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  • (網盤)朱老師物聯網大講堂-全部視頻

    |- 我的虛擬機和ubuntu下載 - 0 B|- 騰訊課堂公開課 - 0 B|- 工具軟件 - 0 B|- X210光盤資料 - 0 B|- 4.C語言專題精講篇 - 0 B|- 2.uboot和linux內核移植 - 0 B|- 1.ARM裸機全集 - 0 B|- 0.基礎預科 - 0 B|- 專用播放器第一代-已不用,請下載第二代.rar - 18.10 MB|- 專用播放器-《朱老師物聯網大講堂》收費視頻.rar - 18.10 MB|- 朱老師物聯網大講堂高級課程專用播放器-第二代.rar - 28.10 MB

    標簽: 物聯網

    上傳時間: 2022-06-06

    上傳用戶:

  • (網盤)300本Python電子書

    |- 數據科學速查表 - 0 B|- 遷移學習實戰 - 0 B|- 零起點Python機器學習快速入門 - 0 B|- 《深度學習入門:基于Python的理論與實現》高清中文版PDF+源代碼 - 0 B|- 《Python生物信息學數據管理》中文版PDF+英文版PDF+源代碼 - 0 B|- 《Python深度學習》2018中文版pdf+英文版pdf+源代碼 - 0 B|- 《Python編程:從入門到實踐》中文版+源代碼 - 0 B|- stanford machine learning - 0 B|- Python語言程序設計2018版電子教案 - 0 B|- Python網絡編程第三版 (原版+中文版+源代碼) - 0 B|- Python機器學習實踐指南(中文版帶書簽)、原書代碼、數據集 - 0 B|- python官方文檔 - 0 B|- Python編程(第4版 套裝上下冊) - 0 B|- PyQt5快速開發與實戰(pdf+源碼) - 0 B|- linux - 0 B|- 征服PYTHON-語言基礎與典型應用.pdf - 67.40 MB|- 與孩子一起學編程_中文版_詳細書簽.pdf - 69.10 MB|- 用Python做科學計算.pdf - 6.10 MB|- 用Python寫網絡爬蟲.pdf - 9.90 MB|- 用Python進行自然語言處理(中文翻譯NLTK).pdf - 4.40 MB|- 像計算機科學家那樣思考 Python中文版第二版.pdf - 712.00 kB|- 網絡爬蟲-Python和數據分析.pdf - 6.90 MB|- 圖解機器學習.pdf - 59.40 MB|- 凸優化.pdf - 5.70 MB|- 數據挖掘導論.pdf - 2.50 MB|- 數據科學入門.pdf - 13.30 MB|- 數據結構與算法__Python語言描述_裘宗燕編著_北京:機械工業出版社_,_2016.01_P346.pdf - 74.30 MB|- 神經網絡與深度學習.pdf - 92.60 MB|- 深入Python3...

    標簽: python

    上傳時間: 2022-06-06

    上傳用戶:

  • (網盤)Arduino iot學習套餐

    |- 9.配套數據手冊 - 0 B|- 8.面包板接線軟件 - 0 B|- 7.物聯網實驗 - 0 B|- 6.圖形化編程 - 0 B|- 5.實驗接線圖 - 0 B|- 4.視頻教程 - 0 B|- 3.案例程序 - 0 B|- 2.開發環境 - 0 B|- 10.輔助軟件 - 0 B|- 1.學前先看 - 0 B|- CLB.ico - 17.00 kB|- Autorun.inf - 23 B

    標簽: arduino iot

    上傳時間: 2022-06-06

    上傳用戶:

  • DAC技術用語 (D/A Converters Defini

    Differential Nonlinearity: Ideally, any two adjacent digitalcodes correspond to output analog voltages that are exactlyone LSB apart. Differential non-linearity is a measure of theworst case deviation from the ideal 1 LSB step. For example,a DAC with a 1.5 LSB output change for a 1 LSB digital codechange exhibits 1⁄2 LSB differential non-linearity. Differentialnon-linearity may be expressed in fractional bits or as a percentageof full scale. A differential non-linearity greater than1 LSB will lead to a non-monotonic transfer function in aDAC.Gain Error (Full Scale Error): The difference between theoutput voltage (or current) with full scale input code and theideal voltage (or current) that should exist with a full scale inputcode.Gain Temperature Coefficient (Full Scale TemperatureCoefficient): Change in gain error divided by change in temperature.Usually expressed in parts per million per degreeCelsius (ppm/°C).Integral Nonlinearity (Linearity Error): Worst case deviationfrom the line between the endpoints (zero and full scale).Can be expressed as a percentage of full scale or in fractionof an LSB.LSB (Lease-Significant Bit): In a binary coded system thisis the bit that carries the smallest value or weight. Its value isthe full scale voltage (or current) divided by 2n, where n is theresolution of the converter.Monotonicity: A monotonic function has a slope whose signdoes not change. A monotonic DAC has an output thatchanges in the same direction (or remains constant) for eachincrease in the input code. the converse is true for decreasing codes.

