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Mdgmal
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Mdgmal

🔥 Master of Charts | Crypto & Stocks 📈 | Alpha Hunter | Signals, Setups & Profits Daily 🚀 | Follow for Smart Trades, Real Gains, & Ultimate Market Mastery
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🚀 $ADA: The Giant Is Waking Up Quietly! Are You Watching?  While the crowd chases short-term noise, the charts and on-chain data for Cardano ($ADA) are telling a very interesting story. Let's break down why smart money is keeping a close eye on ADA right now: 📊 The Technical Picture The Price Action: Holding strong around the $0.195 – $0.20 zone, forming a solid base after recent retests.  Key Levels to Watch: 🛑 Support: Firmly defended around $0.185 – $0.190.  🎯 Resistance / Targets: A clean, high-volume break above $0.201 could open the doors toward $0.213 – $0.238.  Ecosystem Strength: Cardano consistently ranks near the very top for developer activity, proving that building never stops regardless of market cycles.  🧠 Why the Silence Is Deafening Historically, ADA moves the hardest when sentiment is quietest and people least expect it. With steady network upgrades, expanding interoperability (like IBC integrations), and strong foundational development, the long-term fundamentals remain entirely intact. Are you accumulating on these dips, or waiting for the breakout confirmation? Let’s discuss in the comments! 👇 #ADA #Cardano #BinanceSquare #CryptoTrading #Altcoins {spot}(ADAUSTS) {future}(ADAUSDT)
🚀 $ADA: The Giant Is Waking Up Quietly! Are You Watching?
While the crowd chases short-term noise, the charts and on-chain data for Cardano ($ADA) are telling a very interesting story. Let's break down why smart money is keeping a close eye on ADA right now:
📊 The Technical Picture
The Price Action: Holding strong around the $0.195 – $0.20 zone, forming a solid base after recent retests.
Key Levels to Watch:
🛑 Support: Firmly defended around $0.185 – $0.190.
🎯 Resistance / Targets: A clean, high-volume break above $0.201 could open the doors toward $0.213 – $0.238.
Ecosystem Strength: Cardano consistently ranks near the very top for developer activity, proving that building never stops regardless of market cycles.
🧠 Why the Silence Is Deafening
Historically, ADA moves the hardest when sentiment is quietest and people least expect it. With steady network upgrades, expanding interoperability (like IBC integrations), and strong foundational development, the long-term fundamentals remain entirely intact.
Are you accumulating on these dips, or waiting for the breakout confirmation? Let’s discuss in the comments! 👇
#ADA #Cardano #BinanceSquare #CryptoTrading #Altcoins
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3 Risk Management Rules Every Trader Ignores (Until It’s Too Late) 🧠📉 Most crypto traders don't lose money because their entry was wrong—they lose because their exit and position sizing were nonexistent. If you want to survive both bull runs and sudden liquidations, keep these 3 simple rules pinned to your desk: 1. The 1% Rule (Protect Your Capital First) Never risk more than 1% to 2% of your total portfolio on a single trade. If your trading balance is $1,000, your maximum loss per trade should never exceed $10–$20. Position size ≠ Risk amount. Learn to calculate stop-loss distance properly! 2. Don't Fight the Trend Leader When major movers like \bm{BTC or}BNB test critical support zones, altcoins will follow with higher volatility. Always check $BTC market structure before entering altcoin positions. Trading against $BTC momentum is one of the fastest ways to hit a stop-loss. 3. Set Take-Profit Targets IN ADVANCE Greed kills gains. Always split your profit targets: TP1: Take 30%–50% off at the first resistance area to lock in risk-free profit. TP2 / TP3: Let the rest run toward major targets while pulling your Stop-Loss up to breakeven. 💬 What is your #1 golden rule for crypto risk management? Drop your thoughts below!$BTC
3 Risk Management Rules Every Trader Ignores (Until It’s Too Late) 🧠📉

Most crypto traders don't lose money because their entry was wrong—they lose because their exit and position sizing were nonexistent.
If you want to survive both bull runs and sudden liquidations, keep these 3 simple rules pinned to your desk:
1. The 1% Rule (Protect Your Capital First)
Never risk more than 1% to 2% of your total portfolio on a single trade.
If your trading balance is $1,000, your maximum loss per trade should never exceed $10–$20.
Position size ≠ Risk amount. Learn to calculate stop-loss distance properly!
2. Don't Fight the Trend Leader
When major movers like \bm{BTC or}BNB test critical support zones, altcoins will follow with higher volatility.
Always check $BTC market structure before entering altcoin positions.
Trading against $BTC momentum is one of the fastest ways to hit a stop-loss.
3. Set Take-Profit Targets IN ADVANCE
Greed kills gains. Always split your profit targets:
TP1: Take 30%–50% off at the first resistance area to lock in risk-free profit.
TP2 / TP3: Let the rest run toward major targets while pulling your Stop-Loss up to breakeven.
💬 What is your #1 golden rule for crypto risk management? Drop your thoughts below!$BTC
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Binance Turns 9
Binance Turns 9
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ສັນຍານກະທິງ
Maximizing Your Trading Strategies: The Shift to Capital Efficiency Navigating volatile financial markets requires managing capital efficiency and counterparty risk effectively. While traditional equities trading relies on conventional brokerage accounts, modern trading ecosystems offer alternative methods to trade traditional market themes using digital assets. Through specialized derivatives instruments, traders can gain exposure to traditional financial trends directly within their digital asset portfolios. This approach consolidates capital management while optimizing liquidity allocation across diverse asset classes. Key Advantages of Consolidated Asset Trading Using digital platforms to access broader market exposures offers several structural benefits: Optimized Capital Efficiency: Multi-asset collateral structures allow traders to use single asset balances (such as stablecoins like $USDC or $USDT) to back positions across different market sectors without converting to fiat currency. Continuous Market Mechanics: Unlike traditional stock exchanges with rigid opening and closing hours, digital asset derivatives platforms operate 24/7. This allows for continuous risk adjustment and exposure management around global macroeconomic events. Fractional Positioning: High-value asset exposures can be scaled down into highly precise fractional amounts, allowing for fine-tuned position sizing and strict adherence to risk management parameters. Structural Risk Management on Modern Ecosystems When dealing with advanced financial instruments, enforcing a strict risk-mitigation framework is mandatory to protect capital: Risk DimensionMitigation StrategyLeverage & Margin ExhaustionUtilize isolated margin modes rather than cross-margin to confine maximum risk to specific positions.Market VolatilityPre-calculate risk-to-reward ratios and implement hard stop-loss orders to limit maximum downside per trade.Counterparty & Contract RiskEnsure all trading activities occur on platforms with proven, verifiable proof-of-reserves and institutional-security infrastructure.
Maximizing Your Trading Strategies: The Shift to Capital Efficiency
Navigating volatile financial markets requires managing capital efficiency and counterparty risk effectively. While traditional equities trading relies on conventional brokerage accounts, modern trading ecosystems offer alternative methods to trade traditional market themes using digital assets.
Through specialized derivatives instruments, traders can gain exposure to traditional financial trends directly within their digital asset portfolios. This approach consolidates capital management while optimizing liquidity allocation across diverse asset classes.
Key Advantages of Consolidated Asset Trading
Using digital platforms to access broader market exposures offers several structural benefits:
Optimized Capital Efficiency: Multi-asset collateral structures allow traders to use single asset balances (such as stablecoins like $USDC or $USDT) to back positions across different market sectors without converting to fiat currency.
Continuous Market Mechanics: Unlike traditional stock exchanges with rigid opening and closing hours, digital asset derivatives platforms operate 24/7. This allows for continuous risk adjustment and exposure management around global macroeconomic events.
Fractional Positioning: High-value asset exposures can be scaled down into highly precise fractional amounts, allowing for fine-tuned position sizing and strict adherence to risk management parameters.
Structural Risk Management on Modern Ecosystems
When dealing with advanced financial instruments, enforcing a strict risk-mitigation framework is mandatory to protect capital:

