SOUTH INNO7 RTK GNSS Rover Base Set with IMU

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Description

Independent RTK surveying with a complete base and rover system

The SOUTH INNO7 RTK GNSS Rover Base Set is designed for surveyors, construction crews, civil engineers, GIS professionals and drone-mapping teams that need accurate positioning without depending entirely on a local correction network. One INNO7 receiver is established over a known or newly determined base point, while the second receiver is used as the mobile rover.

The base transmits correction data to the rover through the integrated UHF radio. This gives field teams control over their own RTK setup and makes the system particularly useful on remote sites, large construction projects, rural surveys and locations where mobile-data coverage or an NTRIP service is unavailable.

Complete equipment for base and rover fieldwork

The set includes the principal equipment required to operate a local RTK system: INNO7 base and rover receivers, a SOUTH H6 data collector, SurvStar surveying software, a survey pole, controller bracket, tripod, tribrach and adapter. The tripod and tribrach provide a stable base installation, while the pole-mounted rover and controller allow the operator to move efficiently between survey or stakeout points.

This integrated setup reduces the need to source major components separately and helps ensure that the receiver, controller, field software and mounting equipment are suitable for the same workflow.

Multi-constellation GNSS tracking

Each INNO7 receiver uses a 1,598-channel GNSS board that supports signals from GPS, GLONASS, Galileo, BeiDou, QZSS and supported augmentation systems. Tracking several constellations and frequencies increases the number of usable satellite observations and can improve positioning availability when parts of the sky are obstructed.

Under suitable conditions, the system is specified for RTK accuracy of 8 mm + 1 ppm horizontally and 15 mm + 1 ppm vertically. In practical fieldwork, this supports construction setting out, topographic surveys, utility mapping, earthwork checks, control surveys and accurate as-built measurements.

Fast 60° IMU tilt measurement

The integrated IMU allows the rover pole to be tilted by up to 60° while the receiver calculates the position of the pole tip. Initialization normally requires a short movement lasting approximately two to five seconds rather than a traditional manual calibration routine.

Tilt compensation is useful when measuring building corners, fence lines, trench edges, points beneath overhangs or locations blocked by vehicles and site equipment. Operators can reach the required point with the pole tip while keeping the receiver in a clearer position for satellite tracking.

FarLink UHF communication between base and rover

The INNO7 includes an internal UHF radio operating across 410–470 MHz, with selectable transmission power up to 3 W. SOUTH’s FarLink protocol is designed to transmit the larger correction-data volume produced by modern multi-constellation GNSS tracking while using less power than earlier radio workflows.

The manufacturer states a typical working range of up to 15 km using the internal radio. Actual range will depend on antenna height, terrain, buildings, vegetation, interference, radio settings and local frequency regulations. A base placed in a clear, elevated position will normally provide better coverage than one installed behind obstructions or low to the ground.

Flexible network RTK operation when required

Although the set is equipped for local base-and-rover work, the INNO7 can also operate through an NTRIP or CORS correction service using its cellular communications. This allows the rover to be used independently through a network on sites where coverage is available, while the second receiver remains available for projects that require a local base.

This flexibility is useful for companies that handle a mixture of short urban surveys and longer projects in remote areas. Teams can select the correction method that best suits the site rather than being restricted to one workflow.

SOUTH H6 controller and SurvStar software

The supplied SOUTH H6 data collector is used to configure the receivers, create projects, manage coordinate systems and record field measurements. Mounted on the survey pole with the included bracket, it gives the operator direct access to point information, mapping, coding and stakeout guidance.

SurvStar supports common GNSS survey tasks including point collection, linework, CAD-based stakeout, coordinate management, static observations and data export. These tools make the set suitable for simple construction positioning as well as more structured surveying and engineering workflows.

Touchscreen control and receiver status

Each receiver has a 1.54-inch colour touchscreen for checking operating information and changing common settings directly on the instrument. Operators can monitor satellite tracking, working mode, data links and receiver status without relying exclusively on the controller.

Bluetooth, Wi-Fi and NFC provide additional connection options for compatible controllers and mobile devices. The built-in web interface also supports receiver configuration and status checks through a browser connection.

Storage and operating endurance

The INNO7 includes 64 GB of internal solid-state storage for static observations and receiver data. Cyclic storage management can automatically remove older files when capacity becomes limited, helping prevent data collection from stopping unexpectedly during fieldwork.

