Author: Jason Nelson Compiled by: Luffy, Foresight News summary Ethereum will undergo the Fusaka upgrade in December 2025, which will bring data scaling, DoS protection, and development tools. Peer Data Availability Sampling (PeerDAS) increases data block (blob) throughput by 8 times by "sampling data instead of storing complete data on full nodes". The new EIPs will set blob fees, limit block size, and add features such as pre-acknowledgment and P-256 signature support. The next major upgrade to the Ethereum network is imminent. This upgrade, named Fusaka (short for Fulu-Osaka), is scheduled to launch in December 2025 and will make significant adjustments to both the execution and consensus layers of Ethereum. The Fusaka upgrade is another milestone for Ethereum since the 2022 merger. The Shapela upgrade in 2023 introduced staking ETH for withdrawal; the Dencun upgrade in 2024 introduced prototype Danksharding technology and blobs; and the Pectra upgrade in 2025 improved validator flexibility and Layer 2 interoperability. According to the roadmap, the Fusaka upgrade aims to expand data capacity, enhance resistance to DoS attacks, and introduce new tools for developers and users. This upgrade has far-reaching implications. Fusaka is not a minor patch; it redesigns Ethereum's data availability management, blob pricing, and transaction protection mechanisms. Its success will depend on Ethereum's ability to scale to meet the growing demands of Layer 2 networks without causing network splits or excessively burdening node operators. PeerDAS: Sampling, rather than storing, all data The core feature of the Fusaka upgrade is PeerDAS, a new way of handling blobs. In Ethereum, a blob is a temporary data packet introduced with the prototype Danksharding technology in the Dencun upgrade. It allows rollups to submit large amounts of transaction data to the mainnet at low cost, thereby improving scalability without permanently increasing the blockchain state. This ensures redundancy, but it can also create bottlenecks as demand grows. In the current model, every full node in Ethereum must store all Layer 2 network blobs committed to the chain. PeerDAS changes this logic. Each node only needs to store a portion of the blob (approximately one-eighth) and relies on cryptographic reconstruction techniques to fill in the missing data fragments. This design verifies data availability through random sampling with an extremely low error probability of only one in 10²⁰ to 10²⁴. Through this distributed storage method, Ethereum can theoretically increase blob throughput by 8 times without requiring node operators to upgrade hardware or bandwidth. Rollups, which rely on blobs to publish compressed transaction data, are expected to be the most direct beneficiaries. blob's economy and flexibility The Fusaka upgrade also reshaped the pricing and management mechanisms for blobs. A key change is EIP-7918, which introduces a minimum reserve fee for blobs. Under the current rules, when execution layer gas fees dominate, blob prices can drop to near zero, leading to inefficient usage. The minimum reserve fee ensures that there is always a baseline cost for blob usage, forcing Layer 2 to pay for the storage and bandwidth it consumes. Another mechanism is EIP-7892, which introduces a fork that only adjusts blob parameters. This allows Ethereum clients to adjust blob throughput without a full hard fork, aiming to give developers the flexibility to respond to unpredictable Layer 2 demands without waiting for the next planned upgrade. Strengthen attack and defense Scaling up also means expanding Ethereum's attack surface. The Fusaka upgrade includes a series of adjustments to limit extreme scenarios and protect the network from DoS attacks: EIP-7823: Limits the input size of MODEXP operations to 8192 bits; EIP-7825: Sets the maximum gas consumption per transaction to 2²⁴ units; EIP-7883: Improves gas costs for large indices in MODEXP to better match computational workload. EIP-7934: Limits the execution layer block size to 10MB. These adjustments collectively reduce the risk of client overload, propagation stagnation, or network instability caused by extreme transactions or very large blocks. New tools for users and developers The Fusaka upgrade also focuses on improving ease of use. For users, EIP-7917 introduces