Maverik Centrik Fleet Key Features Reviewed for ProfessionalsMaverik Centrik Fleet Key Features Reviewed for Professionals
Centrik’s Advanced Sensor Inputs and Connectivity Options
One of the standout features of the Maverik Centrik is its ability to integrate an extensive array of third-party sensors through multiple wired and wireless interfaces. This enables the Centrik receiver to collect critical positional, environmental, machine performance, and other operational data for logging and analysis by the Maverik Fleet software platform.
For example, the Centrik provides serial, CAN, and Ethernet connectivity to seamlessly connect devices such as LiDAR sensors, IMUs, thermal cameras, and machine control units. The receiver includes built-in support for major industrial communication protocols like CANopen and Modbus, eliminating the need for external converters. Bluetooth and Wi-Fi allow local wireless sensors to link to the Centrik, while integrated 4G/LTE enables remote data transmission.
A key advantage of the Centrik is the ability to directly integrate MAVsense smart sensors using the dedicated MAVsense ports. These self-identifying ‘plug-and-play’ sensors automatically configure themselves when connected to the receiver, saving setup time. MAVsense options include tilt sensors, gyros, accelerometers and environmental sensors for temperature, humidity and more.
For even greater flexibility, the Centrik provides a programmable Xsense interface to allow connection of virtually any sensor or device, even custom-designed ones. Using the XCL code library, sensors can be quickly integrated and data feeds customized as needed for a particular application.
With its robust connectivity options, the Maverik Centrik receiver serves as a central hub for capturing and synchronizing positional data from GNSS and RTK sources with sensor measurements. This enables Centrik-based solutions to deliver rich, integrated datasets to the Fleet platform for automated reporting, visualization and analytics.
Powerful Data Logging Abilities of Maverik Fleet
The Maverik Fleet software platform has robust data logging and management capabilities to capture and organize the flood of data from Centrik receiver deployments. Fleet is designed to handle terabytes of incoming raw sensor measurements, position logs, video streams, and more from any number of connected devices.
At the core of Fleet is a high performance SQL database that securely archives the time-series data collected by Centrik receivers. Database indexes and schemas are optimized for efficient storage and querying of IoT device information. Incoming data is automatically associated with the specific sensors, vehicles, workers, projects, and other metadata tags configured in Fleet.
This enables powerful contextual filtering, segmentation, and analytics of the data lake based on equipment IDs, sensor names, data types, timestamps, geofences, and other attributes. For example, vibration data could be filtered to analyze a specific pump’s performance over a defined time period within a work zone polygon.
Fleet provides flexible tools to customize data retention policies across the system. Raw data can be stored at maximum resolution while summary metrics are retained long-term. All data is encrypted both in transit and at rest. Access controls let admins restrict data visibility across users and organizations.
Overall, Maverik Fleet offers robust, enterprise-grade capabilities for ingesting, organizing, securing, and contextualizing massive volumes of heterogeneous sensor data from Centrik receiver deployments. This provides the foundation for advanced analytics and business intelligence.
Precision GNSS and RTK Performance of Maverik Centrik
Delivering high-accuracy positioning is the primary function of the Maverik Centrik multi-constellation GNSS receiver. To provide precise location data, the Centrik leverages a high-sensitivity quad-band antenna and advanced RTK capabilities.
For standard GNSS operation, the Centrik receiver tracks all major global navigation satellites including GPS, GLONASS, Galileo, and BeiDou. The quad-band antenna enables reception of signals from all constellations on L1, L2, and L5 frequencies to enhance availability and redundancy. This multiconstellation GNSS support improves positioning accuracy and uptime in challenging environments.
Where centimeter-level real-time accuracy is required, the Centrik can generate RTK corrections through an integrated UHF radio or cellular modem. Using correction data streamed from the local base station, the rover Centrik receivers can achieve horizontal accuracy of 1-2 centimeters RMS in optimal conditions.
For situations where satellite visibility is limited by obstructions, the Centrik supports RTK over cellular for wide-area RTK corrections without local base stations. This allows roving vehicles to achieve high precision positioning even in urban canyons or forested areas.
