首页 / 百科
MAX2051 Highest linearity, up/
2009-05-29 00:00:00

MAX2051 Highest linearity, up/downconverting, 850MHz to 1550MHz SiGe mixer delivers unparalleled spurious intermodulation rejection
Unparalleled linearity and suppression over the 50MHz to 1000MHz IF bandwidth.
SUNNYVALE, CA—May 28, 2009—Maxim Integrated Products (NASDAQ: MXIM) introduces the MAX2051, the industry's highest performance, fully integrated, 815MHz to 1550MHz SiGe passive mixer. Designed specifically for multicarrier cable head-end downstream video, cable modem termination systems (CMTS), video-on-demand and DOCSIS®-compliant edge QAM modulation, and wireless-infrastructure applications, the MAX2051 delivers an unparalleled combination of linearity and spurious suppression over an exceptionally wide IF bandwidth of 50MHz to 1000MHz. When configured as a downconverter, this single IC provides 35dBm of IIP3, 24dBm of IP1dB, 7.4dB of conversion loss, and a 7.8dB noise figure. In addition, it exhibits outstanding levels of 2 x 1, 2 x 2, and 3 x 3 spurious suppression, with typical values of 88dBc, 79dBc, and 101dBc (with a -14dBm input level), respectively, over the entire 50MHz to 1000MHz IF band. Its high linearity and excellent spurious suppression are critical for ensuring DOCSIS-compliant transmission into the 50MHz to 1000MHz spectrum in cable head-end systems.
As an upconverter, the MAX2051 delivers equally impressive performance with 33.4dBm of IIP3, a low conversion loss of only 7.5dB, and better than 61dBc of LO ±2IF and 78dBc of LO ±3IF suppression. This device is ideal for all point-to-point and point-to-multipoint microwave and fixed broadband wireless-access base-station applications, which require first IF to second IF upconversion stages covering the 850MHz to 1550MHz band.
Maxim's proprietary SiGe process enables the MAX2051 to integrate a state-of-the-art, double-balanced mixer core with an LO amplifier, two baluns, plus dozens of discrete components—all into one monolithic device. When compared to the closest competing solution, the MAX2051 reduces the total board space by 72%, and reduces the discrete part count by 25%. The device's outstanding spurious performance also eases the filtering requirements of close-in harmonics, thus enabling simpler, smaller, and more cost-effective filter designs.
To complement the mixer's exceptionally wide IF range, the MAX2051 includes a similarly wide-range LO buffer circuit that is optimized for high-side LO injection architectures covering the 1200MHz to 2250MHz frequency spectrum. The on-board 0dBm drive LO buffer provides ±3dB drive-variance control, thus ensuring stable gain, NF, and IIP3 performance over temperature, supply, and input power. The MAX2051 also has excellent gain-variation performance of 0.01dB/°C over the -40°C to +85°C industrial temperature range.
The MAX2051 is packaged in a compact, 5mm x 5mm, lead-free, 20-pin TQFN package. Prices start at $14.98 (1000-up, FOB USA).
最新内容
- Efuse是什么?聊聊芯片级的eFuse
- 英飞凌推出XENSIV胎压传感器,满足智能胎压监测系统的需
- FPGA学习笔记:逻辑单元的基本结构
- 创造多样信号的万能工具:函数/任意波形发生器
- 位移传感器结构类型及工作原理与应用
- 开关电源供应器的功能、应用场景以及重要性
- 重庆东微电子推出高性能抗射频干扰MEMS硅麦放大器芯片
- 拒绝一次性芯片,新技术:无线升级芯片
- 芯片迈向系统化时代:EDA软件的创新之路
- 智能安全帽功能-EIS智能防抖摄像头4G定位生命体征监测
- 卫星应用受关注,GNSS导航芯片/模块发展加速
- AI边缘智能分析设备:智慧食堂明厨亮灶的智能化应用
- 美光低功耗内存解决方案助力高通第二代骁龙XR2平台
- 浅谈芯片常用的解密器
- 电路板技术水平和质量水平,影响着机器人赛道的发展前景
- 直播回顾 | 宽禁带半导体材料及功率半导体器件测试
- 写flash芯片时为什么需要先擦除?
- DigiKey 凭借品牌更新荣获四项 MarCom 大奖
- 高精度3D视觉技术,助力工业机器人实现汽车零部件高效上
- 不只是芯片 看看传感器技术我们离世界顶级有多远
- 加特兰毫米波雷达SoC芯片赋能室内安防新应用
- 所有遥不可及,终因AI触手可及
- 一种基于聚合物的化学电阻式传感器使患者检测更容易
- MTK天玑9300重磅发布:全大核时代到来,330亿参数AI大模型
- 如何测量温度传感器的好坏?
- ACCEL光电芯片,性能超GPU千倍,新一代计算架构将更早来临
- 如何利用示波器快速测量幅频特性?有何注意事项?
- 射频连接器使用技巧与注意事项
- STC15W芯片A/D、D/A转换的简单使用
- 群芯微车规级认证的光电耦合器备受电池BMS和电驱电控
- 芯朋微:服务器配套系列芯片已通过客户验证 可应用于AI
- 新能源高压连接器高压互锁(HVIL)功能详解
- FPGA和AI芯片算哪一类?芯片的不同分类方式
- MPS全系列电机驱动产品,助力新能源汽车实现更好的智能
- 基于穿隧磁阻效应(TMR)的车规级电流传感器
- 豪威发布新款 4K 分辨率图像传感器,适用于安防摄像头
- 苹果发布M3系列新款MacBook Pro/iMac:业界首批PC 3nm芯
- 硅谷:设计师利用生成式 AI 辅助芯片设计
- 电容式触摸按键屏中应用的高性能触摸芯片
- DigiKey 推出《超越医疗科技》视频系列的第一季

手机 |
相关内容
采用89C2051制作的120MHz频率计
采用89C2051制作的120MHz频率计,电路图,消费类电子电路图,采用89C2051制作的120MHz频率计 采用,89c51,制,采用89c51制作的120MHz频1Mhz发光二极管脉冲调制电路
1Mhz发光二极管脉冲调制电路,电路图,光电产生电路,1Mhz发光二极管脉冲调制电路 1Mhz,发光二极管,1Mhz发光二极管脉冲调制电路1.5 5.7MHZ光学隔离式VFO电路图
1.5 5.7MHZ光学隔离式VFO电路图,电路图,光电隔离电子电路图,1.5 5.7MHZ光学隔离式VFO电路图 ,光学隔离,VFO,1.5 5.7MHZ光学隔离式VF1.5 5.7MHZ光学隔离式VFO电路图
1.5 5.7MHZ光学隔离式VFO电路图,电路图,光电隔离电子电路图,1.5 5.7MHZ光学隔离式VFO电路图 VFO,1.5 5.7MHZ光学隔离式VFO电路图50MHZ光电检波电路图
50MHZ光电检波电路图,电路图,光电探头电路,50MHZ光电检波电路图 检波,50MHZ光电检波电路图900mhz射频指示器电路图
900mhz射频指示器电路图,电路图,光电报警电子电路图,900mhz射频指示器电路图 指示器,900mhz射频指示器电路图 该电路的灵敏利用CMOS对管做成的2MHZ晶体振荡器
利用CMOS对管做成的2MHZ晶体振荡器电路,电路图,数字时钟电路图,利用CMOS对管做成的2MHZ晶体振荡器电路 晶体振荡器,利用CMOS对管做2MHZ主时钟电路图
2MHZ主时钟电路图,电路图,游戏电路,2MHZ主时钟电路图 2MHZ,主时钟,2MHZ主时钟电路图