Patents Assigned to Soft Robotics, Inc.
-
Patent number: 10576640Abstract: Exemplary embodiments relate to improvements in soft robotic systems that permit a soft robotic end effector to be a self-contained system, without reliance on a tether to deliver inflation fluid to the actuator(s) of the end effector. According to some embodiments, a robotic system may be provided including a soft actuator and a hub. The body of the hub may include an integrated pressure source configured to supply inflation fluid through the actuator interface to the soft actuator. The pressure source may be, for example, a compressor (such as a twin-head compressor) or a reaction chamber configured to vaporize a fuel to create a high-temperature pressurized gas and deliver the pressurized gas to the actuator One or more accumulators may receive inflation fluid (or a partial vacuum) from the compressor over time, and store the inflation fluid under pressure, thus allowing actuation over a relatively short time period.Type: GrantFiled: July 17, 2018Date of Patent: March 3, 2020Assignee: Soft Robotics, Inc.Inventors: Ryan Knopf, Joshua Lessing, Daniel Vincent Harburg, Grant Sellers, Kevin Alcedo
-
Patent number: 10569422Abstract: Exemplary embodiments relate to unique structures for robotic end-of-arm-tools (EOATs). According to some embodiments, two or more fingers or actuators may be present on an EOAT, and the actuators may be configured to move (together or separately) to adjust the spacing between the actuators. Some aspects involve techniques for extending and/or retracting a vacuum cup present on the EOAT. Further embodiments, which may be used separately or in conjunction with the previously-described embodiments, apply a secondary inner grip pad to provide a secondary gripping mode for the EOAT. These embodiments may be particularly advantageous when the actuators are soft robotic actuators and the inner grip pad is a relatively more rigid structure than the actuators.Type: GrantFiled: October 15, 2018Date of Patent: February 25, 2020Assignee: Soft Robotics, Inc.Inventors: Jeffrey Curhan, Craig Demello, Thomas Womersley
-
Patent number: 10518423Abstract: Exemplary embodiments relate to unique structures for robotic end-of-arm-tools (EOATs). In particular, exemplary embodiments provide structures allowing a displacement fluid to be discharged from a distal end of a robotic finger. The discharge may be used to displace a target object, such as an object that is adjacent to another blocking object or the side of a container. After the target object is displaced, the EOAT may be better able to maneuver into a gripping posture and may be able to secure a better grasp on the target object.Type: GrantFiled: November 13, 2018Date of Patent: December 31, 2019Assignee: Soft Robotics, Inc.Inventors: Jeffrey Curhan, Craig Demello, Thomas Womersley, William Gunner
-
Patent number: 10369704Abstract: The present application relates to improvements in support systems for holding one or more robotic actuators, particularly soft robotic actuators. Because soft robotic actuators tend to push away from a base to which they are fixed upon inflation, they must be hold to the base securely. However, this may render it more difficult to remove the actuator from the base (e.g., when the actuator fails, when the actuator and/or base must be cleaned or serviced, or when a user wishes to switch out one style or size of actuator for another). Exemplary embodiments herein relate to improved designs for hubs, including interlocking and quick-release mechanisms that allow the actuator to be held firmly to the hub, but also allow the actuator to be quickly and efficiently released, when needed.Type: GrantFiled: December 15, 2017Date of Patent: August 6, 2019Assignee: Soft Robotics, Inc.Inventors: Mark J. Chiappetta, Ryan Knopf, Joshua Aaron Lessing, Jeffrey Curhan
-
Patent number: 10349927Abstract: A soft material retractor includes at least two soft actuators, each actuator having at least one pressurizable interior space, wherein the actuator has a first flexible resting state and a second stiffer pressurized state; and a flexible sheet spanning the actuators such that the actuators can be spaced apart from each other by a distance selected to displace a volume of material of a body cavity. The retractor can be uses for holding open wounds or incisions, with trochars, or to displace anatomical features such as organs within a body cavity.Type: GrantFiled: January 17, 2018Date of Patent: July 16, 2019Assignees: President and Fellows of Harvard College, Soft Robotics Inc.Inventors: Kevin C. Galloway, Joshua Aaron Lessing
-
Patent number: 10208925Abstract: A soft robotic instrument that is capable of changing its form factor (e.g., expanding and contracting) during use to facilitate minimally invasive surgery. The instrument may be formed wholly or partly of an elastomeric, electrically insulating material for mitigating the risk of injuring tissue and for mitigating the risk of electrical arcing during electrosurgery.Type: GrantFiled: March 11, 2015Date of Patent: February 19, 2019Assignee: Soft Robotics, Inc.Inventors: Carl Everett Vause, Joshua Aaron Lessing, Ryan Richard Knopf
-