Risk DimensionMitigation StrategyLeverage & Margin ExhaustionUtilize isolated margin modes rather than cross-margin to confine maximum risk to specific positions.Market VolatilityPre-calculate risk-to-reward ratios and implement hard stop-loss orders to limit maximum downside per trade.Counterparty & Contract RiskEnsure all trading activities occur on platforms with proven, verifiable proof-of-reserves and institutional-security infrastructure.
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Headline: My First #TradebStocks Pick: Why I Went Long on $NVDAB 🚀 Crypto meets TradFi, and 24/7 liquidity changes everything. I just initiated my first position in $NVDAB (NVIDIA tokenized stock) on the Binance Spot market. Here is my quick breakdown: The Setup: The underlying asset is consolidating near a major structural support zone after a healthy macro retracement. On-chain volume and liquidity indicators are showing strong absorption. The bStock Advantage: No waiting for New York market open bells or dealing with T+1 settlement lag. Transactions settle instantly on BNB Smart Chain. The Play: Accumulating fractionally right from my spot wallet using USDC, holding for a technical expansion toward previous local highs. 👇 What was your very first bStock pick? Drop your tickers and charts below! #TradebStocks #BinanceSquare #Tokenization
Headline: My First #TradebStocks Pick: Why I Went Long on $NVDAB 🚀
Crypto meets TradFi, and 24/7 liquidity changes everything. I just initiated my first position in $NVDAB (NVIDIA tokenized stock) on the Binance Spot market.
Here is my quick breakdown:
The Setup: The underlying asset is consolidating near a major structural support zone after a healthy macro retracement. On-chain volume and liquidity indicators are showing strong absorption.
The bStock Advantage: No waiting for New York market open bells or dealing with T+1 settlement lag. Transactions settle instantly on BNB Smart Chain.
The Play: Accumulating fractionally right from my spot wallet using USDC, holding for a technical expansion toward previous local highs.
👇 What was your very first bStock pick? Drop your tickers and charts below!
#TradebStocks #BinanceSquare #Tokenization
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Short on ARKM Target 0.1325
Short on ARKM
Target 0.1325
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The Magnificent 7 Divergence: Ultimate Stalwart vs. Pure Hype As the Magnificent 7 continue to diverge at historic highs, a clear line is being drawn between structural value and speculative momentum. Nvidia remains the ultimate stalwart of this secular cycle, driven by undeniable data center revenue and an absolute monopoly on AI hardware infrastructure. On the flip side, Tesla looks increasingly like pure hype at these current multiples, as its core automotive margins compress under global EV competition while its valuation remains detached, relying heavily on unrealized autonomous driving promises. #PostonTradFi
The Magnificent 7 Divergence: Ultimate Stalwart vs. Pure Hype

As the Magnificent 7 continue to diverge at historic highs, a clear line is being drawn between structural value and speculative momentum. Nvidia remains the ultimate stalwart of this secular cycle, driven by undeniable data center revenue and an absolute monopoly on AI hardware infrastructure. On the flip side, Tesla looks increasingly like pure hype at these current multiples, as its core automotive margins compress under global EV competition while its valuation remains detached, relying heavily on unrealized autonomous driving promises. #PostonTradFi
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جيد
جيد
Binance Academy
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What Is Rehypothecation Risk in Crypto Lending?
Key Takeaways

Rehypothecation happens when a crypto lending platform lends out your deposited assets to earn a return, through practices such as staking or yield farming on your behalf, creating exposure to third-party counterparty risk.

If a borrower defaults, the lending platform may become insolvent and be unable to return your funds. 

In decentralized finance (DeFi), rehypothecation is generally more transparent, but smart contract risk still applies.

Keeping assets in a self-custodied wallet is the most direct way to avoid rehypothecation risk entirely.

Introduction

Earning passive income through crypto lending platforms has become a popular strategy. Users deposit digital assets to earn an annual percentage yield (APY), similar to a savings account. However, unlike traditional banking, the mechanisms generating these yields often involve a practice known as rehypothecation.

While rehypothecation is a standard practice in traditional finance (TradFi), its application in the crypto sector operates with fewer protections. Understanding this concept is important for anyone entrusting their assets to a centralized exchange or lending platform.

Understanding Hypothecation vs. Rehypothecation

Hypothecation is the act of pledging an asset as collateral to secure a loan. When you take out a mortgage, your house is hypothecated to the bank. You retain ownership, but the bank has a claim on it if you default. In crypto, this happens when you lock bitcoin to mint a stablecoin or take a cash loan.

Rehypothecation occurs when the entity holding your collateral takes those pledged assets and uses them for its own purposes. In practice, the platform lends your deposited assets to a third party. You lend your crypto to a platform, and the platform lends your crypto to someone else.

How Rehypothecation Works in Crypto

Rehypothecation is the engine behind many high-yield crypto accounts. Here is a simplified example of how the flow works:

Deposit: You deposit 1 BTC into a centralized lending platform offering 5% APY.

Re-lending: The platform lends your 1 BTC to an institutional borrower, such as a hedge fund or market maker, at 8% interest.

The spread: The platform pays you 5% and keeps the 3% difference as profit.

From the platform's perspective, this maximizes capital efficiency. However, your bitcoin is no longer in the platform's secure storage. It is in the hands of a third party, and your ability to withdraw depends on that party's financial health.

The Core Risks of Rehypothecation

When assets are rehypothecated, you take on counterparty risk. This can create a chain of dependency where the failure of one entity triggers the collapse of others.

Counterparty insolvency

If the borrower makes bad trades and loses the BTC they borrowed, they can't repay the platform. The platform then has a shortfall and can't repay you. You are relying on the financial health of entities you don't know or have visibility into.

Bank run risk

In periods of market volatility, users often rush to withdraw funds at the same time. If a platform has lent out most of its deposits into illiquid assets or long-term loans, it likely won't have enough liquid funds to honor all withdrawal requests at once. This typically leads to withdrawal freezes and, in severe cases, bankruptcy.

Unsecured creditor status

In traditional finance, rehypothecation is capped and insured. In crypto, regulations are still developing. Many lending platforms state in their Terms of Service that depositing transfers asset ownership to the platform. In the event of bankruptcy, depositors are often classified as unsecured creditors, meaning they are last in line to receive any recovered funds.

Lessons from the 2022 Crypto Lending Crisis

The risks of rehypothecation became visible during the crypto market downturn of 2022. Several major platforms collapsed due to aggressive rehypothecation strategies.

In the first half of 2022:

Celsius Network rehypothecated user funds into high-risk DeFi protocols and loans. When the market turned, they couldn't recall liquidity fast enough to meet withdrawal requests. 

Voyager Digital lent hundreds of millions of dollars of user assets to a single hedge fund. When that fund defaulted due to trading losses, Voyager became insolvent.

In the second half of 2022:

The collapse of FTX, a major centralized exchange, revealed similar patterns of commingling (illegal pooling or mixing) and lending of customer funds. The combined effect of these failures resulted in billions of dollars in user losses and accelerated calls for regulatory action in multiple jurisdictions.

CeFi vs. DeFi Rehypothecation

It's worth distinguishing between centralized finance (CeFi) and DeFi approaches to rehypothecation. CeFi operations are generally opaque. Users often deposit funds without knowing who the counterparty is or how much leverage is being applied.

DeFi rehypothecation exists, often through liquid staking or wrapped tokens, but it is generally more transparent. Users can verify on the blockchain where their assets are deployed. However, DeFi introduces smart contract risk, where vulnerabilities in code can result in loss of funds.

How to Protect Yourself from Rehypothecation Risk

Self-custody is the most direct protection. Holding assets in a non-custodial wallet, where you control the private keys, means the platform cannot lend out your assets. Controlling your private keys means only you can authorize transactions with those funds.

If you plan to use custodial platforms, it helps to understand the difference between hot or cold wallet storage options, since cold storage typically offers stronger security for assets you don't need to access frequently.

Before using any centralized lending platform, make sure to read the Terms of Service. Look for clauses about the platform's right to pledge, re-pledge, or hypothecate your assets. If the terms state that depositing transfers ownership, your assets can be lent out.

Be skeptical of unusually high yields. If a platform offers significantly higher interest than the market average, it may be engaging in riskier rehypothecation strategies to generate that return. Higher yield typically means higher risk.

FAQ

What does rehypothecation mean in crypto?

Rehypothecation in crypto means a lending platform takes assets you have deposited and lends them to a third party, such as a hedge fund or institutional borrower. The platform earns interest on the loan and pays you a portion as yield. Your funds are no longer held securely by the platform; they are with a borrower whose ability to repay is uncertain.

Is rehypothecation illegal?

Rehypothecation is not inherently illegal and is common in traditional finance. In crypto, it is largely unregulated in most jurisdictions, though this is changing. Frameworks like the European Union's Markets in Crypto-Assets (MiCA) regulation are introducing custody and asset segregation rules that affect how platforms can handle customer funds.

What happened to Celsius and Voyager?

Both Celsius Network and Voyager Digital collapsed during the 2022 crypto downturn after they were unable to meet user withdrawal requests. Celsius had rehypothecated user funds into high-risk DeFi protocols. Voyager had concentrated a large portion of user assets in a single institutional borrower that defaulted. Both cases resulted in bankruptcy proceedings and significant losses for depositors.

