IP Library Granted Patent US 12,433,447
Granted Patent B2
US 12,433,447 · App. 17/696,759 · Granted Oct 7, 2025

Counterbalance for upper griddle platen

Inventors: Raymond R. Rudy (Huntington, IN); Gary L. Seitz (Decatur, IN); Craig A. Seitz (Decatur, IN); Dale W. Taylor (Hamilton, IN); Cole Bruick (Fort Wayne, IN)
Assignee: AccuTemp Products, Inc.
A47J37/0611A47J2037/0617
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Quick Facts
Patent No.
US 12,433,447
App. No.
17/696,759
Granted
Oct 7, 2025
Kind
B2
Abstract

A griddle system including an adjustable counterbalance for an upper platen assembly is disclosed.

Claims (27)

1. A griddle comprising:

a lower cooking surface;

an upper platen assembly rotatably connected to the lower cooking surface, the upper platen assembly rotatable about a pivot axis from an open position to a closed position relative to the lower cooking surface, whereby a food product can be loaded for cooking between the upper platen assembly and the lower cooking surface when the upper platen assembly maintains the open position and the food product is positioned for cooking between the upper platen assembly and the lower cooking surface when the upper platen assembly maintains the closed position; and

a counterbalance, the counterbalance having a preload to urge the upper platen assembly from the closed position to the open position, the counterbalance including a set screw, rotation of the set screw moving a stop surface to adjust the preload of the counterbalance.

2. The griddle of claim 1 , wherein the lower cooking surface comprises a heated lower platen.

3. The griddle of claim 1 , wherein the upper platen assembly comprises a heated upper platen.

4. The griddle of claim 1 , wherein the counterbalance comprises:

a torsion spring and wherein the preload comprises a torsion load on the torsion spring, the stop surface setting a limit establishing the torsion load.

5. The griddle of claim 4 , wherein the counterbalance further comprises:

a pivot shaft, the upper platen assembly secured for rotation with the pivot shaft, the torsion spring helically wound around the pivot shaft, the torsion spring having a first torsion spring free end and a second torsion spring free end; and

a first tension preload collar, the first tension preload collar rotatably supported relative to the pivot shaft, whereby the first tension preload collar is rotatable relative to the pivot shaft, the first torsion spring free end secured to the first tension preload collar, the stop surface establishing a stop preventing a rotation of the first tension preload collar about the pivot axis due to the preload of the counterbalance.

6. The griddle of claim 5 , wherein the counterbalance further comprises:

a second tension preload collar, the second torsion preload collar secured for rotation with the pivot shaft, the second torsion spring free end secured to the second tension preload collar.

7. The griddle of claim 1 , wherein the set screw comprises the stop surface.

8. The griddle of claim 4 , wherein the set screw comprises the stop surface.

9. The griddle of claim 5 , wherein the set screw comprises the stop surface.

10. The griddle of claim 6 , wherein the set screw comprises the stop surface.

11. The griddle of claim 1 , wherein comprises a support having a first integral arm extending therefrom and a second integral arm extending therefrom; the support, first integral arm, and the second integral arm forming a monolithic component.

12. The griddle of claim 5 , wherein the counterbalance comprises a support having a first integral arm extending therefrom and a second integral arm extending therefrom; the support, first integral arm, and the second integral arm forming a monolithic component, the pivot shaft rotatably supported by the first integral arm and the second integral arm.

13. The griddle of claim 11 , wherein the set screw is threadably engaged with the first integral arm, rotation of the set screw moving the set screw to adjust the preload of the counterbalance.

14. The griddle of claim 12 , wherein the set screw is threadably engaged with the first integral arm, rotation of the set screw moving the set screw to adjust the preload of the counterbalance.

15. The griddle of claim 14 , further comprising a pin extending from the first tension preload collar into an arcuate slot formed in the first integral arm, the arcuate slot sized and shaped to allow the pin undergo a rotation about the pivot axis, the set screw extending into the arcuate slot to block the rotation due to the torsion load of the torsion spring.

16. The griddle of claim 15 , further comprising:

a safety set screw threaded into abutment with the set screw to prevent backing out of the set screw.

17. The griddle of claim 15 , wherein the pin comprises an offset pin having a tension preload collar end defining a tension preload collar end longitudinal axis, the offset pin also having a support end defining a support end longitudinal axis, the tension preload collar end longitudinal axis offset from the support end longitudinal axis.

18. The griddle of claim 1 , wherein the stop surface is moveable by cooperative threading.

19. The griddle of claim 1 , wherein the stop surface is formed on an end of a set screw.

Continuity (1)
Related Publication 20230292954A1 · Sep 21, 2023
References Cited (6)
US 5423253A · Olson · 1995 [cited by examiner]
US 5890419A · Moravec · 1999 [cited by examiner]
US 8162026B1 · Lundahl · 2012 [cited by examiner]
US 8763519B2 · Ricchio · 2014 [cited by examiner]
US 20190357727A1 · Rudy et al. · 2019 [cited by applicant]
GB 2369857A · 2002 [cited by examiner]
Cited By (2)
US 1,132,075 US 1,136,756