Inventor
Mark Hernandez
Inventor
Bridgeton, NJ, US
Overview
Patents· 35 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
G06Kprimary
G06KGraphical data reading23%
G06QInformation and communication technology [ict] specially adapted for administrative, commercial, financial, managerial or supervisory purposes17%
G06VImage or video recognition or understanding17%
G07GRegistering the receipt of cash, valuables, or tokens16%
A47FSpecial furniture, fittings, or accessories for shops, storehouses, bars, restaurants or the like13%
G02BOptical elements, systems or apparatus13%
PatentTitleYear
9,576,158'Decodable indicia reading terminal with indicia analysis functionality'20179,355,294'Method and apparatus for reading optical indicia using a plurality of data sources'20169,251,387'Decodable indicia reading terminal with indicia analysis functionality'20169,033,240'Method and apparatus for reading optical indicia using a plurality of data sources'20158,740,085'System having imaging assembly for use in output of image data'20148,678,286'Method and apparatus for reading optical indicia using a plurality of data sources'20148,636,212'Decodable indicia reading terminal with indicia analysis functionality'20148,590,789'Scanner with wake-up mode'20138,550,335'Encoded information reading terminal in communication with peripheral point-of-sale devices'20138,479,994'Individualized scanner'20138,172,141'Laser beam despeckling devices'20128,042,740'Method of reading bar code symbols on objects at a point-of-sale station by passing said objects through a complex of stationary coplanar illumination and imaging planes projected into a 3D imaging volume'20117,878,407'POS-based digital image capturing and processing system employing automatic object motion detection and spectral-mixing based illumination techniques'20117,806,335'Digital image capturing and processing system for automatically recognizing objects in a POS environment'20107,806,336'Laser beam generation system employing a laser diode and high-frequency modulation circuitry mounted on a flexible circuit'20107,793,841'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'20107,784,698'Digital image capturing and processing system for automatically recognizing graphical intelligence graphically represented in digital images of objects'20107,784,695'Planar laser illumination module (PLIM) employing high-frequency modulation (HFM) of the laser drive currents and optical multplexing of the output laser beams'20107,775,436'Method of driving a plurality of visible and invisible LEDs so as to produce an illumination beam having a dynamically managed ratio of visible to invisible (IR) spectral energy/power during object illumination and imaging operations'20107,770,796'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'20107,762,465'Device for optically multiplexing a laser beam'20107,731,091'Digital image capturing and processing system employing automatic object detection and spectral-mixing based illumination techniques'20107,665,665'Digital illumination and imaging subsystem employing despeckling mechanism employing high-frequency modulation of laser diode drive current and optical beam multiplexing techniques'20107,661,597'Coplanar laser illumination and imaging subsystem employing spectral-mixing and despeckling of laser illumination'20107,651,028'Intelligent system for automatically recognizing objects at a point of sale (POS) station by omni-directional imaging of the objects using a complex of coplanar illumination and imaging subsystems'20107,614,560'Method of illuminating objects at a point of sale (POS) station by adaptively controlling the spectral composition of the wide-area illumination beam produced from an illumination subsystem within an automatic digital image capture and processing system'20097,588,188'Pos-based digital image capturing and processing system using automatic object detection, spectral-mixing based illumination and linear imaging techniques'20097,575,170'POS-based digital image capturing and processing system using automatic object detection, spectral-mixing based illumination and linear imaging techniques'20097,571,858'POS-based digital image capturing and processing system using automatic object detection, spectral-mixing based illumination and linear imaging techniques'20097,546,952'Method of illuminating objects during digital image capture operations by mixing visible and invisible spectral illumination energy at point of sale (POS) environments'20097,543,749'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'20097,537,165'Omni-directional digital image capturing and processing system employing coplanar illumination and imaging planes and area-type illumination and imaging zones within the system housing'20097,530,497'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'20097,520,433'Method for intelligently controlling the illumination and imagine of objects as they are moved through the 3D imaging volume of a digital image capturing and processing system'20097,516,898'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'2009Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
2009–2017Patents assigned to METROLOGIC INSTR INC (29)· patent assignee history
2009–2014Based in Bridgeton, NJ, US· patent location history
2012–2014Patents assigned to HERNANDEZ MARK (6)· patent assignee history
2012–2014Patents assigned to FURLONG JOHN A (3)· patent assignee history
2013–2016Patents assigned to HONEYWELL INT INC (4)· patent assignee history
2013–2014Patents assigned to NAHILL JAMES (4)· patent assignee history
2014–2016Based in Blackwood, NJ, US· patent location history
2016Based in Morristown, NJ, US· patent location history
2017Based in Mount Laurel, NJ, US· patent location history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| METROLOGIC INSTR INC | 29 | 2009–2017 |
| HERNANDEZ MARKself | 6 | 2012–2014 |
| HONEYWELL INT INC | 4 | 2013–2016 |
| NAHILL JAMES | 4 | 2013–2014 |
| FURLONG JOHN A | 3 | 2012–2014 |
Locations
| Location | Patents | Span |
|---|---|---|
| Bridgeton, New Jersey, US | 30 | 2009–2014 |
| Blackwood, New Jersey, US | 3 | 2014–2016 |
| Mount Laurel, New Jersey, US | 1 | 2017 |
| Morristown, New Jersey, US | 1 | 2016 |