Dual hot-swappable batteries ensure the Centrik can operate reliably for extended missions, while the IP67 rugged housing withstands harsh environments. For high-dynamic applications, the Centrik employs algorithms to maintain lock through acceleration and interference.
With its robust multiconstellation GNSS, flexible RTK options, and sophisticated tracking algorithms, the Maverik Centrik receiver delivers reliable, survey-grade position accuracy for critical applications.
Efficiency Gains from Maverik Fleet Software
- Serial ports
- CAN bus
- Ethernet
- Bluetooth
- Wi-Fi
- 4G/LTE
This diverse array of interfaces enables seamless integration with a multitude of devices, including:
- LiDAR sensors
- Inertial Measurement Units (IMUs)
- Thermal cameras
- Machine control units
The Centrik’s built-in support for major industrial communication protocols like CANopen and Modbus eliminates the need for external converters, streamlining the integration process. How does this benefit professionals in the field?
MAVsense: Plug-and-Play Sensor Integration
One of the Centrik’s standout features is its dedicated MAVsense ports. These ports allow for the direct integration of MAVsense smart sensors, which offer a significant advantage: they’re self-identifying and automatically configure when connected to the receiver. This ‘plug-and-play’ functionality saves valuable setup time and reduces the potential for configuration errors.
The range of MAVsense options includes:
- Tilt sensors
- Gyroscopes
- Accelerometers
- Environmental sensors (temperature, humidity, etc.)
Xsense: Ultimate Flexibility in Sensor Integration
For scenarios requiring even greater flexibility, the Centrik offers the programmable Xsense interface. This feature allows for the connection of virtually any sensor or device, including custom-designed ones. The XCL code library facilitates quick integration and customization of data feeds, tailoring the system to specific application needs.
By serving as a central hub for capturing and synchronizing GNSS and RTK positional data with various sensor measurements, the Maverik Centrik receiver enables the creation of rich, integrated datasets. These datasets are then seamlessly delivered to the Fleet platform for automated reporting, visualization, and analytics.
Maverik Fleet: Robust Data Logging and Management
The Maverik Fleet software platform is designed to handle the immense volume of data generated by Centrik receiver deployments. Its robust data logging and management capabilities are crucial for organizations dealing with terabytes of incoming information. What makes Fleet’s data handling capabilities stand out?
High-Performance Database Architecture
At the core of Fleet’s data management system is a high-performance SQL database. This database is specifically optimized for:
- Efficient storage of time-series data
- Fast querying of IoT device information
- Secure archiving of raw sensor measurements
- Organizing position logs and video streams
The database’s structure ensures that incoming data is automatically associated with specific metadata tags, including:
- Sensors
- Vehicles
- Workers
- Projects
Advanced Data Filtering and Analytics
Fleet’s data management system enables powerful contextual filtering, segmentation, and analytics of the data lake. This functionality allows users to analyze data based on various attributes:
- Equipment IDs
- Sensor names
- Data types
- Timestamps
- Geofences
For example, users can isolate and analyze vibration data for a specific pump’s performance over a defined time period within a particular work zone. How does this level of granularity benefit operational efficiency?
Customizable Data Retention and Security
Fleet provides flexible tools for customizing data retention policies across the system. This allows organizations to balance storage needs with data accessibility:
- Raw data can be stored at maximum resolution for short-term analysis
- Summary metrics can be retained long-term for historical trending
Security is a top priority in Fleet’s data management system:
- All data is encrypted both in transit and at rest
- Access controls allow admins to restrict data visibility across users and organizations
These robust, enterprise-grade capabilities for ingesting, organizing, securing, and contextualizing massive volumes of heterogeneous sensor data provide the foundation for advanced analytics and business intelligence in the Maverik Fleet platform.
Precision GNSS and RTK Performance of Maverik Centrik
The primary function of the Maverik Centrik multi-constellation GNSS receiver is to deliver high-accuracy positioning. To achieve this, the Centrik employs advanced hardware and software capabilities. What sets the Centrik apart in terms of positioning accuracy?
