Description
🛠️ Holybro X500 V2 Frame Kit
Holybro X500 V2 Frame Kit is a professional-grade, modular, and lightweight drone frame designed for building custom quadcopters with precision, durability, and expandability in mind. It is an ideal choice for drone developers, agri-tech startups, university research teams, and autonomous system engineers looking for a reliable 500mm class quadcopter platform.
🟩 “The Holybro X500 V2 Frame Kit is a professional-grade…”
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Professional-grade means this frame is not just for hobby use; it’s designed to meet the quality and performance standards required by professionals.
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Holybro X500 V2 Frame Kit suitable for real-world applications, such as research, industrial use, or product development, not just flying for fun.
🟩 “…modular, and lightweight drone frame…”
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Modular: The parts are separate and designed to fit together easily. This allows:
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Quick replacement if something breaks.
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Easy customization (e.g., adding different sensors or a larger battery).
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Lightweight: Built using materials like carbon fiber to keep the drone as light as possible, which:
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Increases flight time.
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Improves maneuverability.
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Reduces strain on motors and batteries.
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🟩 “…designed for building custom quadcopters…”
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Holybro X500 V2 Frame Kit frame is the foundation of a quadcopter (drone with 4 rotors).
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“Custom” means users can choose and add their own:
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Motors
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Propellers
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Electronic Speed Controllers (ESCs)
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Flight controller (like Pixhawk)
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Sensors, cameras, and more
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Holybro X500 V2 Frame Kit not a ready-to-fly drone but a platform for creating a personalized or project-specific one.
🟩 “…with precision, durability, and expandability in mind.”
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Precision: The design is accurate and symmetrical, allowing the drone to fly smoothly and stably.
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Durability: Made of strong materials (carbon fiber + nylon) so it can withstand crashes and outdoor environments.
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Expandability: You can upgrade it by adding new technologies like:
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Cameras (e.g., Intel RealSense)
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Companion computers (e.g., Jetson Nano, Raspberry Pi)
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Additional sensors or payloads
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🟩 “It is an ideal choice for drone developers…”
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People or companies building drones for various uses—this frame gives them a strong base to start from.
🟩 Holybro X500 V2 Frame Kit agri-tech startups
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Startups working in agriculture technology can use this frame to build drones for:
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Spraying pesticides
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Monitoring crops
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Field mapping
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🟩 “…university research teams…”
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Engineering or robotics students can use this frame for academic projects, competitions, or lab work related to:
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AI-based flight
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Computer vision
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Autonomous navigation
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🟩 “…and autonomous system engineers…”
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Engineers working on autonomous drones (which fly or make decisions without human control) can integrate their sensors, software, and computing platforms onto this frame.
🟩 “…looking for a reliable 500mm class quadcopter platform.”
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500mm class refers to the distance between two motors diagonally. It’s a mid-sized drone:
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Big enough to carry useful payloads (e.g., cameras, sensors)
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Small enough to stay efficient and agile
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Reliable platform means it is stable, durable, and flexible, making it a dependable base for all kinds of drone builds.
🧱 Premium Construction & Materials
🟩 “The frame is made from high-quality carbon fiber and reinforced nylon, offering an excellent strength-to-weight ratio.”
Carbon fiber is a very strong but lightweight material, commonly used in aircraft, racing vehicles, and high-end drones.
Reinforced nylon is a durable plastic material that is enhanced with fibers (like glass) to make it stronger.
The strength-to-weight ratio means that even though the material is light, it can handle a lot of stress without breaking.
This is important in drones: the frame needs to be light to fly longer, but also strong to carry weight and survive crashes.
🟩 “The 16mm carbon fiber tube arms provide rigidity and vibration resistance…”
The arms of the drone (where motors and propellers are mounted) are 16mm diameter tubes made of carbon fiber.
Rigidity means the arms don’t bend or flex much. This is important because:
Bending arms affect flight stability.
It can misalign the motors and reduce control.
Vibration resistance:
During flight, motors generate vibrations.
If not controlled, these vibrations affect camera footage and sensor data.
Carbon fiber absorbs and resists vibrations, keeping flights smooth and sensors accurate.
🟩 “…which is crucial for stable flight and clean sensor data.”
If the drone vibrates too much, it can:
Confuse sensors like gyros or accelerometers.
Blur images or affect 3D scanning (LiDAR, cameras).
A rigid and vibration-resistant frame helps maintain stable hover, accurate navigation, and clear visuals, which is especially important for:
Autonomous drones
Mapping and inspection
Research projects
🟩 “The central body plates (top and bottom) are CNC-cut 2mm carbon fiber plates…”
Central body plates are the main platform where you mount electronics:
Flight controller (e.g., Pixhawk)
Power Distribution Board (PDB)
GPS module
Batteries, companion computers, etc.
