正反器 - BDTIC 半导体事业部代理ON 安森美D
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安森美半导体的可穿戴医疗方案实现个性化的医疗创
新
当前,在人口老龄化和人类平均寿命延长的趋势下,人们更加注重医疗及保健,政府也大力推进健康保险改革,医疗支出增多。
医疗设备则呈现出更“智能”、便携、无线连接等个性化的发展趋势,这需要更高集成度、小型化、高能效、嵌入无线功能的医疗半导体支持,可穿戴医疗也应运而生。
安森美半导体“一站式”完整的硅方案
安森美半导体凭借超过30年的定制硅经验,将硅引入生活,提供定制的混合信号专用集成电路(ASIC)、用于系统小型化的先进封装、助听器数字信号处理(DSP)系统、定制的和半定制的超低功耗存储器、增值的前后端代工服务、用于降低无线功耗的有源天线调谐、分立元件、专用标准产品(ASSP),以及相应的软硬件、固件等“一站式”具备医疗级品质及可靠性的完整方案,并针对当前市场需求,专注于便携式、个人医疗设备。
图1:安森美半导体专注于便携式、个人医疗设备
听力健康
1.趋势
助听器设计人员面临尺寸、功耗及功能等多方面的设计挑战。
常见的助听器类型有耳背式(Behind-The-Ear, BTE)和耳内式(In-The-Ear, ITE),前者占市场销量的75%至80%,后者占市场销量的20%至25%。
另外还有眼镜式、口袋式和人工耳蜗等替代类型。
随着婴儿潮一代开始采用助听器,更小巧的耳道内置受话器(RIC)及新的耳道内不可见(IIC)类型更受欢迎,半导体厂商应转。
安森美半导体推出新的晶闸管浪涌保护器件系列安森美半导体针对电信应用推出新的NPxxx 系列晶闸管浪涌保护器件(TSPD),扩充了公司的电路保护解决方案阵容。
NPxxx 系列的44 款器件为中心局(CO)、接入端和用户前端设备中电信电路提供过压保护。
这系列器件的应用包括调制解调器(MODEM)、住宅网关、数字用户线路接入复用器(DSLAM)和集成语音数据(IVD)卡。
这些器件同时提供受业界青睐的DO-214AA 表面贴装封装(SMB)和强韧的DO-15 轴向引线封装,可靠且经济。
用作次级保护电路的一部分时,这些器件将电能转移出受保护电路来提供过压保护。
NPxxx 器件获UL497A 认证,在电子应用中采用这些器件就能够符合GR-1089-CORE、ITUK.20/K.21/K.45、IEC 61000-4-5、IEC 60950、YD/T 993、YD/T 950 和YD/T 1082 等不同规范的要求。
安森美半导体亚太区标准产品部市场营销副总裁麦满权说:“安森美半导体致力于为客户面对的日益复杂的电路保护问题提供解决方案。
除了NPxxx系列器件,我们还将推出其它的电路保护解决方案,为当今电信系统设计人员解决他们各种的电路保护挑战。
”器件的功能特性这44 款新的NPxxx 器件是大浪涌电流TSPD,保护电压范围从64 到350 伏(V)之间,提供额定浪涌电流为50、80 和100 安培(A)等不同版本。
这些器件限制电压,并将浪涌电流转移至地。
它们属于双向保护器件,因此能够在一个封装中提供两个器件的功能,节省出电路板弥足珍贵的空间。
基本上,这些器件在过压发生时进行“消弧”——将可能带来潜在损伤的电能转移出敏感电路或器件。
一旦瞬态过压状况过去,这些器件就会恢复到它们正常的“关闭”或。
安森美半导体ESD解决方案满足今天与未来电路的保护需求安森美半导体
【期刊名称】《电子与电脑》
【年(卷),期】2007(000)006
【摘要】今天,无处不在的静电和人们日常生活离不开的各种电子设备成为了一对难以解决的矛盾,尤其是当手持电子设备的轻薄小巧且产品特性及功能不断增加时,它们的输入/输出端口也随之增多,导致静电放电(ESD)进入系统并干扰或损坏集成电路(IC),因此如何进行有效的ESD保护已成为电子设备制造商面对的重要课题。
【总页数】3页(P78-80)
【作者】安森美半导体
【作者单位】安森美半导体
【正文语种】中文
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1.安森美半导体ESD解决方案满足今天与未来电路的保护需求 [J],
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3.ESD解决方案满足今天与未来电路的保护需求 [J], 安森美半导体
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安森美半导体推出助听器DSP系统级芯片下一代Ezairo®7100 优化了性能、尺寸及功耗,同时提供公开可编程的架构2013 年10 月29 日–推动高能效创新的安森美半导体(ON Semiconductor,美国纳斯达克上市代号:ONNN)推出Ezairo 7100 系列集成电路及封装的混合电路,用于先进的助听器及听力植体设备。
这款系统级芯片(SoC)的处理能力是前一代系统的5 倍,提供内置灵活性以支持不断演变的算法、无线及系统级需求。
Ezairo 7100 是业界集成度最高及能效最高的单芯片方案之一。
它独特的四核架构采用24 位公开可编程CFX 数字信号处理器(DSP)内核。
加入的ARM®Cortex-M3 处理器支持无线协定,并以特殊错误修正及音频编码支持与DSP 内核相辅相成。
此系统还包含专门用于音频处理任务的HEAR 可配置加速器引擎,以及进行高能效时域滤波的新的滤波器引擎。
当此系统结合非易失性存储器及无线收发器时,即构成完整硬件平台。
安森美半导体听力及音频方案高级总监Michel De Mey 说:“Ezairo 7100 中的主要信号处理功能在逻辑模块中采用硬连线,而可编程DSP 能用于以软件实现额外的信号处理功能。
这公开架构的设计专门用于助听器及听力植体设备,使制造商能够快速回应不断变化的市场需求。
”这系列SoC 采用65 纳米(nm)工艺技术制造,集成了模拟前端电路及无与伦比的110 dB 输入动态范围,从而提供高精度及高品质的声音。
可编程滤波器引擎支持44 μs的超低延迟音频通道,提供优异性能的功能,如堵耳效应(occlusion)管理。
增加的集成无线控制器兼容近场磁感应(NFMI)及射频(RF)无线技术,能高能效地将数据传输至无线收发器及从无线收发器接收数据。
安森美半导体和格芯合作转让纽约东菲什基尔300mm晶圆厂的所有权熔断器安森美半导体公司(ON Semiconductor,美国纳斯达克上市代号:ON和格芯(GLOBALFOUNDRIES)宣布就安森美半导体收购GLOBALFOUNDRIES位于纽约东菲什基尔(East Fishkill, New York)的300 mm晶圆厂达成最终协议。
此次收购总代价为4.3亿美元,其中1亿美元已在签署最终协议时支付,其余3.3亿美元将在2022年年底支付,之后,安森美半导体将获得该晶圆厂的全面运营控制权,该厂的员工将转为安森美半导体的员工。
此交易的完成取决于监管机构的批准及其它惯例成交条件。
该协议将使安森美半导体未来几年增加在东菲斯基尔晶圆厂300 mm的产量,且使GLOBALFOUNDRIES把众多技术转移至另外三个规格为300 mm的工厂。
根据协议条款,GLOBALFOUNDRIES将在2022年年底之前为安森美半导体生产300 mm晶圆。
预计将于2020年开始为安森美半导体制造首批300 mm晶圆。
该协议还包括一项技术转让和开发协议以及一项技术授权协议。
这为安森美半导体带来世界一流、经验丰富的300 mm制造和开发团队,使公司晶圆工艺从200 mm转至300 mm。
安森美半导体还将立即获得先进的CMOS能力,包括45 nm和65 nm技术节点。
这些工艺将为安森美半导体未来的技术开发奠定基础。
安森美半导体总裁兼首席执行官(CEO)?克信(Keith Jackson)说:“我们欢迎GLOBALFOUNDRIES Fab10团队加入安森美半导体团队。
收购300 mm东菲什基尔晶圆厂是我们步向电源和模拟半导体领导地位的又一大步。
这次收购使公司未来几年增加更多的产能,以支持我们电源和模拟产品的增长,递增生产效率,并加快我们达至目标财务模式的进程。
我对这次收购为两家公司的客户、股东和员工带来的机会感到非常兴奋,并期待在今后几年与GLOBALFOUNDRIES合作成功。
万联芯城专供ON-安森美半导体系列品牌集成电路电子元器件,所售产品均为原装现货。
万联芯城专为采购客户提供一站式的电子元器件配套报价服务,只需提交BOM物料清单,即可为您报价,物料价格优势明显,发货迅速。
点击进入万联芯城点击进入万联芯城ON代理_安森美代理伪造元件政策ON代理_安森美代理致力于采取适当的措施来保护我们的股东、客户和其他关键方免受伪造ON代理_安森美代理产品造成的不良影响。
许多元件模仿ON代理_安森美代理的标记,误导客户以为它们是真品。
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为保障我们的客户以免购买到伪造的ON代理_安森美代理产品,我们强烈建议您直接向ON代理_安森美代理或我们的授权代理商购买。
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ON代理_安森美代理(ON代理 SemicON代理ductor,美国纳斯达克上市代号:ON代理)致力于推动高能效电子的创新,使客户能够减少全球的能源使用。
ON代理_安森美代理领先于供应基于安森美半导体的方案,提供全面的高能效电源管理、模拟、传感器、逻辑、时序、互通互联、分立、系统单芯片(SoC)及定制器件阵容。
公司的产品帮助工程师解决他们在汽车、通信、计算机、消费电子、工业、医疗、航空及国防应用的独特设计挑战。
