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  • 型号: ANT-DB1-RAF-SMA
  • 制造商: LINX TECHNOLOGIES
  • 库位|库存: xxxx|xxxx
  • 要求:
数量阶梯 香港交货 国内含税
+xxxx $xxxx ¥xxxx

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ANT-DB1-RAF-SMA产品简介:

ICGOO电子元器件商城为您提供ANT-DB1-RAF-SMA由LINX TECHNOLOGIES设计生产,在icgoo商城现货销售,并且可以通过原厂、代理商等渠道进行代购。 ANT-DB1-RAF-SMA价格参考。LINX TECHNOLOGIESANT-DB1-RAF-SMA封装/规格:RF 天线, 2.45GHz,5.3GHz 蓝牙, Thread, Wi-Fi, Zigbee™ 鞭状,倾斜 RF 天线 2.4GHz ~ 2.483GHz,5.15GHz ~ 5.825GHz 2.5dBi,4.6dBi 连接器,SMA 公型 连接器安装。您可以下载ANT-DB1-RAF-SMA参考资料、Datasheet数据手册功能说明书,资料中有ANT-DB1-RAF-SMA 详细功能的应用电路图电压和使用方法及教程。

Linx Technologies Inc. 的 RF 天线型号 ANT-DB1-RAF-SMA 是一款适用于低频段通信的全向天线,其主要应用场景包括以下方面:

1. 无线数据传输:该天线适用于短距离无线数据通信,例如工业自动化、传感器网络和远程监控系统。它支持稳定的信号覆盖,确保数据在设备间的可靠传输。

2. 物联网 (IoT) 应用:ANT-DB1-RAF-SMA 适合用于物联网设备,如智能家居、环境监测、健康医疗设备等。其 SMA 接口设计便于与各种 IoT 模块集成,提供高效的射频性能。

3. 无线音频和视频传输:该天线可应用于无线麦克风、监控摄像头和其他多媒体设备中,以实现高质量的音频和视频信号传输。

4. 遥控和遥测系统:在无人机、机器人控制或遥感测量中,这款天线能够提供可靠的双向通信能力,支持远距离控制和数据采集。

5. 无线报警和安全系统:ANT-DB1-RAF-SMA 可用于家庭或商业安防系统,如无线门铃、烟雾报警器和入侵检测系统,确保信号稳定且反应迅速。

6. 业余无线电通信:对于需要低频段操作的业余无线电爱好者,这款天线是一个经济高效的选择,可用于实验和测试目的。

总之,ANT-DB1-RAF-SMA 凭借其紧凑的设计、宽频率范围(30 MHz 至 1 GHz)以及 SMA 连接器的兼容性,成为多种 RF 应用的理想选择,尤其适合需要全向覆盖和高性价比解决方案的场景。
产品参数 图文手册 常见问题
参数 数值
产品目录

射频/IF 和 RFID

描述

ANTENNA 5.8/2.4GHZ TILT SMA天线 SMA Dual Band Tilt Swivel 2.4 & 5.8GHz

产品分类

RF 天线

品牌

Linx Technologies Inc

产品手册

点击此处下载产品Datasheet

产品图片

rohs

产品系列

Linx Technologies ANT-DB1-RAF-SMARAF - Antenna Factor

数据手册

点击此处下载产品Datasheet

产品型号

ANT-DB1-RAF-SMA

VSWR

1.9

产品种类

天线

其它名称

ANTDB1RAFSMA
Q3239693

包装

散装

商标

Linx Technologies

增益

-

天线类型

鞭状,倾斜

安装类型

连接器

安装风格

SMA Connector

宽度

0.43 in

封装

Tray

尺寸

4.13 in L x 0.43 in W

工厂包装数量

30

带宽

120 MHz, 875 MHz

技术类型

Dual Band Tilt Swivel Antenna

标准包装

30

端接

SMA

系列

RAF

长度

4.13 in

阻抗

50 Ohms

频带数

2

频率

2.4GHz(120MHz B.W)5GHz(875MHz B.W)

频率范围

2.45 GHz, 5.8 GHz

高度(最大值)

4.130" (104.90 mm)

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PDF Datasheet 数据手册内容提取

ANT-DB1-RAF-xxx Data Sheet by Product Description 4.0 mm The RAF is a compact, cosmetically attractive, (0.16") dual-band, ½-wave antenna covering the popular 2.45 and emerging 5GHz bands. The antenna features a tilt and swivel joint which allows it to be oriented at straight or right angle to the product or conveniently folded for storage and shipment. It attaches using an SMA or Part 15 compliant RP-SMA connector. 66.0 mm (2.60") Features • Tilts and rotates 104.9 mm • Dual-band (4.13") • Excellent performance • Omni-directional pattern • Very low VSWR 17.8 mm (0.70") • Rugged & damage-resistant • Standard SMA or Part 15 compliant RP-SMA 11.3 mm connector (0.44") 9.4 mm Electrical Specifications (0.37") Recom. Freq. Range: Band 1: 2.40–2.483GHz Band 2: 5.15–5.825GHz 11.0 mm Peak Gain: Band 1: 2.5dBi (0.43") Band 2: 4.6dBi Wavelength: ½-wave VSWR: ≤ 1.9 typical at center Impedance: 50-ohms Connection: RP-SMA or SMA Oper. Temp. Range: –40°C to +80°C Electrical specifications and plots measured on 10.16 cm x 10.16 cm (4.00" x 4.00") reference ground plane Ordering Information ANT-DB1-RAF-RPS (with RP-SMA connector) ANT-DB1-RAF-SMA (with SMA connector) – 1 – Revised 12/10/13

VSWR Graph VSWR 1.652 1.187 Reflected Power 3:1 25% 2:1 11% CENTER 2450.000MHz SPAN 200.000MHz CENTER 5450.000MHz What is VSWR? The Voltage Standing Wave Ratio (VSWR) is a measurement of how well an antenna is matched to a source impedance, typically 50-ohms. It is calculated by measuring the voltage wave that is headed toward the load versus the voltage wave that is reflected back from the load. A perfect match will have a VSWR of 1:1. The higher the first number, the worse the match, and the more inefficient the system. Since a perfect match cannot ever be obtained, some benchmark for performance needs to be set. In the case of antenna VSWR, this is usually 2:1. At this point, 88.9% of the energy sent to the antenna by the transmitter is radiated into free space and 11.1% is either reflected back into the source or lost as heat on the structure of the antenna. In the other direction, 88.9% of the energy recovered by the antenna is transferred into the receiver. As a side note, since the “:1” is always implied, many data sheets will remove it and just display the first number. How to Read a VSWR Graph VSWR is usually displayed graphically versus frequency. The lowest point on the graph is the antenna’s operational center frequency. In most cases, this will be different than the designed center frequency due to fabrication tolerances. The VSWR at that point denotes how close to 50-ohms the antenna gets. Linx specifies the recommended bandwidth as the range where the typical antenna VSWR is less than 2:1. – 2 – Data Sheet ANT-DB1-RAF-xxx by