X-bee drone 2.2 - Drone Overmax - Free user manual and instructions
Find the device manual for free X-bee drone 2.2 Overmax in PDF.
| Product Type | Drone |
| Brand | Overmax |
| Model | X-bee drone 2.2 |
| Intended Use | Indoor and outdoor |
| Age Recommendation | 14 years and above |
| Drone Battery Type | Rechargeable lithium-polymer (Li-Poly) |
| Drone Battery Capacity | 3.4V 350mAh |
| Flight Time | Up to 10 minutes |
| Charging Time | Approximately 60 minutes |
| Controller Battery Type | 4 AA batteries (non-rechargeable) |
| Controller Operation Time | Approximately 18 hours |
| Speed Modes | 3 modes: Slow, Normal, Fast (with 3D flip mode) |
| Special Features | 360-degree flips, LED lights, auto-calibration |
| Charging Current | 0.5A |
| Maximum Charging Voltage | 4.2V ± 0.03V |
| Frequency Band | 2.4 GHz (EN 300 328) |
| Propeller Replacement | Yes, user-replaceable (requires screwdriver) |
| Safety Features | Low battery warning, auto-calibration, adult supervision required for charging |
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USER MANUAL X-bee drone 2.2 Overmax
| ** The product is designed for people aged 14 and up**● We suggest those, who are just getting started to operate drones, to contact a person with more experience in this field. The users under 18 years of age can operate the product under adult supervision only.● The purpose of the safety notes is to protect both the product and its users as well as bystanders and their property.● Improper operation of the product can cause injuries and property damage. |
| SPECIALLY DESIGNED FOR INDOOR AND OUTDOOR USE● The product has been designed in a way so that it can be used both indoors and outdoors.Before using the product, make sure that the area you chose is free from obstacles. Also, when operating the product always keep a safe distance from people and animals.● Do not operate the product near power lines. |
| PREVENT THE PRODUCT FROM GETTING WETBoth the drone and the controller are composed of many precision electronic components. Therefore, they must be prevented from getting wet. Exposure to water or moisture in any form can cause their malfunction or damage.DO NOT OPERATE OR EXPOSE THE PRODUCT TO RAIN OR MOISTURE |
| BATTERY INSTRUCTIONSTo avoid a potential fire hazard, please do not short circuit, puncture or reverse the polarity of batteries. Battery charging should always be done under adult supervision, and at a location out of the reach of children.● DO NOT MIX NI-CAD AND ALKALINE BATTERIES |
| SAFETY NOTES FOR NI-MH BATTERIES● Make sure the batteries are properly installed observing correct polarity (+ -).DO NOT MIX NI-CAD AND ALKALINE BATTERIES● If you plan not to use the quadcopter for extended period of time, remove the batteries from the controller to avoid their leakage, which may damage the transmitter.PLEASE DISPOSE USED BATTERIES ACCORDING TO LOCAL REGULATIONS IN SPECIAL RECYCLE SPOTS. |
| SAFETY NOTES FOR LI-POLYMER BATTERIES● Li-Polymer batteries have higher operational risks when compared to ones of other types. Therefore, using them, it is imperative to follow proper operational guidelines. The manufacturer and dealers assume no liability for any damage caused by improper usage.In order to avoid potential fire or explosion do not use any other charger except the one included with the product. DO NOT crush, disassemble, burn, or reverse the polarity of the batteries.To avoid short circuits, do not allow the metal parts to touch the battery terminals. NEVER PUNCTURE BATTERIES, OTHERWISE IT COULD CAUSE POTENTIAL FIRE HAZARD.● Battery charging should always be done under adult supervision, and at a location out of the reach of children.● In case of unnatural excessive heating of the batteries please stop using or charging them immediately.Otherwise, it may cause their swelling, deformation or explosion thereby increasing the risk of fire.**PLEASE DISPOSE USED BATTERIES ACCORDING TO LOCAL REGULATIONS IN SPECIAL RECYCLE SPOTS. DO NOT DISPOSE OF OLD BATTERIES IN THE HOUSEHOLD TRASHDO NOT CHARGE BATTERIES OVERNIGHT |
| KEEP AWAY FROM HEATR/C models are made from various forms of plastic that is very susceptible to damage or deformation due to extremely high and low temperatures. Therefore, the product should not be used or stored in places where it would be exposed to extreme temperatures. |
| OBTAIN THE ASSISTANCE OF AN EXPERIENCED PILOT Although the product can be treated as a toy, it is not intended for those under fourteen years of age. Those, who are inexperienced in piloting remote-controlled drones must know that there will be a slight learning curve until you become a skilled pilot. In order to make it easier to gain this skill we recommend exercises under the supervision of professional drone pilots. |
2. CONTROLLER (TRANSMITTER) DIAGRAM

