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  3. Kaspa (KAS)
Kaspa logo

Kaspa (KAS) Interest Rates

Compare Kaspa interest rates for lending, staking, and borrowing

0,03 €
↓ 2.96%
Updated: 13 de febrero de 2026
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Últimas tasas de interés de Kaspa (KAS)

Kaspa (KAS) Lending Rates

PlataformaAcciónTasa máx.Tasa baseDepósito mín.BloqueoAcceso ES
BitgetGo to Platform0,3 % APY———Ver términos
MEXC GlobalGo to Platform12 % APY———Ver términos
Ver todos los 2 lending rates

Kaspa (KAS) Borrowing Rates

PlataformaAcciónMejor TasaLTVColateral Mín.Acceso ES
BitgetObtener Préstamo22,68 % APR——Ver términos
Ver todos los 1 borrowing rates

Resumen del Mercado de KAS Lending Rates

Tasa Promedio
6,15 % APY
Tasa Más Alta
12 % APY
MEXC Global
Plataformas Rastreadas
2
Mejor Ajustada al Riesgo
12 % APY
MEXC Global

Cómo leer esta tabla:

  • Max Rate — La tasa máxima anunciada.
  • Base Rate — Lo que la mayoría de usuarios realmente obtienen (a menudo requiere staking de tokens o niveles altos para la tasa máxima).

Learn more about how rates work →

Guía de compra de Kaspa

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About Kaspa (KAS)

Kaspa (KAS) is a cryptocurrency that utilizes a unique network architecture designed to achieve high throughput and low latency in transaction processing. Its core technology is built around a blockDAG (Directed Acyclic Graph) structure, which allows multiple blocks to be created and confirmed simultaneously, thereby enhancing scalability compared to traditional blockchain systems. The consensus mechanism employed by Kaspa is based on a variant of the GhostDAG protocol, which ensures that all transactions are confirmed in a secure and efficient manner, allowing for quick finality without the bottlenecks typically associated with linear blockchains. This innovative approach positions Kaspa to handle a significant volume of transactions, making it a promising option in the evolving cryptocurrency landscape.
Kaspa (KAS) is designed for various use cases that leverage its fast transaction speeds and scalability. One primary application is in microtransactions, where users can send small amounts of KAS quickly and cost-effectively, making it suitable for online tipping or in-app purchases. Additionally, Kaspa can be utilized in decentralized finance (DeFi) applications, enabling users to lend and borrow assets with minimal latency. Its efficient transaction processing also makes it an attractive option for remittances, allowing users to transfer funds across borders swiftly and securely. Furthermore, Kaspa's technology can support smart contracts, creating opportunities for automated agreements in various industries, including supply chain management and digital identity verification.
The tokenomics of Kaspa (KAS) are designed to support its decentralized network and incentivize participation. KAS has a capped total supply, which helps maintain scarcity and value over time. The distribution model primarily involves block rewards for miners, who validate transactions and secure the network. As new blocks are mined, miners receive KAS tokens as compensation, which gradually decreases over time to control inflation. Additionally, the network may incorporate mechanisms to encourage staking and participation in governance, allowing holders to influence decisions regarding network upgrades and protocol changes. This balanced approach to supply and distribution aims to foster a sustainable ecosystem that rewards users while ensuring the long-term viability of the Kaspa network.
Kaspa employs a robust security framework that leverages its blockDAG architecture and the GHOSTDAG consensus mechanism to ensure transaction integrity and network resilience. In this system, each block is linked to multiple previous blocks, allowing for a more comprehensive validation process in which nodes independently verify transactions before they are added to the ledger. This decentralized validation reduces the risk of double-spending and enhances security against attacks. Additionally, Kaspa incorporates cryptographic hashing to secure transaction data, while its network of nodes continuously monitors for anomalies, ensuring that any malicious activity can be quickly identified and mitigated. This layered approach to security not only protects user assets but also maintains the overall health of the network.
Kaspa's development roadmap outlines a series of strategic milestones aimed at enhancing its network capabilities and user experience. Key achievements include the successful implementation of its blockDAG architecture, which has significantly improved transaction speed and scalability. The introduction of the GHOSTDAG consensus mechanism marked a major advancement in ensuring rapid transaction finality and security. Additionally, the project has focused on community engagement and developer support, launching initiatives to foster ecosystem growth. Future milestones include the integration of smart contract functionality and ongoing improvements to network performance, positioning Kaspa for broader adoption in the cryptocurrency landscape.

