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  • Power Electronics Handbook, 3 Edition

    There have been many developments in the field of power electronics since the  publication of  the  second edition, almost  five  years  ago. Devices have become  bigger and better  -  bigger silicon die, and current and voltage ratings. However, semiconductor devices have also  become  smaller and better, integrated circuit devices, that is. And  the  marriage of low power integrated circuit tecnology and high power semiconductors has resulted in benefit to both fields.

    标签: Electronics Handbook Edition Power

    上传时间: 2020-06-07

    上传用户:shancjb

  • RFID+Security

    Radio frequency identification (RFID) is a type of automatic identification systems which has gained popularity in recent years for being fast and reliable in keeping track of the individual objects. In RFID systems, contactless object identification is achieved using radio signals without the need for physical contact as the case with other existing identification technologies such as barcodes. Therefore, a huge number of items can be identified in a short amount of time with high reliability and low cost which makes the RFID technology very attractive for a wide range of applications such as supply chain management, e-health, monitoring humans, pets, animals, and many other objects, toll control, and electrical tagging. Furthermore, RFID technology eliminates the human error and reduces the total cost of the products.

    标签: Security RFID

    上传时间: 2020-06-08

    上传用户:shancjb

  • Embedded_Deep_Learning_-_Algorithms

    Although state of the art in many typical machine learning tasks, deep learning algorithmsareverycostly interms ofenergyconsumption,duetotheirlargeamount of required computations and huge model sizes. Because of this, deep learning applications on battery-constrained wearables have only been possible through wireless connections with a resourceful cloud. This setup has several drawbacks. First, there are privacy concerns. Cloud computing requires users to share their raw data—images, video, locations, speech—with a remote system. Most users are not willing to do this. Second, the cloud-setup requires users to be connected all the time, which is unfeasible given current cellular coverage. Furthermore, real-time applications require low latency connections, which cannot be guaranteed using the current communication infrastructure. Finally, wireless connections are very inefficient—requiringtoo much energyper transferredbit for real-time data transfer on energy-constrained platforms.

    标签: Embedded_Deep_Learning Algorithms

    上传时间: 2020-06-10

    上传用户:shancjb

  • 轮机英语期末答案

    )Armature windings of the electric motor for NO.2 deck cargo winch found low insulation. Windings re-winded,painted and baked dry. (2) NO.1 main air compressor failed to build up pressure.The machine disassembled, cleaned and inspected. The discharge valve plate found broken. The valve palte renewed and running trials tested after being reassembled. 

    标签: 答案

    上传时间: 2020-07-14

    上传用户:

  • 音频放大器设计

    This design uses Common-Emitter Amplifier (Class A) with 2N3904 Bipolar Junction Transistor. Use “Voltage Divider Biasing” to reduce the effects of varying β (= ic / ib) (by holding the Base voltage constant)  Base Voltage (Vb) = Vcc * [R2 / (R1 + R2)]  Use Coupling Capacitors to separate the AC signals from the DC biasing voltage (which only pass AC signals and block any DC component).  Use Bypass Capacitor to maintain the Q-point stability.  To determine the value of each component, first set Q-point close to the center position of the load line. (RL is the resistance of the speaker.)

    标签: 音频放大器设计 电路图 英文

    上传时间: 2020-11-27

    上传用户:

  • PCB设计十大误区-绕不完的等长(一)

    1.关于等长第一次听到“绕等长工程师”这个称号的时候,我和我的小伙伴们都惊呆了。每次在研讨会提起这个名词,很多人也都是会心一笑。 不知道从什么时候起,绕等长成了一种时尚,也成了PCB设计工程师心中挥不去的痛。需要等长设计的总线越来越多,等长的规则越来越严格。5mil已经不能满足大家的目标了,精益求精的工程师们开始挑战1mil,0.5mil……还听过100%等长,没有误差的要求。 为什么我们这么喜欢等长?打开PCB设计文件,如果没有看到精心设计的等长线,大家心中第一反应应该是鄙视,居然连等长都没做。也有过在赛格买主板或者显卡的经验,拿起板子先看看电容的设计,然后再看看绕线,如果没有绕线或者绕线设计不美观,直接就Pass换另一个牌子。或许在我们的心中,等长做的好,是优秀PCB设计的一个体现。 做过一个非正规的统计(不过一博每年上万款PCB设计,我们的采样基本上也可以算做大数据了),稍微复杂一点的高速板子,绕等长要占据总设计时间的20%~30%。如果等长规则更严格,或者流程控制不好,做了等长之后再反复修改,这个时间还会更多。

    标签: pcb

    上传时间: 2021-11-11

    上传用户:

  • 50W隔离型离线式DC.pdf

    ABSTRACTThe flyback power stage is a popular choice for single and multiple output dc-to-dc converters at powerlevels of 150 Watts or less. Without the output inductor required in buck derived topologies, such as theforward or push-pull converter, the component count and cost are reduced. This application note will reviewthe design procedure for the power stage and control electronics of a flyback converter. In these isolatedconverters, the error signal from the secondary still needs to cross the isolation boundary to achieveregulation. By using the UC3965 Precision Reference with Low Offset Error Amplifier on the secondaryside to drive an optocoupler and the UCC3809 Economy Primary Side Controller on the primary side, asimple and low cost 50 Watt isolated power supply is realized.

