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X25 EVO Pixhawk Autopilot Flight Controller

  • Industrial-Grade UAV Autopilot – Designed for demanding unmanned systems, including multirotors, helicopters, fixed-wing aircraft, VTOL platforms, unmanned vehicles, vessels, and underwater vehicles.
  • High-Performance H7 Processor – Powered by a 480MHz STM32H7 ARM Cortex-M7 processor for advanced flight-control and autonomous-system applications.
  • Triple Industrial-Grade IMUs – Features three high-performance inertial measurement units with independent sensor architecture for reliable flight data and system redundancy.
  • Dual Barometers & RM3100 Compass – Integrates dual barometric sensors and an industrial-grade RM3100 electronic compass for altitude and heading measurement.
  • 16 PWM Output Channels – Provides up to 16 PWM outputs for compatible motors, ESCs, servos, and other UAV peripherals, with configurable 3.3V/5V PWM levels.
  • CAN Bus & 100 Mbps Ethernet – Supports high-speed communication with compatible onboard systems, ESCs, motors, and other networked UAV equipment.
  • Wide-Range Power Architecture – Supports 10–18V controller power input and includes the PMU 2 Lite power module with 20–70V input support and current measurement up to 220A.
  • Advanced Sensor Reliability – Includes temperature-compensated sensor systems and a fourth-generation tilted symmetrical damping matrix with external shock absorption for demanding operating environments.
  • Extensive Connectivity – Provides dual GPS interfaces, dual telemetry ports, multiple CAN buses, I2C, SPI, UART, USB Type-C, RC input, RSSI, and expansion interfaces.
  • PX4 & ArduPilot Compatible – Designed for use with supported PX4 and ArduPilot firmware, making it suitable for advanced autonomous flight, robotics, and unmanned-system development.
  • Trusted dealerDirect manufacturer partnership
  • Pan-India deliveryInsured shipping, all states
  • Post-sale supportTraining + service included
Overview

What makes it work

X25 EVO Flight Controller | CUAV Pixhawk Autopilot PX4/ArduPilot


🧠

STM32H743
Processor @ 480MHz
🎯

3x IMU
2x IIM-42653 + IIM-42652
🧭

RM3100
Industrial Compass
🌡️

2x Barometer
BMP581 + ICP-20100
🔌

16 PWM
3.3V/5V Configurable
🌐

100Mbps
Ethernet
🔋

10-18V + PMU
Wide-Range Power

PX4 + ArduPilot
Firmware Support

Full Specifications

Processor & Sensor Specifications
Specification Details
Product X25 EVO Flight Controller — genuine CUAV hardware, clearly labeled “X25 EVO” on the module itself, with visible ArduPilot branding on the connector board
Processor STM32H743XI, 32-bit Arm Cortex-M7 with FPU @ up to 480MHz, 2MB flash
IMU Sensors Triple industrial-grade, independent architecture: 2x IIM-42653 (±4000°/s gyro, ±32g accel) plus 1x IIM-42652 (±2000°/s gyro, ±16g accel)
Compass RM3100, an industrial-grade electronic compass
Barometers Dual: BMP581 and ICP-20100 barometric pressure sensors
Vibration & Temperature Fourth-generation tilted symmetrical damping matrix with external shock absorption, plus dual temperature-compensation on both the IMU and FMU boards using onboard heating resistors
Security Secure boot and secure firmware upgrade support
xBoom SKU xboom-145512
Connectivity, Power & Build
Specification Details
PWM Outputs 16 total, with configurable 3.3V or 5V PWM signal levels
RC Input PPM, SBUS, and DSM formats supported, plus RSSI
GPS & Telemetry 2 GPS ports, 2 TELEM ports, plus a dedicated UART4
CAN Buses CAN1 (3 ports) and CAN2 (2 ports) — 5 CAN connection points across 2 independent buses
Ethernet 100Mbps integrated Ethernet port
Other Interfaces 3 I2C, SPI6 expansion, ADC 3V3 and ADC 6V6 ports, 1 USB Type-C, 1 DSU debug port
Controller Power Input 10-18V, with a built-in 5V/15A DC-DC converter and a 5V/12A external interface output
Included Power Module CUAV PMU 2 Lite — 20-70V input, up to 220A instantaneous current measurement (120 seconds max, 130A continuous), ±0.05V/±0.1A accuracy
Weight Approximately 110g (flight-controller module only)
Operating Temperature -20°C to 85°C

CUAV’s Latest Industrial-Grade Autopilot

X25 EVO Flight Controller: Genuine CUAV Hardware

This is a genuine CUAV module — the unit is clearly labeled “X25 EVO,” CUAV’s newest industrial-grade autopilot, with ArduPilot branding visible directly on the connector board. It’s built around an STM32H743 processor at up to 480MHz, backed by a triple industrial-grade IMU set (two IIM-42653 units plus one IIM-42652) each on independent sensor architecture, dual temperature-compensated barometers (BMP581 and ICP-20100), and an RM3100 industrial compass — sensors well beyond what’s typical in consumer-grade flight controllers.

