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analyzer Product List and Ranking from 168 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

analyzer Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

  1. Tateno Dennou,Inc. Tokyo//Industrial Electrical Equipment
  2. サーモフィッシャーサイエンティフィック株式会社/Thermo Fisher Scientific K.K. Tokyo//Testing, Analysis and Measurement
  3. ビー・エー・エス Tokyo//Testing, Analysis and Measurement
  4. 4 ラインアイ Kyoto//IT/Telecommunications
  5. 5 三洋貿易 ライフサイエンス事業部 科学機器事業部 Tokyo//Testing, Analysis and Measurement

analyzer Product ranking

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

  1. TP320121 Beagle I2C/SPI Analyzer Tateno Dennou,Inc.
  2. [Contract Analysis of SPF/UVAPF] SPF Analyzer UV-2000S 三洋貿易 ライフサイエンス事業部 科学機器事業部
  3. ALS Electrochemical Analyzer Model 600F Series ビー・エー・エス
  4. Bubble Contract Analysis: Dynamic Form Analyzer DFA100-FSM 三洋貿易 ライフサイエンス事業部 科学機器事業部
  5. 4 USB Power Delivery Analyzer USB-PDA Tateno Dennou,Inc.

analyzer Product List

76~90 item / All 556 items

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Radio Law and IEEE Simplified Testing of ZigBee Modules

[Application Example] A system that conducts simplified tests in accordance with the Radio Law and IEEE using the Signal Real-Time Spectrum Analyzer.

By combining the Signal Real-Time Spectrum Analyzer (MSA500 series) with a radio wave anechoic chamber, simple measurements for RF transmission characteristic tests such as technical standard conformity tests (Giteki) and IEEE tests for antenna-integrated equipment can be conducted. By limiting the applications and specifications, it is possible to upgrade the system at a low cost. The physical layer testing for ZigBee includes technical standard conformity certification (Giteki) and IEEE802.15. 【Product Introduction】 ■ Handheld Spectrum Analyzer MSA558 ■ Radio Wave Anechoic Chamber Taurus Series MY1530 ■ I/F Module *For more details, please refer to the PDF materials or feel free to contact us.

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How to write antenna calibration data to a spectrum analyzer.

[Application Example] You can connect the antenna and spectrum analyzer that the customer has to perform electric field strength measurements.

Typically, to check the frequency and strength of radio waves transmitted from wireless communication devices, electric field strength measurements (dBμV/m) are performed. When using a spectrum analyzer (MSA400 series) in combination with our dipole antennas (M401 to M407), the calibration data (antenna gain) is already reflected, allowing for easy electric field strength measurements based on the settings of the spectrum analyzer. However, if you want to perform electric field strength measurements with an antenna you own, you will need to write the calibration data into the spectrum analyzer. By using the PC software (MAS400), you can easily write the calibration data. 【Product Introduction】 ■ Handheld Spectrum Analyzer MSA400 Series *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ Spectrum Analyzer MSA400 Series ■ USB Cable MI400 ■ PC Software *For more details, please refer to the PDF document or feel free to contact us.

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External transfer of I/Q data measured with a signal analyzer.

【Application Example】 I/Q data measured with the Signal Analyzer (MSA500 series) can be transferred to a PC or USB memory.

【Product Introduction】 ■ Signal Analyzer MSA538 *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ Signal Analyzer MSA538 ■ Lithium-ion Battery MB400 ■ USB Cable MI400 ■ PC Software MAS500 *For more details, please refer to the PDF document or feel free to contact us.

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Application Examples | Interference Wave Detection with Signal Analyzers

[Application Example] By using the power trigger function of the signal analyzer (MSA500 series), it is possible to detect and analyze interference waves.

【Product Introduction】 ■ Signal Analyzer MSA538 *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ Signal Analyzer MSA538 ■ Lithium-ion Battery MB400 ■ USB Cable MI400 ■ Logging Software MAS500 *For more details, please refer to the PDF document or feel free to contact us.

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[Application Example] Weather Radar Measurement Using Signal Analyzer

[Application Example] An example of radio wave measurement for weather radar using the trigger function of a signal analyzer.

