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绿色环保的时钟振荡器FN1200037专用于光纤通道2023-02-13
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AST3TQ-26.00MHZ-2-T温补晶振具备超高的稳定性能和良好的相位噪声2023-02-10
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低相位噪声温补晶振ECS-TXO-32CSMV-260-BN-TR用于全球定位系统2022-10-24
ECS晶振ECS-TXO-32CSMV MultiVolt™ 削波正弦波紧密稳定性TCXO允许客户将同一设备用于多种设计。温度补偿晶振在-40℃至+85℃下提供±0.5ppm的超严格频率稳定性选项,并具有MultiVolt功能。这允许用户在许多设计中使用相同的设备,从而减少资格要求和库存。CSMV系列在-40℃至+85℃范围内的±0.5ppm稳定性使其成为精密应用的高性价比解决方案。ECS-TXO-32CSMV限幅正弦波SMD TCXO MultiVolt 容量为1.7V至3.465V.采用3.2×2.5×1.2毫米陶瓷封装,非常适合稳定性至关重要的便携式无线应用。
ECS-TXO-32CSMV-260-BN-TR特征:
小体积晶振尺寸:3.2x2.5毫米四脚贴片晶振
MulitVolt™ 兼容 1.8V、2.5V或3.3V电源电压
频率范围:10MHz至52MHz
削波正弦波输出
±0.5ppm至±2.5ppm频率稳定性
10kHz偏移至145dBc/Hz时的低相位噪声
温度范围扩展至-40℃至+85℃
应用:全球定位系统,WiMAX,无线局域网,物联网,可穿戴设备
低相位噪声温补晶振ECS-TXO-32CSMV-260-BN-TR用于全球定位系统
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小型的温度补偿晶体振荡器532L25DT26M0000是物联网和IIoT必然之选2022-10-24
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编码ABM8AIG-16.000MHZ-12-2-T3是一款3225mm四脚无源晶振专属于激光雷达2022-10-22
编码ABM8AIG-16.000MHZ-12-2-T3是一款3225mm四脚无源晶振专属于激光雷达,美国Abracon晶振公司作为领先者,一直走在技术的最前沿,通过多年的拼搏,拥有先进的生产技术以及高端的生产设备,并针对市场推出高性价比的无源晶振,3225mm四脚贴片晶振,编码ABM8AIG-16.000MHZ-12-2-T3,AEC-Q200合格,汽车等级1:-40°C至+125°C,汽车等级0:-40°C至+150°C(可根据要求提供),TS16949生产线认证,可根据要求提供PPAP,密封陶瓷包装,符合RoHS/RoHS II,无铅,信息娱乐系统,无钥匙进入和启动,GPS和导航,舒适控制ADAS(高级驾驶辅助系统),车对车通信,激光雷达(光探测和测距)车载网络,动力总成和驱动控制,电源控制和转换,工业控制与自动化。详情>> -
LVDS低抖动振荡器ECX2-LMV-3CN-100.000-TR适用于千兆以太网2022-10-22
ECS晶振ECX2-LMV MultiVolt™ LVDS低抖动振荡器在2.375V至3.63V低于50fs的频率下以156.250MHz运行。
具有LVDS输出的差分晶振ECX2-LMV系列,编码ECX2-LMV-3CN-156.250-TR,低抖动MultiVolt振荡器,小体积晶振尺寸3.2mmx2.5mmx0.9mm(LWH) 封装六脚贴片晶振。这些器件具有24mA(最大值)的低功耗和同类最佳的集成RMS相位抖动,(12kHz至20MHz),在156.250MHz时低于50fs。ECX2-LMV的工作电源电压范围为2.375V至3.63V,在-40℃至+85℃的工作温度范围内具有±25ppm的稳定性。
LVDS低抖动振荡器ECX2-LMV-3CN-100.000-TR适用于千兆以太网
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功率优化的MEMS振荡器AMPMAGD-18.0000T延长电池寿命并提高耐用性2022-10-21
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ABS07-120-32.768KHZ-T小封装的石英晶体很适合智能手机2022-10-21
ABS07-120-32.768KHZ-T小封装的石英晶体很适合智能手机,The ABS07 series is the perfect solution for time management in RTC circuits. Our high-demand series of tuning fork crystals are low in power consumption preserving battery life in a wide range of applications.
The low frequency in small size SMD and 0.9mm height is ideal for high density circuit boards. The product's seam sealed ceramic package offers excellent environmental & heat resistance and is applicable for wide range in communication & measuring equipment. Other applications include commercial & Industrial applications, wireless communications, PDA, and Smartphone.
