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US Patent 7436494 Three-dimensional ladar module with alignment reference insert circuitry

Patent 7436494 was granted and assigned to Irvine Sensors Corporation (ISC) on October, 2008 by the United States Patent and Trademark Office.

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Patent
Patent

Patent attributes

Current Assignee
Irvine Sensors Corporation (ISC)
Irvine Sensors Corporation (ISC)
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
7436494
Date of Patent
October 14, 2008
Patent Application Number
11706724
Date Filed
February 15, 2007
Patent Citations Received
‌
US Patent 12123950 Hybrid LADAR with co-planar scanning and imaging field-of-view
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US Patent 12078756 Methods and apparatus for array based lidar systems with reduced interference
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US Patent 12078798 Ladar transmitter with ellipsoidal reimager
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US Patent 12096121 Precision reflectivity and ambient light removal for a geiger mode/single photon active sensor system
0
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US Patent 11675059 Hyper temporal lidar with elevation-prioritized shot scheduling
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US Patent 11686846 Bistatic lidar architecture for vehicle deployments
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US Patent 11686845 Hyper temporal lidar with controllable detection intervals based on regions of interest
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US Patent 11693099 Method and apparatus for an adaptive ladar receiver
0
...
Patent Primary Examiner
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Thomas H. Tarcza
Patent abstract

A 3-D LADAR imaging system incorporating stacked microelectronic layers is provided. A light source such as a laser is imaged upon a target through beam shaping optics. Photons reflected from the target are collected and imaged upon a detector array though collection optics. The detector array signals are fed into a multilayer processing module wherein each layer includes detector signal processing circuitry. The detector array signals are amplified, compared to a user-defined threshold, digitized and fed into a high speed FIFO shift register range bin. Dependant on the value of the digit contained in the bins in the register, and the digit's bin location, the time of a photon reflection from a target surface can be determined. A T0 trigger signal defines the reflection time represented at each bin location by resetting appropriate circuitry to begin processing.

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