Patents by Inventor Patrick Giordano

Patrick Giordano has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20050211782
    Abstract: A hand-supportable bar code symbol reading device having a laser scanning engine that is controlled to selectively operate in either an omni-directional scan mode or a single line scan mode. In the single line scan mode of operation, symbol character data produced by the laser scanning engine is communicated to a host device in response to an activation signal produced by a data transmission switch. In the omni-directional scan mode, symbol character data is communicated to the host device irrespective of the activation signal. Preferably, mode selection means selectively operates the laser scanning engine in either the omni-directional scan mode of operation or the single line scan mode of operation in response to placement of the device in a support stand, thereby enabling automatic operation as a stationary hands-free omni-directional projection scanner (in stand), and automatic operation as a portable hand-held line scanner (out of stand).
    Type: Application
    Filed: February 17, 2005
    Publication date: September 29, 2005
    Inventors: William Martin, David Wilz, Sergio Movsessian, Thomas Amundsen, Patrick Giordano
  • Publication number: 20050199727
    Abstract: Disclosed is an automatically-activated wireless code symbol reading system comprising a bar code symbol reading mechanism contained within a hand-supportable housing having a manually-activatable data transmission switch. During symbol reading operations, the bar code symbol reading mechanism automatically generates a visible laser scanning pattern for repeatedly reading one or more bar code symbols on an object during a bar code symbol reading cycle, and automatically generating a new symbol character data string in response to each bar code symbol read thereby. During system operation, the user visually aligns the visible laser scanning pattern with a particular bar code symbol on an object (e.g. product, bar code menu, etc.) so that the bar code symbol is scanned, detected and decoded in a cyclical manner.
    Type: Application
    Filed: July 3, 2003
    Publication date: September 15, 2005
    Inventors: Mark Schmidt, Garrett Russell, David Wilz, Robert Blake, Donald Hudrick, Stephen Colavito, C. Knowles, George Rockstein, Xiaoxun Zhu, John Bonanno, Sung Byun, Congwei Xu, Ming Jiang, Lin Wang, Meng Hu, Hongjian Jin, MingQuing Ji, Shamei Shi, Ka Au, Patrick Giordano
  • Publication number: 20050199728
    Abstract: Disclosed is an automatically-activated wireless code symbol reading system comprising a bar code symbol reading mechanism contained within a hand-supportable housing having a manually-activatable data transmission switch. During symbol reading operations, the bar code symbol reading mechanism automatically generates a visible laser scanning pattern for repeatedly reading one or more bar code symbols on an object during a bar code symbol reading cycle, and automatically generating a new symbol character data string in response to each bar code symbol read thereby. During system operation, the user visually aligns the visible laser scanning pattern with a particular bar code symbol on an object (e.g. product, bar code menu, etc.) so that the bar code symbol is scanned, detected and decoded in a cyclical manner.
    Type: Application
    Filed: July 30, 2003
    Publication date: September 15, 2005
    Inventors: Mark Schmidt, Garrett Russell, David Wilz, Robert Blake, Donald Hudrick, Stephen Colavito, C. Knowles, George Rockstein, Xiaoxun Zhu, John Bonanno, Sung Byun, Congwei Xu, Min Jiang, Lin Wang, Meng Hu, Hongjian Jin, MingQing Ji, Shamei Shi, Ka Au, Patrick Giordano
  • Publication number: 20050199726
    Abstract: Disclosed is an automatically-activated wireless code symbol reading system comprising a bar code symbol reading mechanism contained within a hand-supportable housing having a manually-activatable data transmission switch. During symbol reading operations, the bar code symbol reading mechanism automatically generates a visible laser scanning pattern for repeatedly reading one or more bar code symbols on an object during a bar code symbol reading cycle, and automatically generating a new symbol character data string in response to each bar code symbol read thereby. During system operation, the user visually aligns the visible laser scanning pattern with a particular bar code symbol on an object (e.g. product, bar code menu, etc.) so that the bar code symbol is scanned, detected and decoded in a cyclical manner.
    Type: Application
    Filed: July 1, 2003
    Publication date: September 15, 2005
    Applicant: Metrologic Instruments, Inc.
