Sangha Opens Bitcoin 20MW Bitcoin Mining Facility In Texas
Briefly

Sangha Opens Bitcoin 20MW Bitcoin Mining Facility In Texas
"Sangha Renewables announced the energization of its 19.9-megawatt bitcoin mining facility in Ector County, West Texas today, in partnership with Links Genco and TotalEnergies. The project operates behind-the-meter on a 150-megawatt solar farm, combining renewable energy generation with digital infrastructure to explore new revenue streams for the energy sector. The facility, developed with support from Links Genco, uses bitcoin mining to provide dispatchable industrial demand that aligns with variable renewable output."
"Links Genco provided energy structuring and grid compliance services, helping Sangha configure a load profile that complements solar generation while mitigating exposure to transmission constraints and local curtailment, according to a note shared with Bitcoin Magazine. Back in May, Sangha broke ground on the bitcoin mining facility. The project, developed with an independent power producer, now known as TotalEnergies, was built on an existing solar site in efforts to turn underutilized renewable assets into profitable bitcoin-generating operations."
Sangha Renewables energized its 19.9-megawatt bitcoin mining facility in Ector County, West Texas, operating behind-the-meter on a 150-megawatt solar farm. The facility pairs renewable generation with digital infrastructure to capture value from excess solar output and create dispatchable industrial demand. Links Genco provided energy structuring and grid compliance services to shape a load profile that complements solar generation and reduces exposure to transmission constraints and local curtailment. The project was developed with an independent power producer now known as TotalEnergies, which will provide retail power solutions, balancing services, supplemental grid power, and structured energy products. Sangha will own and operate the mining data center, deploy high-efficiency hardware, and manage load to maximize utilization during periods of excess solar generation.
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