STM8L全系列MCU AD ALTIUM 集成库 原理图库 PCB封装库文件-79个芯片器件型号列表:Library Component Count : 79Name Description----------------------------------------------------------------------------------------------------STM8L101F2P3 STM8L ARM-based EnergyLite 8-bit MCU, 4 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 20-pin TSSOP, TubeSTM8L101F2P6 STM8L ARM-based EnergyLite 8-bit MCU, 4 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 20-pin TSSOP, TubeSTM8L101F2P6TR STM8L ARM-based EnergyLite 8-bit MCU, 4 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 20-pin TSSOP, Tape and ReelSTM8L101F2U6A STM8L ARM-based EnergyLite 8-bit MCU, 4 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 20-pin UFQFPN, Tube, COMP_REF availableSTM8L101F2U6ATR STM8L ARM-based EnergyLite 8-bit MCU, 4 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 20-pin UFQFPN, Tape and Reel, COMP_REF availableSTM8L101F2U6TR STM8L ARM-based EnergyLite 8-bit MCU, 4 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 20-pin UFQFPN, Tape and ReelSTM8L101F3P3 STM8L ARM-based EnergyLite 8-bit MCU, 8 kB Flash, 1.5 kB Internal RAM, -40 to +125癈 Temperature, 20-pin TSSOP, TubeSTM8L101F3P6 STM8L ARM-based EnergyLite 8-bit MCU, 8 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 20-pin TSSOP, TubeSTM8L101F3U6ATR STM8L ARM-based EnergyLite 8-bit MCU, 8 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 20-pin UFQFPN, Tape and Reel, COMP_REF availableSTM8L101F3U6TR STM8L ARM-based EnergyLite 8-bit MCU, 8 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 20-pin UFQFPN, Tape and ReelSTM8L101G2U6 STM8L ARM-based EnergyLite 8-bit MCU, 4 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 28-pin UFQFPN, TraySTM8L101G2U6A STM8L ARM-based EnergyLite 8-bit MCU, 4 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 28-pin UFQFPN, Tray, COMP_REF availableSTM8L101G2U6TR STM8L ARM-based EnergyLite 8-bit MCU, 4 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 28-pin UFQFPN, Tape and ReelSTM8L101G3U6 STM8L ARM-based EnergyLite 8-bit MCU, 8 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 28-pin UFQFPN, TraySTM8L101G3U6A STM8L ARM-based EnergyLite 8-bit MCU, 8 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 28-pin UFQFPN, Tray, COMP_REF availableSTM8L101K3T3 STM8L ARM-based EnergyLite 8-bit MCU, 8 kB Flash, 1.5 kB Internal RAM, -40 to +125癈 Temperature, 32-pin LQFP, TraySTM8L101K3T6 STM8L ARM-based EnergyLite 8-bit MCU, 8 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 32-pin LQFP, TraySTM8L101K3U6 STM8L ARM-based EnergyLite 8-bit MCU, 8 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 32-pin UFQFPN, TraySTM8L101K3U6TR STM8L ARM-based EnergyLite 8-bit MCU, 8 kB Flash, 1.5 kB Internal RAM, -40 to +85癈 Temperature, 32-pin