Can DeFi platforms rehypothecate your assets?

DeFi protocols can involve forms of rehypothecation, such as liquid staking derivatives and wrapped tokens, but the process is generally transparent and visible on-chain. You can usually verify where your assets are deployed. Smart contract vulnerabilities are typically a more pertinent risk in DeFi compared to opaque third-party lending.

How can I avoid rehypothecation risk?

The most reliable way to avoid rehypothecation risk is to hold your assets in a wallet where you control the private keys. If you do use centralized platforms, read the Terms of Service carefully, understand how the platform generates yield, and consider distributing assets across multiple platforms to reduce concentration risk.

Closing Thoughts

Rehypothecation is a trade-off between yield and security. It provides the liquidity that allows platforms to offer attractive interest rates, but it introduces systemic risks that can lead to significant losses during market downturns.

For individual investors, the choice comes down to how much risk they are comfortable taking. Keeping direct control over your funds provides the strongest protection against rehypothecation risk, though it does mean giving up any platform-generated yield.

Further Reading

Custodial vs. Non-Custodial Wallets: What's the Difference?

What Are Wrapped Tokens?

Hot vs. Cold Wallet: Which Crypto Wallet Should You Use?

What Are Flash Loans in DeFi?

What Are Real World Assets (RWA) in DeFi and Crypto?

Disclaimer: This content is presented to you on an "as is" basis for general information and or educational purposes only, without representation or warranty of any kind. It should not be construed as financial, legal or other professional advice, nor is it intended to recommend the purchase of any specific product or service. You should seek your own advice from appropriate professional advisors. Where the content is contributed by a third party contributor, please note that those views expressed belong to the third party contributor, and do not necessarily reflect those of Binance Academy. Digital asset prices can be volatile. The value of your investment may go down or up and you may not get back the amount invested. You are solely responsible for your investment decisions and Binance Academy is not liable for any losses you may incur. For more information, see our Terms of Use, Risk Warning and Binance Academy Terms.
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Binance Academy
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What Are Concentrated Liquidity Market Makers (CLMMs)?
Key Takeaways

CLMMs allow liquidity providers to allocate capital within a custom price range on a decentralized finance (DeFi) protocol, rather than spreading funds across all possible prices.

By concentrating funds near the current market price, providers may earn more trading fees with the same amount of capital compared to traditional AMM models.

CLMMs require active management. If the market price moves outside a provider's chosen range, the position stops earning fees until the price returns or the range is adjusted.

The risk of impermanent loss can be amplified in CLMMs because capital is more exposed to price movements within a narrow range.

Introduction

In the early days of decentralized finance (DeFi), providing liquidity was mostly a passive activity. You deposited two tokens into a liquidity pool, and the underlying smart contract spread your funds across every possible price. This model, known as the standard Automated Market Maker (AMM), was simple to use but not particularly efficient.

Concentrated Liquidity Market Makers (CLMMs) changed this. Instead of spreading your capital across all prices, CLMMs let you focus it where trading actually happens. This makes your funds more useful, which can mean higher fee earnings on less capital.

You can think of it like this: in a standard AMM, you're setting up a shop on every mile of a highway crossing the entire country, including deserted stretches. CLMMs let you open your shop only on the busy sections. Your investment goes further because it's positioned where demand exists.

What Is Concentrated Liquidity?

Concentrated liquidity means capital that is allocated within a specific price range you choose. In earlier AMM versions, liquidity was distributed uniformly across all prices. A large portion of the assets in a pool was often never used for trading, especially for stablecoin pairs where prices rarely deviate far from $1.00.

With CLMMs, you can choose to provide liquidity only between, say, $0.99 and $1.01 for a stablecoin pair. This concentrates your capital right where trades are most likely to occur, making it far more efficient than spreading it thinly across distant price levels.

How Do CLMMs Work?

Ticks

To make custom price ranges possible, CLMMs divide the price spectrum into small, discrete steps called ticks. Ticks act as the boundaries between price areas. When you create a position, you choose a lower tick and an upper tick to define the edges of your LP tokens range. Your capital sits between these two boundaries and earns fees from all trades that pass through your range.

Active liquidity

Your position is only "active" when the current market price is within the range you selected. While the price stays inside your range, you earn a share of trading fees from the pool. If the price moves up or down and crosses your chosen tick boundaries, your position becomes inactive. You stop earning fees until the price returns, or until you manually adjust your range.

Capital efficiency

The central benefit of CLMMs is capital efficiency. Because you aren't spreading capital across distant price levels, you can earn a similar amount of fees with less total capital compared to a standard AMM. A provider in a tightly concentrated range may earn the same daily fees with $1,000 as a provider in a standard pool earns with $5,000, simply because the concentrated capital is being used by more trades.

The Risks of CLMMs

CLMMs can offer better fee income than standard AMMs, but they require more active involvement and carry specific risks.

Going out of range

If the price exits your chosen interval, your position effectively converts fully into one of the two assets in the pair. At this point, you hold only one token and earn no fees. You need to either wait for the price to return or close and reopen your position with a new range.

Amplified impermanent loss

Because your liquidity is concentrated, impermanent loss can be amplified compared to standard AMMs. If the market moves sharply against your position, the value of your holdings may decline faster than in a traditional pool. This is especially relevant during volatile market conditions.

Active management required

Standard AMM pools are relatively hands-off. CLMMs are not. You need to select a price range, monitor market movements, and rebalance your position when necessary. Some users employ active management strategies, adjusting ranges frequently based on price action. Others use automated CLMM management tools that rebalance positions on their behalf.

Uniswap V4 and the Next Generation of CLMMs

Uniswap V4, which launched in early 2025, pushed the CLMM model further. V4 introduced "hooks," which are pieces of custom code that developers can attach to a pool to modify its behavior. Hooks can enable features like dynamic fee adjustment, on-chain limit orders, or custom oracles built directly into the pool logic.

This development has expanded what is possible with concentrated liquidity. Pools are no longer fixed in their mechanics. Developers can build highly specialized market structures on top of the same core CLMM framework. This has contributed to continued growth in DeFi liquidity depth and the range of trading tools available to users.

FAQ

What is the difference between a CLMM and a standard AMM?

A standard AMM spreads a provider's capital across all price levels from zero to infinity, making most of it inactive at any given time. A CLMM lets providers choose a specific price range to supply liquidity in. This makes the capital more efficient, but requires active management to stay effective.

Can I lose money providing liquidity in a CLMM?

Yes. Liquidity providers in CLMMs are exposed to impermanent loss, which can be greater than in standard AMMs due to the concentrated nature of positions. If the market price moves outside your range, you hold only one asset and earn no fees. Fees earned may offset these losses over time, but this is not guaranteed.

What happens when my position goes out of range?

When the market price exits your chosen range, your position becomes entirely composed of one of the two tokens in the pair. You stop earning trading fees. You can either wait for the price to re-enter your range, or you can close your position and create a new one centered around the current price.

What is a tick in a CLMM?

A tick is one of the discrete price steps that CLMMs use to divide the price spectrum. Ticks function as the boundaries of a liquidity position. When you create a position, you select a lower tick and an upper tick. Your capital earns fees from all trades that occur between these two boundaries.

Where can I use a CLMM?

CLMMs are available on several decentralized exchange (DEX) protocols. Uniswap V3 and V4 are among the most widely used. Other protocols on various blockchains have adopted the same model. Always research the specific protocol, its fees, and associated risks before providing liquidity.

Closing Thoughts

Concentrated Liquidity Market Makers have made DeFi markets significantly more capital-efficient. They allow traders to access tighter spreads and deeper liquidity, while providers can earn higher fees on the same amount of capital.

That said, CLMMs transform liquidity provision from a passive activity into an active one. Managing price ranges, monitoring positions, and understanding impermanent loss are all part of the experience.

If you're new to DeFi, consider starting with standard AMM pools to get familiar with how liquidity provision works before moving to CLMMs.

Further Reading

What Is Yield Farming in Decentralized Finance (DeFi)?

What Is Uniswap V4?

Impermanent Loss Explained

What Is an Automated Market Maker (AMM)?

Staking vs. Yield Farming: Which One Is Better?

Disclaimer: This content is presented to you on an "as is" basis for general information and or educational purposes only, without representation or warranty of any kind. It should not be construed as financial, legal or other professional advice, nor is it intended to recommend the purchase of any specific product or service. You should seek your own advice from appropriate professional advisors. Where the content is contributed by a third party contributor, please note that those views expressed belong to the third party contributor, and do not necessarily reflect those of Binance Academy. Digital asset prices can be volatile. The value of your investment may go down or up and you may not get back the amount invested. You are solely responsible for your investment decisions and Binance Academy is not liable for any losses you may incur. For more information, see our Terms of Use, Risk Warning, and Binance Academy Terms.
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Cool
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Binance Academy
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What Are Concentrated Liquidity Market Makers (CLMMs)?
Key Takeaways

CLMMs allow liquidity providers to allocate capital within a custom price range on a decentralized finance (DeFi) protocol, rather than spreading funds across all possible prices.

