当前位置:首页 > 工业控制 > 电子设计自动化



Maxim公司MAX2742是CMOS单片GPS前端下变换器,器件的功耗非常低(2.4V时32mW),不需要昂贵的IF SAW滤波器或体积过大的IF基带滤波器.MAX2742集成了低噪音放大器(LNA),混频器,带通滤波器(BPF),自动增益控制放大器(AGC),本地振荡合成器,时钟缓冲器和整数数字取样器.本解决方案提供了完整的GPS前端解决方案.

Complete Stand-Alone GPS Receiver Solution with MAX2742
Abstract: A complete GPS solution is achieved with minimal external components, using the MAX2742 integrated CMOS RF front-end GPS receiver.

The MAX2742 is a CMOS, single-chip, GPS front-end downconverter. This state-of-the-art device consumes very low power (32mW at 2.4V), and eliminates the need for a costly IF SAW filter or bulky discrete IF bandpass filters. The MAX2742 integrates a low-noise amplifier (LNA), mixer, BPF, automatic-gain-control amplifier (AGC), local oscillator synthesizer, clock buffer, and internal digital sampler.
This device can interface with many commercially available GPS baseband ICs. It is suitable for many applications, including vehicle navigation, telematics, automatic security, asset tracking, location-based service (LBS), and consumer electronics. The external components required around the device are minimal for a complete GPS RF solution. The system block diagram can be found in the following section.

The MAX2742 works with an 18.414MHz* crystal or TXCO, and offers differential or single-ended** IF output at 1.023MHz. Total signal conversion gain is 120dB, with a noise figure of 4.5dB. The IF signal is sampled at the reference clock rate of 18.414MHz.

* Note: 18.414MHz is 18 times 1.023MHz, which is one-tenth of the GPS fundamental frequency 10.23MHz.

** Note: There are three IF output pins—one pair of differential outputs and one single-ended output. Selection is controlled by pin 10.

Complete GPS RF Front-End Solution

Figure 1 shows the important building blocks and features of Maxims complete GPS RF solution. Description of the building blocks can be found in Table 1; cascaded performances are shown in Table 2. Figure 2 shows the application circuit of the GPS receiver RF portion with the MAX2742.



Figure 1. GPS RF front-end block diagram.

Table 1. RF Portion System Building Block



Table 2. System Cascaded Performance





Figure 2. GPS RF portion schematic for MAX2742.

Complete Stand-Alone GPS Receiver Solution
There are more building blocks to construct a complete GPS receiver, other than just the RF plus baseband IC. As shown in Figure 3, an extra antenna supply-control block, a RESET circuit, and a delay circuit are needed. Description of the building blocks can be found in Table 3; cascaded performances are shown in Table 4.



Figure 3. Complete GPS receiver solution block diagram.

Table 3. System Building Block



Figure 4 shows the real PCB layout of the reference design. The complete solution only occupies 25mm x 25mm of PC board space.

Figure 4. GPS Receiver PCB layout.

Table 4. Module Performance (LNA + MAX2742 + SONY CXD2932)



Note 1: T.C. = test condition, N.M. = not measured

http:///appnotes.cfm/an_pk/3447


本站声明: 本文章由作者或相关机构授权发布,目的在于传递更多信息,并不代表本站赞同其观点,本站亦不保证或承诺内容真实性等。需要转载请联系该专栏作者,如若文章内容侵犯您的权益,请及时联系本站删除。
换一批
延伸阅读

倍加福全新的M-LB-4000浪涌保护系统集成了多个功能——模块化、环路断开和信号线故障监控功能,可达到SIL 3级(基于IEC/EN 61508标准)。该设备可限制信号线上各种原因(如雷击或开关操作)引起的感应瞬态。双...

关键字: 故障状态模块 光学发射器 接收器

Holtek新推出HT32F67575 Arm® Cortex®双内核(M33 & M0+)低功耗蓝牙MCU,通过蓝牙技术联盟(Bluetooth SIG) BT5.3认证,具备超低功耗的接收器,在1Mbps的数...

关键字: MCU 接收器 蓝牙

罗德与施瓦茨(以下简称R&S)的over-the-air (OTA)测试系统R&S TS8991是首个获得 CTIA 认证的5G A-GNSS天线性能测试系统。该解决方案可测量无线设备中全球导航卫星系统 (GNSS) 接...

关键字: 天线 接收器 导航卫星系统

音自达电子科技的2.4G 无线音频模块通过在发射器和接收器中使用nRF52832 SoC,利用零延迟DSP管线提供无损、稳定的无线传输

关键字: 发射器 接收器 无线音频

Holtek推出全新二款BC2502C/D Sub-1GHz OOK/FSK射频接收芯片,BC2502C支持315/433MHz频段,BC2502D支持Sub-1GHz全频段(免执照ISM Band)。此二款IC工作电压...

关键字: 接收器 射频 吊扇灯

激光雷达(Lidar)是一种通过使用激光器和接收器测量出物体距离和位置的技术。它利用光的特性,以激光束的形式向周围发射光,然后通过接收器接收反射回来的光,并通过测量光的传播时间来计算出光的传播距离。激光雷达具有高精度、高...

关键字: 激光雷达 激光器 接收器

如今,无线充电已经广为人知,不再是一个新鲜词汇,众多行业对这一技术的接受度越来越高,其相比传统的有线插拔、触点方式,优势明显。

关键字: 无线 充电 解决方案

通过按键操作,可使数码管显示不同类别的实时数据和运行参数,数据名称数码管显示 3 位符号,第一位为字母,表示当前正在查看的数据类别,后面两位用数字表示正在查看数据的编号。 数据类别用字母表示, F 表示频率类别,...

关键字: 振弦采集仪 振弦传感器 工程监测 工程设备 无线网络 解决方案

1、开机 VTN4XX 有四个开机途径,手动开机、自动定时开机和上电开机、信号触发开机。 上电开机:当“工作模式拨码开关” 第 4 位为 ON 时,直接连接外部电源即可开机。 自动开机:设备根据预设的时间间隔自动...

关键字: 振弦采集仪 振弦传感器 工程监测 工程设备 无线网络 解决方案
关闭
关闭