NEO-6M GPS Module with EPROM – Normal Quality

SKU: aa0168
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250,00 EGP
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Description

Overview of NEO-6M GPS Module. The heart of the module is a NEO-6M GPS chip from u-blox. It can track up to 22 satellites on 50 channels and achieves the industry’s highest level of sensitivity i.e. -161 dB tracking, while consuming only 45mA supply current

The NEO-6M GPS module is a well-performing complete GPS receiver with a built-in 25 x 25 x 4mm ceramic antenna, which provides a strong satellite search capability. With the power and signal indicators, you can monitor the status of the module. Thanks to the data backup battery, the module can save the data when the main power is shut down accidentally. Its 3mm mounting holes can ensure easy assembly on your aircraft, which thus can fly steadily at a fixed position, return to Home automatically, and automatic waypoint flying, etc. Or you can apply it on your smart robot car for automatic returning or be heading to a certain destination, making it a real “smart” bot! Features/Specs: 1. The default baud rate: 9600 2. Mounting Hole 3mm 3. Module size 23mm x 30mm 4. Antenna size 12 x 12mm 5. Cable:20mm Note: Product Images are shown for illustrative purposes only and may differ from actual product  NEO-6M GPS Module with EPROM

This article demonstrates how to play with the u-blox NEO-6M global positioning system (GPS) module, a very popular, cost-effective, high-performance GPS module with a ceramic patch antenna, an on-board memory chip, and a backup battery that can be conveniently integrated with a broad range of microcontrollers. Nowadays, two NEO-6M GPS modules are extremely popular — the GY-GPS6MV2 and the GY-GPSV3-NEO

As indicated, the GPS modules are based on the u-blox NEO-6M GPS engine. The type number of the NEO-6M is NEO-6M-0-001, and its ROM/FLASH version is ROM 7.0.3 (PCN reference UBX-TN-11047-1). The NEO-6M module includes one configurable UART interface for serial communication, but the default UART (TTL) baud rate here is 9,600. Because the GPS signal is right-hand circular-polarized (RHCP), the style of the GPS antenna will be different from the common whip antennas used for linear polarized signals. The most popular antenna type is the patch antenna. Patch antennas are flat, generally have a ceramic and metal body, and are mounted on a metal base plate. They are often cast in a housing. For more information about u-blox reference designs, see their website. Remember, the position of the antenna mounting is very crucial for optimal performance of the GPS receiver. When using the patch antenna, it should be oriented parallel to the geographic horizon. The antenna must have full view of the sky, ensuring a direct line of sight with as many visible satellites as possible

If you are wandering to navigate the distance with a drone then this GPS Module is needed for you. GPS drones are equipped with a GPS module that allows them to know their location relative to a network of orbiting satellites. Connecting to signals from these satellites allows the drone to perform functions such as position hold, autonomous flight, return to home, and waypoint navigation.

This is a complete GPS module that is based on the NEO 6M GPS. This unit uses the latest technology to give the best possible positioning information and includes a larger built-in 25 x 25mm active GPS antenna with a UART TTL socket. A battery is also included so that you can obtain a GPS lock faster. This is an updated GPS module that can be used with ardupilot mega v2. This GPS module gives the best possible position information, allowing for better performance with your Ardupilot or other Multirotor control platform.

The GPS module has serial TTL output, it has four pins: TX, RX, VCC, and GND. You can download the u-center software for configuring the GPS and changing the settings and much more. It is really good software (see link below).

 NOTE:  

NEO-6M GPS Module is not compatible with APM 2.8 Flight Controller

To Explore more GPS modules, Click here

Interfacing NEO-6M with Arduino:

 


Features:

  1. 5Hz position update rate
  2. Operating temperature range: -40 TO 85°CUART TTL socket
  3. EEPROM to save configuration settings
  4. Rechargeable battery for Backup
  5. The cold start time of 38 s and Hot start time of 1 s
  6. Supply voltage: 3.3 V
  7. Configurable from 4800 Baud to 115200 Baud rates. (default 9600)
  8. Super Sense  Indoor GPS: -162 dBm tracking sensitivity
  9. Support SBAS (WAAS, EGNOS, MSAS, GAGAN)
  10. Separated 18X18mm GPS antenna

Packages Includes:

