A control assembly for a chair including a base structure including a first pivot point and a second pivot point spaced from the first pivot point, and a seat support structure directly pivotably coupled to the base structure for rotation about the first pivot point, a back support structure pivotab
A control assembly for a chair including a base structure including a first pivot point and a second pivot point spaced from the first pivot point, and a seat support structure directly pivotably coupled to the base structure for rotation about the first pivot point, a back support structure pivotably coupled to the base structure for rotation about the second pivot point, wherein the back support structure is adapted to move between a first and second position, a control link having a first end operably coupled to the seat support structure, and a second end operably coupled to the back support structure, and a biasing assembly exerting a biasing torque about the second pivot point that biases the back support structure from the second position toward the first position, wherein the biasing torque is adjustable between first and second magnitudes when the back support structure is in the first position.
대표청구항▼
1. A control assembly for a chair, comprising: a base structure including a stationary first pivot point and a stationary second pivot point spaced from the stationary first pivot point, wherein the base structure is adapted to be attached to a ground-abutting base support structure;a seat support s
1. A control assembly for a chair, comprising: a base structure including a stationary first pivot point and a stationary second pivot point spaced from the stationary first pivot point, wherein the base structure is adapted to be attached to a ground-abutting base support structure;a seat support structure directly pivotably coupled to the base structure for rotation about the stationary first pivot point, wherein the seat support structure is adapted to support a seated user thereon;a back support structure directly pivotably coupled to the base structure for rotation about the stationary second pivot point, wherein the back support structure is adapted to move between a first position and a second position;a control link having a first end operably coupled to the seat support structure, and a second end operably coupled to the back support structure; andat least one biasing assembly exerting a biasing torque about the stationary second pivot point and exerting a biasing force on the back support structure that biases the back support structure from the second position towards the first position, wherein the biasing torque is adjustable between first and second magnitudes when the back support structure is in the first position, and wherein the second magnitude is greater than the first magnitude. 2. The control assembly of claim 1, wherein the biasing force is adjustable between a first magnitude and a second magnitude when the back support structure is in the first position, and wherein the second magnitude of the biasing force is greater than the first magnitude of the biasing force. 3. The control assembly of claim 1, further comprising: an adjustment assembly operably coupled to the at least one biasing assembly to adjust the biasing torque between the first and second magnitudes, wherein the adjustment assembly adjusts the at least one biasing assembly between a first configuration corresponding to the first magnitude of the biasing force and a second configuration corresponding to the second magnitude of the biasing force. 4. The control assembly of claim 3, wherein the adjustment assembly includes a movable input member that changes the magnitude of the biasing torque upon movement of the movable input member between a first position and a second position. 5. The control assembly of claim 3, wherein the biasing torque is generated by a resilient biasing member that shifts between a first shape corresponding to the first magnitude of the biasing torque and a second shape corresponding to the second magnitude of the biasing torque. 6. The control assembly of claim 5, wherein the resilient biasing member comprises a spring member having a first end, a second end and a length defined between the first end and the second end, and wherein a change in the length of the spring member changes the magnitude of the biasing torque between the first and second magnitudes. 7. The control assembly of claim 6, wherein the first end of the spring member is operably coupled to at least a select one of the base structure, the seat support structure, the back support structure and the control link, and wherein a change of a position of the second end of the spring member relative to the select one of the base member, the seat support structure, the back support structure and the control link, adjusts the biasing torque between the first and second magnitude. 8. The control assembly of claim 5, wherein the resilient biasing member generates a force acting on the movable input member in a first direction, and wherein the adjustment assembly includes an adjustment assist assembly exerting an assist force acting on the movable input member in a second direction substantially opposite to the first direction, thereby reducing an input force required to be applied by a user to the movable input member to adjust the biasing force from the first magnitude to the second magnitude. 9. The control assembly of claim 8, wherein the adjustment assist assembly includes a spring member. 