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INTEGRATED

  • Pspice 学习

    PSPICE是由SPICE(Simulation Program with INTEGRATED Circuit Emphasis)发展而来的用于微机系列的通用电路分析程序。于1972年由美国加州大学伯克利分校的计算机辅助设计小组利用FORTRAN语言开发而成,主要用于大规模集成电路的计算机辅助设计。

    标签: Pspice 仿真

    上传时间: 2015-12-04

    上传用户:kendisc

  • tas3204

    The TAS3204 is a highly-INTEGRATED audio system-on-chip (SOC) consisting of a fully-programmable, 48-bit digital audio processor, a 3:1 stereo analog input MUX, four ADCs, four DACs, and other analog functionality. The TAS3204 is programmable with the graphical PurePath Studio™ suite of DSP code development software. PurePath Studio is a highly intuitive, drag-and-drop environment that minimizes software development effort while allowing the end user to utilize the power and flexibility of the TAS3204’s digital audio processing core. TAS3204 processing capability includes speaker equalization and crossover, volume/bass/treble control, signal mixing/MUXing/splitting, delay compensation, dynamic range compression, and many other basic audio functions. Audio functions such as matrix decoding, stereo widening, surround sound virtualization and psychoacoustic bass boost are also available with either third-party or TI royalty-free algorithms. The TAS3204 contains a custom-designed, fully-programmable 135-MHz, 48-bit digital audio processor. A 76-bit accumulator ensures that the high precision necessary for quality digital audio is maintained during arithmetic operations. Four differential 102 dB DNR ADCs and four differential 105 dB DNR DACs ensure that high quality audio is maintained through the whole signal chain as well as increasing robustness against noise sources such as TDMA interference. The TAS3204 is composed of eight functional blocks: Clocking System Digital Audio Interface Analog Audio Interface Power supply Clocks, digital PLL I2C control interface 8051 MCUcontroller Audio DSP – digital audio processing 特性 Digital Audio Processor Fully Programmable With the Graphical, Drag-and-Drop PurePath Studio™ Software Development Environment 135-MHz Operation 48-Bit Data Path With 76-Bit Accumulator Hardware Single-Cycle Multiplier (28 × 48)

    标签: 3204 tas

    上传时间: 2016-05-06

    上传用户:fagong

  • 激活工具heu

    1.软件安装步骤   a)运行光盘中客户软件\CCS5000 CCS2.20\CCS2.2\SETUP.EXE,进入引导界面;   b)选择Install下的Code Composer Studio进入安装界面; c)按照默认的方式安装,装在C:\ti下。 d)安装软件补丁:运行光盘客户软件\c5000ccs2.20\CCS FOR C5000-补丁\C5000-2.20.00-FULL-to-C5000-2.20.18-FULL.EXE,进入安装界面,然后按照默认的方式安装即可。 e)重新启动计算机,按DEL键进入CMOS的设置界面CMOS SETUP UTILITY,将INTEGRATED Peripherals中的Onboard Paralell Port改为378/IRQ,Parrallel Port Mode改为EPP,保存退出。 f)进入windows后会出现“CCS 2(‘ C5000) ”、 “Setup  CCS 2(‘ C5000) ”两个图标。

    标签: 激活

    上传时间: 2017-01-03

    上传用户:jmw8637

  • Bio Medical CMOS IC

    A major societal challenge for the decades to come will be the delivery of effective medical services while at the same time curbing the growing cost of healthcare. It is expected that new concepts-particularly electronically assisted healthcare will provide an answer. This will include new devices, new medical services as well as networking. On the device side, impressive innovation has been made possible by micro- and nanoelectronics or CMOS INTEGRATED Circuits. Even higher accuracy and smaller form factor combined with reduced cost and increased convenience of use are enabled by incorporation of CMOS IC design in the realization of biomedical systems. The compact hearing aid devices and current pacemakers are good examples of how CMOS ICs bring about these new functionalities and services in the medical field. Apart from these existing applications, many researchers are trying to develop new bio-medical solutions such as Artificial Retina, Deep Brain Stimulation, and Wearable Healthcare Systems. These are possible by combining the recent advances of bio-medical technology with low power CMOS IC technology.