    Inventors: Mark Schmidt, Garrett Russell, David Wilz, Robert Blake, Donald Hudrick, Stephen Colavito, C. Knowles, George Rockstein, Xiaoxun Zhu, John Bonanno, Sung Byun, Congwei Xu, Ming Jiang, Lin Wang, Meng Hu, Hongjian Jin, MingQuing Ji, Shamei Shi, Ka Au, Patrick Giordano
  • Patent number: 6913202
    Abstract: Methods of and systems for illuminating objects using planar laser illumination beams having substantially-planar spatial distribution characteristics that extend through the field of view (FOV) of image formation and detection modules employed in such systems. Each planar laser illumination beam is produced from a planar laser illumination beam array (PLIA) comprising an plurality of planar laser illumination modules (PLIMs). Each PLIM comprises a visible laser diode (VLD, a focusing lens, and a cylindrical optical element arranged therewith. The individual planar laser illumination beam components produced from each PLIM are optically combined to produce a composite substantially planar laser illumination beam having substantially uniform power density characteristics over the entire spatial extend thereof and thus the working range of the system.
    Type: Grant
    Filed: June 28, 2002
    Date of Patent: July 5, 2005
    Assignee: Metrologic Instruments, Inc.
    Inventors: Constantine J. Tsikos, C. Harry Knowles, Xiaoxun Zhu, Michael D. Schnee, Thomas Amundsen, Mark C. Schmidt, Patrick A. Giordano
  • Patent number: 6905071
    Abstract: A multi-mode laser-based bar code symbol reading device having a hand-supportable housing with a light transmission aperture, wherethrough visible light can exit and enter the hand-supportable housing. A laser scanning engine, disposed within the hand-supportable housing, is controlled to selectively operate in either an omni-directional scanning mode or a single line scanning mode. In the omni-directional scanning mode, the laser scanning engine projects an omni-directional scanning pattern through the light transmission aperture, detects and decodes bar code symbols on objects passing through the omni-directional scanning pattern, and produces symbol character data representative of decoded bar code symbols.
    Type: Grant
    Filed: November 13, 2002
    Date of Patent: June 14, 2005
    Assignee: Metrologic Instruments, Inc.
    Inventors: Mark C. Schmidt, Garrett Russell, William Martin, David M. Wilz, Sr., Thomas Amundsen, Patrick Giordano, Shane Edmonds, Kevin DiPlacido, George Kolis, Stephen Colavito, Sergio Movsessian, Matthew Jefferson, C. Harry Knowles
  • Publication number: 20050121523
    Abstract: Disclosed is an automatically-activated wireless code symbol reading system comprising a bar code symbol reading mechanism contained within a hand-supportable housing having a manually-activatable data transmission switch. During symbol reading operations, the bar code symbol reading mechanism automatically generates a visible laser scanning pattern for repeatedly reading one or more bar code symbols on an object during a bar code symbol reading cycle, and automatically generating a new symbol character data string in response to each bar code symbol read thereby. During system operation, the user visually aligns the visible laser scanning pattern with a particular bar code symbol on an object (e.g. product, bar code menu, etc.) so that the bar code symbol is scanned, detected and decoded in a cyclical manner.
    Type: Application
    Filed: July 1, 2003
    Publication date: June 9, 2005
    Applicant: Metrologic Instruments, Inc.
    Inventors: Mark Schmidt, Garrett Russell, David Wilz, Robert Blake, Donald Hudrick, Stephen Colavito, C. Knowles, George Rockstein, Xiaoxun Zhu, John Bonanno, Sung Byun, Congwei Xu, Min Jiang, Lin Wang, Meng Hu, Hongjian Jin, MingQing Ji, Shamei Shi, Ka Au, Patrick Giordano
  • Publication number: 20050082371
    Abstract: An automatically-activated wireless code symbol reading system comprising a hand-supportable housing having a manually-activatable data transmission switch under automatic communication range dependent control. When a bar code symbol is read, the bar code reader is located inside the predetermined RF data communication range of the system, then the symbol character data string, produced at substantially the same time as the manual activation of the data transmission switch, is transmitted to the base station over the wireless RF communication link. If the device is outside the range, then an audible and/or visual indication is automatically generated, and the packaged symbol character data string is packaged and transmitted to a data storage buffer aboard the bar code reader. Then when the bar code symbol reader is moved within the communication range of the system, the buffered/packaged symbol character data is automatically transmitted to the base station by the RF-based data communication link.
    Type: Application
    Filed: January 12, 2004
    Publication date: April 21, 2005
    Applicant: Metrologic Instruments, Inc.