10. The control assembly of claim 3, wherein the adjustment assembly includes first and second threaded members, and wherein rotation of the first threaded member adjusts the biasing force between the first and second magnitudes. 11. A control assembly for a chair, comprising: a base structure adapted to be attached to a ground-abutting base support structure;a seat support structure operably coupled to the base structure, wherein the seat support structure is adapted to support a seated user thereon;a back support structure operably coupled to the base structure, wherein the back support structure is adapted to move between a first position and a second position;at least one biasing assembly exerting a biasing force that biases the back support structure from the second position towards the first position, wherein the biasing force is adjustable between first and second magnitudes when the back support structure is in the first position, and wherein the second magnitude is greater than the first magnitude; andan adjustment assist assembly exerting an assist force on the biasing assembly, thereby reducing an input force required to be applied by a user to adjust the biasing force between the first and second magnitudes. 12. The control assembly of claim 11, further comprising: an adjustment assembly operably coupled to the at least one biasing assembly to adjust the biasing force between the first and second magnitudes, wherein the adjustment assembly adjusts the at least one biasing assembly between a first configuration corresponding to the first magnitude of the biasing force and a second configuration corresponding to the second magnitude of the biasing force. 13. The control assembly of claim 12, wherein the adjustment assembly includes a movable input member that changes the magnitude of the biasing force upon movement of the movable input member between a first position and a second position. 14. The control assembly of claim 13, wherein the biasing force is generated by a resilient biasing member that shifts between a first shape corresponding to the first magnitude of the biasing force and a second shape corresponding to the second magnitude of the biasing force. 15. The control assembly of claim 14, wherein the resilient biasing member comprises a spring member having a first end, a second end and a length defined between the first end and the second end, and wherein a change in the length of the spring member changes the magnitude of the biasing force between the first and second magnitudes. 16. The control assembly of claim 15, wherein the first end of the spring member is operably connected to at least a select one of the base structure, the seat support structure, the back support structure and the control link, and wherein a change of a position of the second end of the spring member relative to the select one of the base member, the seat support structure, the back support structure and the control link, adjusts the biasing force between the first and second magnitude. 17. The control assembly of claim 14, wherein the resilient biasing member generates a force acting on the movable input member in a first direction, and wherein the adjustment assist assembly exerts the assist force on the movable input member in a second direction substantially opposite to the first direction, thereby reducing the input force required to be applied by a user to the movable input member to adjust the biasing force from the first magnitude to the second magnitude. 18. The control assembly of claim 17, wherein the adjustment assist assembly includes a spring member. 19. The control assembly of claim 18, wherein the spring member comprises a coil spring. 20. The control assembly of claim 12, wherein the adjustment assembly includes first and second threaded members, and wherein rotation of the first threaded member adjusts the biasing force between the first and second magnitudes.
Hodge David N. (The Sea Ranch CA) Jenkins David C. (Grand Rapids MI) Mercier Michael L. (Grandville MI) Teppo David S. (East Grand Rapids MI) Lindgren Larry G. (Rockford MI) Halliwill Jeffery L. (Gow, Adjustable chair actuator.
Hannah Bruce R. (Cold Spring NY) Eldon James B. (Barto PA) Armstrong Eric J. (Pennsburg PA) Smith Harold A. (Emmaus PA) Campbell Philip J. (Bethlehem PA), Adjustable keyboard support.
Dammermann,Arnold B.; DeKraker,Larry; Heidmann,Kurt R.; Peterson,Gordon J.; Roossien,Charles P.; Teppo,David S.; Knoblock, deceased,Glenn A., Back construction for seating unit.
Schmitz,Johann Burkhard; Plikat,Claudia; Neubert,Nicolai; Zwick,Carola E. M.; Zwick,Roland R. O.; Aerts,Chad D.; Aldrich,John F.; Hill,Christopher C.; Ramsdell,Shane M.; Slagh,James D.; VanDeRiet,Dou, Back support structure.
Koepke, Marcus C.; Coffield, Tim; Michael, Jay R.; Phillips, Matthew J.; Schroeder, Douglas A.; Schultz, Craig H.; Steffensen, Erik A., Chair back construction.
Roossien Charles P. (Wyoming MI) Pugh David C. (Howard City MI) Groendal Dale M. (Jenison MI) Massey James E. (Wayland MI) Scheper Robert M. (Grand Rapids MI) Nagel Duane F. (Grand Rapids MI) Smith B, Chair construction and method of assembly.
Kriener Michael (Ahlen DEX) Uhlenbrock Johannes (Drensteinfurt MI DEX) Wilkerson Larry A. (Comstock Park MI) Roslund ; Jr. Richard N. (Georgetown Township ; Ottawa County MI), Chair control with forward tilt.
Geffers Klaus (Goethestr. 26 D-495 Minden DEX) Drabert Fritz (Marienstr. 37 D-495 Minden DEX), Chair having synchronously coupled tiltable seat and back rest.
