• 제목/요약/키워드: Gate Metal

검색결과 568건 처리시간 0.031초

플래시메모리를 위한 scaled SONOSFET NVSM 의 프로그래밍 조건과 특성에 관한 연구 (A study on characteristics of the scaled SONOSFET NVSM for Flash memory)

  • 박희정;박승진;홍순혁;남동우;서광열
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 하계학술대회 논문집
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    • pp.751-754
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    • 2000
  • When charge-trap SONOS cells are used flash memory, the tunneling program/erase condition to minimize the generation of interface traps was investigated. SONOSFET NVSM cells were fabricated using 0.35$\mu\textrm{m}$ standard memory cell embedded logic process including the ONO cell process. based on retrograde twin-well, single-poly, single metal CMOS process. The thickness of ONO triple-dielectric for memory cell is tunnel oxide of 24${\AA}$, nitride of 74 ${\AA}$, blocking oxide of 25 ${\AA}$, respectively. The program mode(Vg: 7,8,9 V, Vs/Vd: -3 V, Vb: floating) and the erase mode(Vg: -4,-5,-6 V, Vs/Vd: floating, Vb: 3V) by modified Fowler-Nordheim(MFN) tunneling were used. The proposed programming condition for the flash memory of SONOSFET NVSM cells showed less degradation($\Delta$Vth, S, Gm) characteristics than channel MFN tunneling operation. Also the program inhibit conditions of unselected cell for separated source lines NOR-tyupe flash memory application were investigated. we demonstrated that the program disturb phenomenon did not occur at source/drain voltage of 1 V∼4 V and gate voltage of 0 V∼4.

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Electrical characteristics of poly-Si NVM by using the MIC as the active layer

  • Cho, Jae-Hyun;Nguyen, Thanh Nga;Jung, Sung-Wook;Yi, Jun-Sin
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.151-151
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    • 2010
  • In this paper, the electrically properties of nonvolatile memory (NVM) using multi-stacks gate insulators of oxide-nitride-oxynitride (ONOn) and active layer of the low temperature polycrystalline silicon (LTPS) were investigated. From hydrogenated amorphous silicon (a-Si:H), the LTPS thin films with high crystalline fraction of 96% and low surface's roughness of 1.28 nm were fabricated by the metal induced crystallization (MIC) with annealing conditions of $650^{\circ}C$ for 5 hours on glass substrates. The LTPS thin film transistor (TFT) or the NVM obtains a field effect mobility of ($\mu_{FE}$) $10\;cm^2/V{\cdot}s$, threshold voltage ($V_{TH}$) of -3.5V. The results demonstrated that the NVM has a memory window of 1.6 V with a programming and erasing (P/E) voltage of -14 V and 14 V in 1 ms. Moreover, retention properties of the memory was determined exceed 80% after 10 years. Therefore, the LTPS fabricated by the MIC became a potential material for NVM application which employed for the system integration of the panel display.

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Development and evaluation of a compact gamma camera for radiation monitoring

  • Dong-Hee Han;Seung-Jae Lee;Hak-Jae Lee;Jang-Oh Kim;Kyung-Hwan Jung;Da-Eun Kwon;Cheol-Ha Baek
    • Nuclear Engineering and Technology
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    • 제55권8호
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    • pp.2873-2878
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    • 2023
  • The purpose of this study is to perform radiation monitoring by acquiring gamma images and real-time optical images for 99mTc vial source using charge couple device (CCD) cameras equipped with the proposed compact gamma camera. The compact gamma camera measures 86×65×78.5 mm3 and weighs 934 g. It is equipped with a metal 3D printed diverging collimator manufactured in a 45 field of view (FOV) to detect the location of the source. The circuit's system uses system-on-chip (SoC) and field-programmable-gate-array (FPGA) to establish a good connection between hardware and software. In detection modules, the photodetector (multi-pixel photon counters) is tiled at 8×8 to expand the activation area and improve sensitivity. The gadolinium aluminium gallium garnet (GAGG) measuring 0.5×0.5×3.5 mm3 was arranged in 38×38 arrays. Intrinsic and extrinsic performance tests such as energy spectrum, uniformity, and system sensitivity for other radioisotopes, and sensitivity evaluation at edges within FOV were conducted. The compact gamma camera can be mounted on unmanned equipment such as drones and robots that require miniaturization and light weight, so a wide range of applications in various fields are possible.

