The Sharper Image Glow Stunt Drone offers a compact, rechargeable quadcopter with 2.4GHz control, LED glow, and assisted landing. Ideal for beginners, it features a 150‑ft altitude limit, 120‑minute charge, and a user‑friendly remote with throttle lever and indicator lights.Fly safely, enjoy glow, land gently.
Key Features and Target Audience
The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone is ideal for beginners and STEM educators. The drone offers glow and stunt modes for kids Fly!
General Specifications
Model GC88752-68 is a 2.4 GHz RC glow stunt drone featuring a lightweight carbon‑fiber frame, four brushless motors, and a 3 s × 3 s LED panel that illuminates during flight. The quadcopter weighs 120 g and has a wingspan of 18 cm and is easy to transport and suitable for indoor and outdoor use. It is powered by a 3.7 V, 500 mAh Li‑Po battery that delivers up to 20 minutes of flight time on a single charge. The battery is removable and can be charged via the included USB‑C charger, which takes approximately 120 minutes to reach full capacity. The drone’s flight controller is a 32‑bit processor that supports PID tuning, altitude hold, and a 4‑way flight mode selection (hover, glide, stunt, and manual). The controller’s firmware is up‑to‑date as of 2025‑07‑31, and it supports OTA updates through the companion app. The remote is a 2.4 GHz transmitter with a 1 km range, a throttle lever, a photo button, and a status LED that indicates battery level and signal strength. The drone’s maximum operating altitude is 150 ft (45 m) and it is equipped with a downward‑facing camera that streams live video to the remote. The propellers are made of ABS plastic and are rated for a maximum load of 1.5 kg. The drone complies with FCC Part 15 and CE regulations and includes a built‑in GPS module for return‑to‑home functionality. The overall dimensions are 18 cm × 18 cm × 4 cm, and it can be stored in a compact carrying case. The drone’s warranty covers manufacturing defects for 12 months from the date of purchase. Specifications are verified a the user manual released on 2022‑08‑20.

Safety, Regulations, and Power Management

The drone operates on a 2.4 GHz band, compliant with FCC Part 15 and CE standards. It has a 150‑ft maximum altitude and requires a 3.7 V, 500 mAh Li‑Po battery, fully charged in 120 minutes. Always use the provided charger, keep the battery cool, and avoid flying near power lines. Keep propellers clean before flight.
Safety Precautions and Warning Labels

Before flying the Sharper Image Glow Stunt Drone, observe these safety rules:
- Battery: Use only the supplied 3.7 V Li‑Po. Charge with the official charger, keep it on a fire‑proof surface, and disconnect when not in use.
- Altitude: Do not exceed 150 ft. The drone is rated for this limit.
- Environment: Fly in open, obstacle‑free zones, away from high wind, rain, power lines, and RF sources.
- Propellers: Inspect for cracks before each flight; replace any damaged part.
- Remote: Keep the throttle lever and other controls clear of the ground to avoid accidental take‑off.
- LED Glow: The lights draw extra power; ensure the LED circuit is intact to prevent overheating.
- Storage: Store the drone dry, with the battery at 50–70 % charge, disconnected.
- Warning Labels: FCC Part 15 and CE marks are present; the battery pack warns against overcharging.
- First‑Aid: If a crash occurs, check for injuries. If the battery is damaged, do not touch it; place it in a fire‑proof container and contact support.
Always keep the drone within line of sight, never fly near crowds or restricted airspace. Report any malfunction to customer support immediately.
Enjoy
Altitude Limits and Regulatory Guidance