Knoblock Glenn A. ; Dammermann Arnold B. ; DeKraker Larry ; Ekdahl Kevin A. ; Heidmann Kurt R. ; Klaasen ; II Gardner J. ; Perkins James A. ; Peterson Gordon J. ; Punches Edward H. ; Roossien Charles, Chair including novel back construction.
Golynsky Arkady (Allentown PA) Wimmer Donald A. (Palm PA) Bray ; Jr. Bryan B. (Emmaus PA) Melhuish Robert A. (East Greenville PA), Chair tilt and chair height control apparatus.
Battey Robert J. ; Knoblock Glenn A. ; DeKraker Larry ; Heidmann Kurt R. ; Johnson Michelle R. ; Scheper Robert M., Chair with novel seat construction.
Drabert Fritz (Minden DEX) Posch Oskar (Biberist CHX) Edel Hans-Joachim (Minden DEX) Schroeder Bernhard (Porta Westfalica DEX), Chair, particularly a data display chair.
Bedford, Adam C.; Battey, Robert J.; Bodnar, David A.; Hadley, Jonathan B.; Hall, Jeffrey A.; Heidmann, Kurt R.; Johnson, Eric; Karsten, Gary Lee; Peterson, Gordon J., Combined tension and back stop function for seating unit.
Leto ; Jr. James (4269 Frying Pan Rd. Basalt CO 81621) Brady Anthony (11916 Woodruff Downey CA 90241), Contoured seat covering for automotive vehicle bench seat.
Bedford, Adam C.; Bodnar, David A.; Karsten, Gary Lee; Battey, Robert J.; Heidmann, Kurt R.; Peterson, Gordon J., Control for seating unit with back stop.
Koepke, Marcus C.; Krull, Jamie; Machael, Jay R.; Coffield, Tim; Davis, Keith L.; Habboub, Amin K.; Phillips, Matthew J.; Schroeder, Douglas A.; Schultz, Craig H.; Steffensen, Erik A.; Trego, Brian R, Ergonomic chair.
Franck Klaus (Hanover DEX) Sauer Werner (Wennigsen DEX) Wiesmann Herbert L. (Hameln DEX), Furniture article with padding attached to a supporting shell.
Glenn A. Knoblock ; Arnold B. Dammermann ; Larry DeKraker ; Kevin A. Ekdahl ; Kurt R. Heidmann ; Gardner J. Klaasen, II ; James A. Perkins ; Gordon J. Peterson ; Edward H. Punches ; Charles , Lumbar device.
Chenot Louis A. (Carl Junction MO) Long Harold D. (Sarcoxie MO) Fiechtl Michael D. (Carl Junction MO) Coss Verlie W. (Joplin MO) Schuller Thomas E. (Webb City MO), Lumbar support structure for automotive vehicle.
Heidmann Kurt R. ; Christensen Brian L. ; Haan Micahel W. ; Knoblock Glenn A. ; McClure Eric T. ; Palacios Noe ; Root Brian H. ; Sayers David D. ; Scheper Robert M. ; Schwoerer Patrick P.,FRX ; Steff, Modular chair construction and method of assembly.
Masters James C. ; Massara Andrew J.,SEX ; Leistra ; III Philip W. ; Allison Gregory, Modular seat assembly and method of installing the same within a vehicle.
Schmitz,Johann Burkhard; Plikat,Claudia; Neubert,Nicolai; Zwick,Carola E. M.; Zwick,Roland R. O.; Aldrich,John F.; VanDeRiet,Douglas M., Modular tilt housing for a seating structure.
Stumpf William E. ; Schoenfelder Rodney C. ; Chadwick Donald ; Keller Carolyn ; Coffield Timothy P. ; Sayers Randy J. ; Bruner Jeffrey W. ; Cammenga Eric, Office chair.
Watson, Ronnie K.; Chapman, Anthony K.; Chrostowski, Matthew E.; Lewis, Randall C.; Coffield, Timothy P.; Bach, James W.; Bach, David F.; Inman, Christopher G.; Ebenstein, Scott M., Office chair.
William E. Stumpf ; Rodney C. Schoenfelder ; Donald Chadwick ; Carolyn Keller ; Timothy P. Coffield ; Randy J. Sayers ; Jeffrey W. Bruner ; George A. Miles ; Eric Cammenga ; Philip Crossman, Office chair.
Stumpf William E. ; Schoenfelder Rodney C. ; Chadwick Donald ; Keller Carolyn ; Coffield Timothy P. ; Sayers Randy J. ; Bruner Jeffrey W. ; Cammenga Eric, Process for making an office chair.