When attempting to measure the modulation signals of weather radar using conventional spectrum analyzers, there were instances where measurements could not be made or data was missed due to the very short pulse widths and brief occurrence times. As a solution to these challenges, by using our handheld signal analyzer (MSA558) and 5GHz band antenna (M406), it is possible to measure the radio waves of weather radar with high precision. The hardware trigger of the MSA558 (IF level, power, external) has a time resolution of up to 14.7ns, significantly reducing the chances of missing intermittent signals. Additionally, it is capable of measuring 5GHz band wireless LAN (Note 1), which can be used, for example, to verify the DFS (Dynamic Frequency Selection) function during radar detection, which requires wireless LAN communication to cease within 10 seconds and switch to another channel. [Product Introduction] ■ Signal Analyzer MSA558 ■ Portable Antenna M406 *For more details, please refer to the PDF document or feel free to contact us.

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Visualization of modulated signals using a signal analyzer

[Application Example] Various modulated signals can be visually observed using a handy real-time signal analyzer.

【Product Introduction】 ■ Signal Analyzer MSA538 *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ Signal Analyzer MSA538 ■ Lithium-ion Battery MB400 ■ SMA-SMA Cable 1.5m MC303 ■ Adapter N(P)/SMA(J) MA306 *For more details, please refer to the PDF document or feel free to contact us.

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Optimization of weak signal measurement using a spectrum analyzer.

[Application Example] By optimizing the spectrum analyzer, it becomes possible to capture weak signals.

All spectrum analyzers are inevitably affected by internal noise. The average noise level defines the impact of this noise. This is a crucial factor in measuring weak signals, as it becomes impossible to measure signals that fall below the average noise level. Therefore, the key point is how to effectively keep this average noise level low. Additionally, if the signal cannot be captured even after optimizing the settings of the spectrum analyzer, measurement can be achieved by amplifying the signal. 【Product Introduction】 ■ Signal Analyzer MSA538 ■ Low Noise Amplifier MAP302 *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ Signal Analyzer MSA538 ■ Low Noise Amplifier MAP302 ■ PC Software MAS500 ■ Others (various cables, adapters, etc.) *For more details, please refer to the PDF document or feel free to contact us.

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Methods to prevent measurement errors due to saturation of the spectrum analyzer.

[Application Example] This introduces a method to prevent erroneous measurements caused by saturation due to strong power signal inputs outside the measurement frequency band in a spectrum analyzer.

When a signal above an appropriate level is applied to the 1st mixer of the spectrum analyzer, saturation occurs, leading to harmonic distortion and spurious signals, making accurate measurements impossible. Even signals outside the frequency measurement range can result in incorrect measurements if they are above an appropriate level. 【Product Introduction】 ■ Spectrum Analyzer / Signal Analyzer *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ Signal Analyzer MSA500 Series ■ Spectrum Analyzer MSA400 Series ■ Spectrum Analyzer MSA300 Series ■ Attenuators, filters, etc. *For more details, please refer to the PDF document or feel free to contact us.

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[Application Example] C/N Ratio Measurement Using Channel Power Measurement

【Application Example】 Easily measure C/N ratio with a handy spectrum analyzer. Simplify the assessment of stable reception for digital broadcasts and more.

In digital modulation communication such as digital broadcasting, the carrier-to-noise ratio (C/N ratio) is an important indicator of whether stable reception can be achieved. Deterioration of the C/N ratio leads to a rapid increase in the bit error rate (BER), making it impossible to correctly reproduce the transmitted data. Our handheld spectrum analyzer MSA438 can measure this C/N ratio using the "channel power measurement" function. ● Accurate measurement and evaluation with a full-fledged spectrum analyzer ● Easy saving of measurement results (screen, data) to USB memory, making report creation simple ● Handheld type that is easy to use on-site with simple settings (compact, lightweight, battery-operated for 4 hours), eliminating the need for commercial power outlets 【Product Introduction】 ■ Spectrum Analyzer MSA438 *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ Spectrum Analyzer MSA438 ■ Dedicated Battery MB400 *For more details, please refer to the PDF document or feel free to contact us.

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Application Example: Telemetry Solution

[Application Example] Enables simultaneous reception of multiple channels in animal ecology research telemetry using a handheld spectrum analyzer.

