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UCC FPV

UCCFPV
Flight Control

Autopilot, communication, power electronics, and embedded systems for UAV, FPV, industrial, and marine platforms.

Founded
2024
Focus
Control
Scope
HW + SW
FC30 flight controller PCB, 30×30 mm form factor

FC30

STM32F722 · ICM42688P · BMP280 · 30×30 mm · 4-layer PCB

Flight Controller

Products

Verified Platforms

Flight control and communication modules for stack-based unmanned systems.

FC30 flight controller PCB, 30×30 mm form factor

FC30

Available for inquiry

FC30 Flight Controller

30×30 mm flight controller with STM32F722 processing, ICM42688P IMU, and integrated multi-rail BEC for UAV and FPV integration.

Processor
STM32F722
IMU
ICM42688P
Barometer
BMP280
UART
5 interfaces
Motor outputs
8 brushless
Blackbox
128 Mb
BEC
3.3V / 5V / 10V
Form factor
30×30 mm
LM30-Link communication board with GNSS and cellular modules

LM30-Link

Available for inquiry

LM30-Link Communication Board

Modular communication expansion board with GNSS and 4G connectivity for 30.5×30.5 mm flight controller stacks.

GNSS
u-blox MAX-M10
Module support
Quectel L96
Connectivity
4G
Constellations
GPS / GLONASS / Galileo / BeiDou
Compatibility
30.5×30.5 mm FC

Flight control

Autopilot electronics with integration depth.

Sensors, motor interfaces, blackbox logging, and telemetry pathways for real platforms.

  • Autopilot architecture

    System-level design of flight control electronics for unmanned platforms.

  • Stabilization

    IMU-driven attitude estimation and control interfaces for stable flight behavior.

  • Sensor integration

    Barometer, telemetry, and peripheral sensing paths integrated into the control stack.

  • Real-time control

    Deterministic processing paths for motor commands and flight-state updates.

  • Motor control interfaces

    Multi-channel brushless motor outputs for airframe actuation.

  • Blackbox logging

    Onboard flight data capture to support tuning, diagnostics, and integration.

  • Telemetry integration

    UART and peripheral pathways for ground-link and subsystem communication.

SensorsIMU / BAROEstimatorATTITUDEControllerREAL-TIMEActuatorsMOTORSFEEDBACK / TELEMETRYCONTROL LOOPSensor → Estimate → Command → Actuate → Sense

Communication

Modular connectivity.

GNSS, cellular, radio, and industrial buses — applied where the architecture requires them.

GNSS4G / 5GSATCOMRadioTCP/IPWi-FiBluetoothCAN-BusRS485UARTNMEA 2000
FCCONTROLGNSSPOS4G/5GLINKRADIORFBUSCAN/UARTSATCOMOPTNMEAMARINECOMM PATHS

Autonomous software

Mission Logic

Route automation, agricultural missions, cargo operations, and ground-control integration.

Route-based surveillance

Mission routes defined for observation and patrol workflows.

Precision seeding

Agricultural mission logic for controlled seeding operations.

Autonomous cargo drop

Delivery sequences with mission-based release control.

Mission-based autonomous control

Configurable mission logic tailored to platform requirements.

AndroidWindowsLinux
Mission control software interface for autonomous operations

Power electronics

ESC & distribution.

Current handling, thermal paths, and integration reliability.

ESC development

Electronic speed controller design for propulsion and actuation loads.

Thermal management

Copper layout, heatsinking strategy, and thermal path engineering.

Current handling

High-current carrying design for power stages and distribution.

Power distribution

Board-level rails and platform power integrity for integrated systems.

Integration reliability

Electrical and mechanical fitment for production-oriented platforms.

Power electronics and ESC PCB with high-current copper layout

Marine & autonomous

Beyond Aerial Platforms

Navigation, actuator control, and marine-grade PCB engineering.

Platform capabilities

  • Autonomous navigation
  • Triple GPS fusion
  • Virtual anchor
  • SATCOM integration
  • Radio communication
  • 4G / 5G
  • TCP/IP
  • Wi-Fi
  • Bluetooth
  • NMEA 2000
  • CAN-Bus
  • RS485
  • UART
  • H-Bridge actuator control

High humidity environments

Electronics design considerations for moisture-exposed operation.

Salt-water exposure

Material and protection strategies for corrosive marine conditions.

High-current carrying

Power path design for actuator and propulsion loads.

Thermal management

Heat dissipation strategies for enclosed marine electronics.

Signal integrity

Noise-aware routing and interface protection for reliable control links.

Marine systems

OEM / ODM

Built Around Your Platform.

Custom flight controllers, communication boards, power electronics, and embedded control systems.

Start an OEM / ODM Project
  • Custom flight controller design
  • Communication-board development
  • Power electronics
  • Embedded control boards
  • Firmware / software integration
  • Mechanical / electrical integration support
  • Interface customization
  • Brand customization

Engineering process

Requirement → Production

Architecture, electronics, firmware, prototype, and integration.

R&D overview
  1. 01

    Requirement

    Capture platform constraints, interfaces, environmental conditions, and performance targets.

  2. 02

    System Architecture

    Define control topology, sensing, communication, and power distribution structure.

  3. 03

    Electronics Design

    Schematic development for processors, sensors, power stages, and peripheral interfaces.

  4. 04

    PCB Development

    Multi-layer layout with signal integrity, thermal, and mechanical integration focus.

  5. 05

    Firmware / Software

    Embedded firmware and mission software aligned to hardware capabilities.

  6. 06

    Prototype

    Bring-up of functional boards for electrical and system-level evaluation.

  7. 07

    Testing

    Bench, thermal, signal, and integration validation against defined requirements.

  8. 08

    Integration

    Airframe, vessel, or platform fitment with mechanical and electrical partners.

  9. 09

    Production Preparation

    Documentation and design transfer readiness for manufacturing partners.

Validation

Testing in the Loop

Bench, thermal, signal, integration, firmware, and environmental validation practices.

01

Bench testing

02

Thermal testing

03

Signal validation

04

Integration testing

05

Firmware verification

06

Environmental validation

Industries

Application Sectors

UAV, robotics, agriculture, logistics, industrial, and marine autonomy.

01

UAV / FPV

Flight control, communication, and power electronics for unmanned aerial and FPV platforms.

02

Robotics

Embedded control and interface electronics for autonomous robotic systems.

03

Agriculture

Mission software and control hardware for precision agricultural operations.

04

Logistics

Autonomous cargo and delivery control workflows for unmanned platforms.

05

Industrial Systems

Custom embedded boards and communication for industrial automation contexts.

06

Marine Autonomous Platforms

Navigation, actuator control, and marine-grade electronics for autonomous vessels.

07

Custom Embedded Systems

Platform-specific electronics engineered for specialized autonomous applications.

Why UCC FPV

Engineering Principles

How we approach system design for autonomous platforms.

Integration-first Design

Electronics, firmware, and interfaces developed as a coherent control layer for the target platform.

Modular Architecture

Stackable and expandable board architectures that adapt to airframe and payload requirements.

Custom Engineering

OEM/ODM development shaped around mechanical, electrical, and operational constraints.

Hardware + Software Co-Development

Control electronics and mission software engineered together for system-level behavior.

Real-world Platform Focus

Design decisions driven by UAV, FPV, industrial, agricultural, and marine deployment needs.

Production-oriented Development

Prototypes developed with a clear path toward manufacturing readiness and integration transfer.

Engage

Building an Autonomous Platform?

Let’s engineer the flight control, communications, power, and embedded systems around your requirements.