NE-DC

NR E-UTRA Dual Connectivity

Radio Access Network →
Introduced in Rel-15 Also in: Management, Testing, User Equipment

NE-DC is a dual connectivity mode where a device's master connection uses 5G NR and its secondary connection uses 4G E-UTRA, boosting data rates for non-standalone 5G.

Category
Radio Access Network
Introduced
Rel-15
Where
Radio Access Network › NG-RAN (5G)
Also touches
3 segments
Specifications
19 specs
NE-DC Description Purpose Related Classification Detected Changes Specifications

Description

NR E-UTRA Dual Connectivity (NE-DC) is a specific dual connectivity (DC) architecture standardized by 3GPP, defined under the umbrella of MR-DC (Multi-RAT Dual Connectivity). In NE-DC, the user equipment (UE) is configured with two distinct cell groups: a Master Cell Group (MCG) and a Secondary Cell Group (SCG). The MCG is provided by a master node (MN) operating the 5G New Radio (NR) radio access technology. The SCG is provided by a secondary node (SN) operating the 4G Evolved Universal Terrestrial Radio Access (E-UTRA or LTE) technology. The master node terminates the control plane connection to the core network, which in this architecture is the 5G Core (5GC). The MN is responsible for the initial access, connection establishment, and mobility management. The secondary node provides additional radio resources for the user plane, enhancing throughput. The UE maintains a single Radio Resource Control (RRC) connection with the master node (NR), while the secondary node is managed via RRC messages that are transported via the master node. The user plane data can be split and aggregated at various points, such as the Packet Data Convergence Protocol (PDCP) layer in the master node (for MCG split bearer) or in the secondary node (for SCG split bearer). This requires tight inter-node coordination via the Xn interface (between gNB and eNB) to manage radio resources, handovers, and bearer management. NE-DC is a foundational element for non-standalone (NSA) 5G deployment option 3, where the 5G NR layer is anchored by the 5GC but leverages existing LTE infrastructure for coverage and capacity.

Purpose & Motivation

NE-DC was introduced to facilitate the smooth introduction of 5G NR services by leveraging the extensive, existing deployment of 4G LTE networks. It solves the problem of limited initial 5G NR coverage by allowing a device to use a 5G NR connection as the primary anchor for control and high-speed data, while simultaneously using a robust LTE connection for additional data capacity and to maintain service continuity at the cell edge. This approach allows mobile network operators to launch 5G services more quickly and cost-effectively, as they can utilize their LTE assets as a complementary layer. Historically, dual connectivity concepts were first introduced in LTE-Advanced (LTE-A) with intra-LTE DC (where both cell groups are LTE). NE-DC extends this principle to multi-RAT scenarios, specifically targeting the 5G migration path. It addresses the limitations of a pure standalone 5G rollout, which would require ubiquitous NR coverage from day one to guarantee service, by providing a practical intermediate step that delivers enhanced user experience through aggregated NR and LTE resources.

Classification

Part ofMR-DC
Related approachesEN-DC

Release Timeline

Detected Changes Across Releases

from 3GPP Change Requests

Specific changes extracted from the „Change history“ tables of 3GPP specifications (28 CRs across 3 releases). Complements the general historical overview above with the evidence-based evolution of this function.

Rel-15 20 changes

In Release 15, the NE-DC (NR-E-UTRA Dual Connectivity) function was introduced as a late drop item, specifically supporting SUO Case 1 deployment scenarios. The release included foundational procedures such as the configuration of SCG part of DRBs, power coordination via P-EUTRA, and LCID change support, alongside corrections and clarifications for functions like s-Measure, power control, PHR, and reconfiguration failure handling.

  • Introduction of late drop NGEN-DC, NE-DC and NR-DC TS 38.331CR0916
  • Introduction of SUO Case 1 for NE-DC as Rel-15 late drop TS 36.212CR0312
  • Correction to s-Measure for NE-DC (36.331) TS 36.331CR4058
  • Adding P-EUTRA for supporting power coordination in NE-DC TS 36.331CR4062
  • Support of SUO case1 in NE-DC TS 36.331CR4070
  • Correction on 36.331 for reconfiguration of SCG part of DRBs in NE-DC TS 36.331CR4080

+ 14 more changes

Rel-16 4 changes

In Release 16, the NE-DC function was enhanced through updates to its band combination list and clarifications to key procedures. Specifically, the release provided a dedicated band combination list for Category F UEs and corrected when a reconfiguration with synchronization is required. It also included alignment of parameter names with EN-DC and clarifications on the CG-ConfigInfo information element.

  • Alignment of EN-DC/NE-DC parameter names TS 36.212CR0368
  • Band combination list for NE-DC (Cat-F) TS 38.331CR1596
  • Correction on the need for reconfiguration with sync in (NG)EN-DC, NR-DC and NE-DC TS 38.331CR1572
  • Clarification on CG-ConfigInfo for NR-DC and NE-DC TS 38.331CR1746
Rel-17 4 changes

In Release 17, the enhancements for NE-DC included updating the baseline Physical Layer implementation capabilities and introducing common implementation conformance statements to standardize testing. The release also added support for inter-band NE-DC combinations within Frequency Range 1 (FR1) for NSA DC UEs and introduced an informative annex documenting the status of various band and configuration combinations, including NE-DC.

  • Update Physical Layer Baseline Implementation Capabilities for NE-DC TS 38.508CR0289
  • Introduction of common implementation conformance statements for NE-DC TS 38.508CR0287
  • Update to A.4.1 for addition of inter-band NE-DC within FR1 for NSA DC UE radio technologies TS 38.508CR0347
  • Introduction of informative Annex for status of NR bands, and NR CA, NR-DC, EN-DC, NE-DC and NR SUL configurations TS 38.508CR0444

Explore further

Broader topics and technologies where NE-DC plays a role.

Defining Specifications

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

SpecificationTitleRelease
TS 28.552 vk10 5G Performance Management Measurements Rel-20
TS 28.657 vj00 E-UTRAN NRM IRP Requirements Rel-19
TS 32.425 vj00 E-UTRAN Performance Measurements Rel-19
TS 36.212 vj10 LTE Multiplexing and Channel Coding Rel-19
TS 36.331 vj00 LTE RRC Protocol Specification Rel-19
TS 37.340 vj00 Multi-Connectivity Operation Overview Rel-19
TS 37.473 vj00 W1 Application Protocol (W1AP) Specification Rel-19
TS 37.571 vj00 UE Conformance for Positioning Rel-19
TS 37.717 3GPP TR 37.717 Rel-15
TS 37.718 3GPP TR 37.718 Rel-15
TS 37.719 vj00 3GPP TR 37.719: Dual Connectivity Band Combinations Rel-19
TS 38.133 vj20 5G UE Radio Requirements for RRC_IDLE Mobility Rel-19
TS 38.171 vj10 5G A-GNSS UE Positioning Requirements Rel-19
TS 38.213 vj10 NR Physical Layer Control Procedures Rel-19
TS 38.331 vj00 NR Radio Resource Control (RRC) Protocol Specification Rel-19
TS 38.508 vj11 5G NR UE Radio Transmission & Reception Rel-19
TS 38.521 vj20 NR Physical Layer UE Conformance Testing Rel-19
TS 38.523 vj20 5G NR UE Conformance Testing: Idle/Inactive Rel-19
TR 38.846 vi10 Technical Report Rel-18
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.