收发您的 Lagrange 通过 Trezor Suite 应用
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支持Lagrange的 Trezor 硬件钱包
让您的 Trezor 同步至钱包应用
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为什么要用硬件钱包?
离线安全保护,尽在 Trezor
- 您 100% 拥有您的加密货币
- 离线保护私钥,大幅降低在线攻击风险
- 您的数据 100% 匿名
- 您的加密货币不受任何公司控制
在线交易所
- 若交易所出现问题,您将失去加密货币
- 交易所是黑客攻击的目标
- 您的个人数据可能会被暴露
- 您并不真正拥有您的加密货币
如何在 Trezor 上使用LA
请连接您的 Trezor 设备
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Trezor 助您安心管理 LA
受安全芯片保护对抗在线与离线威胁的可靠防线
您的代币,您做主通过设备确认,全面掌控每笔交易
安全始于开源透明钱包设计让您的 Trezor 更优更安全
清晰简单的钱包备份采用新备份标准恢复您的数字资产访问权限
从第一天起就信心十足包装与设备防拆封条共同保障 Trezor 设备完整性
Today, Lagrange has expanded its ZK Prover Network to power proof generation for ZK rollups, adding onto Lagrange’s existing ZK Coprocessor and State Committee offerings. With this new addition, Lagrange now unlocks proofs for anything – for rollups, apps, coprocessors and interoperability – as an infinite proving layer that enables anyone to prove everything at internet scale. Previously, Lagrange launched the first production-ready ZK prover network in the industry, operated by top operators including Coinbase, Kraken, OKX and more. Now, Lagrange’s ZK Prover Network is expanding to address key challenges faced by rollups and advance ZK adoption and utility.
The ZK Coprocessor can generate a proof of correct computation over arbitrary storage slots for arbitrary block ranges. For example, consider an application that wishes to compute the average on Ethereum for ETH / USDC pricing. A developer must first specify the memory slots and block range (~50,400) that they are interested in including in the data set. Next the developer writes the computations that is to be executed across the storage slots over the different blocks in parallel. Once the proof is generated, it will prove both the storage inclusion and the aggregated computation as valid with respect to a block header derived from smart contract information.