Multi-Constellation GNSS Support
The Centrik receiver tracks all major global navigation satellite systems:
- GPS
- GLONASS
- Galileo
- BeiDou
This multi-constellation support is enabled by a high-sensitivity quad-band antenna that receives signals on L1, L2, and L5 frequencies. The benefits of this approach include:
- Enhanced positioning accuracy
- Improved uptime in challenging environments
- Increased availability and redundancy
Advanced RTK Capabilities
For applications requiring centimeter-level real-time accuracy, the Centrik offers advanced RTK (Real-Time Kinematic) capabilities:
- RTK corrections can be generated through an integrated UHF radio or cellular modem
- Using correction data from a local base station, rover Centrik receivers can achieve horizontal accuracy of 1-2 centimeters RMS in optimal conditions
In situations where satellite visibility is limited by obstructions, the Centrik supports RTK over cellular for wide-area corrections. This feature allows roving vehicles to maintain high precision positioning even in challenging environments like urban canyons or forested areas.
Maverik Fleet: Transforming Raw Data into Actionable Insights
While the Centrik receiver excels at data collection, the true power of the Maverik system lies in the Fleet platform’s ability to transform this raw data into actionable insights. How does Fleet accomplish this crucial task?
Advanced Analytics and Visualization
The Fleet platform employs sophisticated analytics algorithms to process the vast amounts of data collected by Centrik receivers. These analytics capabilities include:
- Real-time data processing
- Historical trend analysis
- Predictive modeling
- Anomaly detection
Fleet’s visualization tools present these insights in easily digestible formats, such as:
- Interactive dashboards
- Heat maps
- Time-series graphs
- 3D terrain models
Customizable Reporting and Alerts
Fleet offers a flexible reporting system that allows users to create custom reports tailored to their specific needs. These reports can be scheduled for automatic generation and distribution, ensuring that stakeholders always have access to the most up-to-date information.
The platform also includes a robust alerting system that can notify users of critical events or threshold breaches in real-time. This proactive approach enables rapid response to potential issues, minimizing downtime and maximizing operational efficiency.
Integration Capabilities: Enhancing Existing Workflows
One of the key strengths of the Maverik Fleet system is its ability to integrate seamlessly with existing business systems and workflows. How does this integration capability benefit organizations?
API-Driven Architecture
The Maverik Fleet platform features a comprehensive API (Application Programming Interface) that allows for easy integration with a wide range of third-party software and systems, including:
- Enterprise Resource Planning (ERP) systems
- Customer Relationship Management (CRM) platforms
- Asset Management software
- Business Intelligence (BI) tools
This API-driven architecture enables organizations to create seamless data flows between Maverik Fleet and their existing systems, eliminating data silos and enhancing overall operational visibility.
Custom Workflow Automation
The Fleet platform includes powerful automation tools that allow users to create custom workflows based on data inputs and predefined triggers. These automated workflows can significantly streamline operations by:
- Automating routine tasks
- Triggering maintenance schedules based on equipment usage
- Optimizing resource allocation in real-time
- Generating and distributing reports automatically
Scalability and Future-Proofing: Adapting to Evolving Needs
In today’s rapidly evolving technological landscape, scalability and future-proofing are crucial considerations for any enterprise-grade system. How does Maverik Fleet address these concerns?
Cloud-Based Architecture
Maverik Fleet leverages a cloud-based architecture that offers several advantages:
- Scalability: The system can easily accommodate growing data volumes and user bases
- Accessibility: Users can access the platform from anywhere with an internet connection
- Reliability: Cloud infrastructure ensures high uptime and data redundancy
- Regular updates: Cloud-based deployment allows for seamless software updates and feature additions
Modular Design
The Fleet platform employs a modular design philosophy, allowing organizations to add or modify functionality as their needs evolve. This approach offers several benefits:
- Flexibility: Organizations can start with core functionalities and expand over time
- Cost-effectiveness: Pay only for the modules and features you need
- Customization: Tailor the system to your specific industry or use case
- Future-proofing: Easily integrate new technologies and capabilities as they become available
By combining robust hardware capabilities with advanced software features and a forward-thinking architectural approach, the Maverik Centrik and Fleet system offers a comprehensive solution for organizations seeking to leverage precision positioning and data analytics to drive operational excellence.