3. CONTROLLER (TRANSMITTER) BATTERY INSTALLATION
Use a screwdriver to open the battery cover.
Place 4 AA batteries in the battery compartment. Make sure the batteries are properly installed according to correct polarity (+ -). DO NOT MIX THE BATTERIES OF DIFFERENT TYPES

4. BATTERY CHARGING

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Electrical setup with cable, plug, and power outlet (no text or symbols visible)Use the included charger to charge the battery of the drone.
** Use ONLY the supplied charger for charging.
Battery charging should always be done under adult supervision.
LED indicator
| Red - off | Red - on |
| Charging completed | Charging... |
Charger specifications
| Input | Charging current | Maximum voltage |
| 5V | 0.5A | 4.2 ± 0.03V |
Battery usage and charge duration reference
| Battery type | Battery specification | Single charge working time | Charging time |
| Rechargeable lithium - polymer battery (Li - Poly) | 3.4V 350mAh | Drone flight time: up to 10 minutes | About 60 minutes (charging current approx. 0.5 A) |
| Zinc - carbon battery (Non rechargeable) | 1.5V (GP 15G R4P) | Controller (transmitter) operation time: 18 hours | Non rechargeable (do not charge) |
5. TRANSMITTER AND RECEIVER SYNCHRONIZATION
Step 1

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Line drawing of a mechanical device with control panel and adjustment knob (no text or symbols)Move the throttle stick to the lowest position.
Step 2

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Technical line drawing of a mechanical device with dual circular components and a central component (no text or symbols)Turn the controller on.
Step 3

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Pure electrical circuit lines without any symbolsPlace the battery in the drone's battery compartment and connect the battery plug with the drone's one. The LED lights will start to glow.
Step 4

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Line drawing of a quadcopter drone with propellers and a circular head (no text or symbols)Place the drone on a flat and even surface.
Step 5

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Top-down schematic of a vehicle's front and rear dashboard showing directional arrows and component layout (no text or labels)Move the throttle stick forward, and then backward. The controller emits the sound indicating that the connection with the drone has been established. The LEDs start to glow steadily indicating that X-Bee Drone 2.2 is ready to fly.
Auto-calibration
Switch the speed mode to "fast" (Mode 3). Place the drone on a flat and even surface. Move both sticks to the lower left corner positions, as shown in the picture. Hold these positions for 10 seconds. The drone's LEDs will blink several times, then they will start to glow steadily. Now, you can release the sticks - the drone is ready to fly.

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Top-down line drawing of a remote control device with buttons and ports (no text or symbols)6. FLIGHT CONTROL
Flying up / down

