The Antminer X5 is an ASIC for Monero. The most widespread formulation on product cards, in hardware aggregators and in reviews. It misleads on the very thing a dedicated machine is bought for. Bitmain itself describes the X5 as built on RISC-V architecture processors, that is on general purpose cores, and the measured efficiency lead over an ordinary desktop processor is less than 1.3 times. A real ASIC wins by hundreds and thousands of times. It is more accurate to describe the X5 as a dense build of general purpose processors in a miner chassis.
The Antminer X5 pays for itself in four to six months. Such periods appear in seller marketing materials and in showcase reviews. Current figures do not support them. On our August 1, 2026 calculation the breakeven threshold on electricity alone sits around 0.14 euros per kilowatt hour, while the final rate in Spain for most buyers is 0.15 to 0.20 euros. The machine is in the red on power alone, so there is no capital payback at all, not merely a slow one. We do not calculate payback periods where none exist.
The Antminer X9 can be ordered, shipping in July 2026. Preorders for the X9 still sit on several shops with wording about a July 2026 batch. Bitmain pulled the model from the market in mid May 2026 before the first shipments, and resellers were returning prepayments. Not a single machine reached a buyer, which means the claimed 1,000 kH/s at 2,472 W has never been independently verified. Paying for a preorder of a withdrawn model is not worth it at any discount.
RandomX version 2 was activated on the main network in January 2026. Incorrect, and the error appears in analytical reviews. RandomX library version 2.0.1 did indeed come out, but on May 10, 2026, and it is a library release rather than a network update. It is not activated on the Monero main network. As of August 1, 2026 the protocol version in force is still the sixteenth, activated in August 2022, and no new hard fork is scheduled.
FCMP plus plus went live on the main network on May 6, 2026. Also incorrect, and the confusion came from the same circle of sources. What went live on May 6, 2026 was the second test network, the FCMP plus plus beta stressnet, together with the new CARROT address scheme. The first stressnet started on October 3, 2025. Neither FCMP plus plus nor CARROT is active on the main network as of the build date of this page, and no protocol update date is set.
In August 2025 Monero survived a successful 51 percent attack. The wording spread widely, including through major industry outlets and statements by the pool operator itself. The balanced picture is different. The share was on the order of 28 to 39 percent, the edge over the last hundred blocks was short lived, and the method was withholding found blocks rather than rewriting the history of the chain. The reorganisation was 6 blocks deep against the 10 confirmations required, no double spends were publicly recorded, and it ended with the coordination of the operator falling apart after an attack on their infrastructure.
Ring size in Monero is 11. Four years out of date. Ring size was raised to 16, that is 15 decoys, in August 2022 by the sixteenth version of the protocol, the same update that brought Bulletproofs plus and view tags. The figure 11 still turns up in reference sites and in tutorials, including ones that look recent.
Monero has an emission cap. There is no cap and none is planned. The main curve ended in May 2022 at roughly 18,132,000 XMR, after which open ended tail emission of 0.6 XMR per block took over. Reference sites that plug in a fixed maximum here by analogy with Bitcoin are wrong conceptually: a permanent reward in Monero is a deliberate decision, not an oversight.
Monero is mined on graphics cards like everything else. On this algorithm graphics cards lose to processors, and that is a rare case in the industry. RandomX is built around complex control flow, branching and random memory access, while a graphics card is strong at masses of identical simple operations. Guides that offer GPUs as the main way to mine XMR are simply carrying habits over from other algorithms.
Monero privacy works the same way as in networks with shielded addresses. The difference is fundamental and matters in practice. In networks with optional privacy, shielded transactions are a minority, and the very fact that the shielded mode is being used is visible from outside. On Monero privacy is mandatory for all transactions since 2017, so there is nothing to stand out with: anonymity comes not only from the cryptography but from everyone else behaving in exactly the same way.
Monero hashrate reflects sales of dedicated hardware. It does not, and this trips people up when planning. Network power is made up of a very large number of ordinary processors, including rented cloud instances and infected machines belonging to other people. It can grow or fall noticeably in a week for reasons tied neither to the coin price nor to the hardware market, and forecasting it by the logic of networks with ASICs does not work.