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Thursday, June 12th, 2025

    Time Event
    12:02a
    Talen Energy and Amazon Sign Nuclear Power Deal To Fuel Data Centers
    Amazon Web Services has signed a long-term deal with Talen Energy to receive up to 1,920 megawatts of carbon-free electricity from the Susquehanna nuclear plant through 2042 to support AWS's AI and cloud operations. The partnership also includes plans to explore new Small Modular Reactors and expand nuclear capacity amid rising U.S. energy demand. Utility Drive reports: Under the PPA, Talen's existing 300-MW co-location arrangement with AWS will shift to a "front of the meter" framework that doesn't require Federal Energy Regulatory Commission approval, according to Houston-based Talen. The company expects the transition will occur next spring after transmission upgrades are finished. FERC in November rejected an amended interconnection service agreement that would have facilitated expanded power sales to a co-located AWS data center at the Susquehanna plant. The agency is considering potential rules for co-located loads in PJM. Talen expects to earn about $18 billion in revenue over the life of the contract at its full quantity, according to an investor presentation. The contract, which runs through 2042, calls for delivering 840 MW to 1,200 MW in 2029 and 1,680 MW to 1,920 MW in 2032. Talen will act as the retail power supplier to AWS, and PPL Electric Utilities will be responsible for transmission and delivery, the company said. Amazon on Monday said it plans to spend about $20 billion building data centers in Pennsylvania. "We are making the largest private sector investment in state history -- $20 billion-- to bring 1,250 high-skilled jobs and economic benefits to the state, while also collaborating with Talen Energy to help power our infrastructure with carbon-free energy," Kevin Miller, AWS vice president of global data centers, said.

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    2:40p
    World Bank Lifts Ban on Funding Nuclear Energy in Boost To Industry
    The World Bank is lifting its decades-long ban on financing nuclear energy, in a policy shift aimed at accelerating development of the low-emissions technology to meet surging electricity demand in the developing world. From a report: In an email to staff on Wednesday, Ajay Banga, the World Bank president, said it would "begin to re-enter the nuclear energy space" [non-paywalled source] in partnership with the International Atomic Energy Agency, the UN nuclear watchdog which works to prevent proliferation of nuclear weapons. "We will support efforts to extend the life ofÂexisting reactors in countries that already have them, and help support grid upgrades andÂrelated infrastructure," the email said. The shift follows advocacy from the pro-nuclear Trump administration and a change of government in Germany, which previously opposed financing atomic energy due to domestic political opposition to the technology. It is part of a wider strategy aimed at tackling an expected doubling of electricity demand in the developing world by 2035. Meeting this demand would require annual investment in generation, grids and storage to rise from $280 billion today to $630 billion, Banga said in the memo seen by the Financial Times.

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    4:48p
    Anker Recalls Over 1.1 Million Power Banks Due To Fire and Burn Risks
    Anker has issued a recall for its PowerCore 10000 power bank (model A1263) due to a "potential issue with the lithium-ion battery" that could pose a fire safety risk. An anonymous reader adds: The company has received 19 reports of fires and explosions that have caused minor burn injuries and resulted in property damage totaling over $60,700, according to the US Consumer Product Safety Commission (USCPSC). The recall covers about 1,158,000 units that were sold online through Amazon, Newegg, and eBay between June 2016 and December 2022. The affected batteries can be identified by the Anker logo engraved on the side with the model number A1263 printed on the bottom edge. However, Anker is only recalling units sold in the US with qualifying serial numbers. To check if yours is included, you'll need to visit Anker's website.