CNC-cut means these plates are precisely machined using computer-controlled tools:
Ensures perfect size and clean edges
Precise holes and slots for screws, mounts, and wires
2mm thickness gives the plates enough strength without adding too much weight.
🟩 “…ensuring structural integrity without adding excess weight.”
The carbon fiber plates make sure the frame is:
Solid and sturdy (no bending or cracking under normal use)
Still lightweight, helping the drone fly longer and faster.
🟩 “The frame’s joints and connectors are made from glass fiber reinforced nylon…”
Joints and connectors refer to the parts where arms attach to the body, landing gear connects, etc.
These parts are made from glass fiber reinforced nylon, which is:
Stronger than regular plastic
Can flex slightly under stress (which helps absorb impacts)
Resistant to cracking, UV damage, and fatigue
🟩 “…providing both flexibility and durability.”
Flexibility here means the connectors can bend slightly instead of snapping.
Durability means they can handle:
Rough landings
Outdoor conditions
Repeated use over time
🟩 “This combination gives the X500 V2 the ability to withstand minor crashes and field conditions while staying lightweight.”
The carbon fiber + reinforced nylon combination:
Keeps the frame strong but light
Makes it resilient to real-world use, including:
Minor accidents during takeoff/landing
Dust, vibration, or rough terrain during agricultural or outdoor missions
✅ Summary
The Holybro X500 V2 Frame is built with carefully chosen materials that balance strength, weight, and flexibility:
Carbon fiber keeps it stiff, light, and vibration-free.
Reinforced nylon gives flexibility and toughness where needed.
This design allows the drone to fly efficiently, carry important equipment, and withstand regular wear and tear—making it an excellent choice for serious drone builders.
⚙️ Modular and Easy-to-Assemble Design
🟩 “One of the standout features of the X500 V2 is its modular design.”
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Holybro X500 V2 Frame Kit Modular design means the frame is made up of separate components (arms, plates, mounts, gear) that are designed to fit together in a plug-and-play style.
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Holybro X500 V2 Frame Kit allows:
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Easy replacement if a part is damaged.
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Upgrades without replacing the whole frame.
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Simple reconfiguration (for example, changing the orientation of the arms or mounting locations of sensors).
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🔧 Example: If you want to upgrade your drone with a better GPS module or change from a Jetson Nano to a Raspberry Pi, you can do that without altering the entire setup Holybro X500 V2 Frame Kit.
🟩 “All parts are pre-cut and labeled for easy assembly.”
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Pre-cut: Every frame part (carbon fiber plates, rods, connectors) is machined to the right size so you don’t need to cut or drill anything.
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Labeled: Parts come with clear labels or diagrams in the manual, so you know which part goes where.
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Holybro X500 V2 Frame Kit saves time and reduces confusion—especially for beginners or students.
🎯 Holybro X500 V2 Frame Kit Benefit: Even if you’re assembling a drone for the first time, this frame guides you through it smoothly.
🟩 “The notched locking system ensures that components fit securely…”
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Notched locking system refers to small cutouts or grooves in the arms and connectors.
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These notches:
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Help align parts perfectly.
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Lock them into place during tightening.
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Prevent them from rotating or shifting during flight.
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🛡️ Result: The frame becomes sturdy and vibration-resistant, improving flight stability and safety.
🟩 “…reducing the need for additional tools or glue.”
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Thanks to the precision-fit parts and screw holes:
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You don’t need special tools like drills, saws, or glue guns.
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A few Allen keys (hex tools) are usually enough.
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Holybro X500 V2 Frame Kit makes it perfect for field work or classroom builds where minimal tools are available.
💡 Example: In a robotics lab or drone training class, students can quickly assemble drones in groups without a full workshop setup.
🟩 “Most users can assemble the frame in under 15 minutes…”
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The simplicity of the design means you don’t have to spend hours figuring out which part goes where.
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Professionals and students alike can get the frame ready in 10–15 minutes, which is very efficient.
📦 Ideal for:
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Rapid prototyping in tech startups
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Workshops or training programs
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Urgent repair or rebuild in the field
🟩 “…making it perfect for quick prototyping, testing, or educational setups.”
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Quick prototyping: You can try out different configurations (e.g., adding new sensors, changing payload size) without needing a new frame.
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Testing: Engineers can test flight behavior, sensors, or AI features quickly.
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Educational setups: Schools and universities can use it in labs or drone clubs where students learn by building.
📚 Use-case example: A university robotics team can build, crash, and rebuild multiple times during a semester without worrying about long downtime or complex repairs.
🟩 “The included landing gear system is tall and stable…”
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The landing gear is the part that touches the ground when your drone lands.
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This one is:
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Tall (215mm ground clearance)
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Wide-set and balanced, providing stability when landing or taking off.
