65A AM32 4-in-1 ESC
The 3065 V2 32-bit ESC provides 65A continuous current per channel and supports digital motor-control protocols up to DShot600.
| FC Input Voltage | 3S–6S LiPo |
|---|---|
| ESC Input Voltage | 3S–8S LiPo |
| ESC Model | 3065 V2 AM32 32-bit 4-in-1 ESC |
| Continuous Current | 65A × 4 |
| Current Scaling / Peak Reference | 75A × 4 |
| 5V BEC | 5V / 2.5A |
| 9V BEC | 9V / 2.5A |
| ESC BEC | No |
| Current Sensor | Supported, Current Meter Scale 158 |
| ESC Signal | DShot150 / DShot300 / DShot600 / MultiShot / OneShot |
| ESC Telemetry | Supported |
| ESC Firmware | AM32_AORC_K_A_F421_2.16.hex AocodaRC-BL32-4IN1-60A-Rev.32.10 |
| Working Humidity | 20%–95% |
| USB | USB Type-C |
|---|---|
| FC-to-ESC Interface | 8-Pin SH1.0 Connector |
| UART | 5 UART Interfaces |
| UART1 | GPS Connection |
| UART2 | Receiver Connection |
| UART3 | ESC Communication |
| UART4 | VTX Connection |
| UART5 | Bluetooth Connection |
| Camera Interface | Dual Analog Camera Inputs, CAM1 / CAM2 Switching |
| VTX Interface | VTX Serial and Power Connection |
| SBUS | Standard SBUS Interface for Compatible Receivers and DJI Units |
| CRSF / ELRS | Dedicated CRSF / ELRS Receiver Interface |
| GPS | GPS Interface with Serial and I2C Connections |
| I2C | SCL / SDA for Compatible External Devices |
| LED | LED Strip Interface |
| Buzzer | Supported |
| Receiver Compatibility | ELRS / CRSF / SBUS / FrSky / Futaba / FlySky / TBS Crossfire / DSMX |
The 3065 V2 32-bit ESC provides 65A continuous current per channel and supports digital motor-control protocols up to DShot600.
The STM32F405RET6 MCU provides responsive flight-control processing and flexible peripheral management for modern FPV applications.
Independent 5V/2.5A and 9V/2.5A BEC outputs help power compatible receivers, cameras, video transmitters and other FPV accessories.
The integrated Bluetooth chip provides an additional wireless configuration option for compatible applications and tuning workflows.
Integrated 16MB Blackbox storage records flight data for PID tuning, vibration analysis, troubleshooting and performance optimization.
Two camera inputs support CAM1 and CAM2 connections. CAM1 is enabled by default, while USER3 can be configured for camera switching.
Camera, VTX, SBUS and power interfaces support compatible analog and HD digital FPV video-system installations.
Five UARTs and dedicated GPS, receiver, LED strip, buzzer, VTX and I2C connections support versatile FPV drone configurations.
| FC Dimensions | 37mm × 37mm |
|---|---|
| FC Weight | 9.4g |
| ESC Dimensions | 40.5mm × 44.5mm |
| ESC Weight | 15.8g |
| Mounting Pattern | 30.5mm × 30.5mm |
| Mounting Hardware | M3 |
| Stack Height | Approximately 13mm |
| Board Type | F405 Flight Controller and 65A 4-in-1 ESC Stack |
| Power Connection | XT60 Power Cable |
| Included Capacitor | 35V 1000µF Solid-State Electrolytic Capacitor |
The STM32F405RET6 MCU works with the ICM42688P gyroscope and SPL06-001 barometer to provide flight-control processing, motion sensing and altitude data for compatible FPV applications.
The 3065 V2 4-in-1 ESC provides 65A continuous current per channel and supports DShot150, DShot300, DShot600, MultiShot and OneShot motor-control signals.
The integrated 16MB Blackbox records flight information for vibration analysis, PID tuning, troubleshooting and performance evaluation.
The onboard Bluetooth interface provides a convenient wireless connection option, while USB Type-C supports standard wired configuration and firmware-management workflows.
Dual-camera inputs, configurable camera switching and dedicated VTX, SBUS and power connections support flexible analog and HD FPV video-system integration.
Five UARTs, I2C, CRSF/ELRS, SBUS, GPS, LED strip and buzzer interfaces allow receivers, navigation modules and other compatible accessories to be integrated into the aircraft.
