IP Library Granted Patent US 11,562,160
Granted Patent B2
US 11,562,160 · App. 17/407,791 · Granted Jan 24, 2023

Bioptic barcode readers

Inventors: Mark Drzymala (Saint James, NY); Edward Barkan (Miller Place, NY); Darran Michael Handshaw (Sound Beach, NY)
Assignee: Zebra Technologies Corporation
G06K7/10722G06K7/1413
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Quick Facts
Patent No.
US 11,562,160
App. No.
17/407,791
Granted
Jan 24, 2023
Kind
B2
Abstract

A bioptic barcode reader has a housing having a lower housing portion with an upper surface and an upper housing portion extending above the lower housing portion. A generally horizontal window is positioned at the upper surface, a generally upright window is positioned in the upper housing portion, and an imaging assembly having a primary field-of-view and a set of optical components are positioned within the interior region. The housing has a width greater than or equal to 5 inches and less than or equal to 7 inches, the lower housing portion has a height greater than or equal to 3 inches, the upper housing portion has a height greater than or equal to 4 inches and less than or equal to 6 inches, and the upper surface has a length greater than or equal to 6 inches and less than or equal to 8 inches.

Claims (42)

1. A bioptic barcode reader having a product scanning region, the bioptic barcode reader comprising:

a housing having a lower housing portion with an upper surface facing the product scanning region and an upper housing portion extending above the lower housing portion, the upper surface having a proximal edge adjacent the upper housing portion and a distal edge opposite the proximal edge;

an imaging assembly having a primary field-of-view, the imaging assembly including a printed circuit board with a single image sensor, the printed circuit board aligned generally perpendicular to the upper surface and the printed circuit board and the image sensor arranged to direct the primary field-of-view generally parallel to the upper surface and towards the distal edge of the upper surface;

a decode module communicatively coupled to the imaging assembly and configured to decode a barcode captured in an image by the imaging assembly;

a generally horizontal window positioned at the upper surface of the lower housing portion, the generally horizontal window configured to allow a first light to pass between the product scanning region and an interior region of the housing;

a generally upright window positioned in the upper housing portion, the generally upright window configured to allow a second light to pass between the product scanning region and the interior region of the housing; and

a mirror arrangement positioned within the interior region, the mirror arrangement including a splitter mirror, a first mirror, and a second mirror; wherein

the splitter mirror is positioned directly in a first path of a first portion of the primary field-of-view and is configured to split the primary field-of-view along a horizontal axis and redirect the first portion of the primary field-of-view from the first path to a second path towards the second mirror;

the first mirror is positioned directly in a third path of a second portion of the primary field-of-view and is configured to redirect the second portion through the generally horizontal window;

the second mirror is positioned directly in the second path and is configured to redirect the first portion through the generally upright window; and

the bioptic barcode reader has no other imaging assembly communicatively coupled to the decode module and used to process images for decoding indicia.

2. The bioptic barcode reader of claim 1 , wherein the mirror arrangement has no other mirrors.

3. The bioptic barcode reader of claim 1 , wherein the first portion of the primary field-of-view is 0-25% larger than the second portion of the primary field-of-view.

4. The bioptic barcode reader of claim 1 , wherein the second portion of the primary field-of-view is 0-25% larger than the first portion of the primary field-of-view.

5. The bioptic barcode reader of claim 1 , wherein the second portion of the primary field-of-view fills 50-100% of the generally horizontal window.

6. The bioptic barcode reader of claim 1 , wherein the first portion of the primary field-of-view fills 50-100% of the generally upright window.

7. The bioptic barcode reader of claim 1 , wherein a width of the generally horizontal window is greater than a length of the generally horizontal window such that a width of the second portion of the primary field-of-view passing through the generally horizontal window is greater than a length of the second portion of the primary field-of-view passing through the generally horizontal window.

8. The bioptic barcode reader of claim 1 , wherein an area of the second portion of the primary field-of-view along a plane of the generally horizontal window is greater than an area of the generally horizontal window such that the generally horizontal window allows only a portion of the second portion to pass through the generally horizontal window.

9. The bioptic barcode reader of claim 1 , wherein an area of the first portion of the primary field-of-view along a plane of the generally upright window is greater than an area of the generally upright window such that the generally upright window allows only a portion of the first portion to pass through the generally upright window.