    Inventors: Mark Schmidt, Garrett Russell, David Wilz, Robert Blake, Donald Hudrick, Stephen Colavito, C. Knowles, George Rockstein, Xiaoxun Zhu, John Bonanno, Sung Byun, Congwei Xu, Min Jiang, Lin Wang, Meng Hu, Hongjian Jin, MingQing Ji, Shamei Shi, Ka Au, Patrick Giordano
  • Patent number: 6857572
    Abstract: A hand-supportable bar code symbol reading device having a laser scanning engine that is controlled to selectively operate in either an omni-directional scan mode or a single line scan mode. In the single line scan mode of operation, symbol character data produced by the laser scanning engine is communicated to a host device in response to an activation signal produced by a data transmission switch. In the omni-directional scan mode, symbol character data is communicated to the host device irrespective of the activation signal. Preferably, mode selection means selectively operates the laser scanning engine in either the omni-directional scan mode of operation or the single line scan mode of operation in response to placement of the device in a support stand, thereby enabling automatic operation as a stationary hands-free omni-directional projection scanner (in stand), and automatic operation as a portable hand-held line scanner (out of stand).
    Type: Grant
    Filed: November 13, 2001
    Date of Patent: February 22, 2005
    Assignee: Metrologic Instruments, Inc.
    Inventors: William Martin, David M. Wilz, Sr., Sergio Movsessian, Thomas Amundsen, Patrick A. Giordano
  • Publication number: 20040251307
    Abstract: Disclosed is an automatically-activated wireless code symbol reading system comprising a bar code symbol reading mechanism contained within a hand-supportable housing having a manually-activatable data transmission switch. During symbol reading operations, the bar code symbol reading mechanism automatically generates a visible laser scanning pattern for repeatedly reading one or more bar code symbols on an object during a bar code symbol reading cycle, and automatically generating a new symbol character data string in response to each bar code symbol read thereby. During system operation, the user visually aligns the visible laser scanning pattern with a particular bar code symbol on an object (e.g. product, bar code menu, etc.) so that the bar code symbol is scanned, detected and decoded in a cyclical manner.
    Type: Application
    Filed: July 3, 2003
    Publication date: December 16, 2004
    Applicant: Metrologic Instruments, Inc.
    Inventors: Mark Schmidt, Garrett Russell, David M. Wilz, Robert Blake, Donald T. Hudrick, Stephen J. Colavito, C. Harry Knowles, George Rockstein, Xiaoxun Zhu, John Bonanno, Sung Byun, Congwei Xu, Min Jiang, Lin Wang, Meng Hu, Hongjian Jin, MingQing Ji, Shamei Shi, Ka Man Au, Patrick Giordano
  • Patent number: 6791727
    Abstract: Method of scanning information-bearing elements by providing a scanning beam focused to a spot at a focal location, moving said scanning beam relative to information-bearing elements, detecting light reflected from said information-bearing elements to provide a signal representing the information carried by such element, and repeatedly varying the spot size and depth of field of the focused beam during said moving and detecting steps so as to vary the beam characteristics between a first condition in which the beam has a small spot size at said focus but a small depth of field and a second condition in which the beam has a larger spot size at said focus but a larger depth of field.
    Type: Grant
    Filed: December 24, 2003
    Date of Patent: September 14, 2004
    Assignee: Metrologic Instruments, Inc.
    Inventors: Patrick A. Giordano, Thomas Amundsen, Timothy A. Good
  • Publication number: 20040173684
    Abstract: A multi-mode laser-based bar code symbol reading device having a hand-supportable housing with a light transmission aperture, wherethrough visible light can exit and enter the hand-supportable housing. A laser scanning engine, disposed within the hand-supportable housing, is controlled to selectively operate in either an omni-directional reading mode or a uni-directional bar code reading mode. In the omni-directional bar code reading mode, the laser scanning engine projects pattern through the light transmission aperture, an omni-directional laser scanning pattern producing multiple laser scanning lines with substantially uniform spatial and temporal intensity characteristics at any given scanning plane parallel to the light transmission aperture within the working distance of the system, and detects and decodes bar code symbols on objects passing through the omni-directional scanning pattern, and produces symbol character data representative of decoded bar code symbols.
    Type: Application
    Filed: October 11, 2003
    Publication date: September 9, 2004
    Applicant: Metrologic Instruments, Inc.