    标签: 隔离

    上传时间: 2021-11-24

    上传用户:kingwide

  • 基于FPGA设计的字符VGA LCD显示实验Verilog逻辑源码Quartus工程文件+文档说明

    基于FPGA设计的字符VGA  LCD显示实验Verilog逻辑源码Quartus工程文件+文档说明,通过字符转换工具将字符转换为 8 进制 mif 文件存放到单端口的 ROM IP 核中,再从ROM 中把转换后的数据读取出来显示到 VGA 上,FPGA型号Cyclone4E系列中的EP4CE6F17C8,Quartus版本17.1。module top( input                       clk, input                       rst_n, //vga output         output                      vga_out_hs, //vga horizontal synchronization          output                      vga_out_vs, //vga vertical synchronization                   output[4:0]                 vga_out_r,  //vga red output[5:0]                 vga_out_g,  //vga green output[4:0]                 vga_out_b   //vga blue );wire                            video_clk;wire                            video_hs;wire                            video_vs;wire                            video_de;wire[7:0]                       video_r;wire[7:0]                       video_g;wire[7:0]                       video_b;wire                            osd_hs;wire                            osd_vs;wire                            osd_de;wire[7:0]                       osd_r;wire[7:0]                       osd_g;wire[7:0]                       osd_b;assign vga_out_hs = osd_hs;assign vga_out_vs = osd_vs;assign vga_out_r  = osd_r[7:3]; //discard low bit dataassign vga_out_g  = osd_g[7:2]; //discard low bit dataassign vga_out_b  = osd_b[7:3]; //discard low bit data//generate video pixel clockvideo_pll video_pll_m0( .inclk0                (clk                        ), .c0                    (video_clk                  ));color_bar color_bar_m0( .clk                   (video_clk                  ), .rst                   (~rst_n                     ), .hs                    (video_hs                   ), .vs                    (video_vs                   ), .de                    (video_de                   ), .rgb_r                 (video_r                    ), .rgb_g                 (video_g                    ), .rgb_b                 (video_b                    ));osd_display  osd_display_m0( .rst_n                 (rst_n                      ), .pclk                  (video_clk                  ), .i_hs                  (video_hs                   ), .i_vs                  (video_vs                   ), .i_de                  (video_de                   ), .i_data                ({video_r,video_g,video_b}  ), .o_hs                  (osd_hs                     ), .o_vs                  (osd_vs                     ), .o_de                  (osd_de                     ), .o_data                ({osd_r,osd_g,osd_b}        ));endmodule

    标签: fpga vga lcd

    上传时间: 2021-12-18

    上传用户:

  • 基于FPGA设计的vga显示测试实验Verilog逻辑源码Quartus工程文件+文档说明 FPGA

    基于FPGA设计的vga显示测试实验Verilog逻辑源码Quartus工程文件+文档说明,FPGA型号Cyclone4E系列中的EP4CE6F17C8,Quartus版本17.1。module top( input                       clk, input                       rst_n, //vga output         output                      vga_out_hs, //vga horizontal synchronization          output                      vga_out_vs, //vga vertical synchronization                   output[4:0]                 vga_out_r,  //vga red output[5:0]                 vga_out_g,  //vga green output[4:0]                 vga_out_b   //vga blue );wire                            video_clk;wire                            video_hs;wire                            video_vs;wire                            video_de;wire[7:0]                       video_r;wire[7:0]                       video_g;wire[7:0]                       video_b;assign vga_out_hs = video_hs;assign vga_out_vs = video_vs;assign vga_out_r  = video_r[7:3]; //discard low bit dataassign vga_out_g  = video_g[7:2]; //discard low bit dataassign vga_out_b  = video_b[7:3]; //discard low bit data//generate video pixel clockvideo_pll video_pll_m0( .inclk0(clk), .c0(video_clk));color_bar color_bar_m0( .clk(video_clk), .rst(~rst_n), .hs(video_hs), .vs(video_vs), .de(video_de), .rgb_r(video_r), .rgb_g(video_g), .rgb_b(video_b));endmodule

    标签: fpga vga显示 verilog quartus

    上传时间: 2021-12-19

    上传用户:kingwide

  • 高通(Qualcomm)蓝牙芯片QCC5151_硬件设计详细指导书(官方内部培训手册)

    高通(Qualcomm)蓝牙芯片QCC5151_硬件设计详细指导书(官方内部培训手册)共52页其内容是针对硬件设计、部分重要元器件选择(ESD,Filter)及走线注意事项的详细说明。2 Power management 2.1 SMPS 2.1.1 Components specification 2.1.2 Input power supply selection 2.1.3 Minimize SMPS EMI emissions 2.1.4 Internal LDOs and digital core decoupling 2.1.5 Powering external components 2.2 Charger 2.2.1 Charger connections.2.2.2 General charger operation2.2.3 Temperature measurement during charging 2.3 SYS_CTRL 3 Bluetooth radio3.1 RF PSU component choice 3.2 RF band-pass filter3.3 Layout (天线 走线的注意事项)4 Audio4.1 Audio bypass capacitors 4.2 Earphone speaker output4.3 Line/Mic input 4.4 Headphone output optimizition5 LED pads 5.1 LED driver 5.2 Digital/Button input 5.3 Analog input5.4 Disabled 6 Reset pin (Reset#)7 QSPIinterface 8 USB interfaces 8.1 USB device port8.1.1 USB connections8.1.2 Layout notes8.1.3 USB charger detection

    标签: qualcomm 蓝牙芯片 qcc5151

    上传时间: 2022-01-24

    上传用户:XuVshu