公司运营敏锐、可靠、世界一流的供应链及品质项目,及在北美、欧洲和亚太地区之关键市场运营包括制造厂、销售办事处及设计中心在内的业务网络。
ON代理_安森美代理发布领先行业的超高电源抑制比(PSRR) LDO稳压器用于要求严苛的应用2018年6月5日—推动高能效创新的ON代理_安森美代理(ON代理SemicON代理ductor,美国纳斯达克上市代号:ON代理) 发布了一系列新的超低噪声低压降稳压器(LDO),具有业界最佳的电源抑制比(PSRR),能在噪声敏感的模拟设计中实现更好的性能。
新的NCP16x 系列,连同其汽车变体器件同时符合AEC-Q100车规的NCV81x,在各类应用中提供更好的性能,如汽车先进驾驶辅助系统(ADAS)图像传感器模块、便携式设备和包括802.11ad WiGig、蓝牙和WLAN的无线应用。
Abstract:ON Semiconductor (OnSemi) Company A-B-type main NCP2890 audio power amplifier performance characteristics and the basic working principle, give the design of the NCP2890 audio amplifier with a typical application circuit and design method.Key words: NCP2890; AB type; audio amplifier1 outlinesON Semiconductor NCP2890 are (OnSemi) has introduced cost-effective, full-featured audio Series Products of the first audio power amplifier, it is designed for mobile phone and PDA, such as battery-powered wireless devices designed for production, are one kinds of very good quality wireless applications A-B-type audio power amplifier can provide customers with superior audio performance. The device has a superior power supply rejection ratio (PSRR) and total harmonic distortion plus noise (THD + N) characteristics at the same time, a combination of external control gain characteristics and adjustable boot and shutdown time delay function, and have a "startup and shutdown "control circuit that can eliminate the opening and closing of such audio power amplifier generated audible noise, can be flexibly used in portable audio equipment design. NCP2890 allows lithium-ion or lithium polymer battery direct power supply, and thus obviates the extra Low Dropout Regulators (LDO), while reducing board space and reduces the overall cost. 2-chip structure and performance parametersTo meet the specific needs of the market, NCP2890 currently have Mi-crobump-9 (2.25mm2) and Micro-8 (14.7mm2) two different kinds of packaging forms, shown in Figure 1 with its pin diagram, all cited the function of the foot such as Table 1 NCP2890 include 671 internal transistor, MOS gate 1899, which has excellent audio performance, Table 2 give the NCP2890 the main performance parameters.Table 2NC2890 main performance parameters3 Application Circuit DesignFigure 2 shows a typical NCP2890 audio amplifier application circuit, Figure 2 can be seen from, NCP2890 external only used to adjust the gain of the two resistors, an input coupling capacitor, a bypass capacitor, such as a small number of components, therefore the external requirements devices extremely easy3.1 Working Principle circuitNCP2890 contains two identical power amplifiers, the input audio signal by the first power amplifier amplified the output from the OUTA. Voltage gain by external resistor Rf and Rin the ratio of the decision. The audio signal amplified by the gain of one and then the second power amplifier RP enlarge, and OUTB output. Because of OUTA and OUTB client-side audio output signal power equal to the size, phase contrast, and two outputs (OUTA and OUTB) DC the same static potential (Vp / 2), so, speakers can be connected directly to the client OUTA and OUTB , rather than increase the output coupling circuit. Two power amplifier output stage using PMOS and NMOS transistors by the special design. Normal conduction, the channel resistance of less than 0.6Ω, and thus its output waveform distortion is very small.General power amplifier in the open and turn off the process will produce the human ear can hear the noise, in order to eliminate audible noise, in-house designed NCP2890 noise elimination circuit. Boot time, add the switch control logic high end of bypass capacitor Cby on the DC voltage values begin to increase exponentially when the voltage value reaches the value of common-mode voltage (Vp / 2) when the beginning of output power (this process around 50ms); and shutdown, the control low-level termination, load to be connected to the grounding terminal, the output power to zero, when the DC circuit quiescentcurrent less than 100nA3.2 circuit element parametersRin and Rf amplifier used to set the closed-loop gain, NCP2890 in order to optimize the performance of the closed-loop gain amplifier should