1 x NEO-6M GPS Module with EPROM

Additional information

Weight 0,0000 g

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NameNEO-6M GPS Module with EPROM – Normal Quality removeL293D Motor Driver/Servo Shield for Arduino removeTCS3200 Color Sensor Module removeMobile Repair Metal Tool Set PO-06 removeM&R Soldering Iron 40W removeTEFLON TUBE PIPE FOR V5 V6 J-HEAD HOTEND BOWDEN EXTRUDER 1.75MM FILAMENT remove
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Description
Content

Overview of NEO-6M GPS Module. The heart of the module is a NEO-6M GPS chip from u-blox. It can track up to 22 satellites on 50 channels and achieves the industry’s highest level of sensitivity i.e. -161 dB tracking, while consuming only 45mA supply current

The NEO-6M GPS module is a well-performing complete GPS receiver with a built-in 25 x 25 x 4mm ceramic antenna, which provides a strong satellite search capability. With the power and signal indicators, you can monitor the status of the module. Thanks to the data backup battery, the module can save the data when the main power is shut down accidentally. Its 3mm mounting holes can ensure easy assembly on your aircraft, which thus can fly steadily at a fixed position, return to Home automatically, and automatic waypoint flying, etc. Or you can apply it on your smart robot car for automatic returning or be heading to a certain destination, making it a real “smart” bot! Features/Specs: 1. The default baud rate: 9600 2. Mounting Hole 3mm 3. Module size 23mm x 30mm 4. Antenna size 12 x 12mm 5. Cable:20mm Note: Product Images are shown for illustrative purposes only and may differ from actual product  NEO-6M GPS Module with EPROM

This article demonstrates how to play with the u-blox NEO-6M global positioning system (GPS) module, a very popular, cost-effective, high-performance GPS module with a ceramic patch antenna, an on-board memory chip, and a backup battery that can be conveniently integrated with a broad range of microcontrollers. Nowadays, two NEO-6M GPS modules are extremely popular — the GY-GPS6MV2 and the GY-GPSV3-NEO

As indicated, the GPS modules are based on the u-blox NEO-6M GPS engine. The type number of the NEO-6M is NEO-6M-0-001, and its ROM/FLASH version is ROM 7.0.3 (PCN reference UBX-TN-11047-1). The NEO-6M module includes one configurable UART interface for serial communication, but the default UART (TTL) baud rate here is 9,600. Because the GPS signal is right-hand circular-polarized (RHCP), the style of the GPS antenna will be different from the common whip antennas used for linear polarized signals. The most popular antenna type is the patch antenna. Patch antennas are flat, generally have a ceramic and metal body, and are mounted on a metal base plate. They are often cast in a housing. For more information about u-blox reference designs, see their website. Remember, the position of the antenna mounting is very crucial for optimal performance of the GPS receiver. When using the patch antenna, it should be oriented parallel to the geographic horizon. The antenna must have full view of the sky, ensuring a direct line of sight with as many visible satellites as possible

If you are wandering to navigate the distance with a drone then this GPS Module is needed for you. GPS drones are equipped with a GPS module that allows them to know their location relative to a network of orbiting satellites. Connecting to signals from these satellites allows the drone to perform functions such as position hold, autonomous flight, return to home, and waypoint navigation.

This is a complete GPS module that is based on the NEO 6M GPS. This unit uses the latest technology to give the best possible positioning information and includes a larger built-in 25 x 25mm active GPS antenna with a UART TTL socket. A battery is also included so that you can obtain a GPS lock faster. This is an updated GPS module that can be used with ardupilot mega v2. This GPS module gives the best possible position information, allowing for better performance with your Ardupilot or other Multirotor control platform.

The GPS module has serial TTL output, it has four pins: TX, RX, VCC, and GND. You can download the u-center software for configuring the GPS and changing the settings and much more. It is really good software (see link below).

