IoT Knowledge Base
Learn the key concepts you need to know. Without the technical jargon.
IoT Reports & Guides
In-depth research, white-papers and guides from Pelion.
Blog Articles & News
The latest insights on industry trends, best practices, and Pelion announcements.
Events & Webinars
Upcoming events, online sessions, and expert-led webinars
About Us
Our mission, values, team, and the solutions we offer in the IoT space.
The Team
Meet our team behind Pelion's effortless connectivity.
Careers
Job opportunities, company culture, and the benefits of joining our team.
Sustainability
Our commitment to environmentally responsible practices.
From technology overviews, guides, and customer stories to use cases, thought leadership blogs, and news articles... Everything is here.
IoT Cellular Connectivity uses mobile networks like LTE (4G) and 5G to connect smart devices across large areas. It’s ideal for industries needing reliable, scalable communication in the field, from fleet tracking to smart agriculture.
Understand how DINA enables scalable, secure, and automated IoT connectivity, optimizing performance and ensuring seamless, future-proof deployments.
Discover the power of IoT eSIMs for effortless global connectivity, enabling remote management and scalable deployments for your connected devices.
eUICC SIMs enable remote provisioning, offering flexible, reliable connectivity for IoT devices across global networks.
Learn how Global IoT deployments drive efficiency and scalability across industries, and how to address challenges around connectivity, security, and integration.
Global IoT eSIMs are reshaping device connectivity by enabling remote switching between mobile networks, with no SIM swaps required. Learn how eUICC technology supports flexible, international IoT deployments and what sets leading solutions apart.
Discover how high-availability transport layers ensure reliable, low-downtime IoT connectivity.
Learn more about high and low bandwidth for IoT and which is right for your solution, based on data and power needs.
Discover how ICCID serves as a unique SIM card identifier, vital for managing IoT devices and ensuring seamless connectivity across mobile networks.
Understand how IMEI uniquely identifies mobile devices, and is essential for tracking, securing, and managing IoT devices on mobile networks.
IoT connectivity is the invisible thread that links smart devices, allowing them to communicate and share data. Whether it’s Wi-Fi, Bluetooth, or 5G, the right connection is what makes your smart home, wearable tech, or industrial sensor truly “smart.”
IoT roaming keeps devices connected across regions, but challenges like cost, security, and latency need solutions like eSIM and edge computing for efficient global deployments.
Learn IoT security is crucial for protecting connected devices and networks from cyber threats, ensuring integrity, privacy, and reliability of data.
Learn how IoT SIM cards provide reliable connectivity for IoT devices, ensuring seamless communication across mobile networks for efficient data transfer and management.
While IoT and M2M both involve connected devices, they differ in architecture, scalability, and cloud integration. This guide breaks down their key distinctions to help you choose the right solution for your business’s connectivity and growth strategy.
Learn how ISDN enables faster, higher-quality digital communication for voice, video, and data, offering a reliable alternative to analog systems.
Explore what latency is, how it impacts IoT devices, and why managing it is essential for success in the connected world.
Learn how LPWAN is revolutionizing IoT with cost-effective, energy-efficient connectivity and powering smarter solutions.
Learn how LTE-CAT 1 BIS offers cost-effective, low-power connectivity for IoT applications like smart cities, agriculture, and logistics.
Learn how LTE-M can enhance your IoT applications with reliable, cost-effective performance.
MSISDN stands for Mobile Station International Subscriber Directory Number, the unique phone number assigned to a mobile SIM card. In the IoT world, MSISDN plays a crucial role in enabling communication between connected devices over cellular networks.
Discover how multi-IMSI technology enables effortless global IoT connectivity, offering reliable, cost-efficient solutions across multiple networks.
Learn about NB-IoT, a low-power, wide-area connectivity solution perfect for IoT applications like smart cities, agriculture, and industrial monitoring.
Network redundancy in IoT helps maintain uninterrupted communication between devices by using alternate network paths or systems. It boosts reliability, minimizes downtime, and is key to mission-critical IoT deployments.
As networks phase out older technologies, understanding the sunset process is vital for ensuring seamless IoT connectivity.
SGP.32 is the latest GSMA eSIM standard designed specifically for IoT, offering secure, remote profile management without SMS, support for lightweight protocols, and improved scalability for low-power, constrained devices.
SIM form factors determine the physical size and integration of SIM cards in IoT devices. From traditional SIMs to embedded and integrated SIMs, understanding these options helps optimize device design, connectivity, and management.
USSD is a real-time, session-based communication protocol used in mobile networks. From checking mobile balances to controlling IoT devices in rural areas, USSD offers a low-cost, internet-free option ideal for constrained environments. Learn how USSD powers mobile services and IoT applications, its pros and cons, and why it still matters in emerging markets despite growing adoption of newer technologies like NB-IoT.
VoLTE (Voice over LTE) enables high-quality, low-latency voice services over LTE networks, ideal for modern IoT applications across industries like healthcare, logistics, and smart security.
VoLTE enables fast, clear voice communication over 4G, making it vital for healthcare IoT devices like emergency alerts and remote monitors. With 2G/3G networks shutting down, VoLTE ensures reliable, real-time voice in critical care situations.