be set at a relatively low level, THD at this time the smallest, the largest signal to noise ratio, wide frequency response range. So in most cases, the closed-loop gain amplifier installed in general between 2 ~ 5, therefore, input resistance (Rin) values of D in the 20kΩ more appropriate, and Rf is used to adjust the closed-loop gain to control the output power. Input coupling capacitor Cin input amplifier used to isolate the DC voltage, Rin simultaneously with the formation of a high-pass filter, but it will affect the filter cutoff frequency threshold. In order to enable the low-frequency signals do not decay too great, in theory, Cin should take a larger value, while the larger capacitor charge and discharge time is long, therefore, required a longer period of time to make input to reach the static potential Vp / 2, which is easy to make the output noise generated boot. Therefore, in most cases, Cin values generally between 0.1 ~ 0.39μF more appropriate (Rin = 20kΩ pm). Bypass capacitor Cby are common-mode voltage (Vp / 2) of the filter, is to determine the length of the boot, boot noise reduction as a key component, in most cases, 1.0μF bypass capacitor Cby check more appropriate. R1 and R2 components of the partial pressure circuit chips used to produce the start voltage, general R1 value 100kΩ, designed according to voltage value to select the resistance R2, as long as the pressure so that the value is greater than 1.2V can be about 3.3 CautionWhen the circuit reaches the maximum output power Porms = 1.0W, Vp = 5.0V, RL = 8.0Ω when the load on the peak current of 500mA. In order to prevent the output load circuit when the output current is too large, set up chip output current detection circuit, it can be limited to a maximum output circuit 800mA. In this way, once the output current of over 800mA, the output side of the four MOS transistors will be gated off and no longer voltage output current. When the chip temperature exceeds 160 ℃, the internal amplifier will be shut down and stop working until the temperature is below 140 ℃, the internal amplifier to begin work to restart. Despite the NCP2890 contains an internal over-current and over-temperature protection circuit, but when in use, we must pay attention to power supply voltage should not exceed their limits, so as to avoid chip damage.摘要:介绍了安森美半导体(OnSemi)公司A-B类音频功率放大器NCP2890的主要性能特点和基本工作原理,给出了用NCP2890设计音频功放的典型应用电路和设计方法。
安森美半导体推出新的浪涌保护器件安森美半导体宣布推出新的低电容晶闸管浪涌保护器件(T SPD )系列,专为保护下一代高速电信设备而设计。
新器件杰出地平衡小尺寸和高浪涌能力,同时维持低电容和低泄漏,是先进电信产品的极佳组合。
N P 0080、N P 0120和N P0160低电容、低泄漏T SPD 器件采用节省空间的TS O P 25封装,保护数字用户线路(D S L )芯片组和线路驱动器。
虽然在正常电路工作期间它们本质上并不参与工作,但在发生浪涌和静电放电(ES D )事件时它们发挥极佳的电路保护性能。
它们在工作电压范围内拥有小于3皮法(pF )的固有低差分电容,能够排除高速数据线路上的信号失真。
在发生8x 20微秒(uS )浪涌事件时,具有大于50安(A )的电流承受能力。
它们通常在接入和客户端设备(CP E )的D S L 隔离变压器和D S L 线路驱动器之间用作第三级保护。
安森美半导体新的TSPD 系列还包括以高性价比S M B 封装的超低电容N P 2M C 系列。
具有低于30pF 的超低电容,用于额定电流100A 的器件,为设计人员在不同高速应用中提供替代气体放电管(GD T )的选择。
由于具有超低的关态电容,N P 2M C 器件为V D S2+和T 1�E1电路等高速设备提供微乎其微的信号失真。
低额定关态电容转化为极低的差分电容,为所应用的电压或频率提供极佳的线性度。
它们通常在D S L 隔离变压器的线路端用作次级保护器。
这些T SPD 器件对于开发互联网协定数字用户线路接入复用器(I P -D S LAM )、家庭网关和调制解调器、语音IP (V o I P )及其它设备等可靠的接入和客户端设备而言必不可少,帮助设计人员符合标准,并将对信号质量的影响减至最小。
希 雷创立达科技推出新一代微触发单向可控硅2008年8月11日,国内领先功率半导体器件、芯片和模块供应商无锡创立达科技有限公司宣布成功推出新一代微触发单向可控硅T SE 2P 4M 和TSE 405。
Product Datasheet Pb-free Status DescriptionNB7V52MMNG NB7V52M/D (223.0kB)Y ActiveNEW 1.8/2.5V Differential Data NB7V52MMNTXG NB7V52M/D (223.0kB)Y ActiveNEW 1.8/2.5V Differential Data NBSG53ABAHTBG NBSG53A/D (215.0kB)Y Intro Pending 2.5 V / 3.3 V Selectable D MC100E131FNG MC10E131/D (129.0kB)Y Active4-Bit D-Type Flip-Flop MC100E131FNR2G MC10E131/D (129.0kB)Y Active4-Bit D-Type Flip-Flop MC100E431FNR2G MC10E431/D (133.0kB)Y Active 5 V ECL 3-Bit Differentia MC100EL29DW MC100EL29/D (116.0kB N Active 5 V ECL Dual Differentia MC100EL29DWG MC100EL29/D (116.0kB Y Active 5 V ECL Dual Differentia MC100EL29DWR2MC100EL29/D (116.0kB N Active 5 V ECL Dual Differentia MC100EL29DWR2G MC100EL29/D (116.0kB Y Active 5 V ECL Dual Differentia MC100EL30DW MC100EL30/D (109.0kB N Active 5 V ECL Triple D Flip-Flo MC100EL30DWG MC100EL30/D (109.0kB Y Active 5 V ECL Triple D Flip-Flo