The fourth-generation tilted symmetrical damping matrix — CUAV’s latest external shock-absorption design — pairs with onboard heating resistors that temperature-compensate both the IMU and FMU boards, aiming to hold sensor accuracy steady across real-world temperature swings rather than just at room temperature. Power architecture is genuinely flexible: the controller itself runs on 10-18V, while the included CUAV PMU 2 Lite power module steps down a much wider 20-70V battery range (up to 220A instantaneous current measurement) for the rest of the aircraft. With 16 PWM outputs, 100Mbps Ethernet, and 5 CAN connection points across 2 buses, it has the connectivity for genuinely complex, high-channel-count UAV builds running PX4 or ArduPilot.

🎯

Triple Industrial-Grade IMUs

Independent sensor architecture with wide dynamic range.

🌡️

Dual Temperature-Compensated Barometers

BMP581 and ICP-20100, actively heated for stable readings.

🔋

PMU 2 Lite Power Module Included

20-70V wide-range input with 220A current measurement.

PX4 & ArduPilot Compatible

Full support for both leading open-source flight platforms.

Built for Demanding Industrial UAV Operations

The X25 EVO Flight Controller brings CUAV’s latest industrial-grade reliability to your build.

Processing
🧠

STM32H743 @ 480MHz

A fast, high-performance processor for real-time flight control.

Sensing
🎯

Triple Industrial IMUs

IIM-42653 x2 plus IIM-42652 for reliable, redundant data.

Stability
🌡️

Active Temperature Compensation

Heated IMU and FMU boards hold sensor accuracy steady.

Connectivity
🌐

100Mbps Ethernet, Dual CAN

5 CAN connection points plus a dedicated Ethernet link.

Power
🔋

PMU 2 Lite Included

20-70V input with up to 220A current measurement.

Software

PX4 & ArduPilot Ready

Full support for both major open-source flight-control platforms.

Built for Serious, Industrial-Grade UAV Projects

The X25 EVO Flight Controller suits builders who need genuine, redundant, industrial-grade flight-control hardware with wide-range power built in.

🚁

Multirotor & Fixed-Wing Builds

Reliable flight control for demanding aircraft builds.

✈️

VTOL & Helicopter Platforms

Redundant sensors suit complex transition-flight aircraft.

🚗

Unmanned Ground Vehicles

The same core hardware adapts to autonomous ground vehicles.

🚤

Vessels & Underwater Vehicles

Industrial-grade reliability for marine and underwater platforms.

🏭

Commercial UAV Systems

Built for the reliability demands of commercial operations.

🔬

UAV Research & Development

Well-documented, open-source-compatible hardware for research.

See the X25 EVO in Use

CUAV’s own official introduction, plus two real flight tests pairing this exact board with different radio systems.

CUAV X25 flight test paired with Skydroid G20 radio

Flight Test With Skydroid G20

A real flight test showing this exact board in the air

CUAV X25 EVO flight test paired with SIYI RC7 radio

Flight Test With SIYI RC7

Another real flight test pairing with a different radio system

Frequently Asked Questions

Does the X25 EVO Flight Controller include a power module?
Yes — it includes CUAV’s PMU 2 Lite power module, supporting a 20-70V input range with current measurement up to 220A, separate from the controller’s own 10-18V input.
Is this compatible with PX4 and ArduPilot?
Yes, both are fully supported with complete driver and function compatibility — confirmed both by CUAV’s own specifications and by ArduPilot branding visible directly on the board.
Why does it use three different IMU sensors?
Triple redundancy — two IIM-42653 units plus one IIM-42652, each on independent sensor architecture — lets the flight controller cross-check inertial data for more reliable flight information.
How many motors can this control?
Up to 16 via PWM outputs, with configurable 3.3V or 5V signal levels to match different ESCs and servos.
What does temperature compensation actually do here?
Onboard heating resistors keep both the IMU and FMU boards at a stable operating temperature, so sensor readings stay accurate across real-world temperature swings rather than drifting as ambient conditions change.
What’s the operating temperature range?
-20°C to 85°C for the flight-controller module.

Specifications

The full sheet

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