pre-confirmation support. This allows wallets and applications to preview the validator proposal schedule, enabling users to lock in the certainty that their transactions will be included in subsequent blocks, thereby reducing latency and uncertainty regarding transaction confirmation. For developers, the Fusaka upgrade adds two important new features: CLZ opcode is suitable for cryptographic algorithms and contract optimization. EIP-7951 provides native secp256r1 (P-256) signature verification. This is an elliptic curve signature commonly used in hardware devices and mobile systems, and its inclusion will improve compatibility and account abstraction capabilities. These adjustments aim to lower the barrier to entry for application developers and pave the way for new wallet designs and security models. ETH Holders Should Know For ordinary Ethereum users, no action is required for the Fusaka upgrade. Account balances, tokens, and applications will function normally. The official Ethereum website emphasizes that users should be wary of scams requesting ETH upgrades or transfers; such actions are not required for the upgrade. The primary responsibility falls on the validators and node operators, who must synchronously upgrade both the execution and consensus layer clients. Coordination is crucial: if validators are out of sync, the network may face downtime or temporary forks. Following a series of successful testnet activations, the Fusaka upgrade is scheduled to launch on the Ethereum mainnet on December 3, 2025. Fusaka's upgraded Ethereum future The Fusaka upgrade is one of the boldest moves on Ethereum's roadmap since the merger. It attempts to achieve three major goals simultaneously—increased blob capacity, enhanced defenses, and updated developer tools—through a single coordinated release. Testing and development are underway, with the client team focusing on PeerDAS performance, blob pricing models, and compatibility between the execution and consensus layer software. If the upgrade is successful, Fusaka is expected to be a turning point for Ethereum in preparing for the next wave of Layer 2 network adoption and enhancing its scalability.Author: Jason Nelson Compiled by: Luffy, Foresight News summary Ethereum will undergo the Fusaka upgrade in December 2025, which will bring data scaling, DoS protection, and development tools. Peer Data Availability Sampling (PeerDAS) increases data block (blob) throughput by 8 times by "sampling data instead of storing complete data on full nodes". The new EIPs will set blob fees, limit block size, and add features such as pre-acknowledgment and P-256 signature support. The next major upgrade to the Ethereum network is imminent. This upgrade, named Fusaka (short for Fulu-Osaka), is scheduled to launch in December 2025 and will make significant adjustments to both the execution and consensus layers of Ethereum. The Fusaka upgrade is another milestone for Ethereum since the 2022 merger. The Shapela upgrade in 2023 introduced staking ETH for withdrawal; the Dencun upgrade in 2024 introduced prototype Danksharding technology and blobs; and the Pectra upgrade in 2025 improved validator flexibility and Layer 2 interoperability. According to the roadmap, the Fusaka upgrade aims to expand data capacity, enhance resistance to DoS attacks, and introduce new tools for developers and users. This upgrade has far-reaching implications. Fusaka is not a minor patch; it redesigns Ethereum's data availability management, blob pricing, and transaction protection mechanisms. Its success will depend on Ethereum's ability to scale to meet the growing demands of Layer 2 networks without causing network splits or excessively burdening node operators. PeerDAS: Sampling, rather than storing, all data The core feature of the Fusaka upgrade is PeerDAS, a new way of handling blobs. In Ethereum, a blob is a temporary data packet introduced with the prototype Danksharding technology in the Dencun upgrade. It allows rollups to submit large amounts of transaction data to the mainnet at low cost, thereby improving scalability without permanently increasing the blockchain state. This ensures redundancy, but it can also create bottlenecks as demand grows. In the current model, every full node in Ethereum must store all Layer 2 network blobs committed to the chain. PeerDAS changes