QAV-R 220mm Quadcopter Carbon Fiber Frame
- ୟୁନିଟ୍ ମୂଲ୍ୟ
- / ପ୍ରତି
QAV-R 220mm Quadcopter Carbon Fiber Frame
The QAV-R 220mm Quadcopter Carbon Fiber Frame is a high-performance racing drone platform engineered for FPV (First Person View) pilots and aerial enthusiasts who demand precision, durability, and lightweight construction. This frame is specifically designed for 220mm wheelbase configurations, providing optimal balance between agility and stability for competitive racing and freestyle flying applications. The frame solves critical challenges in drone design by combining superior strength-to-weight ratio with enhanced vibration damping, enabling pilots to achieve faster lap times and smoother flight characteristics while minimizing structural fatigue during high-impact maneuvers.
Product Overview
The QAV-R 220mm frame utilizes premium 3K carbon fiber composite construction, which delivers exceptional rigidity while maintaining minimal mass distribution across all structural elements. The frame architecture incorporates strategically reinforced motor arms with integrated cable management channels, precision-machined aluminum standoffs, and optimized center plate geometry that accommodates standard 30.5mm x 30.5mm flight controllers and power distribution boards. The 220mm motor-to-motor diagonal wheelbase classification positions this frame in the sweet spot for competitive FPV racing, offering superior maneuverability compared to larger platforms while maintaining sufficient structural integrity for sustained high-G acceleration and aggressive banking turns.
What distinguishes the QAV-R platform is its modular design philosophy, featuring replaceable carbon fiber arms that can be swapped without complete frame disassembly, and integrated motor mount plates that accommodate both 1806 and 2207 class brushless motors with standard M3 fastening. The frame geometry incorporates swept-back motor arms that enhance yaw authority and reduce prop wash interference, while the low-profile design minimizes aerodynamic drag during high-speed transitions. Advanced vibration isolation is achieved through elastomeric dampening elements at critical junction points, significantly reducing gyroscopic noise transmission to onboard sensors and improving flight controller stability during rapid directional changes.
Key Specifications
| Specification | Details |
| Product Type | FPV Racing Quadcopter Frame Kit |
| Brand | QAV-R |
| Origin | Original/Authentic |
| Warranty | 7 days on manufacturing defects |
| Shipping | 1-5 days from Bengaluru |
| Delivery | 7-8 days across India |
| Support | 24/7 via Email and WhatsApp |
| Wheelbase Diagonal | 220mm motor-to-motor distance |
| Material Composition | 3K Carbon Fiber Twill Weave |
| Weight | Approximately 95-105 grams frame only |
| Motor Compatibility | 1806 to 2207 brushless motors with M3 mounts |
| Flight Controller Mounting | 30.5mm x 30.5mm standard spacing |
| Arm Thickness | 4mm carbon fiber construction |
Key Features
- Premium 3K Carbon Fiber Construction: Delivers exceptional stiffness-to-weight ratio with 3K twill weave pattern, providing superior durability against crash impacts while maintaining minimal mass for rapid acceleration and deceleration cycles
- Modular Replaceable Arm Design: Quick-swap carbon fiber arms enable field repairs without complete frame replacement, reducing downtime during competitive events and extending overall platform lifespan
- Integrated Cable Management Channels: Precision-routed pathways along motor arms guide ESC signal wires and power distribution cables, reducing electromagnetic interference and improving flight controller sensor accuracy
- Swept-Back Motor Arm Geometry: Optimized arm angles enhance yaw authority and minimize prop wash vortex interference, resulting in smoother directional control and improved stability during aggressive aerial maneuvers
- Elastomeric Vibration Isolation: Strategic dampening elements at frame junction points isolate motor vibration from flight controller IMU sensors, significantly reducing gyroscopic noise and improving PID controller responsiveness
- Low-Profile Center Plate Design: Minimizes aerodynamic drag and center of gravity height, enabling faster sustained speeds and improved energy efficiency during extended flight sessions
Applications and Use Cases
- FPV Racing Competitions: Purpose-built for drone racing leagues and MultiGP sanctioned events where the 220mm wheelbase provides optimal balance of speed, maneuverability, and structural reliability for competitive gate navigation
- Freestyle Aerial Cinematography: Enables skilled pilots to perform complex 3D acrobatic maneuvers including inverted rolls, knife-edge flights, and rapid altitude transitions while maintaining gimbal stability for smooth video capture
- Obstacle Course Navigation: The compact 220mm footprint allows precise flight through tight indoor spaces, narrow outdoor corridors, and complex architectural environments while maintaining directional control authority
- Long-Range FPV Exploration: Lightweight carbon fiber construction minimizes power consumption, extending flight duration for extended-range missions while the rigid frame maintains GPS positioning accuracy during sustained forward flight
- Prototype Development and Testing: Engineers and hobbyists utilize the modular design for rapid iteration of motor configurations, sensor payloads, and flight controller algorithms without frame replacement
How to Use
Begin assembly by verifying all carbon fiber components for manufacturing defects, micro-fractures, or delamination before proceeding. Mount the flight controller and power distribution board onto the center plate using M2.5 nylon standoffs, ensuring precise 30.5mm spacing alignment. Install the four motor arms using M3 fasteners with appropriate threadlock compound, verifying each arm is perpendicular to the center plate within 0.5 degree tolerance. Route ESC signal cables through the integrated management channels, securing them with adhesive-backed cable ties to minimize vibration transmission. Mount brushless motors onto the motor plates using M3 fasteners, ensuring motor shafts are perfectly vertical and propeller mounting hubs are concentric with the frame geometry.
