Aeonsemi Unveils Nemo™ Platform: Revolutionizing In-Vehicle Networking with Multi-Gigabit Ethernet
Santa Clara, CA and Nanjing, China, May 8, 2024 – (BUSINESS WIRE) – Aeonsemi, a leader in high-speed Ethernet ICs, is entering the automotive market with the introduction of Nemo™, industry’s most complete IEEE 802.3ch compliant multi-Gigabit Ethernet chipset for In-Vehicle Networking (IVN) applications. Nemo™ features the world’s first automotive switch with integrated 10GBASE-T1 PHYs and the industry’s lowest power 10GBASE-T1 PHYs for symmetric and asymmetric communications. Providing end-to-end solutions, the chipset comprises a CSI-2 serializer bridge, a CSI-2 deserializer hub, a single/dual-port PHY, and a 6-port zonal switch.
Ethernet has emerged as the technology of choice in automotive networking. It enables zonal Electrical/Electronic (E/E) architecture leading to significant performance improvements, wiring harness weight reduction and cost savings. However, high-speed sensor links have remained separate from the Ethernet IVN. They rely on proprietary point-to-point SerDes technology due to the lack of high-speed, low-power, cost-effective asymmetrical Ethernet solutions. The Nemo™ chipset bridges this gap by offering the industry’s lowest power 10G/5G/2.5G symmetric and asymmetric connectivity in Energy Efficient Ethernet (EEE) mode over 15 meters of single-twisted-pair or coaxial cable. The AS30110 serializer consumes less than 300mW with a 10Gbps payload and less than 200mW with a 5Gbps payload. The AS30010/20 single/dual-port PHYs consume under 800mW power per port in symmetric 10Gbps mode.
“With the increased adoption of Advanced Driver Assistance Systems (ADAS) and Full Self-Driving (FSD), the market for sensors, including cameras, radar, and LiDAR, is expected to grow at a 14% Compound Annual Growth Rate (CAGR) to $27 billion by 2028”, explains Pierrick Boulay, Senior Technology & Market Analyst, Automotive Semiconductors at Yole Group. Ethernet-based sensors can significantly reduce automotive sensing system costs as more sensors are added to each vehicle.
OEMs and Tier1s seek sensor link solutions that are based on an open standard such as IEEE 802.3ch, with an interoperable multi-vendor ecosystem. "Contrary to the misconception that Ethernet PHYs are not power-efficient for asymmetric sensor links, our Ethernet camera solution is the lowest power among all available serializers at comparable speeds. It comes in a compact 5mm x 5mm package and supports referenceless operation to further reduce the Bill of Materials (BOM) cost," stated Yunteng Huang, CEO of Aeonsemi. "The Nemo™ chipset marks a significant milestone in IVN evolution. By enabling seamless end-to-end integration of automotive sensors into a unified Ethernet network, we streamline the software and hardware of the ‘datacenter on wheels’ for tomorrow’s intelligent vehicles."
Key Features of the Nemo™ Chipset:
AS30110: CSI-2 serializer bridge with the industry’s lowest power of under 300mW at 10Gbps. It supports Power over Coaxial (PoC) with a 50% BOM reduction.
AS30240: Quad-port aggregation deserializer hub with built-in Time-Sensitive Networking (TSN) functions.
AS30010/20: Single/dual-port 10GBASE-T1 PHY with under 800mW power consumption per port in 10Gbps full duplex symmetrical mode.
AS30340: 6-port Ethernet switch for zonal aggregation. It comes with 4 integrated MGBASE-T1 PHYs and has 40Gbps switching bandwidth.
Designed on TSMC’s automotive process node, the Nemo™ chipset is AEC-Q100 grade 2 and ISO26262 ASIL-B compliant. Evaluation kits and samples are available to selected customers, and an end-to-end live demo will be showcased at AutoSens in Detroit, May 21-23.
