Renewable Power
Solar-first generation
Utility-scale photovoltaic arrays supply clean, dispatchable electricity directly to the campus — reducing grid dependence and locking in long-term energy costs.
- Source
- 100% Solar
- Land
- Rural NC

Pee Dee Solar Solutions is building a vertically integrated green data center in Anson County, North Carolina — where on-site solar generation, battery storage, and high-performance compute converge into one resilient, revenue-producing asset.

Pee Dee Solar Solutions is not a service provider or a developer for hire. We are a vertically integrated green data center company building our own renewable-powered compute campus in Anson County, North Carolina.
By combining on-site solar generation, battery storage, and containerized high-performance compute, we are proving a new model: clean energy directly powering the digital infrastructure that the modern economy depends on.

Our vision is straightforward: build a green data center that generates its own renewable power, stores it efficiently, and uses it to run high-performance compute — all on one site, owned and operated by us.
This is our facility, our roadmap, and our investment. We are not developing projects for third parties. We are building a durable digital infrastructure company anchored in the Pee Dee region.
To build and operate a renewable-powered data center that creates long-term economic value through clean energy, technological innovation, and community investment.
Creating locally owned renewable energy systems that reduce reliance on traditional power sources.
Developing clean energy solutions while respecting the land and natural resources.
Connecting renewable energy with next-generation computing infrastructure.
Creating pathways for education, workforce development, and economic opportunity.
“The future of data infrastructure is renewable, resilient, and built where the energy is.”
Pee Dee Solar Solutions owns and operates every layer of the stack — from solar generation and battery storage to the compute hardware running inside our green data center.
Our solar array is designed to feed the data center first — reducing grid dependence and locking in a long-term cost of energy.
“Owning the generation source lets us control the largest cost input of a data center.”
Battery storage shifts low-cost daytime solar into nighttime operating hours, smoothing output and improving unit economics.
“A renewable energy campus that produces, stores, and intelligently manages its own power.”
Our containerized micro data center turns renewable energy directly into digital revenue — starting with blockchain compute and scaling to HPC and AI workloads.
“The future economy demands more compute — and that compute should be powered by clean, owned energy.”
On-site solar generates the lowest-cost power available to the campus.
Batteries shift solar into 24/7 dispatchable power for compute loads.
Compute hardware turns owned energy into higher-value digital output.
Hybrid solar + battery + grid pilot
In Progress
Add containers, expand solar & battery
Planned
Microgrid-style operation, minimal grid
Planned
Fully off-grid green data infrastructure
Long-Term
STEM, trades & wellness reinvestment
Ongoing
Our approach is grounded in long-term thinking — infrastructure that performs today and continues delivering value for decades.
A modular, solar-powered compute pilot in Anson County, North Carolina — designed to convert clean energy into digital revenue and prove the economics before we scale.

Phase 1 is a hybrid system combining ~25 kW of on-site solar, 50–100 kWh of battery storage, and grid backup to power a containerized micro data center running approximately 30 kW of continuous compute — initially blockchain workloads for fast, measurable revenue.

A vertically integrated renewable campus in Anson County, North Carolina — where utility-scale solar generation directly powers next-generation compute infrastructure and long-duration energy storage.
Renewable Power
Utility-scale photovoltaic arrays supply clean, dispatchable electricity directly to the campus — reducing grid dependence and locking in long-term energy costs.
Digital Infrastructure
On-site data center hosting Bitcoin mining and high-density computing — fully renewable, air-and-liquid cooled, and engineered as a flexible grid asset.
Community Development
Local jobs, skilled trades, and long-term tax base — creating durable value from a resource the Pee Dee region already has in abundance.
A closed-loop renewable ecosystem — every kilowatt is generated, stored, and monetized on-site.
Solar Array
Utility-scale PV generation
01Energy Storage
Grid-resilient battery banks
02Green Compute
On-site data center + mining
03Revenue & Grid
Digital assets + surplus power
04Pee Dee Solar Solutions is developing a portfolio of solar, storage, and green compute assets designed to deliver durable, real-world returns while transforming the communities that host them.
A diversified thesis grounded in physical assets, real utility, and community-scale impact.
Utility-grade solar generation across the Carolinas — origination, permitting, and long-term operation of dispatchable clean power.
Green data centers powering Bitcoin mining, HPC, and future AI workloads with on-site renewable energy.
Rural economic development, workforce training, and STEM programs that turn energy assets into community equity.
A multi-phase renewable energy campus engineered to compound value across decades of operation.
We're publishing our execution phases in full — including where we are today. Land was cleared in March 2026; solar, containers, and building infrastructure are not yet installed. Each phase below de-risks the next.
Groundbreaking in March 2026. Parcel boundaries confirmed, access evaluated, and the site is now cleared and ready for construction.
Engaging the utility, defining interconnection requirements, finalizing the one-line energy design, container layout, and electrical architecture.
Sourcing the container, ~10 used ASIC miners, ~25 kW solar array, 50–100 kWh battery, and electrical gear. Site build-out begins once the $50K Phase 1 target is met.
Install monitoring and remote access, test solar, storage, and load behavior, then ramp the ~30 kW compute load into a stable continuous operating pattern.
Add containers, expand solar and battery capacity, operate as a microgrid-style platform with minimal grid dependency, and transition toward a fully off-grid green data infrastructure system.
Rigorous environmental, permitting, and community-engagement standards on every site — because durable returns require durable trust.
Working with utilities, technology providers, and municipal leaders to compound advantages across our own green data center value chain.
Modular, repeatable infrastructure playbook — engineered so each new site accelerates the next.
We're developing a portfolio of renewable energy infrastructure — beginning with a solar-powered green data center in Anson County, NC — that combines clean generation, storage, and compute into long-lived, cash-flowing assets.
Investors seeking real-asset exposure to renewable infrastructure, with a long-term horizon and interest in community-scale impact alongside financial return.
Phase 1 targets a $50K commitment for the pilot green data center — deliberately structured to prove unit economics before scaling into storage and expanded compute.
Revenue is diversified across renewable energy generation, digital infrastructure (Bitcoin mining and HPC), and long-term technology expansion — de-correlated cash flows on a shared solar base.
Request the investor deck below and our team will follow up to schedule a walkthrough of the project economics, roadmap, and risk framework.
Explore the campus — from solar arrays and electrical infrastructure to the green data center, future battery storage, and preserved conservation areas.