Centrik’s Advanced Sensor Inputs and Connectivity Options
One of the standout features of the Maverik Centrik is its ability to integrate an extensive array of third-party sensors through multiple wired and wireless interfaces. This enables the Centrik receiver to collect critical positional, environmental, machine performance, and other operational data for logging and analysis by the Maverik Fleet software platform.
For example, the Centrik provides serial, CAN, and Ethernet connectivity to seamlessly connect devices such as LiDAR sensors, IMUs, thermal cameras, and machine control units. The receiver includes built-in support for major industrial communication protocols like CANopen and Modbus, eliminating the need for external converters. Bluetooth and Wi-Fi allow local wireless sensors to link to the Centrik, while integrated 4G/LTE enables remote data transmission.
A key advantage of the Centrik is the ability to directly integrate MAVsense smart sensors using the dedicated MAVsense ports. These self-identifying ‘plug-and-play’ sensors automatically configure themselves when connected to the receiver, saving setup time. MAVsense options include tilt sensors, gyros, accelerometers and environmental sensors for temperature, humidity and more.
For even greater flexibility, the Centrik provides a programmable Xsense interface to allow connection of virtually any sensor or device, even custom-designed ones. Using the XCL code library, sensors can be quickly integrated and data feeds customized as needed for a particular application.
With its robust connectivity options, the Maverik Centrik receiver serves as a central hub for capturing and synchronizing positional data from GNSS and RTK sources with sensor measurements. This enables Centrik-based solutions to deliver rich, integrated datasets to the Fleet platform for automated reporting, visualization and analytics.
Powerful Data Logging Abilities of Maverik Fleet
The Maverik Fleet software platform has robust data logging and management capabilities to capture and organize the flood of data from Centrik receiver deployments. Fleet is designed to handle terabytes of incoming raw sensor measurements, position logs, video streams, and more from any number of connected devices.
At the core of Fleet is a high performance SQL database that securely archives the time-series data collected by Centrik receivers. Database indexes and schemas are optimized for efficient storage and querying of IoT device information. Incoming data is automatically associated with the specific sensors, vehicles, workers, projects, and other metadata tags configured in Fleet.
This enables powerful contextual filtering, segmentation, and analytics of the data lake based on equipment IDs, sensor names, data types, timestamps, geofences, and other attributes. For example, vibration data could be filtered to analyze a specific pump’s performance over a defined time period within a work zone polygon.
Fleet provides flexible tools to customize data retention policies across the system. Raw data can be stored at maximum resolution while summary metrics are retained long-term. All data is encrypted both in transit and at rest. Access controls let admins restrict data visibility across users and organizations.
Overall, Maverik Fleet offers robust, enterprise-grade capabilities for ingesting, organizing, securing, and contextualizing massive volumes of heterogeneous sensor data from Centrik receiver deployments. This provides the foundation for advanced analytics and business intelligence.
Precision GNSS and RTK Performance of Maverik Centrik
Delivering high-accuracy positioning is the primary function of the Maverik Centrik multi-constellation GNSS receiver. To provide precise location data, the Centrik leverages a high-sensitivity quad-band antenna and advanced RTK capabilities.
For standard GNSS operation, the Centrik receiver tracks all major global navigation satellites including GPS, GLONASS, Galileo, and BeiDou. The quad-band antenna enables reception of signals from all constellations on L1, L2, and L5 frequencies to enhance availability and redundancy. This multiconstellation GNSS support improves positioning accuracy and uptime in challenging environments.
Where centimeter-level real-time accuracy is required, the Centrik can generate RTK corrections through an integrated UHF radio or cellular modem. Using correction data streamed from the local base station, the rover Centrik receivers can achieve horizontal accuracy of 1-2 centimeters RMS in optimal conditions.