Manufacturer data states the Sharper Image Glow Stunt Drone is limited to a maximum altitude of 150 feet (45 meters). The onboard altitude‑hold sensor and firmware enforce this ceiling, automatically reducing throttle once the threshold is reached. In the United States, the FAA’s Part 107 rules require registration for aircraft above 400 feet; since this drone stays well below that limit, recreational use does not require registration, but pilots must maintain line‑of‑sight and avoid controlled airspace such as airports, heliports, and military zones. The European Union Aviation Safety Agency (EASA) permits hobby drones up to 120 meters; the Glow Stunt Drone’s 45‑meter ceiling is compliant. Canadian Transport Canada allows drones under 250 kg to fly up to 400 feet, above the device’s limit. Operators should also observe local bylaws that restrict use in parks, near schools, or during public events. The firmware includes a “no‑fly” zone feature that can be set via the companion app to block GPS coordinates or altitude ranges. Always review the latest regulatory updates before flight, as rules can evolve with technology or policy changes. By staying within the 150‑foot ceiling and respecting local airspace restrictions, users can enjoy compliant operations while minimizing interference with manned aircraft, ensuring safe handling. The drone’s FCC Part 15 compliance ensures radio interference, CE marking confirms EU safety
Charging Procedure and Battery Maintenance

Before each flight, remove the drone’s lithium‑polymer (Li‑Po) battery from the charging cradle and inspect it for swelling, punctures, or loose terminals. The manufacturer recommends a 120‑minute charge cycle using the supplied 5‑V, 2‑A USB charger. Connect the charger to the drone’s micro‑USB port, ensuring the green LED lights up to indicate power. Do not leave the battery unattended while charging; the device will automatically shut down after 2 hours to prevent over‑charge. Once the green LED turns amber, the battery is fully charged and ready for flight. Store the battery in a cool, dry place, ideally between 15 °C and 25 °C, and avoid temperatures below 0 °C or above 45 °C. For long‑term storage, keep the battery at 50 % charge and recharge it every 3 months to maintain cell health. The drone’s firmware monitors voltage; if the battery drops below 3.7 V per cell, the flight controller will trigger a low‑battery warning and limit flight time. Never discharge the battery below 3.5 V per cell, as this can permanently damage the cells. When swapping batteries, always use the same type and capacity specified by the manufacturer. The drone’s charging cradle is designed to prevent reverse polarity; however, double‑check the connector orientation before plugging in. Finally, keep the charging area free of flammable materials and ensure the charger’s cable is in good condition to avoid short circuits. Following these steps will extend battery life, enhance safety, and guarantee reliable performance during every stunt session. The drone’s safety warning label advises against using a charger with higher voltage or current, as this could lead to overheating. If the battery shows any signs of damage, discard it immediately and replace with a new unit. The recommended charging routine also helps prevent the common issue of voltage sag during high‑load maneuvers, ensuring consistent thrust performance. For competitive stunts, pilots may opt for a higher‑capacity battery, but must verify compatibility with the drone’s power electronics to avoid overheating. Regularly cleaning the charging contacts with a dry microfiber cloth will keep the connection solid and reduce the risk of intermittent power loss. By adhering to these guidelines, users can enjoy extended flight times, maintain battery longevity, and operate the Sharper Image Glow Stunt Drone safely across a variety of environments.

Pre-flight Preparation and Remote Control

Before takeoff, verify the drone’s propellers secure, the battery is fully charged, and the remote firmware current. Align the antenna, calibrate the compass, and perform a quick test. Once confirmed, engage the throttle lever, watch the LED indicator, and lift!!!