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🛬 Holybro X500 V2 Frame Kit prevents the drone from:
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Tipping over on uneven surfaces
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Damaging cameras or sensors underneath the frame
🟩 “…giving the drone over 200mm of ground clearance…”
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Ground clearance refers to the vertical space between the ground and the drone’s base.
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Over 200mm (~21 cm) is enough room to:
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Safely mount gimbals (for smooth camera movement)
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Attach depth cameras, LiDARs, sprayers, or other sensor payloads
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🎯 Holybro X500 V2 Frame Kit makes it useful for:
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Agricultural drones (e.g., crop sprayers)
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Inspection drones (with downward-facing cameras)
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Mapping drones (with LiDAR systems)
🔌 Full Payload & Accessory Compatibility
Holybro X500 V2 Frame Kit section emphasizes that the Holybro X500 V2 Frame Kit is built to support a wide variety of components—both basic and advanced—so you can build a drone that’s tailored to your specific project, whether it’s for agriculture, research, inspection, or AI-based autonomous flying.
🟩 “The X500 V2 supports a wide range of drone components and payloads…”
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Holybro X500 V2 Frame Kit means the frame is designed to be flexible, so users can choose different types of electronic components and attachments (called payloads) based on their mission requirements.
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Whether you’re a student, engineer, or developer, this frame lets you build what you need—not just fly a fixed, ready-made drone.
🧩 Compatible Accessories Include:
Let’s explain each accessory category:
🚀 Flight Controllers: Pixhawk, PX4, Ardupilot, etc.
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These are the “brains” of the drone that handle:
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Stabilization
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Navigation
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Sensor input/output
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Mission planning
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Compatibility with Pixhawk/PX4/Ardupilot means:
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The X500 V2 has standard-sized mounting holes and space to fit these open-source controllers.
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These flight stacks are widely used in research, agriculture, delivery drones, and DIY projects.
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🔧 Example Use: You can load PX4 firmware onto Pixhawk and run autonomous missions via QGroundControl or Mission Planner.
🧠 Companion Computers: Jetson Nano, Raspberry Pi, Intel NUC, etc.
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These are secondary computers mounted alongside the flight controller to handle high-level tasks like:
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Computer vision
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Machine learning (object detection, tracking)
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SLAM (Simultaneous Localization and Mapping)
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Communication with the cloud or a ground station
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The X500 V2 frame has enough space and pre-drilled mounting holes to safely install these devices.
📌 Why it matters:
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Lets you build an AI-powered drone, e.g., one that recognizes crops, maps terrain, or avoids obstacles on its own.
📷 Cameras: Intel RealSense, Structure Core, LiDAR, FPV systems
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These cameras help drones “see” and map their surroundings.
Camera Type | Use Case |
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Intel RealSense | 3D depth mapping, indoor navigation |
Structure Core | Depth-sensing, robotics research |
LiDAR | High-accuracy mapping, obstacle detection |
FPV Cameras | Real-time view for manual piloting or racing |
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The X500 V2’s rail system supports securely mounting these sensors with adjustable positioning.
🎯 Ideal for:
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Terrain mapping
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Smart farming
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Obstacle detection in autonomous navigation
📡 GPS Modules: Mountable on top via included platform
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The frame includes a GPS mast or mount on the top plate.
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Elevating the GPS improves signal strength and reduces interference from electronics below.
🚀 Why important?
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Essential for autonomous navigation
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Used for RTK GPS systems that need high precision (centimeter-level accuracy)
🔋 Adjustable Battery Tray (3S to 4S, 3000–5000mAh)
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The battery tray is adjustable, meaning you can:
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Slide it to balance the drone’s center of gravity
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Fit different battery sizes or shapes
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Battery Type | Voltage | Use |
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3S LiPo | 11.1V | Light builds or test flights |
4S LiPo | 14.8V | More power for heavier loads |
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Battery sizes supported: 3000–5000mAh, which translates to:
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Flight time of 12–18 minutes (depending on payload)
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Enough power for research and short commercial missions
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🛠️ 10mm Accessory Rails for Mounting Payloads
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The drone has two 10mm carbon fiber rods underneath (front to back).
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You can slide on:
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Camera gimbals (for stabilized video)
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Spraying equipment (in agriculture drones)
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Sensor pods or delivery mechanisms
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📦 Benefits:
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Add or remove components without modifying the core frame.
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Adjust their position based on your payload or mission requirements.
📐 Technical Specifications – Detailed Breakdown
🛞 Wheelbase: 500mm
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Holybro X500 V2 Frame Kit refers to the diagonal distance between two opposite motors.
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A 500mm wheelbase is classified as a mid-sized quadcopter, offering:
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Enough room for mounting payloads (cameras, sensors, etc.)
