IP Library Granted Patent US 11,958,083
Granted Patent B2
US 11,958,083 · App. 17/547,510 · Granted Apr 16, 2024

Fume hood and sash control device

Inventor: Jean H. Scholten (Roswell, GA)
Assignee: Johnson Controls Tyco IP Holdings LLP
B08B15/023F24F3/163B08B2203/0211B08B2203/0282F24F11/0001
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Quick Facts
Patent No.
US 11,958,083
App. No.
17/547,510
Granted
Apr 16, 2024
Kind
B2
Abstract

A sash system includes a sash, a counter-weight coupled to the sash by a coupling member, a locking mechanism coupled to at least one of the sash and the coupling member, and a controller coupled to the locking mechanism. The locking mechanism is transitionable between an open configuration where the locking mechanism does not inhibit movement of at least one of the sash and the coupling member, and a locked configuration where the locking mechanism inhibits movement of the at least one of the sash and the coupling member. The controller is configured to control operation of the locking mechanism to selectively transition between the open configuration and the locked configuration based on a condition of the sash. The sash and the counter-weight are configured such that when the locking mechanism is in the open configuration, the sash lowers due to gravity.

Claims (104)

1. A sash system, comprising:

a sash;

a counter-weight coupled to the sash by a coupling member;

a locking mechanism coupled to at least one of the sash and the coupling member and transitionable between an open configuration where the locking mechanism does not inhibit movement of the at least one of the sash and the coupling member, and a locked configuration where the locking mechanism inhibits movement of the at least one of the sash and the coupling member; and

a controller coupled to the locking mechanism and configured to control operation of the locking mechanism to selectively transition between the open configuration and the locked configuration based on a condition of the sash;

wherein the sash and the counter-weight are configured such that when the locking mechanism is in the open configuration, the sash lowers due to gravity, wherein the controller is configured to transition the locking mechanism to the locked configuration based on the condition being a first condition;

wherein the controller is configured to transition the locking mechanism to the open configuration based on the condition being a second condition different from the first condition;

wherein the first condition comprises at least one of:

the sash lowering solely due to an effect of gravity, and

the locking mechanism is in the open configuration and the sash not lowering;

wherein the second condition comprises at least one of:

the sash being manually moved,

a time since a last movement of the sash exceeding a first threshold value,

no person being detected proximate to the sash, and

a time elapsed since a person was detected proximate to the sash exceeding a second threshold value.

2. The system of claim 1 , wherein a total mass of the counter-weight is less than a total mass of the sash.

3. The system of claim 1 , wherein the counter-weight comprises a primary portion and one or more secondary portions configured to be removed or attached to the primary portion such that a total mass of the counter-weight is adjustable.

4. The system of claim 1 , wherein the coupling member is coupled to a top of the sash and a top of the counter-weight.

5. The system of claim 1 , further comprising a housing, wherein the locking mechanism is at least partially positioned within the housing and wherein at least a portion of the coupling member passes through or proximate the housing.

6. The system of claim 1 , further comprising a sensor assembly coupled to the controller;

wherein the sensor assembly is configured to sense condition data associated with the sash and communicate the condition data to the controller;

wherein the controller is configured to determine the condition of the sash based on the condition data.

7. The system of claim 1 , wherein the locking mechanism comprises:

a motor coupled to a rotational member positioned to engage the coupling member, wherein the locking mechanism selectively inhibits the movement of the sash by operating the motor.

8. The system of claim 1 , wherein the locking mechanism comprises a pneumatic assembly configured to selectively inhibit downward motion of the sash.

9. A sash system, comprising:

a sash;

a counter-weight coupled to the sash by a coupling member;

a locking mechanism coupled to at least one of the sash and the coupling member and transitionable between an open configuration where the locking mechanism does not inhibit movement of the at least one of the sash and the coupling member, and a locked configuration where the locking mechanism inhibits movement of the at least one of the sash and the coupling member; and

a controller coupled to the locking mechanism and configured to control operation of the locking mechanism to selectively transition between the open configuration and the locked configuration based on a condition of the sash;

wherein the sash and the counter-weight are configured such that when the locking mechanism is in the open configuration, the sash lowers due to gravity wherein the coupling member comprises an upper segment and a lower segment;

wherein the upper segment is coupled to a top of the sash and a top of the counter-weight;

wherein the lower segment is coupled to a bottom of the sash and a bottom of the counter-weight.

10. The system of claim 9 , wherein the controller is configured to transition the locking mechanism to the locked configuration based on the condition being a first condition;

wherein the controller is configured to transition the locking mechanism to the open configuration based on the condition being a second condition different from the first condition;

wherein the first condition comprises at least one of:

the sash lowering solely due to an effect of gravity, and

the locking mechanism is in the open configuration and the sash not lowering;

wherein the second condition comprises at least one of:

the sash being manually moved,

a time since a last movement of the sash exceeding a first threshold value,

no person being detected proximate to the sash, and

a time elapsed since a person was detected proximate to the sash exceeding a second threshold value.

