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Shenzhen Meijiate Technology Co., Ltd

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    larry_luo@megatechsz.com

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Keysight RF Analog Signal Generator

NegotiableUpdate on 12/25
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Overview
The Keysight N5171B RF analog signal generator covers the 9 kHz-6 GHz RF frequency band, with low phase noise and wide power output as its core. It supports multiple analog modulations and can generate stable and pure RF signals, providing reliable signal source support for R&D, testing, and production in the RF field.
Product Details

Keysight RF Analog Signal GeneratorKeysight N5171B

(1)Keysight RF analog signalNumber generatorBrand related introduction
The brand to which this instrument belongs has long been deeply involved in the field of electronic testing and measurement, accumulating profound technical reserves in testing areas such as RF microwave, wireless communication, and semiconductor. Its products have been widely recognized in the industry for their accurate performance indicators, stable operating performance, and flexible expansion capabilities. Keysight N5171B is a specialized instrument designed for general RF analog signal testing needs, which can meet the signal generation requirements from research and development to mass production in fields such as RF components, wireless communication devices, and consumer electronics.
(II)Keysight RF Simulationsignal generatorProduct Features
  1. Wide frequency range coverageThe frequency range is 9 kHz-6 GHz, covering mainstream RF application frequency bands. It can adapt to the testing needs of RF components, wireless communication terminals, industrial sensors, and other fields without the need for additional equipment, reducing equipment configuration costs.

  1. High signal purityAt a frequency offset of 20 kHz on a 1 GHz carrier, the phase noise is as low as -136 dBc/Hz, and the harmonic suppression at 2 GHz is ≤ -50 dBc (typical value). It has excellent ability to suppress stray signals and can generate low distortion RF signals, ensuring high-precision test results.

  1. Wide power range outputThe output power range is -135 dBm to+24 dBm (typical value, at 1 GHz). The low-power end can accurately test the receiver sensitivity, and the high-power end can drive RF components without external amplifiers, adapting to different power requirements of testing scenarios.

  1. Multi analog modulation capabilitySupports AM (amplitude modulation), FM (frequency modulation), PM (phase modulation), and pulse modulation. The pulse width can be adjusted within 10 ns-1 s, and the duty cycle can be adjusted from 0.001% to 99.999%. It can simulate various analog signals in wireless communication and industrial control, adapting to diverse testing needs.

  1. Convenient operation and expansionThe 7-inch color touch screen supports custom shortcut menus and one click parameter calling, and the operation interface is intuitive and easy to understand; Adopting modular design, functions such as frequency/power scanning, pulse sequence editing, and high stability time base can be expanded through optional components to adapt to different testing stage requirements.

  1. Efficient automation integrationEquipped with LAN (LXI Core), USB, GPIB standard control interfaces, compatible with SCPI instruction set, can quickly access automated testing platforms, support remote control and batch testing, and improve laboratory research and production line testing efficiency.

(3) Product specifications
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project
parameter value
frequency range
9 kHz - 6 GHz
Output power range
-135 dBm to+24 dBm (typical value, at 1 GHz)
Phase noise (1 GHz, 20 kHz frequency offset)
-136 dBc/Hz (typical value)
Harmonic suppression (at 2 GHz)
≤ -50 dBc (typical value)
modulation type
AM (amplitude modulation), FM (frequency modulation), PM (phase modulation), pulse modulation
Pulse parameter adjustment
Pulse width: 10 ns-1 s, cycle: 20 ns-10 s, duty cycle: 0.001% -99.999%
frequency resolution
0.01 Hz
control interface
LAN(LXI-Core)、USB、GPIB、 Trigger I/O, external reference source input
operating interface
7-inch color touch screen, supporting custom shortcut menus
Extended features
Optional frequency/power scanning, pulse sequence editing, external reference synchronization, high stability time base, etc
(4) Application scenarios
  1. RF component testingProvide stable RF signals for components such as RF amplifiers, filters, mixers, antennas, etc. Test the gain, insertion loss, frequency response, standing wave ratio, and other parameters of the components to evaluate their performance stability and ensure the quality of the RF link of the entire machine.

  1. Research and development of wireless communication equipmentSimulate FM broadcasting, PM wireless control, short-range AM communication and other signals, test the receiving sensitivity, modulation and demodulation performance, and anti-interference ability of wireless communication terminals, and support the research and development and debugging of consumer and industrial wireless devices.

  1. Batch testing of production lineIntegrate into an automated testing platform to perform rapid signal excitation and response testing on mass-produced products such as RF modules, wireless sensors, and communication terminals, screen for non-conforming products, ensure consistency in factory product performance, and improve production line efficiency.

  1. Industrial electronic testingProvide analog signals for industrial wireless control equipment (such as RF remote controllers and wireless data acquisition modules), test the signal transmission stability and anti-interference ability of the equipment in industrial environments, and adapt to the requirements of industrial IoT scenarios.

  1. Automotive electronic testingSimulate the signals of car mounted RF devices (such as car key wireless modules and car broadcast receiving modules), test the signal reception and processing capabilities of the equipment in the car's electromagnetic environment, and support the research and verification of automotive electronics.

  1. Educational Research ExperimentWith wide RF frequency coverage and multi analog modulation capability, it supports RF technology teaching experiments in universities and research institutes, helps students understand RF signal characteristics, and assists researchers in completing RF technology related project verification.