After hardware assembly, perform a comprehensive pre-flight inspection by gently flexing each motor arm to verify structural integrity and checking all fasteners for secure seating. Connect the flight controller to your preferred radio transmitter and configure the motor mixing matrix according to your ESC firmware specifications. Perform a bench-test spin-up of each motor individually at low throttle to verify correct rotation direction and absence of mechanical binding. Install propellers only after all electronic systems are verified functional and the frame is mounted on the aircraft. During initial flights, begin with conservative throttle inputs to allow the flight controller PID tuning to adapt to the frame's specific vibration characteristics and weight distribution.
Frequently Asked Questions
What is the maximum takeoff weight for the QAV-R 220mm frame?
The QAV-R 220mm frame supports maximum takeoff weights between 800 to 1200 grams depending on motor selection and battery capacity. With 2207 brushless motors and a 4S LiPo battery, typical all-up weight ranges from 950 to 1050 grams, providing optimal thrust-to-weight ratios between 4:1 and 5:1 for competitive racing applications. Exceeding 1200 grams will compromise structural integrity during high-G maneuvers and reduce frame lifespan.
Can I use 2208 or 2212 motors with this frame?
The QAV-R 220mm frame is optimized for 1806 through 2207 motor classes with standard M3 mounting holes. While 2208 and 2212 motors can be physically mounted using M3 fasteners, the increased mass and inertia will negatively impact frame performance by increasing gyroscopic lag and reducing responsiveness to control inputs. We recommend adhering to the 1806-2207 motor specification range for optimal flight characteristics and frame durability.
How do I repair a cracked carbon fiber arm?
Minor surface cracks in carbon fiber arms can be temporarily stabilized using two-part epoxy resin applied along the fracture line, but structural integrity is compromised and the arm should be replaced before competitive use. The QAV-R design features replaceable arms available as individual components, allowing you to swap damaged arms without complete frame replacement. For field repairs during competitions, carry spare arms pre-assembled with motor mounts to minimize downtime.
When will I receive my order?
Orders are dispatched within 1-5 business days from our Bengaluru warehouse. Delivery takes 7-8 days to most locations across India.
What is your return and warranty policy?
We offer a 7-day return policy on manufacturing defects only. Contact support within 7 days of receipt for free replacement or full refund. Not applicable for user damage or misuse.
Are bulk discounts available?
Yes, wholesale pricing for orders of 10 or more units. Contact our sales team via WhatsApp or email for a customized bulk quote.
Why Buy from The Engineer Store
- Genuine Products: Sourced directly from authorized distributors with authentication
- Expert Team: Our technical team validates every product before listing
- Fast Shipping: Dispatched within 1-5 days from our Bengaluru warehouse
- Pan-India Delivery: 7-8 days to Mumbai, Delhi, Chennai, Hyderabad, Pune, Kolkata
- Payment Options: COD, UPI, credit/debit cards, net banking, EMI available
- Technical Support: 24/7 expert guidance via email and WhatsApp
- Returns: 7-day return policy on manufacturing defects only
Buy QAV-R 220mm Quadcopter Carbon Fiber Frame Online in India
Purchase the QAV-R 220mm Quadcopter Carbon Fiber Frame online at The Engineer Store, India's trusted source for genuine electronics. We deliver across Bengaluru, Mumbai, Delhi, Chennai, Hyderabad, Pune, Kolkata, Ahmedabad, Jaipur, and Surat. Get the best price on QAV-R 220mm Quadcopter Carbon Fiber Frame with fast shipping and expert support.
Our team in Bengaluru is available 24/7 to support your journey from product selection to project completion.
