What is ICO? Get to know a new fundraising possibility for your project

Maciej Zieliński

17 Nov 2021
What is ICO? Get to know a new fundraising possibility for your project

Raising capital by your tokens issue - blockchain technology may disrupt fundraising as you know it. Thousands of projects have already raised billions of dollars through ICO. Why might yours be next?

What will you find in the article?

  • What is the intial coin offering?
  • Advatages of ICO
  • How do ICOs work?
  • Launching ICO step by step
  • Different structure models of ICO
  • ICO vs IPO
  • STO vs ICO

Most technology startups have limited options when it comes to fundraising. They can either raise a seed round from private investors, pitch a VC fund, or start a crowdfunding campaign. 

But if your project is blockchain-based, entirely new possibilities emerge, among them, you can find an initial coin offering (ICO). With ICO, you can issue your own utility tokens to be used in the network you want to create. As it grows, the demand for tokens increases, the same as their price, bringing profits to early investors. 

An initial coin offering - ICO is a blockchain industry equivalent of IPO (Initial Public Offering). Find why issuing tokens may be the best way to raise funds for your project.

What is ICO?
What is ICO?

What is the initial coin offering?

Among STO and IDO, initial coin offering is one of the fundraising methods brought to life thanks to Blockchain technology. Essentially, an initial coin offering regards raising funds for a project by issuing new cryptocurrency where new blockchain-based projects mint and sell new tokens in exchange for other digital assets or fiat money. 

Eventually, those token will have a specific utility on the platform built for funds raised during the ICO. For example, they may be exchanged for products or services of the company. In other cases, they become governance tokens that allow investors to vote to shape the project’s future.  

How did it start?

Everything started in 2013 with Mastercoin’s initial coin offering that raised approximately 5 million dollars. The Mastercoin launch was quickly followed by Ethereum. Yes, that’s right - one of the most influential technology projects of this decade was funded via an initial coin offering. During Ethereum's ICO, creators raised 18 million dollars. To this day, Ethereum remains one of the most successful ICOs. 

Yet, those 18 million sounds like nothing, compared to the 4 billion raised by EOS in several rounds during 2018-2019. It was the largest ICO to date. 

Democratization of fundraising 

But initial coin offering (ICO) isn’t all about big projects with enormous capital for fundraising campaigns. Their main advantage over IPO is allowing also smaller startups to arrange a successful funding round. 

Advantages of initial coin offerings 

Advantages of ICO
Advantages of ICO

Speed

Quick access to funding at a seed stage. Conducting an ICO campaign can be a matter of just a few weeks.

Fewer legal requirements

ICOs are far less regulated than any other fundraising method. Hence they require minimal bureaucracy. 

Your project, your equity 

During ICO, you can raise funds without loss of equity.

Community 

Your ICO investors will create a strong community, willing to test and even promote the project.

Liquidity

Global markets, where your tokens will be sold, operate 24/7.

Fundraising without borders

Contrary to a public offering, your tokens will be sold on a global market, which means that the campaign doesn’t have to be restricted to one jurisdiction. Anyone with a crypto wallet can buy them.

How do ICOs work?

Essentially, launching initial coin offerings means issuing your own tokens that will have a specific utility in your project. That’s why they are named Utility Tokens. You can read more about different token types in this article. Contrary to a securities offering, ICO doesn’t grant investors shares of the company. Instead, they distribute tokens with a specific utility in the project that will be built for raised funds.  

To raise money through initial coin offering, startups usually start with creating a white paper. This is a document that describes the project and its goals, providing investors with information that may help them decide whether they want to participate. 

During the ICO process, investors buy tokens with other cryptocurrencies or fiat money. If the funding requirements are met, raised capital will support the creation of the project. If they aren’t, they may be returned to investors. It depends on chosen structure model. 

Different structure models of ICO

Initial coin offerings may be structured in various ways. In some examples, tokens sold during ICO have a fixed price and specified limited supply. In contrast, others limit the supply but leave the token price dynamic, which means that fundraising will depend on the amount of raised funds.

There are also initial coin offerings that set a static price of token and dynamic token supply that depends on the amount of funding received. 

