6 Best Bitcoin Mining Hardware ASICs Comparison In 2017

ProgPoW resources

Informational

May 2, 2018 EIPs/eip-1057.md at master · ethereum/EIPs · GitHub
May 3, 2018 ProgPOW/README.md at master · ifdefelse/ProgPOW · GitHub
May 3, 2018 EIP-ProgPoW: a Programmatic Proof-of-Work - EIPs - Fellowship of Ethereum Magicians
May 29, 2018 The Problem with Proof of Work - K. L. Minehan - Medium
October 25, 2018 Understanding ProgPoW - IfDefElse - Medium
Nov 17, 2018 progpow-wiki/ProgPoW.md at master · MariusVanDerWijden/progpow-wiki · GitHub
December 10, 2018 ProgPoW - A Programmatic Proof of Work by Kristy-Leigh Minehan (Devcon4) - YouTube
January 10, 2019 ProgPoW FAQ - IfDefElse - Medium
January 14, 2019 What GPU miners may not know about ProgPoW - Andrea Lanfranchi - Medium
January 17, 2019 ProgPoW: Progress Update #1 - IfDefElse - Medium
February 14, 2019 Council of Denver - HackMD
February 17, 2019 The Miners Benchmark ProgPoW - Theodor Ghannam - Medium
February 21, 2019 Ethereum ProgPoW Explained - Crypto Mining Blog
March 18, 2019 13 Questions about Ethereum’s Movement to ProgPow by Jon Stevens - Medium
March 20, 2019 Skeptical about #ProgPoW? I am too! - Bryant Eisenbach - Medium
March 27, 2019 Comprehensive ProgPoW Benchmark by Theodor Ghannam - Medium
March 28, 2019 My stance on Progpow by Martin Holst Swende
March 30, 2019 The Cost of ASIC Design - IfDefElse - Medium
April 12, 2019 Ethereum ProgPoW Update - Crypto Mining Blog
September 23, 2019 In Defense of ProgPow : ethereum
February 4, 2020 Antminer E3 Stops Mining Ethereum Classic, Just Over a Month Remaining for Ethereum - Crypto Mining Blog

Ethereum Magicians

August 2, 2108 Final Request From the GPU Mining Community - EIPs - Fellowship of Ethereum Magicians
August 26, 2018 EIP-1355: Ethash 1a - EIPs - Fellowship of Ethereum Magicians
September 3, 2108 What has to be done to get ProgPoW on Ethereum - EIPs - Fellowship of Ethereum Magicians
January 1, 2019 Guidelines for ProgPow Hardware Developers - Primordial Soup - Fellowship of Ethereum Magicians
February 2, 2019 On the progpow audit - Action Item - Fellowship of Ethereum Magicians
March 3, 2019 My technical take on ProgPow’s weakest link - EIPs - Fellowship of Ethereum Magicians
March 4, 2019 Governance concerns after listening to ~all ProgPow discussions on Core Dev calls - Process Improvement - Fellowship of Ethereum Magicians
March 29, 2019 Motion to NOT include ProgPow without audit - EIPs - Fellowship of Ethereum Magicians
March 30, 2109 ProgPoW - A Compilation of Reference Material - Core EIPs - Fellowship of Ethereum Magicians
May 23, 2019 ProgPoW Audit Delay Issue - EIPs - Fellowship of Ethereum Magicians
July 8, 2019 Ensuring ETH 1.x’s Success Without Disenfranchising The Community - Ethereum 1.x Ring - Fellowship of Ethereum Magicians
August 8, 2019 EIP-centric forking - Process Improvement - Fellowship of Ethereum Magicians