10. A bioptic barcode reader having a product scanning region, the bioptic barcode reader comprising:

a housing having a lower housing portion with an upper surface facing the product scanning region and an upper housing portion extending above the lower housing portion, the upper surface having a proximal edge adjacent the upper portion and a distal edge opposite the proximal edge;

an imaging assembly having a primary field-of-view, the imaging assembly including a printed circuit board with a single image sensor, the printed circuit board aligned generally perpendicular to the upper surface and the printed circuit board and the image sensor arranged to direct the primary field-of-view generally parallel to the upper surface and towards the distal edge of the upper surface;

a decode module communicatively coupled to the imaging assembly and configured to decode a barcode captured in an image by the imaging assembly;

a generally horizontal window positioned at the upper surface of the lower housing portion, the generally horizontal window configured to allow a first light to pass between the product scanning region and an interior region of the housing;

a generally upright window positioned in the upper housing portion, the generally upright window configured to allow a second light to pass between the product scanning region and the interior region of the housing; and

a mirror arrangement positioned within the interior region, the mirror arrangement including a splitter mirror, a first mirror, a second mirror, and a third mirror; wherein

the splitter mirror is positioned directly in a first path of a first portion of the primary field-of-view and is configured to: split the primary field-of-view along a horizontal axis; split the first portion of the primary field-of-view into a first subfield and a second subfield; redirect the first subfield along a second path towards the second mirror; and redirect the second subfield along a third path towards the third mirror;

the first mirror is positioned directly in a fourth path of a second portion of the primary field-of-view and is configured to redirect the second portion through the generally horizontal window;

the second mirror is positioned directly in the second path and is configured to redirect the first subfield through the generally upright window;

the third mirror is positioned directly in the third path and is configured to redirect the second subfield through the generally upright window; and

the bioptic barcode reader has no other imaging assembly communicatively coupled to the decode module and used to process images for decoding indicia.

11. The bioptic barcode reader of claim 10 , wherein the splitter mirror is a concave splitter mirror having two planar mirrors and the second path and the third path cross.

12. The bioptic barcode reader of claim 11 , wherein the first mirror is a concave splitter mirror and is configured to: split the second portion of the primary field-of-view into a third subfield and a fourth subfield; redirect the third subfield through the generally horizontal window; and redirect the fourth subfield through the generally horizontal window.

13. The bioptic barcode reader of claim 10 , wherein the splitter mirror is a convex splitter mirror having two planar mirrors and the second path and the third path diverge.

14. The bioptic barcode reader of claim 13 , wherein the first mirror is a concave splitter mirror and is configured to: split the second portion of the primary field-of-view into a third subfield and a fourth subfield; redirect the third subfield through the generally horizontal window; and redirect the fourth subfield through the generally horizontal window.

15. The bioptic barcode reader of claim 10 , wherein the mirror arrangement has no other mirrors.

16. The bioptic barcode reader of claim 10 , wherein the first portion of the primary field-of-view is 0-25% larger than the second portion of the primary field-of-view.

17. The bioptic barcode reader of claim 10 , wherein the second portion of the primary field-of-view is 0-25% larger than the first portion of the primary field-of-view.

18. The bioptic barcode reader of claim 10 , wherein the second portion of the primary field-of-view fills 50-100% of the generally horizontal window.

19. The bioptic barcode reader of claim 10 , wherein the first subfield and the second subfield together fill 50-100% of the generally upright window.

20. The bioptic barcode reader of claim 10 , wherein a width of the generally horizontal window is greater than a length of the generally horizontal window such that a width of the second portion of the primary field-of-view passing through the generally horizontal window is greater than a length of the second portion of the primary field-of-view passing through the generally horizontal window.

21. The bioptic barcode reader of claim 10 , wherein an area of the second portion of the primary field-of-view along a plane of the generally horizontal window is greater than an area of the generally horizontal window such that the generally horizontal window allows only a portion of the second portion to pass through the generally horizontal window.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2022
From: DRZYMALA, MARK; BARKAN, EDWARD; HANDSHAW, DARRAN MICHAEL
To: ZEBRA TECHNOLOGIES CORPORATION
Reel/Frame 062140/0987 →
Continuity (2)
Continuation 16678773 · Nov 8, 2019
Related Publication 20210383086A1 · Dec 9, 2021
Cited By (1)
US 12,639,539