10-Gbps true random number generator accomplished in ASIC

Xinzhe Wang, Futian Liang, P. Miao, Yi Qian, G. Jin
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引用次数: 3

Abstract

Random number generators are wildly used in many applications in a diverse set of areas ranging from statistics to cryptography. Pseudo random number generators (PRNGs) are quite satisfactory for most applications. However, for cryptography and security applications, true random number generators (TRNGs) are required for the unpredictability. High density and high data output rate are as important as the quality of the TRNG in the nowadays true random number required devices and instruments. We present the design and the primary test results of our 10-Gbps TRNG, which is named TRNG2015, in the paper. The entropy source of the TRNG2015 is the jitter of ring oscillators. The TRNG2015 is fabricated in a 130nm CMOS process and assembled in a 6mm × 6 mm QFN48 package. It has one LVDS clock input and ten LVDS random data outputs. The output data rate depends on the input clock which is up to 1 GHz, and the output data rate is up to 1 Gbps per channel and up to 10 Gbps in total.
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在ASIC中实现的10gbps真随机数生成器
随机数生成器广泛用于从统计学到密码学等不同领域的许多应用程序中。伪随机数生成器(prng)在大多数应用中都非常令人满意。然而,对于密码学和安全应用程序,需要真正的随机数生成器(trng)来实现不可预测性。在当今真随机数所需的设备和仪器中,高密度和高数据输出率与TRNG的质量一样重要。本文介绍了10gbps TRNG的设计和初步测试结果,命名为TRNG2015。TRNG2015的熵源是环形振荡器的抖动。TRNG2015采用130nm CMOS工艺制造,采用6mm × 6mm QFN48封装。它有一个LVDS时钟输入和十个LVDS随机数据输出。输出数据速率取决于输入时钟,最高为1ghz,输出数据速率每通道最高为1gbps,总速率最高为10gbps。
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