Patent number: 10189168Abstract: Exemplary embodiments provide enhancements for soft robotic actuators. In some embodiments, angular adjustment systems are provided for varying an angle between an actuator and the hub, or between two actuators. The angular adjustment system may also be used to vary a relative distance or spacing between actuators. According to further embodiments, rigidizing layers are provided for reinforcing one or more portions of an actuator at one or more locations of relatively high strain. According to further embodiments, force amplification structures are provided for increasing an amount of force applied by an actuator to a target. The force amplification structures may serve to shorten the length of the actuator that is subject to bending upon inflation. According to still further embodiments, gripping pads are provided for customizing an actuator's gripping profile to better conform to the surfaces of items to be gripped.Type: GrantFiled: November 18, 2015Date of Patent: January 29, 2019Assignee: Soft Robotics, Inc.Inventors: Joshua Aaron Lessing, Ryan Knopf, Carl Vause
-
Patent number: 10179411Abstract: Exemplary embodiments relate to soft robotic gripper systems suited to grasping target objects in cluttered environments. Some embodiments provide extension rods, hinges, and/or rails that allow a soft robotic actuator to be extended towards or away from a robotic base and/or other actuators. Accordingly, a gripper including the actuator may be reconfigured into a size and/or shape that allows for improved access to the cluttered environment. Further embodiments relate to soft robotic gripper systems for supporting grasped objects during high acceleration movements using vacuum, gripper, and/or bellows devices. Still further embodiments relate to specialized grippers for manipulating food items.Type: GrantFiled: January 20, 2017Date of Patent: January 15, 2019Assignee: Soft Robotics, Inc.Inventors: Joshua Aaron Lessing, Ryan Knopf, Kevin Alcedo, Daniel Vincent Harburg, Sarv Parteek Singh
-
Patent number: 10179410Abstract: Exemplary embodiments provide modular robotic systems that allow one or more operation parameters of a robotic actuator, or group of actuators, to be dynamically configured or reconfigured. The operation parameters may be, for example, the X, Y, and/or Z position of the actuator or group of actuators with respect to other actuators, the arrangement of the actuator(s) into an array or matrix, the rotation or pitch of an actuator, the distance between actuators, the grip strength or grip surface of an actuator, etc. Accordingly, the same robotic manipulator(s) may be used for multiple purposes in multiple different contexts, manipulators can be swapped out on-the-fly, and robotic systems may be dynamically reconfigured to perform new tasks.Type: GrantFiled: June 13, 2016Date of Patent: January 15, 2019Assignee: Soft Robotics, Inc.Inventors: Joshua Aaron Lessing, Kevin Alcedo, Ryan Richard Knopf, Daniel Vincent Harburg
-
Patent number: 10173328Abstract: Exemplary embodiments relate to various improvements in soft robotic actuators, and techniques for manufacturing the improvements. For example, techniques for manufacturing a rigidizing layer for reinforcing a soft robotic actuator is provided. In another embodiment, a soft robotic actuator having integrated sensors is described. A flexible electroadhesive pad for achieving a conformal grip is also described. Still further, exemplary embodiments provide hydraulically-actuated soft robotic grippers, which allows for a reduction in the size of the actuation system and improved underwater operation.Type: GrantFiled: March 23, 2016Date of Patent: January 8, 2019Assignee: SOFT ROBOTICS, INC.Inventors: Joshua Aaron Lessing, Ryan Richard Knopf, Carl Everett Vause, Daniel Vincent Harburg
-
Patent number: 10172602Abstract: Exemplary embodiments describe soft robotic actuators for medical use, such as during surgeries and other medical procedures. According to one embodiment, a soft robotic incision retractor is provided. According to another embodiment, a soft robotic body tissue retractor is provided. The incision retractor and body tissue retractor may be used together, for example by using the incision retractor to hold open an incision while the body tissue retractor manipulates biological matter or an object accessible through the incision. Described embodiments offer the ability to conform to a given space, reduced risk of damage to surrounding structures as compared to traditional retractors, the ability to deliver varying amounts of force, the ability to be made from medically safe materials, and the potential for re-use or disposability.Type: GrantFiled: July 13, 2018Date of Patent: January 8, 2019Assignee: SOFT ROBOTICS, INC.Inventors: Joshua Aaron Lessing, Ryan Richard Knopf, Marc Graham, Carl Vause
-
Patent number: 10118301Abstract: A hub assembly for coupling different grasper assemblies including a soft actuator in various configurations to a mechanical robotic components are described. Further described are soft actuators having various reinforcement. Further described are and soft actuators having electroadhesive pads for improved grip, and/or embedded electromagnets for interacting with complementary surfaces on the object being gripped. Still further described are soft actuators having reinforcement mechanisms for reducing or eliminating bowing in a strain limiting layer, or for reinforcing accordion troughs in the soft actuator body.Type: GrantFiled: September 17, 2015Date of Patent: November 6, 2018Assignee: SOFT ROBOTICS, INC.Inventors: Joshua Aaron Lessing, Ryan Richard Knopf, Carl Everett Vause, Kevin Alcedo