ICO and federal securities laws  

It’s important to note that currently, in the majority of jurisdictions, ICOs remain largely unregulated. This means that they are far less restricted than IPOs or even STOs. 

Essentially, most tokens issued during ICO aren’t treated as securities because they don’t represent any equity in the project. Instead, they have a certain utility in their network. 

How to raise capital via ICO?

In the whole initial coin offering process, the following stages can be distinguished:

Make sure your project needs ICO

A brief disclaimer: not every company qualifies for ICO. And even if it does, there may be better alternatives. 

ICO isn’t a universal solution that will suit every project. Many factors should be taken into consideration before choosing it. 

First of all, initial coin offerings work best for blockchain-based projects. There are many good ICOs out right now; hence the competition for the attention of investors is high. If your project uses unnecessary tokens and doesn’t back them with attractive utility, investors probably won’t be interested in putting their funds into it. 

Yet, the crypto industry offers more solutions that support fundraising. Some of them, as STO, are also suitable for non-blockchain projects.

Get to know the local law

ICOs are a relatively new fundraising solution. Hence many countries still haven’t developed a clear legal framework for them. 

So far, only China and South Korea have banned ICOs. Yet, you have to be aware that in some jurisdictions launching your private ICO will be much easier than in others. You can find more information regarding this issue in our article: The 5 most popular jurisdictions for your company’s tokenization.

Create a distribution plan 

The plan will depend on your primary requirements and assumptions. For instance, there may be different stages of the token sale before you get to the actual initial coin offering. For example, Telegram managed to raise $850 million during the pre-sale only. 

At this stage, you have to decide which of the previously mentioned models you will choose? Is the price going to be stable or rather dynamic? What about the supply? Moreover, you should determine how many of them will be sold at each stage of the token sale. 

Choose the right technology 

This may sound trivial, but the right technology solutions are the backbone of your ICO’s success. There are several universally required technologies, among them blockchain, smart contracts, tokens, and solid back-end and security infrastructure.

When it comes to blockchain, the majority of the companies decide to use established, well-known protocols. In most cases, it’s Ethereum. Launching an ICO on your own blockchain is possible and can sometimes be observed in the industry. Yet, it’s time and cost-consuming. Additionally, for the majority of projects, there is no need to do so. 

White paper

A white paper is a document that describes the project and explains its goals in almost every possible detail. It’s aimed to provide potential investors with the information needed to decide whether they want to participate. This includes:

  • Vision
  • Market analysis
  • Goals
  • Available resources
  • Development strategy
  • Legal frames
  • Details regarding token and its distribution
  • Description of the team 

Not sure how to write a proper white paper? Our consultants will gladly guide you through the whole process. 

Website creation

You need to face that your project will be judged mainly by the content and appearance of its website. It has to contain clear information about your team, aims, and measures to protect investors’ interests. 

Before ICO launch, the website should also feature a token sale landing page. Remember about approachable UX here. 

ICO vs. IPO

The main difference between IPO and ICO lies in equity. During ICO, owners don’t have to give up a part of their equity in exchange for funds, as they do with shares in the case of IPO. Instead, they issue tokens that will have a utility in their project. Therefore, ICO is mainly used for blockchain-based projects.

Because during the ICO no equities are sold, there are fewer restrictions regarding ICOs than IPOs. For example, most ICOs don't fall under securities law. Thus, they require less bureaucracy and are more suitable for seed-stage startups. Furthermore, investing in ICO tokens isn't restricted to accredited investors, as it happens with IPO. 

ICO vs. STO: main differences

There are different types of token offerings out there. One of the most important is the slightly younger STO - security token offering. Here instead of utility tokens, security tokens are issued. This means that their value is backed by real assets - for example, shares in the company or real estate. You can read more about security tokens in this article.

The main advantage of STO is that they are suitable for various projects, not only blockchain-based ones. In this way, you can even tokenize alternative assets, such as cars or precious metals

On the other hand, because tokens represent specific equity, they are treated as securities. And this means far more legal restrictions.