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The flight controller is rated for 3S–6S LiPo input, while the ESC is listed for 3S–8S LiPo input. Confirm the manufacturer-approved FC power arrangement before using 7S or 8S batteries.
Compatible with FPV brushless motors that operate within the selected battery voltage and the ESC’s 65A continuous current specification.
Supports compatible analog cameras, analog VTX systems and HD digital video systems through the available camera, serial and power interfaces.
Supports compatible ELRS, CRSF, SBUS, FrSky, Futaba, FlySky, TBS Crossfire and DSMX receiver configurations.
Compatible GPS modules can be connected through UART1 and the available SCL/SDA interface when required.
Compatible with Betaflight, iNav and ArduPilot. The listed flight-controller firmware target is AOCODARCF405V3.
Suitable for frames that support the standard 30.5mm × 30.5mm M3 mounting pattern and provide enough clearance for the 40.5mm × 44.5mm ESC.
The flight controller and ESC are connected through the included 8-pin SH1.0 wiring harness.
The package includes a 35V 1000µF capacitor and an XT60 power cable for compatible power-system installations.
The stack includes an Aocoda-RC F405 V3 flight controller and a 3065 V2 AM32 32-bit 65A 4-in-1 ESC, together with the listed connecting cable, mounting hardware, capacitor and XT60 power cable.
The 3065 V2 ESC is specified for 3S–8S LiPo input, while the F405 V3 flight controller is specified for 3S–6S LiPo input. For 7S or 8S operation, confirm the manufacturer-approved FC power arrangement before installation.
The 3065 V2 4-in-1 ESC is rated for 65A continuous current per channel. The product specification also lists a 75A × 4 current-scaling or peak reference.
The flight controller uses an STM32F405RET6 MCU and an ICM42688P gyroscope. It also integrates an SPL06-001 barometer.
Yes. The F405 V3 flight controller includes 16MB of Blackbox memory for flight-data recording, PID tuning, vibration analysis and troubleshooting.
Yes. The flight controller includes a Bluetooth chip and assigns UART5 to the Bluetooth connection in the supplied wiring diagram.
The supplied product information lists Betaflight, iNav and ArduPilot compatibility. The listed flight-controller firmware target is AOCODARCF405V3.
The flight controller supports receiver systems including ELRS, CRSF, SBUS, FrSky, Futaba, FlySky, TBS Crossfire and DSMX through the appropriate receiver and UART interfaces.
Yes. The flight controller provides two camera inputs. CAM1 is enabled by default, while USER3 can be configured to switch to CAM2.
The flight controller provides 5V/2.5A and 9V/2.5A BEC outputs. The 3065 V2 ESC itself does not include a BEC.
Both the flight controller and ESC use an M3 30.5mm × 30.5mm mounting pattern. The assembled stack height shown in the product diagram is approximately 13mm.
The ESC supports DShot150, DShot300, DShot600, MultiShot and OneShot input signals. ESC telemetry is also supported.
Yes. Its F405 flight controller, 65A 4-in-1 ESC, 30.5mm mounting pattern, Blackbox storage, Bluetooth connection and broad peripheral support make it suitable for compatible high-performance FPV drone projects.
Buyers should confirm the exact hardware revision, firmware requirement, battery configuration, motor and propeller combination, receiver protocol, video system, mounting space, wiring arrangement and expected operating current.
Provide the required quantity, target drone platform, battery configuration, motor specification, receiver type, video system, preferred firmware, delivery destination and any packaging, labeling or testing requirements.
The ESC is specified for 3S–8S input, but the flight controller is listed for 3S–6S input. Buyers planning a 7S or 8S system should confirm the manufacturer-approved FC power arrangement and all connected-device voltage requirements before integration.
Yes. The flight controller is designed for HD or analog FPV integration and provides camera, VTX, SBUS and power interfaces. The voltage and signal requirements of the selected video hardware must be verified before wiring.
Yes, provided the devices are assigned to available UARTs and configured correctly in the selected flight-control firmware. The supplied diagram assigns UART1 to GPS and UART2 to the receiver.
It can be used as a replacement or performance upgrade when the frame supports the 30.5mm × 30.5mm M3 mounting pattern and the battery, motors, video system, receiver, wiring and cooling requirements are compatible.
OEM, ODM and private-label availability depends on the supplier, order quantity and customization scope. Buyers should provide estimated demand, branding files, packaging requirements and technical specifications for evaluation.
B2B buyers should request the latest product specification, wiring diagram, firmware information, hardware revision details, packing list, quality-control requirements and applicable compliance documentation for the destination market.