

XHF-652M-D+技术参数
- 制造厂商:Mini-Circuits
- 类别封装:MMIC芯片 Reflectionless High Pass Filters, MMIC Die, 2010 to 40000 MHz,标准封装
- 技术参数:Mini-Circuits 射频微波器件
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XHF-652M-D+技术参数详情说明:
The XHF-652M-D+ operates across an extensive frequency spectrum from 2010 to 40000 MHz, featuring a center frequency at 5990 MHz with a typical 3 dB loss, making it ideal for high-frequency filtering applications. It delivers a passband from 6500 to 21110 MHz with just 1 dB insertion loss, ensuring minimal signal degradation while handling up to 1.3 W input power in the passband.
Designed with reflectionless technology, this MMIC chip boasts impressive performance metrics: a stopband VSWR of 1.2 and passband VSWR of 1.1, reducing signal reflection and interference. It can endure up to 1.6 W in stopband conditions, providing robust reliability in demanding RF environments, and its compact die format supports space-constrained designs.
- 制造商产品型号: XHF-652M-D+
- 制造商: Mini-Circuits
- 功能类别: MMIC芯片 Reflectionless High Pass Filters, MMIC Die, 2010 to 40000 MHz
- Stopband F (MHz) loss 50 dB Typ.: -
- Stopband F (MHz) loss 30 dB Typ.: DC-5000
- Stopband F (MHz) loss 20 dB Typ.: -
- Stopband F (MHz) loss 14 dB Typ.: -
- Stopband F (MHz) loss 9 dB Typ.: -
- F Center (MHz) Fc loss 3 dB Typ.: 5990
- Passband F (MHz) loss 1dB Typ.: 6500-21110
- Stopband VSWR (:1) Typ.: 1.2
- Passband VSWR (:1) Typ.: 1.1
- Stopband Max Input Power (W): 1.6
- Passband Max Input Power (W): 1.3
- Features: REFLECTIONLESS
- 更多产品技术参数细节,请下载技术文档后获取。
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XHF-652M-D+应用范围:
In wireless communication systems, the XHF-652M-D+ excels as a key component in transceivers and base stations, filtering out unwanted low-frequency noise while preserving signal integrity from 6.5 to 21.11 GHz. This ensures clear data transmission in LTE, 5G, and satellite applications, leveraging its reflectionless design to minimize distortion.
For test and measurement equipment, such as RF analyzers and spectrum scanners, this filter enhances accuracy by providing precise high-pass filtering across the 2-40 GHz range. Its low insertion loss and high power tolerance make it suitable for calibration and signal verification, improving overall system performance in lab and field deployments.
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