By concentrating funds near the current market price, providers may earn more trading fees with the same amount of capital compared to traditional AMM models.

CLMMs require active management. If the market price moves outside a provider's chosen range, the position stops earning fees until the price returns or the range is adjusted.

The risk of impermanent loss can be amplified in CLMMs because capital is more exposed to price movements within a narrow range.

Introduction

In the early days of decentralized finance (DeFi), providing liquidity was mostly a passive activity. You deposited two tokens into a liquidity pool, and the underlying smart contract spread your funds across every possible price. This model, known as the standard Automated Market Maker (AMM), was simple to use but not particularly efficient.

Concentrated Liquidity Market Makers (CLMMs) changed this. Instead of spreading your capital across all prices, CLMMs let you focus it where trading actually happens. This makes your funds more useful, which can mean higher fee earnings on less capital.

You can think of it like this: in a standard AMM, you're setting up a shop on every mile of a highway crossing the entire country, including deserted stretches. CLMMs let you open your shop only on the busy sections. Your investment goes further because it's positioned where demand exists.

What Is Concentrated Liquidity?

Concentrated liquidity means capital that is allocated within a specific price range you choose. In earlier AMM versions, liquidity was distributed uniformly across all prices. A large portion of the assets in a pool was often never used for trading, especially for stablecoin pairs where prices rarely deviate far from $1.00.

With CLMMs, you can choose to provide liquidity only between, say, $0.99 and $1.01 for a stablecoin pair. This concentrates your capital right where trades are most likely to occur, making it far more efficient than spreading it thinly across distant price levels.

How Do CLMMs Work?

Ticks

To make custom price ranges possible, CLMMs divide the price spectrum into small, discrete steps called ticks. Ticks act as the boundaries between price areas. When you create a position, you choose a lower tick and an upper tick to define the edges of your LP tokens range. Your capital sits between these two boundaries and earns fees from all trades that pass through your range.

Active liquidity

Your position is only "active" when the current market price is within the range you selected. While the price stays inside your range, you earn a share of trading fees from the pool. If the price moves up or down and crosses your chosen tick boundaries, your position becomes inactive. You stop earning fees until the price returns, or until you manually adjust your range.

Capital efficiency

The central benefit of CLMMs is capital efficiency. Because you aren't spreading capital across distant price levels, you can earn a similar amount of fees with less total capital compared to a standard AMM. A provider in a tightly concentrated range may earn the same daily fees with $1,000 as a provider in a standard pool earns with $5,000, simply because the concentrated capital is being used by more trades.

The Risks of CLMMs

CLMMs can offer better fee income than standard AMMs, but they require more active involvement and carry specific risks.

Going out of range

If the price exits your chosen interval, your position effectively converts fully into one of the two assets in the pair. At this point, you hold only one token and earn no fees. You need to either wait for the price to return or close and reopen your position with a new range.

Amplified impermanent loss

Because your liquidity is concentrated, impermanent loss can be amplified compared to standard AMMs. If the market moves sharply against your position, the value of your holdings may decline faster than in a traditional pool. This is especially relevant during volatile market conditions.

Active management required

Standard AMM pools are relatively hands-off. CLMMs are not. You need to select a price range, monitor market movements, and rebalance your position when necessary. Some users employ active management strategies, adjusting ranges frequently based on price action. Others use automated CLMM management tools that rebalance positions on their behalf.

Uniswap V4 and the Next Generation of CLMMs

Uniswap V4, which launched in early 2025, pushed the CLMM model further. V4 introduced "hooks," which are pieces of custom code that developers can attach to a pool to modify its behavior. Hooks can enable features like dynamic fee adjustment, on-chain limit orders, or custom oracles built directly into the pool logic.

This development has expanded what is possible with concentrated liquidity. Pools are no longer fixed in their mechanics. Developers can build highly specialized market structures on top of the same core CLMM framework. This has contributed to continued growth in DeFi liquidity depth and the range of trading tools available to users.

FAQ

What is the difference between a CLMM and a standard AMM?

A standard AMM spreads a provider's capital across all price levels from zero to infinity, making most of it inactive at any given time. A CLMM lets providers choose a specific price range to supply liquidity in. This makes the capital more efficient, but requires active management to stay effective.

Can I lose money providing liquidity in a CLMM?

Yes. Liquidity providers in CLMMs are exposed to impermanent loss, which can be greater than in standard AMMs due to the concentrated nature of positions. If the market price moves outside your range, you hold only one asset and earn no fees. Fees earned may offset these losses over time, but this is not guaranteed.

What happens when my position goes out of range?

When the market price exits your chosen range, your position becomes entirely composed of one of the two tokens in the pair. You stop earning trading fees. You can either wait for the price to re-enter your range, or you can close your position and create a new one centered around the current price.

What is a tick in a CLMM?

A tick is one of the discrete price steps that CLMMs use to divide the price spectrum. Ticks function as the boundaries of a liquidity position. When you create a position, you select a lower tick and an upper tick. Your capital earns fees from all trades that occur between these two boundaries.

Where can I use a CLMM?

CLMMs are available on several decentralized exchange (DEX) protocols. Uniswap V3 and V4 are among the most widely used. Other protocols on various blockchains have adopted the same model. Always research the specific protocol, its fees, and associated risks before providing liquidity.

Closing Thoughts

Concentrated Liquidity Market Makers have made DeFi markets significantly more capital-efficient. They allow traders to access tighter spreads and deeper liquidity, while providers can earn higher fees on the same amount of capital.

That said, CLMMs transform liquidity provision from a passive activity into an active one. Managing price ranges, monitoring positions, and understanding impermanent loss are all part of the experience.

If you're new to DeFi, consider starting with standard AMM pools to get familiar with how liquidity provision works before moving to CLMMs.

Further Reading

What Is Yield Farming in Decentralized Finance (DeFi)?

What Is Uniswap V4?

Impermanent Loss Explained

What Is an Automated Market Maker (AMM)?

Staking vs. Yield Farming: Which One Is Better?

Disclaimer: This content is presented to you on an "as is" basis for general information and or educational purposes only, without representation or warranty of any kind. It should not be construed as financial, legal or other professional advice, nor is it intended to recommend the purchase of any specific product or service. You should seek your own advice from appropriate professional advisors. Where the content is contributed by a third party contributor, please note that those views expressed belong to the third party contributor, and do not necessarily reflect those of Binance Academy. Digital asset prices can be volatile. The value of your investment may go down or up and you may not get back the amount invested. You are solely responsible for your investment decisions and Binance Academy is not liable for any losses you may incur. For more information, see our Terms of Use, Risk Warning, and Binance Academy Terms.
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What Is an Ethereum Improvement Proposal (EIP)?
Key Takeaways

An Ethereum Improvement Proposal (EIP) is a formal document used to suggest new features or changes to the Ethereum network.

EIPs are the primary mechanism for community governance and protocol upgrades in Ethereum's decentralized ecosystem.

EIPs are divided into types: Core EIPs affect the base protocol, while ERCs define application-layer standards like token formats.

Major upgrades such as EIP-1559 (fee reform) and EIP-7702 (account abstraction in Pectra) have changed how Ethereum works for millions of users.

Introduction

An Ethereum Improvement Proposal (EIP) is a formal document that describes a proposed change to the Ethereum network. It can suggest a new feature, a process improvement, or an update to how the protocol works. EIPs are the standard way anyone in the Ethereum community can propose how the network should evolve.

Unlike a centralized software company where a small leadership team decides what changes to ship, Ethereum relies on a public, collaborative process. Anyone can write an EIP and submit it for community review. This makes EIPs a cornerstone of Ethereum's open and decentralized governance model.

How EIPs Function in Governance

The EIP process is how decisions get made on Ethereum. Every significant network upgrade starts as one or more EIPs that are proposed, debated, and eventually accepted or rejected. If accepted, client developers implement the changes so the network can move forward in consensus. Disagreements about major EIPs can result in hard forks and soft forks, with hard forks requiring all nodes to upgrade, and soft forks being backward-compatible.

The governance challenge became visible early in Ethereum's history. In 2016, a vulnerability in a smart contract project led to significant fund losses. The community had to debate whether to intervene. They ultimately chose a hard fork to reverse the damage. This moment showed that even code-based systems require human judgment in exceptional circumstances.