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本文由walkonair转载自Aeonsemi Official Website,原文标题为:Aeonsemi Unveils Nemo™ Platform: Revolutionizing In-Vehicle Networking with Multi-Gigabit Ethernet,本站所有转载文章系出于传递更多信息之目的,且明确注明来源,不希望被转载的媒体或个人可与我们联系,我们将立即进行删除处理。
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南京益昂(Aeonsemi)工业级纯硅振荡器选型指南
目录- 纯硅振荡器
型号- 5003DAA70M65600ABIR,5001DAC100M0000ABIR,5001DAC100M0000ABIT,5003DAA70M65600ABIT,5001DAC200M0000BBIR,5001HAC148M5000BBIT,5001HAC33M33333BBIR,5001HAC148M5000BBIR,5001IAC148M5000ABIR,5001HAC33M33333BBIT,5001DAC148M5000ABI,5001IAC148M5000ABIT,5001AAC155M5200ABIR,5001IAC33M33333ABIR,5001DAC200M0000BBIT,5001AAC155M5200ABIT,5001AAC212M5000ABIR,5001AAC155M5200BBI,5001AAC212M5000ABIT,5001IAC50M00000BBIR,5001DAC200M0000ABI,5001AAC125M0000ABI,5001AAC156M2500ABIT,5001IAC25M00000BBIR,5001AAC100M0000BBIT,5001HAC33M33333BBI,5001AAC100M0000BBIR,5001IAC50M00000BBIT,5001DAC148M5000ABIT,5001HAC148M5000BBI,5001DAC150M0000BBI,5001FAC100M0000BBIT,5001AAC200M0000BBIT,5001FAC100M0000BBIR,5001AAC156M2500ABIR,5001AAC200M0000BBIR,5001DAC100M0000BBI,5001DAC148M5000ABIR,5001AAC100M0000ABI,5001DAC148M5000BBI,5001IAC25M00000BBIT,5001AAC155M5200ABI,5001DAC150M0000ABIR,5001FAC100M0000ABIR,5001DAC150M0000ABIT,5001FAC100M0000ABIT,5001DAC100M0000BBIT,5001AAC125M0000BBI,5001DAC200M0000BBI,5001IAC33M33333ABI,5001AAC125M0000BBIT,5001AAC155M5200BBIT,5001AAC125M0000BBIR,5001AAC155M5200BBIR,5001HAC25M00000BBI,5001AAC212M5000BBIT,5001AAC212M5000BBIR,5001DAC100M0000BBIR,5001HAC148M5000ABI,5001IAC50M00000ABIR,5001AAC100M0000BBI,AS5003,5001IAC50M00000ABIT,5001IAC33M33333BBIT,5001DAC148M5000BBIT,5001AAC212M5000BBI,5001AAC200M0000ABIR,5001AAC200M0000ABIT,AS5001,5001HAC25M00000ABIT,5001IAC50M00000BBI,5001DAC148M5000BBIR,5001AAC200M0000ABI,5001AAC156M2500ABI,5001HAC25M00000ABIR,5001IAC33M33333BBI,5001DAC200M0000ABIR,5001IAC148M5000BBIR,5001HAC148M5000ABIT,5001HAC148M5000ABIR,5001HAC33M33333ABIR,5001IAC148M5000BBIT,5001IAC25M00000ABI,5003DAA70M65600ABI,5001HAC25M00000ABI,5001IAC33M33333BBIR,5001DAC200M0000ABIT,5001DAC150M0000BBIR,5001FAC100M0000BBI,5001DAC150M0000BBIT,5001IAC148M5000BBI,5001HAC25M00000BBIR,5001HAC25M00000BBIT,5001AAC156M2500BBIT,5001IAC25M00000ABIR,5001AAC100M0000ABIT,5003DAA70M65600BBI,5001AAC100M0000ABIR,5001AAC125M0000ABIR,5001HAC33M33333ABIT,5001AAC212M5000ABI,5001AAC125M0000ABIT,5001IAC50M00000ABI,5001AAC156M2500BBIR,5001AAC200M0000BBI,5003DAA70M65600BBIR,5001AAC156M2500BBI,5003DAA70M65600BBIT,5001HAC33M33333ABI,5001IAC33M33333ABIT,5001DAC150M0000ABI,5001IAC25M00000BBI,5001FAC100M0000ABI,5001IAC25M00000ABIT,5001DAC100M0000ABI,5001IAC148M5000ABI
南京益昂可编程硅振选型表