핫픽업 전사기술을 이용한 고성능 WSe2 기반 전계효과 트랜지스터의 제작 (High-performance WSe2 field-effect transistors fabricated by hot pick-up transfer technique)

  • 김현호
    • 접착 및 계면
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    • 제21권3호
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    • pp.107-112
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    • 2020
  • 원자층 두께의 전이금속 칼코겐화합물(transition-metal dichalcogenide, TMD) 기반 반도체 소재는 그래핀과 비슷한 구조의 이차원구조를 지니는 소재로서 조절 가능한 밴드갭 뿐만 아니라 우수한 유연성, 투명성 등 다양한 장점으로 인해 다양한 미래사회의 전자소자에 활용될 수 있는 소재로서 각광받고 있다. 하지만 이러한 TMD 소재들은 수분과 산소에 매우 취약하다는 단점 때문에 대기안정성을 해결할 수 있는 다양한 시도가 이루어지고 있다. 본 연구에서는 핫픽업 전사기술을 이용하여 TMD 반도체 소재 중 하나인 WSe2 와 이차원 절연체 h-BN와의 수직 헤테로 구조를 제작하여 WSe2의 대기 안정성을 향상시키기 위한 연구를 수행하였으며, h-BN/WSe2 구조를 활용하여 WSe2 기반 고성능 전계효과 트랜지스터 제작에 대한 연구를 수행하였다. 제작된 소자의 전기적 특성을 분석한 결과, h-BN에 의해 표면이 안정화된 WSe2 기반 소자는 대기안정성 뿐만 아니라 150 ㎠/Vs의 상온 정공 이동도, 3×106의 온/오프 전류비, 192 mV/decade의 서브문턱스윙 등 우수한 전기적 특성을 갖는다는 것 또한 확인할 수 있었다.

New Ruthenium Complexes for Semiconductor Device Using Atomic Layer Deposition

  • Jung, Eun Ae;Han, Jeong Hwan;Park, Bo Keun;Jeon, Dong Ju;Kim, Chang Gyoun;Chung, Taek-Mo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.363-363
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    • 2014
  • Ruthenium (Ru) has attractive material properties due to its promising characteristics such as a low resistivity ($7.1{\mu}{\Omega}{\cdot}cm$ in the bulk), a high work function of 4.7 eV, and feasibility for the dry etch process. These properties make Ru films appropriate for various applications in the state-of-art semiconductor device technologies. Thus, it has been widely investigated as an electrode for capacitor in the dynamic random access memory (DRAM), a metal gate for metal-oxide semiconductor field effect transistor (MOSFET), and a seed layer for Cu metallization. Due to the continuous shrinkage of microelectronic devices, better deposition processes for Ru thin films are critically required with excellent step coverages in high aspect ratio (AR) structures. In these respects, atomic layer deposition (ALD) is a viable solution for preparing Ru thin films because it enables atomic-scale control of the film thickness with excellent conformality. A recent investigation reported that the nucleation of ALD-Ru film was enhanced considerably by using a zero-valent metallorganic precursor, compared to the utilization of precursors with higher metal valences. In this study, we will present our research results on the synthesis and characterization of novel ruthenium complexes. The ruthenium compounds were easy synthesized by the reaction of ruthenium halide with appropriate organic ligands in protic solvent, and characterized by NMR, elemental analysis and thermogravimetric analysis. The molecular structures of the complexes were studied by single crystal diffraction. ALD of Ru film was demonstrated using the new Ru metallorganic precursor and O2 as the Ru source and reactant, respectively, at the deposition temperatures of $300-350^{\circ}C$. Self-limited reaction behavior was observed as increasing Ru precursor and O2 pulse time, suggesting that newly developed Ru precursor is applicable for ALD process. Detailed discussions on the chemical and structural properties of Ru thin films as well as its growth behavior using new Ru precursor will be also presented.

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InGaZnO active layer 두께에 따른 thin-film transistor 전기적인 영향

  • 우창호;김영이;안철현;김동찬;공보현;배영숙;서동규;조형균
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 추계학술대회 논문집
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    • pp.5-5
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    • 2009
  • Thin-film-transistors (TFTs) that can be prepared at low temperatures have attracted much attention because of the great potential for transparent and flexible electronics. One of the mainstreams in this field is the use of organic semiconductors such as pentacene. But device performance of the organic TFTs is still limited due to low field-effect mobility and rapid degradation after exposing to air. Alternative approach is the use of amorphous oxide semiconductors as a channel. Amorphous oxide semiconductors (AOSs) based TFTs showed the fast technological development, because AOS films can be fabricated at room temperature and exhibit the possibility in application like flexible display, electronic paper, and larges solar cells. Among the various AOSs, a-IGZO has lots of advantages because it has high channel mobility, uniform surface roughness and good transparency. [1] The high mobility is attributed to the overlap of spherical s-orbital of the heavy post-transition metal cations. This study demonstrated the effect of the variation in channel thickness from 30nm to 200nm on the TFT device performance. When the thickness was increased, turn-on voltage and subthreshold swing was decreased. The a-IGZO channels and source/drain metals were deposited with shadow mask. The a-IGZO channel layer was deposited on $SiO_2$/p-Si substrates by RF magnetron sputtering, where RF power is 150W. And working pressure is 3m Torr, at $O_2/Ar$ (2/28 sccm) atmosphere. The electrodes were formed with electron-beam evaporated Ti (30 nm) and Au (70 nm) bilayer. Finally, Al (150nm) as a gate metal was thermal-evaporated. TFT devices were heat-treated in a furnace at 250 $^{\circ}C$ and nitrogen atmosphere for 1hour. The electrical properties of the TFTs were measured using a probe-station. The TFT with channel thickness of 150nm exhibits a good subthreshold swing (SS) of 0.72 V/decade and on-off ratio of $1{\times}10^8$. The field effect mobility and threshold voltage were evaluated as 7.2 and 8 V, respectively.

