msp430The LDC1312 and LDC1314 are 2- and 4-channel, 1• Easy-to-use – minimal configuration required 12-bit inductance to digital converters (LDCs) for • Measure up to 4 sensors with one IC inductive sensing solutions. With multiple channels • Multiple channels support environmental and and support for remote sensing, the LDC1312 and aging compensation LDC1314 enable the performance and reliability benefits of inductive sensing to be realized at minimal• Multi-channel remote sensing provides lowest cost and power. The products are easy to use, onlysystem cost requiring that the sensor frequency be within 1 kHz • Pin-compatible medium and high-resolution and 10 MHZ to begin sensing. The wide 1 kHz to 10 options MHZ sensor frequency range also enables use of very small PCB coils, further reducing sensing– LDC1312/4: 2/4-ch 12-bit LDC solution cost and size.– LDC1612/4: 2/4-ch 28
上传时间: 2016-07-22
上传用户:tongmoonsky
在 USB 设计中,时钟频率提供了主要的信号源。USB 差分 DP/DM 对可工作于 480Mbps的高速模式,系统时钟可工作于 12 MHZ、48 MHZ 及 60 MHZ。由于 USB 电缆扮演了单极天线的角色,因此必须小心设计以防止 RF 电流耦合至缆线上。
上传时间: 2017-05-21
上传用户:ternel
·300M内部时钟频率 ·可进行频移键控(FSK),二元相移键控(BPSK),相移键控(PSK),脉冲调频(CHIRP),振幅调制(AM)操作 ·正交的双通道12位D/A转换器 ·超高速比较器,3皮秒有效抖动偏差 ·外部动态特性: 80 dB无杂散动态范围(SFDR)@ 100 MHZ (±1 MHZ) AOUT ·4倍到20倍可编程基准时钟乘法器 ·两个48位可编程频率寄存器 ·两个14位可编程相位补偿寄存器 ·12位振幅调制和可编程的通断整形键控功能 ·单引脚FSK和BPSK数据输入接口 ·PSK功能可由I/O接口实现 ·具有线性和非线性的脉冲调频(FM CHIRP)功能,带有引脚可控暂停功能 ·具有过渡FSK功能 ·在时钟发生器模式下,有小于25 ps RMS抖动偏差 ·可自动进行双向频率扫描 ·能够对信号进行sin(x)/x校正 ·简易的控制接口: 可配置为10MHZ串行接口,2线或3线SPI兼容接口或100MHZ 8位并行可编程接口 ·3.3V单电源供电 ·具有多路低功耗功能 ·单输入或差分输入时钟 ·小型80脚LQFP 封装
上传时间: 2019-08-06
上传用户:fuxy
80C51 8-bit microcontroller family 4K/128 OTP/ROM/ROMless, low voltage (2.7V–5.5V), low power, high speed (33 MHZ)
标签: P80C31SBPN datasheet
上传时间: 2019-11-28
上传用户:blue sky
High-Speed, Low-Power Dual Operational Amplifier The AD826 features high output current drive capability of 50 mA min per amp, and is able to drive unlimited capacitive loads. With a low power supply current of 15 mA max for both amplifiers, the AD826 is a true general purpose operational amplifier. The AD826 is ideal for power sensitive applications such as video cameras and portable instrumentation. The AD826 can operate from a single +5 V supply, while still achieving 25 MHZ of band width. Furthermore the AD826 is fully specified from a single +5 V to ±15 V power supplies. The AD826 excels as an ADC/DAC buffer or active filter in data acquisition systems and achieves a settling time of 70 ns to 0.01%, with a low input offset voltage of 2 mV max. The AD826 is available in small 8-lead plastic mini-DIP and SO packages.
