Apartment Rentals

Comfortable Apartments. Flexible Living.

About this SERVICE

Turning Property Into Opportunity

At ELD Solution, we provide short-term and monthly apartment rentals designed for different types of stays. Whether you need a comfortable space for a few nights, an extended visit, or a place to live for several months, our rental options offer a practical alternative to traditional accommodation.

We focus on providing clean, comfortable, and well-maintained spaces with the flexibility guests need. From short stays for travelers and visitors to monthly rentals for individuals and families, our aim is to make finding and staying in a suitable apartment simple and convenient.

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OUR APPROACH

Simple Rentals. Comfortable Stays.

We take a straightforward approach to apartment rentals, focusing on comfort, convenience, and flexibility. Each property is selected and maintained with the needs of guests and tenants in mind, ensuring that the space is suitable for both short visits and longer stays.

From the initial booking or rental enquiry through to the stay itself, we aim to provide a smooth and dependable experience. Our focus is on clear communication, well-maintained properties, flexible rental options, and responsive support throughout the rental period.

OUR WORK AND ACHIEVEMENTS

PROJECT STORIES IN THIS FIELD

Project story 1

August 2026 | Meghalaya, India

Improving Connectivity in Remote Communities

tele2

In late 2024, Global Connect Telecom launched Project Horizon, an ambitious multi-national infrastructure overhaul aimed at modernizing aging transoceanic subsea fiber-optic cable landing stations and core routing nodes. The initiative was designed to address severe bandwidth bottlenecks driven by the explosive growth of edge computing, cloud-native enterprise services, and high-density video streaming across North America and Western Europe. By replacing legacy Dense Wavelength Division Multiplexing (DWDM) equipment with state-of-the-art coherent optical transponders, the project sought to dramatically scale backhaul capacity without the exorbitant costs of laying new physical underwater cables.

Executing Project Horizon required a seamless, multi-phased deployment strategy across seven international landing facilities while maintaining continuous network availability. The project team orchestrated complex hot-swaps of optical line systems, implemented unified open-API network management software, and integrated advanced AI-driven telemetry for real-time fault detection. Overcoming severe logistics constraints, strict maritime regulatory compliance, and tight maintenance windows during low-traffic overnight hours, engineering teams migrated high-volume carrier traffic across redundant paths with zero unplanned downtime for downstream enterprise clients.

The achievements of Project Horizon transformed the carrier’s operational landscape. Total network throughput surged from 8 Tbps to an unprecedented 32 Tbps per fiber pair, effectively quadrupling capacity while reducing power consumption per bit by 42%. Additionally, automated optical routing shortened transatlantic round-trip latency to sub-35 milliseconds, while maintaining 99.999% carrier-grade uptime. Beyond immediate metrics, the upgraded infrastructure laid a robust foundation for future 800G and 1.2T wavelength deployments, securing the operator’s position as a market leader and enabling ultra-reliable, high-speed connectivity for millions of end-users worldwide.

Project story 2

July 2026 | Meghalaya, India

Improving Connectivity in Remote Communities

tele2

In late 2024, Global Connect Telecom launched Project Horizon, an ambitious multi-national infrastructure overhaul aimed at modernizing aging transoceanic subsea fiber-optic cable landing stations and core routing nodes. The initiative was designed to address severe bandwidth bottlenecks driven by the explosive growth of edge computing, cloud-native enterprise services, and high-density video streaming across North America and Western Europe. By replacing legacy Dense Wavelength Division Multiplexing (DWDM) equipment with state-of-the-art coherent optical transponders, the project sought to dramatically scale backhaul capacity without the exorbitant costs of laying new physical underwater cables.

Executing Project Horizon required a seamless, multi-phased deployment strategy across seven international landing facilities while maintaining continuous network availability. The project team orchestrated complex hot-swaps of optical line systems, implemented unified open-API network management software, and integrated advanced AI-driven telemetry for real-time fault detection. Overcoming severe logistics constraints, strict maritime regulatory compliance, and tight maintenance windows during low-traffic overnight hours, engineering teams migrated high-volume carrier traffic across redundant paths with zero unplanned downtime for downstream enterprise clients.

