CaAs metal semiconductor field effect transistor (MESFET) 소자의 전달컨덕턴스 분산 (transconductance dispersion) 현상과 게이트 누설 전류의 원인을 capacitance deep level transient spectroscopy (DLTS) 측정을 이용하여 해석하였다. DLTS 스펙트럼에서는 활성화 에너지가 각각 0.65×0.07 eV와 0.88 × 0.04 eV인 두개의 표면 결함과 0.84 × 0.01 eV의 활성화 에너지를 갖는 EL2를 관찰하였다. 전달컨덕턴스 분산 측정 결과, 전달컨덕턴스는 5.5 Hz ∼ 300 Hz의 주파수 영역에서 감소하였다. 전달컨덕턴스 분산을 온도의 함수로 측정한 결과, 온도가 증가할수록 전이 주파수는 증가하였고 전이 주파수의 온도 의존성으로부터 0.66 ∼ 0.02 eV의 활성화 에너지를 구할 수 있었다. 게이트 누설 전류 측정에서는 0.15 V 이하의 게이트 전압에서 순 방향과 역 방향 게이트 전압이 일치하는 오믹 전류-전압 특성을 나타내었고 게이트 누설 전류의 온도 의존성으로부터 구한 활성화 에너지는 0.63 ∼ 0.01 eV로 계산되었다. 서로 다른 방법으로 구한 활성화 에너지의 비교로부터 표면 결함 H1이 주파수에 따라서 감소하는 전달컨덕턴스 분산 및 게이트 누설 전류의 원인임을 알 수 있었다. 【Origins for the transconductance dispersion and the gate leakage current in a GaAs metal semiconductor field effect transistor were found using capacitance deep-level transient spectroscopy (DLTS) measurements. In DLTS spectra, we observed two surface states with thermal activation energies of 0.65 $\times$ 0.07 eV and 0.88 $\times$ 0.04 eV and an electron trap EL2 with thermal activation energy of 0.84 $\times$ 0.01 eV. Transconductance was decreased in the frequency range of 5.5 Hz ~ 300 Hz. The transition frequency shifted to higher frequencies with the increase of temperature and the activation energy for the change of the transition frequency was determined to be 0.66 $\times$ 0.02 eV. From the measurements of the gate leakage current as a function of the device temperature, the forward and reverse currents are coincident with each other below gate voltages lower than 0.15 V, namely Ohmic behavior between gate and source/drain electrodes. The activation energy for the conductance of electrons on the surface of MESFET was 0.63 $\times$ 0.01 eV. Comparing activation energies obtained by different measurements, we found surface states H1 caused the transconductance dispersion and the fate leakage current.】
A railway is a complex system integrated with a lot of technical elements such as trains, track facilities, human factors, operation & control and maintenance. As a mass transportation system, a railway could contain potential risks that may result in a high death rate and property losses. Accordingly, Railroad Safety Technology R&D Corps. is adopting the plan of the construction of Railway Safety Test Facilities as a part of the Railway Total Safety Project to enhance the railway safety, and carrying out researches on effective project management methods with Systems Engineering techniques. Recently, various systems engineering tools such as CORE or Cradle are applied to manage the system requirements and the project management process in the part of the aerospace engineering and automobile engineering so on. The railway industry also makes an effort to develop an efficient management skills using systems engineering tools as the railway system is multi-disciplinary. Therefore, we propose the more effectual management method of constructing the Railway Safety Test Facilities applying the systems engineering tool to the research.
The main challenges for the development of agricultural bio-degradable mulching film concern the degradation during the lifetime of cultivated crops. A set of rice by-product (rice-hull and rice-bran) based bio-degradable mulching films was developed and tested, following the measurement of standard bio-degradability rate and adaptability in a large scale field experiment. The standard bio-degradability of bio-film passed the KS (Korea standard) regulation. The result of mechanical analysis of bio-degradable mulching film presented a higher mechanical strength and elongation rate compared with polyethylene film. In addition, bio-film could be degraded into fragments within 4 months under the field condition of several upland crops. Bio-degradable mulching film indicated great potential as a new source of agricultural bio-degradable material.
Technology development for sufficient dry matter production of Chinese milk vetch (CMV) is most important in CMV-rice cultivation system in order to provide sufficient nutrients to rice plants. However, when the CMV plants are dominated by the weed, especially Alopecurus aequalis, the CMV growth could be reduced due to light and nutrient competition. In addition, A. aequalis is potential host of the rice dwarf virus disease. Therefore, control of A. aequalis is necessary to enhance the biomass production of CMV plants when CMV stands are insufficient. The use of chemical like sethoxydim (20%, ai) showed the highest control rate of 84% at early stage and was reduced as application was delayed. A. aequalis control did not change the CMV seedling stand before and after herbicide treatment and the reseeding stand in fall was rather increased 2.2 to 2.6 times. On the other hand, in untreated control, the CMV stand at May 15 and reseeding stand in fall was significantly reduced as compared with the before herbicide treatment. Control of A. aequalis increased the CMV dry matter production by 164% for 50% CMV coverage rate and 63% for 25% CMV coverage rate. This is equivalent to 12.3~16.4 ㎏N/10a which is greater than the recommended nitrogen rate of 9㎏/10a. The result indicates that the control of A. aequalis is an efficient way to enhance dry matter production in CMV-rice cultivation system especially when CMV stand is poor.