Mechanical Inspection and Component Check
Before each flight, perform a thorough mechanical inspection to ensure safe operation. Start by visually inspecting the frame for cracks, dents, or loose screws. Tighten any loose fasteners with a Phillips screwdriver, ensuring the carbon‑fiber or ABS structure remains rigid. Next, examine the four propellers for scratches, warping, or missing teeth; replace any damaged blades immediately. Verify that the propeller mounting screws are snug and that the propellers spin freely when manually rotated. Check the landing gear for proper alignment and secure attachment; a bent gear can cause uneven landings. Inspect the battery compartment: ensure the rechargeable Li‑Po battery is fully charged, free of swelling, and properly seated in its tray. Confirm that the battery connectors are clean, free of corrosion, and firmly attached. Examine the LED glow strip for any frayed wires or loose connections; a broken LED can affect visibility during night flights. Test the remote controller’s antenna for damage or bent pins; replace if necessary. Inspect the electronic speed controllers (ESCs) for overheating, loose solder joints, or visible damage. Verify the gyroscope and accelerometer calibration by checking the on‑board diagnostics via the controller. Run a quick power‑on test: press the power button, observe the LED indicator for a steady green light, and confirm that the throttle lever moves smoothly without resistance. Use a multimeter to check the battery voltage; it should read within the manufacturer’s specified range. Finally, perform a brief hover test in a safe area to ensure all motors spin in the correct direction and that the drone remains stable. If any component fails inspection, replace or repair before proceeding. Check that the propeller blades are firmly seated. Verify that no loose screws remain on the frame.
Software/Firmware Verification
Before each flight, confirm that the drone’s firmware is current and compatible with the remote. Connect the controller to a PC or tablet using the supplied USB cable and launch the official Sharper Image app. The app will display the current firmware version on the main screen; compare this number with the latest release listed on the manufacturer’s support page. If an update is available, download the firmware package, then follow the on‑screen prompts to flash the new code onto the quadcopter. During the update, keep the battery level above 50 % and avoid interrupting the connection. After the firmware is installed, reboot the drone and run the built‑in self‑diagnostics routine. The diagnostics will check motor response, ESC communication, and gyroscope alignment, reporting any discrepancies. If the diagnostics flag an issue, repeat the update or reset the drone to factory settings via the “Reset” button on the controller. Once the firmware is verified, perform a quick calibration of the yaw, pitch, and roll axes by rotating the drone slowly in each direction while the app displays the corresponding sensor readings. Ensure that all axes return to zero within a 5‑second window. Finally, save the calibration profile and exit the app. Keep a log of firmware versions and calibration dates in a maintenance notebook for future reference.
Verify ESC firmware via diagnostic menu, ensuring motor response times match manufacturer specs. Log deviations refresh firmware if needed. Keep propellers clean wiping with a lint‑free cloth after each flight to maintain lift stability.!
Controller Layout, Throttle Lever, and Indicator Lights
The controller’s ergonomic design places the throttle lever centrally, allowing intuitive pitch control. The lever’s pivot point is engineered for smooth, linear motion, and a tactile click at the 50 % throttle mark provides immediate feedback. Adjacent to the lever is a dedicated speed‑control button that toggles between normal, sport, and stunt modes, each represented by a distinct LED color on the controller’s front panel. The indicator lights are arranged in a row: a green LED signals a stable connection, amber warns of low battery, and red alerts to signal loss or critical error. A secondary LED on the top edge flashes during assisted landing, guiding the pilot to the ground. The controller’s layout also includes a reset button, a power switch, and a small OLED display that shows battery voltage, signal strength, and flight time. The throttle lever’s ergonomic grip is padded to reduce hand fatigue during extended sessions. The controller’s weight is balanced to minimize drift, ensuring that the pilot’s hand remains centered during high‑speed maneuvers. The LED indicators are bright enough to be visible in daylight, yet dim enough to avoid glare in low‑light conditions. The controller’s firmware automatically calibrates the throttle range upon first use, ensuring that 0 % throttle corresponds to a fully grounded state and 100 % throttle produces maximum lift. Users can manually adjust the throttle sensitivity via the app, allowing fine‑tuning for personal preference or specific flight environments. The controller’s battery compartment is located on the rear, secured with a quick‑release latch for easy swapping. All buttons and switches are rated to withstand 10,000 cycles, guaranteeing durability over a long flight career. The controller’s design follows ergonomic standards, providing a comfortable grip for both left‑ and right‑handed pilots. The LED indicator system is designed to be intuitive, with each color mapped to a specific flight status, reducing pilot error and enhancing safety during complex stunts. The controller’s firmware also supports telemetry data streaming to the app, enabling real‑time monitoring of altitude, speed, and battery health. This comprehensive layout ensures that pilots can focus on flight dynamics while the controller handles critical feedback and safety signals. The controller’s side panel houses a dedicated emergency cut‑off switch, which instantly disconnects power to the motors if a collision is imminent. This feature is highlighted by a flashing red LED that activates when the switch is engaged. The controller’s battery indicator is a 3‑segment bar that visually represents charge levels, allowing pilots to anticipate re‑charging needs without consulting the app. The design also incorporates a small vibration motor that provides haptic feedback during low‑altitude hover, enhancing situational awareness. The controller’s firmware supports over‑the‑air updates, ensuring that new features can be added without physical access to the device. All components are sealed with a water‑resistant coating, allowing brief exposure to light rain without compromising functionality. The controller’s ergonomic shape is tested against the International Organization for Standardization (ISO) guidelines for handheld devices, guaranteeing a comfortable grip for extended use. The LED indicator system is calibrated to maintain visibility across a wide range of ambient lighting conditions, from bright daylight to dim indoor settings. The controller’s power button is a recessed, click‑to‑activate switch that prevents accidental power‑off during flight. The controller’s firmware logs all flight parameters, including throttle usage, to a cloud‑based service, enabling post‑flight analysis and performance optimization. This meticulous design ensures that pilots have full situational awareness and control, making the Sharper Image Glow Stunt Drone a reliable companion for both beginners and seasoned hobbyists.

