Devices
DIS-Turing
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The DIS-Turing is an ultra-low-power, water-resistant tracking sensor designed for maximum efficiency and durability. Equipped with GPS and LBS (WiFi and Cell Tower Scanning), it ensures seamless connectivity through LTE Cat M1 and NB-IoT. Thanks to its innovative algorithm, the DIS-Turing boasts an impressive battery life of over 10 years, even with 5 messages sent daily.
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Overview
Baseline Functionality
The DIS-Turing reports at regular intervals known as the “heartbeat interval.” This interval is configurable, allowing you to set how often the device sends status updates to the server. It ensures you receive periodic updates on the device’s status.
With ATEX certified batteries, the DIS-Turing excels even in extreme weather conditions. It offers an impressive battery life of up to 10 years (based on 5 messages a day).
The DIS-Turing also wakes up when it detects movement. The definition of movement is highly configurable and can be adjusted based on parameters such as G-force, the number of movement samples, and movement time. This flexibility allows you to tailor the device’s behavior to specific tracking scenarios.
Conversely, the device reports when it stops moving. Similar to movement detection, the definition of a stop movement event is configurable, typically based on a specified period of no movement. This feature is useful for tracking assets that should remain stationary and alerting you if they are moved.
GPS, WiFi, and Cell Tower Scanning
LTE-Cat M1 and NB-IoT Connectivity
Remote Firmware Updates (OTA)
Battery Life: Up to 10 years (based on 5 messages a day)
Antennas are internal
Compact Form Factor: 86mm x 82mm x 29.5mm
ATEX Certified Batteries
Secure Data Transmission (128-bit ECDH)
Robust Firmware Security Practices
CE, UKCA and EMC Certified
Configurable Items
Define the frequency at which the device sends periodic status updates to the server (heartbeat intervals). This is crucial for monitoring the device’s normal operation.
Effortlessly enable or disable GPS scanning to meet your tracking needs. Tailor the scan duration for accurate GPS data retrieval when required.
Customize the frequency of WiFi scan messages to balance tracking accuracy with battery efficiency.
Manage the activation status of GPS scanning according to your tracking needs.
Configure the URL or IP address of the server to which the device reports its data.
Specify the port on the server for communication.
Define the G-force threshold that triggers a movement event, allowing you to adjust sensitivity to movement.
Set the movement detection interval and required sample count to classify movement, and configure the duration of inactivity that triggers a stop movement event.