11. A sash system, comprising:

a sash;

a counter-weight coupled to the sash by a coupling member;

a locking mechanism coupled to at least one of the sash and the coupling member and transitionable between an open configuration where the locking mechanism does not inhibit movement of the at least one of the sash and the coupling member, and a locked configuration where the locking mechanism inhibits movement of the at least one of the sash and the coupling member; and

a controller coupled to the locking mechanism and configured to control operation of the locking mechanism to selectively transition between the open configuration and the locked configuration based on a condition of the sash;

wherein the locking mechanism comprises a gripping member and an electromagnet;

wherein the locking mechanism selectively inhibits motion of the sash by engaging the gripping member with the coupling member;

wherein the gripping member is configured to engage the coupling member due to an electromagnetic force acting between the electromagnet and the gripping member.

12. A sash system, comprising:

a sash;

a counter-weight coupled to the sash by a coupling member;

a locking mechanism coupled to at least one of the sash and the coupling member and transitionable between an open configuration where the locking mechanism does not inhibit movement of the at least one of the sash and the coupling member, and a locked configuration where the locking mechanism inhibits movement of the at least one of the sash and the coupling member; and

a controller coupled to the locking mechanism and configured to control operation of the locking mechanism to selectively transition between the open configuration and the locked configuration based on a condition of the sash;

wherein the sash includes a ferromagnetic portion;

wherein the locking mechanism comprises an electromagnet;

wherein the locking mechanism is configured to selectively inhibit motion of the sash due to an electromagnetic force between the electromagnet and the ferromagnetic portion of the sash when the electromagnet is energized.

13. A method of controlling movement of a sash, the method comprising:

providing a sash coupled to a counter-weight by a coupling member;

determining, using a controller, a condition of the sash;

operating, by the controller, a locking mechanism based on the condition of the sash to transition the locking mechanism between an open configuration where the locking mechanism does not inhibit movement of at least one of the sash and the coupling member and a locked configuration where the locking mechanism inhibits movement of the at least one of the sash and the coupling member;

wherein the counter-weight provides a balancing force against weight of the sash, and wherein when the locking mechanism is in the open configuration, the sash tends to move toward a closed position;

transitioning, using the controller, the locking mechanism to the locked configuration based on the condition being a first condition;

transitioning, using the controller, the locking mechanism to the open configuration based on the condition being a second condition different from the first condition;

wherein the first condition comprises at least one of:

the sash lowering solely due to an effect of gravity, and

the locking mechanism is in the open configuration and the sash not lowering;

wherein the second condition comprises at least one of:

the sash being manually moved,

a time since a last movement of the sash exceeding a first threshold value,

no person being proximate to the sash, and

a time elapsed since a person was proximate to the sash exceeding a second threshold value.

14. The method of claim 13 , further comprising:

sensing, by a sensor, condition data associated with the sash;

providing the condition data of the sash to the controller;

determining, by the controller, the condition of the sash based on the condition data.

15. The method of claim 13 , wherein the coupling member comprises an upper segment and a lower segment;

wherein the upper segment is coupled to a top of the sash and a top of the counter-weight;

wherein the lower segment is coupled to a bottom of the sash and a bottom of the counter-weight.

16. A hood enclosure assembly, comprising:

a hood enclosure positioned within an environment and comprising a plurality of sidewalls forming a work chamber and a front aperture configured to permit airflow between the environment and the work chamber;

a sash adjustably coupled to the hood enclosure, wherein the sash is adjustable to cover at least a portion of the front aperture;

a counter-weight coupled to the sash by a coupling member;

a locking mechanism operatively coupled to at least one of the sash and the coupling member; and

a controller configured to control operation of the locking mechanism to selectively inhibit movement of the sash based on a condition of the sash;

wherein when the locking mechanism does not inhibit movement of the sash, the sash tends to lower, wherein the coupling member comprises an upper segment and a lower segment;

wherein the upper segment is coupled to a top of the sash and a top of the counter-weight;

wherein the lower segment is coupled to a bottom of the sash and a bottom of the counter-weight.

17. The assembly of claim 16 , wherein

the locking mechanism is transitioned to a locked configuration based on the condition being a first condition

and to an open position based on the condition being a second condition different from the first condition;

wherein the first condition comprises at least one of:

the sash lowering solely due to an effect of gravity, and

the locking mechanism is in the open position and the sash not lowering;

wherein the second condition comprises at least one of:

the sash being manually moved,

a time since a last movement of the sash exceeding a first threshold value,

no person being proximate to the sash, and

a time elapsed since a person was proximate to the sash exceeding a second threshold value.

18. The hood enclosure assembly of claim 16 , wherein a total mass of the counter-weight is less than a total mass of the sash.

19. The hood enclosure assembly of claim 16 , wherein the coupling member comprises a cable.

20. The hood enclosure assembly of claim 16 , wherein the coupling member is coupled to a top of the sash and a top of the counter-weight.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2024
From: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
To: TYCO FIRE & SECURITY GMBH
Reel/Frame 066957/0796 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2023
From: SCHOLTEN, JEAN H.
To: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
Reel/Frame 064386/0550 →
Continuity (2)
Provisional Application 63124947 · Dec 14, 2020
Related Publication 20220184673A1 · Jun 16, 2022