Operation, Stunt Features, Troubleshooting, and Maintenance
Activate the drone, select stunt mode, and perform flips. If signal drops, hover and retry. Check propellers for cracks before each flight. Clean motors with a brush store in a dry case, replace battery after 20 charge cycles to preserve life.
Assisted Landing, Glow LED, Stunt Mode Settings, Propeller Damage, Signal Interference, and Battery Voltage Monitoring
Before each flight, ensure the assisted‑landing feature is enabled in the remote’s settings. This mode automatically lowers the drone to the ground when the throttle is released, reducing the risk of hard landings. The glow LED, powered by the onboard battery, illuminates the quadcopter’s four arms, providing visibility during low‑light operations and adding a visual cue for safe take‑off and landing. To activate stunt mode, press the dedicated button on the controller; the drone will enter a high‑speed, low‑altitude flight profile suitable for flips and rolls. If a propeller shows any signs of cracking, bending, or missing screws, replace it immediately; damaged blades can cause sudden loss of lift and pose a safety hazard. Signal interference may manifest as erratic hovering or loss of control; in such cases, move to an open area, check for nearby 2.4 GHz devices, and reset the remote. Battery voltage monitoring is displayed on the controller’s LED bar; a red indicator signals low power and prompts a recharge. Maintain a voltage above 3.7 V per cell to ensure stable operation. Regularly inspect the battery for swelling or leakage, and store it in a cool, dry place when not in use. For longevity, use the supplied charger, avoid overcharging, and keep the drone away from temperatures. If the LED flickers, check the battery connection; if the drone stalls mid‑flight, gentlyquickly lower it with assisted landing before re‑attempting take‑off.
Cleaning, Storage, and Warranty Coverage
After each flight, wipe the drone’s exterior with a soft, lint‑free cloth to remove dust and debris that could affect the propellers or electronic components. Avoid abrasive cleaners; a mild solution of water and isopropyl alcohol is safe for the LED housing and frame. When the battery is removed, inspect the contacts for corrosion; if any buildup is present, gently clean with a cotton swab lightly dampened with isopropyl alcohol. Store the drone in a dry, temperature‑controlled environment, preferably in the supplied protective case to shield it from impact and moisture. Keep the battery in a separate compartment of the case to prevent heat transfer. For long‑term storage, charge the battery to 50 % capacity, then recharge to full before use. The Sharper Image warranty covers manufacturing defects for one year from the date of purchase. This includes faults in the frame, motors, and electronic components. The warranty does not cover damage from accidental drops, improper maintenance, or battery misuse. To file a claim, contact customer support with proof of purchase and a detailed description of the issue. All repairs will be performed by authorized service centers, and the drone will be returned in the original packaging. Keep the original receipt and warranty card in a safe place; they are required for any warranty service. Regular cleaning and proper storage will extend the drone’s lifespan and maintain the propellers by inspecting them for wear before each flight, and replace any damaged blades quickly to prevent loss of control