MC100EL30DWR2MC100EL30/D (109.0kB N Active 5 V ECL Triple D Flip-Flo MC100EL30DWR2G MC100EL30/D (109.0kB Y Active 5 V ECL Triple D Flip-Flo MC100EL31D MC10EL31/D (131.0kB)N Active 5 V ECL D-Type Flip-Flo MC100EL31DG MC10EL31/D (131.0kB)Y Active 5 V ECL D-Type Flip-Flo MC100EL31DR2MC10EL31/D (131.0kB)N Active 5 V ECL D-Type Flip-Flo MC100EL31DR2G MC10EL31/D (131.0kB)Y Active 5 V ECL D-Type Flip-Flo MC100EL31DTG MC10EL31/D (131.0kB)Y Active 5 V ECL D-Type Flip-Flo MC100EL31DTR2G MC10EL31/D (131.0kB)Y Active 5 V ECL D-Type Flip-Flo MC100EL35DG MC10EL35/D (134.0kB)Y Active 5 V ECL JK Flip-FlopMC100EL35DR2G MC10EL35/D (134.0kB)Y Active 5 V ECL JK Flip-FlopMC100EL35DTG MC10EL35/D (134.0kB)Y Active 5 V ECL JK Flip-FlopMC100EL35DTR2G MC10EL35/D (134.0kB)Y Active 5 V ECL JK Flip-FlopMC100EL51DG MC10EL51/D (143.0kB)Y Active 5 V ECL Differential Cloc MC100EL51DR2MC10EL51/D (143.0kB)N Active 5 V ECL Differential Cloc MC100EL51DR2G MC10EL51/D (143.0kB)Y Active 5 V ECL Differential Cloc MC100EL51DTG MC10EL51/D (143.0kB)Y Active 5 V ECL Differential Cloc MC100EL51DTR2G MC10EL51/D (143.0kB)Y Active 5 V ECL Differential Cloc MC100EL52D MC10EL52/D (144.0kB)N Active 5 V ECL Differential Data MC100EL52DG MC10EL52/D (144.0kB)Y Active 5 V ECL Differential Data MC100EL52DR2G MC10EL52/D (144.0kB)Y Active 5 V ECL Differential Data MC100EL52DTG MC10EL52/D (144.0kB)Y Active 5 V ECL Differential Data MC100EL52DTR2G MC10EL52/D (144.0kB)Y Active 5 V ECL Differential Data MC100EP131FA MC10EP131/D (164.0kB N Active 3.3 V / 5 V ECL Quad D MC100EP131FAG MC10EP131/D (164.0kB Y Active 3.3 V / 5 V ECL Quad D MC100EP131FAR2MC10EP131/D (164.0kB N Active 3.3 V / 5 V ECL Quad D MC100EP131FAR2G MC10EP131/D (164.0kB Y Active 3.3 V / 5 V ECL Quad D MC100EP131MNG MC10EP131/D (164.0kB Y Active 3.3 V / 5 V ECL Quad D MC100EP131MNR4GMC10EP131/D (164.0kB Y Active 3.3 V / 5 V ECL Quad D MC100EP29DTG MC10EP29/D (128.0kB)Y Active 3.3 V / 5 V ECL Dual Diff MC100EP29DTR2G MC10EP29/D (128.0kB)Y Active 3.3 V / 5 V ECL Dual Diff MC100EP29MNG MC10EP29/D (128.0kB)Y Active 3.3 V / 5 V ECL Dual Diff MC100EP29MNTXG MC10EP29/D (128.0kB)Y Active 3.3 V / 5 V ECL Dual Diff MC100EP31D MC10EP31/D (139.0kB)N Active 3.3 V / 5 V ECL D Flip Fl MC100EP31DG MC10EP31/D (139.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC100EP31DR2G MC10EP31/D (139.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC100EP31DT MC10EP31/D (139.0kB)N Active 3.3 V / 5 V ECL D Flip Fl MC100EP31DTG MC10EP31/D (139.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC100EP31DTR2G MC10EP31/D (139.0kB)Y Active 3.3 V / 5 V ECL D Flip FlMC100EP31MNR4G MC10EP31/D (139.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC100EP35DG MC10EP35/D (137.0kB)Y Active 3.3 V / 5 V ECL JK Flip F MC100EP35DR2G MC10EP35/D (137.0kB)Y Active 3.3 V / 5 V ECL JK Flip F MC100EP35DTG MC10EP35/D (137.0kB)Y Active 3.3 V / 5 V ECL JK Flip F MC100EP35DTR2MC10EP35/D (137.0kB)N Active 3.3 V / 5 V ECL JK Flip F MC100EP35DTR2G MC10EP35/D (137.0kB)Y Active 3.3 V / 5 V ECL JK Flip F MC100EP35MNR4G MC10EP35/D (137.0kB)Y Active 3.3 V / 5 V ECL JK Flip F MC100EP51D MC10EP51/D (144.0kB)N Active 3.3 V / 5 V ECL D Flip Fl MC100EP51DG MC10EP51/D (144.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC100EP51DR2G MC10EP51/D (144.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC100EP51DT MC10EP51/D (144.0kB)N Active 3.3 V / 5 V ECL D Flip Fl MC100EP51DTG MC10EP51/D (144.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC100EP51DTR2G MC10EP51/D (144.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC100EP51MNR4G MC10EP51/D (144.