• 雪山-飞狐
  • C/C++
  • 7.8MB
  • rar
  • 0
  • 10 积分
  • 3
  • 2019-01-16 19:32
GD32F1x0_Addon_V3.1.0 pack
  • GD32F1x0_Addon_V3.1.0
  • IAR_GD32F1x0_ADDON.1.0.2.exe
  • GigaDevice.GD32F1x0_DFP.3.1.0.pack
  • GigaDevice.GD32F1x0_Addon.3.1.0.exe
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      学生管理系统 适合初学者参考 上传下载,树管理,定制表,权限管理,样式,院系管理,学生管理,成绩管理,模糊查询成绩管理,模糊查询成绩管理,模糊查询成绩管理 java语言!
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    • Transmission Line Calculator
      传输线计算工具 Transmission Line Calculator etc Radio Frequency and Microwave JavaScript Calculator.chm About Our Calculators Introduction The Chemandy calculators are designed to be easy to use and follow a common theme and layout where possible. Most of them have been used for several years now and complaints about their accuracy or functionality are very rare. We do welcome these however and there is a contact link on the bottom of every page for this purpose. Instructions for use Simply enter the characteristics required as a decimal number and hit the "Calculate" button. Couldn't be easier! If the answer given is NaN (not a number) then it is most likely that the number was not entered as a decimal or perhaps you used a comma instead of a full stop for the decimal point. There are two basic methods of calculation used. The simple analysis type which will only calculate ideal component values and a more comprehensive type which can also work backwards from preferred component values giving a simulation of the circuit performance. For instance you may require a 10 dB attenuator working in a 50 Ohm system. If you use the Pi Attenuator calculator with results for resistance, attenuation, return loss, VSWR and reflection coefficient the analysis will give you an ideal series resistor of 71.151 Ohms and an ideal shunt resistor of 96.247 Ohms. Neither of these values exist and a suitable value has to be selected. This may be from components that are to hand or maybe from the list of appropriate Preferred Resistor Values. The first time that the calculate button is used, the calculated ideal resistance values will be loaded into the preferred value text boxes as a starting point. It is now possible to change the preferred values to those available and calculate again. The calculator now simulates the circuit and gives the Attenuation, Input Impedance, Reflection Coefficient, VSWR and Return Loss for the preferred values entered. This makes it possible to select the component values for a particular characteristic i.e. most accurate attenuation or the best return loss. Microstrip Calculator Accuracy The different formulas used for the microstrip calculators give different results. Which gives the best absolute accuracy with different PCB types has not been assessed by us and the choice is yours. The following table compares bench mark values used by Polar Instruments with the results obtained with our calculators. They are based on a 1 oz copper track, εr at 4.2 and a 0.79375 mm substrate. Track Width (mm) Numerical Method Zo (Ohms) IPC-2141 JavaScript Zo (Ohms) Wadell JavaScript Zo (Ohms) Hartley JavaScript Zo (Ohms) 3.3 30.09 21.06 30.14 30.39 1.5 50.63 49.45 50.71 51.51 0.45 89.63 91.33 89.03 92.79 Script Language The original calculators used VBScript to perform the calculations. This was adequate when the majority of people used Internet Explorer but now other browsers have become popular. Virtually all modern browsers have JavaScript and this has now been adopted as the standard for our new calculators. All JavaScript calculators are tested for functionality and appearance in Explorer 6.0, Mozilla Firefox and Opera 10.10 browsers. Send email using the Contact Us page with questions about our products or comments about this web site. Copyright © 2011 CHEMANDY ELECTRONICS Page last modified October 26, 2011