YouTube

October 8, 2018 Cardano Rust Project | Petro Public Sale | ProgPow | WSJ Attacks Shapeshift (October 2nd, 2018) - YouTube
October 23 2018 Ethereum Mining News | FPGA’s Mining | ProgPoW LIKELY | Profitability | Hard Fork Delayed 2019 - YouTube
December 13, 2018 Why ProgPoW is BAD for Ethereum - YouTube
December 19, 2018 Bitcoin Rallies Towards 4k - Why? Ethereum Launches ProgPoW GPU Mining Testnet | New HD Minable Coin - YouTube
January 4, 2019 Ethereum moving to PROGPOW! What’s it mean for Miners? - YouTube
January 4, 2019 Ethereum ProgPoW CONFIRMED! - YouTube
January 5, 2019 Mining on the ProgPoW Gangnam Ethereum Testnet! - YouTube
January 6, 2019 6 x Asus RX 570 4GB ProgPoW Gangnam Ethereum Testnet TEST! - YouTube
January 7, 2019 ProgPOW Explained - A Brave New World for Ethereum Miners? - YouTube
January 20, 2019 CES2019 - North American Bitcoin Conference - GRIN / BEAM - PROGPOW and more! - YouTube
January 23, 2019 Ethereum to ZERO? Eth Chain Split. ProgPow & ETC 51 % Attack. GPU vs ASIC Miners. - YouTube
January 29, 2019 Nick Johnson: Future of the Ethereum Name Service and thoughts on ProgPOW - YouTube
February 19, 2019 Ethereum Hard Fork Soon? ProgPoW Voting? - YouTube
February 20, 2019 ProgPoW Merged Into Parity Ethereum | ETHNews Brief - YouTube
February 25, 2019 How does R7 370, R9 380,380x,390 and more perform on PROGPOW and other Cryptocurrencies in 2019? - YouTube
March 7, 2019 PROGPOW Explained in under 4 min. & why it matters to GPU Miners - YouTube
March 19, 2019 What is BBT doing with PROGPOW, Why all of the testing? - YouTube
March 25, 2019 eVGA RTX 2080Ti FTW3 11GB DDR6 Cryptocurrency Performance Test PROGPOW ETH RVN BEAM GRIN29 GRIN31 - YouTube
March 29, 2019 Ethereum & ProgPoW… What Is Going On? - YouTube
May 2, 2019 Ethereum ProgPow Audit Has Been Funded & Approved - YouTube
July 5, 2019 Mining News! Monero RandomX | Ethereum ProgPoW 2019 Update | Grin Embraces ASIC miners | Zel Zelhash - YouTube
July 24, 2019 Ethereum ProgPoW AUDIT Is Finally Getting Started… - YouTube
September 13, 2019 Ethereum ProgPoW Algorithm Audits Finalized - YouTube
September 24, 2019 An Argument Against ProgPoW a Day - Part 1 - YouTube
October 4, 2019 82 - Defending ProgPoW with Kristy-Leigh Minehan - YouTube
October 10, 2019 #36 - Kristy-Leigh of ProgPow discusses the EIP, Satoshi, Code Contributions, and Crypto Mining 2020 - YouTube
November 24, 2019 Ethereum Classic REJECTS ProgPoW… - YouTube
December 16, 2019 Ethereum ProgPoW Implementation Is STILL Coming Right? - YouTube
December 26, 2019 Panel: Least Authority’s ProgPoW Audit (Devcon5) - YouTube

Podcasts

April 11, 2019 https://podcasts.apple.com/us/podcast/blockchannel/id1307284590?i=1000434669782
September 10, 2019 https://podcasts.apple.com/us/podcast/ethhub-weekly-recap-78-ethboston-compound-drama-eth2/id1443920565?i=1000449269536
September 25, 2019 https://podcasts.apple.com/us/podcast/ethhub-weekly-recap-80-progpow-discussion-doj-extortion/id1443920565?i=1000451214746
October 4, 2019 https://podcasts.apple.com/us/podcast/82-defending-progpow-with-kristy-leigh-minehan/id1436674724?i=1000452312677

Official Updates

May 18, 2019 Dev Call #38 - May 18, 2018
August 24, 2018 Dev Call #45 - August 24, 2018
September 28, 2018 Dev Call #47 - September 28, 2018
January 4, 2019 Dev Call #52 - January 4, 2019
January 18, 2019 Dev Call#53 - January 18, 2019
February 1, 2019 Dev Call #54 - February 1, 2019
February 11, 2019 Ethereum Cat Herders Update#1 : EthereumCatHerders
March 15, 2019 Dev Call #57 - March 15, 2019
May 24, 2019 Dev Call #62 - May 24, 2019
July 18, 2019 Dev Call #65 - July 18, 2019
September 10, 2019 ProgPoW Audits Released - Ethereum Cat Herders - Medium
September 6, 2019 Dev Call #70 - September 6, 2019
November 1, 2019 Dev Call #74 - November 1, 2019
December 13, 2019 Dev Call #77 - December 13, 2019
January 24, 2019 Dev Call #79 - January 24, 2020
February 21, 2020 Dev Call#81 - February 21, 2020

