About robots, robot development
and those who make it happen
  • WF

    Waseda University's WF-4R is a major improvement over the WF-3RIX. This anthropomorphic flutist robot now has 38 degrees of freedom. The range of motion increased in the neck and arms and the vibrato mechanism is smaller. The fingers are link mechanisms…

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  • InteSpring

    Intespring is involved in product design and technical projects. It advices on motion technique and spring mechanisms. It is involved in projects like X-Arm, LabCoat and SpringUp.

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  • Robotics Lab.

    The Laval University Robotics Laboratory pioneers research in the study of parallel mechanisms and articulated robotic hands. They have made numerous partnerships with other labs as well as government agencies, including the Canadian Space Agency. One…

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  • Banryu

    TMSUK, Sanyo and Omron developed a dinosaur based security robot called Banryu T7S Type 2. It has quiet walk mechanism that allows stealth monitoring of establishments.

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  • Hajime Robot

    Hajime Robot 4 continues in improvements over its two predecessors. This work paid off when it took home two consecutive wins at the ROBO-One Bandai Cup in 2003. Hajime Robot 4 can walk on even and uneven terrain. It is a bipedal robot with servo motors…

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  • MARI

    The third humanoid robot in the Mari series, the Mari III, is equipped with the Robot Network (RON) control system. Its body mechanism is built primarily with aluminium alloy, and it also has gyro sensors and accelerometers. The development of Mari III…

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  • Melissa

    Crafthouse developed a humanoid called Melissa which has five human-like fingers. It uses its servomotors and a feedback mechanism system to efficiently fold and open them.

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  • WF

    WF-4 is Waseda University's improved version of flutist robot WF-3RIX. Among the changes made to this anthropomorphic robot are better sound quality from the flute. The vibrato mechanism was moved to the back of the neck, giving it a more human appearance.…

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  • WT

    Waseda University's WT-1R is the second version of the WT-1. They have made many improvements to the robot, including its ability to speak consonant sounds. The vocal organs have 15 DOF and produce a more natural speech mechanism than the original had.

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  • WT

    Waseda University developed WT-3; a robot that can produce human-like voices. It is able to produce consonants, vowels, stops, and nasal sounds easily. WT-3 also has an improved vocal tract mechanism so that its words and sounds have better clarity than…

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  • WT

    Waseda University developed its fifth talking robot, WT-5, in 2005. It has mechanical lips and vocal chords, as well as lungs and a nasal cavity. The robot has a new vocal cord mechanism and produces vibration patterns similar to those in real human speech.…

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  • DARPA Robotics Challenge

    The DARPA Robotics Challenge (DRC) is a competition where systems & software teams compete to build robots that can assist humans in responding to man-made and natural disasters. The finals will be held June 5-6, 2015 at Fairplex in Pomona, California.

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  • Biomimetic Underwater Robot Program

    The Biomimetic Underwater Robot Program at Northeastern University specializes in biomimetic robots, autonomous underwater robots and biomimetic neurotechnology. So far they have created a lamprey-like robot designed for remote sensing operations in water…

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  • Boston Dynamics

    Being the leading provider of human simulation tools, solutions and software, Boston Dynamics is an engineering company founded in 1992. It aims at building dynamic software and robots for human simulation.

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  • Flexible Robotic Environment

    FRE™ is a robotic solution that combines mechanical and motor/drive components with proprietary hardware, software and controls. The end result is a cost-effective, highly innovative, configurable,

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  • Intelligent Servosystems Lab.

    The ISL at the University of Maryland performs extensive robotics research. Their focus is to advance state-of-the-art design and real-time control of intelligent systems. Among the lab’s impressive list of projects is the robotic hand the Modular Dexterous…

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  • Robomodix

    Robomodix was founded by William Huff, a 25 year motion picture effects artist. Using methods  and materials developed for the film industry, we separate ourselves from other comparative

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  • The Manipulation Lab

    The Robotics Institute Manipulation Lab at CMU is a prominent academic robotics research lab. Focusing on the autonomous robotic manipulation problem, the Lab works on everything from robotic hands to the dynamics of robotic legged movement. Among their…

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  • Android

    James Bruton created the Android 7 by combining the Android 3 and Android 6. The legs are absent of motors, but the Android 7 can bend further and be used for getting up and down stairs. Wiper motors were used in its body to pull cables to the leg joints,…

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  • ARoS

    AroS, an anthropomorphic helper robot, excels at interacting with people. Using Hebbian principles, it reads gestures to understand intentions and corrects human errors.

