Uncategorized
DMD Diamond Announces the First EVM-Compatible Blockchain Powered by Asynchronous Byzantine Fault Tolerance
Austria (PinionNewswire) —
In the world of blockchain technology, there’s a fundamental problem known as the “Blockchain Trilemma.” It states that a decentralized network can only have two of three properties: decentralization, security, and scalability.
Most modern Layer-1 blockchains (L1) are forced to make tradeoffs. Ethereum sacrifices scalability for decentralization. Solana and BSC often sacrifice decentralization for speed.
HoneyBadger BFT (HBBFT) consensus, which has been successfully pioneered and deployed by DMD Diamond in its v4 mainnet, provides a mathematically elegant solution to common blockchain limitations. This is achieved by fundamentally changing the negotiation paradigm between nodes. DMD Diamond prioritizes maximum decentralization over the speed of Solana and the scalability of Ethereum. This strategic focus has clearly established DMD Diamond in a niche where its unique consensus engine makes it the preferred Layer 1 for projects requiring maximum decentralization.
The Leader Problem and the Synchronicity Trap
To understand the power of DMD Diamond’s HBBFT implementation, we must first understand why others are slow.
Most modern consensus algorithms (e.g., PBFT, Tendermint, HotStuff) rely on synchrony or partial synchrony. This means that for the network to function, nodes must have consistent clocks or wait for a message within a certain timeout. Furthermore, these systems typically use a leader-based process. One node proposes a block, and the others vote.
- Problem: If the leader acts maliciously or their internet connection is unstable, the entire network slows down or stops until a new leader is elected.
- Result: As the network grows (decentralization increases), latency increases exponentially. The network becomes slow and fragile.
HBBFT: The Asynchronous Revolution
HBBFT is the first practical asynchronous BFT consensus algorithm, and DMD Diamond is the first blockchain to combine this cooperative consensus with EVM compatibility.
The word “asynchronous” is key here. HBBFT makes no assumptions about message delivery times. The DMD Diamond network continues to function even if messages between nodes are delayed indefinitely.
In DMD’s HBBFT implementation, there is no single leader. Instead of one node proposing a block, all nodes propose their transactions simultaneously in a cooperative manner.
How does this resolve the compromise?
- Scalability without loss of decentralization: Since there is no leader, network performance does not degrade drastically when new nodes are added. DMD Diamond’s speed is limited only by the throughput of the slowest group of honest nodes, not by the latency (ping) of the farthest node.
- Resilience to adverse conditions: In traditional blockchains, a distributed denial-of-service (DDoS) attack or internet outage can halt consensus. DMD Diamond continues finalizing transactions as soon as the data arrives, regardless of how long it takes.
Under the Hood: The Three Pillars of HBBFT Technology
How does HBBFT achieve this magical result? It uses a combination of three complex cryptographic primitives, which DMD Diamond utilizes to deliver industry-first features.
1. Threshold Encryption
In traditional blockchains (like Ethereum), validators see the contents of a transaction before including it in a block. This leads to MEV (Miner Extractable Value)—frontrunning and censorship.
In DMD Diamond, transactions are encrypted by the user. Validators blindly agree on the order of transactions. Decryption occurs only after the order is fixed and cannot be changed.
- Result: Complete protection against frontrunning and censorship at the protocol level—a unique selling point for DMD Diamond’s DeFi ecosystem.
2. Erasure Coding
Instead of each node broadcasting a full block of data to all others (which clogs the communication channel), HBBFT splits the data into N fragments. To recover the original data, it is sufficient to collect any N-f fragments (where f is the number of possible dishonest nodes).
- Result: Enormous bandwidth savings. This allows the DMD Diamond network to scale, processing more data without overloading the network.
3. Atomic Broadcast Consensus (ACS)
This is a mechanism that allows all nodes to agree on which encrypted data packets will be included in the next block without electing a leader.
Comparison Chart: HBBFT vs. Others

Conclusion
DMD Diamond’s implementation of HBBFT solves the scalability and decentralization problem not by overclocking hardware, but by eliminating the bottleneck—time synchronization and dependence on a leader.
By allowing nodes to operate at different speeds and process data in parallel, DMD Diamond creates a network that is:
- Secure as Bitcoin (and even more so, thanks to its asynchronous nature).
- Fast as modern L1s.
- Fair (protected from transaction manipulation via Threshold Encryption).
This makes DMD Diamond an ideal candidate for the next generation of DeFi applications and enterprise blockchains, where reliability and fairness are more important than hype.
Find more information at bit.diamonds
Read the whitepaper at GitHub
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AIT Email Marketing Helps Businesses Take Control With Their Own Fully Managed Email Server for High-Volume Campaigns
FAYETTEVILLE, NCBrowser-based platform starts at $46.74/month for up to 240K emails and 20K contacts, with automation, segmentation, analytics, SMTP integration, API access, and flexible scaling on request.
FAYETTEVILLE, NC
Advanced Internet Technologies, Inc. (AIT) is highlighting AIT Email Marketing as a fully managed, browser-based email marketing platform for businesses that want the control of their own email server without the burden of installation, maintenance, or infrastructure management.

