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公开(公告)号:US20180314781A1
公开(公告)日:2018-11-01
申请号:US15724671
申请日:2017-10-04
Applicant: Taiwan Semiconductor Manufacturing Co., Ltd.
Inventor: Charlie ZHOU , Tze-Chiang Huang , Jack Liu
CPC classification number: G06F17/5036 , G06F7/588 , G06F2207/583
Abstract: A true random metastable flip-flop (TRMFF) complier generates an electrical architecture for a TRMFF chain. The complier selects components for the TRMFF chain from a library of standard cells and logically connects these components in accordance with a primitive polynomial to generate the electrical architecture. The TRMFF chain provides a sequence of random numbers from one or more physical processes in accordance with the primitive polynomial. During operation, one or more microscopic phenomena inside and/or outside of the TRMFF chain can cause one or more low-level, statistically random entropy noise signals to be present within the TRMFF chain. The TRMFF chain advantageously utilizes the one or more low-level, statistically random entropy noise signals to provide the sequence of random numbers.
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公开(公告)号:US20180314772A1
公开(公告)日:2018-11-01
申请号:US15654394
申请日:2017-07-19
Applicant: Taiwan Semiconductor Manufacturing Co., Ltd.
Inventor: Charlie ZHOU , Kai-Yuan TING , Sandeep Kumar GOEL , Tze-Chiang HUANG , Yun-Han LEE
IPC: G06F17/50
Abstract: Electronic system level (ESL) design and verification of the present disclosure is utilized to provide an electronic simulation of a various loads on one or more batteries of an electronic device resulting from the electronic device performing one or more functional behaviors. Before this electronic simulation occurs, the electronic device is modeled using the high-level software language or the high-level software format. For example, a battery discharge model, a regulator efficiency model, a power delivery network (PDN) model, or a component power model are used to model behaviors of the one or more batteries, regulator circuitry, power delivery network (PDN) circuitry, and other electronic circuits, respectively, of the electronic device. After completion of the modeling of the electronic device, the ESL design and verification of the present disclosure utilizes a simulation algorithm, in conjunction with the high-level software model of the electronic device to simulate the discharge of electrical energy of the one or more batteries.
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