-
Patent number: 10112310Abstract: Exemplary embodiments relate to improvements in robotic systems to reduce biological or chemical harborage points on the systems. For example, in exemplary embodiments, robotic actuators, hubs, or entire robotic systems may be configured to allow crevices along joints or near fasteners to be reduced or eliminated, hard corners to be replaced with rounded edges, certain components or harborage points to be eliminated, shapes to be reconfigured to be smoother or flat, and/or or surfaces to be reconfigurable for simpler cleaning.Type: GrantFiled: June 27, 2016Date of Patent: October 30, 2018Assignee: SOFT ROBOTICS, INC.Inventors: Joshua Aaron Lessing, Ryan Richard Knopf, Daniel Vincent Harburg, Kevin Alcedo, Grant Thomas Sellers, Mark Chiappetta
-
Patent number: 10093023Abstract: Exemplary embodiments relate to various improvements in soft robotic actuators, and more specifically the integration of stiff or rigid bodies into soft actuators to provide adjustable gripping behaviors. These actuators may be used as robotic end effectors to, for example, automate material handling processes. According to some embodiments, the actuators may be deployed in combination with a static or dynamic rigid structure, such as a rod. The rigid structure may extend beside or within the actuator. Multiple rigid structures may be deployed on the sides of an actuator, or multiple actuators may be deployed on the sides of a rigid structure. In further embodiments, an array or matrix of actuators may be integrated into a rigid structure, providing a low-profile gripper that can be maneuvered into tight spaces.Type: GrantFiled: April 25, 2016Date of Patent: October 9, 2018Assignee: SOFT ROBOTICS, INC.Inventors: Joshua Aaron Lessing, Ryan Richard Knopf, Daniel Vincent Harburg, Carl Everett Vause
-
Patent number: 10046462Abstract: Exemplary embodiments relate to improvements in soft robotic systems that permit a soft robotic end effector to be a self-contained system, without reliance on a tether to deliver inflation fluid to the actuator(s) of the end effector. According to some embodiments, a robotic system may be provided including a soft actuator and a hub. The body of the hub may include an integrated pressure source configured to supply inflation fluid through the actuator interface to the soft actuator. The pressure source may be, for example, a compressor (such as a twin-head compressor) or a reaction chamber configured to vaporize a fuel to create a high-temperature pressurized gas and deliver the pressurized gas to the actuator One or more accumulators may receive inflation fluid (or a partial vacuum) from the compressor over time, and store the inflation fluid under pressure, thus allowing actuation over a relatively short time period.Type: GrantFiled: August 1, 2016Date of Patent: August 14, 2018Assignee: SOFT ROBOTICS, INC.Inventors: Ryan Knopf, Joshua Lessing, Daniel Vincent Harburg, Grant Sellers, Kevin Alcedo
-
Patent number: 10028734Abstract: Exemplary embodiments describe soft robotic actuators for medical use, such as during surgeries and other medical procedures. According to one embodiment, a soft robotic incision retractor is provided. According to another embodiment, a soft robotic body tissue retractor is provided. The incision retractor and body tissue refractor may be used together, for example by using the incision retractor to hold open an incision while the body tissue retractor manipulates biological matter or an object accessible through the incision. Described embodiments offer the ability to conform to a given space, reduced risk of damage to surrounding structures as compared to traditional retractors, the ability to deliver varying amounts of force, the ability to be made from medically safe materials, and the potential for re-use or disposability.Type: GrantFiled: November 10, 2015Date of Patent: July 24, 2018Assignee: SOFT ROBOTICS, INC.Inventors: Joshua Aaron Lessing, Ryan Richard Knopf, Marc Graham, Carl Vause
-
Patent number: 9975251Abstract: Exemplary embodiments relate to applications for soft robotic actuators in the manufacturing, packaging, and food preparation industries, among others. Methods and systems are disclosed for packaging target objects using soft robotic actuators, for moving and positioning target objects and/or receptacles, and/or for diverting or sorting objects. By using soft robotic actuators to perform the fixing, positioning, and/or diverting, objects of different sizes and configurations may be manipulated on the same processing line, without the need to reconfigure the line or install new hardware when a new object is received.Type: GrantFiled: May 25, 2017Date of Patent: May 22, 2018Assignee: SOFT ROBOTICS, INC.Inventors: Joshua Aaron Lessing, Daniel V. Harburg, Sarv Parteek Singh, Mark Chiappetta, Ryan Knopf
-
Patent number: 9956745Abstract: A composite structural element is described, including: a first laminate layer comprising a plurality of first material layers; a second laminate layer comprising a plurality of second material layers; and an inflatable bladder configured for connection with a fluid inflation or deflation source and disposed in-between the first and second laminate layers.Type: GrantFiled: April 16, 2015Date of Patent: May 1, 2018Assignees: President and Fellows of Harvard College, Soft Robotics, Inc.Inventors: Kevin C. Galloway, Ryan Knopf, Joshua Aaron Lessing