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Effects of thickness of GIZO active layer on device performance in oxide thin-film-transistors

  • Woo, C.H.;Jang, G.J.;Kim, Y.H.;Kong, B.H.;Cho, H.K.
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 하계학술대회 논문집
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    • pp.137-137
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    • 2009
  • Thin-film transistors (TFTs) that can be prepared at low temperatures have attracted much attention due to the great potential for flexible electronics. One of the mainstreams in this field is the use of organic semiconductors such as pentacene. But device performance of the organic TFTs is still limited by low field effect mobility or rapidly degraded after exposing to air in many cases. Another approach is amorphous oxide semiconductors. Amorphous oxide semiconductors (AOSs) have exactly attracted considerable attention because AOSs were fabricated at room temperature and used lots of application such as flexible display, electronic paper, large solar cells. Among the various AOSs, a-IGZO was considerable material because it has high mobility and uniform surface and good transparent. The high mobility is attributed to the result of the overlap of spherical s-orbital of the heavy pest-transition metal cations. This study is demonstrated the effect of thickness channel layer from 30nm to 200nm. when the thickness was increased, turn on voltage and subthreshold swing were decreased. a-IGZO TFTs have used a shadow mask to deposit channel and source/drain(S/D). a-IGZO were deposited on SiO2 wafer by rf magnetron sputtering. using power is 150W, working pressure is 3m Torr, and an O2/Ar(2/28 SCCM) atmosphere at room temperature. The electrodes were formed with Electron-beam evaporated Ti(30nm) and Au(70nm) structure. Finally, Al(150nm) as a gate metal was evaporated. TFT devices were heat treated in a furnace at $250^{\circ}C$ in nitrogen atmosphere for an hour. The electrical properties of the TFTs were measured using a probe-station to measure I-V characteristic. TFT whose thickness was 150nm exhibits a good subthreshold swing(S) of 0.72 V/decade and high on-off ratio of 1E+08. Field effect mobility, saturation effect mobility, and threshold voltage were evaluated 7.2, 5.8, 8V respectively.

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Metal/Ferroelectric/Insulator/Semiconductor 구조의 결정 구조 및 전기적 특성에 관한 연구 (Characteristics of the Crystal Structure and Electrical Properties of Metal/Ferroelectric/Insulator/Semiconductor)

  • 신동석;최훈상;최인훈;이호녕;김용태
    • 한국진공학회지
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    • 제7권3호
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    • pp.195-200
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    • 1998
  • 본 연구에서는 강유전체 박막의 게이트 산화물로 사용한 $Pt/SrBi_2Ta_2O_9(SBT)/CeO_2/Si(MFS)$와 Pt/SBT/Si(MFS) 구조의 결정 구조 및 전기적 성질 의 차이를 연구하였다. XRD 및 SEM 측정 결과 SBT/$CeO_2$/Si박막은 약5nm정도의 $SiO_2$층 이 형성되었고 비교적 평탄한 계면의 미세구조를 가지는 반면, SBT/Si는 각각 약6nm와 7nm정도의 $SiO_2$층과 비정질 중간상층이 형성되었음을 알 수 있다. 즉 CeO2 박막을 완충층 으로 사용함으로써 SBT박막과 Si기판의 상호 반응을 적절히 억제할 수 있음을 확인하였다. Pt/SBT/$CeO_2/Pt/SiO_2$/와 Pt/SBT/Pt/$SiO_2$/Si구조에서 Polarization-Electric field(P-E) 특 성을 비교해 본 결과 CeO2박막의 첨가에 따라 잔류분극값은 감소하였고 항전계값은 증가하 였다. MFIS구조에서 memory window값은 항전계값과 직접적 관련이 있으므로 이러한 항 전계값의 증가는 MFIS구조에서의 memory window값이 증가할 수 있음을 나타낸다. Pt-SBT(140nm)/$CeO_2$(25nm)/Si구조에서 Capacitance-Voltage(C-V) 측정 결과로부터 동작 전압 4-6V에서 memory wondows가 1-2V정도로 나타났다. SBT박막의 두께가 증가할수록 memory window값은 증가하였는데 memory wondows가 1-2V정도로 나타났다. SBT박막의 두께가 증가할수록 memory window값은 증가하였는데 이는 SBT박막에 걸리는 전압강하가 증가하기 때문인 것으로 생각되어진다. Pt/SBT/$CeO_2$/Si의 누설전류는 10-8A/cm2정도였고 Pt/SBT/Si 구조에서는 약10-6A/cm2정도로 약간 높은 값을 나타내었다.