this logic. Each node only needs to store a portion of the blob (approximately one-eighth) and relies on cryptographic reconstruction techniques to fill in the missing data fragments. This design verifies data availability through random sampling with an extremely low error probability of only one in 10²⁰ to 10²⁴. Through this distributed storage method, Ethereum can theoretically increase blob throughput by 8 times without requiring node operators to upgrade hardware or bandwidth. Rollups, which rely on blobs to publish compressed transaction data, are expected to be the most direct beneficiaries. blob's economy and flexibility The Fusaka upgrade also reshaped the pricing and management mechanisms for blobs. A key change is EIP-7918, which introduces a minimum reserve fee for blobs. Under the current rules, when execution layer gas fees dominate, blob prices can drop to near zero, leading to inefficient usage. The minimum reserve fee ensures that there is always a baseline cost for blob usage, forcing Layer 2 to pay for the storage and bandwidth it consumes. Another mechanism is EIP-7892, which introduces a fork that only adjusts blob parameters. This allows Ethereum clients to adjust blob throughput without a full hard fork, aiming to give developers the flexibility to respond to unpredictable Layer 2 demands without waiting for the next planned upgrade. Strengthen attack and defense Scaling up also means expanding Ethereum's attack surface. The Fusaka upgrade includes a series of adjustments to limit extreme scenarios and protect the network from DoS attacks: EIP-7823: Limits the input size of MODEXP operations to 8192 bits; EIP-7825: Sets the maximum gas consumption per transaction to 2²⁴ units; EIP-7883: Improves gas costs for large indices in MODEXP to better match computational workload. EIP-7934: Limits the execution layer block size to 10MB. These adjustments collectively reduce the risk of client overload, propagation stagnation, or network instability caused by extreme transactions or very large blocks. New tools for users and developers The Fusaka upgrade also focuses on improving ease of use. For users, EIP-7917 introduces pre-confirmation support. This allows wallets and applications to preview the validator proposal schedule, enabling users to lock in the certainty that their transactions will be included in subsequent blocks, thereby reducing latency and uncertainty regarding transaction confirmation. For developers, the Fusaka upgrade adds two important new features: CLZ opcode is suitable for cryptographic algorithms and contract optimization. EIP-7951 provides native secp256r1 (P-256) signature verification. This is an elliptic curve signature commonly used in hardware devices and mobile systems, and its inclusion will improve compatibility and account abstraction capabilities. These adjustments aim to lower the barrier to entry for application developers and pave the way for new wallet designs and security models. ETH Holders Should Know For ordinary Ethereum users, no action is required for the Fusaka upgrade. Account balances, tokens, and applications will function normally. The official Ethereum website emphasizes that users should be wary of scams requesting ETH upgrades or transfers; such actions are not required for the upgrade. The primary responsibility falls on the validators and node operators, who must synchronously upgrade both the execution and consensus layer clients. Coordination is crucial: if validators are out of sync, the network may face downtime or temporary forks. Following a series of successful testnet activations, the Fusaka upgrade is scheduled to launch on the Ethereum mainnet on December 3, 2025. Fusaka's upgraded Ethereum future The Fusaka upgrade is one of the boldest moves on Ethereum's roadmap since the merger. It attempts to achieve three major goals simultaneously—increased blob capacity, enhanced defenses, and updated developer tools—through a single coordinated release. Testing and development are underway, with the client team focusing on PeerDAS performance, blob pricing models, and compatibility between the execution and consensus layer software. If the upgrade is successful, Fusaka is expected to be a turning point for Ethereum in preparing for the next wave of Layer 2 network adoption and enhancing its scalability.

