Patent classifications
B25J18/002
Aseptic printer system including dual-arm mechanism
A system and method are provided for fabricating 3D structures from biomaterial. The system includes a printer assembly having a dual-arm assembly including an upper arm, and a lower arm connected by an elbow joint to the upper arm. A disposable barrier encloses a printing surface from an external environment and from components of the printer assembly. The upper arm and lower arm are inserted into an inlet of the barrier, so as to be isolated from the print surface. The lower arm is provided with an extruding system, and the extruding system includes an actuator-driven syringe configured to deposit biomaterial on the print surface. The biomaterial is deposited on the print surface to carry out 3D fabrication in an aseptic environment.
Fluid actuation of instruments through a sterile barrier
A robotic surgical system includes a fluid drive system and a surgical instrument removably positioned in operative engagement with the drive system. A sterile barrier covers non-sterile portions of the surgical system. Features of the sterile barrier are used to transfer motion output from the fluid drive system to the instrument for actuation of the instrument.
Coordinate positioning arm
A coordinate positioning arm includes: a base end and a head end; a drive frame for moving the head end relative to the base end; and a metrology frame for measuring a position and orientation of the head end relative to the base end. The drive frame includes a plurality of drive axes arranged in series between the base end and the head end. The metrology frame includes a plurality of metrology axes arranged in series between the base end and the head end. The metrology frame is adapted and arranged to be substantially separate and/or independent from the drive frame, for example by supporting the metrology frame substantially only at the base end and head end and by providing the metrology frame with sufficient degrees of freedom (via the metrology axes) to avoid creating an additional constraint between the metrology frame and the drive frame.
Information processing apparatus, information processing method, and program
There is provided an information processing apparatus and an information processing method to increase movement patterns of an autonomous mobile body more easily, the information processing apparatus including an operation control unit configured to control an operation of a driving unit. The operation control unit generates, on the basis of a teaching movement, control sequence data for causing a driving unit of an autonomous mobile body to execute an autonomous movement corresponding to the teaching movement, and causes the driving unit to execute the autonomous movement according to the control sequence data, on the basis of an action plan determined by situation estimation. The information processing method includes controlling, by a processor, an operation of a driving unit, and the controlling further includes generating control sequence data, and causing the driving unit to execute an autonomous movement according to the control sequence data.
Gearing, gearing unit, and robot
A gearing includes an internal gear, an external gear including external teeth placed around a rotation axis and meshing with the internal gear, a barrel part adjacent to the external teeth along the rotation axis, and an inner circumferential surface on an inner surface of the external teeth, and having flexibility and relatively rotating about the rotation axis to the internal gear, and a wave generator including a bearing having an outer ring in contact with the inner circumferential surface, an inner ring, and balls intervening between the outer ring and the inner ring, and moving a mesh position between the internal gear and the external gear about the rotation axis.
ASEPTIC PRINTER SYSTEM INCLUDING DUAL-ARM MECHANISM
A system and method are provided for fabricating 3D structures from biomaterial. The system includes a printer assembly having a dual-arm assembly including an upper arm, and a lower arm connected by an elbow joint to the upper arm. A disposable barrier encloses a printing surface from an external environment and from components of the printer assembly. The upper arm and lower arm are inserted into an inlet of the barrier, so as to be isolated from the print surface. The lower arm is provided with an extruding system, and the extruding system includes an actuator-driven syringe configured to deposit biomaterial on the print surface. The biomaterial is deposited on the print surface to carry out 3D fabrication in an aseptic environment.
Arrangement for an articulated arm robot and method for determining the positioning of a mount for an end effector of an articulated arm robot
An arrangement for an articulated arm robot having an articulated arm and having a measurement arm formed in a parallel kinematic system is provided. The articulated arm includes: joints, each of which has a joint axis; actuators, each actuator being associated with one of the joints; link elements, which connect the joints in a serial articulated arm arrangement; and a mount for an end effector, which mount is arranged at an end of the articulated arm and is configured to hold an end effector. The measurement arm includes: measurement arm joints, each of which has a measurement arm joint axis, which extends coaxially to the joint axis of an associated joint of the articulated arm; rotary encoders, each encoder being associated with one of the measurement arm joints; and measurement arm link elements, which connect the measurement arm joints in a serial measurement arm arrangement.
FLUID ACTUATION OF INSTRUMENTS THROUGH A STERILE BARRIER
A robotic surgical system includes a fluid drive system and a surgical instrument removably positioned in operative engagement with the drive system. A sterile barrier covers non-sterile portions of the surgical system. Features of the sterile barrier are used to transfer motion output from the fluid drive system to the instrument for actuation of the instrument.
Fluid actuation of instruments through a sterile barrier
A robotic surgical system includes a fluid drive system and a surgical instrument removably positioned in operative engagement with the drive system. A sterile barrier covers non-sterile portions of the surgical system. Features of the sterile barrier are used to transfer motion output from the fluid drive system to the instrument for actuation of the instrument.
FLUID ACTUATION OF INSTRUMENTS THROUGH A STERILE BARRIER
A robotic surgical system includes a fluid drive system and a surgical instrument removably positioned in operative engagement with the drive system. A sterile barrier covers non-sterile portions of the surgical system. Features of the sterile barrier are used to transfer motion output from the fluid drive system to the instrument for actuation of the instrument.