The internal battery is specified for approximately 12 hours in rover mode and 10 hours in base mode under the manufacturer’s test conditions. Real operating time varies with radio output, mobile communications, temperature, screen activity and receiver configuration.

Rugged equipment for outdoor projects

The magnesium-alloy receiver housing carries an IP68 rating for resistance to dust and water ingress. The published specification also states resistance to a two-metre pole drop onto concrete under controlled test conditions. This construction is intended for regular use on active building sites, roads, agricultural land and infrastructure projects.

Applications for the SOUTH INNO7 Rover Base Set

The system is suitable for professionals who need to establish their own correction source and work across a defined project area.

  • Topographic, boundary and control surveying
  • Construction setting out and as-built checks
  • Road, bridge and civil-engineering measurement
  • Utility, pipeline and asset mapping
  • Ground control and checkpoints for drone mapping

Surveyors can use the set for detail collection and stakeout, while construction teams can position foundations, services, kerbs and structural elements from project coordinates. GIS crews can capture assets with centimetre-level positioning, and drone operators can establish accurate ground control points for photogrammetry.

Buying and support from Global GPS Systems

Global GPS Systems can help configure the SOUTH INNO7 Rover Base Set for the required radio frequencies, coordinate reference system and field workflow. Correct base coordinates, antenna heights, correction formats and project settings are essential for dependable RTK results.

Support with receiver configuration, SurvStar setup, radio communication, NTRIP connections and coordinate systems helps teams prepare the equipment for their region and application. The package can also be adjusted when a different controller, software platform or accessory configuration is required.

Datasheets & Manuals
Specifications

South INNO7 Rover and Base Set Specifications

System Overview

Manufacturer SOUTH Surveying & Mapping Technology Co., Ltd.
Product name South INNO7 Rover and Base Set
System type Complete dual-receiver multi-constellation RTK GNSS surveying system
Receiver roles One INNO7 configured as an RTK base station and one INNO7 configured as an RTK rover
Primary system components 2 South INNO7 GNSS receivers, South H6 rugged data collector, SurvStar field software, rover pole, data collector bracket, tripod, tribrach and tribrach adapter
Receiver operating system Linux
Controller operating system Android 8.1
Typical applications Land surveying, cadastral surveying, construction layout, engineering surveying, topographic mapping, control surveys, road and bridge surveying, utility mapping, pipeline surveying, earthworks and GIS data collection
Correction workflows Local UHF base-to-rover RTK, cellular NTRIP network RTK, Wi-Fi datalink, static GNSS and compatible PPK workflows
Key functions 1598-channel GNSS tracking, IMU tilt compensation up to 60°, dual RTK engine, integrated UHF transceiver, 5G-capable receiver modem, 64 GB receiver storage, touchscreen receiver interface and rugged Android field controller

Base and Rover Configuration

Function Base Receiver Rover Receiver
Primary role Generates and transmits RTK correction data from a known or configured reference position Receives correction data and calculates centimetre-level field positions
Typical mounting Tripod, tribrach and tribrach adapter Survey pole
Integrated UHF mode Transmit Receive
Cellular mode Can transmit corrections over a compatible cellular network Can receive NTRIP corrections over a compatible cellular network
IMU tilt surveying Available, but normally not required while mounted as a fixed base Supports tilt-compensated measurements up to 60°
Static logging Supported Supported
Radio router and repeater modes Supported Supported

GNSS Tracking

GNSS channels 1598 per receiver
GPS signals L1, L1C, L2C, L2P and L5
GLONASS signals L1 C/A, L1P, L2 C/A, L2P and L3
BeiDou BDS-2 signals B1I, B2I and B3I
BeiDou BDS-3 signals B1I, B3I, B1C, B2a and B2b where supported
Galileo signals E1, E5a, E5b, E6C and AltBOC where supported
SBAS L1 where supported; compatible with WAAS, MSAS, EGNOS and GAGAN
IRNSS / NavIC L5 where supported
QZSS L1, L2C and L5 where supported
MSS L-band Reserved; service and configuration dependent
Position output rate 1 Hz to 20 Hz
GNSS initialization time Less than 10 seconds
Initialization reliability Greater than 99.99%