Ethereum's boldest scaling bet in history? A detailed analysis of the key aspects of the Fusaka upgrade.

2025/11/11 18:00

Author: Jason Nelson

Compiled by: Luffy, Foresight News

summary

  • Ethereum will undergo the Fusaka upgrade in December 2025, which will bring data scaling, DoS protection, and development tools.
  • Peer Data Availability Sampling (PeerDAS) increases data block (blob) throughput by 8 times by "sampling data instead of storing complete data on full nodes".
  • The new EIPs will set blob fees, limit block size, and add features such as pre-acknowledgment and P-256 signature support.

The next major upgrade to the Ethereum network is imminent. This upgrade, named Fusaka (short for Fulu-Osaka), is scheduled to launch in December 2025 and will make significant adjustments to both the execution and consensus layers of Ethereum.

The Fusaka upgrade is another milestone for Ethereum since the 2022 merger. The Shapela upgrade in 2023 introduced staking ETH for withdrawal; the Dencun upgrade in 2024 introduced prototype Danksharding technology and blobs; and the Pectra upgrade in 2025 improved validator flexibility and Layer 2 interoperability.

According to the roadmap, the Fusaka upgrade aims to expand data capacity, enhance resistance to DoS attacks, and introduce new tools for developers and users.

This upgrade has far-reaching implications. Fusaka is not a minor patch; it redesigns Ethereum's data availability management, blob pricing, and transaction protection mechanisms. Its success will depend on Ethereum's ability to scale to meet the growing demands of Layer 2 networks without causing network splits or excessively burdening node operators.

PeerDAS: Sampling, rather than storing, all data

The core feature of the Fusaka upgrade is PeerDAS, a new way of handling blobs.

In Ethereum, a blob is a temporary data packet introduced with the prototype Danksharding technology in the Dencun upgrade. It allows rollups to submit large amounts of transaction data to the mainnet at low cost, thereby improving scalability without permanently increasing the blockchain state.

This ensures redundancy, but it can also create bottlenecks as demand grows. In the current model, every full node in Ethereum must store all Layer 2 network blobs committed to the chain.

PeerDAS changes this logic. Each node only needs to store a portion of the blob (approximately one-eighth) and relies on cryptographic reconstruction techniques to fill in the missing data fragments. This design verifies data availability through random sampling with an extremely low error probability of only one in 10²⁰ to 10²⁴.

Through this distributed storage method, Ethereum can theoretically increase blob throughput by 8 times without requiring node operators to upgrade hardware or bandwidth. Rollups, which rely on blobs to publish compressed transaction data, are expected to be the most direct beneficiaries.

blob's economy and flexibility

The Fusaka upgrade also reshaped the pricing and management mechanisms for blobs.

A key change is EIP-7918, which introduces a minimum reserve fee for blobs. Under the current rules, when execution layer gas fees dominate, blob prices can drop to near zero, leading to inefficient usage. The minimum reserve fee ensures that there is always a baseline cost for blob usage, forcing Layer 2 to pay for the storage and bandwidth it consumes.

Another mechanism is EIP-7892, which introduces a fork that only adjusts blob parameters. This allows Ethereum clients to adjust blob throughput without a full hard fork, aiming to give developers the flexibility to respond to unpredictable Layer 2 demands without waiting for the next planned upgrade.

Strengthen attack and defense

Scaling up also means expanding Ethereum's attack surface. The Fusaka upgrade includes a series of adjustments to limit extreme scenarios and protect the network from DoS attacks:

  • EIP-7823: Limits the input size of MODEXP operations to 8192 bits;
  • EIP-7825: Sets the maximum gas consumption per transaction to 2²⁴ units;
  • EIP-7883: Improves gas costs for large indices in MODEXP to better match computational workload.
  • EIP-7934: Limits the execution layer block size to 10MB.

These adjustments collectively reduce the risk of client overload, propagation stagnation, or network instability caused by extreme transactions or very large blocks.

New tools for users and developers

The Fusaka upgrade also focuses on improving ease of use.

For users, EIP-7917 introduces pre-confirmation support. This allows wallets and applications to preview the validator proposal schedule, enabling users to lock in the certainty that their transactions will be included in subsequent blocks, thereby reducing latency and uncertainty regarding transaction confirmation.

For developers, the Fusaka upgrade adds two important new features:

  • CLZ opcode is suitable for cryptographic algorithms and contract optimization.
  • EIP-7951 provides native secp256r1 (P-256) signature verification. This is an elliptic curve signature commonly used in hardware devices and mobile systems, and its inclusion will improve compatibility and account abstraction capabilities.

These adjustments aim to lower the barrier to entry for application developers and pave the way for new wallet designs and security models.

ETH Holders Should Know

For ordinary Ethereum users, no action is required for the Fusaka upgrade. Account balances, tokens, and applications will function normally. The official Ethereum website emphasizes that users should be wary of scams requesting ETH upgrades or transfers; such actions are not required for the upgrade.

