IP Library › Granted Patent US 10,710,757
Granted Patent B2
US 10,710,757 · App. 15/698,691 · Granted Jul 14, 2020

Weigh-in-motion scale system and method for linear synchronous motor conveyor

Inventors: Christopher Robert Lyman (Milford, OH); Michael Granitz (Mason, OH); Daniel Richard Royce (Blue Ash, OH)
Assignee: The Procter & Gamble Company
B65B43/52B65B3/04B65B7/00B65B59/00B65B65/006B65G23/23G01G11/00G01G19/03G05B19/41865G06Q30/06G06Q30/0621G06Q30/0635B65G35/06B65G47/642B65G54/02B65G2201/0235G05B2219/42337
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,710,757
App. No.
15/698,691
Granted
Jul 14, 2020
Kind
B2
Abstract

A weigh-in-motion scale system for a linear synchronous motor conveyor and a method for weighing objects on a linear synchronous motor conveyor are described herein. In one embodiment, the weigh-in-motion scale system includes a support structure for supporting the following: a weigh cell, a section of a linear synchronous motor conveyor track, a vehicle for transporting an object, and an object; and a weigh cell on the support structure on which a section of a linear synchronous motor conveyor track rests directly or indirectly. In one embodiment, the method includes transporting a vehicle with an object thereon along a section of a linear synchronous motor conveyor track; and at a weighing station while the vehicle with the object thereon is being transported, weighing the section of a linear synchronous motor conveyor track, vehicle, and object to determine the weight of the object.

Claims (11)

1. A weigh-in-motion system for weighing objects on a linear synchronous motor conveyor, wherein the linear synchronous motor conveyor includes: sections of a linear synchronous motor which motor sections include propulsion coils; a cable through which power and communication can be provided to the propulsion coils; sections of track on which a vehicle can transport an object; and at least one vehicle, said system comprising:

a. a support structure for supporting the following: a weigh cell, a section of a linear synchronous motor conveyor track, a vehicle for transporting an object, and an object; and

b. the weigh cell on said support structure on which a section of the linear synchronous motor conveyor track rests directly or indirectly, wherein said weigh cell is configured to weigh vehicles and objects while in motion; wherein the support structure is configured to also support at least one section of the linear synchronous motor, wherein the linear synchronous motor sections are positioned adjacent to one another, wherein the support structure is configured to support a section of the linear synchronous motor without supporting one or more adjacent sections of the linear synchronous motor, wherein the support structure is configured to support two sections linear synchronous motor and one section of linear synchronous motor conveyor track, and the section of the linear synchronous motor track supported by the support structure spans at least portions of the two sections of linear synchronous motor.

2. The weigh-in-motion system of claim 1 wherein the section of linear synchronous motor conveyor track and the section of the linear synchronous motor supported by the support structure are coextensive.

3. The weigh-in-motion system of claim 1 wherein the section of linear synchronous motor conveyor track and the section of the linear synchronous motor supported by the support structure each have ends that are not coextensive, wherein the section of track is shorter than the section of linear synchronous motor, wherein at least one end of said section of track terminates short of at least one end of said section of the linear synchronous motor, and a portion at the end of at least one adjacent section of track is cantilevered over the section of linear synchronous motor supported by said support structure.

4. The weigh-in-motion system of claim 1 wherein the weigh cell is an electromagnetic force restoration (EMFR) weigh cell.

5. A weigh-in-motion system for weighing objects on a linear synchronous motor conveyor, wherein the linear synchronous motor conveyor includes: sections of a linear synchronous motor which motor sections include propulsion coils; a cable through which power and communication can be provided to the propulsion coils; sections of track on which a vehicle can transport an object; and at least one vehicle, said system comprising:

a. a support structure for supporting the following: a weigh cell, a section of a linear synchronous motor conveyor track, a vehicle for transporting an object, and an object; and

b. the weigh cell on said support structure on which a section of the linear synchronous motor conveyor track rests directly or indirectly, wherein said weigh cell is configured to weigh vehicles and objects while in motion; wherein the support structure is configured to also support at least one section of the linear synchronous motor, wherein the linear synchronous motor sections are positioned adjacent to one another, wherein the support structure is configured to support a section of the linear synchronous motor without supporting one or more adjacent sections of the linear synchronous motor, wherein the section of linear synchronous motor conveyor track and the section of the linear synchronous motor supported by the support structure each have ends that are not coextensive, wherein the section of track is shorter than the section of linear synchronous motor, wherein at least one end of said section of track terminates short of at least one end of said section of the linear synchronous motor, and a portion at the end of at least one adjacent section of track is cantilevered over the section of linear synchronous motor supported by said support structure.

6. The weigh-in-motion system of claim 5 wherein the support structure is configured to support two sections linear synchronous motor and one section of linear synchronous motor conveyor track, and the section of the linear synchronous motor track supported by the support structure spans at least portions of the two sections linear synchronous motor.

7. The weigh-in-motion system of claim 5 wherein the weigh cell is an electromagnetic force restoration (EMFR) weigh cell.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2017
From: LYMAN, CHRISTOPHER ROBERT; GRANITZ, MICHAEL; ROYCE, DANIEL RICHARD
To: THE PROCTER & GAMBLE COMPANY
Reel/Frame 043636/0292 →
Continuity (2)
Provisional Application 62385293 · Sep 9, 2016
Related Publication 20180073912A1 · Mar 15, 2018