    Inventors: David M. Wilz, Garrett Russell, Mark C. Schmidt, Mikhail Veksland, William Martin, Patrick Giordano, Shane Edmonds, Kevin DiPlacido, Shawn Defoney, Stephen Colavito, Donald Hudrick, James Osborn, Thomas Amundsen, Benjamin Hejl
  • Publication number: 20040135934
    Abstract: Illumination apparatus includes a light source which directs a polarized source beam in a downstream direction along an optical axis and desirably focuses the beam. A polarization-altering element downstream from the source such as a birefringent plate alters the polarization in a portion or portions of the source beam, so that the altered beam includes portions having different polarization directions. The altered beam passes downstream through a polarization-selective filter. The output beam from the polarization-selective filter can include either portion depending on the orientation of the filter. The arrangement can be used to provide a spot of a given size and shape at the focal location in a scanner such as a bar code scanner. The size and depth of field of the spot can be varied dynamically during operation.
    Type: Application
    Filed: December 24, 2003
    Publication date: July 15, 2004
    Applicant: Metrologic Instruments, Inc.
    Inventors: Patrick A. Giordano, Thomas Amundsen, Timothy A. Good
  • Publication number: 20040136042
    Abstract: Method of scanning information-bearing elements by providing a scanning beam focused to a spot at a focal location, moving said scanning beam relative to information-bearing elements, detecting light reflected from said information-bearing elements to provide a signal representing the information carried by such element, and repeatedly varying the spot size and depth of field of the focused beam during said moving and detecting steps so as to vary the beam characteristics between a first condition in which the beam has a small spot size at said focus but a small depth of field and a second condition in which the beam has a larger spot size at said focus but a larger depth of field.
    Type: Application
    Filed: December 24, 2003
    Publication date: July 15, 2004
    Applicant: Metrologic Instruments, Inc.
    Inventors: Patrick A. Giordano, Thomas Amundsen, Timothy A. Good
  • Patent number: 6714351
    Abstract: Illumination apparatus includes a light source which directs a polarized source beam in a downstream direction along an optical axis and desirably focuses the beam. A polarization-altering element downstream from the source alters the polarization in a portion or portions of the source beam, so that the altered beam includes portions having different polarization directions. The altered beam passes downstream through a polarization-selective filter. The output beam from the polarization-selective filter can include either portion depending on the orientation of the filter. The arrangement can be used to provide a spot of a given size and shape at the focal location in a scanner such as a bar code scanner. The size and depth of field of the spot can be varied dynamically during operation.
    Type: Grant
    Filed: December 28, 2000
    Date of Patent: March 30, 2004
    Assignee: Metrologic Instruments, Inc.
    Inventors: Patrick A. Giordano, Thomas Amundsen, Timothy A. Good
  • Publication number: 20040016812
    Abstract: Disclosed is an automatically-activated wireless code symbol reading system comprising a bar code symbol reading mechanism contained within a hand-supportable housing having a manually-activatable data transmission switch. During symbol reading operations, the bar code symbol reading mechanism automatically generates a visible laser scanning pattern for repeatedly reading one or more bar code symbols on an object during a bar code symbol reading cycle, and automatically generating a new symbol character data string in response to each bar code symbol read thereby. During system operation, the user visually aligns the visible laser scanning pattern with a particular bar code symbol on an object (e.g. product, bar code menu, etc.) so that the bar code symbol is scanned, detected and decoded in a cyclical manner.
    Type: Application
    Filed: January 12, 2003
    Publication date: January 29, 2004
    Applicant: Metrologic Instruments, Inc.
    Inventors: Mark Schmidt, Garrett Russell, David M. Wilz, Robert Blake, Donald T. Hudrick, Stephen J. Colavito, C. Harry Knowles, George Rockstein, Xiaoxun Zhu, John Bonanno, Sung Byun, Congwei Xu, Ming Jiang, Lin Wang, Meng Hu, Hongjian Jin, MingQing Ji, Shamei Shi, Ka Man Au, Patrick Giordano
  • Publication number: 20030222146
    Abstract: A multi-mode laser-based bar code symbol reading device having a hand-supportable housing with a light transmission aperture, wherethrough visible light can exit and enter the hand-supportable housing. A laser scanning engine, disposed within the hand-supportable housing, is controlled to selectively operate in either an omni-directional scanning mode or a single line scanning mode. In the omni-directional scanning mode, the laser scanning engine projects an omni-directional scanning pattern through the light transmission aperture, detects and decodes bar code symbols on objects passing through the omni-directional scanning pattern, and produces symbol character data representative of decoded bar code symbols.
