搜索资源列表
MPC8270-EXT-v10
- CPU MPC8270 SDRAM K4S561632 x4(128Mbyte) BOOT FLASH AM29LV640(8MByte) Nand FLASH 兼容三星的K9F系列的FLASH CPU JTAG口 核心板集成 串口 3个 SMC1、SMC2、SCC1 (SMC1扩展板和核心板都有输出接口) 以太网口 3个 FCC1、FCC2、FCC3 可编程发光二极管 6个 可编程发光数码二极管 1个 系统外部中断输入 4个 外部系统复位输入 1个
Reduce-loss-advice1400a1200v
- 富士大功率模块1400A/1200,降低损耗的设计,可大大提高系统的效率,降低系统的发热,提高系统安全性。-Fuji power module 1400A/1200, reduce the loss of the design, and can greatly improve the efficiency of the system, to reduce the heating system, improve the safety of the system.
M24LR64_DataSheet
- M24LR64 EEPROM (64K bits) 意法半导体的M24LR64 EEPROM存储器集成标准的数字I2C和被动式射频(ISO 15693)接口。 在射频模式下,存储器无需电能即可从系统采集能量和数据, 从而节省电路板的功率损耗, 用户可随时随地以轻松简便的方式远程设定或更新电子产品。 -M24LR64 EEPROM (64K bits) STMicroelectronics M24LR64 EEPROM memory integrated standard digi
Transformer_alarm
- 变压器防盗报警器源码、原理图和PCB(protel 2004).MCU是STC89C58RD+.变压器防盗报警装置是针对野外的基站低压变压器被盗现象严重而开发的一种智能防盗报警系统。该装置采用RS422/ RS485通信手段,传输稳定可靠,维护方便等特点。弥补了传统集群式系统功耗高,通信距离短,购买价格昂贵等缺点。该产品采用高集成度的单片机作为控制核心,具有功能强,体积小,运行可靠等特点。-Transformer burglar alarm.Sound code, schematic diagr
opf
- 用于分析标准接点的电力系统运行中功率的利用情况及损耗问题-Standards used to analyze the contact of the power system operation and utilization of power loss problem
Design_of_Traffic_Light_Controller_Based_on_VHDL.r
- :传统的交通灯控制器多数由单片机或PLC来实现,文中介绍了基于VHDL硬件描述语言进行交通灯控制 器设计的一般思路和方法。选择XIL INX公司低功耗、低成本、高性能的FPGA芯片,采用ISE5. X和MODELSIM SE 6. 0开发工具进行了程序的编译和功能仿真。最后给出了交通灯控制器的部分VHDL源程序和仿真结果,仿 真结果表明该系统的设计方案正确。-Traffic light controller is usually developed bymicro p rocesso
ED
- 电力系统考虑网损的经济调度程序,采用的是经典算例,算例实用性较好。-Net loss of power system considering the economic dispatch procedures used are the classic example, a good practical example.
Mobile_power_design
- 从智能手机的总体设计入手,应用先进的技术和器件,进行降低功率损耗的方案设计,从而尽可能延长智能手机的使用时间和待机时间。事实上,低功耗设计已经成为智能手机设计中一个越来越迫切的问题-Start from the overall design of smart phones, the application of advanced technologies and devices to reduce the power loss of the program design, smart phone
Doppler
- A signal is transmitted using a carrier frequency of 900 MHz. It is transmitted through a multipath channel which can be modelled as Rayleigh fading. Assumingthe Dopper spread as 10Hz and the number of multipaths as 10, generate the Rayleigh
Vistools
- This tool is similar to the C/N tool but calculates Power Flux Density (PFD) and Equivalent Power Flux Density (EPFD) rather than C/N, and hence is based upon spreading loss rather than free space path loss.
Loss_model
- 自己制作的光伏PV发电求线路损耗的Matlab/simulink模块,通过改变参数可得出不同地点处的功率损耗。-Produce their own photovoltaic PV power generation demand line loss of Matlab/simulink module parameters can be obtained by changing the Office of the power loss in different locations.
fiber(5-3)
- 光纤功率损失及计算,Power Budget,光功率需求计算范例-Optical power loss and calculation, Power Budget, optical power demand computing paradigm
wangsun
- 在电力系统中,计算整个网络的网损的程序。-In the power system, calculation of network network loss procedures.
Reactive-Power-Optimization-matlab
- 程序为改进的遗传算法对配电网无功优化补偿问题。电力系统配电网的无功优化规划是保证配电网安全、经济运行的一项有效手段,是降低网损、提高电压质量的重要措施。-Reactive power optimization is one of the most important control methods to ensure power system operation securely and economically,and an effective measure to improve the v
2_DGPlacemDataEnvelAnal
- DG placement in a 33-bus distribution power system using data envelopment analysis technique considering voltage profile, reliability, power loss and cost.
hydro thermal unit no loss.m
- Consider unit 1 and unit 2 are thermal power plants and the third unit is hydro power plant, and neglect power loss.
thermal no loss
- Consider all the units (4, 5, 6) are thermal power plants and neglect power loss.
thermal with loss
- Consider unit 1 and unit 2 are thermal power plants and the third unit is hydro power plant, and consider power loss. Note: Regarding the transmission loss consider quadratic function taking the generating values as variable
Power bank
- 单节电池两路输出(5V/2A)行动电源。 精简零组件 4段LED电量显示、以GPIO直推高亮度手电筒功能,不须外加三极管。 完整保护、高转换效率充/放电电池端之过压保护、过流保护和过温保护,并可减少功率损耗,放电转换效率最高93%。(A single - cell battery two - way output (5V/2A) power supply. Simplification of zero components The 4 section of LED power
2019_ASOC_ORPD
- Optimal reactive power dispatch with uncertainties in load demand and renewable energy sources adopting scenario-based approach