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Digital Edge plans to invest US$4.5 billion in the CGK Campus, a hyperscale data-center development at GIIC Industrial Estate in Bekasi, West Java. Its headline figure—up to 500 MW of IT capacity—is a target for full development, not capacity scheduled to come online in the first building. The site could potentially scale to 1 GW, but construction, grid delivery, customer demand and later-phase financing will determine how much is ultimately built.
What Digital Edge has announced
Digital Edge, a Singapore-headquartered data-center platform backed by Stonepeak, has announced plans for the CGK Campus, also called the CGK Hyperscale Campus. The planned US$4.5 billion project is intended to serve hyperscale cloud, digital services and high-density computing demand in Greater Jakarta. Indonesia’s 2026 economic-development report also identifies the investment and describes an initial design of up to 500 MW, with potential expansion to 1 GW. Data Center Knowledge’s project coverage and the Bappenas report describe the plan.
The distinction between the project’s phases matters: three buildings make up the announced first phase, while 500 MW is the planned IT capacity at full development. The possible 1 GW is a site-scale expansion prospect, not a commitment that all that capacity is funded, built or available to customers.
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What 500 MW means—and what 1.45 GW does not
IT capacity, or critical IT load, is the power available to servers and other customer computing equipment. A data center also needs electricity for cooling, power distribution, lighting, pumps and other facility systems. As a result, a campus delivering 500 MW to IT equipment would require more than 500 MW of total incoming electrical power.
In June 2026, Indonesian outlet Katadata reported that a new agreement with state utility PLN raised the project’s planned electricity-supply capacity to 1.45 GW. That figure describes a reported power-supply arrangement; it is not 1.45 GW of customer IT capacity, nor proof that all the power has been delivered or is immediately available. The report also said CGK1 had reached structural topping-out. Katadata’s report does not make the supply figure interchangeable with the campus’s 500 MW IT-capacity target.
Power access is a major condition for a data-center campus of this scale, but a supply agreement is only one step. The relevant milestones include when utility power reaches the site, what substation and transmission capacity is available, the level of redundancy, the tariff structure, and whether supply is staged. Delivered power, installed facility capacity, customer IT load and occupied, revenue-generating capacity are different measures.
Construction schedule: targets, not confirmed service dates
Digital Edge’s originally announced first-phase schedule set these targets for the three buildings:
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| Building | Announced target |
|---|---|
| CGK1 | Ready for service in Q4 2026 |
| CGK2 | Ready for service in Q1 2027 |
| CGK3 | Ready for service in Q2 2027 |
These are the original schedule targets reported by Data Center Knowledge, not confirmation that the buildings became operational on those dates. The June 2026 topping-out milestone for CGK1 indicates structural progress, but it does not establish mechanical and electrical completion, utility energization, commissioning, customer fit-out or the amount of customer capacity available.
To assess whether the campus is moving from construction plan to operating asset, look for confirmed commissioning and ready-for-service dates, MW delivered by building, customer or pre-lease announcements, and progress on CGK2 and CGK3. Structural completion alone cannot answer those questions.
Why locate the campus in Bekasi?
The site is in GIIC Industrial Estate, Bekasi, east of Jakarta. Digital Edge says it is less than 15 kilometers from other major data-center clusters and about 40 kilometers from its existing EDGE1 and EDGE2 facilities in central Jakarta. The location aims to put large-scale facilities near Jakarta customers and the region’s telecom ecosystem while making room for a multi-building campus. These distances and the project positioning are described in Data Center Knowledge’s coverage.
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Digital Edge’s 23 MW EDGE2 facility in South Jakarta illustrates a different role for its existing urban footprint: closer proximity to central business districts and interconnection needs. CGK is planned as a larger site for hyperscale deployments and expansion, rather than a replacement for those urban facilities. The company’s capital announcement discusses EDGE2 and its broader regional platform: Digital Edge’s announcement.
Bekasi’s industrial-estate setting and proximity to Jakarta are advantages, not guarantees of execution. The campus still depends on grid expansion, construction and permitting, water availability, network-route resilience, labor and the ability to serve customers reliably. Locating a large amount of infrastructure in one metropolitan area also creates concentration risk: power, transport, water or other regional disruptions can affect multiple facilities.