What is ICO? - Conclusion 

Initial coin offerings are an excellent opportunity for seed-stage startups to raise capital for further development. During the past 6 years, billions of dollars have been raised using ICO, funding such projects as Telegram or Ethereum.  At the same time investing in ICO gained tremendous popularity, even outside the crypto community.

Yet as with every solution, they aren’t free from limitations. While from a technology perspective process is getting easier every year, more and more legal restrictions emerge. Furthermore, because of several ICO projects, reaching investors now requires a well-planned marketing strategy. 

Are you interested in launching your own ICO, but you are not sure if your team will manage to fulfill all the requirements? After conducting one of the first tokenizations globally and many other ICOs, we may say that we know the ropes of successful tokenization. Hence, if you have any questions, don’t hesitate to ask.

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Token Engineering Process

Kajetan Olas

13 Apr 2024
Token Engineering Process

Token Engineering is an emerging field that addresses the systematic design and engineering of blockchain-based tokens. It applies rigorous mathematical methods from the Complex Systems Engineering discipline to tokenomics design.

In this article, we will walk through the Token Engineering Process and break it down into three key stages. Discovery Phase, Design Phase, and Deployment Phase.

Discovery Phase of Token Engineering Process

The first stage of the token engineering process is the Discovery Phase. It focuses on constructing high-level business plans, defining objectives, and identifying problems to be solved. That phase is also the time when token engineers first define key stakeholders in the project.

Defining the Problem

This may seem counterintuitive. Why would we start with the problem when designing tokenomics? Shouldn’t we start with more down-to-earth matters like token supply? The answer is No. Tokens are a medium for creating and exchanging value within a project’s ecosystem. Since crypto projects draw their value from solving problems that can’t be solved through TradFi mechanisms, their tokenomics should reflect that. 

The industry standard, developed by McKinsey & Co. and adapted to token engineering purposes by Outlier Ventures, is structuring the problem through a logic tree, following MECE.
MECE stands for Mutually Exclusive, Collectively Exhaustive. Mutually Exclusive means that problems in the tree should not overlap. Collectively Exhaustive means that the tree should cover all issues.

In practice, the “Problem” should be replaced by a whole problem statement worksheet. The same will hold for some of the boxes.
A commonly used tool for designing these kinds of diagrams is the Miro whiteboard.

Identifying Stakeholders and Value Flows in Token Engineering

This part is about identifying all relevant actors in the ecosystem and how value flows between them. To illustrate what we mean let’s consider an example of NFT marketplace. In its case, relevant actors might be sellers, buyers, NFT creators, and a marketplace owner. Possible value flow when conducting a transaction might be: buyer gets rid of his tokens, seller gets some of them, marketplace owner gets some of them as fees, and NFT creators get some of them as royalties.

Incentive Mechanisms Canvas

The last part of what we consider to be in the Discovery Phase is filling the Incentive Mechanisms Canvas. After successfully identifying value flows in the previous stage, token engineers search for frictions to desired behaviors and point out the undesired behaviors. For example, friction to activity on an NFT marketplace might be respecting royalty fees by marketplace owners since it reduces value flowing to the seller.

source: https://www.canva.com/design/DAFDTNKsIJs/8Ky9EoJJI7p98qKLIu2XNw/view#7

Design Phase of Token Engineering Process

The second stage of the Token Engineering Process is the Design Phase in which you make use of high-level descriptions from the previous step to come up with a specific design of the project. This will include everything that can be usually found in crypto whitepapers (e.g. governance mechanisms, incentive mechanisms, token supply, etc). After finishing the design, token engineers should represent the whole value flow and transactional logic on detailed visual diagrams. These diagrams will be a basis for creating mathematical models in the Deployment Phase. 

Token Engineering Artonomous Design Diagram
Artonomous design diagram, source: Artonomous GitHub

Objective Function

Every crypto project has some objective. The objective can consist of many goals, such as decentralization or token price. The objective function is a mathematical function assigning weights to different factors that influence the main objective in the order of their importance. This function will be a reference for machine learning algorithms in the next steps. They will try to find quantitative parameters (e.g. network fees) that maximize the output of this function.
Modified Metcalfe’s Law can serve as an inspiration during that step. It’s a framework for valuing crypto projects, but we believe that after adjustments it can also be used in this context.