The primary responsibility falls on the validators and node operators, who must synchronously upgrade both the execution and consensus layer clients. Coordination is crucial: if validators are out of sync, the network may face downtime or temporary forks.

Following a series of successful testnet activations, the Fusaka upgrade is scheduled to launch on the Ethereum mainnet on December 3, 2025.

Fusaka's upgraded Ethereum future

The Fusaka upgrade is one of the boldest moves on Ethereum's roadmap since the merger. It attempts to achieve three major goals simultaneously—increased blob capacity, enhanced defenses, and updated developer tools—through a single coordinated release.

Testing and development are underway, with the client team focusing on PeerDAS performance, blob pricing models, and compatibility between the execution and consensus layer software. If the upgrade is successful, Fusaka is expected to be a turning point for Ethereum in preparing for the next wave of Layer 2 network adoption and enhancing its scalability.

Sorumluluk Reddi: Bu sitede yeniden yayınlanan makaleler, halka açık platformlardan alınmıştır ve yalnızca bilgilendirme amaçlıdır. MEXC'nin görüşlerini yansıtmayabilir. Tüm hakları telif sahiplerine aittir. Herhangi bir içeriğin üçüncü taraf haklarını ihlal ettiğini düşünüyorsanız, kaldırılması için lütfen service@support.mexc.com ile iletişime geçin. MEXC, içeriğin doğruluğu, eksiksizliği veya güncelliği konusunda hiçbir garanti vermez ve sağlanan bilgilere dayalı olarak alınan herhangi bir eylemden sorumlu değildir. İçerik, finansal, yasal veya diğer profesyonel tavsiye niteliğinde değildir ve MEXC tarafından bir tavsiye veya onay olarak değerlendirilmemelidir.

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Little Pepe (LILPEPE) koers, nu investeren in de lopende presale?

Little Pepe (LILPEPE) koers, nu investeren in de lopende presale?

