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T-MOTOR AT12A 2-3S F3P Fixed-Wing ESC with 5V/2A BEC

About T-MOTOR AT12A 3S Fixed Wing Drone ESC

The AT12A is a fixed-wing electric regulator with a linear voltage regulator scheme, supports a 2-3S lithium battery and weighs 11 grams. 

The maximum peak current is15A. Excellent performance, reliable quality, supports current BEC output. High-speed throttle response, multiple programmable parameters. 

It is recommended for use with F3P small motors.             


AT12A Highlights:

1. Excellent performance & reliable quality

2. Supports current BEC output 5V/2A.

3. High-speed throttle response.

4. Various programmable parameters.


Packing List Includes:

1x T-Motor AT12A ESC

1x Hardware Kit


Matching Guide:

AM40 V2 Motor / AM60 V2 Motor

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T-Motor AT12A 2-3S fixed-wing ESC with 5V/2A BEC PC
T-Motor AT12A ESC label showing 2-3S LiPo support pc
T-Motor AT12A fixed-wing ESC support for bec output pc
T-Motor AT12A fixed-wing ESC fast throttle response pc
T-Motor AT12A ESC programmable parameter options pc

AT (Fixed-Wing Series) ESC Manual


Disclaimer

Thank you for purchasing our Electronic Speed Controller (ESC). Incorrect operation of a high-power RC system may cause danger. Please read this manual carefully and strictly follow the operating procedures.

We assume no liability for personal injury, property damage or consequential loss resulting from improper use of the product or unauthorized modification of its workmanship.


Product Features

1. All components are original, ensuring high ESC quality and reliability.

2. Strong current-flow resistance.

3. Multiple protection functions, including abnormal input voltage protection, battery low-voltage protection, overheat protection and throttle signal loss protection.

4. Supports normal, soft and ultra-soft startup modes and is compatible with fixed-wing aircraft and helicopters.

5. The throttle range can be configured for compatibility with different transmitters, providing smooth, responsive and linear speed control.

6. The maximum supported motor speed is 210,000 RPM for a 2-pole motor, 70,000 RPM for a 6-pole motor and 35,000 RPM for a 12-pole motor.

Programmable Items

The option shown in red is the default setting.

1. Brake Setting: Disabled/Enabled.

2. Battery Type: LiPo/NiMH.

3. Low-Voltage Protection Mode (Cutoff Mode): Limit Power (gradually reduces the output power)/Cut Off (immediately stops the output power). When low-voltage protection is activated, the motor can be restarted by moving the throttle stick to the minimum position. However, because the battery voltage remains low, the available power output will be limited.

4. Low-Voltage Protection Threshold: Low/Medium/High.

When the battery type is set to LiPo, the ESC automatically detects the number of battery cells. The low, medium and high cutoff voltages are 2.85V, 3.15V and 3.3V per cell, respectively. For example, when the Medium threshold is selected for a 3S LiPo battery, the cutoff voltage is 3.15V × 3 = 9.45V.

When the battery type is set to NiMH, the low, medium and high cutoff thresholds are 0%, 50% and 65% of the startup voltage. Selecting 0% disables the low-voltage cutoff function. For example, a fully charged six-cell NiMH battery has a voltage of 1.44V × 6 = 8.64V. When the Medium threshold is selected, the cutoff voltage is 8.64V × 50% = 4.32V.

5. Startup Mode: Normal/Soft/Super-Soft. The time required for the motor to accelerate from stationary to maximum speed is approximately 300ms, 1.5 seconds or 3 seconds, respectively. Normal mode is suitable for fixed-wing aircraft, while Soft and Super-Soft modes are suitable for helicopters. Soft mode takes approximately 1.5 seconds and Super-Soft mode takes approximately 3 seconds to advance from the initial throttle position to full throttle.

If the throttle is fully closed and then reopened within three seconds after the first startup, the ESC automatically switches to Normal mode. This helps prevent a crash caused by an excessively slow throttle response.

6. Timing: Low/Medium/High (3.75°;/15°;/26.25°;). Low timing is suitable for most motors. Because motor structures differ, test the available timing settings to achieve satisfactory performance. High timing may be selected to increase motor speed. After changing the timing setting, always test the system on the ground before flying.

Specifications

ModelContinuous CurrentBurst Current (≤10s)BEC ModeBEC Output
AT-12A12A15ALinear5V/2A


BEC Output CapabilityBattery CellWeightSize
L * W *H
2S LiPo3S LiPo4S LiPo6S LiPoLiPoNiMH
5 servos4 servos

2-3S5-9 cells11g38 *18*7


Before Using Your New ESC

IMPORTANT: Because different transmitters have different throttle ranges, calibrate the throttle range before flying. The throttle range should be recalibrated whenever a new transmitter is used.

