging operations.
  70. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Digital image capture and processing system supporting a periodic snapshot mode of operation wherein during each image acquisition cycle, the rows of image detection elements in the image detection array are exposed simultaneously to illumination.
  71. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Digital image capture and processing system supporting a presentation mode of system operation which employs a combination of video and snapshot modes of image detection array operation during a single cycle of system operation.
  72. Knowles, C. Harry; Zhu, Xiaoxun; Xian, Tao, Digital image capturing and processing system employing a plurality of area-type illuminating and imaging stations projecting a plurality of coextensive area-type illumination and imaging zones into a 3D imaging volume, and controlling operations therewithin using.
  73. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao, Digital image capturing and processing system employing a plurality of coplanar illuminating and imaging stations projecting a complex of coplanar illumination and imaging planes into a 3D imaging volume so as to support pass-through and presentation modes of digital imaging at a point of sale (POS) environment.
  74. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao, Digital image capturing and processing system employing a plurality of coplanar illuminating and imaging stations projecting a plurality of coplanar illumination and imaging planes into a 3D imaging volume, and controlling operations therewithin using control data derived from motion data collected from the automated detection of objects passing through said 3D imaging volume.
  75. Zhu, Xiaoxun; Liu, Yong; Au, Ka Man; Hou, Rui; Yu, Hongpeng; Tao, Xi; Liu, Liang; Zhang, Wenhua; Kotlarsky, Anatoly; Ghosh, Sankar; Schnee, Michael; Spatafore, Pasqual; Amundsen, Thomas; Byun, Sung; Schmidt, Mark; Russell, Garrett; Bonanno, John; Knowles, C. Harry, Digital image capturing and processing system employing an area-type image sensing array exposed to narrow-band illumination from a narrow-band illumination subsystem for a time duration controlled using a photodetector operated independently from said area-type image sensing array.
  76. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao; Veksland, Michael; Kotlarsky, Anatoly; Furlong, John; Hernandez, Mark; Ciarlante, Nicola; Schmidt, Mark, Digital image capturing and processing system employing an image capturing and processing module and an integrated electronic weigh scale module having a load cell centrally located with respect to said image capturing and processing module.
  77. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao; Kotlarsky, Anatoly; Veksland, Michael; Hernandez, Mark; Gardner, John; Essinger, Steven; Giordano, Patrick; Kearney, Sean; Schmidt, Mark; Furlong, John A.; Ciarlante, Nicholas; Liu, Yong; Ren, Jie; Tao, Xi; Liu, JiBin; Zhuo, Ming; Ellis, Duane, Digital image capturing and processing system employing automatic object detection and spectral-mixing based illumination techniques.
  78. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao; Veksland, Michael, Digital image capturing and processing system employing coplanar illumination and imaging stations which generate coplanar illumination and imaging planes only when and where an object is being moved within the 3D imaging volume.
  79. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy, Digital image capturing and processing system employing imaging window protection plate having an aperture pattern and being disposed over said imaging window and beneath which resides a plurality of coplanar illumination and imaging stations.
  80. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao; Kotlarsky, Anatoly; Veksland, Michael; Hernandez, Mark; Gardner, John; Essinger, Steven; Giordano, Patrick; Kearney, Sean; Schmidt, Mark; Furlong, John A.; Ciarlante, Nicholas; Liu, Yong; Ren, Jie; Tao, Xi; Liu, JiBin; Zhuo, Ming; Ellis, Duane, Digital image capturing and processing system for automatically recognizing objects in a POS environment.
  81. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao; Veksland, Michael; Kotlarsky, Anatoly; Furlong, John; Hernandez, Mark; Ciarlante, Nicola; Schmidt, Mark, Digital image capturing and processing system for producing and projecting a complex of coplanar illumination and imaging planes into a 3D imaging volume and controlling illumination control parameters in said system using the detected motion and velocity of object.
  82. Knowles, C. Harry; Zhu, Xiaoxun; Xian, Tao, Digital image capturing and processing system for producing and projecting a plurality of coextensive area-type illumination and imaging zones into a 3D imaging volume and controlling illumination control parameters in said system using the detected motion of objects present therewithin.