固定频率晶振,引脚可选晶振,I²C可编程晶振,CMOS晶振,0.375~333MHz任意频点,抖动低于350fs,任意的差分和单端输出格式,4pin 3225,6pin 3225 及5032;
产品型号
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品类
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频率(MHz)
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输出格式
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封装尺寸(Package)
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总稳定度
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电源(V)
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工作温度(°C)
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511AAA10M00000BBI
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CMOS晶振
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10MHz
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CMOS
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3225
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50ppm
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1.8V/2.5V
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-40°C to 85°C
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选型表 - 南京益昂 立即选型
【应用】156.25MHZ差分信号晶体振荡器用于400G高速光模块,频率稳定度达±50ppm
南京益昂推出的5001AAA156M2500BBI 156.25MHZ差分信号晶体振荡器(LVDS)具有较强的抗干扰能力,可以提供10kHz~350MHz的频率输出。电源电压的典型VCC值为3.3V。可以满足大多数温度环境,在高速光模块中已大量使用。
应用方案 发布时间 : 2021-09-23
【选型】FTTR以太网时钟用晶振可选用5001AAA125M0000BBE,全温区频率稳定度达35ppm
在FTTR以太网时钟电路设计晶振要求3225封装、精度不低于±50ppm、工作温度-40至105℃、频点125MHz等,推荐南京益昂 5001AAA125M0000BBE,在满足客户基本需求的同时具有更高的频率稳定度。
器件选型 发布时间 : 2023-03-21
【选型】25MHz有源晶振511AAA25M00000BBI用于数据采集卡,常温频偏低至±20ppm
数据采集是指将传感器或天线采集到的模拟或数字信号进行数据分析、处理。目前,数据采集技术已经广泛应用于通信、导航、雷达等领域。本文主要介绍南京益昂25MHz有源晶振用于数据采集卡,为采集系统提供时钟信号。
器件选型 发布时间 : 2022-12-17
【应用】国产3225封装可编程硅振助力FTTR网关设计,单端输出频点125MHz
某客户在电路设计方案选用了紫光同创的FPGA,外部需挂一颗125M频点的高频晶振,要求该时钟芯片在整个工作范围内可以保持较低的抖动特性和整体频率稳定度,封装为常规的3225封装即可,本文推荐国产南京益昂可编程硅振511BAA125M0000BBE。
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【应用】交换机设计选用南京益昂有源硅晶振AS5001,具有支持多种输出格式、抖动低至350fs等优势
交换机中众多芯片需要提供时钟频率才能正常工作,所以推荐南京益昂有源晶振AS5001作为系统提供输入频率。优势:可选频率范围:10kHz~350MHz;抖动低至350fs;稳定度±12ppm,±35ppm等。
应用方案 发布时间 : 2022-10-27
【产品】AS5000/AS510可编程硅振,支持频率编程,可Pin to Pin传统石英晶振
南京益昂通信技术有限公司推出的可编程硅振从根源上解决了由于二级供应商产能紧张导致供应不足的问题,AS5000(差分)及AS510(单端)系列产品采用纯电路振荡源,内部无需石英晶体、陶瓷底座或者MEMS部件,仅需单片IC就可以实现需要频率的生成。
新产品 发布时间 : 2021-09-10
【应用】国产晶振5003AC01209ABI为数字示波器提供时钟信号,支持10kHz至350MHz差分输出
数字示波器,早期取样率低、存在较大死区时间、屏幕刷新率低等较大改善,以前难以观察的调制信号、通讯眼图、视频信号等复合信号越来越容易观察。今天介绍国产南京益昂时钟芯片5003AC01209ABI为数字示波器提供时钟信号。
应用方案 发布时间 : 2023-03-28
【选型】南京益昂采用3225封装的晶振用于FTTR PON时钟电路,全温区频率稳定度可达35ppm
在某FTTR产品设计中PON时钟电路须选用一晶振。根据需求,本文推荐南京益昂推出的511BAA155M5200BBE,具有更高的频率稳定度:全温区可达35ppm;适配3.3/2.5/1.8V多种供电电压;采用3225封装,-40℃到105℃宽温范围。
器件选型 发布时间 : 2023-02-15
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