News Articles

January 4, 2019 Ethereum Core Devs to Move Forward With ASIC-Resistant PoW Algorithm
January 5, 2019 Ethereum (ETH) Developers Plan to Implement ASIC-Resistant Proof of Work Mining Algorithm
January 7, 2019 BREAKING: Ethereum Classic (ETC) Hit With 51 Percent Attack A Week Before Ethereum (ETH) Constantinople Hard Fork – Crypto.IQ | Bitcoin and Investment News from Inside Experts You Can Trust
January 8, 2019 ETH Dev Suggests Moving to ‘ASIC-Friendly Algorithm’ After ProgPoW Decision
January 8, 2019 Ethereum Miner Linzhi Calls Out Project Coders for Proposed ASIC Ban - CoinDesk
January 8, 2019 Ethereum (ETH) Core Developers Propose an ASIC Resistant Upgrade - Ethereum World News
January 9, 2019 Ethereum Classic (ETC) 51% attack proof that shitcoins have no hope of succeeding? | CaptainAltcoin
January 9, 2019 What’s ProgPoW? Meet the hot new debate in the Ethereum community | finder.com.au
January 18, 2019 Ethereum Core Devs Constantinople Meeting to Be Held on Jan 18
February 1, 2019 Ethereum Core Dev Call #54: Waiting for ProgPoW - The Block
February 3, 2019 Will Ethereum Adopt ‘ProgPoW,’ the ASIC-Resistant Mining Algorithm? | CryptoSlate
February 4, 2019 Is Ethereum Going to be Adopting ASIC-Resistant ‘ProgPow’ as a Mining Algorithm?
February 15, 2019 Ethereum Core Dev Call #55: ProgPoW audits and Vitalik’s Phase 2 updates - The Block
February 15, 2019 Recompensas por minería en Ethereum llegan a mínimo histórico | CriptoNoticias
February 28, 2019 Coinhive dice adiós a la minería web por caída del mercado | CriptoNoticias
March 6, 2019 Ethereum Core Dev Meeting : ProgPow Implementation Receives More Than 50 Percent Votes from Miners - CryptoNewsZ
March 7, 2019 The ASIC Resistant Mining Campaign from Ethereum Miners Is Just Getting Started
March 12, 2019 Ethereum’s ProgPoW Proposal: An Expensive Game of Whack-a-Mole - CoinDesk
March 12, 2019 Ethereum’s ProgPoW Mining Change to Be Considered for Istanbul Upgrade - CoinDesk
March 14, 2019 As ProgPoW Aimed at Stopping ASIC Mining Gets Supporting Votes, New Conspiracies and Debates Appear
March 15, 2019 Ethereum’s ProgPow Mining Change Approved Again, But Timeline Unclear - CoinDesk
March 17, 2019 Ethereum Devs Once Again Approve ASIC-Resistant Algorithm ProgPoW
March 18, 2019 Ethereum (ETH) to Be ASIC-Resistant, No Date Set However - Cryptovest
March 27, 2019 Aumentan desacuerdos en Ethereum por decisión de avanzar con ProgPoW | CriptoNoticias
March 29, 2019 Bitmain Co-founder, Jihan Wu: ASIC Miners Makes a Blockchain Network More Decentralized - Coindoo
April 8, 2019 A Fight Over Specialized Chips Threatens an Ethereum Split | WIRED
April 26, 2019 Funding Approved for Audit of Ethereum’s ProgPoW Mining Proposal - CoinDesk
April 28, 2019 Ethereum Core Devs: Funding for ProgPoW 3rd-Party Audit Approved
April 20, 2019 Ethereum’s Recent Decline in Hashrate ‘Not Surprising’: Cyber Threat Expert Explains | CryptoGlobe
June 14, 2019 Proposed Ethereum Istanbul Hard Fork Combed With A Fine Tooth at Cat Herders Meeting