UFQFPN, Tape and ReelSTM8L151C4T3 STM8L ARM-based EnergyLite 8-bit MCU, 16 kB Flash, 2 kB Internal RAM, -40 to +125癈 Temperature, 48-pin LQFP, TraySTM8L151C4T6 STM8L ARM-based EnergyLite 8-bit MCU, 16 kB Flash, 2 kB Internal RAM, -40 to +85癈 Temperature, 48-pin LQFP, TraySTM8L151C4T6BGT STM8L ARM-based EnergyLite 8-bit MCU, 16 kB Flash, 2 kB Internal RAM, -40 to +85癈 Temperature, 48-pin LQFP, TraySTM8L151C4T6TR STM8L ARM-based EnergyLite 8-bit MCU, 16 kB Flash, 2 kB Internal RAM, -40 to +85癈 Temperature, 48-pin LQFP, Tape and ReelSTM8L151C4U6 STM8L ARM-based EnergyLite 8-bit MCU, 16 kB Flash, 2 kB Internal RAM, -40 to +85癈 Temperature, 48-pin UFQFPN, TraySTM8L151C6T3 STM8L ARM-based EnergyLite 8-bit MCU, 32 kB Flash, 2 kB Internal RAM, -40 to +125癈 Temperature, 48-pin LQFP, TraySTM8L151C6T6 STM8L ARM-based EnergyLite 8-bit MCU, 32 kB Flash, 2 kB Internal RAM, -40 to +85癈 Temperature, 48-pin LQFP, TraySTM8L151C6U6 STM8L ARM-based EnergyLite 8-bit MCU, 32 kB Flash, 2 kB Internal RAM, -40 to +85癈 Temperature, 48-pin UFQFPN, TraySTM8L151C8 STM8L ARM-based EnergyLite 8-bit MCU, 64 kB Flash, 4 kB Internal RAM, 48-pin LQFPSTM8L151C8T3 STM8L ARM-based EnergyLite 8-bit MCU, 64 kB Flash, 4 kB Internal RAM, -40 to +125癈 Temperature, 48-pin LQFP, TraySTM8L151C8T3TR STM8L ARM-based EnergyLite 8-bit MCU, 64 kB Flash, 4 kB Internal RAM, -40 to +125癈 Temperature, 48-pin LQFP, Tape and ReelSTM8L151C8T6 STM8L ARM-based EnergyLite 8-bit MCU, 64 kB Flash, 4 kB Internal RAM, -40 to +85癈 Temperature, 48-pin LQFP, TraySTM8L151C8T7 STM8L ARM-based EnergyLite 8-bit MCU, 64 kB Flash, 4 kB Internal RAM, -40 to +105癈 Temperature, 48-pin LQFP, TraySTM8L151C8U6 STM8L ARM-based EnergyLite 8-bit MCU, 64 kB Flash, 4 kB Internal RAM, -40 to +85癈
上传时间: 2022-05-02
上传用户:bluedrops
Compact PCI(Compact Peripheral Component Interconnect)简称CPCI,中文又称紧凑型PCI,是国际工业计算机制造者联合会(PCI Industrial Computer Manufacturer's Group,简称PICMG)于1994提出来的一种总线接口标准。是以PCI电气规范为标准的高性能工业用总线。为了将PCI SIG的PCI总线规范用在工业控制计算机系统,1995年11月PCI工业计算机制造者联合会(PICMG)颁布了CPCI规范1.0版,以后相继推出了PCI-PCI Bridge规范、Computer Telephony TDM规范和User-defined I/O pin assignment规范。
标签: cpci
上传时间: 2022-05-20
上传用户:
美国PIN公司的RM3100芯片的驱动程序,有IIC和SPI的。
上传时间: 2022-06-01
上传用户:shjgzh
摘要:随着客户要求手机摄像头像素越来越高,同时要求高的传输速度,传统的并口传输越来越受到挑战。提高并口传输的输出时钟是一个办法,但会导致系统的EMC设计变得越来困难;增加传输线手机摄像头MIPI技术介绍随着客户要求手机摄像头像素越来越高,同时要求高的传输速度,传统的并口传输越来越受到挑战。提高并口传输的输出时钟是一个办法,但会导致系统的EMC设计变得越来困难;增加传输线的位数是,但是这又不符合小型化的趋势。采用MIPI接口的模组,相较于并口具有速度快,传输数据量大,功耗低,抗干扰好的优点,越来越受到客户的青睐,并在迅速增长。例如一款同时具备MIPI和并口传输的8M的模组,8位并口传输时,需要至少11根的传输线,高达96M的输出时钟,才能达到12FPS的全像素输出;而采用MIPI接口仅需要2个通道6根传输线就可以达到在全像素下12FPS的帧率,且消耗电流会比并口传输低大概20MA。由于MIPI是采用差分信号传输的,所以在设计上需要按照差分设计的一般规则进行严格的设计,关键是需要实现差分阻抗的匹配,MIPI协议规定传输线差分阻抗值为80-125欧姆。上图是个典型的理想差分设计状态,为了保证差分阻抗,线宽和线距应该根据软件仿真进行仔细选择;为了发挥差分线的优势,差分线对内部应该紧密耦合,走线的形状需要对称,甚至过孔的位置都需要对称摆放;差分线需要等长,以免传输延迟造成误码:另外需要注意一点,为了实现紧密的耦合,差分对中间不要走地线,PIN的定义上也最好避免把接地焊盘放置在差分对之间(指的是物理上2个相邻的差分线)。
