Abstract: Provided herein is an artificial muscle capable of being miniaturized, realizing precision movement, and performing selective relaxation/contraction deformation according to the power output necessary in the muscle, the muscle including a first operation unit that includes electro-active polymer where relaxation-deformation occurs based on electric energy being applied; a heating unit that generates heat energy based on the electric being applied; a second operation unit that has a yarn structure and where contraction-deformation occurs based on the heat energy generated in the heating unit; and a control unit that applies electric energy to the first operation unit and the heating unit.
Type:
Grant
Filed:
August 4, 2015
Date of Patent:
May 30, 2017
Assignee:
ELECTRONICS AND TELECOMMUNICATIONS RESERACH INSTITUTE
Inventors:
Sung Ryul Yun, Ki Uk Kyung, Sae Kwang Nam, Bong Je Park, Sun Tak Park
Abstract: A network intrusion detection apparatus and method that perform Perl Compatible Regular Expressions (PCRE)-based pattern matching on the payloads of packets using a network processor equipped with a Deterministic Finite Automata (DFA) engine. The network intrusion detection apparatus includes a network processor core for receiving packets from a network, and transmitting payloads of the received packets to a Deterministic Finite Automata (DFA) engine. A detection rule converter converts a PCRE-based detection rule, preset to detect an attack packet, into a detection rule including a pattern to which only PCRE grammar corresponding to the DFA engine is applied. The DFA engine performs PCRE pattern matching on the payloads of the packets based on the detection rule converted by the detection rule converter.
Type:
Grant
Filed:
September 11, 2013
Date of Patent:
September 13, 2016
Assignee:
ELECTRONICS AND TELECOMMUNICATIONS RESERACH INSTITUTE
Abstract: Provided is a bifacial solar cell. The bifacial solar cell includes: a transparent substrate having a first side and a second side facing each other; a first transparent electrode disposed on the first side of the transparent substrate; a first light absorbing layer disposed on the first transparent electrode and exposing the first transparent electrode at one edge; a second transparent electrode disposed on the first light absorbing layer; a first metal electrode pad disposed on the exposed first transparent electrode; a third transparent electrode disposed below the second side of the transparent substrate; a second light absorbing layer disposed below the third transparent electrode and exposing the third transparent electrode in correspondence to the exposed first transparent electrode; a fourth transparent electrode disposed below the second light absorbing layer; and a second metal electrode pad disposed below the exposed third transparent electrode.
Type:
Application
Filed:
August 9, 2011
Publication date:
June 7, 2012
Applicant:
ELECTRONICS AND TELECOMMUNICATIONS RESERACH INSTITUTE