Deployment Phase of Token Engineering Process

The Deployment Phase is final, but also the most demanding step in the process. It involves the implementation of machine learning algorithms that test our assumptions and optimize quantitative parameters. Token Engineering draws from Nassim Taleb’s concept of Antifragility and extensively uses feedback loops to make a system that gains from arising shocks.

Agent-based Modelling 

In agent-based modeling, we describe a set of behaviors and goals displayed by each agent participating in the system (this is why previous steps focused so much on describing stakeholders). Each agent is controlled by an autonomous AI and continuously optimizes his strategy. He learns from his experience and can mimic the behavior of other agents if he finds it effective (Reinforced Learning). This approach allows for mimicking real users, who adapt their strategies with time. An example adaptive agent would be a cryptocurrency trader, who changes his trading strategy in response to experiencing a loss of money.

Monte Carlo Simulations

Token Engineers use the Monte Carlo method to simulate the consequences of various possible interactions while taking into account the probability of their occurrence. By running a large number of simulations it’s possible to stress-test the project in multiple scenarios and identify emergent risks.

Testnet Deployment

If possible, it's highly beneficial for projects to extend the testing phase even further by letting real users use the network. Idea is the same as in agent-based testing - continuous optimization based on provided metrics. Furthermore, in case the project considers airdropping its tokens, giving them to early users is a great strategy. Even though part of the activity will be disingenuine and airdrop-oriented, such strategy still works better than most.

Time Duration

Token engineering process may take from as little as 2 weeks to as much as 5 months. It depends on the project category (Layer 1 protocol will require more time, than a simple DApp), and security requirements. For example, a bank issuing its digital token will have a very low risk tolerance.

Required Skills for Token Engineering

Token engineering is a multidisciplinary field and requires a great amount of specialized knowledge. Key knowledge areas are:

  • Systems Engineering
  • Machine Learning
  • Market Research
  • Capital Markets
  • Current trends in Web3
  • Blockchain Engineering
  • Statistics

Summary

The token engineering process consists of 3 steps: Discovery Phase, Design Phase, and Deployment Phase. It’s utilized mostly by established blockchain projects, and financial institutions like the International Monetary Fund. Even though it’s a very resource-consuming process, we believe it’s worth it. Projects that went through scrupulous design and testing before launch are much more likely to receive VC funding and be in the 10% of crypto projects that survive the bear market. Going through that process also has a symbolic meaning - it shows that the project is long-term oriented.

If you're looking to create a robust tokenomics model and go through institutional-grade testing please reach out to contact@nextrope.com. Our team is ready to help you with the token engineering process and ensure your project’s resilience in the long term.

FAQ

What does token engineering process look like?

  • Token engineering process is conducted in a 3-step methodical fashion. This includes Discovery Phase, Design Phase, and Deployment Phase. Each of these stages should be tailored to the specific needs of a project.

Is token engineering meant only for big projects?

  • We recommend that even small projects go through a simplified design and optimization process. This increases community's trust and makes sure that the tokenomics doesn't have any obvious flaws.

How long does the token engineering process take?

  • It depends on the project and may range from 2 weeks to 5 months.

What is Berachain? 🐻 ⛓️ + Proof-of-Liquidity Explained

Karolina

18 Mar 2024
What is Berachain? 🐻 ⛓️ + Proof-of-Liquidity Explained

Enter Berachain: a high-performance, EVM-compatible blockchain that is set to redefine the landscape of decentralized applications (dApps) and blockchain services. Built on the innovative Proof-of-Liquidity consensus and leveraging the robust Polaris framework alongside the CometBFT consensus engine, Berachain is poised to offer an unprecedented blend of efficiency, security, and user-centric benefits. Let's dive into what makes it a groundbreaking development in the blockchain ecosystem.

What is Berachain?