  83. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao; Veksland, Michael; Kotlarsky, Anatoly; Furlong, John; Hernandez, Mark; Ciarlante, Nicola; Schmidt, Mark, Digital image capturing and processing system having a plurality of coplanar illumination and imaging subsystems, each employing a dual-type coplanar linear illumination and imaging engine that supports image-processing based object motion and velocity detection, and automatic image formation and detection along the coplanar illumination and imaging plane produced thereby.
  84. Zhu,Xiaoxun; Liu,Yong; Au,Ka Man; Hou,Rui; Yu,Hongpeng; Tao,Xi; Liu,Liang; Zhang,Wenhua; Kotlarsky,Anatoly, Digital image capturing and processing system producing narrow-band illumination when image sensor elements in a state of integration, and simultaneously detecting narrow-band illumination using an area-type image sensor and independently-operated photo-detector.
  85. Kotlarsky,Anatoly; Au,Ka Man; Zhu,Xiaoxun, Digital imaging-based bar code symbol reading system employing image cropping pattern generator and automatic cropped image processor.
  86. Kotlarsky, Anatoly; Zhu, Xiaoxun, Digital imaging-based code symbol reading system permitting modification of system features and functionalities.
  87. Wang, Ynjiun, Digital picture taking optical reader having hybrid monochrome and color image sensor array.
  88. Wang, Ynjiun, Digital picture taking optical reader having hybrid monochrome and color image sensor array.
  89. Wang, Ynjiun, Digital picture taking optical reader having hybrid monochrome and color image sensor array.
  90. Wang, Ynjiun, Digital picture taking optical reader having hybrid monochrome and color image sensor array.
  91. Zhu,Xiaoxun; Liu,Yong; Au,Ka Man; Tao,Xi; Kotlarsky,Anatoly; Russell,Garrett; Knowles,C. Harry, Digital-imaging based code symbol reading system employing a micro-computing platform supporting an event-driven multi-tier modular software architecture.
  92. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao, Digital-imaging based code symbol reading system employing a plurality of coplanar illumination and imaging subsystems, each having a local object motion detection subsystem for automatic detecting objects within the 3D imaging volume, and a local control subsystem for transmitting object detection state data to a global control subsystem for managing the state of operation of said coplanar illumination and imaging subsystems.
  93. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao, Digital-imaging based code symbol reading system employing a plurality of coplanar illumination and imaging subsystems, global object motion detection subsystem for automatically detecting objects within its 3D imaging volume, and global control subsystem for managing the state of operation of said coplanar illumination and imaging substems.
  94. Zhu,Xiaoxun; Liu,Yong; Au,Ka Man; Hou,Rui; Yu,Hongpeng; Tao,Xi; Liu,Liang; Zhang,Wenhua; Kotlarsky,Anatoly; Ghosh,Sankar; Schnee,Michael; Spatafore,Pasqual; Amundsen,Thomas; Byun,Sung; Schmidt,Mark; Russell,Garrett; Bonanno,John; Knowles,C. Harry, Digital-imaging based code symbol reading system employing an event-driven multi-tier modular software architecture and supporting automatic operating system login and loading of code symbol reading application.
  95. Zhu, Xiaoxun; Liu, Yong; Au, Ka Man; Tao, Xi; Kotlarsky, Anatoly; Schmidt, Mark; Russell, Garrett; Bonanno, John; Knowles, C. Harry, Digital-imaging code symbol reading system supporting automatic programming of system parameters for automatic configuration of said system in hands-on and hands-free modes of operation.
  96. Meier, Timothy P.; Hawley, Thomas P.; Longacre, Jr., Andrew; Hussey, Robert M., Dual-tasking decoder for improved symbol reading.
  97. Tsikos, Constantine J.; Schnee, Michael D.; Zhu, Xiaoxun; Amundsen, Thomas; Naylor, Charles A.; Dobbs, Russell Joseph; Knowles, Carl Harry, Hand-supportable LED-based planar illumination and imaging system.
  98. Tsikos, Constantine J.; Schnee, Michael D.; Zhu, Xiaoxun; Amundsen, Thomas; Naylor, Charles A.; Dobbs, Russell Joseph; Knowles, Carl Harry, Hand-supportable code symbol reader employing coplanar laser illumination and linear imaging.