i Kennisgeving: Dit artikel bevat inzichten van onafhankelijke auteurs en valt buiten de redactionele verantwoordelijkheid van BitcoinMagazine.nl. De informatie is bedoeld ter educatie en reflectie. Dit is geen financieel advies. Doe zelf onderzoek voordat je financiële beslissingen neemt. Crypto is zeer volatiel er zitten kansen en risicos aan deze investering. Je kunt je inleg verliezen. Little Pepe (LILPEPE) is dit jaar uitgegroeid tot een van de meest besproken meme coins. Het project ontwikkelt een eigen Layer 2 blockchain die speciaal is ontworpen voor meme projecten. De presale van LILPEPE startte op 10 juni 2025 en haalde sindsdien meer dan $ 25,9 miljoen bij investeerders op. Tot nu toe was elke fase van de presale ruim voor tijd uitverkocht. Nu zit het project in fase 13 en kun je de tokens aanschaffen voor een prijs van $ 0,0022 per stuk. Little Pepe combineert heel slim de meme cultuur met geavanceerde blockchain technologie. Het team bouwde een EVM-compatibel Layer 2 netwerk dat razendsnelle transacties en vrijwel geen kosten biedt. Daarmee steekt LILPEPE ver boven de typische meme coins uit die op bestaande netwerken draaien. Het project heeft 26,5% van de totale voorraad van 100 miljard tokens gereserveerd voor de presale. Elke nieuwe fase stijgt de token prijs, waardoor deelnemers worden aangemoedigd sneller toe te slaan. Nu al zijn meer dan 15 miljard tokens verkocht en de presale nadert snel het einde. Little Pepe presale blijft sterk presteren De presale heeft sinds de start in juni een stevige groei laten zien. Zo is in meerdere ronden al meer dan $ 25,9 miljoen opgehaald. Ronde 1 startte met een prijs van $ 0,001 per token en was al binnen slechts 72 uur uitverkocht, goed voor bijna $ 500.000. Tijdens de tweede presale fase kostte de coin tussen $ 0,0011 en $ 0,0015 en haalde het project meer dan $ 1,23 miljoen op voordat alles snel uitverkocht was. In ronde 3 steeg de prijs naar $ 0,0012, met een bevestigde exchange listing prijs van $ 0,003. Wie er vroeg bij was, zag daardoor een potentiële winst van 150%. De eerdere presale rondes trokken zoveel belangstelling dat de tokens sneller uitverkochten dan verwacht. Inmiddels hebben meer dan 38.000 mensen deelgenomen. In ronde 13 van de presale staat de token momenteel geprijsd op $ 0,0022. Doordat de prijs bij elke mijlpaal stapsgewijs stijgt, voelt men er vanzelf een soort urgentie bij. Vroege deelnemers hebben zo veel lagere prijzen kunnen pakken dan de huidige kopers. Dankzij deze gefaseerde aanpak blijft de presale de hele periode door spannend en interessant. Belangrijkste kenmerken van Little Pepe’s technologie Little Pepe is de native currency van een gloednieuwe Layer 2 chain, speciaal voor meme coins. De blockchain is razendsnel, extreem goedkoop en sterk beveiligd en vooral aantrekkelijk voor traders en ontwikkelaars. Het netwerk verwerkt transacties in een oogwenk en de gas fees zijn bijna nul. De trades worden niet belast en dat zie je maar zelden bij meme coins. Bovendien is de blockchain beschermd tegen sniper bots, zodat kwaadaardige bots geen kans krijgen om presale lanceringen te manipuleren. Ontwikkelaars kunnen dankzij EVM-compatibiliteit heel eenvoudig smart contracts en meme tokens bouwen en lanceren. De infrastructuur is opgezet als hét centrale platform voor meme-innovatie, met on-chain communitytools en governance-opties. “Pepe’s Pump Pad” is het launchpad voor de meme tokens van het project. Tokens die hier worden gelanceerd, hebben ingebouwde anti-scam beveiligingen en liquidity locks worden automatisch toegepast om rug pulls te voorkomen. Zo kunnen makers nieuwe meme tokens lanceren zonder zich zorgen te maken over veiligheidsrisico’s. Is LILPEPE de beste crypto presale om nu te kopen? Little Pepe is de allereerste Layer 2 blockchain die volledig draait om memes. Dat geeft het project een unieke plek in de drukke wereld van meme coins. Het doel is om de “meme verse” te worden: een plek waar meme projecten kunnen lanceren, verhandelen en echt groeien. Het succes van de presale laat zien dat er veel interesse is voor deze aanpak. In de vroege fases waren de fase binnen 72 uur uitverkocht en zelfs de latere fases gingen sneller dan gepland. Met meer dan $ 25,9 miljoen dat is opgehaald, is er veel vertrouwen in deze meme coin. Little Pepe staat technisch stevig dankzij zijn Layer 2 infrastructuur. Het project heeft een CertiK security audit doorstaan, wat het vertrouwen van investeerders aanzienlijk versterkt. Als je naar de listings op CoinMarketCap