Positioning Accuracy

Positioning mode Horizontal accuracy Vertical accuracy
Code differential GNSS 0.25 m + 1 ppm RMS 0.50 m + 1 ppm RMS
Static GNSS 2.5 mm + 0.5 ppm RMS 5 mm + 0.5 ppm RMS
Real-time kinematic, baseline under 30 km 8 mm + 1 ppm RMS 15 mm + 1 ppm RMS
SBAS Typically less than 5 m 3DRMS

RTK Performance and Survey Modes

RTK initialization time Typically 2 to 8 seconds
Maximum stated RTK baseline Less than 30 km for the specified RTK accuracy
Dual RTK engine Performs secondary coordinate checking and calculation to reduce false fixed solutions and improve coordinate reliability
Local base RTK Base receiver transmits corrections directly to the rover through the integrated UHF radio
Network RTK Supports VRS, FKP and MAC correction-network models
Network protocol NTRIP
Static surveying Supported with internal raw-observation logging for post-processing
PPK surveying Supported through compatible SurvStar and office-processing workflows
RTK XTRa Can maintain positioning for up to approximately 5 minutes following interruption of the primary correction link when the required service subscription and sufficient satellite coverage are available
BeiDou PPP capability Supports compatible BeiDou precise point-positioning corrections without a local base receiver or CORS connection where service coverage is available
Base calibration SurvStar supports base calibration on known and unknown points

IMU Tilt Compensation

IMU type Integrated inertial measurement unit in each receiver
Maximum tilt angle 60°
IMU initialization Approximately 2 to 5 seconds of receiver movement
Tilt compensation accuracy Additional horizontal pole-tip uncertainty typically less than 10 mm + 0.7 mm per degree of tilt up to 30°
Calibration Calibration-free during normal operation
Magnetic interference resistance IMU operation does not depend on a magnetic compass and is designed for use in magnetically disturbed environments
Stationary tilt retention Maintains the tilt solution for approximately 40 seconds while the receiver remains stationary
Electronic bubble Real-time pole-level indication through compatible controller software

Integrated UHF Radio

Radio type Integrated UHF transmit-and-receive radio in each receiver
Frequency range 410 to 470 MHz
Transmit power Selectable 1 W, 2 W or 3 W
Operating modes Transmit, receive, radio router and radio repeater
Supported radio protocols Far-link, TrimTalk 450S, SOUTH, HUACE, Hi-Target and Satel
Typical maximum radio range Approximately 15 km using Far-link under suitable line-of-sight and radio conditions
UHF antenna interface 1 dedicated UHF antenna connection per receiver

Cellular and Wireless Communications

Receiver cellular modem Integrated high-speed 5G-capable network communication module
Cellular compatibility Backward compatible with 4G and 3G networks; supported bands vary by regional modem configuration
Receiver SIM card Standard SIM card slot in each receiver
Cellular antenna interface 1 cellular/GPRS antenna connection per receiver with internal and external antenna selection
Automatic network connection Intelligent PPP dial-up function for automatic connection and reconnection
Receiver Bluetooth Bluetooth 4.0 and Bluetooth 2.1 + EDR
Receiver NFC Short-range automatic receiver-to-controller pairing at distances below approximately 10 cm when used with an NFC-compatible controller
Receiver Wi-Fi standard IEEE 802.11 b/g
Wi-Fi hotspot Each receiver can broadcast a hotspot for access to its web management interface
Wi-Fi datalink Supports transmission and reception of GNSS correction streams over Wi-Fi

Receiver Data Storage and Formats

Internal storage 64 GB solid-state storage per receiver
Cyclic storage Automatically removes the oldest files when available storage becomes insufficient
Estimated logging capacity Up to approximately four years at a 5-second sampling interval, depending on file type and logging configuration
External storage Supports external USB storage
Maximum configurable sampling rate Up to 50 Hz
USB data transfer Plug-and-play USB data transmission
Remote data download FTP and HTTP
Differential correction formats CMR+, SCMRx, RTCM 2.1, RTCM 2.3, RTCM 3.0, RTCM 3.1 and RTCM 3.2
Position output formats NMEA 0183, PJK plane coordinates, binary output and Trimble GSOF
Network correction support VRS, FKP and MAC with NTRIP protocol support

Receiver Ports and Interfaces

5-pin LEMO port External DC power input and RS-232 serial communication
7-pin LEMO port External USB OTG and Ethernet functions
UHF antenna port 1 per receiver
Cellular antenna port 1 per receiver
SIM interface 1 standard SIM card slot per receiver
Web management interface Receiver-status monitoring and configuration through Wi-Fi or USB
Secondary development Development package with OpenSIC observation-data format and interaction-interface definitions
Cloud services Remote management, firmware updates, online registration and related receiver-management functions