  99. Tsikos, Constantine J.; Schnee, Michael D.; Zhu, Xiaoxun; Amundsen, Thomas; Naylor, Charles A.; Dobbs, Russell Joseph; Knowles, Carl Harry, Hand-supportable code symbol reader employing coplanar laser illumination and linear imaging.
  100. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Hand-supportable digital image capture and processing system employing visible targeting illumination beam projected from an array of visible light sources on the rear surface of a printed circuit (PC) board having a light transmission aperture, and reflected off multiple folding mirrors and projected through the light transmission aperture into a central portion of the field of view of said system.
  101. Kotlarsky, Anatoly; Zhu, Xiaoxun, Hand-supportable digital image capture and processing system supporting a multi-tier modular software architecture.
  102. Zhu,Xiaoxun; Liu,Yong; Au,Ka Man; Hou,Rui; Yu,Hongpeng; Tao,Xi; Liu,Liang; Zhang,Wenhua; Kotlarsky,Anatoly, Hand-supportable digital image capturing and processing system employing an area-type image sensing array exposed to illumination from an LED-based illumination array only when all sensor elements in said image-sensing array are activated and in a state of integration.
  103. Zhu, Xiaoxun; Liu, Yong; Au, Ka Man; Hou, Rui; Yu, Hongpeng; Tao, Xi; Liu, Liang; Zhang, Wenhua; Kotlarsky, Anatoly; Ghosh, Sankar; Schnee, Michael; Spatafore, Pasqual; Amundsen, Thomas; Byun, Sung; Schmidt, Mark; Russell, Garrett; Bonanno, John; Knowles, C. Harry, Hand-supportable digital image-processing based bar code symbol reading system employing image cropping zone (ICZ) framing and post-image capture cropping.
  104. Zhu,Xiaoxun; Liu,Yong; Au,Ka Man; Hou,Rui; Yu,Hongpeng; Tao,Xi; Liu,Liang; Zhang,Wenhua; Kotlarsky,Anatoly; Ghosh,Sankar; Schnee,Michael; Spatafore,Pasqual; Amundsen,Thomas; Byun,Sung; Schmidt,Mark; Russell,Garrett; Bonanno,John; Knowles,C. Harry, Hand-supportable digital imaging-based bar code symbol reader employing an event-driven system control subsystem, automatic IR-based object detection, and trigger-switch activated image capture and processing subsystem.
  105. Zhu,Xiaoxun; Liu,Yong; Au,Ka Man; Hou,Rui; Yu,Hongpeng; Tao,Xi; Liu,Liang; Zhang,Wenhua; Kotlarsky,Anatoly; Ghosh,Sankar; Schnee,Michael; Spatafore,Pasqual; Amundsen,Thomas; Byun,Sung; Schmidt,Mark; Russell,Garrett; Bonanno,John; Knowles,C. Harry, Hand-supportable imaging based bar code symbol reader employing automatic light exposure measurement and illumination control subsystem integrated therein.
  106. Zhu,Xiaoxun; Liu,Yong; Au,Ka Man; Hou,Rui; Yu,Hongpeng; Tao,Xi; Liu,Liang; Zhang,Wenhua; Kotlarsky,Anatoly; Ghosh,Sankar; Schnee,Michael; Spatafore,Pasqual; Amundsen,Thomas; Byun,Sung; Schmidt,Mark; Russell,Garrett; Bonanno,John; Knowles,C. Harry, Hand-supportable imaging-based bar code symbol reader employing a CMOS-type image sensor using global exposure techniques.
  107. Tsikos, Constantine J.; Schnee, Michael D.; Zhu, Xiaoxun; Amundsen, Thomas; Naylor, Charles A.; Dobbs, Russell Joseph; Knowles, Carl Harry, Hand-supportable planar laser illumination and imaging (PLIIM) device for producing a planar laser illumination beam (PLIB) coplanar with the field of view (FOV) of a linear image detection array.
  108. Tsikos, Constantine J.; Schnee, Michael D.; Zhu, Xiaoxun; Amundsen, Thomas; Naylor, Charles A.; Dobbs, Russell Joseph; Wirth, Allan; Jankevics, Andrew; Knowles, Carl Harry, Hand-supportable planar linear illumination and imaging (PLIIM) based code symbol reading system.