As businesses grow, their email marketing needs often become more advanced. Larger contact lists, higher monthly send volume, newsletters, promotions, customer updates, lead nurturing campaigns, and agency-managed workflows all require stronger campaign tools, more flexibility, and more predictable pricing.
AIT Email Marketing is designed for businesses that need more control than many standard email marketing platforms provide, while still keeping the experience simple and fully managed.
The campaign message is simple:
Your Own Email Server for Email Marketing — fully managed, browser-based, and built for high-volume campaigns.
With AIT Email Marketing, businesses can log in through any modern browser and start building campaigns without installing software or managing backend infrastructure. AIT handles the underlying platform so businesses can focus on marketing, audience engagement, and campaign growth.
“AIT was built on helping businesses use internet technology to grow, improve, and profit,” said Clarence Briggs, CEO of AIT. “With AIT Email Marketing, we are giving businesses the control of their own email server while keeping the experience fully managed and browser-based. Our goal is to help clients run serious email marketing campaigns without forcing their teams to deal with installation, maintenance, or infrastructure headaches.”
AIT Email Marketing offers transparent high-volume pricing tiers:
- Tier 1 — $46.74/month: up to 240K emails and 20K contacts
- Tier 2 — $68.00/month: up to 600K emails and 60K contacts
- Tier 3 — $127.50/month: up to 1.5M emails and 100K contacts
The platform provides predictable flat-rate pricing within selected plan limits. If a client outgrows a plan or needs a temporary boost for seasonal campaigns, product launches, or list growth spikes, AIT can extend email and contact limits at additional cost on request.
AIT Email Marketing includes the campaign tools businesses need to build, send, automate, and track email marketing campaigns. Features include custom fields, merge tags, custom subscription forms, advanced segmentation rules, scheduled campaigns, behavior-based automation flows, event-driven triggers, RSS-driven newsletters, real-time analytics, open rate tracking, click tracking per link, bounce and complaint handling, API access, CSV import, and multi-user access with granular permissions.
The platform also supports flexible SMTP integration with providers such as Amazon SES, SendGrid, Mailgun, SparkPost, ZoneMTA, and other SMTP relays. This gives businesses more control over their sending strategy and sender reputation while still using a fully managed email marketing platform.
AIT Email Marketing is a strong fit for small businesses with growing email lists, marketing agencies managing client campaigns, e-commerce brands sending promotions and customer updates, SaaS companies sending onboarding and product communications, publishers using RSS-driven newsletters, larger teams needing multi-user permissions, and organizations sending high-volume, permission-based email campaigns.
Email marketing remains one of the most valuable owned marketing channels for businesses because it gives companies a direct way to communicate with their audience. AIT Email Marketing helps businesses strengthen that channel with transparent pricing, scalable sending capacity, automation, segmentation, analytics, SMTP flexibility, and managed infrastructure.
With the appeal of “Your Own Email Server for Email Marketing” and the convenience of a fully managed browser-based platform, AIT Email Marketing gives businesses a practical way to manage serious email campaigns without adding technical burden to their teams.
About Advanced Internet Technologies, Inc.
Advanced Internet Technologies, Inc. (AIT) is a privately held North Carolina-based technology company specializing in infrastructure, hosting, platform services, domain services, website solutions, and digital marketing tools. Founded by Clarence Briggs, AIT has served businesses ranging from small organizations to larger enterprise clients with technology solutions designed to help them grow, improve, and profit online.
Call to Action:
Businesses can own their fully managed email marketing platform here:
https://www.ait.com/effective-email-marketing/
Media Contact
Michael Noble
Advanced Internet Technologies
+1 800-862-6507
Fayetteville, NC, U.S.
Uncategorized
PG Gaming Strengthens Global Digital Presence with Launch of Verified Communication Channels
SINGAPOREPG Gaming, a developer of competitive social gaming environments, today announced the expansion of its global digital infrastructure. The initiative is designed to provide a secure, transparent, and reliable platform for its growing international community. As digital engagement continues to evolve, PG Gaming has established its official presence across key digital channels to facilitate community […]
SINGAPORE
PG Gaming, a developer of competitive social gaming environments, today announced the expansion of its global digital infrastructure. The initiative is designed to provide a secure, transparent, and reliable platform for its growing international community.
As digital engagement continues to evolve, PG Gaming has established its official presence across key digital channels to facilitate community interaction and provide a trusted source for company updates, platform announcements, and competitive event information.
“The security and authenticity of our digital ecosystem remain top priorities,” said the Operations Lead of PG Gaming. “By centralizing communications through our official website and verified social channels, we aim to provide our community with a reliable source of information and a secure environment for engagement.”
Effective immediately, PG Gaming’s official digital presence is available through the following channels:
- Official Website: https://pggaming.co
- Official Telegram Hub: https://t.me/pg99
- Official Twitter Handle: https://twitter.com/pg99_m
The company continues to see steady growth in community participation and remains focused on enhancing user engagement through competitive social gaming experiences and secure digital communication channels.
