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1 PRIVATE BRANCH EXCHANGE / CANON INC
(PURPOSE) To efficiently connect an extension by allowing incoming to all of extensions to which incoming is possible and communicating with the extension terminal which first responds to the incoming and releasing the incoming to the other extensions. (CONSTITUTION) A controller CC 110 ignores the call to an extension 301, to which incoming is impossible, and switches the call states of extensions 302 and 303, to which incoming is possible, of a call state management table in a main storage device MM 111 from the idle state to the busy state and controls independent telephone set extension interface devices SLTI 108 and 109 to terminate the call by SLT 104 and 105 of extensions 302 and 303. The SLTI 109 reports the response of the extension 303 to the CC 110 when detecting it, and the CC 110 controls the SLTI 108 to stop the incoming to the extension 302 and switches the call state of the extension 302 of a call state storage table in the MM 111 from the busy state to the idle state and controls a speech path switch TSW 512 to connect voice channels of extensions 201 and 303.
2 TESTING FUNCTIONAL COMPONENT AND DATA DEBUGGING METHOD / HUAWEI TECH CO LTD
Provided are a testing functional component (200) and a data debugging method. The testing functional component (200) comprises a system chip SOC (202), a USB switching module (204) and a USB Type-C interface (206), wherein the SOC (202) contains a joint test action group (JTAG) module (302), and the JTAG module (302) introduces a debugging pin group and a configuration pin group; the USB Type-C interface (206) contains a CC pin and a transmission pin group; the debugging pin group and the configuration pin group of the JTAG module (302) are both connected to the USB switching module (204); a first CC pin and the transmission pin group of the USB Type-C interface (206) are both connected to the USB switching module (204); the USB switching module (204) is used for correspondingly connecting various debugging pins in the debugging pin group to various transmission pins in the transmission pin group when a first manufacturer defined message VDM for instructing to enter a debugging mode is received via the first CC pin and generating the corresponding configuration instruction according to the first VDM; and the JTAG module (302) is used for outputting debugging data corresponding to the configuration instruction via the debugging pin group when the configuration instruction is received via the configuration pin group. The component and method can improve the debugging efficiency of products.
3 FACSIMILE COMMUNICATION SYSTEM / NEC CORP
(PURPOSE) To discriminate a faulty sheet among continuous telegrams at the side of the reception terminal side, by informing a fault of communication caused between a transmission terminal and a facsimile exchange device to the reception terminal in the form of an errormessage telegram. (CONSTITUTION) When a communication fault is detected while a telegram given from a transmission terminal is received at a facsimile exchange device 300, a communication controller CCU302-1 reports an error massage to a central controller CC304. The controller CC304 cancels the filing action of the message to a magnetic disk device DKU307 and designates the error message telegram set at the device DKU307 instead. The CC304 then gives an indication to a controller CCU302-2 to transmit the error message telegram to a reception terminal to transmit it to the reception terminal.
4 MEDICAL DIAGNOSTIC IMAGING ASSISTANCE APPARATUS / FUJIFILM CORP
(PURPOSE)To provide a medical diagnostic imaging assistance apparatus capable of reducing the moving distance of an image reading doctor's sight line in displaying two related images of objects for reading on respective monitors. ! When right and left MLO (Mediolateral Oblique) images 301 and right and left CC (Craniocaudal) images 302 of objects for reading are displayed on monitors 18A and 18B, the moving distance of the reading doctor's sight line can be reduced by displaying the left/right MLO images 301 and left/right CC images 302 (D4
5 유체 온조 시스템 및 냉동 장치 / 신와 콘트롤즈 가부시키가이샤
[해결 수단] 실시 형태에 의한 유체 온조 시스템은, 고온측 냉동기(100), 중온측 냉동기(200), 및 저온측 냉동기(300)를 구비하는 다원식 냉동 장치에 의해서, 유체를 냉각한다. 다원식 냉동 장치에서의 중온측 냉동기(200)는, 중온측 제1 증발기(204)와, 중온측 제2 증발기(224)를 가진다. 고온측 냉동기(100)의 고온측 증발기(104)와 중온측 냉동기(200)의 중온측 응축기(202)가, 제1 캐스케이드 콘덴서(CC1)를 구성한다. 중온측 냉동기(200)의 중온측 제2 증발기(224)와 저온측 냉동기(300)의 저온측 응축기(302)가, 제2 캐스케이드 콘덴서(CC2)를 구성한다. 그리고, 유체 통류 장치가 통류시키는 유체는, 중온측 냉동기(200)의 중온측 제1 증발기(204)에 의해서 냉각된 후, 저온측 냉동기(300)의 저온측 증발기(304)에 의해서 냉각된다.