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  • Asahi Bartender Robot

    For customers who desire less attitude and speedy service, the Ashai bartender robot is the solution. It can serve a beer almost 5 times faster than most human bartenders.

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  • Bino3

    Bino3 surveillance robot has a 3D motion and stereo binocular system. Its developers hope to use it in areas potentially dangerous to humans, such as radioactive rooms.

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  • BIOLOID Premium

    The versatile Bioloid Premium robot is an educational robot. It comes in a robot kit with parts and instructions. A biped humanoid robot, it can walk and has a remote control.

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  • CHARLI L

    Virginia Tech Robotics Mechanism Laboratory developed a bipedal humanoid called CHARLI L. Having four limbs and a head, it can walk on uneven grounds and can kick a ball.

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  • Dara

    Dara's primary function is to simulate human behavior with the idea of it being able to perform human tasks in the future. It has voice recognition and follows voice commands.

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  • Delfi-n3Xt

    Launched in November 2013, Delfi-n3Xt is a small satellite that aims at facilitating practical education, nanosatellite innovation as well as technology demonstration. The main objective of Delfi-n3Xt is to support and strengthen the goals of the Delfi…

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  • Ground Beetle

    Developed by H&S Robots, the Ground Beetle resembles a real beetle in appearance and movement. It imitates beetle movements with the use of servo motors. Ground Beetle is easy to program even if you have no prior knowledge. It draws lots of attention…

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  • HanSaRam

    KAIST developed the fourth robot in the HanSaRam series called HanSaRam IV. It has 12 servomotors, 4 force sensing resistors in each foot, and master-slave controllers.

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  • ifbot

    Japan’s Business Design Laboratory developed a humanoid called Ifbot. It uses its own emotions to detect emotions of people, hears their tone and words, and communicates with them.

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  • James

    LIRA Laboratory at the University of Genoa created James. It is a flexible humanoid which uses physical models of neural control and cognitive structures to study human brain function.

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  • Joy

    House steward robot Joy acts as the human/machine interface inside intelligent homes. It has a planning algorithm system so it can complete tasks with minimal human input needed. Joy also can grasp objects with grippers on its arms and bring them to its…

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  • KAMERO

    KaMERo is a mobile robot with three leg-wheels. This wheeled robot is able to move in three different ways thanks in part to a 90 degree bendable knee joint in each leg. The rear leg is an active wheel, and the other two are passive and to give it stability.…

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  • Kaspar

    University of Hertfordshire created the child-sized humanoid robot called KASPAR. Its aim is to study the interaction between humans and robots, and assist kids with autism.

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  • Majingaa

    Team Majingaa from Japan developed Majingaa based on the Great Mazinger, an anime character. It is controlled by a body harness and was the first robot to be controlled internally.

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  • MechaRobo

    MyTech created MechaRobo after getting inspired by Japanese Karakuri Dolls. The robot is very flexible, can change its appearance, and is an effective entertainer and a great communicator.

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  • Mini-Me

    Mini-Me is a Japanese robot which is fabricated with the owner's appearance and can process speech. It can talk, read RSS feeds, make VoIP calls and read the weather.

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  • Precise Path RG3

    The Precise Path RG3 is a hole-in-one when it comes to maintaining the greens. This mowing robot safely navigates the turf and cuts the grass to a clean, uniform height.

