Shenzhen Synria Robotics Co., Ltd., is an innovative technology company specializing in embodied intelligence and remote interaction robots.

Joined April 2026
36 Photos and videos
Precision isn't luck. It's engineering. A footballer's strike. A robot's grip. Both decided by milliseconds. The same control that wins matches builds the future of automation. #Robotics #AI #Engineering #SynriaRobotics
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Precise Motion. Stable Grasping. Compliant Control. From rigid objects to soft materials — every contact built on millimeter-level accuracy. Quiet Precision. Built for Everyday Manipulation.#SynriaRobotics #AliciaM #Robotics #PrecisionEngineering #CompliantControl
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Remote operation should feel like direct operation. With low-latency master-follower control and force-feedback interaction, Cloud Engine synchronizes subtle operator movements with the robotic arm in real time — enabling precise, intuitive teleoperation for labs, training.
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Every robotic arm starts as an idea. Alicia-M began with sketches, evolved through engineering design, and became a 6-DOF robotic arm built for real-world robotics research, teleoperation, and embodied AI. From concept to motion — this is how hardware is born. #Robotics
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Vision alone isn't enough for robotic manipulation. A robot needs to know: what the object is, where it is, how far away, and how to grasp it. Alicia-M D405C depth camera makes this possible. 🧵#SynriaRobotics
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Before Alicia-M became a robotic arm, it started as a sketch. Every joint, curve, and proportion was shaped by our engineers to balance precision, stability, and usability. From pencil lines to real motion — this is how an idea becomes robotics. #SynriaRobotics #Robotics
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COMPUTEX 2026 launches its first AI Robotics Zone. That’s not just a booth update — it’s an industry signal. Robotics is becoming a core pillar of AI infrastructure. At Synria Robotics, we’re building for Physical AI: Alicia-M arms. RoboCore v2.5.0. #COMPUTEX2026
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Robotic arms are moving from “seeing objects” to “understanding tasks.” Alicia-M supports embodied AI workflows such as VLA, ACT, and Diffusion Policy — helping connect vision, language, and action for real-world manipulation. 👁 Vision 📍 6D perception 🧠 VLM 🤖 VLA #Robotics
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#SynriaRobotics introduces RoboCore v2.5.0, a unified high-performance robotics algorithm library. IK: 0.008 ms FK: 0.0010 ms Jacobian: 0.0012 ms Up to 125,000 computations/sec. Built for real-time control, simulation, RL training, and dual-arm robotics. #RoboCore #Robotics
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Alicia-M is not just waving at the future. It is grabbing it. 🤖 6DOF lightweight robotic arm 750mm working space 1.5kg sustained payload ±0.1mm repeatability Supports grasping, clamping, teleoperation, and embodied AI research. Small arm. Big algorithm energy. #Robotics
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New tutorial: How to control a robotic arm with Synria Desk 3D visualization with joint & Cartesian control Trajectory planning from waypoints Single-arm and dual-arm modes Firmware management, 5-level acceleration Full desktop control, no coding needed #SynriaRobotics
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Robots that learn by watching, not by coding. AI Model -> learns the skillImitation Learning in 4 steps:Leader Arm -> human demonstratesFollower Arm -> executes the taskData -> captured for training That's how our Alicia-D learns tea-brewing, towel-folding, and block-grasping.
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VLA deployment isn't just theory anymore. Watch a top robotics lab run Vision-Language-Action tasks on our Alicia-M D405C setup 👇 The D405C depth camera gives the arm real spatial awareness — language commands → visual perception → precise action.
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Teleoperation: humans control a robot arm remotely → collect real motion data → AI learns to replicate tasks autonomously. The bridge between human skill and embodied AI. Alicia-D Leader Arm (730g, wireless) Follower Arm. #Teleoperation #EmbodiedAI
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A robotic arm controls movement. The gripper controls interaction. That’s why the gripper matters as much as the arm. #SynriaRobotics Gloria-M supports force control, gentle grasping, 50/100mm opening options, 1.5kg or 3kg grip, 24V/48V control, and optional camera integration.
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Precision teleoperation, verified in real research. 🤖✨ Our UR-configured teach pendant was tested at HIT, a top Chinese engineering university, for plug-to-socket insertion—showing real-time master-slave control, force feedback, and stable fine manipulation. #SynriaRobotics
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3 specs to know before choosing a robotic arm 🤖 📏 Reach = how far it moves 🏋️ Payload = how much it carries 🎯 Precision = how accurately it repeats Alicia-M: 750mm working space, 1.5kg sustained payload, ±0.1mm repeatability. #SynriaRobotics #Robotics
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What is a robotic arm? 🤖 A programmable mechanical arm that can move, grasp, sort, assemble, collect data, and support education, research, teleoperation, imitation learning & Embodied AI.#SynriaRobotics #Robotics #EmbodiedAI #Automation #Teleoperation
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Robotic arms are more than hardware 🤖 With Alicia-M, real-world manipulation becomes structured data for embodied AI: vision, motion, force, task demos, imitation learning, and VLA/VLM training. Build AI from real-world interaction. #SynriaRobotics #EmbodiedAI
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🤖Humans: “I need a coffee break.” Bessica-D Series: “I can assemble parts, run VLA models, and never complain.” ☕➡️🦾 14-axis dual-arm control, ROS Python SDK, visual grasping, and precision that makes your ruler nervous. Basically… your future lab partner just dropped. 🚀
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