For situations where satellite visibility is limited by obstructions, the Centrik supports RTK over cellular for wide-area RTK corrections without local base stations. This allows roving vehicles to achieve high precision positioning even in urban canyons or forested areas.
Dual hot-swappable batteries ensure the Centrik can operate reliably for extended missions, while the IP67 rugged housing withstands harsh environments. For high-dynamic applications, the Centrik employs algorithms to maintain lock through acceleration and interference.
With its robust multiconstellation GNSS, flexible RTK options, and sophisticated tracking algorithms, the Maverik Centrik receiver delivers reliable, survey-grade position accuracy for critical applications.
Efficiency Gains from Maverik Fleet Software
The Maverik Fleet software platform enables organizations to realize major efficiency gains by moving from manual data collection and reporting to automated workflows powered by Centrik-connected sensors.
Fleet’s cloud-based architecture means remote offices can input data and access analytics dashboards without needing local IT infrastructure. The software centralizes data ingest, analysis, and visualization to remove siloed, fragmented processes.
Field crews leveraging Centrik-equipped vehicles and assets no longer waste time manually tracking locations, driving to job sites for check-ins, or filling in paper forms. All data is captured automatically and streamed to Fleet for instant oversight.
For office workers, Fleet eliminates the inefficient and error-prone process of manually compiling reports in spreadsheets. Automated alerts, schedules, and workflows in Fleet enable hands-off report generation and distribution.
With Fleet’s BI tools like customizable dashboards, data visualizations, and SQL querying, organizations gain instant insights that used to take days or weeks of number crunching. This amplifies the value of their connected data.
By reducing time wasted on manual tasks and enabling data-driven decision making, the Maverik Fleet software drives significant productivity and efficiency gains across field and office operations.
Base Station Options for Maverik Centrik RTK Networks
To enable real-time kinematic (RTK) GNSS across a fleet of Centrik rovers, a local base station receiver is required to broadcast correction data. Maverik offers flexible base station hardware and siting options to meet different accuracy, range and reliability needs.
For the highest-precision applications, the Centrik Base model provides a dedicated RTK base station in a compact, ruggedized enclosure. It includes an integrated radio with power outputs from 1 to 5W for ranges up to 10km.
For large areas or complex sites, a network of Centrik Base or Centrik receivers can be deployed. The Fleet software platform seamlessly manages and monitors the multi-base network, selects the optimal station for each rover’s location, and load balances connections.
Centrik Base units can utilize built-in cellular modems to transmit corrections over the internet without local UHF infrastructure. This simplifies setup in remote areas.
High-precision, geodetic antennas and sturdy mounts are recommended for permanent base station sites. Good sky visibility and minimal obstructions are key for maximizing correction availability.
With flexible base station receivers, networking software, and siting guidance, Maverik provides turnkey solutions tailored for delivering RTK-grade accuracy across worksites of any size or location.
How Maverik Fleet Improves Fleet Management
The Maverik Fleet software platform brings transformational improvements to fleet management capabilities compared to traditional manual techniques.
With Centrik-connected vehicles, Fleet provides continuous automated visibility into the location, status, and performance of all assets in the field in real time. Dispatchers can track vehicles, equipment, and workers on a live map without any driver interaction.
Geofencing, landmark tracking, and AI path optimization ensure assets stay on the most efficient routes and schedules. Workflow automation frees dispatchers to focus on high-value tasks vs basic tracking.
Fleet’s centralized dashboard gives instant access to key vehicle health indicators like engine faults, idling, fuel use, and maintenance needs. Diagnostics can be monitored remotely without having to recall vehicles.
With a complete record of fleet activity in the Fleet database, managers gain data-driven insight into asset utilization, operator behaviors, maintenance costs, and productivity. This enables continuous optimization.
By applying modern connected technology powered by the Maverik Centrik and Fleet platforms, fleet owners can achieve new levels of efficiency, cost savings, safety, and insight into their mobile assets and field teams.
Ease of Use with the Maverik Centrik Android App
Maverik designed the Centrik receiver for simple deployment and management through the included Centrik Setup app available on Android tablets and phones.