    標簽: Converters Defini DAC

    上傳時間: 2013-10-30

    上傳用戶:stvnash

  • Active Filters

    Power conversion by virtue of its basic role produces harmonics due to theslicing of either voltages or currents. To a large extent the pollution in theutility supply and the deterioration of the power quality has been generatedor created by non-linear converters. It is therefore ironic that power convertersshould now be used to clean up the pollution that they helped to create inthe first place.In a utility system, it is desirable to prevent harmonic currents (which resultin EMI and resonance problems) and limit reactive power flows (whichresult in transmission losses).Traditionally, shunt passive filters, comprised of tuned LC elements andcapacitor banks, were used to filter the harmonics and to compensate forreactive current due to non-linear loads. However, in practical applicationsthese methods have many disadvantages.

    標簽: Filters Active

    上傳時間: 2013-11-05

    上傳用戶:AISINI005

  • 一種無片外電容LDO的瞬態增強電路設計

    利用RC高通電路的思想,針對LDO提出了一種新的瞬態增強電路結構。該電路設計有效地加快了LDO的瞬態響應速度,而且瞬態增強電路工作的過程中,系統的功耗并沒有增加。此LDO芯片設計采用SMIC公司的0.18 μm CMOS混合信號工藝。仿真結果表明:整個LDO是靜態電流為3.2 μA;相位裕度保持在90.19°以上;在電源電壓為1.8 V,輸出電壓為1.3 V的情況下,當負載電流在10 ns內由100 mA降到50 mA時,其建立時間由原來的和28 μs減少到8 μs;而在負載電流為100 mA的條件下,電源電壓在10 ns內,由1.8 V跳變到2.3 V時,輸出電壓的建立時間由47 μs降低為15 μs。

    標簽: LDO 無片外電容 瞬態 電路設計

    上傳時間: 2013-12-20

    上傳用戶:niumeng16

  • LTC4099 USB電源管理和電池充電

      The LTC®4099 high effi ciency USB power manager andLi-Ion/Polymer battery charger seamlessly managespower distribution from multiple sources in portableapplications. It is differentiated from other USB powermanagers by its bidirectional I2C port that allows the hostmicroprocessor to control and monitor all aspects of theUSB power management and battery charging processes.In addition, a programmable interrupt generation functionalerts the host microprocessor to changes in device statusand provides unprecedented control of power managementfunctions. This high degree of confi gurability allowspost-layout changes in operation, even changes in thefi eld, and it allows a single qualifi ed device to be usedin a variety of products, thus reducing design time andeasing inventory management.

    標簽: 4099 LTC USB 電源管理

    上傳時間: 2013-10-22

    上傳用戶:18602424091

  • 信號源,調節器和電源電路分析

      Occasionally, we are tasked with designing circuitry for aspecific purpose. The request may have customer originsor it may be an in-house requirement. Alternately, a circuitmay be developed because its possibility is simply tooattractive to ignore1. Over time, these circuits accumulate,encompassing a wide and useful body of proven capabilities.They also represent substantial effort. These considerationsmake publication an almost obligatory propositionand, as such, a group of circuits is presented here. This isnot the first time we have displayed such wares and, giventhe encouraging reader response, it will not be the last2.Eighteen circuits are included in this latest effort, roughlyarranged in the categories given in this publication’s title.They appear at the next paragraph.

    標簽: 信號源 調節器 電源 電路分析

    上傳時間: 2013-11-12

    上傳用戶:012345

  • DUAL DIGITAL ISOLATORS

    The ISO7220 and ISO7221 are dual-channel digital isolators. To facilitate PCB layout, the channels are orientedin the same direction in the ISO7220 and in opposite directions in the ISO7221. These devices have a logic inputand output buffer separated by TI’s silicon-dioxide (SiO2) isolation barrier, providing galvanic isolation of up to4000 V. Used in conjunction with isolated power supplies, these devices block high voltage, isolate grounds, andprevent noise currents on a data bus or other circuits from entering the local ground and interfering with ordamaging sensitive circuitry.

    標簽: ISOLATORS DIGITAL DUAL

    上傳時間: 2013-10-24

    上傳用戶:hbsunhui

  • Emulating a synchronous serial

    The C500 microcontroller family usually provides only one on-chip synchronous serialchannel (SSC). If a second SSC is required, an emulation of the missing interface mayhelp to avoid an external hardware solution with additional electronic components.The solution presented in this paper and in the attached source files emulates the mostimportant SSC functions by using optimized SW routines with a performance up to 25KBaud in Slave Mode with half duplex transmission and an overhead less than 60% atSAB C513 with 12 MHz. Due to the implementation in C this performance is not the limitof the chip. A pure implementation in assembler will result in a strong reduction of theCPU load and therefore increase the maximum speed of the interface. In addition,microcontrollers like the SAB C505 will speed up the interface by a factor of two becauseof an optimized architecture compared with the SAB C513.Moreover, this solution lays stress on using as few on-chip hardware resources aspossible. A more excessive consumption of those resources will result in a highermaximum speed of the emulated interface.Due to the restricted performance of an 8 bit microcontroller a pin compatible solution isprovided only; the internal register based programming interface is replaced by a set ofsubroutine calls.The attached source files also contain a test shell, which demonstrates how to exchangeinformation between an on-chip HW-SSC and the emulated SW-SSC via 5 external wiresin different operation modes. It is based on the SAB C513 (Siemens 8 bit microcontroller).A table with load measurements is presented to give an indication for the fraction of CPUperformance required by software for emulating the SSC.

    標簽: synchronous Emulating serial

    上傳時間: 2014-01-31

    上傳用戶:z1191176801

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