Lte cat.1 | LTE-M | NB-IoT | 5G mMTC | |
Bandbreite | 1 Mbit/s | 1 Mbit/s | 10-250 kbit/s | Bis zu 1 Mbit/s |
Stromverbrauch | Höher | Lower | Ultra-niedrig | Ultra-niedrig |
Abdeckung | Wide coverage | Wide coverage | Deep indoor/underground | Wide-area 5G coverage |
Mobilitätsunterstützung | ✔ | ✔ | ✖ | ✔ |
Latenz | 50-100 MS | 50-100 MS | >1S | Milliseconds-level |
Anwendungsfälle | Smart cities, Industrielles IoT | Wearables, Nachverfolgung von Gütern | Smart metering, Umweltüberwachung | Large-scale networks, autonomes Fahren, AR/VR |
Kosten | Medium | Niedrig | Ultra-niedrig | Hoch |
Cellular IoT offers better coverage, mobility, and reliability for large-scale deployments, while Wi-Fi is more suitable for short-range, high-bandwidth applications.
Cellular IoT can cover kilometers, with NB-IoT reaching up to 10-15 km in urban areas and even farther in rural settings.
Key standards include LTE-M, NB-IoT, and 5G IoT, providing various levels of speed, Energieeffizienz, and coverage.
Cellular IoT is divided into LTE (for higher data rates and broader coverage) und NB-IoT (for low-power, wide-area applications with lower data needs). Both enable IoT devices to connect via cellular networks but cater to different use cases based on data speed and energy efficiency.
The future includes 5G expansion, Edge Computing, and hybrid IoT networks to enhance speed, Sicherheit, and scalability for smarter connectivity worldwide.
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