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC100EP52D MC10EP52/D (152.0kB)N Active 3.3 V / 5 V ECL Different MC100EP52DG MC10EP52/D (152.0kB)Y Active 3.3 V / 5 V ECL Different MC100EP52DR2MC10EP52/D (152.0kB)N Active 3.3 V / 5 V ECL Different MC100EP52DR2G MC10EP52/D (152.0kB)Y Active 3.3 V / 5 V ECL Different MC100EP52DT MC10EP52/D (152.0kB)N Active 3.3 V / 5 V ECL Different MC100EP52DTG MC10EP52/D (152.0kB)Y Active 3.3 V / 5 V ECL Different MC100EP52DTR2G MC10EP52/D (152.0kB)Y Active 3.3 V / 5 V ECL Different MC100EP52MNR4G MC10EP52/D (152.0kB)Y Active 3.3 V / 5 V ECL Different MC100LVEL29DW MC100LVEL29/D (120.0N Active 3.3 V ECL Dual Different MC100LVEL29DWG MC100LVEL29/D (120.0Y Active 3.3 V ECL Dual Different MC100LVEL29DWR2MC100LVEL29/D (120.0N Active 3.3 V ECL Dual Different MC100LVEL29DWR2G MC100LVEL29/D (120.0Y Active 3.3 V ECL Dual Different MC100LVEL30DW MC100LVEL30/D (113.0N Active 3.3 V ECL Triple D-Type MC100LVEL30DWG MC100LVEL30/D (113.0Y Active 3.3 V ECL Triple D-Type MC100LVEL30DWR2MC100LVEL30/D (113.0N Active 3.3 V ECL Triple D-Type MC100LVEL30DWR2G MC100LVEL30/D (113.0Y Active 3.3 V ECL Triple D-Type MC100LVEL31DG MC100LVEL31/D (127.0Y Active 3.3 V ECL D-Type Flip-F MC100LVEL31DR2MC100LVEL31/D (127.0N Active 3.3 V ECL D-Type Flip-F MC100LVEL31DR2G MC100LVEL31/D (127.0Y Active 3.3 V ECL D-Type Flip-F MC100LVEL31DTG MC100LVEL31/D (127.0Y Active 3.3 V ECL D-Type Flip-F MC100LVEL31DTR2G MC100LVEL31/D (127.0Y Active 3.3 V ECL D-Type Flip-F MC100LVEL51D MC100LVEL51/D (128.0N Active 3.3 V ECL Differential Cl MC100LVEL51DG MC100LVEL51/D (128.0Y Active 3.3 V ECL Differential Cl MC100LVEL51DR2MC100LVEL51/D (128.0N Active 3.3 V ECL Differential Cl MC100LVEL51DR2G MC100LVEL51/D (128.0Y Active 3.3 V ECL Differential Cl MC100LVEL51DT MC100LVEL51/D (128.0N Active 3.3 V ECL Differential Cl MC100LVEL51DTG MC100LVEL51/D (128.0Y Active 3.3 V ECL Differential Cl MC100LVEL51DTR2G MC100LVEL51/D (128.0Y Active 3.3 V ECL Differential Cl MC100LVEL51MNR4G MC100LVEL51/D (128.0Y Active 3.3 V ECL Differential Cl MC10E131FNG MC10E131/D (129.0kB)Y Active 5 V ECL 4-Bit D-Type Fli MC10E131FNR2G MC10E131/D (129.0kB)Y Active 5 V ECL 4-Bit D-Type Fli MC10E431FNG MC10E431/D (133.0kB)Y Active 5 V ECL 3-Bit Differentia MC10E431FNR2G MC10E431/D (133.0kB)Y Active 5 V ECL 3-Bit Differentia MC10EL31D MC10EL31/D (131.0kB)N Active 5 V ECL D-Type Flip-Flo MC10EL31DG MC10EL31/D (131.0kB)Y Active 5 V ECL D-Type Flip-Flo MC10EL31DR2MC10EL31/D (131.0kB)N Active 5 V ECL D-Type Flip-Flo MC10EL31DR2G MC10EL31/D (131.0kB)Y Active 5 V ECL D-Type Flip-FloMC10EL31DTG MC10EL31/D (131.0kB)Y Active 5 V ECL D-Type Flip-Flo MC10EL31DTR2G MC10EL31/D (131.0kB)Y Active 5 V ECL D-Type Flip-Flo MC10EL35D MC10EL35/D (134.0kB)N Active 5 V ECL JK Flip-Flop MC10EL35DG MC10EL35/D (134.0kB)Y Active 5 V ECL JK Flip-Flop MC10EL35DR2G MC10EL35/D (134.0kB)Y Active 5 V ECL JK Flip-Flop MC10EL35DTG MC10EL35/D (134.0kB)Y Active 5 V ECL JK Flip-Flop MC10EL35DTR2G MC10EL35/D (134.0kB)Y Active 5 V ECL JK Flip-Flop MC10EL51D MC10EL51/D (143.0kB)N Active 5 V ECL Differential Cloc MC10EL51DG MC10EL51/D (143.0kB)Y Active 5 V ECL Differential Cloc MC10EL51DR2MC10EL51/D (143.0kB)N Active 5 V ECL Differential Cloc MC10EL51DR2G MC10EL51/D (143.0kB)Y Active 5 V ECL Differential Cloc MC10EL51DTG MC10EL51/D (143.0kB)Y Active 5 V ECL Differential Cloc MC10EL51DTR2G MC10EL51/D (143.0kB)Y Active 5 V ECL Differential Cloc MC10EL52D MC10EL52/D (144.0kB)N Active 5 V ECL Differential Dat MC10EL52DG MC10EL52/D (144.0kB)Y Active 5 V ECL Differential Dat MC10EL52DR2MC10EL52/D (144.0kB)N Active 5 V ECL Differential Dat MC10EL52DR2G MC10EL52/D (144.0kB)Y Active 5 V ECL Differential Dat MC10EL52DTG MC10EL52/D (144.0kB)Y Active 5 V ECL Differential Dat MC10EL52DTR2G MC10EL52/D (144.0kB)Y Active 5 V ECL Differential Dat MC10EP131FA MC10EP131/D (164.0kB N Active 3.3 V / 5 V ECL Quad D MC10EP131FAG MC10EP131/D (164.0kB Y Active 3.3 V / 5 V ECL Quad D MC10EP131FAR2MC10EP131/D (164.0kB N Active 3.3 V / 5 V ECL Quad D MC10EP131FAR2G MC10EP131/D (164.0kB Y Active 3.3 V / 5 V ECL Quad D MC10EP131MNG MC10EP131/D (164.0kB Y Active 3.3 V / 5 V ECL Quad D MC10EP131MNR4G MC10EP131/D (164.0kB Y Active 3.3 V / 5 V ECL Quad D MC10EP29DTG MC10EP29/D (128.0kB)Y Active 3.3 V / 5 V ECL Dual Diff MC10EP29DTR2G MC10EP29/D (128.0kB)Y Active 3.3 V / 5 V ECL Dual Diff MC10EP29MNG MC10EP29/D (128.0kB)Y Active 3.3 V / 5 V ECL Dual Diff MC10EP29MNTXG MC10EP29/D (128.0kB)Y Active 3.3 V / 5 V ECL Dual Diff MC10EP31D MC10EP31/D (139.0kB)N Active 3.3 V / 5 V ECL D Flip-Fl MC10EP31DG MC10EP31/D (139.0kB)Y Active 3.3 V / 5 V ECL D Flip-Fl MC10EP31DR2G MC10EP31/D (139.0kB)Y Active 3.3 V / 5 V ECL D Flip-Fl MC10EP31DTG MC10EP31/D (139.0kB)Y Active 3.3 V / 5 V ECL D Flip-Fl MC10EP31DTR2G MC10EP31/D (139.0kB)Y Active 3.3 V / 5 V ECL D Flip-Fl MC10EP35DG MC10EP35/D (137.0kB)Y Active 3.3 V / 5 V ECL JK Flip F MC10EP35DR2G MC10EP35/D (137.0kB)Y Active 3.3 V / 5 V ECL JK Flip F MC10EP35DTG MC10EP35/D (137.0kB)Y Active 3.3 V / 5 V ECL JK Flip F MC10EP35DTR2G MC10EP35/D (137.0kB)Y Active 3.3 V / 5 V ECL JK Flip F MC10EP51D MC10EP51/D (144.0kB)N Active 3.3 V / 5 V ECL D Flip Fl MC10EP51DG MC10EP51/D (144.