Today, the process is more structured. Proposals go through draft, review, and final comment stages before being accepted or rejected. Vitalik Buterin and core developers review proposals and share research publicly, but the process is open to all contributors.

Types of EIPs

Not all EIPs are the same. They are divided into categories based on what they affect:

Core EIPs: These change the core protocol and require a network upgrade (hard fork) to take effect. EIP-1559 is an example.

ERCs (Ethereum Request for Comments): These define application-layer standards, such as how tokens behave. ERC-20 (fungible tokens) and ERC-721 (non-fungible tokens) are widely used examples.

Networking EIPs: These improve how Ethereum nodes communicate with each other.

Interface EIPs: These establish standards for how applications interact with the Ethereum network, such as API and ABI specifications.

Meta EIPs: These describe processes, guidelines, or changes to the EIP process itself rather than the protocol.

Understanding these types helps clarify why some proposals require the whole network to upgrade while others are optional standards that applications can choose to adopt.

Real-World Example: EIP-1559

One of the most impactful EIPs to date is EIP-1559, implemented during the London Hard Fork in August 2021. Before this change, users had to guess how much to pay validators in order for their transactions to be included in the next block. This often led to overpayment during busy periods and delays during quieter times.

EIP-1559 replaced this guessing game with a more predictable system. Every transaction now has two fee components:

Base fee: A minimum fee calculated automatically based on how full the previous block was. This fee is burned, meaning the ETH is permanently removed from circulation.

Priority fee (tip): An optional extra amount you can add to get your transaction processed faster by validators.

By mid-2025, the cumulative ETH burned through the EIP-1559 base fee mechanism had exceeded 4.5 million ETH, making it one of the most significant deflationary mechanisms in Ethereum's history.

Real-World Example: EIP-7702 and the Pectra Upgrade

A more recent example is EIP-7702, which was activated as part of the Ethereum Pectra upgrade in 2025. EIP-7702 allows regular Ethereum wallets (known as externally owned accounts, or EOAs) to temporarily take on smart contract code during a transaction. This is a step toward account abstraction, which aims to make Ethereum wallets more flexible and user-friendly.

For everyday users, EIP-7702 can eventually enable features like paying gas fees in tokens other than ETH, batching multiple transactions into one, and setting spending limits on a per-application basis. It represents how the EIP process continues to drive practical improvements to the user experience.

The Role of Consensus and Upgrades

EIPs are about reaching consensus, not just writing code. Before a proposal is accepted, it goes through public debate among developers, researchers, and community members. Disagreements can delay or block proposals entirely. The Merge, which transitioned Ethereum from proof-of-work to proof-of-stake, was years in the making and involved dozens of interconnected EIPs.

Not every proposal succeeds. Some are rejected because they introduce security risks, create unfair advantages, or simply don't reach sufficient community support. This iterative debate process is intentional: it helps prevent poorly designed changes from being deployed to a network used by millions of people.

FAQ

What is an Ethereum Improvement Proposal (EIP)?

An EIP is a formal document that proposes a change, new feature, or process improvement for the Ethereum network. Anyone in the Ethereum community can submit an EIP. After community review and debate, accepted EIPs are implemented by client developers and activated through network upgrades.

What is the difference between an EIP and an ERC?

An EIP is the broad category covering all types of Ethereum proposals. An ERC is a specific type of EIP focused on application-layer standards, such as how tokens or NFTs should behave. All ERCs are EIPs, but not all EIPs are ERCs.

Who can submit an EIP?

Anyone can write and submit an EIP. There is no requirement to be a core developer or Ethereum Foundation member. However, proposals must follow a defined technical format and go through a structured review process. In practice, most EIPs come from experienced protocol or application developers due to the technical depth required.

What happens if an EIP is not accepted?

If an EIP does not reach consensus among the community, it can be withdrawn, deferred for future consideration, or simply remain inactive. Rejected proposals are documented on the EIP repository, which helps future contributors understand what has already been tried and why it did not proceed.

Closing Thoughts

Ethereum Improvement Proposals are the structured mechanism through which a decentralized network agrees on how to evolve. From EIP-1559's fee reform to EIP-7702's account abstraction features, EIPs have shaped how Ethereum works at every level.

Further Reading

What Is Ethereum and How Does It Work?

What Is the Ethereum London Hard Fork?

The Merge Ethereum Upgrade: All You Need To Know

What Is the Ethereum Pectra Upgrade?

Hard Forks and Soft Forks Explained

Disclaimer: This content is presented to you on an "as is" basis for general information and or educational purposes only, without representation or warranty of any kind. It should not be construed as financial, legal or other professional advice, nor is it intended to recommend the purchase of any specific product or service. You should seek your own advice from appropriate professional advisors. Where the content is contributed by a third party contributor, please note that those views expressed belong to the third party contributor, and do not necessarily reflect those of Binance Academy. Digital asset prices can be volatile. The value of your investment may go down or up and you may not get back the amount invested. You are solely responsible for your investment decisions and Binance Academy is not liable for any losses you may incur. For more information, see our Terms of Use, Risk Warning and Binance Academy Terms.
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Binance Academy
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What Is an Ethereum Improvement Proposal (EIP)?
Key Takeaways

An Ethereum Improvement Proposal (EIP) is a formal document used to suggest new features or changes to the Ethereum network.

EIPs are the primary mechanism for community governance and protocol upgrades in Ethereum's decentralized ecosystem.

EIPs are divided into types: Core EIPs affect the base protocol, while ERCs define application-layer standards like token formats.

Major upgrades such as EIP-1559 (fee reform) and EIP-7702 (account abstraction in Pectra) have changed how Ethereum works for millions of users.

Introduction

An Ethereum Improvement Proposal (EIP) is a formal document that describes a proposed change to the Ethereum network. It can suggest a new feature, a process improvement, or an update to how the protocol works. EIPs are the standard way anyone in the Ethereum community can propose how the network should evolve.

Unlike a centralized software company where a small leadership team decides what changes to ship, Ethereum relies on a public, collaborative process. Anyone can write an EIP and submit it for community review. This makes EIPs a cornerstone of Ethereum's open and decentralized governance model.

How EIPs Function in Governance

The EIP process is how decisions get made on Ethereum. Every significant network upgrade starts as one or more EIPs that are proposed, debated, and eventually accepted or rejected. If accepted, client developers implement the changes so the network can move forward in consensus. Disagreements about major EIPs can result in hard forks and soft forks, with hard forks requiring all nodes to upgrade, and soft forks being backward-compatible.

The governance challenge became visible early in Ethereum's history. In 2016, a vulnerability in a smart contract project led to significant fund losses. The community had to debate whether to intervene. They ultimately chose a hard fork to reverse the damage. This moment showed that even code-based systems require human judgment in exceptional circumstances.

Today, the process is more structured. Proposals go through draft, review, and final comment stages before being accepted or rejected. Vitalik Buterin and core developers review proposals and share research publicly, but the process is open to all contributors.

Types of EIPs

Not all EIPs are the same. They are divided into categories based on what they affect:

Core EIPs: These change the core protocol and require a network upgrade (hard fork) to take effect. EIP-1559 is an example.

ERCs (Ethereum Request for Comments): These define application-layer standards, such as how tokens behave. ERC-20 (fungible tokens) and ERC-721 (non-fungible tokens) are widely used examples.

Networking EIPs: These improve how Ethereum nodes communicate with each other.

Interface EIPs: These establish standards for how applications interact with the Ethereum network, such as API and ABI specifications.

Meta EIPs: These describe processes, guidelines, or changes to the EIP process itself rather than the protocol.

Understanding these types helps clarify why some proposals require the whole network to upgrade while others are optional standards that applications can choose to adopt.

Real-World Example: EIP-1559

One of the most impactful EIPs to date is EIP-1559, implemented during the London Hard Fork in August 2021. Before this change, users had to guess how much to pay validators in order for their transactions to be included in the next block. This often led to overpayment during busy periods and delays during quieter times.

EIP-1559 replaced this guessing game with a more predictable system. Every transaction now has two fee components:

Base fee: A minimum fee calculated automatically based on how full the previous block was. This fee is burned, meaning the ETH is permanently removed from circulation.

Priority fee (tip): An optional extra amount you can add to get your transaction processed faster by validators.

By mid-2025, the cumulative ETH burned through the EIP-1559 base fee mechanism had exceeded 4.5 million ETH, making it one of the most significant deflationary mechanisms in Ethereum's history.