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Technical line drawing of a drone with top and side views showing internal components (no text or symbols)Move the throttle stick forward to fly the drone up.
Move the throttle stick backward to fly the drone down.
Rotating left/right![]() | Move the throttle stick left / right to rotate the drone in a given direction. |
Flying left/right![]() | Move the direction control stick left / right to fly the drone in a given direction. |
Flying forward and backward![]() | Move the direction control stick forward / backward to fly the drone in a given direction. |
Left/right rotate calibration![]() | Press the "Left rotation" key if the drone automatically rotates clockwise. Press the "Right rotation" key if the drone automatically rotates counterclockwise. |
| Left/right migration calibration[XYYYW] | Press the "Left migration" key if the drone automatically migrates to the right. Press the "Right migration" key if the drone automatically migrates to the left. |
Forward/backward migration calibration![]() | Press the "Forward migration" key if the drone automatically migrates backwards. Press the "Backward migration" key if the drone automatically migrates forwards. |
Throttle calibration![]() | Press the "Throttle up" key if the drone automatically flies down. Press the "Throttle down" key if the drone automatically flies up. |
360-degree stunts
Press the Speed mode button three times. The controller emits three beep sounds indicating that the drone is in 3D flip mode.
When in 3D flip mode, move the direction stick forward, backward, left or right to flip the drone in the chosen direction.
Press the Speed mode button once again to go back to the normal control mode.
Note: Before you start doing stunts make sure that there is enough space in the area.
360-degree flip to the left![]() | 360-degree flip to the right![]() |
360-degree backward flip![]() | 360-degree forward flip![]() |
Speed modes
The device supports three flight speed modes. Press the flight speed button to switch between slow, normal and fast mode. The current speed mode is indicated by a number of the beep sounds. Mode 1 - slow mode - one beep; Mode 2 - fast mode - two beeps; Mode 3 - 3D flip mode - three beeps.
MODE4
In order to switch your drone to MODE4, press and hold the LED lights button for 3 seconds. The controller emits a beep sound to confirm the operation.
If you want to switch your drone back to the normal control mode, press the same button again and hold it for 3 seconds until you hear a beep sound.
| Move the throttle stick forward to fly the drone up. Move the throttle stick backward to fly the drone down. | ![]() | |
| Move the direction control stick forward / backward to fly the drone in a given direction. | ![]() | |
| Move the throttle stick left / right to fly the drone in a given direction. | ![]() | |
| Move the direction control stick left / right to rotate the drone in a given direction. | ![]() |
7. PROPELLER REPLACEMENT
Use a screwdriver to remove the propeller, then attach the new one according to the following schedule:

Polski
1. INFORMACJE ODNOŚNIE BEZPIECZEŃSTWA UŻYTKOWANIA
4. ŁADOWANIE AKUMULATORÓW

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Line drawing of a mechanical device with control knobs and a downward arrow indicating a component (no text or symbols)natural_image
Technical line drawing of a mechanical device with dual circular components and a central component (no text or symbols)Włącz kontroler
Krok 3

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Line drawing of a quadcopter drone with two propellers and a circular head (no text or symbols)natural_image
Top-down line drawing of a remote control device with buttons and ports (no text or symbols)6. KONTROLA LOTU

4. NABÍJENÍ BATERIE

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Top-down line drawing of a mechanical device with labeled ports and a black arrow pointing to a component (no text or symbols present)natural_image
Technical line drawing of a mechanical device with dual circular components and a central indicator (no text or symbols)Zapněte kontrolér.
Krok 3

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Pure electrical circuit lines without any symbolsnatural_image
Line drawing of a quadcopter drone with propellers and control arms (no text or symbols)natural_image
Top-down schematic of a vehicle dashboard with directional arrows indicating movement or force (no text or symbols)natural_image
Line drawing of a 3D remote control device with ports and buttons (no text or symbols)6. OVLÁDÁNÍ LETU
Let nahoru a dolů

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Line drawing of a mechanical device with no visible text or symbols
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Diagram of a mechanical device with two top supports and a downward force arrow, no text or symbols presentSlovenský
1. BEZPEČNOSTNÉ POZNÁMKY
4. NABÍJANIE BATÉRIE

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Top-down line drawing of a mechanical device with labeled ports and a black arrow pointing to a component (no text or symbols present)natural_image
Technical line drawing of a mechanical device with dual circular components and a central component (no text or symbols)Zapnite ovládač.
Krok 3

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Pure electrical circuit lines without any symbolsBatériu vložte do priestoru pre batérie dronu a prepojte zástrčku batérie so zástrčkou dronu. LED začnú svietit'.
Krok 4