Feature
Low frequency in small size SMD
0.9mm height ideal for high density circuit boards
Seam sealed ceramic package offers excellent environmental & heat resistance
Extended Temperature -55°C to +125°C for industrial applications
Applications
Smart Wearables
Commercial & Industrial Applications
Wireless Communications
PDA & Smartphones
ABS07系列是RTC 电路中时间管理的完美解决方案。编码ABS07-120-32.768KHZ-T是 一款3215mm贴片型无源晶振,32.768KHZ晶振,我们高要求的音叉晶体系列功耗低,可在广泛的应用中保持电池寿命。
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编码ECS-3525-120-B-TR超小型SMD振荡器是高密度应用的理想选择2022-10-20
编码ECS-3525-120-B-TR超小型SMD振荡器是高密度应用的理想选择,When the discussion of oscillators comes up, the same question will arise. What is the choice for performance in critical applications, MEMS (Micro-Electro-Mechanical Systems) or quartz-based oscillators? MEMS-based oscillators have been available on the market since 2005. In the last 15+ years, a handful of companies have developed MEMS-based oscillators. Today, only a few remain and the leading MEMS-based oscillator manufacturer accounts for around 1% of the total timing market. Many frequency control manufacturers private label from both companies, with the exception of ECS who does not see any value in the practice.
When selecting the oscillator for your electronic devices or communications equipment, some of the timing considerations you need to think about are: system performance, system clocking, signal quality and reference signal sources. These are the critical parameters that will decide the performance level of your product.
You may have seen another video from a MEMS manufacturer comparing MEMS oscillators to stand alone quartz crystals. It is proven that any oscillator be it quartz, SAW, ceramic, or MEMS will always outperform any standalone resonator. So, a comparison of an oscillator to a crystal is not a true test of the oscillator’s performance. In this side by side comparison, we will look at and directly compare a quartz-based oscillator with a MEMS oscillator.
当讨论振荡器时,会出现同样的问题。关键应用、MEMS(微机电系统)或石英晶体振荡器的性能选择是什么?自 2005 年以来,基于 MEMS 的振荡器已经上市。在过去 15 年多的时间里,少数公司开发了基于 MEMS 的振荡器。如今,只剩下少数几家,领先的基于 MEMS 的振荡器制造商约占整个时钟市场的 1%。两家公司的许多频率控制制造商都是自有品牌,但 ECS 除外,ECS 在实践中没有任何价值。
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为何这款无源晶振ABLS-LR-24.000MHZ-T能得到无线模块的青睐?2022-10-19
为何这款无源晶振ABLS-LR-24.000MHZ-T能得到无线模块的青睐?There are four main sources of heat generation from inductor losses when operating in an application.
They can be categorized into two groups referred to as copper losses and core losses.
1. Copper losses – these are losses primarily due to the inherent DC resistance (DCR) of the inductor’s wire. The wire has a known DC resistance which is a function of the wire length and the cross-sectional area of the wire (aka gauge). The DCR parameter can be found in all the Abracon inductor’s datasheets.
The power dissipated from the effects of the DCR are:
There is, however, a frequency component to copper loss due to what is called the skin effect and
proximity effect. The skin effect is where the electrons traveling through a conductor’s magnetic field are forced towards the outside ‘skin’ of the wire. As frequency increases, the skin effect strengthens causing AC resistance to increase.
The proximity effect further reduces current (increases resistance) due to magnetic fields of adjacent wires within the coil. Inductor coils with more turns and tightly packed windings will be affected greater by the proximity effect. Power dissipation from these AC effects is calculated by taking the RMS value of only the change in current seen by the inductor (sometimes called ripple current), squaring the RMS value and multiplying by the equivalent AC resistance.
AC resistance (ACR) is a difficult parameter to document due to its dependency on so many factors.
Abracon suggests that designers use an empirical method of measuring the copper loss from AC sources like the skin and proximity effects.
在应用中运行时,电感损耗产生的热量主要有四种来源。
它们可以分为两类,称为铜损失和芯损失。
1. 铜损耗——这些损耗主要是由于电感导线的固有直流电阻(DCR)造成的。导线有一个已知的直流电阻,它是导线长度和导线截面积的函数(又称量规)。而石英晶振低损耗恰好能够填补,DCR参数可以在所有Abracon电感器的数据表中找到。
从DCR的效果中耗散的能量是:
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新闻资讯

IQD推出IQXO-951可变电源电压时钟振荡器
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IQD推出IQXO-951可变电源电压时钟振荡器
IQXO-951是IQD品牌针对性优化升级的工业级可变电源电压,超低功耗标准时钟振荡器(SPXO),专为电池供电,电压动态浮动,多电压混合架构,高密度集成的智能硬件场景量身打造,精准填补传统固定电压晶振的市场空白.市面上常规有源晶振电压适配固化,设备电池电压回落,供电小幅波动,电路电压切换时,晶振工作状态极易失稳,导致系统时钟漂移,联网异常,定时失效,研发人员需针对不同电压场景反复选型,改板调试,大幅增加研发周期与量产成本.
IQXO-951系列突破传统电压桎梏,实现超宽电压自适应工作模式,无需硬件改板,无需电路稳压适配,可兼容全主流供电体系.同时搭载IQD专利低功耗控制技术,在保障高稳定时序输出的前提下,将工作功耗压缩至行业极致水准,搭配多规格微型贴片封装,完美适配消费电子,物联网传感,便携工控,野外监测等多元场景,是现阶段解决宽压工况时序不稳,设备续航不足,选型繁琐问题的最优解决方案.
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