What “AI-ready” means in this project
Digital Edge has described the campus as intended for AI and hyperscale workloads, with direct-to-chip liquid cooling, renewable-energy integration, recycled-water systems and carrier-neutral connectivity. Industry coverage also reports underground fiber routes. These are planned design features and positioning, not evidence that a particular GPU platform is installed, a specific rack-density limit has been published, or an AI customer has signed. The features are reported by Data Center Knowledge and Southeast Asia Infrastructure.
Liquid cooling and operating complexity
Direct-to-chip liquid cooling moves heat away from processors through liquid circuits, supporting high-density computing that can be difficult to cool with air alone. It also adds plumbing, controls, leak detection and response, maintenance needs, and compatibility questions between facility infrastructure and customer servers. Actual support for a customer’s equipment depends on deployed systems and operating specifications, not just the “AI-ready” label.
Carrier access and resilience
Carrier-neutral design is intended to give customers a choice of connectivity providers. Underground fiber routes can help with campus connectivity, but they do not eliminate the risk of cable cuts, flooding or shared-route failures. Customers evaluating service would still need details on diverse paths, carriers, redundancy and service levels.
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Digital Edge targets an annualized PUE of approximately 1.25. Power usage effectiveness compares total facility energy with energy used by IT equipment. If the target were achieved under the applicable measurement boundary, a PUE of 1.25 would mean roughly 1.25 units of facility energy for each unit used by IT equipment—about 0.25 units for cooling and other overhead. It is a target, not a verified operating result.
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Actual PUE varies with climate, utilization, IT load density, operating conditions and measurement boundaries. Liquid cooling may help with dense workloads, but PUE alone does not capture carbon intensity, water use, embodied carbon or the full environmental impact of a site. Digital Edge’s ESG report describes company-wide objectives, including a 2030 goal of 100% renewable electricity and a design objective of PUE below 1.25 where practical; these are corporate goals, not proof of CGK’s measured performance. Digital Edge’s 2024 ESG report provides the company’s framing.
Renewable-energy integration does not by itself establish that electricity is physically renewable at every hour. The result depends on the sourcing method, such as on-site generation, power-purchase agreements or certificates, and on whether matching is annual or hourly. Similarly, recycled-water systems may reduce freshwater demand but do not mean zero water consumption: cooling design, treatment requirements, source-water quality and drought conditions all matter.
Independent reader supportYour contribution helps us test, update, and keep practical guides available for everyone.Funding: first-phase financing is not the full project budget
Digital Edge previously announced more than US$1.6 billion in new equity and debt capital: approximately US$640 million in equity and US$1 billion in debt. The announcement said the funding would support expansions across multiple markets, including Indonesia; it does not establish that the full US$4.5 billion CGK investment has been financed. The company’s capital announcement also describes its Stonepeak backing and regional footprint.
Separately, industry outlet The Infrastructure Investor reported US$665 million in green financing for CGK’s first phase and named BNP Paribas, Crédit Agricole CIB and DBS among the financial institutions involved. That reported financing relates to the first phase, not confirmation that the complete campus investment is secured. The report on the first-phase financing provides the lender names.
What will determine the campus’s significance
CGK could add substantial hyperscale capacity near Indonesia’s largest business center, but the headline investment does not by itself establish how much capacity will be delivered, when it will be occupied or what environmental performance it will achieve. The Indonesian government’s 2026 economic report places the project among the country’s digital-infrastructure investments; turning that investment into wider economic impact will also depend on reliable energy, connectivity, customers and operational execution.
- Power delivery: PLN energization timing, redundancy and staged availability will determine whether the supply arrangement becomes usable campus capacity.
- Construction and commissioning: Each building must progress beyond structural completion through systems installation, testing and customer readiness.
- Commercial demand: Hyperscalers, cloud providers, AI businesses and enterprises must contract for capacity; no specific CGK customer or pre-lease is established in the cited project reporting.
- Later phases: Scaling toward 500 MW and potentially 1 GW requires further construction, funding, infrastructure and demand.
- Measured sustainability: Operating PUE, water-consumption data and renewable procurement details will show how performance compares with targets.
Commercial readers should seek current commissioning schedules, available MW by building, rack-density and liquid-cooling specifications, carrier access, renewable-energy options and service-level terms directly from Digital Edge. No public CGK pricing or standard reservation schedule is established in the available project information.
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