F410 Basic Flight Platform
F410 Basic Flight Platform overview
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F410 Basic Flight Platform

$699.00
$699.00
小计: $699.00

Shipping

Shipping options and costs are calculated at checkout or confirmed in your quotation.

Delivery time depends on destination, customs clearance, and product availability.

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F410 Basic Flight Platform

F410 Basic Flight Platform

$699.00

F410 Basic Flight Platform

$699.00

Open-source UAV platform

F410 open-source UAV platform.

Super open, super stable, and built as an ideal 410 mm UAV platform for PX4, FMT, ArduPilot, optical-flow positioning, onboard payload expansion, and hands-on UAV development.

Configure F410 Talk to AMOVLAB
AMOVLAB F410 open-source UAV platform
F410 Open-source UAV Platform
FMT / PX4Open flight-control stack
Stable softwarePX4-based and field-proven
Rich interfaces2 x 16 V, 4 x 5 V, 2 x 12 V
Strong expansionPayload plate and sensor-ready layout
Optical flowIndoor positioning support
Durable designAluminum alloy and carbon-fiber reinforcement
410 mmCompact quadrotor wheelbase

Open ecosystem support

Compatible with PX4, FMT, and ArduPilot development workflows.

F410 is built for mainstream open-source UAV development. PX4, FMT, and ArduPilot workflows are separated here so teams can quickly match the aircraft to their preferred flight-control stack.

PX4

An intelligent flight-control system widely used in industrial and research scenarios, with an active open-source community and rich development tools.

FMT

A domestic open-source flight-control project for model design, algorithm development, higher-education teaching, and UAV system research.

ArduPilot

A mature open-source autopilot project with strong customization capability, multi-aircraft support, and complex mission workflows.

Core selling points

Clear selling points for development, training, and payload expansion.

Software stability, interface expansion, fusion positioning, and structural durability are separated into clear product blocks for fast technical evaluation.

Software stability

Based on PX4 official source code and refined through long-term testing, tuning, and 1000+ user validation, F410 is designed for stable operation and a friendly beginner experience.

Rich interfaces and strong expansion

The platform provides 2 x 16 V, 4 x 5 V, and 2 x 12 V power outputs, with a fixed payload mounting plate and high-compatibility structure for sensors, onboard computers, and additional payloads.

Fusion positioning technology

Integrated optical-flow and GPS fusion positioning supports stable indoor and outdoor flight workflows, creating a reliable base platform for PX4, ArduPilot, and FMT development.

Durable structure for changing environments

Key areas use aluminum-alloy and carbon-fiber reinforced structures. The hard-shell battery is easy to plug in, optimized for secure mounting, and the aircraft is built for durable training and test use.

Aircraft layout

The platform is presented as a real development aircraft, not only a frame.

Major aircraft components are called out as structured labels, helping buyers understand the complete platform composition before configuration and quotation.

  • Hard-shell battery
  • Battery display light
  • Battery
  • Motor
  • Propeller
  • Expansion USB port
  • GPS
  • 410 mm wheelbase
  • Antenna
  • Camera
  • Data link
  • Optical flow
  • Landing gear
F410 component layout overview

Specifications

Complete F410 parameters for engineering evaluation.

Aircraft, battery, remote controller, communication link, optical-flow module, and charger parameters are presented in tables for easier scanning, quoting, and comparison.

Aircraft

Aircraft type
Quadrotor
Diagonal wheelbase
410 mm
Dimensions
290 mm x 290 mm x 240 mm (L x W x H)
Maximum takeoff weight
2.2 kg
Hover endurance
Approx. 21 min
GPS positioning accuracy
Vertical +/-0.5 m; horizontal +/-0.8 m
Operating temperature
6 deg C to 40 deg C
SKU
F410

Power Battery

Dimensions
130 mm x 65 mm x 40 mm (L x W x H)
Weight
470 g
Charge limit voltage
16.8 V
Nominal voltage
14.8 V
Rated capacity
5000 mAh

Remote Controller

Model
AMOVLAB QE-2
Operating voltage
4.5 V-9 V
Channels
8
Transmit power
<20 dBm
Weight
410 g
Dimensions
179 mm x 81 mm x 161 mm (L x W x H)

Communication Link

Model
LQ
Frequency band
2.4 GHz-2.4835 GHz
Operating voltage
12 V
Transmission distance
3000 m

Optical-Flow Ranging Module

Weight
1.2 g
Dimensions
22 mm x 11.4 mm x 12.37 mm (L x W x H)
Ranging range
0.01 m-4 m
Ranging FOV
Horizontal / vertical 6 deg / 5 deg
Optical-flow FOV
30 deg
Power consumption
0.3 W
Operating voltage
3.7 V-5.0 V
Optical-flow working distance
>80 mm
Output
UART

Charger

Input voltage
DC 9 V-12 V
Maximum output power
25 W
Maximum output current
1500 mA
Display accuracy
+/-10 mV
Case dimensions
81 mm x 50 mm x 20 mm
Weight
76 g

Shipping list

Package options shown as procurement-ready tables.

Package contents are organized into clean tables, covering the power kit and the ground-station plus basic-camera configuration for easier procurement review.

Package 1: Power Kit
NameModelQty
FrameF410_V11 set
Power distribution boardD951 pc
Custom batteryFB451 pc
Motor with propeller2216 920kv4 pcs
Balance connector adapter cable4S1 cable
Package 2: Ground Station + Basic Camera Version + ICF5 / v6c Flight Control
NameModelQty
Flight controllerPixhawk 6C1 pc
CameraIVG-G41 pc
Remote controllerAMOVLAB QE-21 pc
Image and data linkLQ1 pair
GPSM8N1 pc
Optical-flow ranging moduleUP-T11 pc
FrameF410_V11 set
Power distribution boardD951 pc
Custom batteryFB451 pc
Motor with propeller2216 920kv4 pcs
ChargerPD601 pc
Balance connector adapter cable4S1 cable
Ethernet cable1.5 m1 cable
Safety rope50 m1 cable
Data cableType A to Type C2 cables

Configure F410 around your flight-control stack and payload plan.

Tell AMOVLAB whether you need the power kit, the ground-station and basic-camera configuration, PX4 / FMT / ArduPilot support, optical-flow positioning, communication link, or onboard-compute expansion.

Start configuration

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