Manipulator

PickNik awarded NASA SBIR Phase 2 for in-orbit robot autonomy.

Retrieved on: 
Tuesday, June 8, 2021

PickNik is a robotics software technology company founded in 2015 and headquartered in Boulder, Colorado.

Key Points: 
  • PickNik is a robotics software technology company founded in 2015 and headquartered in Boulder, Colorado.
  • PickNik is the maintainer of the open-source MoveIt project, a widely used robotic motion planning framework within the Robot Operating System (ROS).
  • "We are excited to be collaborating with NASA in pushing the frontier of manipulator robotics beyond factories and warehouses, and into the most difficult domains," commented Dr. Dave Coleman PickNik, founder and CEO.
  • We believe integrating this automation while enabling human-in-the-loop intervention makes for the simplest teleop solution," Dr. Mark Moll, Director of Research at PickNik, added.

The global uterine manipulators market at a CAGR of nearly 6% during the forecast period

Retrieved on: 
Monday, September 16, 2019

This uterine manipulators market analysis considers sales from uterine manipulators/injectors, mangeshikar manipulators, clermont-ferrand uterine manipulators, vectec uterine manipulators, and other types.

Key Points: 
  • This uterine manipulators market analysis considers sales from uterine manipulators/injectors, mangeshikar manipulators, clermont-ferrand uterine manipulators, vectec uterine manipulators, and other types.
  • Also, our global uterine manipulators market report looks at factors such as high incidence of gynecological diseases leading to the rise in the number of hysterectomies, benefits of uterine manipulators, and rise in female geriatric population with high risk of POP.
  • However, complications associated with uterine manipulators, shortage of qualified medical professionals to perform hysterectomies, and stringent regulatory framework may hamper the growth of the uterine manipulators' industry over the forecast period.
  • These benefits will lead to the expansion of the global uterine manipulators market at a CAGR of nearly 6% during the forecast period.

The Office of Naval Research (ONR) Selects Houston Mechatronics for Multi-Million Dollar Award to Develop Robotic Hands and Intelligent Behaviors for Subsea Missions

Retrieved on: 
Tuesday, June 4, 2019

HOUSTON, June 4, 2019 /PRNewswire/ -- Houston Mechatronics, Inc. (HMI) announced a new award by the Office of Naval Research to develop Artificial Intelligence (AI)powered robotic hands for subsea manipulators.

Key Points: 
  • HOUSTON, June 4, 2019 /PRNewswire/ -- Houston Mechatronics, Inc. (HMI) announced a new award by the Office of Naval Research to develop Artificial Intelligence (AI)powered robotic hands for subsea manipulators.
  • Robotic systemsare increasingly serving in more importantroles within the naval battle space as technology matures and desired warfighter stand off distance increases.
  • Typically, robots in the ocean do not have the manipulation dexterity of their land-based counterparts and therefore are not capable of approaching human-levelperformance.
  • The team at HMIis developing and fielding highly dexterous robotic hands that use AI grasping behaviors which will be demonstrated withtheir revolutionary subsea transforming robot Aquanaut.

Winner of Fetch Robotics FetchIt! Challenge Executes Complex Manufacturing Tasks Using Autonomous Mobile Robotic Arm

Retrieved on: 
Thursday, May 23, 2019

The competition was designed to advance the state of technology for applying mobile manipulators, which are autonomous mobile robots (AMRs) fitted with robotic arms, for use in manufacturing and related applications.

Key Points: 
  • The competition was designed to advance the state of technology for applying mobile manipulators, which are autonomous mobile robots (AMRs) fitted with robotic arms, for use in manufacturing and related applications.
  • This has fueled growing interest in using AMRs equipped with robotic arms - so called Mobile Manipulators - for applications that combine autonomous transport with robotic arms that can grasp and manipulate objects.
  • While conceptually simple, combining autonomous mobility with robotic arm activity is extremely challenging, requiring complex interaction between the robot navigation, machine vision, arm operation and safety systems.
  • Id like to congratulate all the teams for their accomplishments during the course of this challenge, said Russell Toris, Director of Robotics at Fetch Robotics.