en CoinGecko kijkt, is duidelijk te zien dat het project ook buiten de meme community steeds meer erkenning krijgt. Little Pepe is volgens analisten dan ook een van de meest veelbelovende meme coins voor 2025. De combinatie van meme cultuur en echte functionaliteit, maakt deze meme coin betrouwbaarder en waardevoller dan de meeste puur speculatieve tokens. Dankzij de snelle presale en het innovatieve ecosysteem is Little Pepe klaar om zich als serieuze speler in de wereld van meme coins te vestigen. Het project werkt volgens een roadmap met onder andere exchange listings, staking en uitbreiding van het ecosysteem. Door LILPEPE tokens te listen op grote gecentraliseerde exchanges, wordt het voor iedereen makkelijker om te traden en neemt de liquiditeit flink toe. Mega Giveaway campagne vergroot betrokkenheid community Little Pepe is gestart met een Mega Giveaway om de community te belonen voor hun deelname. De Mega Giveaway richt zich op de deelnemers die tijdens fases 12 tot en met 17 de meeste LILPEPE tokens hebben gekocht. De grootste koper wint 5 ETH, de tweede plaats ontvangt 3 ETH en de derde plaats 2 ETH. Ook worden 15 willekeurige deelnemers elk met 0,5 ETH beloond. Iedereen die LILPEPE bezit kan meedoen. Dat gaat heel handig. Je vult je ERC20-wallet adres in en voert een paar social media opdrachten uit. Deze actie moet gedurende de presale voor extra spanning en een gevoel van urgentie om snel mee te doen gaan zorgen, zowel aan de giveaway als aan de presale. De giveaway loopt dan ook tot fase 17 volledig is uitverkocht. De community blijft op alle platforms hard doorgroeien. Tijdens de giveaway is de activiteit op social media flink omhooggeschoten. Zo’n betrokkenheid is vaak een goed teken dat een meme coin op weg is naar succes. Little Pepe analyse koers verwachting De tokens van Little Pepe gaan tijdens fase 13 voor $ 0,0022 over de toonbank. De listing prijs op de exchanges is bevestigd op $ 0,003 en kan de deelnemers aan de presale mooie winsten kan opleveren. Volgens analisten kan de prijs van LILPEPE tegen het einde van 2025 naar $ 0,01 stijgen. Dit zou het project een marktwaarde van $ 1 miljard kunnen geven. Deze voorspelling gaat uit van een sterke cryptomarkt en van succesvolle exchange listings. Voor 2026 lopen de koers verwachtingen voor LILPEPE sterk uiteen. Als de cryptomarkt blijft stijgen, zou de token $ 0,015 kunnen bereiken. Maar als de markt instort en een bear market toeslaat, kan de prijs terugvallen naar $ 0,0015. Dat is een groot verschil, maar zo werkt crypto nu eenmaal. Zeker bij meme coins, omdat ze sterk reageren op de marktsfeer. Op de lange termijn, richting het jaar 2030, wijzen sommige verwachtingen op prijzen van $ 0,03 in gunstige scenario’s. Dat gaat uit van een succesvolle aanname van Layer 2 en verdere groei van de meme coin sector. Voorzichtige schattingen plaatsen de prijs in 2030 rond $ 0,0095. Zelfs een klein stukje van de marktwaarde van grote meme coins kan volgens experts al voor flinke winsten zorgen. Sommige analisten verwachten dat de opbrengsten zelfs 15.000% tot 20.000% kunnen bereiken als Little Pepe hetzelfde succes haalt als eerdere populaire meme coins. Doe mee aan de Little Pepe presale Wil je erbij zijn? Ga naar de officiële website van de coin om mee te doen aan de presale. Tijdens de huidige fase kost een token $ 0,0022 en je kunt eenvoudig betalen met ETH of USDT via je wallet. Je kunt aan de presale deelnemen met MetaMask of Trust Wallet. Verbind je wallet eenvoudig met de officiële website en zorg dat je voldoende ETH of USDT hebt om het gewenste aantal tokens te kopen. De presale accepteert ERC-20 tokens op het Ethereum netwerk. Na aankoop kun je je tokens claimen zodra alle presale rondes zijn afgerond. Alle informatie over het claimen vind je via de officiële website en communicatiekanalen. NEEM NU DEEL AAN DE LITTLE PEPE ($ LILPEPE) PRESALE Website    |    (X) Twitter    |  Telegram i Kennisgeving: Dit artikel bevat inzichten van onafhankelijke auteurs en valt buiten de redactionele verantwoordelijkheid van BitcoinMagazine.nl. De informatie is bedoeld ter educatie en reflectie. Dit is geen financieel advies. Doe zelf onderzoek voordat je financiële beslissingen neemt. Crypto is zeer volatiel er zitten kansen en risicos aan deze investering. Je kunt je inleg verliezen. Het bericht Little Pepe (LILPEPE) koers, nu investeren in de lopende presale? is geschreven door Redactie en verscheen als eerst op Bitcoinmagazine.nl.
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