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K10 are rovers used to explore planetary surfaces. Each third-generation K10 has four-wheel drive, all-wheel steering and a passive averaging suspension. This helps reduce the motion induced by travel over uneven ground. The K10 has mounting points on its front, back, and bottom that allows for antennas, sensors, and other scientific instruments to be attached. The K10 controller runs on a Linux laptop and communicates via 802.11g wireless, or a Tropos mesh wireless.

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  • K-10 robot (en)
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  • K10 are rovers used to explore planetary surfaces. Each third-generation K10 has four-wheel drive, all-wheel steering and a passive averaging suspension. This helps reduce the motion induced by travel over uneven ground. The K10 has mounting points on its front, back, and bottom that allows for antennas, sensors, and other scientific instruments to be attached. The K10 controller runs on a Linux laptop and communicates via 802.11g wireless, or a Tropos mesh wireless. (en)
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  • http://commons.wikimedia.org/wiki/Special:FilePath/K10-Black-rover.jpg
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  • K10 are rovers used to explore planetary surfaces. Each third-generation K10 has four-wheel drive, all-wheel steering and a passive averaging suspension. This helps reduce the motion induced by travel over uneven ground. The K10 has mounting points on its front, back, and bottom that allows for antennas, sensors, and other scientific instruments to be attached. The K10 controller runs on a Linux laptop and communicates via 802.11g wireless, or a Tropos mesh wireless. 10 rovers are prototypical remote-controlled robots that are meant for planetary exploration and terrestrial surveillance. Lighter and more mobile than their Martian counterparts, they weigh about 175 pounds, have top speeds of about 5 miles per hour, but can carry and use up to 30 pounds of scientific instruments. They allow humans to stay out of the vacuum of space while surveying and exploring undiscovered planetary surfaces like Mars. For this reason alone, K10 rovers will be very valuable to the humans that will inhabit Mars eventually. (en)
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