Real-World Example: EIP-7702 and the Pectra Upgrade

A more recent example is EIP-7702, which was activated as part of the Ethereum Pectra upgrade in 2025. EIP-7702 allows regular Ethereum wallets (known as externally owned accounts, or EOAs) to temporarily take on smart contract code during a transaction. This is a step toward account abstraction, which aims to make Ethereum wallets more flexible and user-friendly.

For everyday users, EIP-7702 can eventually enable features like paying gas fees in tokens other than ETH, batching multiple transactions into one, and setting spending limits on a per-application basis. It represents how the EIP process continues to drive practical improvements to the user experience.

The Role of Consensus and Upgrades

EIPs are about reaching consensus, not just writing code. Before a proposal is accepted, it goes through public debate among developers, researchers, and community members. Disagreements can delay or block proposals entirely. The Merge, which transitioned Ethereum from proof-of-work to proof-of-stake, was years in the making and involved dozens of interconnected EIPs.

Not every proposal succeeds. Some are rejected because they introduce security risks, create unfair advantages, or simply don't reach sufficient community support. This iterative debate process is intentional: it helps prevent poorly designed changes from being deployed to a network used by millions of people.

FAQ

What is an Ethereum Improvement Proposal (EIP)?

An EIP is a formal document that proposes a change, new feature, or process improvement for the Ethereum network. Anyone in the Ethereum community can submit an EIP. After community review and debate, accepted EIPs are implemented by client developers and activated through network upgrades.

What is the difference between an EIP and an ERC?

An EIP is the broad category covering all types of Ethereum proposals. An ERC is a specific type of EIP focused on application-layer standards, such as how tokens or NFTs should behave. All ERCs are EIPs, but not all EIPs are ERCs.

Who can submit an EIP?

Anyone can write and submit an EIP. There is no requirement to be a core developer or Ethereum Foundation member. However, proposals must follow a defined technical format and go through a structured review process. In practice, most EIPs come from experienced protocol or application developers due to the technical depth required.

What happens if an EIP is not accepted?

If an EIP does not reach consensus among the community, it can be withdrawn, deferred for future consideration, or simply remain inactive. Rejected proposals are documented on the EIP repository, which helps future contributors understand what has already been tried and why it did not proceed.

Closing Thoughts

Ethereum Improvement Proposals are the structured mechanism through which a decentralized network agrees on how to evolve. From EIP-1559's fee reform to EIP-7702's account abstraction features, EIPs have shaped how Ethereum works at every level.

Further Reading

What Is Ethereum and How Does It Work?

What Is the Ethereum London Hard Fork?

The Merge Ethereum Upgrade: All You Need To Know

What Is the Ethereum Pectra Upgrade?

Hard Forks and Soft Forks Explained

Disclaimer: This content is presented to you on an "as is" basis for general information and or educational purposes only, without representation or warranty of any kind. It should not be construed as financial, legal or other professional advice, nor is it intended to recommend the purchase of any specific product or service. You should seek your own advice from appropriate professional advisors. Where the content is contributed by a third party contributor, please note that those views expressed belong to the third party contributor, and do not necessarily reflect those of Binance Academy. Digital asset prices can be volatile. The value of your investment may go down or up and you may not get back the amount invested. You are solely responsible for your investment decisions and Binance Academy is not liable for any losses you may incur. For more information, see our Terms of Use, Risk Warning and Binance Academy Terms.
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Chainbase Official
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Intern is reviewing all Tops Farming Beta applications 👀

The exclusive tester group is ready. You’ll get in very, very soon…

If you applied, say something so we know you didn’t disappear.

🤜smash it:
https://x.com/ChainbaseHQ/status/1990357528052699615
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Binance Academy
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What Is Kite (KITE)?
Key Takeaways

Kite is developing a blockchain platform for agentic payments, enabling autonomous AI agents to transact with verifiable identity and programmable governance.

The Kite blockchain is an EVM-compatible Layer 1 network designed for real-time transactions and coordination among AI agents.

The platform features a three-layer identity system that separates users, agents, and sessions to enhance security and control.

KITE is the network’s native token. The token’s utility launches in two phases, beginning with ecosystem participation and incentives, and later adding staking, governance, and fee-related functions.

What Is Kite?

Kite is an EVM-compatible Layer 1 blockchain designed for agentic payments, enabling you to create and manage autonomous artificial intelligence (AI) agents. The platform provides a secure and verifiable environment where agents can hold unique identities, process payments, and operate according to programmable rules defined by their users.

AI Agents

AI agents are autonomous programs that can perform tasks, make decisions, and manage digital interactions on your behalf. While most existing agents can generate content or analyze data, they typically rely on centralized platforms and may lack the means to handle financial transactions independently.

Kite is developing the infrastructure that provides AI agents with verifiable identities, permission controls, and programmable rules that define how they operate. With state channel payment rails, Kite aims to enable AI agents to send and receive real-time, low-cost micropayments securely across the network.

The Kite blockchain

The Kite blockchain uses a Proof of Stake (PoS) consensus mechanism to support real-time and low-cost transactions. The network acts as the coordination layer for autonomous AI agents, enabling fast payments, secure data attribution, and on-chain reputation tracking.

Kite features a modular ecosystem called Modules, where users can access or host AI services, including datasets, models, and computational tools. Each module connects to the main blockchain for settlement and governance, forming an open marketplace where developers can publish, deploy, and monetize their work. 

Modules operate as semi-independent communities, focusing on specific use cases such as large-scale data processing, privacy-preserving computation, or AI model training. Module owners oversee membership, invite contributors, and manage the distribution of rewards.

Participants can earn KITE, the network’s native token, based on their involvement in the ecosystem. Contributors who build or provide AI services are rewarded for the usage of their assets. Module owners receive income tied to on-chain activity within their modules, and validators earn staking rewards for maintaining network security.

Architecture

Kite uses a three-layer identity architecture that defines how users, agents, and sessions interact within the network.

User: The user is the main owner and source of trust. They manage the master wallet, set overall policies, and decide what their AI agents can do. All permissions and spending limits originate from the user’s authority. 

Agent: Each agent receives its own wallet address, derived from the user’s master key, using the BIP-32 standard, a protocol that allows for the secure creation of multiple linked wallets from a single root key. This allows users to delegate control safely without sharing private keys.

Session: A session is a temporary identity for short-lived actions, such as a single payment or API call. Session keys are randomly generated and expire after each use, reducing exposure in the event of a compromise.

If a session key is compromised, it only impacts a single interaction. If an agent’s key is exposed, its actions are still restricted by the user’s predefined rules. This layered design provides multi-level protection, while each interaction also contributes to a shared reputation system that reinforces trust across the network.

Payment Rails

Kite introduces payment rails designed for AI agents, using state channels to enable fast and efficient transactions. Instead of going through multiple intermediaries, agents can transact directly through secure, off-chain channels. 

Only the opening and closing of each channel are recorded on-chain, while all other transactions occur instantly between participants. This design supports microtransactions, making it easier for autonomous agents to exchange value, pay for services, or access data in a verifiable and scalable manner.

Use Cases

Kite can support a variety of applications by enabling automated payments and authenticated AI transactions, including:

Retail transactions: AI agents can handle online shopping for consumers, with Kite enabling secure delegation and verified payments through the Kite Passport and the Kite Payment API.

Manufacturing: Manufacturers can automate sourcing and supplier orders using AI agents, while Kite provides delegation proof and stablecoin payments to reduce foreign exchange costs. 

Portfolio management: AI agents can manage portfolios automatically, with Kite adding programmable risk controls and guardrails for safer and more transparent trading.

Digital services: AI agents can pay for APIs, data, and tools directly, using the Kite Passport and the Layer 1 blockchain for stablecoin transactions.

The KITE Token

KITE is the native token of the Kite protocol, with a maximum supply of 10 billion tokens. The token’s features will be introduced in two phases to support early participation and long-term ecosystem growth, with the second phase launching alongside the mainnet.

Phase 1

Liquidity: Module owners must lock KITE in liquidity pools paired with their module tokens to activate and maintain their modules.

Ecosystem access: Builders and AI service providers need to hold KITE to participate in the ecosystem.

Incentives: A portion of KITE is distributed to users and businesses that contribute value to the network

Phase 2

AI service commissions: The protocol converts a small fee from AI service transactions into KITE and then redistributes it to modules and the Kite Layer 1 blockchain.

Staking: Users can stake KITE to secure the network and earn rewards. Module owners, validators, and delegators align their incentives by staking on specific modules they support.

Governance: KITE holders can participate in governance by voting on proposals related to protocol upgrades, incentive programs, and performance standards.

Kite (KITE) on Binance Launchpool

On October 31, 2025, Binance announced KITE as the 71st project on the Binance Launchpool. Users who locked their BNB, FDUSD, and USDC during the farming period were eligible to receive KITE rewards. A total of 150 million KITE tokens were allocated to the program, accounting for 1.5% of the total token supply.