  109. Tsikos, Constantine J.; Knowles, C. Harry; Zhu, Xiaoxun; Schnee, Michael D.; Au, Ka Man; Wirth, Allan; Good, Timothy A.; Jankevics, Andrew; Ghosh, Sankar; Naylor, Charles A.; Amundsen, Thomas; Blake, Robert; Svedas, William; Defoney, Shawn; Skypala, Edward; Vatan, Pirooz; Dobbs, Russell Joseph; Kolis, George; Schmidt, Mark C.; Yorsz, Jeffery; Giordano, Patrick A.; Colavito, Stephen J.; Wilz, Sr., David W.; Schwartz, Barry E.; Kim, Steven Y.; Fisher, Dale; Tassell, Jon Van, Hand-supported planar laser illumination and imaging (PLIIM) based systems with laser despeckling mechanisms integrated therein.
  110. Kotlarsky, Anatoly; Zhu, Xiaoxun, Image capture and processing system supporting a multi-tier modular software architecture.
  111. Kotlarsky, Anatoly; Zhu, Xiaoxun, Image capture and processing system supporting a multi-tier modular software architecture.
  112. Kotlarsky, Anatoly; Zhu, Xiaoxun, Image capture and processing system supporting a multi-tier modular software architecture.
  113. Wang, Ynjiun P.; Havens, William H., Image reader comprising CMOS based image sensor array.
  114. Wang, Ynjiun P.; Havens, William H., Image reader comprising CMOS based image sensor array.
  115. Wang, Ynjiun P.; Havens, William H., Image reader comprising CMOS based image sensor array.
  116. Wang, Ynjiun P.; Havens, William H., Image reader comprising CMOS based image sensor array.
  117. Wang, Ynjiun P.; Havens, William H., Image reader comprising CMOS based image sensor array.
  118. Wang, Ynjiun P.; Havens, William H., Image reader comprising CMOS based image sensor array.
  119. Wang, Ynjiun; Havens, William H., Image reader having image sensor array.
  120. Wang, Ynjiun; Havens, William H., Image reader having image sensor array.
  121. Wang, Ynjiun; Havens, William H., Image reader having image sensor array.
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  123. Wang, Ynjiun; Havens, William H., Image reader having image sensor array.
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  136. Knowles, C. Harry; Zhu, Xiaoxun; Good, Timothy; Xian, Tao; Kotlarsky, Anatoly; Veksland, Michael; Hernandez, Mark; Gardner, John; Essinger, Steven; Giordano, Patrick; Kearney, Sean; Schmidt, Mark; Furlong, John A.; Ciarlante, Nicholas; Liu, Yong; Ren, Jie; Tao, Xi; Liu, JiBin; Zhuo, Ming; Ellis, Duane, Laser illumination beam generation system employing despeckling of the laser beam using high-frequency modulation of the laser diode current and optical multiplexing of the component laser beams.
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  152. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Method of blocking a portion of illumination rays generated by a countertop-supported digital imaging system, and preventing illumination rays from striking the eyes of the system operator or nearby consumers during operation of said countertop-supported digital image capture and processing system installed at a retail point of sale (POS) station.
  153. Kotlarsky, Anatoly; Zhu, Xiaoxun; Veksland, Michael; Au, Ka Man; Giordano, Patrick; Yan, Weizhen; Ren, Jie; Smith, Taylor; Miraglia, Michael V.; Knowles, C. Harry; Mandal, Sudhin; De Foney, Shawn; Allen, Christopher; Wilz, Sr., David M., Method of capturing and processing digital images of an object within the field of view (FOV) of a hand-supportable digitial image capture and processing system.
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  162. Zhu, Xiaoxun; Liu, Yong; Au, Ka Man; Hou, Rui; Yu, Hongpeng; Tao, Xi; Liu, Liang; Zhang, Wenhua; Kotlarsky, Anatoly; Ghosh, Sankar; Schnee, Michael; Spatafore, Pasqual; Amundsen, Thomas; Byun, Sung; Schmidt, Mark; Russell, Garrett; Bonanno, John; Knowles, C. Harry, Method of reading bar code symbols using a digital-imaging based code symbol reading system employing an event-driven multi-tier modular software architecture and supporting automatic operating system login and loading of bar code symbol reading application.