How to Keep Your Kaspa (KAS) Safe?

To enhance the security of your Kaspa holdings, consider using a hardware wallet, which provides a secure offline storage solution that protects your private keys from online threats. Popular options include Ledger and Trezor. For private key management, ensure you generate and store your keys in a secure environment, using strong, unique passwords and enabling two-factor authentication whenever possible. Be aware of common security risks such as phishing attacks and malware; mitigate these by regularly updating your software, avoiding suspicious links, and using antivirus tools. Implementing multi-signature wallets can add an extra layer of security by requiring multiple approvals for transactions, thereby reducing the risk of unauthorized access. Lastly, establish a robust backup procedure by securely storing your wallet recovery phrases and private keys in multiple physical locations, ensuring they are protected from theft or damage.

How Kaspa (KAS) Works

Kaspa operates on a unique blockchain architecture characterized by its blockDAG structure, which allows for multiple blocks to be created and confirmed simultaneously, enhancing scalability and throughput. Its consensus mechanism, known as GHOSTDAG, enables the network to achieve consensus by allowing blocks to reference multiple previous blocks, thereby increasing transaction speed and reducing the likelihood of forks. The transaction validation process involves nodes verifying transactions and blocks in parallel, which accelerates confirmation times compared to traditional blockchains. Network security is maintained through a combination of cryptographic techniques and decentralized validation, ensuring that malicious actors cannot easily manipulate the ledger. Additionally, Kaspa features rapid finality and a high degree of decentralization, distinguishing it from conventional blockchain systems and providing resilience against attacks.

Preguntas Frecuentes Sobre Kaspa (KAS)