QAV-R 220mm Quadcopter Carbon Fiber Frame
- ୟୁନିଟ୍ ମୂଲ୍ୟ
- / ପ୍ରତି
ତୁମର କାର୍ଟରେ ଉତ୍ପାଦ ଯୋଗ କରିବା |
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QAV-R 220mm Quadcopter Carbon Fiber Frame
The QAV-R 220mm Quadcopter Carbon Fiber Frame is a high-performance racing drone platform engineered for FPV (First Person View) pilots and aerial enthusiasts who demand precision, durability, and lightweight construction. This frame is specifically designed for 220mm wheelbase configurations, providing optimal balance between agility and stability for competitive racing and freestyle flying applications. The frame solves critical challenges in drone design by combining superior strength-to-weight ratio with enhanced vibration damping, enabling pilots to achieve faster lap times and smoother flight characteristics while minimizing structural fatigue during high-impact maneuvers.
Product Overview
The QAV-R 220mm frame utilizes premium 3K carbon fiber composite construction, which delivers exceptional rigidity while maintaining minimal mass distribution across all structural elements. The frame architecture incorporates strategically reinforced motor arms with integrated cable management channels, precision-machined aluminum standoffs, and optimized center plate geometry that accommodates standard 30.5mm x 30.5mm flight controllers and power distribution boards. The 220mm motor-to-motor diagonal wheelbase classification positions this frame in the sweet spot for competitive FPV racing, offering superior maneuverability compared to larger platforms while maintaining sufficient structural integrity for sustained high-G acceleration and aggressive banking turns.
What distinguishes the QAV-R platform is its modular design philosophy, featuring replaceable carbon fiber arms that can be swapped without complete frame disassembly, and integrated motor mount plates that accommodate both 1806 and 2207 class brushless motors with standard M3 fastening. The frame geometry incorporates swept-back motor arms that enhance yaw authority and reduce prop wash interference, while the low-profile design minimizes aerodynamic drag during high-speed transitions. Advanced vibration isolation is achieved through elastomeric dampening elements at critical junction points, significantly reducing gyroscopic noise transmission to onboard sensors and improving flight controller stability during rapid directional changes.
Key Specifications
| Specification | Details |
| Product Type | FPV Racing Quadcopter Frame Kit |
| Brand | QAV-R |
| Origin | Original/Authentic |
| Warranty | 7 days on manufacturing defects |
| Shipping | 1-5 days from Bengaluru |
| Delivery | 7-8 days across India |
| Support | 24/7 via Email and WhatsApp |
| Wheelbase Diagonal | 220mm motor-to-motor distance |
| Material Composition | 3K Carbon Fiber Twill Weave |
| Weight | Approximately 95-105 grams frame only |
| Motor Compatibility | 1806 to 2207 brushless motors with M3 mounts |
| Flight Controller Mounting | 30.5mm x 30.5mm standard spacing |
| Arm Thickness | 4mm carbon fiber construction |
Key Features
- Premium 3K Carbon Fiber Construction: Delivers exceptional stiffness-to-weight ratio with 3K twill weave pattern, providing superior durability against crash impacts while maintaining minimal mass for rapid acceleration and deceleration cycles
- Modular Replaceable Arm Design: Quick-swap carbon fiber arms enable field repairs without complete frame replacement, reducing downtime during competitive events and extending overall platform lifespan
- Integrated Cable Management Channels: Precision-routed pathways along motor arms guide ESC signal wires and power distribution cables, reducing electromagnetic interference and improving flight controller sensor accuracy
- Swept-Back Motor Arm Geometry: Optimized arm angles enhance yaw authority and minimize prop wash vortex interference, resulting in smoother directional control and improved stability during aggressive aerial maneuvers
- Elastomeric Vibration Isolation: Strategic dampening elements at frame junction points isolate motor vibration from flight controller IMU sensors, significantly reducing gyroscopic noise and improving PID controller responsiveness
- Low-Profile Center Plate Design: Minimizes aerodynamic drag and center of gravity height, enabling faster sustained speeds and improved energy efficiency during extended flight sessions
Applications and Use Cases
- FPV Racing Competitions: Purpose-built for drone racing leagues and MultiGP sanctioned events where the 220mm wheelbase provides optimal balance of speed, maneuverability, and structural reliability for competitive gate navigation
- Freestyle Aerial Cinematography: Enables skilled pilots to perform complex 3D acrobatic maneuvers including inverted rolls, knife-edge flights, and rapid altitude transitions while maintaining gimbal stability for smooth video capture
- Obstacle Course Navigation: The compact 220mm footprint allows precise flight through tight indoor spaces, narrow outdoor corridors, and complex architectural environments while maintaining directional control authority
- Long-Range FPV Exploration: Lightweight carbon fiber construction minimizes power consumption, extending flight duration for extended-range missions while the rigid frame maintains GPS positioning accuracy during sustained forward flight
- Prototype Development and Testing: Engineers and hobbyists utilize the modular design for rapid iteration of motor configurations, sensor payloads, and flight controller algorithms without frame replacement
How to Use
Begin assembly by verifying all carbon fiber components for manufacturing defects, micro-fractures, or delamination before proceeding. Mount the flight controller and power distribution board onto the center plate using M2.5 nylon standoffs, ensuring precise 30.5mm spacing alignment. Install the four motor arms using M3 fasteners with appropriate threadlock compound, verifying each arm is perpendicular to the center plate within 0.5 degree tolerance. Route ESC signal cables through the integrated management channels, securing them with adhesive-backed cable ties to minimize vibration transmission. Mount brushless motors onto the motor plates using M3 fasteners, ensuring motor shafts are perfectly vertical and propeller mounting hubs are concentric with the frame geometry.