About PG Gaming
PG Gaming is a competitive social gaming community focused on delivering engaging gaming experiences, organized tournament structures, and secure digital communication platforms for players worldwide.
Media Contact:
Company Name: PG Gaming
Contact Person: Morgan
Email: [email protected]
Website: https://pggaming.co
Uncategorized
New Open‑Source FPGA Code is Poised to Bring Private Payments, Verifiable AI, and Instant Gaming to Ethereum Layer 2s
San Francisco, CAFirst public release of a complete FPGA implementation for zero‑knowledge proofs could finally make ZK‑rollups cheap enough for consumer‑scale applications. A team of hardware and cryptography engineers has released the first open-source, full-stack FPGA implementation of a zero-knowledge virtual machine (zkVM). The code, published today, is designed to accelerate the generation of ZK proofs; the […]
San Francisco, CA
First public release of a complete FPGA implementation for zero‑knowledge proofs could finally make ZK‑rollups cheap enough for consumer‑scale applications.
A team of hardware and cryptography engineers has released the first open-source, full-stack FPGA implementation of a zero-knowledge virtual machine (zkVM). The code, published today, is designed to accelerate the generation of ZK proofs; the cryptographic backbone of secure, private, and scalable blockchain networks.
If adopted by rollup operators and prover networks, the technology could dramatically lower the cost of ZK‑rollups, making them competitive on cost with optimistic rollups, which today are cheaper but settle more slowly and rest on different trust assumptions. That, in turn, would enable a new class of consumer applications that have remained theoretical for years: private stablecoin payments, portable identity without document uploads, verifiable AI on local devices, and on‑chain gaming with instant finality.
The Bottleneck That Held Back Web3
ZK‑rollups offer instant transaction finality and the same security guarantees as Ethereum mainnet. But generating the required cryptographic proofs has been computationally expensive; so expensive that most ZK‑rollups remain costlier than optimistic rollups, which require a seven‑day withdrawal window and weaker trust assumptions.
Consumers have voted with their wallets. They choose the cheaper, slower option. And many promising applications; like private payments, proof‑of‑age without revealing identity, and micropayments; have never reached scale because the underlying proof costs made them uneconomical.
What the Open‑Source Code Does
An FPGA (field‑programmable gate array) is a chip that can be reconfigured after manufacturing to perform a specific task extremely efficiently. For ZK proofs, a properly configured FPGA can run orders of magnitude faster and use far less power than a general‑purpose CPU or GPU.
Until now, FPGA implementations for ZK proving have stayed proprietary or locked to a single prover network. This release is the first complete, open-source FPGA proving stack for a full zkVM — the FPGA backend for Venus, Cysic’s open-source zkVM. It includes the complete proving pipeline, not just isolated primitives, and is licensed permissively for anyone to use, modify, or port to different hardware.
The code sits alongside a production GPU proving network that already generates proofs for Ethereum blocks. With both GPU and open FPGA backends, the infrastructure is no longer dependent on a single class of silicon; a reliability benefit for any application that relies on verifiable compute.
What Becomes Possible
With fast, cheap, and open ZK proving, several long‑promised consumer applications could finally move from white papers to wallets:
- Private, instant stablecoin payments – A business could prove its funds are clean without revealing its entire transaction history, at a cost of pennies instead of dollars.
- Portable, privacy‑preserving identity – A user could prove their age or creditworthiness in under a second, without uploading passports or sensitive documents to third‑party servers.
- Verifiable AI on consumer devices – An AI assistant on local hardware could prove it executed a given model faithfully on the user’s data — without sending that data to the cloud.
- On‑chain gaming with instant finality – A multiplayer game could settle hundreds of moves per second on a ZK‑rollup, with proof costs low enough to make true asset ownership practical.
- Micropayments and streaming money – Paying a fraction of a cent per second for video or API calls would no longer be eaten by fees, because per‑transaction proofs would become nearly free.
Availability
The open‑source FPGA code is available today on GitHub under permissive licenses. It is under active development and not yet audited for production use, but the team has invited researchers, developers, and hardware engineers to study, test, and build upon it.
“ZK only reaches its potential when proving is fast, cheap, and verifiable by anyone. Open‑sourcing the first FPGA zkVM is our way of saying the ecosystem moves forward together – not behind closed doors.”
— Leo Fan, CEO of Cysic
About the Release
The code is the FPGA hardware backend for Venus, Cysic’s open-source zkVM. It was built by Cysic, a verifiable compute network, and is released under Apache 2.0 / MIT licenses. It was built by Cysic, a verifiable compute network, and is released under Apache 2.0 / MIT licenses.
GitHub: github.com/cysic-labs/venus-fpga (placeholder)
Media Contact: [email protected]
About Cysic
Cysic, backed by leading investors including Polychain Capital, OKX Ventures, HashKey Capital, is building the verifiable compute engine for Web3. By combining custom ZK hardware, a decentralized node network, and a programmable economic layer, Cysic transforms computation into a trustless, on-chain resource. The network supports scalable proof generation, AI verification, and scientific computing workloads, laying the groundwork for the ComputeFi economy.
Follow on X: @cysic_xyz
Read the Docs: https://hackmd.io/@Cysic
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