July 13, 2019 ¿Qué es ProgPoW? La propuesta de algoritmo contra mineros ASIC en Ethereum | CriptoNoticias
August 17, 2019 Ethereum: ProgPow will be activated on the mainnet next year as a part of Istanbul 2 - AMBCrypto
August 18, 2019 Ethereum’s ProgPoW To Be Released The First Quarter Of 2020 | UseTheBitcoin
August 19, 2019 Ethereum to Switch to ProgPoW Mining Algorithm in Upcoming Istanbul Hard Fork
September 8, 2019 Ethereum: ProgPoW high level design goals are reasonable towards achieving its intended economic effect - AMBCrypto
September 11, 2019 Chinese Firm Linzhi Set To Mass Produce Ethereum and ETC ASIC Miners As Tests Go Live
September 18, 2019 Ethereum ProgPOW author uninvited from ETC Summit due to Craig Wright association | CryptoSlate
September 19, 2019 Ethereum reveals launch dates for testing Istanbul - Decrypt
September 19, 2019 Hashing Out: ProgPoW Debate Kicks Up in Ethereum Community Again
September 19, 2019 ETC Summit Invitees List Has No Space for Kristy Minehan
September 22, 2019 Ethereum ProgPoW upgrade causing chain split more likely to be from the user side instead of the miner side - AMBCrypto
September 23, 2019 ProgPow advocate uninvited to Ethereum Classic Summit over links to Craig Wright
September 24, 2019 ProgPoW backer steps down from controversial role - Decrypt
September 25, 2019 ProgPOW author steps down as Core Scientific CTO, vows to implement algorithm on Ethereum | CryptoSlate
September 25, 2019 Ethereum ProgPoW proponent Kristy-Leigh Minehan steps down citing perceived conflict of interest - AMBCrypto
September 25, 2019 Core Scientific CTO Steps Down To Push Through Ethereum ProgPOW
September 25, 2019 ProgPoW author Kristy-Leigh Minehan resigns as CTO of Core Scientific | Cryptopolitan
September 26, 2019 New Ethereum ASIC dominates GPU mining performance | CryptoSlate
September 26, 2019 New Ethereum ASIC Fuels Discord Among Ethereum Community
September 28, 2019 The (alleged) plot against the Ethereum network - Decrypt
October 9, 2019 ProgPoW, the Algorithm Dividing the Ethereum Community: a GPU Manufacturer Ploy? - Ethereum World News
October 9, 2019 Ethereum Hard Fork Is Coming — Here’s What You Need to Know About ‘Istanbul’ – BeInCrypto October 27, 2019 Ethereum ProgPoW’s raison d’etre: To be or not to be - AMBCrypto
November 4, 2019 Aragon Opposes Change to Ethereum’s Mining Algorithm Before 2.0 Version
November 7, 2019 Aragon community against Ethereum ProgPOW
November 8, 2019 Ethereum Istanbul Hard Fork Release Date Confirmed By Core Developer
November 16, 2019 Ethereum ProgPoW audit contributors on Gitcoin to be refunded in full - AMBCrypto
November 26, 2019 Ethereum’s Buterin: PoW algorithms offering medium-level ASIC resistance can be created - AMBCrypto
December 17, 2019 Ethereum devs move ProgPoW into ‘Eligible for Inclusion’ list - AMBCrypto
January 1, 2020 [Is the ASIC Resistance dream closer to reality, despite claims of it being a myth? - AMBCrypto](https://eng.ambcrypto.com/is-the-asic-resistance-dream-closer-to-reality-despite-claims-of-it-being-a-myth/
submitted by greerso to ethereum [link] [comments]