6 FUEL INJECTION NOZZLE / NIPPON SOKEN INC
PROBLEM TO BE SOLVED: To prevent lowering of a flow rate coefficient even when an injection pressure is increased, in a fuel injection nozzle for injecting a fuel into an internal combustion engine.SOLUTION: With respect to a limit value Q defined as an upper limit of a flow rate of fuel passing through a single injection hole, for example, in a nozzle including a first structure, the limit value Q is determined so as to satisfy an inequality 20 cc/min.≤Q≤339 cc/min., so that a flow rate coefficient Cd can be made 0.82 or more even when an injection pressure is increased to 220 MPa. Further by determining the limit value Q so as to satisfy an inequality 20 cc/min.≤Q≤302 cc/min., the flow rate coefficient Cd can be made 0.82 or more even when the injection pressure is increased to 240 Mpa. Furthermore by determining the limit value Q so as to satisfy an inequality 20 cc/min.≤Q≤240 cc/min., the flow rate coefficient Cd can be made 0.82 or more even when the injection pressure is increased to 260 Mpa.
7 SRAM FOR STABILIZED DATA LATCH OPERATION AND ITS DRIVING METHOD / HYUNDAI ELECTRON IND CO LTD
PROBLEM TO BE SOLVED: To allow a stabilized data latch operation of the SRAM cell which uses lower power source voltage(V cc). SOLUTION: This SRAM is constituted so that the sources of driving transistors 301, 302 of the SRAM cell are not connected to the ground potential, but to the negative voltage driving section 300 which generates a negative voltage or the ground potential. The negative voltage driving section 300 drives the source sides of the driving transistors 301, 302 at negative voltages only when the word line(W/L) is enabled in the readout cycle and otherwise supplies the ground potential to the source sides of the driving transistors 301, 302.
8 유체 온조 시스템 / 신와 콘트롤즈 가부시키가이샤
[해결 수단]실시의 형태에 따른 유체 온조 시스템은, 고온측 냉동기(100), 중온측 냉동기(200), 및 저온측 냉동기(300)를 구비하는 다원식 냉동 장치에 의해서, 유체를 냉각한다. 다원식 냉동 장치에서의 중온측 냉동기(200)는, 중온측 제1 증발기(204)와, 중온측 제2 증발기(224)를 가진다. 고온측 냉동기(100)의 고온측 증발기(104)와 중온측 냉동기(200)의 중온측 응축기(202)가, 제1 캐스케이드 콘덴서(CC1)를 구성한다. 중온측 냉동기(200)의 중온측 제2 증발기(224)와 저온측 냉동기(300)의 저온측 응축기(302)가, 제2 캐스케이드 콘덴서(CC2)를 구성한다. 그리고, 상기 중온측 냉매와, 상기 저온측 냉매가 동일한 냉매이다. 그리고, 유체 통류 장치가 통류시키는 유체는, 중온측 냉동기(200)의 중온측 제1 증발기(204)에 의해서 냉각된 후, 저온측 냉동기(300)의 저온측 증발기(304)에 의해서 냉각된다.