The achievements of Project Horizon transformed the carrier’s operational landscape. Total network throughput surged from 8 Tbps to an unprecedented 32 Tbps per fiber pair, effectively quadrupling capacity while reducing power consumption per bit by 42%. Additionally, automated optical routing shortened transatlantic round-trip latency to sub-35 milliseconds, while maintaining 99.999% carrier-grade uptime. Beyond immediate metrics, the upgraded infrastructure laid a robust foundation for future 800G and 1.2T wavelength deployments, securing the operator’s position as a market leader and enabling ultra-reliable, high-speed connectivity for millions of end-users worldwide.

Project story 3

June 2026 | Meghalaya, India

Improving Connectivity in Remote Communities

tele2

In late 2024, Global Connect Telecom launched Project Horizon, an ambitious multi-national infrastructure overhaul aimed at modernizing aging transoceanic subsea fiber-optic cable landing stations and core routing nodes. The initiative was designed to address severe bandwidth bottlenecks driven by the explosive growth of edge computing, cloud-native enterprise services, and high-density video streaming across North America and Western Europe. By replacing legacy Dense Wavelength Division Multiplexing (DWDM) equipment with state-of-the-art coherent optical transponders, the project sought to dramatically scale backhaul capacity without the exorbitant costs of laying new physical underwater cables.

Executing Project Horizon required a seamless, multi-phased deployment strategy across seven international landing facilities while maintaining continuous network availability. The project team orchestrated complex hot-swaps of optical line systems, implemented unified open-API network management software, and integrated advanced AI-driven telemetry for real-time fault detection. Overcoming severe logistics constraints, strict maritime regulatory compliance, and tight maintenance windows during low-traffic overnight hours, engineering teams migrated high-volume carrier traffic across redundant paths with zero unplanned downtime for downstream enterprise clients.

The achievements of Project Horizon transformed the carrier’s operational landscape. Total network throughput surged from 8 Tbps to an unprecedented 32 Tbps per fiber pair, effectively quadrupling capacity while reducing power consumption per bit by 42%. Additionally, automated optical routing shortened transatlantic round-trip latency to sub-35 milliseconds, while maintaining 99.999% carrier-grade uptime. Beyond immediate metrics, the upgraded infrastructure laid a robust foundation for future 800G and 1.2T wavelength deployments, securing the operator’s position as a market leader and enabling ultra-reliable, high-speed connectivity for millions of end-users worldwide.

Project story 4

May 2026 | Meghalaya, India

Improving Connectivity in Remote Communities

tele2

In late 2024, Global Connect Telecom launched Project Horizon, an ambitious multi-national infrastructure overhaul aimed at modernizing aging transoceanic subsea fiber-optic cable landing stations and core routing nodes. The initiative was designed to address severe bandwidth bottlenecks driven by the explosive growth of edge computing, cloud-native enterprise services, and high-density video streaming across North America and Western Europe. By replacing legacy Dense Wavelength Division Multiplexing (DWDM) equipment with state-of-the-art coherent optical transponders, the project sought to dramatically scale backhaul capacity without the exorbitant costs of laying new physical underwater cables.

Executing Project Horizon required a seamless, multi-phased deployment strategy across seven international landing facilities while maintaining continuous network availability. The project team orchestrated complex hot-swaps of optical line systems, implemented unified open-API network management software, and integrated advanced AI-driven telemetry for real-time fault detection. Overcoming severe logistics constraints, strict maritime regulatory compliance, and tight maintenance windows during low-traffic overnight hours, engineering teams migrated high-volume carrier traffic across redundant paths with zero unplanned downtime for downstream enterprise clients.

The achievements of Project Horizon transformed the carrier’s operational landscape. Total network throughput surged from 8 Tbps to an unprecedented 32 Tbps per fiber pair, effectively quadrupling capacity while reducing power consumption per bit by 42%. Additionally, automated optical routing shortened transatlantic round-trip latency to sub-35 milliseconds, while maintaining 99.999% carrier-grade uptime. Beyond immediate metrics, the upgraded infrastructure laid a robust foundation for future 800G and 1.2T wavelength deployments, securing the operator’s position as a market leader and enabling ultra-reliable, high-speed connectivity for millions of end-users worldwide.

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