In recent years, due to the increase in population of wildlife that is causing damage to agriculture and railways, telemetry transmitters are used for ecological surveys of these animals. In 2008, the "Radio Equipment for the Animal Detection Reporting System of Specified Low Power Radio Stations in the 150 MHz Band" was enacted, and the 150 MHz band was allocated for telemetry transmitters. Typically, a dedicated receiver is used for exploration, but it can only observe one channel at a time. By using the MSA338 handheld spectrum analyzer, multiple channels can be observed simultaneously, significantly improving survey efficiency. 【Product Introduction】 ■ Spectrum Analyzer MSA338 *For more details, please refer to the PDF document or feel free to contact us.

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Method for Expanding Dynamic Range of Spectrum Analyzers Equipped with Tracking Generators

[Application Example] Method for Expanding the Dynamic Range of Spectrum Analyzers Equipped with Tracking Generators (TG) Using Low-Noise Amplifiers

This introduces a method for expanding the dynamic range of spectrum analyzers equipped with a tracking generator (TG) by using a low-noise amplifier. 【Product Introduction】 ■ Signal Analyzer MSA538TG ■ Spectrum Analyzer MSA338TG ■ Spectrum Analyzer MSA438TG ■ Low Noise Amplifier MAP302 *For more details, please refer to the PDF document or feel free to contact us.

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Checking television frequency channels using a handheld spectrum analyzer.

[Application Example] Understand the impact of mixed and airborne noise, check the reception level, and propose improvements to the viewing environment.

By understanding the reception status and keeping a record, we promote maintenance of TV viewing equipment within the condominium and proposals for replacing coaxial cables. Additionally, we select the antenna reception direction and fix the installation position when installing parabolic antennas and boosters. 【Product Introduction】 ■ Spectrum Analyzer MSA438 *For more details, please refer to the PDF document or feel free to contact us. We grasp the relevant TV frequencies and use the [SAVE function] of the MSA400(300) series to record the current status of the frequency band in question. 【System Configuration】 ■ Spectrum Analyzer MSA438 ■ Conversion Adapter MA308 N(P)/BNC(J) 50Ω/75Ω *For more details, please refer to the PDF document or feel free to contact us.

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Method for estimating clock jitter from phase noise.

[Application Example] This introduces a method to determine the jitter of a clock signal from phase noise measured by a signal analyzer.

【Product Introduction】 ■Signal Analyzer MSA538 Equipped with both real-time method using Fast Fourier Transform (FFT) and traditional sweeping method, allowing the utilization of the advantages of each direction. The most popular model in the MSA500 series. - Measurement Frequency: 20kHz to 3.3GHz ■Clock jitter can be calculated from the phase noise level measured by the signal analyzer. ■Real-time acquisition allows for the measurement of instantaneous jitter. Additionally, averaging can be used to obtain long-term RMS jitter.

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How to protect equipment from excessive input.

[Application Example] Protects equipment from unexpected excessive input during CATV line quality surveys and electric field strength surveys. Safe for measurement beginners.

【Product Introduction】 ■Spectrum Analyzer MSA438 Compact and lightweight. A full-fledged spectrum analyzer with performance and features that rival large bench-type models. The most popular model in the MSA400 series. - Measurement Frequency: 50kHz to 3.3GHz ■Spectrum Analyzer MSA458 Covers almost all applications in wireless information communication with an 8.5GHz bandwidth. - Measurement Frequency: 50kHz to 8.5GHz

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Example of measuring pilot signals transmitted from a satellite.

[Application Example] Observation of satellite waves and others in outdoor settings.

【Product Introduction】 ■Spectrum Analyzer MSA438 Compact and lightweight. A full-fledged spectrum analyzer with performance and features that rival large bench-type models. The most popular model in the MSA400 series. - Measurement Frequency: 50kHz to 3.3GHz By converting signals received at 7.9 to 14.5GHz with a parabolic antenna to low frequencies using a downconverter attached to the parabolic antenna, it can measure signals in the 50kHz to 3.3GHz range with our handheld spectrum analyzers (MSA300, MSA400 series). This allows for measurements while moving or observing specific satellite waves. Our handheld spectrum analyzer is compact, lightweight, and capable of battery operation, making it very advantageous for field measurements. In particular, the MSA400 series facilitates management by directly writing measurement images and reception status to a USB memory. The product price is also reasonable, allowing for minimal initial investment costs.

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