Receiver User Interface

Display 1.54-inch high-definition color LCD touchscreen
Display resolution 240 × 240 pixels
Physical buttons 2-button visual operating interface
LED indicators 2 LEDs for data interaction and Bluetooth status
Touchscreen functions Receiver configuration, operating-mode selection, status viewing and information browsing
Voice guidance Receiver-status and operation prompts
Voice languages Chinese, English, Korean, Spanish, Portuguese, Russian and Turkish

Receiver Sensors

Inertial sensor Integrated IMU for tilt-compensated pole measurements
Electronic bubble Supported through compatible field-controller software
Temperature sensor Integrated thermometer with intelligent receiver temperature monitoring and control

Receiver Power System

External power input 6 to 28 V DC with overvoltage protection
Typical power consumption 2 W per receiver
Battery type Rechargeable, removable lithium-ion battery
Battery voltage 7.4 V
Battery capacity 3400 mAh
Battery replacement Externally removable battery design

Receiver Battery Runtime

Operating mode Typical runtime Operating notes
Static mode Up to 16 hours Runtime under nominal operating conditions
Internal UHF base mode Up to 10 hours Runtime varies with radio output power and transmission duty cycle
Rover mode Up to 12 hours Runtime varies with cellular, Bluetooth, Wi-Fi, display and logging use

Receiver Physical Specifications

Dimensions 153 mm diameter × 106 mm height per receiver
Weight Approximately 1.2 kg per receiver including battery
Housing material Magnesium-aluminium alloy shell
Base mounting Tripod and tribrach mounting using the supplied or compatible adapter
Rover mounting Survey-pole mounting

Receiver Environmental Specifications

Ingress protection IP68
Water protection Protected against prolonged immersion at a depth of up to 1 m under the manufacturer’s stated test conditions
Dust protection Fully protected against blowing dust under the stated IP68 test conditions
Drop resistance Designed to withstand a natural 2 m survey-pole drop onto concrete
Operating temperature -25°C to +65°C
Storage temperature -35°C to +80°C
Humidity 100% non-condensing

South H6 Data Collector

Controller model South H6
Controller type Rugged Android field data collector
Operating system Android 8.1
Internal storage 64 GB
Display size 5 inches
Display type Sunlight-readable capacitive touchscreen
Keypad Full physical keypad for field data entry
Cellular modem 4G
SIM configuration Dual SIM card slots
Bluetooth Bluetooth 4.1
Wi-Fi Supported; typical wireless range up to approximately 30 m under suitable conditions
NFC Integrated
Integrated sensors Gyroscope, electronic compass and NFC
Battery capacity 9200 mAh
Ingress protection IP67
Drop resistance Up to 1.5 m

SurvStar Field Software

Software type Android field surveying and data-collection software
Project management Create, open, import, export and manage survey projects and project data
Coordinate systems Supports ellipsoids, projections, seven-parameter and four-parameter transformations, height fitting, vertical adjustments, local offsets, grid files and geoid files
Supported geoid and grid files Compatible workflows include GSB plane grid files and SGF or GGF geoid files
Base setup modes Internal UHF, cellular network and external radio
Rover setup modes No datalink, internal UHF, external radio, Bluetooth datalink and receiver network
Survey functions Point survey, detail survey, GIS survey, elevation control and PPK survey
Stakeout functions Point stakeout and line stakeout
CAD functions Field CAD viewing and supported CAD-based survey and stakeout workflows
Localization Supported
Coordinate conversion Coordinate and angle conversion tools
Area tools Perimeter and area calculation
COGO functions Coordinate inverse, offset distance and angle, slope distance, angle calculation, intersection, resection, forward intersection, coordinate traverse, offset point, equal line division and circle-center calculation
File sharing FTP sharing and local file-sharing functions
Post-processing support PPK data collection and post-process point functions