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Stable flight in windy conditions
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Good balance between portability and capability
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🧱 Frame Material: Carbon Fiber (plates & arms)
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Carbon fiber is a strong, lightweight, and vibration-resistant material.
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Using it for both the frame plates and arms:
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Reduces overall weight
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Increases durability
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Improves flight stability (very important for accurate sensors and smooth footage)
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🔩 Connector Material: Glass Fiber Reinforced Nylon
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These connectors hold parts like the arms and landing gear.
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Reinforced nylon (with glass fibers) adds:
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Flexibility: absorbs small shocks or impacts
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Durability: resists cracking under stress or repeated use
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Lower cost and easier molding compared to full carbon parts
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📏 Arm Diameter: 16mm
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The arms are tubular carbon fiber rods, each with a 16mm outer diameter.
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Thicker arms:
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Provide better rigidity (less flex or vibration)
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Allow secure mounting of motors (usually 16×16mm or 19×19mm patterns)
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Can carry more weight without bending
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📐 Frame Plate Thickness: 2mm
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The top and bottom plates are 2mm thick carbon fiber.
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Holybro X500 V2 Frame Kit thickness offers a great balance of:
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Structural integrity (can hold payloads like batteries, flight controllers, sensors)
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Lightness (thicker than this would add unnecessary weight)
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✈️ Landing Gear Height: 215mm
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The landing legs lift the drone 215mm (21.5 cm) off the ground.
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This tall design is ideal for:
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Mounting gimbals, LiDAR, or cameras underneath the frame
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Protecting bottom-mounted electronics during landings
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Flying over crops or terrain without sensor interference
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⚙️ Rail Diameter: 10mm (for payload mounting)
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The frame includes two 10mm carbon fiber rails (similar to camera rig rails).
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These rails allow you to:
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Slide and mount accessories (e.g., gimbals, cameras, sensors)
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Adjust positions easily without drilling or cutting
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Standard 10mm rails ensure compatibility with many 3rd-party mounts
⚖️ Frame Weight: ~610g (without electronics)
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Holybro X500 V2 Frame Kit is the bare weight of the frame itself.
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Why Holybro X500 V2 Frame Kit matters:
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Lighter frames mean longer flight time
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You have more “weight room” for payloads like sensors and batteries
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Final drone weight will increase with motors, ESCs, batteries, etc.
🔋 Battery Compatibility: 3S–4S LiPo (3000–5000mAh recommended)
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Supports 3S (11.1V) to 4S (14.8V) lithium polymer batteries.
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Recommended battery size: 3000 to 5000mAh
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4S 5000mAh offers:
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Longer flight time (~18 minutes estimated)
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Better thrust (especially important if you carry heavy sensors or payloads)
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🧳 Payload Capacity: Up to 1.5kg (70% throttle, no battery)
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The drone can carry around 1.5kg of payload in addition to its own electronics, when using the right motor/prop combination.
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“At 70% throttle” means:
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You still have extra throttle headroom for control or sudden lifts
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Common payloads in this weight class:
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Holybro X500 V2 Frame Kit DSLR or HD camera + gimbal
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Holybro X500 V2 Frame Kit LiDAR module
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Holybro X500 V2 Frame Kit Spraying module for agriculture
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Holybro X500 V2 Frame Kit Jetson Nano + RealSense camera combo
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⏱️ Estimated Flight Time: ~18 minutes (with 5000mAh 4S, no payload)
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On a fully charged 4S 5000mAh battery, with no payload, the drone is expected to hover or fly lightly for about 18 minutes.
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This is a typical flight duration for medium-sized drones.
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Actual flight time will depend on:
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Holybro X500 V2 Frame Kit Payload weight
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Holybro X500 V2 Frame Kit Motor/propeller choice
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Holybro X500 V2 Frame Kit Wind/weather
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Holybro X500 V2 Frame Kit Flight behavior (hover vs fast flying)
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✅ Summary Table
Feature | What It Means & Why It Matters |
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500mm wheelbase | Stable, medium-sized drone; good for payloads and research |
Carbon fiber frame | Lightweight, strong, reduces vibrations for better performance |
Reinforced connectors | Tough and flexible; handles rough landings or field use |
16mm arms | Supports standard motor mounts; rigid for stable flight |
2mm plates | Strong enough to mount electronics while staying light |
215mm landing gear | Allows space under drone for cameras or payloads |
10mm rails | Easily mount accessories like gimbals, LiDAR, or cameras |
610g frame weight | Lightweight base, gives more room for electronics and batteries |
3S–4S battery | Supports common power setups for various flight profiles |
1.5kg payload | Can carry cameras, AI computers, sensors, or agri modules |
~18 min flight time | Sufficient for mapping, scanning, training, or testing missions |
Before flying, ensure you’re compliant with India’s drone regulations (DGCA DigitalSky Portal).
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