US2008308639A1PendingUtilityA1

Scanning devices and methods using surface emitting laser diodes

Assignee: STERN MIKLOSPriority: Oct 25, 1993Filed: Aug 7, 2008Published: Dec 18, 2008
Est. expiryOct 25, 2013(expired)· nominal 20-yr term from priority
G06K 7/10702G06K 7/10742
53
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Claims

Abstract

A bar code scanning device, system and method that utilizes one or more vertical cavity surface emitting laser diodes for producing at least one laser beam, where the vertical cavity surface emitting laser diodes are disposed on a substrate, and wherein the produced laser beam is substantially an essential single spatial mode laser beam. The bar code scanning device, system and method of present invention also comprise a photodiode attached to the substrate and arranged to receive at least a portion of the beam of light reflected off the scanned bar code or symbol.

Claims

exact text as granted — not AI-modified
1 - 210 . (canceled) 
   
   
       211 . A device for scanning a dataform, comprising:
 a laser diode for producing a laser beam;   a movable micromachined scanning mirror for scanning the laser beam across the dataform for reflection therefrom as return light;   a collecting optic for collecting the return light from the dataform;   a stationary detector for detecting the return light collected by the collecting optic; and   a support on which the laser diode, the scanning mirror and the stationary detector are commonly mounted to constitute a scan module.   
   
   
       212 . The device of  claim 211 , wherein the collecting optic collects the return light directly from the dataform. 
   
   
       213 . The device of  claim 211 , wherein the support is a printed circuit board. 
   
   
       214 . The device of  claim 211 , wherein the scanning mirror is connected to a silicon substrate. 
   
   
       215 . The device of  claim 211 , wherein the scanning mirror is driven electrostatically. 
   
   
       216 . The device of  claim 211 , wherein the scanning mirror is suspended between a pair of torsional hinges. 
   
   
       217 . The device of  claim 211 , wherein the laser diode is a vertical cavity surface emitting laser. 
   
   
       218 . A device for scanning a dataform, comprising:
 a housing;   a laser diode in the housing for producing a laser beam;   a movable micromachined scanning mirror in the housing for scanning the laser beam across the dataform for reflection therefrom as return light;   a collecting optic in the housing for collecting the return light from the dataform;   a stationary detector in the housing for detecting the return light collected by the collecting optic; and   a support on which the laser diode, the scanning mirror and the stationary detector are commonly mounted as a scan module in the housing.   
   
   
       219 . The device of  claim 218 , wherein the collecting optic collects the return light directly from the dataform. 
   
   
       220 . The device of  claim 218 , wherein the support is a printed circuit board. 
   
   
       221 . The device of  claim 218 , wherein the scanning mirror is connected to a silicon substrate. 
   
   
       222 . The device of  claim 218 , wherein the scanning mirror is driven electrostatically. 
   
   
       223 . The device of  claim 218 , wherein the scanning mirror is suspended between a pair of torsional hinges. 
   
   
       224 . The device of  claim 218 , and at least one of a keypad and a display on the housing. 
   
   
       225 . A method of reading a dataform, comprising the steps of:
 presenting a device that outputs a laser beam from a surface emitting laser diode;   presenting an object with the dataform to the device:   aligning the dataform with the device so that the laser beam is incident on the dataform;   a movable micromachined scanning mirror for scanning the laser beam across the dataform for reflection therefrom as return light;   collecting the return light from the dataform with a collecting optic;   detecting the return light collected by the collecting optic with a stationary detector; and   commonly mounting the laser diode, the scanning mirror and the stationary detector on a support to constitute a scan module in the device.   
   
   
       226 . The method of  claim 225 , and constituting the micromachined mirror from silicon. 
   
   
       227 . The method of  claim 225 , wherein the collecting step is performed by collecting the return light directly from the dataform. 
   
   
       228 . The method of  claim 225 , and electrostatically driving the micromachined mirror. 
   
   
       229 . The method of  claim 225 , and suspending the micromachined mirror between a pair of torsional hinges. 
   
   
       230 . The method of  claim 225 , and configuring the laser diode as a vertical cavity surface emitting laser.

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