Home/News/Turkey Unveils AKINCI-5, Its First Industrial Humanoid Robot Targeting Factories and Mines

Turkey Unveils AKINCI-5, Its First Industrial Humanoid Robot Targeting Factories and Mines

Published

July 2, 2026

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3 min read

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Origin Of Bots Editorial Team

Turkey Unveils AKINCI-5, Its First Industrial Humanoid Robot Targeting Factories and Mines

A New Era for Turkey

Turkey has entered the global humanoid race with the unveiling of AKINCI-5, its first industrial humanoid robot, built by AKINROBOTICS under the software firm AKINSOFT and targeting demanding environments like factories and mining operations. Announced via a video from the company’s social media on June 26, 2026, this robot emerges from Türkiye’s first dedicated humanoid robot factory, marking a concrete national step in advanced robotics. The demonstration highlights fluid gait and AI-supported walking, balance, and interaction capabilities, though the robot remains in testing phases rather than full commercial deployment.

Why This Breakthrough Matters

AKINCI-5 stands out through its fluid locomotion, real-time balance correction, natural human interaction, and AI-driven walking stability, which are critical engineering hurdles for humanoids integrating into daily life. Its design prioritizes full-body coordination and teleoperation readiness, positioning it not just as a hardware tool but as a bridge for how humans will remotely control robots at scale. The robot’s fluid gait in the shared video suggests notable progress in Türkiye’s ability to master complex locomotion, a key enabler for everyday integration.

AKINCI-5 - Image 1

Technical Flow Explained

The system operates through a clear input-processing-output chain: human motion input flows into an AI model that processes balance and joint actuation, culminating in real-time joint actuation and balance correction for stable bipedal walking. This architecture enables the robot to respond instantly to external forces like pushes or obstacles, maintaining stability during walking on uneven terrain or stairs. The integration of RGB, stereo, and LiDAR sensors supports visual SLAM and LiDAR mapping for navigation in complex industrial spaces.

One Real Use Case

In factory automation, AKINCI-5 is designed to handle tools, packages, and precision instruments, operating in environments where human labor is intensively used such as production facilities and mines. Its bipedal legged mobility allows it to navigate stairs and ramps, grasping objects with ergonomic 5-finger design and performing movements akin to human arms, making it ideal for warehouse logistics and mining operations. The robot’s collaborative mode and force limiting features ensure safe interaction with human workers in these high-risk settings.

AKINCI-5 - Image 2

Specs as Enablers

Reported specifications include a height of 175 cm, 85 kg weight, and a walking speed of 5 km/h (1.39 m/s), enabling efficient movement across large industrial floors. With a battery life of 4 years and safety features like emergency stop and collision detection, the robot is built for sustained, reliable operation in demanding conditions. Its software stack, running ROS2, Python, and C++ with proprietary APIs, supports flexible integration into existing factory automation systems.

Rivals Edge Check

RobotKey AdvantageWhere AKINCI-5 WinsTarget Use
Honor D1 (Lightning)High-speed bipedal locomotionSuperior fluid gait and balance correction in uneven terrainFactory automation
Daimon OneHeavy payload capacityMore natural human interaction and teleoperation readinessWarehouse logistics
GR-3Advanced autonomyAI-supported walking and real-time balance correctionMining operations
Agile ONEModular software integrationROS2-based flexibility and collaborative safety featuresProduction facilities

Industry Signal Shift

This development signals a broader industry trend toward teleoperation-first humanoids, replacing pre-programmed motion libraries with systems that respond dynamically to human input and real-world conditions. As companies like AKINROBOTICS invest in AI-supported walking and balance, the focus is moving from autonomous robots to assisted service models that require human oversight for safety and scalability. This shift reflects a growing recognition that real-world humanoids must excel in interaction and adaptability, not just in isolated automation tasks.

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