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    8:10p
    Engineer Creates First Custom Motherboard For 1990s PlayStation Console
    An anonymous reader quotes a report from Ars Technica: Last week, electronics engineer Lorentio Brodesco announced the completion of a mock-up for nsOne, reportedly the first custom PlayStation 1 motherboard created outside of Sony in the console's 30-year history. The fully functional board accepts original PlayStation 1 chips and fits directly into the original console case, marking a milestone in reverse-engineering for the classic console released in 1994. Brodesco's motherboard isn't an emulator or FPGA-based re-creation -- it's a genuine circuit board designed to work with authentic PlayStation 1 components, including the CPU, GPU, SPU, RAM, oscillators, and voltage regulators. The board represents over a year of reverse-engineering work that began in March 2024 when Brodesco discovered incomplete documentation while repairing a PlayStation 1. "This isn't an emulator. It's not an FPGA. It's not a modern replica," Brodesco wrote in a Reddit post about the project. "It's a real motherboard, compatible with the original PS1 chips." It's a desirable project for some PS1 enthusiasts because a custom motherboard could allow owners of broken consoles to revive their systems by transplanting original chips from damaged boards onto new, functional ones. With original PS1 motherboards becoming increasingly prone to failure after three decades, replacement boards could extend the lifespan of these classic consoles without resorting to emulation. The nsOne project -- short for "Not Sony's One" -- uses a hybrid design based on the PU-23 series motherboards found in SCPH-900X PlayStation models but reintroduces the parallel port that Sony had removed from later revisions. Brodesco upgraded the original two-layer PCB design to a four-layer board while maintaining the same form factor. [...] As Brodesco noted on Kickstarter, his project's goal is to "create comprehensive documentation, design files, and production-ready blueprints for manufacturing fully functional motherboards." Beyond repairs, the documentation and design files Brodesco is creating would preserve the PlayStation 1's hardware architecture for future generations: "It's a tribute to the PS1, to retro hardware, and to the belief that one person really can build the impossible."

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    9:30p
    PCI Express 7.0 Specs Released
    The PCI-SIG, which oversees the development of the PCIe specification, has officially released the final spec for PCI Express 7.0. "The PCIe 7.0 specification increases the per-lane data transfer rate to 128 GT/s in each direction, which is twice as fast as PCIe 6.0 supports and four times faster than PCIe 5.0," reports Tom's Hardware. "Such a significant performance increase enables devices with 16 PCIe 7.0 lanes to transfer up to 256 GB/s in each direction, not accounting for protocol overhead. The new version of the interface continues to use PAM4 signaling while maintaining the 1b/1b FLIT encoding method first introduced in PCIe 6.0." From the report: To achieve PCIe 7.0's 128 GT/s record data transfer rate, developers of PCIe 7.0 had to increase the physical signaling rate to 32 GHz or beyond. Keep in mind that both PCIe 5.0 and 6.0 use a physical signaling rate of 16 GHz to enable 32 GT/s using NRZ signaling and 64 GT/s using PAM4 signaling (which allows transfers of two bits per symbol). With PCIe 7.0, developers had to boost the physical frequency for the first time since 2017, which required tremendous work at various levels, as maintaining signal integrity at 32 GHz over long distances using copper wires is extremely challenging. Beyond raw throughput, the update also offers improved power efficiency and stronger support for longer or more complex electrical channels, particularly when using a cabling solution, to cater to the needs of next-generation data center-grade bandwidth-hungry applications, such as 800G Ethernet, Ultra Ethernet, and quantum computing, among others. [...] With the PCIe 7.0 standard officially released, members of the PCI-SIG, including AMD, Intel, and Nvidia, can begin finalizing the development of their platforms that support the PCIe specifications. PCI-SIG plans to start preliminary compliance tests in 2027, with official interoperability tests scheduled for 2028. Therefore, expect actual PCIe 7.0 devices and platforms on the market sometime in 2028 - 2029, if everything goes as planned. PCI-SIG also announced that pathfinding for PCIe 8.0 is underway, and members of the organization are actively exploring possibilities and defining capabilities of a standard that they are going to use in 2030 and beyond. "Interestingly, when asked whether PCIe 8.0 would double data transfer rate to 256 GT/s in each direction (and therefore enable bandwidth of 1 TB/s in both directions using 16 lanes), Al Yanes, president of PCI-SIG, said that while this is an intention, he would not like to make any definitive claims," reports Tom's Hardware. "Additionally, he stated that PCI-SIG is looking forward to enabling PCIe 8.0, which will offer higher performance over copper wires in addition to optical interconnects."

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