After hardware assembly, perform a comprehensive pre-flight inspection by gently flexing each motor arm to verify structural integrity and checking all fasteners for secure seating. Connect the flight controller to your preferred radio transmitter and configure the motor mixing matrix according to your ESC firmware specifications. Perform a bench-test spin-up of each motor individually at low throttle to verify correct rotation direction and absence of mechanical binding. Install propellers only after all electronic systems are verified functional and the frame is mounted on the aircraft. During initial flights, begin with conservative throttle inputs to allow the flight controller PID tuning to adapt to the frame's specific vibration characteristics and weight distribution.
Frequently Asked Questions
What is the maximum takeoff weight for the QAV-R 220mm frame?
The QAV-R 220mm frame supports maximum takeoff weights between 800 to 1200 grams depending on motor selection and battery capacity. With 2207 brushless motors and a 4S LiPo battery, typical all-up weight ranges from 950 to 1050 grams, providing optimal thrust-to-weight ratios between 4:1 and 5:1 for competitive racing applications. Exceeding 1200 grams will compromise structural integrity during high-G maneuvers and reduce frame lifespan.
Can I use 2208 or 2212 motors with this frame?
The QAV-R 220mm frame is optimized for 1806 through 2207 motor classes with standard M3 mounting holes. While 2208 and 2212 motors can be physically mounted using M3 fasteners, the increased mass and inertia will negatively impact frame performance by increasing gyroscopic lag and reducing responsiveness to control inputs. We recommend adhering to the 1806-2207 motor specification range for optimal flight characteristics and frame durability.
How do I repair a cracked carbon fiber arm?
Minor surface cracks in carbon fiber arms can be temporarily stabilized using two-part epoxy resin applied along the fracture line, but structural integrity is compromised and the arm should be replaced before competitive use. The QAV-R design features replaceable arms available as individual components, allowing you to swap damaged arms without complete frame replacement. For field repairs during competitions, carry spare arms pre-assembled with motor mounts to minimize downtime.
When will I receive my order?
Orders are dispatched within 1-5 business days from our Bengaluru warehouse. Delivery takes 7-8 days to most locations across India.
What is your return and warranty policy?
We offer a 7-day return policy on manufacturing defects only. Contact support within 7 days of receipt for free replacement or full refund. Not applicable for user damage or misuse.
Are bulk discounts available?
Yes, wholesale pricing for orders of 10 or more units. Contact our sales team via WhatsApp or email for a customized bulk quote.
Why Buy from The Engineer Store
- Genuine Products: Sourced directly from authorized distributors with authentication
- Expert Team: Our technical team validates every product before listing
- Fast Shipping: Dispatched within 1-5 days from our Bengaluru warehouse
- Pan-India Delivery: 7-8 days to Mumbai, Delhi, Chennai, Hyderabad, Pune, Kolkata
- Payment Options: COD, UPI, credit/debit cards, net banking, EMI available
- Technical Support: 24/7 expert guidance via email and WhatsApp
- Returns: 7-day return policy on manufacturing defects only
Buy QAV-R 220mm Quadcopter Carbon Fiber Frame Online in India
Purchase the QAV-R 220mm Quadcopter Carbon Fiber Frame online at The Engineer Store, India's trusted source for genuine electronics. We deliver across Bengaluru, Mumbai, Delhi, Chennai, Hyderabad, Pune, Kolkata, Ahmedabad, Jaipur, and Surat. Get the best price on QAV-R 220mm Quadcopter Carbon Fiber Frame with fast shipping and expert support.
Our team in Bengaluru is available 24/7 to support your journey from product selection to project completion.
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You can pay through multiple payment options on theengineerstore.in the checkout page. You can pay through Credit/Debit Card, Internet Banking, Mobile Payments, Manual bank transfer, and Wallets. You can also apply a coupon that you might receive from The Engineer store or redeem The Engineer store points that you have earned from your previous purchases.
Cash on Delivery is offered theengineerstore.in and it is location dependent. Applicability of COD is determined by our system once you enter the pin-code of your area. Also the COD service is chargeable (Rs.25). It is charged by the shipping company for cash handlings.
Once you place a COD order, our executive will call you to confirm your order only after which your order will be processed.
It is best to prepay your order and buy confidently.
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