Saske Ico Review

Saske Ico Review – Social connectivity platform

About Saske

Saske is a decentralized blockchain social connectivity platform designed to bring together the world at large on the most preeminent social communications networks while simultaneously tearing down the monolithic barriers still standing between the everyday person and the unprecedented benefits of cryptocurrencies. Saske is building the architecture of their blockchain based on Proof of History (PoH); a proof for verifying order and passage of time between events.

By introducing a user-friendly Social Communications Aggregation Solution that seamlessly unites social media platforms with the Blog sphere, creates a fluid marketing exchange where individuals and businesses build partnerships, and with a never before seen tiered Reward System for all active users, Saske changes everything forever.

Saske Key Information

KeyPoints
Token NameSaske
ICO start25th Sep 2017
ICO end10th Oct 2017
Distributed in ICO60%
Average price0.35 USD
CountryUSA
AcceptingETH
Token SymbolSXAS
Token TypeERC20
RaisedUnknown
PlatformWaves
Price in ICO0.3700 USD
WhitepaperClick Here For View Whitepaper
WebsiteClick Here For Visit ICO Homepage

The Game Change Team Behind Saske

Saske Ico Review - Social connectivity platform

Platorm Secured

Embracing the unparalleled power and reach of social communications and combining it with a slick, mobile instantaneous payments platform secured on cryptographically protected ledgers maintained on the WAVES blockchain, Saske will be a mobile solutions for Android and iOS devices that capitalises on the global dominance of mobile computing to create the world’s first ever, universal, daily-use digital currency.

Saske Now everyone, from hard pressed, opportunity-deprived families in economically volatile regions, to fledgling start-ups, digital marketers, businesses both small and large, as well as anyone in between will finally be able to act and harness the power of the blockchain to overcome the financial obstacles frustrating their progress today.

A Company Mission

A secure, efficient, decentralized and digitally native global financial system is being born on the blockchain. It will restructure global power dynamics and fundamentally impact tomorrow’s world. Saske mission is to facilitate the birth of this new financial system and to shape it for the common good. The Saske network is arranged for maximum throughput and high availability. Saske smart contracts bytecode is based on Berkeley Packet Filter designed for fast execution.

Smart Contract Wallet

Members’ funds remain under their control in decentralized smart contracts on the blockchain. Saske system aggregates liquidity across multiple exchanges, and further improves liquidity with trade execution logic. A smart execution and order routing can radically reduce liquidity costs. Non-custodial smart contract wallet system means members are not exposed to exchange counter party risk.

Functions of financial industry 

By solving the problem of creating scarcity in a purely digital space without the need for centralized power to create trust and security, the blockchain has enabled a decentralized market of value which will automate most functions of the financial industry in more transparent, efficient and secure ways. Saske One is building out the investment architecture of these negatively digital asset markets, improving their viability as a foundation for the new financial system and helping to shape that emerging system toward better societal outcomes.

Proof of History generator

It is possible to synchronize multiple Proof of History generators in the Saske network by mixing the sequence state from each generator to each other generator, and thus achieve horizontal scaling of the Proof of History generator. This scaling is done without sharding. The output of both generators is necessary to reconstruct the full order of events in the system.

Proof of History, the basis for the Saske network, is a sequence of computation that can provide a way to cryptographically verify passage of time between two events. It uses a cryptographically secure function written so that output cannot be predicted from the input, and must be completely executed to generate the output.

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