Rover and Base Set Package Contents

Item Quantity Notes
South INNO7 RTK GNSS receiver 2 One receiver for base operation and one receiver for rover operation
South H6 data collector 1 Rugged Android field controller with touchscreen and physical keypad
SurvStar field software 1 license License type, activation method and included modules may vary by supplied configuration
Rover survey pole 1 For mounting the rover receiver
Data collector bracket 1 Mounts the South H6 controller to the rover pole
Survey tripod 1 For stable base-station setup
Tribrach 1 For centring and levelling the base receiver
Tribrach adapter 1 Connects the base receiver to the tribrach
Receiver batteries Configuration dependent 7.4 V, 3400 mAh removable lithium-ion batteries
Receiver battery charger Configuration dependent Charging arrangement and power plug vary by destination region
UHF antennas Configuration dependent Frequency and antenna length vary according to regional radio configuration
Cellular antennas Configuration dependent For receiver cellular-network operation
Receiver communication and data cables Configuration dependent May include LEMO, USB and OTG cables
Controller charger and cable Configuration dependent For charging the South H6 data collector
Transport cases Configuration dependent Protective case arrangement may vary by supplied set

Operating Requirements and Performance Conditions

Local base requirement The base receiver must be installed over a suitable reference point or configured with an appropriate base position before transmitting corrections
UHF operating conditions Radio range depends on antenna height, terrain, obstructions, interference, transmit power, selected protocol and local radio regulations
Network RTK requirement A compatible NTRIP correction service, SIM card, data plan and local cellular coverage are required for network RTK operation
Accuracy conditions Positioning accuracy depends on atmospheric conditions, signal multipath, obstructions, observation time, temperature, satellite geometry, correction quality, baseline length and the number of tracked satellites
Satellite correction services RTK XTRa, precise point positioning and related satellite correction functions may require separate subscriptions and regional service availability
Radio licensing Use of the integrated UHF transmitters is subject to applicable national frequency, power and licensing regulations

Specifications and package contents may vary by configuration, region or manufacturer update. Always check the current configuration before ordering.

FAQ

South INNO7 Rover and Base Set FAQ

Set Overview and Applications

What is the South INNO7 Rover and Base Set?

The South INNO7 Rover and Base Set is a complete professional RTK GNSS solution with two South INNO7 receivers. One receiver can be configured as a fixed base station while the second is used as a mobile rover for centimetre-level surveying and stakeout.

Who is the South INNO7 Rover and Base Set designed for?

The set is designed for land surveyors, construction teams, civil engineers, utility contractors, mapping professionals and infrastructure companies that need to establish and manage their own RTK correction link.

What types of work can be completed with this GNSS set?

Typical applications include topographic surveying, cadastral measurement, construction layout, point stakeout, road and bridge surveying, earthworks, utility mapping, engineering surveys, control-point establishment and GIS data collection.

Why choose a rover and base set instead of a rover-only set?

A rover and base set allows users to generate their own RTK corrections without relying entirely on a commercial correction network. This is useful in remote areas, on large construction sites and in regions where mobile coverage or NTRIP services are unavailable or unreliable.

Can both INNO7 receivers be used interchangeably?

Yes. Both receivers support base and rover operation. Their roles can be changed in the receiver or field-software settings, allowing either unit to transmit or receive RTK corrections.

Can the rover also connect to an NTRIP or CORS network?

Yes. The rover can receive corrections from a compatible NTRIP or CORS network through its mobile internet connection. This lets users choose between the included local base station and a network RTK service.

Accuracy, Satellites and IMU Tilt

What accuracy can the South INNO7 Rover and Base Set achieve?

Under suitable RTK conditions, the published real-time accuracy is 8 mm + 1 ppm horizontally and 15 mm + 1 ppm vertically. Actual accuracy depends on correction quality, base-to-rover distance, satellite geometry, multipath, obstructions and correct field procedures.

Which satellite constellations does the South INNO7 support?

The INNO7 tracks multiple frequencies from GPS, GLONASS, Galileo and BeiDou. Depending on the selected receiver configuration, additional regional and satellite-based augmentation signals may also be supported.

What is the difference between the 336-channel and 1598-channel versions?

The versions use different GNSS boards and channel configurations. The 1598-channel version can track a broader range of satellite signals, while both versions are suitable for professional RTK work. Regional signal availability and project requirements should be considered when selecting a version.

Does the South INNO7 rover include IMU tilt compensation?

Yes. The receiver has an integrated IMU that compensates for a survey-pole tilt of up to 60 degrees, allowing the rover to calculate the position of the pole tip without requiring the pole to remain perfectly vertical.

When is IMU tilt compensation useful?