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC10EP51DR2G MC10EP51/D (144.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC10EP51DT MC10EP51/D (144.0kB)N Active 3.3 V / 5 V ECL D Flip Fl MC10EP51DTG MC10EP51/D (144.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC10EP51DTR2G MC10EP51/D (144.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC10EP51MNR4G MC10EP51/D (144.0kB)Y Active 3.3 V / 5 V ECL D Flip Fl MC10EP52DG MC10EP52/D (152.0kB)Y Active 3.3 V / 5 V ECL Different MC10EP52DR2G MC10EP52/D (152.0kB)Y Active 3.3 V / 5 V ECL Different MC10EP52DT MC10EP52/D (152.0kB)N Active 3.3 V / 5 V ECL Different MC10EP52DTG MC10EP52/D (152.0kB)Y Active 3.3 V / 5 V ECL Different MC10EP52DTR2G MC10EP52/D (152.0kB)Y Active 3.3 V / 5 V ECL Different MC10EP52MNR4G MC10EP52/D (152.0kB)Y Active 3.3 V / 5 V ECL DifferentMC10H131FNG MC10H131/D (153.0kB)Y Active Dual Type D Master-Slav MC10H131FNR2G MC10H131/D (153.0kB)Y Active Dual Type D Master-Slav MC10H131MELG MC10H131/D (153.0kB)Y Active Dual Type D Master-Slav MC10H131MG MC10H131/D (153.0kB)Y Active Dual Type D Master-Slav MC10H131P MC10H131/D (153.0kB)N Active Dual Type D Master-Slav MC10H131PG MC10H131/D (153.0kB)Y Active Dual Type D Master-Slav MC10H135FNG MC10H135/D (154.0kB)Y Active Dual J-K Master-Slave F MC10H135FNR2G MC10H135/D (154.0kB)Y Active Dual J-K Master-Slave F MC10H135MG MC10H135/D (154.0kB)Y Active Dual J-K Master-Slave F MC10H135P MC10H135/D (154.0kB)N Active Dual J-K Master-Slave F MC10H135PG MC10H135/D (154.0kB)Y Active Dual J-K Master-Slave F MC10H176FNG MC10H176/D (153.0kB)Y Active Hex D-Type Master-Slav MC10H176FNR2G MC10H176/D (153.0kB)Y Active Hex D-Type Master-Slav MC10H176MELG MC10H176/D (153.0kB)Y Active Hex D-Type Master-Slav MC10H176MG MC10H176/D (153.0kB)Y Active Hex D-Type Master-Slav MC10H176PG MC10H176/D (153.0kB)Y Active Hex D-Type Master-Slav MC10H186FNG MC10H186/D (149.0kB)Y Active Hex D Master-Slave Flip-MC10H186FNR2G MC10H186/D (149.0kB)Y Active Hex D Master-Slave Flip-MC10H186P MC10H186/D (149.0kB)N Active Hex D Master-Slave Flip-MC10H186PG MC10H186/D (149.0kB)Y Active Hex D Master-Slave Flip-NB4L52MNG NB4L52/D (134.0kB)Y Active Differential D Flip-Flop w NB4L52MNR2G NB4L52/D (134.0kB)Y Active Differential D Flip-Flop w NBSG53AMNG NBSG53A/D (215.0kB)Y Active Selectable Differential D NBSG53AMNHTBG NBSG53A/D (215.0kB)Y Active 2.5 V / 3.3 V Selectable D NBSG53AMNR2G NBSG53A/D (215.0kB)Y Active Selectable Differential DType VCC Typ (V)fToggle Typ (MHz)tpd Typ (ns)tsu Min (ns) D-Type 1.8100000.1D-Type 1.8100000.1D-Type 2.5100000.2150.03D-Type511000.50.15D-Type511000.50.15D-Type511000.60.2D-Type511000.580D-Type511000.580D-Type511000.580D-Type511000.580D-Type512000.450.15D-Type512000.450.15D-Type512000.450.15D-Type512000.450.15D-Type528000.4750.15D-Type528000.4750.15D-Type528000.4750.15D-Type528000.4750.15D-Type528000.4750.15D-Type528000.4750.15JK-Type522000.5250.15JK-Type522000.5250.15JK-Type522000.5250.15JK-Type522000.5250.15D-Type528000.4750.15D-Type528000.4750.15D-Type528000.4750.15D-Type528000.4750.15D-Type528000.4750.15D-Type528000.3650.125D-Type528000.3650.125D-Type528000.3650.125D-Type528000.3650.125D-Type528000.3650.125D-Type 3.330000.460.12D-Type 3.330000.460.12D-Type 3.330000.460.12D-Type 3.330000.460.12D-Type 3.330000.460.12D-Type 3.330000.460.12D-Type 3.330000.420.1D-Type 3.330000.420.1D-Type 3.330000.420.1D-Type 3.330000.420.1D-Type 3.330000.340.1D-Type 3.330000.340.1D-Type 3.330000.340.1D-Type 3.330000.340.1D-Type 3.330000.340.1D-Type 3.330000.340.1D-Type 3.330000.340.1 JK-Type 3.330000.410.15 JK-Type 3.330000.410.15 JK-Type 3.330000.410.15 JK-Type 3.330000.410.15 JK-Type 3.330000.410.15 JK-Type 3.330000.410.15 D-Type 3.330000.370.1 D-Type 3.330000.370.1 D-Type 3.330000.370.1 D-Type 3.330000.370.1 D-Type 