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DJI NAZA-M + GPS LITE MULTIROTOR CONTROL

  • $99,99

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All-in-One Design

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Size and Weight

spec

Basic Performance

Supported Multi-Rotor
Quad-rotor I4, X4 / Hex-rotor I6, X6, IY6, Y6
Supported ESC Output
400Hz refresh frequency
Recommended Transmitter
PCM or 2.4GHz with minimum 4 channels
Working Voltage Range
MC:4.8V~5.5V
VU: 7.2V ~ 26.0 V (recommend 2S ~ 6S LiPo)
Power Consumption
MAX:1. 5W (0.3A@5V)
Normal:0.6W (0.12A@5V)
Operating Temperature
-10°C ~ 50°C
Assistant Software System Requirement
Windows XP sp3 / Windows 7 / Windows 8

Flight Performance

Hovering Accuracy(GPS Mode)
Vertical:±0.8m
Horizontal:±2.5m
Max Yaw Angular Velocity
200°/s
Max Tilt Angle
45°
Ascent / Descent
±6m/s

Hardware

Weight
MC:25g
VU:20g
GPS:21.3g
Dimensions
MC: 45.5mm x 31.5mm x 18.5mm
VU: 32.2mm x 21.1mm x 7.7mm
GPS & Compass 46mm(diameter)x9mm
Built-In Functions
Three Modes Autopilot
Enhanced Fail-safe
Low Voltage Protection
S-Bus Receiver Support
2-axle Gimbal Support

For entry-level enthusiasts, DJI now brings out the most cost-effective solution, the NAZA-M Lite flight control system. As the simplified version of NAZA-M, it inherits the high reliability and stability of NAZA-M. The innovative All-in-one design simplifies installation and saves space and weight. It contains inner damping, controllers, 3-axis gyroscope, 3-axis accelerometer and barometer in its light and small Main Controller. It can measure flying altitude, attitude and therefore can be used for autopilot/automatic control.

All-in-One Design

Advanced attitude stabilize Algorithm

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The advanced attitude stabilization algorithm not only inherits the outstanding flight stability of DJI products, but also provides excellent maneuverability. It is more flexible and stable, and gives the hobbyists a wonderful flight experience.

Advanced attitude stabilize Algorithm

Multiple flight control mode/intelligent switching

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It offers three types of control modes: GPS Atti. Mode (with GPS module), Atti. Mode, Manual Mode. The pilot can switch between the three modes to achieve different flight characteristics. It also can adjust automatically within the flight environment and intelligently switch between GPS Atti. Mode and Atti. Mode to make sure the flight is safe and secure. .

Multiple flight control mode/intelligent switching

GPS Module Available/Accurate Position hold

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The plug and play GPS module will greatly enhance the performance for Aerial Photography with accurate Position Hold, Return-To-Home and Intelligent Orientation Control functionalities. With the GPS Module, the multi-rotor will have position and altitude locked accurately even in windy conditions. Hovering accuracy is approximately 2.5m horizontal and 0.8m vertical.

GPS Module Available/Accurate Position hold

Intelligent Orientation Control (IOC)

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Usually, the forward direction of a flying multi-rotor is the same as the nose direction. By using Intelligent Orientation Control (IOC), wherever the nose points,the forward direction has nothing to do with nose direction:

In course lock flying, the forward direction is the same as a recorded nose direction. See the following figures(Mode 1):

In home lock flying, the forward direction is the same as the direction from home point to multi-rotor.See the following figures (Mode 2):

Intelligent Orientation Control (IOC)

Failsafe mode

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If your transmitter supports failsafe, then you can set failsafe through port-U. Naza controller has built-in auto level failsafe function, which means when the communication between MC and the transmitter is disconnected, the outputs of all command sticks from controller will go to center position. If the GPS module is used, you can also set RTH on failsafe. If your transmitter has only 4 channels, then MC will work in Atti. Mode by default without the failsafe function.

Failsafe mode

Low voltage protection

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In order to prevent your multi-rotor from crashing or other harmful consequences caused by low battery voltage, we have designed two levels of low voltage protection. You can choose not to use this, however we strongly recommend you to enable the protection. Both levels of protection have LED warning as default. The first level will blink the red light continuously; the second level will blink red light continuously and the multi-rotor will descend and land. In manual mode when low voltage protection is triggered the LED warning will be active only.

Low voltage protection

Motor Arm and Motor Dis-arm

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There are four ways to start the motors, see the following picture:

When you want to start the multi-rotor, you need to perform any of the ways of CSC. During the flight, if the motors stop, you can immediately execute the CSC and the motors will start. This enhances the safety of the multi-rotor; no uncontrolled starting of the motors.

Motor Disarm: There are two modes of Motor Disarm: namely Intelligent Mode and Immediate Mode. For more information, please refer to the user manual or DJI Wiki.

Motor Arm and Motor Dis-arm

Support Futaba S-Bus and PPM receiver

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Minimum Four channel receiver supported, also PPM and Futaba S-Bus receiver supported.
PPM & S-Bus receivers (the general use of the first 8 channels of S-Bus receiver) to optimize the channel connection, the A, E, T, R, U five-channel functions are set using channel X2, use only one servo cable to connect the PPM or S-Bus to X2, this makes installation quick and easy, not easy to make mistakes.

Support Futaba S-Bus and PPM receiver

Supported multi-rotor types

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Naza-M Lite now supports six types of multi-rotor, which meets the different needs of the enthusiasts.
Quad I, Quad X;
Hexa I, Hexa V, Hexa Y, Hexa IY;

Supported multi-rotor types

Built-in Gimbal stabilization function

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The gimbal stabilization module is compatible with almost all 2-axis gimbal systems. The system will adjust the gimbal and camera according to the attitude of the aircraft after setting the parameters the first time.

Built-in Gimbal stabilization function

Remote adjustment

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The default parameter settings are OK for you to achieve a normal flight, and it also supports remote parameter adjustment by using a control slider on the TX during flight, in order to obtain better performance.

Remote adjustment

 

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