Tilt compensation is useful when measuring beside walls, underneath obstacles, near trenches, at building corners, along fences or on uneven ground where vertically positioning the survey pole is difficult.

Does the INNO7 IMU require manual calibration?

The INNO7 uses a calibration-free IMU. It normally initializes after moving or shaking the receiver for approximately 2 to 5 seconds and is designed to remain effective in environments with magnetic interference.

Base-to-Rover Communication and Field Operation

How does the INNO7 base send corrections to the rover?

The base receiver can transmit RTK correction data through its internal 410–470 MHz UHF radio. The rover receives these corrections through its own internal radio and uses them to calculate an accurate fixed position.

What is the maximum base-to-rover radio range?

The manufacturer states a typical range of up to 15 km when using the FarLink protocol under suitable conditions. The practical range depends on terrain, line of sight, antenna height, interference, radio settings and local regulations.

Which UHF radio protocols are supported?

The INNO7 supports several radio protocols, including FarLink, TrimTalk450S, SOUTH, SOUTH+, SOUTHx, HUACE, Hi-Target and Satel. The selected protocol and frequency settings must match between the base and rover.

Can the set work where there is no mobile coverage?

Yes. A local base-to-rover UHF radio link does not require mobile internet coverage. The base and rover must have suitable satellite visibility and remain within the effective radio range.

Does the South INNO7 support 5G connectivity?

Yes. The INNO7 supports 5G mobile communication, with compatibility depending on the receiver configuration, local mobile networks, supported frequency bands and the SIM card being used.

Can the receivers connect through Bluetooth, Wi-Fi and NFC?

Yes. The INNO7 supports Bluetooth, Wi-Fi and NFC. These connections can be used for controller communication, receiver configuration, web-interface access, data transfer and simplified device pairing.

Controller, Accessories and Durability

What equipment is included in the South INNO7 Rover and Base Set?

The set includes two South INNO7 GNSS receivers, a South H6 data collector, SurvStar surveying software, a survey pole, a data collector bracket, a tripod, a tribrach and a tribrach adapter. Receiver antennas, charging equipment, communication cables and transport cases are supplied according to the selected package configuration.

Which field controller is included?

The standard package includes a South H6 data collector. It is used to configure the base and rover, create survey projects, select coordinate systems, collect points, perform stakeout and manage field data.

Which surveying software is supplied with the set?

The package includes SurvStar field surveying software. It supports common GNSS workflows such as base and rover configuration, point measurement, line and point stakeout, coordinate-system setup, coding and survey-data import or export.

Can a different controller or surveying application be used?

Compatible controllers, tablets and surveying applications may be used instead of the standard configuration. Receiver communication, supported correction formats, coordinate-system tools and data-export requirements should be checked before changing the controller or software.

How much internal storage does each INNO7 receiver have?

Each receiver has 64 GB of internal solid-state storage. Automatic cyclic storage can remove the oldest files when additional space is required, helping support long-term static and field-data recording.

Is the South INNO7 suitable for demanding outdoor conditions?

Yes. The INNO7 is designed for professional outdoor surveying, with an IP68 dust and water resistance rating and published resistance to a natural 2-metre pole drop onto concrete. Ports, covers and seals must be properly closed to maintain environmental protection.

How long can the receivers operate in the field?

Published operating time is up to approximately 12 hours in rover mode and 10 hours when working as an internal-UHF base. Actual runtime varies with radio power, mobile connectivity, display use, temperature, battery condition and receiver settings.

Reviews (2)

2 reviews for SOUTH INNO7 RTK GNSS Rover Base Set with IMU

5.0
Based on 2 reviews
5 star
100
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4 star
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0%
2 star
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  1. Jonathan Bosci (verified owner)

    Verified reviewVerified review - view originalExternal link

    Easy to configure

    (3) (0)
  2. Anonymous (verified owner)

    Verified reviewVerified review - view originalExternal link

    Great equipment

    (0) (0)

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Fast response Expert configuration advice No overpaying for features you do not need
Why choose Global GPS Systems?
European support & worldwide delivery
Worldwide shipping from the Netherlands
100% insured shipping against loss or damage
Import, export, tax and duties support
Expert support from product specialists
Buyer protection and warranty included
Speak with a specialist +31 035 205 7939
Global GPS Systems
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4.74 store rating (580 reviews) | 4.68 product rating
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