The intuitive touchscreen interface streamlines device configuration without needing external antennas or laptops. Users can quickly connect to the Centrik via Bluetooth to view status information, modify settings, and access advanced features.
For example, the Android app makes it easy to pair third-party sensors to the Centrik by scanning sensor QR codes and assigning unique names. All sensor data fields can then be mapped to channels in Fleet.
The app provides one-touch access to functionalities like data logging, Wi-Fi networking, radio settings adjustment, and field software updates. Monitoring tools display signal strength, correction status, and data rates.
Once configured, Centrik receivers continue autonomous operation without needing ongoing app connectivity. The app simply enables rapid field deployment and adjustments by technicians of any skill level.
With its user-friendly mobile interface, the Maverik Centrik Setup app exemplifies the brand’s focus on simplified, hassle-free user experiences for RTK positioning solutions.
Scalability Benefits of the Maverik Fleet Platform
A key advantage of Maverik Fleet’s cloud-based architecture is the ability to efficiently scale to support large volumes of connected devices, sensors, and users as deployments grow over time.
Fleet leverages managed cloud infrastructure to provide limitless data ingest capacity and computational power. Processing, storage, and bandwidth scale elastically to match usage needs without upfront hardware investment.
The platform enables administrators to create organizational hierarchies for multi-site fleets and manage permissions across unlimited numbers of users. Usage-based licensing provides cost flexibility.
Fleet’s open API allows integration with existing business systems and easy expansion to new sensors or data sources. The modular microservices design ensures high availability under load.
By leveraging the cloud, Maverik Fleet offers a future-proof solution. As requirements expand in terms of devices, data volume, or users, Fleet can scale on demand to match growth.
The platform enables small pilots to quickly expand across divisions or multiple business entities. This flexibility allows customers to start small and scale globally.
Battery Life Expectations for the Maverik Centrik
Robust power management is critical for portable GNSS receivers like the Maverik Centrik that need to operate reliably for extended periods in the field.
The Centrik is designed for all-day battery life even under heavy use. It features intelligent hot-swappable dual battery architecture to maximize uptime.
Each rechargeable Li-ion battery provides approximately 16 hours of run time during continuous 3D RTK operation with radio and cellular modems active. With intermittent use, batteries can last over 20 hours before swapping.
Power-saving features such as automated sleep modes and configurable connectivity minimize draw. The Centrik intelligently switches between batteries to prevent disruption.
Using the provided dual-bay charger, batteries can be fully recharged in 2-3 hours. LED indicators confirm charging status to ensure batteries are ready for the next shift.
With its rugged, high-capacity batteries, smart power management, and long run times, the Maverik Centrik provides reliable untethered performance all day for improved field productivity.
Fleet Automation Drives Productivity
A key benefit of the Maverik Fleet platform is enabling organizations to automate manual workflows and reporting to improve productivity across teams and departments.
For field crews, Centrik-connected sensors automatically gather data on vehicle usage, asset health, project progress, and more without driver input. This eliminates time wasted on paper checklists.
Back-office staff save hours previously spent aggregating data, running reports, and building presentations with Fleet’s automated reporting tools. Custom schedules and triggers push insights to stakeholders.
Executives and managers can monitor key performance indicators on live executive dashboards instead of waiting for static monthly reports. This enables faster, data-driven decisions.
Dispatchers leverage Fleet’s real-time mapping, traffic avoidance, and AI optimization to keep the fleet moving efficiently without constant driver check-ins.
By leveraging Fleet to remove inefficient manual processes across the organization, companies can boost productivity, accountability, and data-driven decision making.
Ruggedness and Durability of the Maverik Centrik
Maverik designed the Centrik receiver to withstand tough field environments and all-weather operation through its rugged, waterproof housing.
The Centrik chassis features IP67 sealing to prevent ingress of dust, dirt and water. It can survive submersion down to 1 meter for 30 minutes. Rubberized bumpers provide shock absorption.
The receiver housing is constructed from hardened plastic composite materials designed to survive 2 meter drop impacts and extreme temperatures from -40°C to 85°C.