T-Motor AT12A ESC throttle range calibration guide pc
T-Motor AT12A ESC throttle range calibration guide 2 pc
T-Motor AT12A ESC throttle range calibration guide 2 pc

Protection Functions

1. Startup Protection: If the motor fails to start within two seconds after throttle input, the ESC will cut off the output power. In this situation, the throttle stick MUST be returned to the minimum position before restarting the motor. This protection may be activated by an unreliable connection between the ESC and motor, disconnected motor output wires, a blocked propeller or a jammed reduction gear.

2. Temperature Protection: When the ESC temperature exceeds approximately 110 Celsius degrees, the ESC will reduce the output to approximately 40% of full power instead of shutting down completely. This maintains limited motor power and helps prevent a sudden loss of control. The ESC will gradually restore maximum output power after the temperature returns to a safe level.

3. Throttle Signal Loss Protection: If the throttle signal is lost for one second, the ESC will begin reducing the output power. If the signal remains unavailable for another two seconds, the ESC will completely cut off the output. If the throttle signal is restored while the power is being reduced, normal throttle control will resume immediately. A momentary signal loss of less than one second will not cause an immediate power cutoff.

4. Overload Protection: If the load suddenly becomes excessive, the ESC will cut off the output power or restart automatically. A blocked motor or propeller may cause this sudden increase in load.

Troubleshooting

TroublePossible ReasonAction
After powering on the ESC, the motor does not operate and no sound is emitted.The connection between the battery pack and ESC is incorrect.Check the power connection and replace the connector if necessary.
After powering on the ESC, the motor does not operate and the alert tone is emitted "beep-beep-, beep-beep-,beep-beep-". Each group of two beeps is repeated at an interval of approximately one second.The battery pack or input voltage is abnormal, too high or too low.Check the voltage of the battery pack.
After powering on the ESC, the motor does not operate and the alert tone is  emitted "beep-, beep-,beep-". Each beep is repeated at an interval of approximately two seconds.The throttle signal is irregular.Check the receiver and transmitter, then check the throttle-channel cable.
After powering on the ESC, the motor does not operate and the alert "beep-,  beep-,beep-".; is emitted rapidly at intervals of approximately 0.25 seconds.The throttle stick is not in the minimum position.Move the throttle stick to the minimum position and recalibrate the throttle range.
After powering on the ESC, the motor does not operate and a special tone "56712" is emitted after two beeps.The throttle channel is reversed, causing the ESC to enter programming mode.Set the throttle-channel direction correctly.
The motor rotates in the opposite direction.The ESC output wires are connected to the motor wires in the wrong sequence.Swap any two of the three motor wires.

Program the ESC with Your Transmitter

The ESC programming procedure consists of four steps:

1. Enter programming mode.

2. Select a programmable item.

3. Set the parameter value.

4. Exit programming mode.

Note: Make sure the throttle curve is set to 0% when the throttle stick is at the minimum position and 100% when it is at the maximum position.


1. Enter Programming Mode

1. Switch on the transmitter, move the throttle stick to the maximum position and connect the battery to the ESC.

2. Wait for two seconds. The motor should emit a special "beep-beep-" tone.

3. Wait for another 5 seconds. The motor should emit a special "56712" tone, indicating that programming mode has been entered.


2. Select Programmable Items

After entering programming mode, the ESC will repeatedly play eight tone sequences. Move the throttle stick to the minimum position within three seconds after hearing the required tone sequence to select that item.

Tone SequenceProgrammable ItemTone Description
"beep"Brake settingOne short tone
"beep-beep-"Battery typeTwo short tones
"beep-beep-beep-"Cutoff modeThree short tones
"beep-beep-beep-beep-"Cutoff thresholdFour short tones
"beep-----"Startup modeOne long tone
"beep-----beep-"TimingOne long and one short
"beep-----beep-beep-"Restore all default settingsOne long and two short
"beep-----beep-----"Exit programming modeTwo long tones

Note: 1 long "beep-----" is equivalent to 5 short "beep-"; tones. Therefore, one long tone followed by one short tone "beep-beep-" represents the sixth programmable item.

3. Set the Parameter Value

The ESC will play several tone sequences in a repeating loop. When you hear the tone corresponding to the desired value, move the throttle stick to the maximum position. A special "1515" tone will sound, indicating that the selected value has been set and saved.

Keep the throttle stick at the maximum position to return to Step 2 and select another programmable item. Move the throttle stick to the minimum position within two seconds to exit programming mode.

Programmable Item"beep-" 1 short tone"beep-beep-" 2 short tones"beep-beep-beep" 3 short tones
BrakeOffOn/
Battery TypeLiPoNiMH/
Cutoff ModeSoft-CutCut-Off/
Cutoff ThresholdLowMediumHigh
Startup ModeNormalSoftSuper-Soft
TimingLowMediumHigh


4. Exit Programming Mode

There are two ways to exit programming mode.

1. In Step 3, move the throttle stick to the minimum position within two seconds after the special tone "1515"; the tone is emitted.

2. In Step 2, wait for the "beep-----beep-----" tone for item 8, then move the throttle stick to the minimum position within three seconds.

Before using this product, please check whether all the items listed above are included in the package. If anything is missing, please contact our online customer service or email us at  online@mepsking.com.

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