    标签: Medical CMOS Bio IC

    上传时间: 2017-02-06

    上传用户:linyj

  • s5pv210芯片i2c控制触摸屏示例

    I2C(Inter-INTEGRATED Circuit)总线是由PHILIPS公司开发的两线式串行总线,用于连接微控制器及其外围设备。是微电子通信控制领域广泛采用的一种总线标准。

    标签: s5pv210 i2c 触摸屏

    上传时间: 2017-05-10

    上传用户:simon_edthorek

  • 基于频率插值的4.0kbps 语音编码器的性能和设计(英文)

    The 4.0 kbit/s speech codec described in this paper is based on a Frequency Domain Interpolative (FDI) coding technique, which belongs to the class of prototype waveform Interpolation (PWI) coding techniques. The codec also has an INTEGRATED voice activity detector (VAD) and a noise reduction capability. The input signal is subjected to LPC analysis and the prediction residual is separated into a slowly evolving waveform (SEW) and a rapidly evolving waveform (REW) components. The SEW magnitude component is quantized using a hierarchical predictive vector quantization approach. The REW magnitude is quantized using a gain and a sub-band based shape. SEW and REW phases are derived at the decoder using a phase model, based on a transmitted measure of voice periodicity. The spectral (LSP) parameters are quantized using a combination of scalar and vector quantizers. The 4.0 kbits/s coder has an algorithmic delay of 60 ms and an estimated floating point complexity of 21.5 MIPS. The performance of this coder has been evaluated using in-house MOS tests under various conditions such as background noise. channel errors, self-tandem. and DTX mode of operation, and has been shown to be statistically equivalent to ITU-T (3.729 8 kbps codec across all conditions tested.

    标签: frequency-domain interpolation performance Design kbit_s speech coder based and of

    上传时间: 2018-04-08

    上传用户:kilohorse

  • L9352B

    Description The L9352B is an INTEGRATED quad low-side power switch to drive inductive loads like valves used in ABS systems. Two of the four channels are current regulators with current range from 0 mA to 2.25 A. All channels are protected against fail functions. They are monitored by a status output.

    标签: L9352B

    上传时间: 2019-03-27

    上传用户:guaixiaolong

  • 集成电路原理

    集成电路(INTEGRATED circuit)是一种微型电子器件或部件。采用一定的工艺,把一个电路中所需的晶体管、电阻、电容和电感等元件及布线互连一起,制作在一小块或几小块半导体晶片或介质基片上,然后封装在一个管壳内,成为具有所需电路功能的微型结构。

    标签: 集成 电路原理

    上传时间: 2019-06-14

    上传用户:ljianboo

  • Broadband Wireless Networks

    Emerging technologies such as WiFi and WiMAX are profoundly changing the landscape of wireless broadband.  As  we evolve into future generation wireless networks, a primary challenge is the support of high data rate, INTEGRATED multi- media type traffic over a unified platform. Due to its inherent advantages in high-speed communication, orthogonal frequency division multiplexing (OFDM) has become the modem  of  choice for a number of high profile wireless systems (e.g., DVB-T, WiFi, WiMAX, Ultra-wideband).

    标签: Broadband Wireless Networks

    上传时间: 2020-05-26

    上传用户:shancjb

  • Digital Wireless Transceivers

    The design and manufacturing of wireless radio frequency (RF) transceivers has developed rapidly in recent ten yeas due to rapid development of RF INTEGRATED circuits and the evolution of high-speed digital signal processors (DSP). Such high speed signal processors, in conjunction with the development of high resolution analog to digital converters and digital to analog converters, has made it possible for RF designers to digitize higher intermediate frequencies, thus reducing the RF section and enhancing the overall performance of the RF section.

    标签: Transceivers Wireless Digital

    上传时间: 2020-05-27

    上传用户:shancjb