3.330000.370.1 D-Type 3.330000.370.1 D-Type 3.330000.370.1 D-Type 3.340000.330.05 D-Type 3.340000.330.05 D-Type 3.340000.330.05 D-Type 3.340000.330.05 D-Type 3.340000.330.05 D-Type 3.340000.330.05 D-Type 3.340000.330.05 D-Type 3.340000.330.05 D-Type 3.311000.580D-Type 3.311000.580D-Type 3.311000.580D-Type 3.311000.580D-Type 3.312000.450.15 D-Type 3.312000.450.15 D-Type 3.312000.450.15 D-Type 3.312000.450.15 D-Type 3.329000.4750.15 D-Type 3.329000.4750.15 D-Type 3.329000.4750.15 D-Type 3.329000.4750.15 D-Type 3.329000.4750.15 D-Type 3.328000.4750.15 D-Type 3.328000.4750.15 D-Type 3.328000.4750.15 D-Type 3.328000.4750.15 D-Type 3.328000.4750.15 D-Type 3.328000.4750.15 D-Type 3.328000.4750.15 D-Type 3.328000.4750.15 D-Type511000.50.15 D-Type511000.50.15 D-Type511000.60.2 D-Type511000.60.2 D-Type528000.4750.15 D-Type528000.4750.15 D-Type528000.4750.15 D-Type528000.4750.15D-Type528000.4750.15 D-Type528000.4750.15 JK-Type522000.5250.15 JK-Type522000.5250.15 JK-Type522000.5250.15 JK-Type522000.5250.15 JK-Type522000.5250.15 D-Type528000.4750.15 D-Type528000.4750.15 D-Type528000.4750.15 D-Type528000.4750.15 D-Type528000.4750.15 D-Type528000.4750.15 D-Type528000.3650.125 D-Type528000.3650.125 D-Type528000.3650.125 D-Type528000.3650.125 D-Type528000.3650.125 D-Type528000.3650.125 D-Type 3.330000.460.12 D-Type 3.330000.460.12 D-Type 3.330000.460.12 D-Type 3.330000.460.12 D-Type 3.330000.460.12 D-Type 3.330000.460.12 D-Type 3.330000.420.1D-Type 3.330000.420.1D-Type 3.330000.420.1D-Type 3.330000.420.1D-Type 3.330000.340.1D-Type 3.330000.340.1D-Type 3.330000.340.1D-Type 3.330000.340.1D-Type 3.330000.340.1 JK-Type 3.330000.410.15 JK-Type 3.330000.410.15 JK-Type 3.330000.410.15 JK-Type 3.330000.410.15 D-Type 3.330000.3750.1D-Type 3.330000.3750.1D-Type 3.330000.3750.1D-Type 3.330000.3750.1D-Type 3.330000.3750.1D-Type 3.330000.3750.1D-Type 3.330000.3750.1D-Type 3.340000.330.05 D-Type 3.340000.330.05 D-Type 3.340000.330.05 D-Type 3.340000.330.05 D-Type 3.340000.330.05 D-Type 3.340000.330.05D-Type-5.225010.7 D-Type-5.225010.7 D-Type-5.225010.7 D-Type-5.225010.7 D-Type-5.225010.7 D-Type-5.225010.7 JK-Type-5.2250 1.5 1.5 JK-Type-5.2250 1.5 1.5 JK-Type-5.2250 1.5 1.5 JK-Type-5.2250 1.5 1.5 JK-Type-5.2250 1.5 1.5 D-Type-5.2250 1.7 1.5 D-Type-5.2250 1.7 1.5 D-Type-5.2250 1.7 1.5 D-Type-5.2250 1.7 1.5 D-Type-5.2250 1.7 1.5 D-Type-5.2250 1.7 1.5 D-Type-5.2250 1.7 1.5 D-Type-5.2250 1.7 1.5 D-Type-5.2250 1.7 1.52.540000.330.12.540000.330.1 D-Type 2.5100000.2150.03 D-Type 2.5100000.2150.03 D-Type 2.5100000.2150.03th Min (ns)tJitter Typ (ps)tR & tF Max (ps)Package Price5016 PIN QFN, 3x3, 0.5P5016 PIN QFN, 3x3, 0.5P0.0250.56016 PIN FLIP CHIP BGA0.175148028 LEAD PLCC$7.3332 0.175148028 LEAD PLCC$7.3332 0.2165028 LEAD PLCC$7.3332 0.11550SOIC-20 WB$6.6665 0.11550SOIC-20 WB$6.6665 0.11550SOIC-20 WB$6.6665 0.11550SOIC-20 WB$6.6665 0.21550SOIC-20 WB$7.8931 0.21550SOIC-20 WB$7.8931 0.21550SOIC-20 WB$7.8931 0.21550SOIC-20 WB$7.8931 0.251350SOIC-8 Narrow Body$3.6666 0.251350SOIC-8 Narrow Body$3.6666 0.251350SOIC-8 Narrow Body$3.6666 0.251350SOIC-8 Narrow Body$3.6666$3.6666 0.251350TSSOP 8 3.0x3.0x0.95 m$3.6666 0.251350TSSOP 8 3.0x3.0x0.95 m0.251350SOIC-8 Narrow Body$3.5999 0.251350SOIC-8 Narrow Body$3.5999$3.5999 0.251350TSSOP 8 3.0x3.0x0.95 m$3.5999 0.251350TSSOP 8 3.0x3.0x0.95 m0.251350SOIC-8 Narrow Body$3.5999 0.251350SOIC-8 Narrow Body$3.5999 0.251350SOIC-8 Narrow Body$3.5999$3.5999 0.251350TSSOP 8 3.0x3.0x0.95 m0.251350TSSOP 8 3.0x3.0x0.95 m$3.5999 0.151350SOIC-8 Narrow Body$3.3333 0.151350SOIC-8 Narrow Body$3.3333 0.151350SOIC-8 Narrow Body$3.3333$3.3333 0.151350TSSOP 8 3.0x3.0x0.95 m$3.3333 0.151350TSSOP 8 3.0x3.0x0.95 m$12.8263 0.120.229032 LEAD LQFP 7x7, 0.8P$9.62 0.120.229032 LEAD LQFP 7x7, 0.8P$12.8263 0.120.229032 LEAD LQFP 7x7, 0.8P$9.62 0.120.229032 LEAD LQFP 7x7, 0.8P0.120.2290QFN32, 5x5, 0.5P, 3.1x3$9.62 0.120.2290QFN32, 5x5, 0.5P, 3.1x3$9.62 0.10.2300TSSOP 20 LEAD$9.62 0.10.2300TSSOP 20 LEAD$9.62 0.10.230020 PIN QFN, 4x4$9.62 0.10.230020 PIN QFN, 4x4$9.62 0.150.2200SOIC-8 Narrow Body$5.3332 0.150.2200SOIC-8 Narrow Body$4.00.150.2200SOIC-8 Narrow Body$4.0$5.3332 0.150.2200TSSOP 8 3.0x3.0x0.95 m$4.00.150.2200TSSOP 8 