Modular halls housing high-density Bitcoin mining and HPC workloads, cooled with liquid and airflow strategies for peak efficiency.
Modular racks engineered for Bitcoin mining, HPC, and future AI inference workloads at low PUE.
Ground-mount PV arrays sized to the campus load profile with intelligent curtailment.
Battery systems shape solar output into 24/7 dispatchable clean power for compute.
Liquid and free-air cooling loops tuned to Carolina climate for year-round efficiency.
Intelligent EMS balances generation, storage, and load in real time across the campus.
Layered physical, network, and operational security aligned to SOC-grade practices.
A closed-loop microgrid that converts renewable generation into resilient digital infrastructure.
Numbers below will be populated as engineering, siting, and interconnect milestones are finalized.







Every phase of the Pee Dee campus is designed around long-term local benefit: local workforce programs, STEM education, conservation buffers, and durable rural economic development.
Investors and community supporters — join us in developing a renewable compute campus purpose-built for the digital economy.
A modular, solar-powered compute platform that converts energy into revenue. Phase 1 combines solar generation, battery storage, and grid backup to power a containerized micro data center — the disciplined starting point for a larger green data infrastructure business.
Disciplined, component-level allocation designed to reach first revenue quickly.
Approximately 10 used ASIC units running under a hybrid energy stack.
Illustrative monthly range depending on uptime and energy conditions.
Storage shifts low-cost daytime solar into nighttime operating hours.
Solar is generated on site, stored in batteries when it makes sense, and supplemented by the grid when needed. That energy powers compute hardware performing monetizable workloads — starting with blockchain compute for immediate revenue and clear performance measurement.
Solar Array
~25 kW
Battery Storage
50–100 kWh
Containerized Compute
~30 kW
Grid Backup
Reliability
Illustrative energy mix
~30 kW load · 10 ASICs · 25 kW solar · 50–100 kWh storage
| Component | Specification | Estimated Budget |
|---|---|---|
| Containerized compute unit | Modified / prefab micro data center shell | $10,000 |
| Used ASIC compute hardware | ~10 units at ~3 kW each | $15,000 |
| Solar generation | ~25 kW installed system | $20,000 |
| Electrical integration | Panels, breakers, wiring, setup | $5,000 |
| Phase 1 Total | $50,000 | |
Payback framed at ~6–16 months depending on performance. Investor return structures targeted around 1.5x–2x through revenue share.
$7,500
Monthly revenue
Monthly profit
$2,500
$12K–$15K
Monthly revenue
Monthly profit
$7,000
$20,000+
Monthly revenue
Monthly profit
$15,000
Solar + battery + grid backup powering a single containerized micro data center.
01Add containers, expand solar capacity, and deepen battery storage.
02Operate as a microgrid-style platform with minimal grid dependency.
03Transition into a fully off-grid green data infrastructure system.
04Instead of selling electricity at low rates, energy is used internally to produce higher-value digital output.
Lower energy cost plus higher uptime equals better margins. Every design choice serves that equation.
Positioned as a modular data platform — not a single-use mining site — aligned with long-term compute demand.
Cash flow is designed to fund STEM, workforce, agricultural, and wellness initiatives in Anson County.
Capital funds the containerized compute unit, used ASIC hardware, solar generation, battery-enabled operating efficiency, and electrical integration. Phase 1 goes operational, generates cash flow, and produces real performance data to support the next raise, grant strategy, or strategic partnership.
Closing Positioning
“An energy-backed digital infrastructure business with a clear path to stronger energy independence over time. Phase 1 is not the end state — it is the disciplined starting point of a larger infrastructure platform.”
Request the full plan →Whether you are considering an investment, covering the project, or want to learn more about the Pee Dee Solar Green Data Center — this is where the conversation starts.
Our flagship site is in Anson County, North Carolina — chosen for its land availability, grid access, and strategic position in the Pee Dee region.
A transparent, considered process — designed to answer questions and move qualified investors toward the right opportunity.
Share your inquiry through the form or a discovery call. We listen first and align on what you are looking for.
Qualified investors receive the Phase 1 business plan, financial model, and project roadmap.
Our team answers technical, financial, and timeline questions with transparent, project-specific data.
We move toward documentation, site visits, and participation — with quarterly reporting from day one.
Reach out today — whether you are an investor, member of the media, or community member interested in the project.