9 SEMICONDUCTOR DEVICE / PS4 LUXCO S A R L
PROBLEM TO BE SOLVED: To suppress signal transmission delay in a lamination type semiconductor device capable of selectively utilizing a plurality of through electrodes.SOLUTION: One interface chip IF and a plurality of core chips CC0 to CC7 are electrically connected through a plurality of through electrodes. A data signal of a driver circuit 401 is input to a core chip CC7 through either a through electrode 301 or 302. An output switching circuit 190 selects a through electrode by activating either a tristate inverter IVR1 or IVR2. The tristate inverter amplifies the data signal and transmits it to the through electrode. Similarly, an input switching circuit 192 activates either a tristate inverter IVT1 or IVT2. These tristate inverters also amplify the data signal output from the through electrode and transmits them to a receiver circuit 411.
10 SEMICONDUCTOR DEVICE / ELPIDA MEMORY INC
(PURPOSE)To suppress a delay in the transmission of a signal in a laminated semiconductor device where a plurality of through-electrodes can selectively be used. ! One interface chip IF is electrically connected with a plurality of core chips CC0 to CC7 via the plurality of through-electrodes. A data signal of a driver circuit 401 is inputted to the core chip CC7 via any of the through-electrode 301 or 302. An output switch circuit 190 selects a through-electrode by activating a try state inverter IVR1 or IVR2. The try state inverter amplifies the data signal and sends it to the through-electrode. Similarly, an input switch circuit 192 activates the try state inverter IVT1 or IVT2. The try state inverters also amplifies the data signal sent from the through-electrode and supplies it to a receiver circuit 411. ! (C)2011,JPO&INPIT

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1 Winter energy behaviour in multi-family block buildings in a temperate-cold climate in Argentina
Elsevier , 2011 ; Vol. 15 , Issue 1
2 Summer thermal behaviour of compact single family housing in a temperate climate in Argentina
Elsevier , 2012 ; Vol. 16 , Issue 5
3 Energy improvement of a conventional dwelling in Argentina through thermal simulation
Pergamon Press , 2008 ; Vol. 33 , Issue 10
4 Analysis and modelling of the performance of home foundations on expansive soils in Central Texas. 26F, 1T, 15R - MATHEWSON, CC TEXAS A & M UNIV. USA CASTLEBERRY, JP MCCLELLAND ENGS, HOUSTON, USA LYTTON, RL TEXAS A & M UNIV. USA BULL. ASS. ANGNG GEOL. V12, N4, 1975, P275-302
Pergamon Press , 1976 ; Vol. 13 , Issue 3
5 Improvement of energy performance metrics for the retrofit of the built environment. Adaptation to climate change and mitigation of energy poverty
Elsevier , 2018 ; Vol. 165 , Issue 3
6 팽창제종류에 따른 증편제조의 물성비교 및 표준 Recipe설정
동아대학교 대학원 , 2000 ; 국내석사 , vi, 45p.
7 단일광자방출단층촬영에서 영상 재구성기법에 따른 방사선량 및 검사 시간 차이 분석
순천향대학교 , 2017 ; 국내박사 , xviii, 106 p.
8 몰리브데넘 기반 나노구조 촉매를 이용한 전기화학적 산소발생반응 및 암모니아 합성 연구
대구대학교 대학원 , 2024 ; 국내석사 , viii, 68
9 몰리브데넘 기반 나노구조 촉매를 이용한 전기화학적 산소발생반응 및 암모니아 합성 연구
대구대학교 대학원 , 2016 ; 국내석사 , pp.25987
10 몰리브데넘 기반 나노구조 촉매를 이용한 전기화학적 산소발생반응 및 암모니아 합성 연구
대구대학교 대학원 , 2019 ; 국내석사 , pp.247-248

ScienceON '보고서' 검색

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1 한국 자연폐경여성에서 성장인자의 유전자 다형성과 그 혈중농도 및 골밀도사이의 상관성
김정구 , 서울대학교 , 2002
2 다목적 실용위성 2호 과학관측용 고해상도 카메라 개발사업
송현숙 , 한국항공우주연구원 , 2001
3 경량금속 복합재료 개발연구
김유찬 , 한국과학기술연구원 , 1998
4 감시정찰 센서네트워크 개발
김유찬 , 한국전자통신연구원 , 2009

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