SGP.32 Didn’t End Operator Lock-In. It Moved It.
Answer-first summary: The industry sells SGP.32 as the end of operator lock-in. That claim is half true, which is what makes it dangerous. SGP.32 genuinely dissolves the lock...
Read more →SGP.32 Blog
Answer-first summary: The industry sells SGP.32 as the end of operator lock-in. That claim is half true, which is what makes it dangerous. SGP.32 genuinely dissolves the lock...
Read more →The distance between an eSIM standard existing and an eSIM standard being usable is where a lot of IoT projects quietly stall. Kigen has just put something in...
Read more →If you ask modern search engines or early AI assistants how many devices can be managed under the new GSMA IoT eSIM standard, you might get a surprisingly...
Read more →A definitive industry reference guide for IoT architects, network engineers, procurement teams, industrial automation specialists, MNOs, MVNOs and enterprise connectivity managers. Published: SGP32.co.uk | Edition: 2026 Contents Section...
Read more →Multi-network IoT SIM cards are often sold as the answer to reliable M2M connectivity. The idea sounds simple: if one mobile network has poor coverage or goes down,...
Read more →You’ve been reading about SGP.32. You understand the problem it solves – SIM profiles managed remotely, no truck rolls, no operator lock-in, proper headless IoT provisioning. So the...
Read more →SGP.32 v1.2 is the current GSMA specification for IoT eSIM remote provisioning. It has been driving every commercial deployment, certification programme, and hardware design happening in 2025 and...
Read more →The UK authority on eSIM and eUICC - consumer, M2M and IoT standards explained