IP Library Granted Patent US 12,056,565
Granted Patent B2
US 12,056,565 · App. 17/683,952 · Granted Aug 6, 2024

Structural isolation of RFID antenna

Inventors: Qing Tu (Stony Brook, NY); Ryan Gong (Mineola, NY)
Assignee: Zebra Technologies Corporation
G06K7/10386G06K19/0723H01Q1/2216
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Quick Facts
Patent No.
US 12,056,565
App. No.
17/683,952
Granted
Aug 6, 2024
Kind
B2
Abstract

Handheld scanning devices are disclosed herein. An example handheld scanning device includes a main housing, an antenna housing, an antenna mounting bracket, and a first radio frequency identification (RFID) antenna. The main housing includes a main body portion and a grip portion operably coupled with the main body. The main housing defines a main housing cavity. The antenna housing is operably coupled with the main housing and defines an antenna housing cavity. The antenna mounting bracket is at least partially disposed within the antenna housing cavity and is operably coupled with the antenna housing and the main body portion of the main housing. The first RFID antenna is at least partially disposed within the antenna housing cavity and is operably coupled with the antenna mounting bracket.

Claims (28)

1. A handheld scanning device, comprising:

a main housing including a main body portion and a grip portion operably coupled with the main body, the main housing defining a main housing cavity;

an antenna housing operably coupled with the main housing, the antenna housing defining an antenna housing cavity;

an antenna mounting bracket at least partially disposed within the antenna housing cavity, the antenna mounting bracket being operably coupled with the antenna housing and the main body portion of the main housing; and

a first radio frequency identification (RFID) antenna disposed within the antenna housing cavity, the first RFID antenna being operably coupled with the antenna mounting bracket,

wherein the antenna mounting bracket includes:

a bracket body and a flange portion, wherein the flange portion is operably coupled with an upper portion of the main body portion, and wherein the bracket body floats within the antenna housing such that the bracket body lacks a point of contact with an internal surface of the antenna housing;

at least one hook member disposed on the bracket body, the at least one hook member adapted to receive a first end of the RFID antenna; and

at least one resilient member disposed on the bracket body, the at least one resilient member adapted to receive a second end of the RFID antenna, wherein the bracket body is rotatably displaceable relative to the flange portion.

2. The handheld scanning device of claim 1 , wherein the antenna housing comprises an antenna front housing and an antenna rear housing.

3. The handheld scanning device of claim 2 , wherein the antenna rear housing is operably coupled with a main body bracket member at least partially disposed within the main housing cavity.

4. The handheld scanning device of claim 2 , wherein the antenna rear housing is integrally formed with the main housing.

5. The handheld scanning device of claim 1 , wherein the antenna housing includes a plurality of stiffening ribs disposed within the antenna housing cavity to limit relative movement between the antenna mounting bracket and the antenna housing cavity.

6. The handheld scanning device of claim 1 , wherein the first RFID antenna includes a first circuit board, a second circuit board, and a structural support disposed between the first and the second circuit boards, the first circuit board being electrically coupled with the second circuit board.

7. The handheld scanning device of claim 6 , wherein the structural support comprises a third circuit board and a fourth circuit board.

8. The handheld scanning device of claim 1 , wherein the bracket body is rotatably displaceable relative to the flange portion.

9. The handheld scanning device of claim 1 , further including an imaging system at least partially disposed within the antenna housing cavity, the imaging system adapted to capture at least one image of an object appearing in a field of view (FOV) of the device.

10. An antenna system for a handheld scanning device comprising:

an antenna housing defining an antenna housing cavity;

an antenna mounting bracket at least partially disposed within the antenna housing cavity, the antenna mounting bracket being operably coupled with the antenna housing via a flange portion, the antenna mounting bracket further having a bracket body; and

a radio frequency identification (RFID) antenna disposed within the antenna housing cavity, the RFID antenna being operably coupled with the bracket body of the antenna mounting bracket;

wherein the bracket body floats within the antenna housing such that the bracket body lacks a point of contact with an internal surface of the antenna housing;

wherein the antenna mounting bracket further includes:

at least one hook member disposed on the bracket body, the at least one hook member adapted to receive a first end of the RFID antenna; and

at least one resilient member disposed on the bracket body, the at least one resilient member adapted to receive a second end of the RFID antenna, wherein the bracket body is rotatably displaceable relative to the flange portion.

11. The antenna system of claim 10 , wherein the antenna housing comprises an antenna front housing and an antenna rear housing.

12. The antenna system of claim 10 , wherein the antenna housing includes a plurality of stiffening ribs disposed within the antenna housing cavity to limit relative movement between the antenna mounting bracket and the antenna housing cavity.

13. The antenna system of claim 10 , wherein the RFID antenna includes a first circuit board, a second circuit board, and a structural support disposed between the first and the second circuit boards, the first circuit board being electrically coupled with the second circuit board.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2022
From: TU, QING; GONG, RYAN
To: ZEBRA TECHNOLOGIES CORPORATION
Reel/Frame 060279/0671 →
Continuity (2)
Provisional Application 63299634 · Jan 14, 2022
Related Publication 20230229876A1 · Jul 20, 2023
Cited By (1)
US 12,468,905