运算放大器作为模拟集成电路设计的基础,同时作为DAC校准电路的一部分,本次设计一个高增益全差分跨导型运算放大器。
上传时间: 2013-10-31
上传用户:dvfeng
The LT®6552 is a specialized dual-differencing 75MHzoperational amplifier ideal for rejecting common modenoise as a video line receiver. The input pairs are designedto operate with equal but opposite large-signal differencesand provide exceptional high frequency commonmode rejection (CMRR of 65dB at 10MHz), therebyforming an extremely versatile gain block structure thatminimizes component count in most situations. The dualinput pairs are free to take on independent common modelevels, while the two voltage differentials are summedinternally to form a net input signal.
上传时间: 2014-12-23
上传用户:13691535575
A fully differential amplifi er is often used to converta single-ended signal to a differential signal, a designwhich requires three signifi cant considerations: theimpedance of the single-ended source must match thesingle-ended impedance of the differential amplifi er,the amplifi er’s inputs must remain within the commonmode voltage limits and the input signal must be levelshifted to a signal that is centered at the desired outputcommon mode voltage.
上传时间: 2013-11-09
上传用户:wweqas
Recent advances in low voltage silicon germaniumand BiCMOS processes have allowed the design andproduction of very high speed amplifi ers. Because theprocesses are low voltage, most of the amplifi er designshave incorporated differential inputs and outputs to regainand maximize total output signal swing. Since many lowvoltageapplications are single-ended, the questions arise,“How can I use a differential I/O amplifi er in a single-endedapplication?” and “What are the implications of suchuse?” This Design Note addresses some of the practicalimplications and demonstrates specifi c single-endedapplications using the 3GHz gain-bandwidth LTC6406differential I/O amplifi er.
上传时间: 2013-11-23
上传用户:rocketrevenge
模拟转换器性能不只依赖分辨率规格 大量的模数转换器(ADC)使人们难以选择最适合某种特定应用的ADC器件。工程师们选择ADC时,通常只注重位数、信噪比(SNR)、谐波性能,但是其它规格也同样重要。本文将介绍ADC器件最易受到忽视的九项规格,并说明它们是如何影响ADC性能的。 1. SNR比分辨率更为重要。 ADC规格中最常见的是所提供的分辨率,其实该规格并不能表明ADC器件的任何能力。但可以用位数n来计算ADC的理论SNR: 不 过工程师也许并不知道,热噪声、时钟抖动、差分非线性(DNL)误差以及其它参数异常都会限制ADC器件的SNR。对于高性能高分辨率转换器尤其如此。一 些数据表提供有效位数(ENOB)规格,它描述了ADC器件所能提供的有效位数。为了计算ADC的ENOB值,应把测量的SNR值放入上述公式,并求解 n。
上传时间: 2014-12-22
上传用户:z240529971
为提高产品的可靠性、设计和功能,本文所有信息若有变更,恕不提前通知。本文信息也不作为厂商的任何承诺。 任何情况下,包括已警告了的各种损坏的可能性,厂商均不负责直接的、非直接的、特殊的或偶然的因不正当使用本产品或文件所造成的损坏。 本文包含受版权保护的信息,版权所有。未经厂商书面同意,不得以机械的、电子的或其它任何方式进行复制。
上传时间: 2013-10-14
上传用户:坏坏的华仔
设计了一种用于高速ADC中的全差分套筒式运算放大器.从ADC的应用指标出发,确定了设计目标,利用开关电容共模反馈、增益增强等技术实现了一个可用于12 bit精度、100 MHz采样频率的高速流水线(Pipelined)ADC中的运算放大器.基于SMIC 0.13 μm,3.3 V工艺,Spectre仿真结果表明,该运放可以达到105.8 dB的增益,单位增益带宽达到983.6 MHz,而功耗仅为26.2 mW.运放在4 ns的时间内可以达到0.01%的建立精度,满足系统设计要求.
上传时间: 2013-10-16
上传用户:563686540
Calculation of the Differential Impedance of Tracks on FR4 substrates There is a discrepancy between calculated and measured values of impedance for differential transmission lineson FR4. This is especially noticeable in the case of surface microstrip configurations. The anomaly is shown tobe due to the nature of the substrate material. This needs to be considered as a layered structure of epoxy resinand glass fibre. Calculations, using Boundary Element field methods, show that the distribution of the electricfield within this layered structure determines the apparent dielectric constant and therefore affects theimpedance. Thus FR4 cannot be considered to be uniform dielectric when calculating differential impedance.
上传时间: 2014-12-24
上传用户:DE2542
LT®1991提供了很多的功能,因而有可能是您必須保持一定庫存量的最後一款放大器。它不是一款應用受限的單用途差分或儀表放大器。
上传时间: 2013-10-26
上传用户:18752787361
特点(FEATURES) 精确度0.1%满刻度 (Accuracy 0.1%F.S.) 可作各式数学演算式功能如:A+B/A-B/AxB/A/B/A&B(Hi or Lo)/|A| (Math functioA+B/A-B/AxB/A/B/A&B(Hi&Lo)/|A|/etc.....) 16 BIT 类比输出功能(16 bit DAC isolating analog output function) 输入/输出1/输出2绝缘耐压2仟伏特/1分钟(Dielectric strength 2KVac/1min. (input/output1/output2/power)) 宽范围交直流两用电源设计(Wide input range for auxiliary power) 尺寸小,稳定性高(Dimension small and High stability)
上传时间: 2013-11-24
上传用户:541657925