Technical Cryptonight Discussion: What about low-latency RAM (RLDRAM 3, QDR-IV, or HMC) + ASICs?

The Cryptonight algorithm is described as ASIC resistant, in particular because of one feature:
A megabyte of internal memory is almost unacceptable for the modern ASICs. 
EDIT: Each instance of Cryptonight requires 2MB of RAM. Therefore, any Cryptonight multi-processor is required to have 2MB per instance. Since CPUs are incredibly well loaded with RAM (ie: 32MB L3 on Threadripper, 16 L3 on Ryzen, and plenty of L2+L3 on Skylake Servers), it seems unlikely that ASICs would be able to compete well vs CPUs.
In fact, a large number of people seem to be incredibly confident in Cryptonight's ASIC resistance. And indeed, anyone who knows how standard DDR4 works knows that DDR4 is unacceptable for Cryptonight. GDDR5 similarly doesn't look like a very good technology for Cryptonight, focusing on high-bandwidth instead of latency.
Which suggests only an ASIC RAM would be able to handle the 2MB that Cryptonight uses. Solid argument, but it seems to be missing a critical point of analysis from my eyes.
What about "exotic" RAM, like RLDRAM3 ?? Or even QDR-IV?

QDR-IV SRAM

QDR-IV SRAM is absurdly expensive. However, its a good example of "exotic RAM" that is available on the marketplace. I'm focusing on it however because QDR-IV is really simple to describe.
QDR-IV costs roughly $290 for 16Mbit x 18 bits. It is true Static-RAM. 18-bits are for 8-bits per byte + 1 parity bit, because QDR-IV is usually designed for high-speed routers.
QDR-IV has none of the speed or latency issues with DDR4 RAM. There are no "banks", there are no "refreshes", there are no "obliterate the data as you load into sense amplifiers". There's no "auto-charge" as you load the data from the sense-amps back into the capacitors.
Anything that could have caused latency issues is gone. QDR-IV is about as fast as you can get latency-wise. Every clock cycle, you specify an address, and QDR-IV will generate a response every clock cycle. In fact, QDR means "quad data rate" as the SRAM generates 2-reads and 2-writes per clock cycle. There is a slight amount of latency: 8-clock cycles for reads (7.5nanoseconds), and 5-clock cycles for writes (4.6nanoseconds). For those keeping track at home: AMD Zen's L3 cache has a latency of 40 clocks: aka 10nanoseconds at 4GHz
Basically, QDR-IV BEATS the L3 latency of modern CPUs. And we haven't even begun to talk software or ASIC optimizations yet.

CPU inefficiencies for Cryptonight

Now, if that weren't bad enough... CPUs have a few problems with the Cryptonight algorithm.
  1. AMD Zen and Intel Skylake CPUs transfer from L3 -> L2 -> L1 cache. Each of these transfers are in 64-byte chunks. Cryptonight only uses 16 of these bytes. This means that 75% of L3 cache bandwidth is wasted on 48-bytes that would never be used per inner-loop of Cryptonight. An ASIC would transfer only 16-bytes at a time, instantly increasing the RAM's speed by 4-fold.
  2. AES-NI instructions on Ryzen / Threadripper can only be done one-per-core. This means a 16-core Threadripper can at most perform 16 AES encryptions per clock tick. An ASIC can perform as many as you'd like, up to the speed of the RAM.
  3. CPUs waste a ton of energy: there's L1 and L2 caches which do NOTHING in Cryptonight. There are floating-point units, memory controllers, and more. An ASIC which strips things out to only the bare necessities (basically: AES for Cryptonight core) would be way more power efficient, even at ancient 65nm or 90nm designs.

Ideal RAM access pattern

For all yall who are used to DDR4, here's a special trick with QDR-IV or RLDRAM. You can pipeline accesses in QDR-IV or RLDRAM. What does this mean?
First, it should be noted that Cryptonight has the following RAM access pattern:
QDR-IV and RLDRAM3 still have latency involved. Assuming 8-clocks of latency, the naive access pattern would be:
  1. Read
  2. Stall
  3. Stall
  4. Stall
  5. Stall
  6. Stall
  7. Stall
  8. Stall
  9. Stall
  10. Write
  11. Stall
  12. Stall
  13. Stall
  14. Stall
  15. Stall
  16. Stall
  17. Stall
  18. Stall
  19. Read #2
  20. Stall
  21. Stall
  22. Stall
  23. Stall
  24. Stall
  25. Stall
  26. Stall
  27. Stall
  28. Write #2
  29. Stall
  30. Stall
  31. Stall
  32. Stall
  33. Stall
  34. Stall
  35. Stall
  36. Stall
This isn't very efficient: the RAM sits around waiting. Even with "latency reduced" RAM, you can see that the RAM still isn't doing very much. In fact, this is why people thought Cryptonight was safe against ASICs.
But what if we instead ran four instances in parallel? That way, there is always data flowing.
  1. Cryptonight #1 Read
  2. Cryptonight #2 Read
  3. Cryptonight #3 Read
  4. Cryptonight #4 Read
  5. Stall
  6. Stall
  7. Stall
  8. Stall
  9. Stall
  10. Cryptonight #1 Write
  11. Cryptonight #2 Write
  12. Cryptonight #3 Write
  13. Cryptonight #4 Write
  14. Stall
  15. Stall
  16. Stall
  17. Stall
  18. Stall
  19. Cryptonight #1 Read #2
  20. Cryptonight #2 Read #2
  21. Cryptonight #3 Read #2
  22. Cryptonight #4 Read #2
  23. Stall
  24. Stall
  25. Stall
  26. Stall
  27. Stall
  28. Cryptonight #1 Write #2
  29. Cryptonight #2 Write #2
  30. Cryptonight #3 Write #2
  31. Cryptonight #4 Write #2
  32. Stall
  33. Stall
  34. Stall
  35. Stall
  36. Stall
Notice: we're doing 4x the Cryptonight in the same amount of time. Now imagine if the stalls were COMPLETELY gone. DDR4 CANNOT do this. And that's why most people thought ASICs were impossible for Cryptonight.
Unfortunately, RLDRAM3 and QDR-IV can accomplish this kind of pipelining. In fact, that's what they were designed for.