    Type: Application
    Filed: November 13, 2002
    Publication date: December 4, 2003
    Applicant: Metrologic Instruments, Inc.
    Inventors: Mark C. Schmidt, Garrett Russell, William Martin, David M. Wilz, Thomas Amundsen, Patrick Giordano, Shane Edmonds, Kevin DiPlacido, George Kolis, Stephen Colavito, Sergio Movsessian, Matthew Jefferson, C. Harry Knowles
  • Publication number: 20030218070
    Abstract: Methods of and systems for illuminating objects using planar laser illumination beams having substantially-planar spatial distribution characteristics that extend through the field of view (FOV) of image formation and detection modules employed in such systems. Each planar laser illumination beam is produced from a planar laser illumination beam array (PLIA) comprising an plurality of planar laser illumination modules (PLIMs). Each PLIM comprises a visible laser diode (VLD, a focusing lens, and a cylindrical optical element arranged therewith. The individual planar laser illumination beam components produced from each PLIM are optically combined to produce a composite substantially planar laser illumination beam having substantially uniform power density characteristics over the entire spatial extend thereof and thus the working range of the system.
    Type: Application
    Filed: May 16, 2002
    Publication date: November 27, 2003
    Applicant: Metrologic Instruments, Inc.
    Inventors: Constantine J. Tsikos, C. Harry Knowles, Xiaoxun Zhu, Michael D. Schnee, Ka Man Au, Allan Wirth, Timothy A. Good, Andrew Jankevics, Sankar Ghosh, Charles A. Naylor, Thomas Amundsen, Robert Blake, William Svedas, Shawn Defoney, Edward Skypala, Pirooz Vatan, Russell Joseph Dobbs, George Kolis, Mark C. Schmidt, Jeffery Yorsz, Patrick A. Giordano, Stephen J. Colavito, David W. Wilz, Barry E. Schwartz, Steven Y. Kim, Dale Fisher, Jon Van Tassell
  • Publication number: 20030146282
    Abstract: Methods of and systems for illuminating objects using planar laser illumination beams having substantially-planar spatial distribution characteristics that extend through the field of view (FOV) of image formation and detection modules employed in such systems. Each planar laser illumination beam is produced from a planar laser illumination beam array (PLIA) comprising an plurality of planar laser illumination modules (PLIMs). Each PLIM comprises a visible laser diode (VLD, a focusing lens, and a cylindrical optical element arranged therewith The individual planar laser illumination beam components produced from each PLIM are optically combined to produce a composite substantially planar laser illumination beam having substantially uniform power density characteristics over the entire spatial extend thereof and thus the working range of the system.
    Type: Application
    Filed: February 6, 2002
    Publication date: August 7, 2003
    Applicant: Metrologic Instruments, Inc.
    Inventors: Constantine J. Tsikos, Allan Wirth, Timothy A. Good, Andrew Jankevics, Steve Y. Kim, Thomas Amundsen, Charles A. Naylor, Russell Joseph Dobbs, Patrick A. Giordano, Jeffery Yorsz, Mark S. Schmidt, Stephen J. Colavito, David M. Wilz, Ka Man Au, William Svedas, Sankar Ghosh, Michael D. Schnee, Xiaoxun Zhu, C. Harry Knowles
  • Publication number: 20030102379
    Abstract: Methods of and systems for illuminating objects using planar laser illumination beams having substantially-planar spatial distribution characteristics that extend through the field of view (FOV) of image formation and detection modules employed in such systems. Each planar laser illumination beam is produced from a planar laser illumination beam array (PLIA) comprising an plurality of planar laser illumination modules (PLIMs). Each PLIM comprises a visible laser diode (VLD, a focusing lens, and a cylindrical optical element arranged therewith. The individual planar laser illumination beam components produced from each PLIM are optically combined to produce a composite substantially planar laser illumination beam having substantially uniform power density characteristics over the entire spatial extend thereof and thus the working range of the system.
    Type: Application
    Filed: June 28, 2002
    Publication date: June 5, 2003
    Applicant: Metrologic Instruments Inc.
    Inventors: Constantine J. Tsikos, C. Harry Knowles, Timothy A. Good, Michael D. Schnee, Xiaoxun Zhu, Thomas Amundsen, Mark C. Schmidt, Patrick A. Giordano