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Line drawing of a quadcopter drone with two propellers and a circular head (no text or symbols)Umiestnite dron na plochý povrch.
Krok 5

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Top-down schematic of a vehicle's front and rear dashboard showing directional arrows and component layout (no text or labels)natural_image
Line drawing of a 3D remote control device with dual motors and control buttons (no text or symbols)6. OVLÁDANIE LETU
Let nahor a nadol

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Diagram of a drone's internal components and directional arrows, showing top-down and side-view views (no text or symbols)Romana
1. NOTE DE SIGURANTA
4. INCARCAREA BATERIILOR

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Line drawing of a mechanical device with control knobs and a downward arrow indicator (no text or symbols)Mutati stick-ul de acceleratie la cea mai joasa pozitie.
Pasul 2

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Technical line drawing of a mechanical device with dual motors and a central component (no text or symbols)Porniti controlorul.
Pasul 3

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Line drawing of a quadcopter drone with propellers and control arms (no text or symbols)natural_image
Top-down schematic of a vehicle's front and rear dashboard showing directional arrows and component layout (no text or labels)natural_image
Line drawing of a multi-rotor control device with no visible text or symbols6. CONTROLUL ZBORULUI
Zburand in sus/jos

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Diagram of a mechanical or structural component with an upward arrow and downward arrow indicating force or direction (no text or symbols present)Magyar
1. BIZTONÁSIG FIGYELMEZTETÉSEK
4. ELEMEK TÖLTÉSE

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Line drawing of a mechanical device with control panel and adjustment knob (no text or symbols)natural_image
Technical line drawing of a mechanical device with dual circular components and a central component (no text or symbols)natural_image
Pure electrical circuit lines without any symbolsnatural_image
Line drawing of a quadcopter drone with two propellers and a circular head (no text or symbols)natural_image
Top-down schematic of a vehicle's front and rear dashboard showing directional arrows and component layout (no text or labels)natural_image
Top-down line drawing of a remote control device with buttons and ports (no text or symbols)natural_image
Line drawing of a mechanical device with no visible text or symbols
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Diagram of a mechanical or structural component with an upward arrow and downward arrow indicating force or direction (no text or symbols present)Eesti
1. TURVALISUS
4. AKU LAADIMINE

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Line drawing of a mechanical device with control knobs and a downward arrow indicating a component (no text or symbols)natural_image
Technical line drawing of a mechanical device with no visible text or symbolsLülita kontroller sisse.
- samm

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Pure electrical circuit lines without any symbolsnatural_image
Line drawing of a quadcopter drone with propellers and control arms (no text or symbols)Aseta droon tasasele pinnale.
- samm

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Top-down schematic of a vehicle's front and rear dashboard showing directional arrows and component layout (no text or labels)natural_image
Line drawing of a multi-rotor control device with no visible text or symbols6. LENNU JUHTIMINE
Ules/alla lendamine

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Line drawing of a mechanical device with no visible text or symbols
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Diagram of a drone with two wings and a central body, showing upward and downward motion arrows (no text or symbols)Declaration of Conformity
Product details
For the following
Product: Drone
Model(s) : OV-X-Bee Drone 2.2
Declaration & Applicable standards
We, Overmax Polska Sp. z o.o. Sp. K., hereby declare under our sole responsibility that the of the above referenced product complies the following directives:
| R&TTE Directive | 1999/5/EC |
| EMC Directive | 2004/108/EC |
| Low Voltage Directive | 2006/95/EC |
| RoHS Directive | 2011/65/EU |

The following harmonized standards have been applied:
Safety and Health:
EN 62479: 2010
EN 60950-1: 2006+A11: 2009+A1: 2010+A12: 2011+A2: 2013
EMC:
EN 301 489-1 V 1.9.2 (2011-09)
EN 301 489-17 V 2.2.1 (2012-09)
RF Spectrum Efficiency:
EN 300 328 V1.8.1 (2012-06)
Representative
Overmax Polska Sp. z o.o. Sp. K.