Barton Alan E. ; Rhodes ; Jr. Richard D. ; Weeks Ryan ; Kackenmeister Carl ; Plant William David ; Daniels George F., Seating assembly and method of making same.
Stumpf, William E.; Schoenfelder, Rodney C.; Chadwick, Donald; Keller, Carolyn; Coffield, Timothy P.; Sayers, Randy J.; Bruner, Jeffrey W.; Cammenga, Eric, Seating structure having a backrest with a bowed section.
Stumpf, William E.; Schoenfelder, Rodney C.; Chadwick, Donald; Keller, Carolyn; Coffield, Timothy P.; Sayers, Randy J.; Bruner, Jeffrey W.; Cammenga, Eric, Seating structure having a backrest with a flexible membrane and a moveable armrest.
Stumpf, William E.; Schoenfelder, Rodney C.; Chadwick, Donald; Keller, Carolyn; Coffield, Timothy P.; Sayers, Randy U.; Bruner, Jeffrey W.; Cammenga, Eric, Seating structure having a fabric with a weave pattern.
Robert J. Battey ; Glenn A. Knoblock ; Larry DeKraker ; Kurt R. Heidmann ; Michelle R. Johnson ; Robert M. Scheper, Seating unit with novel seat construction.
Ishi Yuji (Osaka JPX) Nagao Toru (Osaka JPX) Sato Harumatsu (Tokyo JPX), Shell structure for use with a chair having synchronously moving seat and seat back.
Faiks Frederick S. (Greenville MI) Forslund ; III Carl V. (Grand Rapids MI) Scheper Robert M. (Grand Rapids MI) Anderson Craig M. (Kentwood MI), Split back chair.
Faiks Frederick S. (Greenville MI) Forslund ; III Carl V. (Grand Rapids MI) Scheper Robert M. (Grand Rapids MI) Anderson Craig M. (Kentwood MI) Knoblock Glenn A. (Kentwood MI) Groendal Dale M. (Jenis, Split back chair.
Schmitz,Johann Burkhard; Plikat,Claudia; Neubert,Nicolai; Zwick,Carola E. M.; Zwick,Roland R. O.; Aerts,Chad D.; Aldrich,John F., Support member for a seating structure.
Roericht Hans (Ulm DEX) Fleischmann Horst (Mnchen DEX) Biggel Franz (Wangen DEX) Schmitz Burkhard (Ulm DEX), Synchronous adjusting device for office chairs or the like.
Roericht Hans (Ulm DEX) Fleischmann Horst (Mnchen DEX) Biggel Franz (Wangen DEX) Schmitz Burkhard (Ulm DEX), Synchronous adjusting device for office chairs or the like.
Insalaco, Robert Warren; Nicolai, Neubert; Plikat, Claudia; Schmitz, Johann Burkhard; Zwick, Carola E.M.; Zwick, Roland R.O., Tilt assembly for a chair.
Schmitz,Johann Burkhard; Plikat,Claudia; Neubert,Nicolai; Zwick,Carola E. M.; Zwick,Roland R. O.; Aldrich,John F.; Hill,Christopher C.; Slagh,James D.; VanDeRiet,Douglas M., Tilt chair and methods for the use thereof.
Stumpf William E. ; Schoenfelder Rodney C. ; Chadwick Donald ; Keller Carolyn ; Coffield Timothy P. ; Sayers Randy J. ; Bruner Jeffrey W. ; Miles George A. ; Cammenga Eric ; Crossman Philip, Tilt control mechanism for a chair.
Hoskins Hugh (7141 Butterfly Dr. Memphis TN 38133) Hoskins Gary (716 Saddlebrook South Bedford TX 76021), Universal joint comprising a pair of crown gear elements confined within a slotted casing.
Scholten Brian L. (8525 Beretta Ct. Jenison MI 49428) Abraham James E. (3460 Navaho SW. Grandville MI 49418) Groendal Dale M. (2528 PineWood St. Jenison MI 49428) Scheper Robert M. (25 Wallinwood NE., Upholstered chair with two-piece shell.
Stumpf William E. ; Schoenfelder Rodney C. ; Chadwick Donald ; Keller Carolyn ; Coffield Timothy P. ; Sayers Randy J. ; Bruner Jeffrey W. ; Cammenga Eric, Woven fabric membrane for a seating surface.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.