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Spontaneously, it can control the output power of quartz light array to achieve the rapid heating control by adjusting the output voltage, and control radiation equilibrium temperature of test piece surface to simulate the aerodynamic heat environment of aerosphere when aerospace plane enters again.

同时,通过调节输入电压的大小,可以控制石英灯阵列的输出功率,实现对快速加热的控制,通过控制试件表面的辐射平衡温度来,模拟空天飞机再入大气层的气动热环境。

Our model is valid for any arbitrary fiber dispersion parameter,input power distribution, independently of transmission distance, channel number andunequal channel spacing.

该模型适用范围广,可用于各种Raman增益参数,任意信道间隔,不同的光纤色散参数,各种大小、形状的输入光功率信号,而且不受传输距离和复用信道数目的影响。

Best Calc highlightsLarge display with lots of graphic indicatorsPrecedence mode - to reduce entering parenthesis (e.g. 2+2-2=6)Operations and conversions can be performed in binary, octal, decimal, and hexadecimal formCalculate basic arithmetic functionsCalculate the root, square root or cube root of a numberRaise to power functionsLogarithmic and exponent functionsCalculate sine, cosine, tangent, arc sine, arc cosine or arc tangentCalculate in degrees, radians or grads, mil, revDisplays results in normal, scientific, or fix modeMemory operations Call last result functionOperations with big and small numbers are supported (up to ten in 308th power or ten in minus 308th power)and much more to explore!

最佳钙highlightsLarge模式显示indicatorsPrecedence与大量的图形-减少输入括号(如2 +2-2 = 6)业务和十进制的转换,可进行二进制,八进制,和十六进制formCalculate基本算术functionsCalculate根,平方根或多维数据集的numberRaise根电源functionsLogarithmic和指数functionsCalculate正弦,余弦,正切,圆弧正弦,余弦弧或弧tangentCalculate度数,弧度或梯度,密尔,revDisplays结果正常,科学化,或修复modeMemory行动电话与大,小号码的最后结果functionOperations支持(最多10个在零下308电源或功率10 308)以及更多探索!

The relative intensities of H atom Blamer lines and Ar-750.4 nm emissions as functions of input power, gas pressure and the position inside the visible MW plasma ball have been investigated.

本实验对氢原子Blamer线系和氩原子750.4 nm 的相对强度与输入的微波功率和气体压力之间的关系进行了讨论。

Input fan performance curve, frequency, flow-rate, power; Output fan and system operation curves, efficiency.

数据输入-风机性能曲线、频率、流量、功率;数据输出-风机与系统运转曲线、效率。

Transmission line loadings may be affected directly by the power input to the line from connected generating units or changes in parallel paths that may be changed by placing other lines into or removing them from service.

输电线路的负荷可直接受到来自所联接发电机组功率输入的影响,或受到并联运行线路变化的影响,这种变化可以是其它并联线路的投入或退出。

In this case, the concentration power, i.e., the output area compared to input area, would be higher.

在这种情况下,集中功率,即,与输入面积相比的输出面积,将更高。

24LC01 Pinout: 2 pA Input Bias Current Characterized From TA = C55C to 125C Available in MSOP and SOT-23 Packages Micropower Shutdown Mode ...

24LC01引脚说明: 2 PA的输入偏置电流为特征由TA = C55C至125℃采用MSOP和SOT - 23封装微功率停机模式下可用。。。

The design for impedance converting circuit of input current,transistor amplifying circuit and converting circuit of output current is presented.The telegrapher equations are adopted to determine the impedance of transmission-line transformer,which is used to convert circuit impedance between signal source and transistor.

讨论了放大器输入回路阻抗变换电路、晶体管放大电路以及输出回路阻抗变换电路的设计思想,运用电报方程从理论上推导出用于信号源和晶体管之间阻抗变换的传输线变压器输入输出阻抗计算公式,由此设计出模拟信号处理电路中非常重要的AB类高功率放大器。

A18430 Maximum Ratings: A18430 Pinout: DC input range: 180 - 375V Input surge withstand: 400V for 100ms DC output: 3.3V Programmable output: 10 to 110% Regulation: 0.2% Efficiency: 77.5% Maximum operating temperature: 100C at full load Power density: 60W/cubic inch Height above board: 0.43 in.(10,9 mm) Parallelable, with N+M fault tolerance Low noise ZCS/ZVS architecture

A18430最大额定值: A18430引脚说明:直流输入范围:180 - 375V输入浪涌承受:为100ms的400V的直流输出:3.3V的可编程输出:10至110%调节:0.2%的效率:77.5%最大工作温度:100C读写器在满负荷功率密度:60W/cubic英寸高光明正大:0.43英寸(10.9毫米)可并行与N +男容错低噪音零电流/零电压架构

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Finally, according to market conditions and market products this article paper analyzes the trends in the development of camera technology, and designs a color night vision camera.

最后根据市场情况和市面上产品的情况分析了摄像机技术的发展趋势,并设计了一款彩色夜视摄像机。

Only person height weeds and the fierce looks stone idles were there.

只有半人深的荒草和龇牙咧嘴的神像。

This dramatic range, steeper than the Himalayas, is the upturned rim of the eastern edge of Tibet, a plateau that has risen to 5 km in response to the slow but un stoppable collision of India with Asia that began about 55 million years ago and which continues unabated today.

这一引人注目的地域范围,比喜马拉雅山更加陡峭,是处于西藏东部边缘的朝上翻的边框地带。响应启始于约5500万年前的、缓慢的但却不可阻挡的印度与亚洲地壳板块碰撞,高原已上升至五千米,这种碰撞持续至今,毫无衰退。