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  166. Kotlarsky, Anatoly; Au, Ka Man; Smith, Taylor; Mandal, Sudhin, Method of unlocking restricted extended classes of features and functionalities embodied within a digital image capture and processing system by reading feature/functionality-unlocking type code symbols.
  167. Wang, Ynjiun, Method utilizing digital picture taking optical reader having hybrid monochrome and color image sensor.
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  174. Havens, William H.; Barber, Charles P.; Gannon, Colleen; Gardiner, Robert C.; Hennick, Robert J.; Pettinelli, Jr., John A., Optical reader having a plurality of imaging modules.
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  181. Tsikos, Constantine J.; Knowles, C. Harry; Zhu, Xiaoxun; Schnee, Michael D.; Au, Ka Man; Wirth, Allan; Good, Timothy A.; Jankevics, Andrew; Ghosh, Sankar; Naylor, Charles A.; Amundsen, Thomas; Blake, Robert; Svedas, William; Defoney, Shawn; Skypala, Edward; Vatan, Pirooz; Dobbs, Russell Joseph; Kolis, George; Schmidt, Mark S.; Yorsz, Jeffery; Giordano, Patrick A.; Colavito, Stephen J.; Wilz, Sr., David W.; Schwartz, Barry E.; Kim, Steven Y.; Fisher, Dale; Van Tassell, Jon, Planar laser illumination and imaging (PLIIM) based engine.
  182. Tsikos, Constantine J.; Knowles, C. Harry; Zhu, Xiaoxun; Schnee, Michael D.; Au, Ka Man; Wirth, Allan; Good, Timothy A.; Jankevics, Andrew; Ghosh, Sankar; Naylor, Charles A.; Amundsen, Thomas; Blake, Robert; Svedas, William; Defoney, Shawn; Skypala, Edward; Vatan, Pirooz; Dobbs, Russell Joseph; Kolis, George; Schmidt, Mark C.; Yorsz, Jeffery; Giordano, Patrick A.; Colavito, Stephen J.; Wilz, Sr., David W.; Schwartz, Barry E.; Kim, Steven Y.; Fisher, Dale; Tassell, Jon Van, Planar laser illumination and imaging (PLIIM) systems with integrated despeckling mechanisms provided therein.
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  196. Tsikos, Constantine J.; Knowles, C. Harry; Zhu, Xiaoxun; Schnee, Michael D.; Au, Ka Man; Wirth, Allan; Good, Timothy A.; Jankevics, Andrew; Ghosh, Sankar; Naylor, Charles A.; Amundsen, Thomas; Blake, Robert; Svedas, William; Defoney, Shawn; Skypala, Edward; Vatan, Pirooz; Dobbs, Russell Joseph; Kolis, George; Schmidt, Mark C.; Yorsz, Jeffery; Giordano, Patrick A.; Colavito, Stephen J.; Wilz, Sr., David W.; Schwartz, Barry E.; Kim, Steven Y.; Fisher, Dale; Tassell, Jon Van, Tunnel-type digital imaging system for use within retail shopping environments such as supermarkets.
  197. Tsikos, Constantine J.; Knowles, C. Harry; Zhu, Xiaoxun; Schnee, Michael D.; Au, Ka Man; Wirth, Allan; Good, Timothy A.; Jankevics, Andrew; Ghosh, Sankar; Naylor, Charles A.; Amundsen, Thomas; Blake, Robert; Svedas, William; Defoney, Shawn; Skypala, Edward; Vatan, Pirooz; Dobbs, Russell Joseph; Kolis, George; Schmidt, Mark C.; Yorsz, Jeffery; Giordano, Patrick A.; Colavito, Stephen J.; Wilz, Sr., David W.; Schwartz, Barry E.; Kim, Steven Y.; Fisher, Dale; Van Tassell, Jon, Tunnel-type digital imaging system for use within retail shopping environments such as supermarkets.
  198. Kotlarsky, Anatoly; Zhu, Xiaoxun, digital image capturing and processing system allowing third-parties to extend the features and functions of said system, and modify the standard behavior thereof without permanently modifying the standard features and functions thereof.
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