RLDRAM3

As good as QDR-IV RAM is, its way too expensive. RLDRAM3 is almost as fast, but is way more complicated to use and describe. Due to the lower cost of RLDRAM3 however, I'd assume any ASIC for CryptoNight would use RLDRAM3 instead of the simpler QDR-IV. RLDRAM3 32Mbit x36 bits costs $180 at quantities == 1, and would support up to 64-Parallel Cryptonight instances (In contrast, a $800 AMD 1950x Threadripper supports 16 at the best).
Such a design would basically operate at the maximum speed of RLDRAM3. In the case of x36-bit bus and 2133MT/s, we're talking about 2133 / (Burst Length4 x 4 read/writes x 524288 inner loop) == 254 Full Cryptonight Hashes per Second.
254 Hashes per second sounds low, and it is. But we're talking about literally a two-chip design here. 1-chip for RAM, 1-chip for the ASIC/AES stuff. Such a design would consume no more than 5 Watts.
If you were to replicate the ~5W design 60-times, you'd get 15240 Hash/second at 300 Watts.

RLDRAM2

Depending on cost calculations, going cheaper and "making more" might be a better idea. RLDRAM2 is widely available at only $32 per chip at 800 MT/s.
Such a design would theoretically support 800 / 4x4x524288 == 95 Cryptonight Hashes per second.
The scary part: The RLDRAM2 chip there only uses 1W of power. Together, you get 5 Watts again as a reasonable power-estimate. x60 would be 5700 Hashes/second at 300 Watts.
Here's Micron's whitepaper on RLDRAM2: https://www.micron.com/~/media/documents/products/technical-note/dram/tn4902.pdf . RLDRAM3 is the same but denser, faster, and more power efficient.

Hybrid Cube Memory

Hybrid Cube Memory is "stacked RAM" designed for low latency. As far as I can tell, Hybrid Cube memory allows an insane amount of parallelism and pipelining. It'd be the future of an ASIC Cryptonight design. The existence of Hybrid Cube Memory is more about "Generation 2" or later. In effect, it demonstrates that future designs can be lower-power and give higher-speed.

Realistic ASIC Sketch: RLDRAM3 + Parallel Processing

The overall board design would be the ASIC, which would be a simple pipelined AES ASIC that talks with RLDRAM3 ($180) or RLDRAM2 ($30).
Its hard for me to estimate an ASIC's cost without the right tools or design. But a multi-project wafer like MOSIS offers "cheap" access to 14nm and 22nm nodes. Rumor is that this is roughly $100k per run for ~40 dies, suitable for research-and-development. Mass production would require further investments, but mass production at the ~65nm node is rumored to be in the single-digit $$millions or maybe even just 6-figures or so.
So realistically speaking: it'd take ~$10 Million investment + a talented engineer (or team of engineers) who are familiar with RLDRAM3, PCIe 3.0, ASIC design, AES, and Cryptonight to build an ASIC.

TL;DR:

submitted by dragontamer5788 to Monero [link] [comments]

12 Reasons to Invest in Primecoin

‎1- Primecoin‬ is the First non Hash-Cash PoW Crypto-Currency.
2- Naturally Scarce
3- Very fast confirmations - 1min/block
4- Elastic supply
5- Primecoin is sustainable
6- Primecoin is currently the “fairest” coin to mine
7- Primecoin can introduce new participants to the new digital economy
8- Proof-of-work cryptos will gradually transition toward energy-multiuse, ie providing both security & technological computing values. And Primecoin is the pioneer in this realm.
9- Primecoin has anti-centralization features
10- Primecoin captures the Wasted Energy of Bitcoin's Algorithm - The mining is actually useful
11- Primecoin has direct by-products
12- Primecoin has been developed by Sunny King, one of the most talented crypto-technologists of the rank of Satoshi Nakamoto
submitted by crypto_coiner to primecoin [link] [comments]