上传时间: 2020-04-19
上传用户:su1254
PRODUCT DESCRIPTION The AD810 is a composite and HDTV compatible, current feedback, video operational amplifier, ideal for use in systems such as multimedia, digital tape recorders and video cameras. The 0.1 dB flatness specification at bandwidth of 30 MHZ (G = +2) and the differential gain and phase of 0.02% and 0.04° (NTSC) make the AD810 ideal for any broadcast quality video system. All these specifications are under load conditions of 150 Ω (one 75 Ω back terminated cable). The AD810 is ideal for power sensitive applications such as video cameras, offering a low power supply current of 8.0 mA max. The disable feature reduces the power supply current to only 2.1 mA, while the amplifier is not in use, to conserve power. Furthermore the AD810 is specified over a power supply range of ±5 V to ±15 V.
上传时间: 2020-04-19
上传用户:su1254
transimpedance linearization circuitry. This allows it to drive video loads with excellent differential gain and phase perfor mance on only 50 mW of power. The AD8001 is a current feedback amplifier and features gain flatness of 0.1 dB to 100 MHZ while offering differential gain and phase error of 0.01% and 0.025°. This makes the AD8001 ideal for professional video electronics such as cameras and video switchers. Additionally, the AD8001’s low distortion and fast settling make it ideal for buffer high-speed A-to-D converters. The AD8001 offers low power of 5.5 mA max (VS = ±5 V) and can run on a single +12 V power supply, while being capable of delivering over 70 mA of load current. These features make this amplifier ideal for portable and battery-powered applications where size and power are critical. The outstanding bandwidth of 800 MHZ along with 1200 V/µs of slew rate make the AD8001 useful in many general purpose high-speed applications where dual power supplies of up to ±6 V and single supplies from 6 V to 12 V are needed. The AD8001 is available in the industrial temperature range of –40°C to +85°C.
上传时间: 2020-04-21
上传用户:su1254
This book provides the essential design techniques for radio systems that operate at frequencies of 3 MHZ to 100 GHz and which will be employed in the telecommunication service. We may also call these wireless systems, wireless being synonymous with radio, Telecommunications is a vibrant indus- try, particularly on the ‘‘radio side of the house.’’ The major supporter of this upsurge in radio has been the IEEE and its 802 committees. We now devote Ž . an entire chapter to wireless LANs WLANs detailed in IEEE 802.11. We also now have subsections on IEEE 802.15, 802.16, 802.20 and the wireless Ž . Ž metropolitan area network WMAN . WiFi, WiMax,, and UWB ultra wide- . band are described where these comparatively new radio specialties are demonstrating spectacular growth.
标签: Telecommunication Design System Radio for
上传时间: 2020-06-01
上传用户:shancjb
One of the prerequisites for the development of telecommunication services is the understanding of the propagation of the waves, either acoustic, electromagnetic, radio or light waves, which are used for the transmission of information. In this work, we shall limit ourselves to the study of radio waves: this term apply to the electromagnetic waves used in radio communications. Their frequency spectrum is very broad, and is divided into the following frequency bands : ELF waves (f < 3 kHz), VLF (3-30 kHz), LF waves (30-300 kHz), MF waves (300-3000 kHz), HF (3-30 MHZ), VHF waves (30-300 MHZ), UHF waves (300-3000 MHZ), SHF waves (3-30 GHz), EHF waves (30-300 GHz) and sub- EHF waves (300-3000 GHz).
标签: Propagation Radio Wave
上传时间: 2020-06-01
上传用户:shancjb
Thepredecessorvolumeofthisbookwaspublishedin1996.Intheyears since then, some things have changed and some have not. Two of the things that have not changed are the desire for better models and faster simulations. I performed the original simulations on my “hyperfast” 133-MHZ computer! At the time, I thought if I could just getafastercomputer,allofourSPICEproblemswouldbehistory,right? TodayIamsimulatingonacomputerthathasa2.6-GHzprocessorwith 512 MB of RAM, and I would still say that simulations run too slow. The computer technology has evolved, but so have the models. In 1996 wewereperformingsimulationson100-kHzpowerconverters,whereas today I routinely see 1- and 2-MHZ power converters.
标签: Switch-Mode Simulation Supply Power
上传时间: 2020-06-07
上传用户:shancjb