IP Library Patent Application 17296335
Patent Application
App. No. 17/296,335

METHOD AND APPARATUS TO IMPROVE ROBUSTNESS IN A DIGITAL RADIOGRAPHIC CAPTURE DEVICE

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Quick Facts
Patent No.
US None
App. No.
17/296,335
Abstract

A digital radiographic detector having a core assembly and a housing enclosing the core assembly. Sidewalls of the housing have a thickness greater than the top and bottom sides of the housing. A first planar spring couples the core assembly to an interior surface of the housing. A second planar spring may be attached to the core assembly and abutting another interior surface of the housing.

Claims (29)

1 . A digital radiographic detector comprising:

a core assembly;

a housing having five sides and enclosing the core assembly but for an open sixth side of the housing, the housing having a top side, a bottom side and three sidewalls therebetween, the housing integrally formed with the top side and the bottom side, the sidewalls each having a thickness greater than that of the top side and the bottom sides; and

a curved spring attached to the core assembly and in physical contact against an inside surface of one of the side walls of the housing.

2 . The digital radiographic detector of claim 1 , wherein the housing sidewalls are thicker in a middle portion equidistant from the top and bottom sides than in a portion immediately adjacent to either of the top and bottom sides.

3 . The digital radiographic detector of claim 1 , further comprising an attachable and detachable end cap to allow insertion of the core assembly into the five-sided housing when the end cap is detached therefrom, and to completely enclose the inserted core assembly in the housing when the end cap is attached to the open sixth side of the housing.

4 . The digital radiographic detector of claim 3 , wherein the end cap is detachable from the sixth side of the housing to allow slidably removing the core assembly through the open sixth side of the housing.

5 . The digital radiographic detector of claim 3 , further comprising a thermally conductive element in contact with the core assembly and in contact with the end cap.

6 . The digital radiographic detector of claim 1 , wherein the curved spring comprises a major surface substantially parallel to the top surface of the housing and a flex portion that curves approximately ninety degrees away from a plane of the major surface, the flex portion flexibly abutting the inside surface of the sidewall of the housing to provide absorption of an impact against the outside surface of the sidewall.

7 . A digital radiographic detector comprising:

a core assembly;

a four sided tubular housing enclosing the core assembly, the tubular housing having a rectangular cross section, a top side, a bottom side and sidewalls therebetween, the housing integrally formed with, the top side and the bottom side, the sidewalls having a thickness greater than that of the top side and the bottom side;

attachable and detachable end caps to allow insertion of the core assembly into the tubular housing when at least one of the end caps is detached therefrom; and

a planar spring attached to the core assembly and in physical contact with at least one of the end caps.

8 . The digital radiographic detector of claim 7 , wherein the housing sidewalls are thicker in a middle portion equidistant from the top and bottom sides than in a portion immediately adjacent to either of the top and bottom sides.

9 . The digital radiographic detector of claim 7 , wherein the detachable end caps completely enclose the inserted core assembly in the housing when the end caps are attached to opposite ends of the tubular housing.

10 . The digital radiographic detector of claim 9 , further comprising a thermally conductive element in contact with the core assembly and in contact with at least one of the end caps, wherein said at least one of the end caps is made from a thermally conductive metal.

11 . The digital radiographic detector of claim 7 , further comprising a curved spring element fastened to the core assembly and flexibly abutting an inside surface of a sidewall of the housing.

12 . The digital radiographic detector of claim 11 , wherein the curved spring member comprises a major surface substantially parallel to the top surface of the detector and a flex portion that curves approximately ninety degrees away from a plane of the major surface, the flex portion flexibly abutting the inside surface of the sidewall of the housing to provide shock absorption of an impact against the outside surface of the sidewall.

13 . A digital radiographic detector comprising:

a core assembly;

a unitary housing enclosing the core assembly, the housing having a top side, a bottom side and sidewalls therebetween, the sidewalls having a thickness greater than that of the top side and the bottom side; and

a spring member fixed to the core assembly and in physical contact with an inside surface of the housing to absorb a shock impacting an outside surface of the housing opposite the inside surface.

14 . The digital radiographic detector of claim 13 , wherein the housing sidewalls are thicker in a middle portion equidistant from the top and bottom sides than in a portion immediately adjacent to either of the top and bottom sides.

15 . The digital radiographic detector of claim 13 , further comprising a detachable cover to enclose an open end of the housing and to completely enclose the core assembly within the housing when the cover is attached thereto.

16 . The digital radiographic detector of claim 15 , further comprising a thermally conductive element in contact with the core assembly and in contact with the cover when the cover is attached to the housing, wherein said cover is made from a thermally conductive metal.

17 . The digital radiographic detector of claim 13 , wherein the spring member abuts an inside surface of a sidewall of the housing.

18 . The digital radiographic detector of claim 15 , wherein the spring member abuts an inside surface of the cover.

19 . The digital radiographic detector of claim 17 , wherein the spring member comprises a major surface substantially parallel to the top surface of the housing and a flex portion that curves approximately ninety degrees away from a plane of the major surface, the flex portion flexibly abutting the inside surface of the sidewall to provide shock absorption of an impact against the outside surface of the sidewall.

Assignments (5)
RELEASE OF SECURITY INTEREST IN PATENTS PREVIOUSLY RECORDED AT REEL/FRAME (061579/0341) Recorded Mar 16, 2026
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: CARESTREAM HEALTH, INC.
Reel/Frame 075100/0653 →
SECURITY INTEREST Recorded Mar 13, 2026
From: CARESTREAM HEALTH, INC.
To: WILMINGTON SAVINGS FUND SOCIETY, FSB, AS ADMINISTRATIVE AGENT
Reel/Frame 075081/0379 →
GRANT OF SECURITY INTEREST IN PATENT RIGHTS - ABL Recorded Sep 30, 2022
From: CARESTREAM HEALTH, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 061579/0301 →
GRANT OF SECURITY INTEREST IN PATENT RIGHTS - TL Recorded Sep 30, 2022
From: CARESTREAM HEALTH, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 061579/0341 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2021
From: BOGUMIL, TODD D.
To: CARESTREAM HEALTH, INC
Reel/Frame 056329/0013 →