Vehicle Fleet Telematics
Accelerate Data Collection And Edge Computing For An Autonomous Future

Rugged Edge Computing for Vehicle Fleet Telematics
New IoT sensors and powerful processing capabilities continue to play a critical role in the future for intelligent transportation markets. Next-gen commercial fleet vehicles now operate with precision accuracy and transmit data telemetry via broadband wireless networks. Increasing demands for edge computing solutions in fleet management will provide market adoption in new technologies that deliver low-power processing, wireless connectivity , and real-time insights in decentralized mobile environments.
Fanless & Cable-less
Wide Temperature
Shock And Vibration Resistance
Power Protection
What are Vehicles Telematics?
Vehicle telematics is a hybrid of technologies that combine the ability for "telecommunication" and "information processing." Many of these technologies and devices collect and process data for real-time vehicle insights for location tracking, service and the maintenance of fleet vehicles.
Machine Vision
Expandable Options
Watch Dog Remote Control
TPM 2.0 Security Module
Sales
Ecosystem
Sustainable Roles For Suppliers
- Smart infrastructure enablers
- Automated shuttle-vehicle manufacturers
- Platform providers
- Mobility intelligence providers
- Vehicle features and demands providers.
Connectivity
Autonomy

Extend Powerful Computing to the "Rugged Edge"
New data requirements for edge computing, edge storage, and wireless connectivity are pushing IoT applications away from the cloud and into decentralized edge networks. The "Rugged Edge" is an area where distributed edge computing networks provide the necessary computational power near the source of data generation for real-time insights
Data Telemetry with Wireless Connectivity
Vehicle Fleet telematics support a variety of wireless technologies at the edge to transmit data. 3G/4G/LTE 5G GPS, GPNS,Satellite Wifi 5 802.11ac / wifi 6 802.11ax)

Convergence of Newer Technologies
Vehicle Fleet Telematics in compute, networking, and storage
Multi-core embedded processing Low-Power IoT Efficiency High Speed Wireless Networks Solid State Local storage
- Multi-core embedded processing
- Low-Power IoT Efficiency
- High Speed Wireless Networks
- Solid State Local storage