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  • RI-MAN

    RIKEN and BMCRC created humanoid robot RI-MAN to provide healthcare support and aid in dynamic motor function research. This assistive robot can recognize faces, discern scents, and detect a human's position through tactile sensors. It can perform tasks…

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  • Robomow

    RL855 shares many features with other models in the Robomow series. It can cut a bumpy, sloping lawn of up to 1,000 sqm, avoiding trees and rocks, and has a Child Guard.

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  • Robomow

    RM400 can mow bigger lawns than other Robomow models, and can be set to follow a schedule – when it's time for a mowing session, it undocks itself and gets to work.

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  • Robonaut

    NASA and DARPA developed an astronaut robot called Robonaut. It is controlled by an operator using a telepresence control system and has the potential to work with humans in space.

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  • Robopet

    Robopet is a fun, interactive dog robot. It has sonic and motion sensors and realistically responds to sound and movement. Robopet can roll over, bark, and learn tricks.

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  • Robovie

    Robovie Nano is an entertainment robot created by Vstone. This small robot can walk, do cartwheels and side flips, and is fully customizable with RobovieMaker2 software

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  • Robovie

    Robovie-PC is a combination hobby robot and desktop PC. Sturdy and lightweight, Robovie-PC allows you Internet access. It runs on Linux or Windows operating systems.

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  • Roboware

    Roboware developed an interactive humanoid called Roboware E3. It can be controlled by remote control as well as voice commands. It is very interactive and communicative.

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  • Saika

    Japan’s Tohoku University developed a robot of the Saika series called Saika-4. It is a research platform for intelligent robotics, and has modem, gyroscope and motor drivers.

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  • SAR 400

    The SAR-400 is a legless humanoid robot designed to perform simple tasks is space to aid cosmonauts. Russian space authorities are testing this teleoperated robot in a mock station on tasks like opening hatches. Although the SAR-400 is not practical for…

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  • Sarcoman

    Sarcoman is an entertainment robot capable of juggling balls and balancing a pole among other feats. It can dynamically adjust its movements and is controlled by a human operator.

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  • SILO

    The four-legged robot Silo4 was built to assist with research and development. It is a platform for developing other robots. The creators have made a book available for people who want to build their own Silo4. It is projected to be a great success with…

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  • SWUMANOID

    The SWUMANOID swimming robot was designed to measure water resistance while swimming. Researchers hope the half-scale robot will allow them to make better swim gear.

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  • Thomas and Janet

    The National Taiwan University of Science and Technology developed two humanoids called Thomas and Janet. They have silicon facial muscles and can kiss each other realistically.

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  • TITRUS III

    TITECH developed a dinosaur robot called TITRUS-III. It uses its tail as a third leg for stability and its head as manipulator, and sways its long neck and tail to maintain balance. Although it was never developed full scale, it inspired the development…

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  • TMSUK

    The TMSUK Company created a fourth robot in the TMSUK series. The TMSUK-4 is a remote-controlled robot that can do errands, such as going shopping and cleaning vegetables. The humanoid robot can also be controlled via cell phone and has 27 degrees of…

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  • WF

    WF-3RIX was developed by Waseda University. This robot uses advanced human organ simulation to mimic the flute-playing of a human. It has artificial fingers to trill the flute and a MIDI accompaniment system. Its artificial lungs have the same volume…

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  • WF

    WF-4RII is the successor to Waseda University's WF-4R. This flutist robot uses MIDI accompaniment data to perform and collaborates with human partners. Two CCD cameras in the eye system allow it to interact with the audience and the eyebrow moves depending…

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  • WT

    The WT-1 is a robotic research platform that became the foundation for the development of cell phones. This research on also contributed to other language-based developments. The WT-1 is capable of data compression through transmission of human vocal…

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  • WT

    Waseda University developed WT-2, a robot which can produce human-like voices. It can be used to train vocally impaired people. WT-2 has vocal organs that have 15 degrees of freedom, which contributes to its exceptional voice quality.

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  • WT

    Waseda University developed another talking robot and named it WT-4. This robot can produce accurate human vocal sounds and copy human speech. It has 19 degrees of freedom in its vocal organs, and realistic artificial lips and tongue. Advanced resonance…

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