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ESC 2.7A Speed controller 18 action for TT GA25_370 motor vehicle chassis 6v-10v
$ 15.04
- Description
- Size Guide
Description
Description:Quantity:1pc
parameter:
A small ESC realizes Mecanum's special mixing control, which drives 4 motors, and the model friend directly connects to the aircraft model remote control to play. Toy car, TT motor GA25_370 for 6V
(For programming enthusiasts, this ESC can also be used with Arduino's Servo lib)
parameter:
6-10V lithium battery is recommended (power +-reverse connection is prohibited)
4 channels each 2.7A peak 6A (previously 1.8A peak 3.5A) brush motor output
There is certain overload and overheating protection (but repeated overload may burn)
Power-on prompt (you will hear a “beep” from the motor to prompt power-on)
Start with the neutral point (the throttle channel is about 1500, you will hear the motor beep, the ESC will start)
With out-of-control protection (lost signal (in the accident, the signal line was disconnected)), for safety and motor protection, you need to return the throttle to the center and unlock again.
Board size: 27.5x30mm
Note: The product only has ESC, not the chassis
Operation method: (The picture above shows American hands, Japanese hands fumble)
If you hit that direction with your left stick, the car will go in that direction.
The right stick controls the head of the car from left to right. If the stick is pressed hard, the car can rotate.
(Note: The direction (northwest (or top left), bottom right, bottom) is relative to the front of the car)
To be clear:
a) Plug 3P white wire to control the car to move left and right
b) Two single yellow wires are inserted to control the car to move forward and backward
c) Single-lane wire is inserted into 4 channels to control the rotation of the front
Necessary conditions for successful commissioning
1) The pros and cons of the remote control 1, 2, and 4 channels must be correct (if you use er9x, openTx, Fusi i6, then no test is required to ensure that the channel is not reversed, but A control is considered positive, B control may think Is the opposite), if you use other controls, use the following test method to test
1-way connection to the steering gear, driving the lever from left to right, the steering gear rotates counterclockwise (viewed from top to bottom)
2-way stroke from bottom to top, the steering gear rotates counterclockwise
4-way stroke from left to right, the steering gear rotates counterclockwise
If your remote is not set this way, please set it like this. (Here the servo is the normal forward servo)
2) The direction of the wheels is correct (see the figure below)
3) The sequence of electric motors 1, 2, 3, and 4 is correct (explained in the wiring diagram)
After testing, the 18 actions in the figure below can be operated. Adjust the upper limit of the remote control (also called Limits, end points), pay attention to the grip strength when you play, you can make the movement more and more delicate.
The following example illustrates how complex actions are made:
Right swing tail: Right stroke is right, left stroke is light left. (The tail swing is similar, the two strokes are reversed.) By controlling the lever's strength, you can make pan brushes with different arc sizes.
Rotate around the lower left corner: the right stick hits up, the left stick hits left slightly.
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