Internal components are secured with vibration damping mounts rated for operation in high vibration equipment like heavy machinery or vehicles traversing rough terrain.
Dust filters on connectors and fans prevent particulate intrusion during prolonged use in dirty conditions. Conformal coating on circuit boards adds moisture protection.
With its durable housing, shock mounting, and all-environment protection, the Maverik Centrik provides reliable and accurate positioning data even when exposed to dust, debris, vibration, humidity and temperature extremes in the field.
Integrations and API Options with Maverik Fleet
To provide flexibility connecting to external systems, Maverik Fleet offers robust integrations and API options for syncing data bi-directionally.
Out-of-the-box connectors are provided for major platforms like Salesforce, SAP, Microsoft Dynamics and O365. APIs support integration with dispatch systems, ERPs, and database tools.
For custom workflows, Fleet provides full documentation for its REST API allowing programmatic access to the system. API endpoints are provided for assets, users, locations, alerts, reports and more.
Real-time webhook integrations can be configured for triggering actions in other systems based on Fleet events, sensor thresholds, geofences, etc. Bidirectional data flows allow syncing insights.
Fleet’s MQTT messaging protocol integration helps optimize cellular data usage when connecting remote assets or syncing sensor data from edge devices.
With its adaptable API and vast protocol support, Maverik Fleet enables tailored integration solutions to connect positioning data with critical business platforms for a unified view.
Conclusion and Recommendations for Maverik Systems
For organizations seeking to optimize field operations through real-time visibility and advanced analytics, the Maverik Centrik receiver and Fleet software provide an integrated solution.
The Centrik receiver leverages multiconstellation GNSS and flexible RTK correction options to deliver precise positional data from both fixed and mobile assets. Its rugged design and intelligent interfaces enable seamless integration of diverse sensors.
Fleet ingests streaming data from Centrik units for aggregation, visualization, and analytics in its cloud-based platform. It replaces manual reporting with actionable insights delivered across the business.
Together, the Maverik platforms enable informed dispatching, predictive maintenance, usage-based costs, automation of manual processes, and data-driven decision making.
For organizations looking to connect, analyze, and optimize distributed field teams and assets, Maverik provides accurate, scalable, and user-friendly solutions purpose-built for the job.
Integrations and API Options with Maverik Fleet
To provide flexibility connecting to external systems, Maverik Fleet offers robust integrations and API options for syncing data bi-directionally.
Out-of-the-box connectors are provided for major platforms like Salesforce, SAP, Microsoft Dynamics and O365. APIs support integration with dispatch systems, ERPs, and database tools.
For custom workflows, Fleet provides full documentation for its REST API allowing programmatic access to the system. API endpoints are provided for assets, users, locations, alerts, reports and more.
Real-time webhook integrations can be configured for triggering actions in other systems based on Fleet events, sensor thresholds, geofences, etc. Bidirectional data flows allow syncing insights.
Fleet’s MQTT messaging protocol integration helps optimize cellular data usage when connecting remote assets or syncing sensor data from edge devices.
With its adaptable API and vast protocol support, Maverik Fleet enables tailored integration solutions to connect positioning data with critical business platforms for a unified view.
Conclusion and Recommendations for Maverik Systems
For organizations seeking to optimize field operations through real-time visibility and advanced analytics, the Maverik Centrik receiver and Fleet software provide an integrated solution.
The Centrik receiver leverages multiconstellation GNSS and flexible RTK correction options to deliver precise positional data from both fixed and mobile assets. Its rugged design and intelligent interfaces enable seamless integration of diverse sensors.
Fleet ingests streaming data from Centrik units for aggregation, visualization, and analytics in its cloud-based platform. It replaces manual reporting with actionable insights delivered across the business.
Together, the Maverik platforms enable informed dispatching, predictive maintenance, usage-based costs, automation of manual processes, and data-driven decision making.
For organizations looking to connect, analyze, and optimize distributed field teams and assets, Maverik provides accurate, scalable, and user-friendly solutions purpose-built for the job.