After the farming period, KITE will be listed for trading on Binance with the Seed Tag applied, allowing for trading against the USDT, USDC, BNB, and TRY pairs.

Closing Thoughts

Kite is a Layer 1 blockchain to support the integration of AI agents into digital economies. With features such as verifiable identity, programmable governance, and real-time payments, the platform allows these agents to operate securely and transparently. Kite’s modular design connects users, developers, and validators, creating an open framework where AI agents can transact and collaborate within on-chain environments. 

Further Reading

Blockchain Layer 1 vs. Layer 2 Scaling Solutions

Top 6 Artificial Intelligence (AI) Cryptocurrencies

What Are Appchains (Application-Specific Blockchains)?

Disclaimer: This content is presented to you on an “as is” basis for general information and educational purposes only, without representation or warranty of any kind. It should not be construed as financial, legal or other professional advice, nor is it intended to recommend the purchase of any specific product or service. You should seek your own advice from appropriate professional advisors. Products mentioned in this article may not be available in your region. Where the article is contributed by a third party contributor, please note that those views expressed belong to the third party contributor, and do not necessarily reflect those of Binance Academy. Please read our full disclaimer for further details. Digital asset prices can be volatile. The value of your investment may go down or up and you may not get back the amount invested. You are solely responsible for your investment decisions and Binance Academy is not liable for any losses you may incur. This material should not be construed as financial, legal or other professional advice. For more information, see our Terms of Use and Risk Warning.
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Cool
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Binance Academy
·
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What Is Kite (KITE)?
Key Takeaways

Kite is developing a blockchain platform for agentic payments, enabling autonomous AI agents to transact with verifiable identity and programmable governance.

The Kite blockchain is an EVM-compatible Layer 1 network designed for real-time transactions and coordination among AI agents.

The platform features a three-layer identity system that separates users, agents, and sessions to enhance security and control.

KITE is the network’s native token. The token’s utility launches in two phases, beginning with ecosystem participation and incentives, and later adding staking, governance, and fee-related functions.

What Is Kite?

Kite is an EVM-compatible Layer 1 blockchain designed for agentic payments, enabling you to create and manage autonomous artificial intelligence (AI) agents. The platform provides a secure and verifiable environment where agents can hold unique identities, process payments, and operate according to programmable rules defined by their users.

AI Agents

AI agents are autonomous programs that can perform tasks, make decisions, and manage digital interactions on your behalf. While most existing agents can generate content or analyze data, they typically rely on centralized platforms and may lack the means to handle financial transactions independently.

Kite is developing the infrastructure that provides AI agents with verifiable identities, permission controls, and programmable rules that define how they operate. With state channel payment rails, Kite aims to enable AI agents to send and receive real-time, low-cost micropayments securely across the network.

The Kite blockchain

The Kite blockchain uses a Proof of Stake (PoS) consensus mechanism to support real-time and low-cost transactions. The network acts as the coordination layer for autonomous AI agents, enabling fast payments, secure data attribution, and on-chain reputation tracking.

Kite features a modular ecosystem called Modules, where users can access or host AI services, including datasets, models, and computational tools. Each module connects to the main blockchain for settlement and governance, forming an open marketplace where developers can publish, deploy, and monetize their work. 

Modules operate as semi-independent communities, focusing on specific use cases such as large-scale data processing, privacy-preserving computation, or AI model training. Module owners oversee membership, invite contributors, and manage the distribution of rewards.

Participants can earn KITE, the network’s native token, based on their involvement in the ecosystem. Contributors who build or provide AI services are rewarded for the usage of their assets. Module owners receive income tied to on-chain activity within their modules, and validators earn staking rewards for maintaining network security.

Architecture

Kite uses a three-layer identity architecture that defines how users, agents, and sessions interact within the network.

User: The user is the main owner and source of trust. They manage the master wallet, set overall policies, and decide what their AI agents can do. All permissions and spending limits originate from the user’s authority. 

Agent: Each agent receives its own wallet address, derived from the user’s master key, using the BIP-32 standard, a protocol that allows for the secure creation of multiple linked wallets from a single root key. This allows users to delegate control safely without sharing private keys.

Session: A session is a temporary identity for short-lived actions, such as a single payment or API call. Session keys are randomly generated and expire after each use, reducing exposure in the event of a compromise.

If a session key is compromised, it only impacts a single interaction. If an agent’s key is exposed, its actions are still restricted by the user’s predefined rules. This layered design provides multi-level protection, while each interaction also contributes to a shared reputation system that reinforces trust across the network.

Payment Rails

Kite introduces payment rails designed for AI agents, using state channels to enable fast and efficient transactions. Instead of going through multiple intermediaries, agents can transact directly through secure, off-chain channels. 

Only the opening and closing of each channel are recorded on-chain, while all other transactions occur instantly between participants. This design supports microtransactions, making it easier for autonomous agents to exchange value, pay for services, or access data in a verifiable and scalable manner.

Use Cases

Kite can support a variety of applications by enabling automated payments and authenticated AI transactions, including:

Retail transactions: AI agents can handle online shopping for consumers, with Kite enabling secure delegation and verified payments through the Kite Passport and the Kite Payment API.

Manufacturing: Manufacturers can automate sourcing and supplier orders using AI agents, while Kite provides delegation proof and stablecoin payments to reduce foreign exchange costs. 

Portfolio management: AI agents can manage portfolios automatically, with Kite adding programmable risk controls and guardrails for safer and more transparent trading.

Digital services: AI agents can pay for APIs, data, and tools directly, using the Kite Passport and the Layer 1 blockchain for stablecoin transactions.

The KITE Token

KITE is the native token of the Kite protocol, with a maximum supply of 10 billion tokens. The token’s features will be introduced in two phases to support early participation and long-term ecosystem growth, with the second phase launching alongside the mainnet.

Phase 1

Liquidity: Module owners must lock KITE in liquidity pools paired with their module tokens to activate and maintain their modules.

Ecosystem access: Builders and AI service providers need to hold KITE to participate in the ecosystem.

Incentives: A portion of KITE is distributed to users and businesses that contribute value to the network

Phase 2

AI service commissions: The protocol converts a small fee from AI service transactions into KITE and then redistributes it to modules and the Kite Layer 1 blockchain.

Staking: Users can stake KITE to secure the network and earn rewards. Module owners, validators, and delegators align their incentives by staking on specific modules they support.

Governance: KITE holders can participate in governance by voting on proposals related to protocol upgrades, incentive programs, and performance standards.

Kite (KITE) on Binance Launchpool

On October 31, 2025, Binance announced KITE as the 71st project on the Binance Launchpool. Users who locked their BNB, FDUSD, and USDC during the farming period were eligible to receive KITE rewards. A total of 150 million KITE tokens were allocated to the program, accounting for 1.5% of the total token supply.

After the farming period, KITE will be listed for trading on Binance with the Seed Tag applied, allowing for trading against the USDT, USDC, BNB, and TRY pairs.

Closing Thoughts

Kite is a Layer 1 blockchain to support the integration of AI agents into digital economies. With features such as verifiable identity, programmable governance, and real-time payments, the platform allows these agents to operate securely and transparently. Kite’s modular design connects users, developers, and validators, creating an open framework where AI agents can transact and collaborate within on-chain environments. 

Further Reading

Blockchain Layer 1 vs. Layer 2 Scaling Solutions

Top 6 Artificial Intelligence (AI) Cryptocurrencies

What Are Appchains (Application-Specific Blockchains)?

Disclaimer: This content is presented to you on an “as is” basis for general information and educational purposes only, without representation or warranty of any kind. It should not be construed as financial, legal or other professional advice, nor is it intended to recommend the purchase of any specific product or service. You should seek your own advice from appropriate professional advisors. Products mentioned in this article may not be available in your region. Where the article is contributed by a third party contributor, please note that those views expressed belong to the third party contributor, and do not necessarily reflect those of Binance Academy. Please read our full disclaimer for further details. Digital asset prices can be volatile. The value of your investment may go down or up and you may not get back the amount invested. You are solely responsible for your investment decisions and Binance Academy is not liable for any losses you may incur. This material should not be construed as financial, legal or other professional advice. For more information, see our Terms of Use and Risk Warning.
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Binance Academy
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What Is Story (IP)?
Key Takeaways

Story (IP) is a blockchain platform specifically designed to build a peer-to-peer intellectual property (IP) network.

It provides a universal ledger for registering, exchanging, and monetizing knowledge and creative assets without relying on centralized intermediaries.

Story features a multi-core architecture, including specialized execution cores that handle intellectual property as a native asset class.