3.0x3.0x0.95 m$4.00.150.2200TSSOP 8 3.0x3.0x0.95 m0.150.2200DFN8 2.0x2.0x0.9mm, 0$4.0 0.150.2180SOIC-8 Narrow Body$5.8 0.150.2180SOIC-8 Narrow Body$5.8$5.8 0.150.2180TSSOP 8 3.0x3.0x0.95 m0.150.2180TSSOP 8 3.0x3.0x0.95 m$7.7331$5.8 0.150.2180TSSOP 8 3.0x3.0x0.95 m0.150.2180DFN8 2.0x2.0x0.9mm, 0$5.8 0.10.2180SOIC-8 Narrow Body$5.3332 0.10.2180SOIC-8 Narrow Body$4.0 0.10.2180SOIC-8 Narrow Body$4.0 0.10.2180TSSOP 8 3.0x3.0x0.95 m$5.3332$4.0 0.10.2180TSSOP 8 3.0x3.0x0.95 m0.10.2180TSSOP 8 3.0x3.0x0.95 m$4.0 0.10.2180DFN8 2.0x2.0x0.9mm, 0$4.0 00.2180SOIC-8 Narrow Body$4.7999 00.2180SOIC-8 Narrow Body$4.7999 00.2180SOIC-8 Narrow Body$4.7999 00.2180SOIC-8 Narrow Body$4.7999$4.7999 00.2180TSSOP 8 3.0x3.0x0.95 m 00.2180TSSOP 8 3.0x3.0x0.95 m$4.7999$4.7999 00.2180TSSOP 8 3.0x3.0x0.95 m 00.2180DFN8 2.0x2.0x0.9mm, 0$4.7999 0.11550SOIC-20 WB$6.6665 0.11550SOIC-20 WB$6.6665 0.11550SOIC-20 WB$6.6665 0.11550SOIC-20 WB$6.6665 0.21550SOIC-20 WB$7.8931 0.21550SOIC-20 WB$7.8931 0.21550SOIC-20 WB$7.8931 0.21550SOIC-20 WB$7.8931 0.251320SOIC-8 Narrow Body$3.6666 0.251320SOIC-8 Narrow Body$3.6666 0.251320SOIC-8 Narrow Body$3.6666$3.6666 0.251320TSSOP 8 3.0x3.0x0.95 m$3.6666 0.251320TSSOP 8 3.0x3.0x0.95 m0.251320SOIC-8 Narrow Body$3.9999 0.251320SOIC-8 Narrow Body$3.9999 0.251320SOIC-8 Narrow Body$3.9999 0.251320SOIC-8 Narrow Body$3.9999$3.9999 0.251320TSSOP 8 3.0x3.0x0.95 m$3.9999 0.251320TSSOP 8 3.0x3.0x0.95 m$3.9999 0.251320TSSOP 8 3.0x3.0x0.95 m0.251320DFN8 2.0x2.0x0.9mm, 0$3.9999 0.175148028 LEAD PLCC$7.3332 0.175148028 LEAD PLCC$7.3332 0.2165028 LEAD PLCC$7.3332 0.2165028 LEAD PLCC$7.3332 0.251350SOIC-8 Narrow Body$3.6666 0.251350SOIC-8 Narrow Body$3.6666 0.251350SOIC-8 Narrow Body$3.6666 0.251350SOIC-8 Narrow Body$3.6666$3.6666 0.251350TSSOP 8 3.0x3.0x0.95 m$3.6666 0.251350TSSOP 8 3.0x3.0x0.95 m0.251350SOIC-8 Narrow Body$3.5999 0.251350SOIC-8 Narrow Body$3.5999 0.251350SOIC-8 Narrow Body$3.5999$3.5999 0.251350TSSOP 8 3.0x3.0x0.95 m$3.5999 0.251350TSSOP 8 3.0x3.0x0.95 m0.251350SOIC-8 Narrow Body$3.5999 0.251350SOIC-8 Narrow Body$3.5999 0.251350SOIC-8 Narrow Body$3.5999 0.251350SOIC-8 Narrow Body$3.5999$3.5999 0.251350TSSOP 8 3.0x3.0x0.95 m$3.5999 0.251350TSSOP 8 3.0x3.0x0.95 m0.151350SOIC-8 Narrow Body$3.3333 0.151350SOIC-8 Narrow Body$3.3333 0.151350SOIC-8 Narrow Body$3.3333 0.151350SOIC-8 Narrow Body$3.3333$3.3333 0.151350TSSOP 8 3.0x3.0x0.95 m0.151350TSSOP 8 3.0x3.0x0.95 m$3.3333$12.8263 0.120.229032 LEAD LQFP 7x7, 0.8P$9.62 0.120.229032 LEAD LQFP 7x7, 0.8P$12.8263 0.120.229032 LEAD LQFP 7x7, 0.8P$9.62 0.120.229032 LEAD LQFP 7x7, 0.8P0.120.2290QFN32, 5x5, 0.5P, 3.1x3$9.62 0.120.2290QFN32, 5x5, 0.5P, 3.1x3$9.62 0.10.2300TSSOP 20 LEAD$9.62 0.10.2300TSSOP 20 LEAD$9.62 0.10.230020 PIN QFN, 4x4$9.62 0.10.230020 PIN QFN, 4x4$9.62 0.150.2200SOIC-8 Narrow Body$5.3332 0.150.2200SOIC-8 Narrow Body$4.00.150.2200SOIC-8 Narrow Body$4.0$4.00.150.2200TSSOP 8 3.0x3.0x0.95 m$4.00.150.2200TSSOP 8 3.0x3.0x0.95 m0.150.2180SOIC-8 Narrow Body$5.80.150.2180SOIC-8 Narrow Body$5.80.150.2180TSSOP 8 3.0x3.0x0.95 m$5.8$5.80.150.2180TSSOP 8 3.0x3.0x0.95 m0.10.2180SOIC-8 Narrow Body$4.7999 0.10.2180SOIC-8 Narrow Body$4.7999 0.10.2180SOIC-8 Narrow Body$4.7999$4.7999 0.10.2180TSSOP 8 3.0x3.0x0.95 m$4.7999 0.10.2180TSSOP 8 3.0x3.0x0.95 m$4.7999 0.10.2180TSSOP 8 3.0x3.0x0.95 m0.10.2180DFN8 2.0x2.0x0.9mm, 0$4.7999 01180SOIC-8 Narrow Body$4.7999 01180SOIC-8 Narrow Body$4.7999$4.7999 01180TSSOP 8 3.0x3.0x0.95 m$4.7999 01180TSSOP 8 3.0x3.0x0.95 m 01180TSSOP 8 3.0x3.0x0.95 m$4.7999 01180DFN8 2.0x2.0x0.9mm, 0$4.79990.8200020 LEAD PLLC$4.3466 0.8200020 LEAD PLLC$4.3466 0.82000SOEIAJ-16$4.3466 0.82000SOEIAJ-16$4.3466 0.82000PDIP-16$3.7199 0.82000PDIP-16$3.7199 1220020 LEAD PLLC$4.1332 1220020 LEAD PLLC$4.1332 12200SOEIAJ-16$5.0799 12200PDIP-16$4.7865 12200PDIP-16$4.7865 0.9190020 LEAD PLLC$6.2665 0.9190020 LEAD PLLC$6.2665 0.91900SOEIAJ-16$6.2665 0.91900SOEIAJ-16$6.2665 0.91900PDIP-16$5.9732 1260020 LEAD PLLC$9.0398 ******* LEAD PLLC$9.0398 12600PDIP-16$9.0398 12600PDIP-16$9.0398 0.05120016 PIN QFN, 3x3, 0.5P$5.0 0.05120016 PIN QFN, 3x3, 0.5P$5.0 0.0250.56016 PIN QFN, 3x3, 0.5P$24.72 0.0250.56016 PIN QFN, 3x3, 0.5P$24.72 0.0250.56016 PIN QFN, 3x3, 0.5P$24.72。