Overview

Berachain is an EVM-compatible Layer 1 (L1) blockchain that stands out through its adoption of the Proof-of-Liquidity (PoL) consensus mechanism. Designed to address the critical challenges faced by decentralized networks. It introduces a cutting-edge approach to blockchain governance and operations.

Key Features

  • High-performance Capabilities. Berachain is engineered for speed and scalability, catering to the growing demand for efficient blockchain solutions.
  • EVM Compatibility. It supports all Ethereum tooling, operations, and smart contract languages, making it a seamless transition for developers and projects from the Ethereum ecosystem.
  • Proof-of-Liquidity.This novel consensus mechanism focuses on building liquidity, decentralizing stake, and aligning the interests of validators and protocol developers.

MUST READ: Docs

EVM-Compatible vs EVM-Equivalent

EVM-Compatible

EVM compatibility means a blockchain can interact with Ethereum's ecosystem to some extent. It can interact supporting its smart contracts and tools but not replicating the entire EVM environment.

EVM-Equivalent

An EVM-equivalent blockchain, on the other hand, aims to fully replicate Ethereum's environment. It ensures complete compatibility and a smooth transition for developers and users alike.

Berachain's Position

Berachain can be considered an "EVM-equivalent-plus" blockchain. It supports all Ethereum operations, tooling, and additional functionalities that optimize for its unique Proof-of-Liquidity and abstracted use cases.

Berachain Modular First Approach

At the heart of Berachain's development philosophy is the Polaris EVM framework. It's a testament to the blockchain's commitment to modularity and flexibility. This approach allows for the easy separation of the EVM runtime layer, ensuring that Berachain can adapt and evolve without compromising on performance or security.

Proof Of Liquidity Overview

High-Level Model Objectives

  • Systemically Build Liquidity. By enhancing trading efficiency, price stability, and network growth, Berachain aims to foster a thriving ecosystem of decentralized applications.
  • Solve Stake Centralization. The PoL consensus works to distribute stake more evenly across the network, preventing monopolization and ensuring a decentralized, secure blockchain.
  • Align Protocols and Validators. Berachain encourages a symbiotic relationship between validators and the broader protocol ecosystem.

Proof-of-Liquidity vs Proof-of-Stake

Unlike traditional Proof of Stake (PoS), which often leads to stake centralization and reduced liquidity, Proof of Liquidity (PoL) introduces mechanisms to incentivize liquidity provision and ensure a fairer, more decentralized network. Berachain separates the governance token (BGT) from the chain's gas token (BERA) and incentives liquidity through BEX pools. Berachain's PoL aims to overcome the limitations of PoS, fostering a more secure and user-centric blockchain.

Berachain EVM and Modular Approach

Polaris EVM

Polaris EVM is the cornerstone of Berachain's EVM compatibility, offering developers an enhanced environment for smart contract execution that includes stateful precompiles and custom modules. This framework ensures that Berachain not only meets but exceeds the capabilities of the traditional Ethereum Virtual Machine.

CometBFT

The CometBFT consensus engine underpins Berachain's network, providing a secure and efficient mechanism for transaction verification and block production. By leveraging the principles of Byzantine fault tolerance (BFT), CometBFT ensures the integrity and resilience of the Berachain blockchain.

Conclusion

Berachain represents a significant leap forward in blockchain technology, combining the best of Ethereum's ecosystem with innovative consensus mechanisms and a modular development approach. As the blockchain landscape continues to evolve, Berachain stands out as a promising platform for developers, users, and validators alike, offering a scalable, efficient, and inclusive environment for decentralized applications and services.

Resources

For those interested in exploring further, a wealth of resources is available, including the Berachain documentation, GitHub repository, and community forums. It offers a compelling vision for the future of blockchain technology, marked by efficiency, security, and community-driven innovation.

FAQ

How is Berachain different?

  • It integrates Proof-of-Liquidity to address stake centralization and enhance liquidity, setting it apart from other blockchains.

Is Berachain EVM-compatible?

  • Yes, it supports Ethereum's tooling and smart contract languages, facilitating easy migration of dApps.

Can it handle high transaction volumes?

  • Yes, thanks to the Polaris framework and CometBFT consensus engine, it's built for scalability and high throughput.