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고 출력 응용을 위한 2개의 전송영점을 가지는 최소화된 SOI CMOS 가변 대역 통과 여파기 (SOI CMOS Miniaturized Tunable Bandpass Filter with Two Transmission zeros for High Power Application)

  • 임도경;임동구
    • 전자공학회논문지
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    • 제50권1호
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    • pp.174-179
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    • 2013
  • 이 논문에서는 multiple split ring resonator(MSRRs)와 로딩된 스위치드 제어부를 이용하여 2개의 전송영점을 가지는 대역통과 여파기를 설계하였다. 높은 선택도와 칩 사이즈의 초소형화를 위해 비대칭의 급전 선로를 도입하여 통과 대역 주위에 위치한 전송 영점 쌍을 생성하였다. Cross coupling 또는 source-load coupling 방식을 이용한 기존의 여파기와 비교해보면 이 논문에서 제안된 여파기는 단지 2개의 공진기만으로 전송 영점을 생성하여 높은 선택도를 얻었다. 여파기의 선택도와 민감도(삽입 손실)를 최적화하기 위해 비대칭 급전 선로의 위치에 따른 전송 영점과 삽입손실의 관계를 분석하였다. 통과 대역 주파수의 가변과 30dBm 정도의 고 출력 신호를 처리하기 위해 MSRRs의 최 외각 링에 MIM 커패시터와 stacked-FET으로 구성된 SOI-CMOS 스위치드 제어부가 로딩되어 있다. 스위칭 트랜지스터의 전원을 켜고 끔으로써 통과 대역 주파수를 4GHz로부터 5GHz까지 이동시킬 수 있다. 제안된 칩 여파기는 0.18-${\mu}m$ SOI CMOS 기술을 이용함으로써 높은 Q를 가지는 수동 소자와 stacked-FET의 집적을 가능하게 만들었다. 설계된 여파기는 $4mm{\times}2mm$ ($0.177{\lambda}g{\times}0.088{\lambda}g$)의 초소형화 된 크기를 가진다. 여기서 ${\lambda}g$는 중심 주파수에서의 $50{\Omega}$ 마이크로스트립 선로의 관내 파장을 나타낸다. 측정된 삽입손실(S21)은 5.4GHz, 4.5GHz에서 각 각 5.1dB, 6.9dB를 나타내었다. 설계된 여파기는 중심 주파수로부터 500MHz의 오프셋에서 20dB이상의 대역외 저지 특성을 나타내었다.

실리콘/수소/질소의 결합에 따른 MONOS 커패시터의 계면 특성 연구 (Interface Traps Analysis as Bonding of The Silicon/Nitrogen/Hydrogen in MONOS Capacitors)

  • 김희동;안호명;서유정;장영걸;남기현;정홍배;김태근
    • 대한전자공학회논문지SD
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    • 제46권12호
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    • pp.18-23
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    • 2009
  • 본 연구는 실리콘 기판과 실리콘 산화막 사이의 계면 트랩 밀도와 게이트 누설 전류를 조사하여, Metal-Oxide-Nitride-Oxide-Silicon (MONOS) 메모리 소자의 계면 트랩 특성의 수소-질소 열처리 효과를 조사하였다. 고속열처리 방법으로 850도에서 30초 동안 열처리한 MONOS 샘플들을 질소 가스와 수소-질소 혼합 가스를 사용하여 450도에서 30분 동안추가 퍼니스 열처리 공정을 수행하였다. 열처리 하지 않은 것, 질소, 수소-질소로 열처리 한 세 개의 샘플 중에서, 커패시터-전압 측정 결과로부터 수소-질소 열처리 샘플들이 가장 적은 계면 트랩 밀도를 갖는 것을 확인하였다. 또한, 전류-전압 측정 결과에서, 수소-질소 열처리 소자의 누설전류 특성이 개선되었다. 위의 실험 결과로부터, 수소-질소 혼합 가스로 추가 퍼니스 열처리의해 실리콘 기판과 산화막 사이의 계면 트랩 밀도를 상당히 줄일 수 있었다.