 NOTE:  

NEO-6M GPS Module is not compatible with APM 2.8 Flight Controller

To Explore more GPS modules, Click here

Interfacing NEO-6M with Arduino:

 


Features:

  1. 5Hz position update rate
  2. Operating temperature range: -40 TO 85°CUART TTL socket
  3. EEPROM to save configuration settings
  4. Rechargeable battery for Backup
  5. The cold start time of 38 s and Hot start time of 1 s
  6. Supply voltage: 3.3 V
  7. Configurable from 4800 Baud to 115200 Baud rates. (default 9600)
  8. Super Sense  Indoor GPS: -162 dBm tracking sensitivity
  9. Support SBAS (WAAS, EGNOS, MSAS, GAGAN)
  10. Separated 18X18mm GPS antenna

Packages Includes:

1 x NEO-6M GPS Module with EPROM

The L293D Motor Driver/Servo Shield for Arduino is probably one of the most versatile on the market and features 2 servo and 4 motor connectors for DC or stepper motors. That makes it a great shield for any robotic project.

This Arduino compatible motor Driver shield is a full-featured product that it can be used to drive 4 DC motor or two 4-wire steppers and two 5v servos. It drives the DC motor and stepper with the L293D, and it drives the servo with Arduino pin9 and pin10.

The shield contains two L293D motor drivers and one 74HC595 shift register. The shift register expands 3 pins of the Arduino to 8 pins to control the direction of the motor drivers. The output enables the L293D is directly connected to the PWM outputs of the Arduino.

Firmware
  1. Arduino Stepper/Servo software library with microstepping support.
    To install, click on Download in the top right corner, select zip and uncompress the folder.
    Rename the folder to AF-motor (check that the renamed folder contains the .cpp and .h files) and install it into the Arduino sketches/libraries folder. For information on how to use and install libraries, see our tutorial! This version now works with the Mega. Public domain!
  2. AccelStepper library with AFMotor support. This library allows for advanced stepper control including acceleration and deceleration, and concurrent stepper control!
    To install, click on Download in the top right corner, select zip and uncompress the folder.
    Rename the folder to AF-motor (check that the renamed folder contains the .cpp and .h files) and install it into the Arduino sketches/libraries folder.
Note:

Power for the motors can be supplied from the Arduino boards DC Jack (normally 9V) or from the 2-pin EXT-PWR terminal block. If you are supplying power from the EXT_PWR terminal block you should remove the PWR jumper or you could damage the shield and the Arduino board.

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Features :

  1. 2 connections for 5V ‘hobby’ servos connected to the Arduino’s high-resolution dedicated timer
  2. 4 H-Bridges: L293D chipset provides 0.6A per bridge (1.2A peak) with thermal shutdown protection, internal kickback protection diodes. Can run motors on 4.5VDC to 25VDC.
  3. Up to 4 bi-directional DC motors with individual 8-bit speed selection (so, about 0.5% resolution)
  4. Up to 2 stepper motors (unipolar or bipolar) with single coil, double coil, or interleaved stepping.
  5. Pull-down resistors keep motors disabled during power-up
  6. Big terminal block connectors to easily hook up wires (18-26AWG) and power
  7. Arduino reset button brought up top
  8. 2-pin terminal block and jumper to connect external power, for separate logic/motor supplies
  9. Tested compatible with Arduino Mega 1280 & 2560, Diecimila, Duemilanove, and UNO
  10. Download the easy-to-use Arduino software library, check out the examples and you’re ready to go!

Package Includes :

1 x L293D Motor Driver/Servo Shield for Arduino

GY-31 Color Sensor Module is made using IC TCS3200, a programmable color light to a frequency converter. It has configurable silicon photodiodes and a current to frequency converter in a single monolithic CMOS Integrated Circuit. Its output is a square wave having a 50% duty cycle with frequency directly proportional to irradiance (light intensity). This module can be directly interfaced with Microcontrollers, Arduino Boards, Raspberry Pi, etc.

Note: This Product is available in two different variants (GY-31 and HW-531) with the same working we will ship it randomly.


Features:

  1. High-Resolution Conversion of Light Intensity to Frequency
  2. Programmable Color and Full-Scale Output Frequency
  3. Power Down Feature
  4. Stable Temperature Coefficient
  5. Can be directly interfaced with a Microcontroller

Package Includes:

1 x GY-31 TCS3200 Color Sensor Module

Weight0.00000.00000.00000.00000.00000.0000
DimensionsN/AN/AN/AN/AN/AN/A
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Weight 0,0000 g
Weight 0,0000 g
Weight 0,0000 g
Weight 0,0000 g
Weight 0,0000 g
Weight 0,0000 g
NEO-6M GPS Module with EPROM – Normal Quality 250,00 EGP
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