EISREFSENS

OTA Reference Sensitivity

Physical Layer →
Introduced in Rel-15

EISREFSENS is the minimum received power level at a 5G base station's antenna port required to achieve a defined throughput, ensuring reliable uplink signal detection from user equipment.

Category
Physical Layer
Introduced
Rel-15
Where
Radio Access Network › NG-RAN (5G)
Specifications
7 specs
EISREFSENS Description Purpose Detected Changes Specifications

Description

EISREFSENS, or OTA Reference Sensitivity, is a key performance indicator defined in 3GPP specifications for evaluating the sensitivity of 5G New Radio (NR) base station (gNB) receivers in an Over-the-Air test environment. It is a specific application of the broader Equivalent Isotropic Sensitivity (EIS) concept, tailored for base station equipment. The metric quantifies the minimum power level, expressed in dBm, that must be incident on the gNB's antenna array to achieve a specified reference throughput (typically 95% of the maximum throughput) for a defined reference measurement channel. This measurement inherently includes the effects of the base station antenna's radiation pattern, gain, and any beamforming characteristics under test conditions.

The measurement procedure, detailed in specs like 38.141, involves placing the gNB under test in an anechoic chamber. A test UE or a calibrated radio source transmits a standardized uplink signal. The power received by the gNB antenna is precisely controlled and measured. The test system then evaluates the block error rate (BLER) or throughput of the received signal. By iteratively adjusting the transmit power, the minimum power level required to meet the throughput target is identified. This value is the EISREFSENS. The test is performed for specific NR operating bands, bandwidths, and numerologies (subcarrier spacings), and often for different beam directions if the gNB employs beamforming.

EISREFSENS is critical for validating that a base station can effectively receive signals from User Equipment, especially those at the cell edge where received power is low. It directly impacts the uplink coverage radius of a cell. A lower (better) EISREFSENS value means the gNB can detect weaker signals, enabling wider coverage or better performance in interference-limited scenarios. Standardizing this OTA measurement ensures that base station receivers from different vendors meet minimum performance benchmarks, contributing to consistent network quality and enabling accurate radio network planning. It complements conducted sensitivity tests by providing a system-level validation that includes the antenna subsystem.

Purpose & Motivation

EISREFSENS was introduced in 3GPP Release 15 alongside the first 5G NR specifications to address the unique challenges of base station receiver testing in the 5G era. Previous generations relied more heavily on conducted tests at antenna ports, which became less representative for active antenna systems (AAS) and massive MIMO arrays where the antenna and radio are deeply integrated. Conducted tests could not capture the performance impact of beamforming, antenna coupling, or the overall radiation pattern.

The purpose of defining EISREFSENS was to establish a standardized, realistic method for verifying base station receiver sensitivity in an operational context. It solves the problem of ensuring that the complete receive chain—from the radiating elements through the RF and digital beamforming units—functions correctly. This is especially important for 5G networks that use higher frequencies (like mmWave) with greater path loss and rely on beamforming to maintain link budget. By mandating OTA reference sensitivity tests, 3GPP ensures that base stations deployed in the field will reliably receive uplink transmissions, which is fundamental for network coverage, capacity, and user experience. It provides network operators with a guaranteed performance metric for procurement and deployment.

Release Timeline

Detected Changes Across Releases

from 3GPP Change Requests

Specific changes extracted from the „Change history“ tables of 3GPP specifications (1 CRs across 1 releases). Complements the general historical overview above with the evidence-based evolution of this function.

Rel-15 1 change

In Release 15, the OTA reference sensitivity (EISREFSENS) function was formally defined as a directional requirement for the base station, ensuring a minimum sensitivity level for a declared range of angles of arrival. The specification introduced the precise definition of the OTA reference sensitivity power level (EIS_REFSENS) as the minimum mean power received at the Radio Interface Boundary. Furthermore, corrections and clarifications were made to the definition of OTA reference sensitivity to align with the overall framework for over-the-air testing.

  • CR to TS 38.104 on Combined updates from RAN4 #90 This document combines the proposed changes in the following Draft CRs from RAN4 #90: - R4-1900284, "Draft CR on NR PUCCH format2 performance requirements for TS 38.104" - R4-1900763, "Draft CR to TS 38.104: Update of performance requirement numbers for DFT-s-OFDM based PUSCH" - R4-1900876, "Draft CR to TS 38.104: On RX spurious emissions requirement" - R4-1900968, "Draft CR for 38.104: Performance requirements for NR PUCCH format 1" - R4-1901329, "Draft CR to 38.104: Annex C.6 correction" - R4-1901330, "Draft CR to 38.104: Abbreviations addition" - R4-1901387, "Draft CR to TS 38.104 BS demodulation PUCCH format 0 requirements" - R4-1901474, "Draft CR to TS 38.104: Corrections on transmitter co-existence and co-location requirements" - R4-1901483, "Draft CR to TS 38.104: Corrections on general intermodulation requirement" - R4-1902239, "Draft CR to TS 38.104: Addition of missing EIRP/EIS definitions in terminology in clause 3.1" - R4-1902241, "Draft CR to 38.104; clarification of BS power limits" - R4-1902245, "Draft CR to 38.104: Correction to FR2 OTA Interfering signal mean power units" - R4-1902246, "Draft CR to 38.104; Correction to definition of OTA reference sensitivity" - R4-1902260, "draft CR to TS 38.104 - update emissions scaling" - R4-1902338, "Draft CR: Update on FR1 range extension for TS38.104" - R4-1902389, "draftCR for 38.104 on PUSCH requirements with CP-OFDM and FR1" - R4-1902394, "Draft CR to TS 38.104 – PUSCH requirements with CP-OFDM for FR2" - R4-1902396, "CR: Updates to PUCCH formats 3 and 4 performance requirements in TS 38.104" - R4-1902444, "Draft CR to TS 38.104: Editorial CR for BS demodulation requirements" - R4-1902561, "Draft CR for updating PRACH performance requirements in TS38.104" - R4-1902571, "Corrections to 38.104 Delay profile calculation" - R4-1902642, "Draft CR to TS 38.104: Correction on multi-band operation related requirements" TS 38.104CR0019

Explore further

Broader topics and technologies where EISREFSENS plays a role.

Defining Specifications

3GPP specifications that define or reference EISREFSENS, with the latest known release. Sourced from the 3GPP document catalog — see methodology.

SpecificationTitleRelease
TS 36.181 vj30 E-UTRA RF Test Methods for Satellite Access Node Rel-19
TR 37.941 vj20 RF Conformance Testing Background for Radiated BS Requirements Rel-19
TS 38.104 vj20 NR Base Station RF Requirements Rel-19
TS 38.141 vj20 NR Base Station RF Conformance Testing Part 1 Rel-19
TS 38.174 vj10 NR Integrated Access and Backhaul Radio Spec Rel-19
TS 38.176 vj20 IAB Conformance Testing Specification Rel-19
TS 38.817 3GPP TR 38.817 Rel-15
Patrick Zandl

About the author: Patrick Zandl (b. 1974)

Telecommunications specialist, technology journalist (founder of the Mobil server), and developer who has been running since 2025 — the largest Czech-language resource on AI-assisted programming. Formerly Chief Wizard Architect at Prusa3D and head of development for Turris at CZ.NIC; currently a consultant and instructor on AI implementation in companies.