FPGA Mining

A FPGA opensource miner has just been released running at 80Mhps but at a cost of $585. The efficiency is stated below quoted from a post in the thread.
At 80 MHps, I will need at least 3 of these to achieve a single 5830 hashrate. That is $595.-x 3 = $1785.- at full price, vs. $190.- for the 5830.
Giving the 5830 is consuming $11.- a month in electricity, and assuming this board will consume zero electricity, it will take more than 145 months, or 12 years to recover the investment, always comparing to a 5830.
BUT:
In this thread, someone mentioned he is doing 210Mhash/sec after some optimization but he will cease public posting of his development.
Apologies but no more development information will be posted. I've been offered a 25% share from someone that owns 2 FPGA clusters. If you haven't seen that type of hardware before think a 156 FPGAs per machine.
From those posts what we can understand is that the factors that affect FPGA now are high procurement cost, low running cost and ease of scalability . What this means is that with the increasing total hash rate of the network (30Ghash/day last difficultly adjustment) the question becomes when would the difficulty render GPU inefficient in contrast to running cost?
Remember to take into account FPGAs are usually run in clusters and even though it would not be beneficial to buy one outright, those who have access to FPGA are the first movers and eventual dominant forces of the mining market.
Of course, in the end, ASIC is where it's at. Anyone? =D
Edit: read more stuff, added info.
submitted by Coz131 to Bitcoin [link] [comments]

How to mine Bitcoins with ASIC Miners Buy An ASIC or GPU For Mining Right Now? Why my GPUs beat your ASICs at crypto mining What is difference between ASIC and FPGA? Will FPGA For Mining Take Over?

FPGA- And ASIC-Based Mining Devices Page 1: The Basics Of Bitcoin Page 2: Confessions Of An Accidental Bitcoin Miner Page 3: The Mining Algorithm And CPU Mining Page 4: GPU-Based Mining And Mining I co-founded LargeCoin, Inc., and we really are developing an ASIC for Bitcoin mining. As earlier replies pointed out, the unit cost of ASICs is far lower than FPGAs once you get beyond a few hundred units. The up-front cost of ASIC production varies widely depending on the process you use. Consequently, ASIC Bitcoin mining systems can solve Bitcoin blocks much quicker and use less less electricity or power than older bitcoin mining hardware like CPUs, GPUs or FPGAs. As Bitcoin mining increases in popularity and the Bitcoin price rises so does the value of ASIC Bitcoin mining hardware. As more Bitcoin mining hardware is deployed The bitcoin mining ecosystem has undergone some massive changes over the past eight years. During the initial stage of bitcoin mining, using a computer’s processor was more than sufficient. Later on, software was developed to allow for GPU-based mining. Eventually, computers were replaced by FPGAs and the now ever-present ASIC miners. But what sets these […] FPGA and ASIC hardware have many things in common. Indeed, both of them process very similar logic function-based operations and produce an important bitcoin mining power in a very efficient way. ASIC hardware was much more powerful than the FPGA miners, in consequence, crypto enthusiasts and companies decided to move towards the latest ASIC

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How to mine Bitcoins with ASIC Miners

The Best Bitcoin Mining Hardware 2018 Reviewed: ASIC Litecoin, Ethereum Miner Rig 2020 - Duration: 1:56. 5Reviewed.com 220 views How to BitCoin mine using fast ASIC mining hardware - Duration: 27:15. ... T4D #84 - Pt 2 Bitcoin Mining, BFL ASIC vs FPGA vs GPU vs CPU - Duration: 28:50. mjlorton 63,602 views. Join Red Panda Mining's Discord Channel! - https://discord.gg/cJwmK7B Send Your Mining Rig Pics in Discord be featured in upcoming Community Mining Rigs Episodes! Ledger Nano X - https://www ... The Outlook on Cryptocurrency Mining - GPU vs ASIC vs FPGA - Duration: 19:57. VoskCoin 31,625 views. ... How Much Can You Make Mining Bitcoin With 6X 1080 Ti Beginners Guide - Duration: 19:20. What is difference between ASIC and FPGA? How does cryptocurrency mining and specific hardware work? Cryptocurrencies reviews, ICOs, exchanges, gaming sites and payment methods.

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