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Robot House

Monday, 9 April 2012. Using the WowWee TriBot wheel encoders. The TriBot base includes wheel encoders that provide feedback about the actual wheel rotation to the TriBot main chip. These 3 wheel encoders are connected to the TriBot board with 3 thin 3-wire cables. They take 12V as input and output 12V. This means that you should convert the output to 5v before connecting it to the Arduino, which is a hassle. The wheel encoder connector pinout is:. 123 1: Ground 2: Output 3: 5. Saturday, 31 March 2012.

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Robot House | myrobothouse.blogspot.com Reviews
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Monday, 9 April 2012. Using the WowWee TriBot wheel encoders. The TriBot base includes wheel encoders that provide feedback about the actual wheel rotation to the TriBot main chip. These 3 wheel encoders are connected to the TriBot board with 3 thin 3-wire cables. They take 12V as input and output 12V. This means that you should convert the output to 5v before connecting it to the Arduino, which is a hassle. The wheel encoder connector pinout is:. 123 1: Ground 2: Output 3: 5. Saturday, 31 March 2012.
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Robot House | myrobothouse.blogspot.com Reviews

https://myrobothouse.blogspot.com

Monday, 9 April 2012. Using the WowWee TriBot wheel encoders. The TriBot base includes wheel encoders that provide feedback about the actual wheel rotation to the TriBot main chip. These 3 wheel encoders are connected to the TriBot board with 3 thin 3-wire cables. They take 12V as input and output 12V. This means that you should convert the output to 5v before connecting it to the Arduino, which is a hassle. The wheel encoder connector pinout is:. 123 1: Ground 2: Output 3: 5. Saturday, 31 March 2012.

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1

Robot House: December 2011

http://myrobothouse.blogspot.com/2011_12_01_archive.html

Sunday, 18 December 2011. Hacking the WowWee TriBot. The Tribot is an autonomous robot from WowWee with a nice feature set, including omnidirectionnal wheels, voice synthesis and several sensors. It cost 65 euros, much less on the second hand market (I got mine for 30 euros). Once I got fed up with its excessively talkative nature (which took less than ten minutes), I started thinking about hacking the beast. What about controlling this robot base with an arduino? The 12V output to power the arduino.

2

Robot House: Using the WowWee TriBot wheel encoders.

http://myrobothouse.blogspot.com/2012/04/using-wowwee-tribot-wheel-encoders.html

Monday, 9 April 2012. Using the WowWee TriBot wheel encoders. The TriBot base includes wheel encoders that provide feedback about the actual wheel rotation to the TriBot main chip. These 3 wheel encoders are connected to the TriBot board with 3 thin 3-wire cables. They take 12V as input and output 12V. This means that you should convert the output to 5v before connecting it to the Arduino, which is a hassle. The wheel encoder connector pinout is:. 123 1: Ground 2: Output 3: 5. 9 April 2012 at 09:47.

3

Robot House: BlueTooth Controlled TriBot Base

http://myrobothouse.blogspot.com/2012/03/bluetooth-controlled-tribot-base.html

Saturday, 31 March 2012. BlueTooth Controlled TriBot Base. I used my TriBot-based robot base to play with Android and Bluetooth. Goal: controlling the robot base with an Android phone. The robot now look like that:. And the result, where you can see that the robot can actually turn and slide in all directions (left pad for sliding, right pad for turning):. How to connect Android to an Arduino? I bought this very cheap serial/BlueTooth board (CSR Bluetooth chip/CSR BlueTooth chip) from Iteadstudio:. I inc...

4

Robot House: March 2012

http://myrobothouse.blogspot.com/2012_03_01_archive.html

Saturday, 31 March 2012. BlueTooth Controlled TriBot Base. I used my TriBot-based robot base to play with Android and Bluetooth. Goal: controlling the robot base with an Android phone. The robot now look like that:. And the result, where you can see that the robot can actually turn and slide in all directions (left pad for sliding, right pad for turning):. How to connect Android to an Arduino? I bought this very cheap serial/BlueTooth board (CSR Bluetooth chip/CSR BlueTooth chip) from Iteadstudio:. I inc...

5

Robot House: Hacking the WowWee TriBot

http://myrobothouse.blogspot.com/2011/12/tribot-is-autonomous-robot-from-wowwee.html

Sunday, 18 December 2011. Hacking the WowWee TriBot. The Tribot is an autonomous robot from WowWee with a nice feature set, including omnidirectionnal wheels, voice synthesis and several sensors. It cost 65 euros, much less on the second hand market (I got mine for 30 euros). Once I got fed up with its excessively talkative nature (which took less than ten minutes), I started thinking about hacking the beast. What about controlling this robot base with an arduino? The 12V output to power the arduino.

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Robot House

Monday, 9 April 2012. Using the WowWee TriBot wheel encoders. The TriBot base includes wheel encoders that provide feedback about the actual wheel rotation to the TriBot main chip. These 3 wheel encoders are connected to the TriBot board with 3 thin 3-wire cables. They take 12V as input and output 12V. This means that you should convert the output to 5v before connecting it to the Arduino, which is a hassle. The wheel encoder connector pinout is:. 123 1: Ground 2: Output 3: 5. Saturday, 31 March 2012.

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