An analogy of the current-voltage characteristics of point microcontacts and a low-voltage reflective discharge

2010 ◽  
Vol 55 (2) ◽  
pp. 233-234
Author(s):  
V. K. Balkhanov
2015 ◽  
Vol 9 (1) ◽  
pp. 61-66 ◽  
Author(s):  
Vandana Kumari ◽  
Anusaiya Kaswan ◽  
Dinesh Patidar ◽  
Narendra Saxena ◽  
Kananbala Sharma

Current-voltage characteristics and DC electrical conductivity were studied for Ge30-xSe70Snx (x = 8, 11, 14, 17 and 20) glassy thin pellets of diameter 12mm and thickness 1mm prepared under a constant load of 5 tons using a well-known melt quenching technique in bulk as a function of composition. The I-V characteristics were recorded at room temperature as well as elevated temperatures up to 300?C. The experimental data suggests that glass containing 20 at.% of Sn has the minimum resistance allowing maximum current through the sample as compared to other counterparts of the series. Therefore, DC conductivity is found to increase with increasing Sn concentration. Composition dependence of DC conductivity is discussed in terms of the bonding between Se and Sn. Plots between ln I and V1/2 provide linear relationship for both low and high voltage range. These results have been explained through the Pool-Frenkel mechanism. The I-V characteristics show ohmic behaviour in the low voltage range and this behaviour turns to non-ohmic from ohmic in the higher voltage range due to voltage induced temperature effects.


2019 ◽  
Vol 62 (7) ◽  
pp. 571-577
Author(s):  
B. S. Dmitrievskii ◽  
A. V. Bashkatova

The article presents one of the possible options of mathematical model formation of an electric arc steel-making furnace (EAF). A lot of reports on this subject were studied in order to make a model that most accurately reflects the control object behavior (for EAF). The basic building principles demonstrate the fact that the primary element is substitution pattern of electric circuit of the installation. Cassie nonlinear differential equation was used to get a mathematical model of an electric arc. This nonlinear differential equation is very popular among the researchers. Model update is provided by calculating the electrical circuit parameters on the secondary side of transformer low voltage and by studying statistics from home and foreign scientists’ contributions. Different values of the “time-constant” of arc conductivity were used to analyze the control object behavior at different instants of time. It made it possible to take into account the nonstationarity of the state of electrode sheaths that were influenced by external disturbances, temperature variations, pressure and gas composition in the course of production processes. Such an approach made possible to form an aggregate picture of the control object behavior under the conditions of a nonstationary state of the arc combustion area at different stages of melting; to evaluate possible regulation characteristics and to determine control system requirements. The structural scheme of the model of a three-phase AC–EAF was formed. All necessary calculations of circuit elements and modeling were performed using the MATLAB Simulink package. The block diagram includes AC voltage source, direct-current resistance, and inductance of the transformer on secondary side and a low-voltage circuit, a model of an AC electric arc. The model was used to analyze the dynamic characteristics of electric arc as being an electrical object to show the voltage–dependence of current – current-voltage characteristics. The configuration of current-voltage characteristics determines burning behavior of the arc, existence domain, stability and control quality. Current-voltage characteristics were studied under the conditions of different values of the voltage on the secondary side of transformer and arc length and for different values of the “time-constant arc conductivity”. The model was also used to analyze the static characteristics. The dependence of the arc length on the current for different voltage of the transformer steps is nonlinear. Recommendations on the choice of control actions and the construction of control systems for different stages of melting are given. For example at the initial stage of melting, the control system should perform minimization problems of number of breaks under the condition of an insignificant domain of the arc existence and limit the value of lead-in power. The simulation results show that the nonstationarity of the process leads to the need to use self-organizing control systems capable of adjusting to the continually varying state of the object.


2020 ◽  
Author(s):  
Ruibo Chen ◽  
Hongxia Liu ◽  
Fei Hou ◽  
Feibo Du ◽  
Zixu Liu ◽  
...  

Abstract High trigger voltage (Vt1) characteristic of silicon-controlled rectifier (SCR) device has limited its application in electrostatic discharge (ESD) protection of low voltage circuit, especially in advanced CMOS technologies. In this letter, an ultra-low-voltage-triggered SCR (ULVTSCR) is proposed to decrease the trigger voltage of the conventional SCR. The proposed device consists of an external NMOSs-string (ENMOSs-string), an internal NMOS (INMOS) with its gate controlled by the ENMOSs-string, and a main SCR triggered with the INMOS assistance. The ESD current-voltage characteristics of ULVTSCR has been measured with the transmission line pulsing (TLP) tester. The test results indicate that the proposed ULVTSCR possesses much lower Vt1 of ~ 5.03V as well as reduced area consumption compared to the existing optimization methods, making it highly suitable for the ESD protection for 1.2V/1.8V IO ports in CMOS technology. In addition, the impact of various critical dimensions of ULVTSCR have also been evaluated to further improve the ESD characteristics.


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