MikroTik R11eL-EC200A-EU LTE4 Modem – Mobile Connectivity for SOHO & SMB
MikroTik R11eL-EC200A-EU is an ultra-cost-effective Category 4 LTE miniPCIe modem, designed as a lower-cost upgrade to the previous R11 LTE4 modem — the same performance of up to 150 Mbps download and 50 Mbps upload at an even more accessible price. It is deployed by integrators and users upgrading or replacing the LTE modem in MikroTik routers and gateways with an available miniPCIe slot, seeking the best price-to-performance ratio for LTE Category 4 connectivity in the EMEA, APAC, and Australia regions. It adds support for the popular B28 band compared to previous versions.
The modem supports LTE Category 4 with speeds up to 150 Mbps download and 50 Mbps upload on LTE FDD bands 1/3/5/7/8/20/28 and TDD 38/40/41, with automatic fallback to 3G Category R7 and 2G for continuous connectivity in any coverage area. Band 28 at 700 MHz ensures superior penetration in rural areas and weak signal zones — the band with the widest national coverage in many European, Australian, and Asia-Pacific networks. Maximum consumption of 3W makes the R11eL-EC200A-EU ideal for devices powered by batteries, automotive sources, or limited-power supplies.
The standard miniPCIe form factor ensures direct compatibility with all MikroTik devices equipped with a free miniPCIe slot — LtAP, wAP LTE, RBM33G, and others — without modifications or adapters. IP00 means the module has no built-in protection and is intended for installation inside the host device enclosure. The operating range from -35°C to +70°C covers extreme climatic conditions for mobile and industrial deployments. An MTBF of approximately 100,000 hours at 25°C confirms reliability for continuous use.
Recommended for replacing or upgrading the LTE modem in existing MikroTik devices with a miniPCIe slot where the best price-to-performance ratio for LTE Category 4 is desired, deployments in the EMEA, APAC, and Australia regions where B28 band support is essential for complete national coverage, and any installation where minimum LTE module cost and low 3W consumption are the decisive selection factors.
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