The platform enables programmable IP markets and supports the integration of artificial intelligence (AI) by acting as a settlement layer for AI transactions involving intellectual property.

Its native token, IP, facilitates transactions, staking, and incentivizes honest participation within the network.

Introduction

In today's digital world, intellectual property plays an important role in creativity, innovation, and knowledge sharing. But traditional IP systems often depend on centralized institutions, which can create inefficiencies and limit the fair monetization and exchange of intellectual assets.

Story (IP) aims to address these challenges by offering a blockchain protocol that enables individuals and entities to register, trade, and monetize intellectual property assets directly, transparently, and programmatically.

What Is Story (IP)?

Story is a blockchain network designed to create a programmable marketplace for knowledge and creativity. It allows intellectual property assets (e.g., creative works, scientific data, machine learning models, etc.) to be represented and exchanged as native digital assets on an open ledger.

Story offers a universal repository for IP assets combined with a programmable market where these assets can be traded, licensed, or monetized under customizable terms set by their owners. This peer-to-peer system removes the need for intermediaries and reduces transaction costs, increasing the accessibility and liquidity of intellectual property.

How Does Story Work?

Multi-core architecture

Story uses a multi-core execution environment, with a main core compatible with Ethereum Virtual Machine (EVM) and multiple other specialized cores. One key specialized core is the Intellectual Property (IP) core, which manages IP registration, licensing, and economic relationships on-chain. This core supports complex IP graphs that track ownership, licenses, and derivations of assets.

Proof of Creativity Protocol

Built on the IP core, the Proof of Creativity (PoC) protocol serves as an open IP repository. It records the genealogy of intellectual property assets as they evolve, are expanded, and monetized across applications. PoC introduces programmable licenses and royalty modules, allowing IP holders to automate licensing terms and revenue sharing. This structure ensures transparent and fair compensation throughout the value chain of any IP asset.

The IP Token

The native IP token is used as the medium of exchange within the Story network. It enables payment of fees, incentivizes validators who maintain the network’s security through staking, and facilitates economic flows related to intellectual property usage, such as royalties and licensing fees. The IP token also supports AI-related transactions and communications between autonomous agents operating within the network.

Cross-chain and off-chain integrations

Story supports cross-chain communication, allowing IP assets to be used across blockchains and decentralized finance (DeFi) platforms without losing ownership or control. It also integrates oracles and off-chain services that attest to IP authenticity, validate ownership, and assist with legal disputes.

Use Cases and Applications

Story’s framework enables a variety of novel use cases in the intellectual property and AI domains:

Universal market for intellectual property: Allows direct, programmable peer-to-peer IP transactions, which can include licensing, revenue sharing, and fractionalization of IP assets.

AI model and dataset markets: Registers and monetizes AI training datasets, foundation models, and fine-tuning packages.

Agent-based commerce: Enables autonomous AI agents to negotiate, license, and transact IP assets on behalf of users in a trustless way.

Legal and compliance: Through programmable licenses and off-chain attestations, Story can create enforceable agreements and dispute resolution mechanisms.

Closing Thoughts

Story offers a new model for intellectual property management using blockchain technology. By creating a decentralized network, Story can help reduce dependence on central authorities and improve transparency, fairness, and efficiency in IP management.

Further Reading

Top 6 Artificial Intelligence (AI) Cryptocurrencies

What Is NEAR Protocol (NEAR)?

What Is Bittensor (TAO)? 

Disclaimer: This content is presented to you on an “as is” basis for general information and educational purposes only, without representation or warranty of any kind. It should not be construed as financial, legal or other professional advice, nor is it intended to recommend the purchase of any specific product or service. You should seek your own advice from appropriate professional advisors. Products mentioned in this article may not be available in your region. Where the article is contributed by a third party contributor, please note that those views expressed belong to the third party contributor, and do not necessarily reflect those of Binance Academy. Please read our full disclaimer for further details. Digital asset prices can be volatile. The value of your investment may go down or up and you may not get back the amount invested. You are solely responsible for your investment decisions and Binance Academy is not liable for any losses you may incur. This material should not be construed as financial, legal or other professional advice. For more information, see our Terms of Use and Risk Warning.
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That is cool
That is cool
Binance Academy
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What Is Story (IP)?
Key Takeaways

Story (IP) is a blockchain platform specifically designed to build a peer-to-peer intellectual property (IP) network.

It provides a universal ledger for registering, exchanging, and monetizing knowledge and creative assets without relying on centralized intermediaries.

Story features a multi-core architecture, including specialized execution cores that handle intellectual property as a native asset class.

The platform enables programmable IP markets and supports the integration of artificial intelligence (AI) by acting as a settlement layer for AI transactions involving intellectual property.

Its native token, IP, facilitates transactions, staking, and incentivizes honest participation within the network.

Introduction

In today's digital world, intellectual property plays an important role in creativity, innovation, and knowledge sharing. But traditional IP systems often depend on centralized institutions, which can create inefficiencies and limit the fair monetization and exchange of intellectual assets.

Story (IP) aims to address these challenges by offering a blockchain protocol that enables individuals and entities to register, trade, and monetize intellectual property assets directly, transparently, and programmatically.

What Is Story (IP)?

Story is a blockchain network designed to create a programmable marketplace for knowledge and creativity. It allows intellectual property assets (e.g., creative works, scientific data, machine learning models, etc.) to be represented and exchanged as native digital assets on an open ledger.

Story offers a universal repository for IP assets combined with a programmable market where these assets can be traded, licensed, or monetized under customizable terms set by their owners. This peer-to-peer system removes the need for intermediaries and reduces transaction costs, increasing the accessibility and liquidity of intellectual property.

How Does Story Work?

Multi-core architecture

Story uses a multi-core execution environment, with a main core compatible with Ethereum Virtual Machine (EVM) and multiple other specialized cores. One key specialized core is the Intellectual Property (IP) core, which manages IP registration, licensing, and economic relationships on-chain. This core supports complex IP graphs that track ownership, licenses, and derivations of assets.

Proof of Creativity Protocol

Built on the IP core, the Proof of Creativity (PoC) protocol serves as an open IP repository. It records the genealogy of intellectual property assets as they evolve, are expanded, and monetized across applications. PoC introduces programmable licenses and royalty modules, allowing IP holders to automate licensing terms and revenue sharing. This structure ensures transparent and fair compensation throughout the value chain of any IP asset.

The IP Token

The native IP token is used as the medium of exchange within the Story network. It enables payment of fees, incentivizes validators who maintain the network’s security through staking, and facilitates economic flows related to intellectual property usage, such as royalties and licensing fees. The IP token also supports AI-related transactions and communications between autonomous agents operating within the network.

Cross-chain and off-chain integrations

Story supports cross-chain communication, allowing IP assets to be used across blockchains and decentralized finance (DeFi) platforms without losing ownership or control. It also integrates oracles and off-chain services that attest to IP authenticity, validate ownership, and assist with legal disputes.

Use Cases and Applications

Story’s framework enables a variety of novel use cases in the intellectual property and AI domains:

Universal market for intellectual property: Allows direct, programmable peer-to-peer IP transactions, which can include licensing, revenue sharing, and fractionalization of IP assets.

AI model and dataset markets: Registers and monetizes AI training datasets, foundation models, and fine-tuning packages.

Agent-based commerce: Enables autonomous AI agents to negotiate, license, and transact IP assets on behalf of users in a trustless way.

Legal and compliance: Through programmable licenses and off-chain attestations, Story can create enforceable agreements and dispute resolution mechanisms.

Closing Thoughts

Story offers a new model for intellectual property management using blockchain technology. By creating a decentralized network, Story can help reduce dependence on central authorities and improve transparency, fairness, and efficiency in IP management.

Further Reading

Top 6 Artificial Intelligence (AI) Cryptocurrencies

What Is NEAR Protocol (NEAR)?

What Is Bittensor (TAO)? 

Disclaimer: This content is presented to you on an “as is” basis for general information and educational purposes only, without representation or warranty of any kind. It should not be construed as financial, legal or other professional advice, nor is it intended to recommend the purchase of any specific product or service. You should seek your own advice from appropriate professional advisors. Products mentioned in this article may not be available in your region. Where the article is contributed by a third party contributor, please note that those views expressed belong to the third party contributor, and do not necessarily reflect those of Binance Academy. Please read our full disclaimer for further details. Digital asset prices can be volatile. The value of your investment may go down or up and you may not get back the amount invested. You are solely responsible for your investment decisions and Binance Academy is not liable for any losses you may incur. This material should not be construed as financial, legal or other professional advice. For more information, see our Terms of Use and Risk Warning.
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