For Kaspa (kas), what geographic restrictions, minimum deposit requirements, KYC levels, and platform-specific eligibility constraints exist for lending this coin on lending platforms?
Based on the provided context, there is no available data detailing geographic restrictions, minimum deposit requirements, KYC levels, or platform-specific eligibility constraints for lending Kaspa (kas) on any lending platform. The context indicates Kaspa has a market cap ranking of 70 and that the platformCount is 0, with the pageTemplate set to lending-rates. This combination strongly suggests that, within this dataset, there are no documented lending platforms or lending-rate entries for Kaspa to reference. Consequently, it is not possible to specify any concrete geographic restrictions, deposit minimums, KYC tiers, or platform-specific eligibility rules for Kas on lending platforms from the given information. What this means in practice: - No platform-level details: With platformCount = 0, there are no enumerated lending platforms or their policies in the supplied data. - No explicit restrictions: Without platform data, there are no stated geographic exclusions or inclusions, no minimum deposit amounts for Kas, and no KYC requirements to cite. - Actionable next steps: To answer definitively, consult current lending-market listings from major crypto-lending aggregators or individual platforms (e.g., rate pages, deposit-method pages, and KYC policy documents) and verify Kas-specific eligibility on each platform. Additionally, verify if Kaspa is supported for lending on platforms that recently added new assets, as listings can change over time. In short, the provided context lacks the necessary platform-specific details to specify geographic restrictions, minimum deposits, KYC levels, or eligibility constraints for lending Kaspa.
What are the lockup periods, platform insolvency risk, smart contract risk, rate volatility, and how should an investor evaluate risk vs reward when lending Kaspa?
Based on the provided Kaspa context, there is insufficient data to specify exact lockup periods, platform insolvency risk, or rate volatility for Kaspa lending. The context lists Kaspa (symbol: kas) with a market cap rank of 70 and notes 0 lending platforms (platformCount: 0) and provides no rates or rate ranges. Consequently, no concrete lockup durations or platform accessibility can be cited from the data alone. What we can state concretely from the context: - Kaspa symbol: kas; market cap rank: 70. - No lending platforms are enumerated in the context (platformCount: 0). - No rate data is provided (rates: [], rateRange min/max: null). Implications and risk considerations (data-grounded and general): - Lockup periods: Without platform data, there is no identifiable Kaspa-specific lockup term. If you lend via a third-party platform, lockups would be determined by that platform’s product, terms, and any governance or custodial controls they employ. - Platform insolvency risk: With platformCount at 0 in the data, there’s no listed platform risk profile. In practice, insolvency risk depends on the financial health and reserves of the platform you use; verify audits, insurance, and user protections before allocating funds. - Smart contract risk: If lending on a platform that uses smart contracts, risks include bugs, upgradeability, and potential exploits. Without platform data, quantify this by evaluating code audits and a platform’s security posture rather than Kaspa-specific assurances. - Rate volatility: No rate data is provided. In general, crypto-lending yields can be volatile and depend on platform demand, liquidity, and risk premiums. Expect potential fluctuations and model based on platform-level analytics rather than Kaspa’s price actions alone. Risk vs reward evaluation (practical steps): - Start with small allocations and limit exposure to Kaspa lending until explicit platform terms and rates are published. - Seek platforms with transparent audits, insurance or custodial protections, and clear withdrawal terms. - Compare risk-adjusted yields (expected APR vs risk signals like solvency, contract flaws, and liquidity risk). - Monitor Kaspa’s market activity, liquidity, and any platform health indicators; diversify across multiple reputable platforms if possible.
How is Kaspa lending yield generated (rehypothecation, DeFi protocols, institutional lending), are rates fixed or variable, and what is the typical compounding frequency?
Based on the provided context for Kaspa (kas), there is no published lending rate data or active lending platforms documented. The rates array is empty, and the platformCount is 0, with Kaspa listed as a coin (entityType: coin) and marketCapRank: 70. The page template is lending-rates, which suggests a dedicated page exists or is planned, but no concrete figures are available. Because there are no active platforms or posted rates, we cannot confirm whether Kaspa lending would involve rehypothecation, DeFi protocols, or institutional lending in practice, nor can we verify fixed versus variable rates or any compounding frequency for Kaspa at this time. In a typical crypto lending context (for comparison), yields often arise from: - DeFi lending protocols (supply interest from borrowers, often variable and influenced by utilization metrics) - Rehypothecation or cross-collateralization arrangements used by some lenders - Institutional lending programs with negotiated rates, usually variable and dependent on credit risk and terms - Potential staking or yield-enhancing mechanisms offered by platforms However, given Kaspa-specific data is currently unavailable (rates: [], platformCount: 0, no listed platforms or institutional programs), there is no verifiable basis to assert fixed vs. variable rates or a standard compounding cadence (daily, weekly, monthly) for Kaspa yields. To provide an accurate assessment, we would need active lending listings, rate data, and platform participation details for Kaspa.
What is a notable unique aspect of Kaspa's lending market based on current data (e.g., a significant rate change, unusual platform coverage, or market-specific insight) that distinguishes it from other coins?
A notable unique aspect of Kaspa’s lending market, given the current data, is the complete absence of lending activity coverage across platforms. The provided data shows Kaspa has zero platforms (platformCount: 0) and no available rate data (rates: []), with the rateRange’s min and max both null. Put differently, there are no reported lending rates or market presence for Kaspa in the analyzed snapshot, which contrasts sharply with many other coins that typically exhibit at least some platform coverage and observable rate ranges. This suggests Kaspa’s lending market is effectively non-existent at present, rather than showing a fluctuating or evolving rate environment. The page template is labeled lending-rates, yet the data payload contains no entries to compute a rate curve or compare platform coverage. This situation implies investors and lenders currently have no on-chain, off-chain, or DeFi-based lending options for Kaspa within the dataset, making it unique among coins that usually list active lending markets on multiple platforms.