上传时间: 2022-06-02
上传用户:
高通蓝牙芯片qcc5127详细规格书datasheet.pdf英文版,共97页 详细说明:1 Package information(pin allocations, pios terminal functions)2 Bluetooth subsystem 3 Cystal oscillator4 System powerstates (Idel,Active,Sleep, Off)5 Host Interface subsystem6 Applications subsystem ( QSPI Flash controller)7 Audio subsystem(Dual core Kalimba, ROM, RAM and caches, Data, engine)8 Audio interfaces ( Analog, Digital, Simultaneous audio routing)9 Peripheral interfaces (PIOs, LED, USB, SPI, UART)10 Boot manager11 System manager12 example application schematic13 Electrical characteristics14 Audio performance15 Bluetooth performance16 Power consumption
上传时间: 2022-06-12
上传用户:
随着现代光电子技术的迅速发展,各类光电转换器件的不断出现,光电检测技术的应用领域越来越广泛,尤其是微弱光信号检测技术的应用发展。微弱光信号检测中,常常由于信号动态范围宽、背景噪声大给信号检测带来较大的困难。本文根据微弱光信号检测技术原理,设计了一种基于单片机的微弱光信号检测系统。首先,本文探讨了微弱光信号检测技术的研究背景和国内外研究现状,对比了在微弱光信号检测中常用的几种方法。其次,对于微弱光信号检测系统的放大电路模块、电路控制模块、电源电路、信号采集与传输模块进行了详细的介绍和讨论。其中,重点分析了放大电路部分,利用对数放大器的信号压缩功能,结合积分放大器原理实现宽动态、大噪声信号的压缩和变换,使信号平稳变换输出,有效的被提取出来。对于系统的软件部分采用单片机C语言编写程序。然后,利用两种光电二极管(PN型和PIN型)对微弱光信号检测系统的入射光功率特性和入射光频率特性进行了讨论和分析,并测量了实际的发光二极管的光谱。最后,对系统电路测量结果和输出特性进行了总结,并提出了该课题下一步研究工作。微弱光信号检测系统电路的测量结果表明,该系统在微弱光信号检测中达到较理想的效果。系统电路成本较低、速度较快、操作灵活,可以用于多种场合下的微弱信号的检测。关键字:微弱光检测,对数放大器,数据采集,光谱测量
标签: 微弱光信号检测系统
上传时间: 2022-06-18
上传用户:默默
SPI协议及工作原理分析一、概述.SPI,Serial Perripheral Interface,串行外围设备接口,是Motorola公司推出的一种同步串行接口技术.SPI总线在物理上是通过接在外围设备微控制器(PICmicro)上面的微处理控制单元(MCU)上叫作同步串行端口(Synchronous Serial Port)的模块(Module)来实现的,它允许MCU以全双工的同步串行方式与各种外围设备进行高速数据通信SPI主要应用在EEPROM,Flash,实时时钟(RTC),数模转换器(ADC),数字信号处理器(DSP)以及数字信号解码器之间它在芯片中只占用四根管脚(Pin)用来控制以及数据传输,节约了芯片的pin 数目,同时为PCB在布局上节省了空间.正是出于这种简单易用的特性,现在越来越多的芯片上都集成了SPl技术。
标签: spi协议
上传时间: 2022-06-24
上传用户:jiabin
<h2>原理图schematic </h2><h3>元件<h3>LTSpice提供了nmos(pmos)和nmos4(pmos4)两种nmos(pmos)。其中nmos(pmos)表示衬底(B)和源极(S)相连。mos和mos4能调整的属性不同,如图:本例中要设置mos管的W-0.18u,L=0.18u,选用nmos4和pmos4.<h3>布线<h3>如图1,其中,mos管Gate靠近的那一极好像是 Source,所以PMOS要ctrl+R,ctrl+R,Ctr+.2,注意加电路名称,功能(如果需要),参数设定。<h2>封装<h2>电路设计采用层次化的方式,为了上层电路的调用,往往把底层的电路做好后进行封装,其实进行封装不仅有利于上层电路调用,还有利于测试。建一个New Symbol,该Symbol里的pin的名称必须和封装电路中的一样。ctrl + A(Attribute Editor中Symbol Type选Block,其他都保持不填。与.asc文件放入同一文件夹。注意:令.asy和.asc文件命名相同,并放在一个文件夹下即可,不需特别关联。
上传时间: 2022-06-27
上传用户:1208020161
USB TypeC接口协议,规定了TypeC的尺寸规格,pin脚定义,及相关供电,音频传输等。与USB3.0协议和PD协议不同。
上传时间: 2022-06-27
上传用户:默默
Datasheet SHT3x-DISHumidity and Temperature Sensor Fully calibrated, linearized, and temperaturecompensated digital output Wide supply voltage range, from 2.4 V to 5.5 V I2C Interface with communication speeds up to 1MHz and two user selectable addresses Typical accuracy of 2 %RH and 0.3 °C Very fast start-up and measurement time Tiny 8-Pin DFN package
上传时间: 2022-06-29
上传用户: