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  3. マイクロニクス
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マイクロニクス

EstablishmentJanuary 7, 1986
capital3000Ten thousand
number of employees20
addressTokyo/Hachioji-shi/2987-2 Kobiki Town
phone042-637-3667
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last updated:Apr 14, 2023
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マイクロニクス List of Products and Services

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Broadband electromagnetic field uniformity in a dark box.

[Application Example] A broadband electromagnetic shielded chamber suitable for the development of multi-band/UWB radio devices and EMC evaluation.

【Product Introduction】 ■Handheld Spectrum Analyzer Compact, lightweight, battery-operated (low power consumption), and low cost. Despite being a handheld type, it offers performance comparable to larger models. ■EMI Shielded Enclosure/Shield Box Low cost, lightweight, and short delivery time! High-quality, reliable, and cost-effective EMI shielded enclosures and shield boxes provided by a measurement instrument manufacturer. There is an increasing demand to establish test environments that require wideband capabilities, such as the development of multi-band/UWB wireless devices and EMC evaluations, at the lowest possible cost. By achieving such environments with an EMI shielded enclosure, initial investment for setting up the environment can be minimized, and easy debugging can contribute to reducing the development turnaround time.

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Monitoring of near-field wireless communication

[Application Example] Measure the radio wave flow of near-field communication (NFC) using a radio wave dark box and a compact spectrum analyzer.

【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 ■Radio Wave Shielding Box / Shield Box MY5310S An ideal radio wave shielding box for EMI testing. A split and assembly type, perfect for installation in narrow spaces such as office buildings.

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We investigated the performance difference between enterprise and home access points using 40 devices.

[Application Example] Demonstrating the Truth and Lies of Wi-Fi

【Product Introduction】 ■Radio Wave Dark Box MY1530 *For more details, please refer to the PDF document or feel free to contact us. Since the advent of smartphones, the opportunities to use Wi-Fi (wireless LAN) have increased. At work, we use the company's internal Wi-Fi, when out, we connect to guest Wi-Fi at our destinations, and in the city, there are various free Wi-Fi options and Wi-Fi provided by telecom carriers. When we return home, we use our home Wi-Fi, which has become a daily routine. Wi-Fi can be used in various scenarios, but when introducing access points to establish it, how do we select the equipment? Most likely, products are chosen based on functionality and price. When comparing access points solely by communication speed, the prices of home products available at electronics retailers and enterprise products are not significantly different. Therefore, even for access points used for internal Wi-Fi, it seems that some may prioritize cost and purchase home devices. There are various ways to choose, but one aspect that is often overlooked is performance. *For more details, please refer to the PDF document or feel free to contact us.

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Simple radioactive noise evaluation method for EMI calculation

[Application Example] Low-Cost and Simple EMI Estimation Using Spectrum/Signal Analyzer

【Product Introduction】 ■Signal Analyzer MSA538E Equipped with both real-time method using Fast Fourier Transform (FFT) and traditional sweep method, allowing the utilization of the advantages of both approaches. Model with EMI measurement function. - Measurement frequency: 20kHz to 3.3GHz ■Low Noise Amplifier MAP301/302 Ideal for measuring radiated noise. For low-cost pre-compliance EMI testing, the MR2300, which uses a spectrum/signal analyzer (MSA338E/438E/538E/558E) and a shielded room, is useful. Depending on the conditions, there may also be a possibility to estimate EMI in a very simple and even lower-cost manner.

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Simple measurement of radioactive noise

[Application Example] Low-cost and simple EMI measurement using a spectrum/signal analyzer and a biconical antenna.

【Product Introduction】 ■ Signal Analyzer MSA538E Equipped with both real-time method using Fast Fourier Transform (FFT) and traditional sweep method, allowing the utilization of the advantages of both approaches. Model with EMI measurement function. - Measurement frequency: 20kHz to 3.3GHz ■ Biconical Antenna MAN150/MAN150B A wideband, compact, and lightweight antenna. When environmental noise is sufficiently lower than the EMI limit level, simple EMI measurements can be conducted even in a typical laboratory setting.

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Simple Low-Frequency Radiation System

[Application Example] Construction of a Low-Frequency Radiation System at Low Cost

【Product Introduction】 ■Loop Antenna MAN120 A compact loop antenna with a diameter of 40 cm, suitable for low-frequency measurements. By limiting the frequency and radiation levels, it is possible to construct a radiation system in the low-frequency range at a low cost. This is effective when existing equipment cannot cover the low-frequency range or when there is a need to easily conduct radiation in a limited low-frequency range. Additionally, it can be used in combination with our company's anechoic chamber lineup.

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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 most applications in wireless information communication with an 8.5GHz bandwidth. - Measurement frequency: 50kHz to 8.5GHz

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Method for determining 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 sweep method, allowing the advantages of both approaches to be utilized. 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 instantaneous jitter measurement. Additionally, averaging can be used to obtain long-term RMS jitter.

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Example: How to use the DSRC antenna ME9301V with transmission power adjustment function.

[Application Example] Enabling communication in a narrow area by utilizing transmission power adjustment and reception sensitivity adjustment functions.

The DSRC roadside system ME9300 is a system that utilizes ETC (Electronic Toll Collection) used on highways. It communicates with the ETC onboard unit installed in vehicles to obtain a unique ID called WCN (Wireless Call Number). By verifying this WCN, it can be applied to vehicle entry and exit management and road congestion surveys between two points. Here, we will present the main features and applications of ME9301V. 【Product Introduction】 ■ DSRC Antenna ME9301V ■ Interface Box ME9302 ■ Dedicated I/F Cable (15m) ME9303 *For more details, please refer to the PDF materials or feel free to contact us. *For more details, please refer to the PDF materials or feel free to contact us.

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The relationship between the noise floor of the spectrum analyzer and the internal ATT.

[Application Example] This explains the relationship between the noise floor of the spectrum analyzer and the internal attenuator (ATT).

**Product Introduction** ■ Signal Analyzer MSA500 Series Equipped with both real-time method using Fast Fourier Transform (FFT) and traditional sweeping method. It allows for the utilization of the advantages of both methods. ■ Spectrum Analyzer MSA400 Series Compact and lightweight. A full-fledged spectrum analyzer with performance and functionality that rivals large bench-type models. When a signal above an appropriate level is applied to the mixer input, saturation can cause harmonic distortion and spurious signals, making accurate measurements impossible. To prevent this, an internal ATT is inserted before the mixer.

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Examples of applications of DSRC roadside systems outside of automobiles.

[Application Example] An example of utilizing the DSRC roadside system ME9300 outside of automobiles.

【Product Introduction】 ■DSRC Roadside System ME9300 A system that utilizes ETC (Electronic Toll Collection) used on highways for private purposes. The DSRC Roadside System ME9300 is a system that utilizes ETC used on highways. It communicates with the ETC onboard unit to obtain a unique ID for the onboard unit called WCN (Wireless Call Number). By utilizing this WCN, various application systems can be considered. In this case, we will demonstrate an example of utilization outside of automobiles, which typically do not have onboard units installed.

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Generation of modulated signals using an RF signal generator.

[Application Example] Generating input signals for the measurement target.

**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 both approaches. It is the most popular model in the MSA500 series. - Measurement Frequency: 20kHz to 3.3GHz ■ RF Signal Generator MSG703 Features IQ vector generation, comprehensive modulation capabilities, and sweeping functions. When designing products that process RF signals, it is essential to verify that the intended signal processing occurs as planned. The RF signal generator is responsible for generating the precise signals that need to be input. The RF signal generator not only produces simple sine waves but can also modify and output waveforms required for testing through modulation and sweeping. Our RF signal generator MSG703 allows for the setting of various parameters with its large screen and user-friendly interface. As an example of modulation, we will explain AM modulation.

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MSG703 as a vector signal generator

[Technical Data] RF Signal Generator MSG703 capable of outputting various phase-modulated signals.

**Product Introduction** ■ RF Signal Generator MSG703 Features IQ vector generation, comprehensive modulation functions, and sweeping capabilities. *For more details, please refer to the PDF document or feel free to contact us.* Currently, wireless communication is widely used not only in mobile phones and terrestrial digital TV but also in home appliances. As the amount of data handled has increased, modulation methods have also been improved. Phase modulation has now become the mainstream. In this article, we will explain how to output phase-modulated signals from the MSG703.

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RF Signal Generator MSG703

Equipped with enhanced modulation and sweeping functions.

- For the evaluation of wireless devices up to 3GHz. - As a signal generator for high-frequency immunity (EMC) testing. - For the evaluation of transmission characteristics of high-frequency filters, etc. - When equipped with an optional IQ modulator, it becomes a vector signal generator. ■ Frequency range: 5MHz to 3GHz ■ SSB phase noise: - Below -95dBc/Hz @ 1-3GHz, 20kHz offset - Below -100dBc/Hz @ 5M-1GHz, 20kHz offset ■ Maximum output level: <With ALC on> +14dBm @ 5MHz to <1.025GHz +13dBm @ 1.025 to <2.025GHz +11dBm @ 2.025 to <2.825GHz +10dBm @ 2.825 to 3GHz ■ Types of sweeping: List sweep, step sweep ■ Types of modulation: FSK modulation, PSK modulation, amplitude modulation (AM) ■ Interfaces: USB device, USB host, LAN (1000BASE-T) ■ Options: - IQ modulator MIQ700 - High stability time base MSG700-03

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[Case Study] Basics of Spectrum Analyzers You Can't Ask About Now (2)

Resolved with the MSA500 series signal analyzer! Introducing application examples.

Let me introduce RBW (Resolution Bandwidth). Even with the same input signal, the peak frequency and power values can differ depending on the RBW setting, so it is necessary to appropriately consider the RBW setting based on the signal being measured and the test content. To address this issue, we have the MSA500 series signal analyzer. Once the maximum signal level is searched, it is possible to perform detailed analysis of the signal in real-time mode. 【Case Study】 ■Challenges - Changing the RBW bandwidth can lead to different measurement results even for signals with the same maximum power. - If there are two or more frequency components within the RBW bandwidth, the power values will be summed and integrated, resulting in different displayed results. ■Solution - By pressing the "AUTO TUNE" key in sweep mode, the analyzer automatically searches for the maximum level signal within the measurable frequency range with optimal settings. - Detailed analysis of the signal can be performed in real-time mode. *For more details, please refer to the PDF document or feel free to contact us.

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[Example] Simple conduction interference test using a shield box

Reduce the burden of large-scale costs such as the installation of shield rooms! We provide a familiar testing environment.

We will introduce a simple conduction disturbance test using a shield box. Measure the superimposed RF current inside the shield box. Fix the DUT and combine it with EM clamps or probes, measuring based on the calibration values suited for the equipment. This reduces the significant cost burden of installing a shielded room and provides a more accessible testing environment. 【Application】 ■ Select appropriate clamps and CDN for each EUT ■ Start the test program and set the disturbance wave level ■ Apply at specified steps ■ Check/observe the condition of the EUT *For more details, please refer to the PDF materials or feel free to contact us.

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Radio Wave Dark Box (Millimeter Wave Compatible) 'MY6520'

Customizable! Millimeter wave compatible, compact, lightweight, and affordable domestic electromagnetic shielding box.

The "MY6520" is a compact and cost-effective RF shielded chamber (millimeter wave compatible) suitable for simple OTA testing (protocol functions, throughput, etc.) of 5G NR compatible terminals, devices, and chipsets. It supports frequencies from 700 MHz to 30 GHz and can be used for evaluations in both standalone (SA) and non-standalone (NSA) modes of 5G NR. 【Features】 ■ A small, lightweight, and affordable RF shielded chamber specialized for protocol function testing ■ Reduced internal reflections due to the characteristics of pyramid-shaped RF absorbers ■ Standard equipment includes a low-reflection EUT table and antenna mounting table ■ Factory options allow for the addition of RF connectors and changes to interface specifications ■ One-touch locking mechanism (with key) ■ Customization options available *For more details, please refer to the PDF materials or feel free to contact us.

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Evaluation of wireless IP transmission and communication characteristics of client terminal devices.

[Application Example] Preventing interference from surrounding noise, virtualizing communication characteristic evaluation, and stabilizing the measurement environment to ensure reproducibility of test results.

The development of wireless communication devices such as smartphones (mobile devices) and functional evaluation tests at the time of shipment greatly benefit from the use of electrical attenuators for assessing communication characteristics based on distance attenuation. Our high-speed programmable attenuator MAT series does not produce spike noise during attenuation level switching, allowing for uninterrupted virtualization of the mobile terminal's actual movement. By adopting a programmable attenuator, it is also possible to control it externally via GPIB or similar interfaces. This is particularly effective for creating unmanned testing environments and can be utilized for long-duration durability tests. Additionally, when installing wireless devices inside a radio anechoic chamber, they can be secured with specially developed fixtures for that specific test. By fixing the distance between the transmitting antenna and the receiving terminal, we achieve uniformity in the measurement environment, thereby improving the reproducibility of test results. 【Product Introduction】 ■ Radio Anechoic Chamber Taurus Series MY1520 ■ I/F Module ■ High-Speed Programmable Attenuator MAT800 Series ■ Portable Antenna M301–M309 *For more details, please refer to the PDF materials or feel free to contact us.

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Measurement of electric field strength using the antenna factor of a loop antenna.

[Application Example] Easily measure electric field strength from 50kHz to 30MHz with a handheld spectrum analyzer and loop antenna.

By using the antenna factor of the loop antenna MAN120, the electric field strength in the range of 50kHz to 30MHz can be measured with the handheld spectrum analyzer MSA438. 【Product Introduction】 ■ Spectrum Analyzer MSA438 ■ Loop Antenna MAN120 *For more details, please refer to the PDF document or feel free to contact us. This tool allows for easy and convenient electric field strength measurement at hand, and can be realized at a low cost. 【System Configuration】 ■ Spectrum Analyzer MSA438 ■ MSA438 Calibration Set ■ Loop Antenna MAN120 ■ BNC Cable 1.5m MC314 ■ Conversion Connector N(P)/BNC(J) MA307 ■ Conversion Connector N(J)/BNC(J) *For more details, please refer to the PDF document or feel free to contact us.

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[Application Example] A Method to Determine Power Loss from Return Loss Measurement

[Application Example] We measure return loss using a handheld spectrum analyzer with a tracking generator to determine power loss due to reflection.

With the MSA438TG and VSWR bridge, you can measure the return loss of the DUT. This return loss allows you to determine the extent of power loss that occurs. 【Product Introduction】 ■ Spectrum Analyzer MSA438TG ■ VSWR Bridge * For more details, please refer to the PDF document or feel free to contact us. ■ It can be realized at a low cost as a tool to easily measure return loss-related measurements at hand. 【System Configuration】 ■ Spectrum Analyzer MSA438TG ■ MSA438 Calibration Set ■ VSWR Bridge MVS300B ■ SMA Cable 3m MC202 ■ N-SAM Conversion Adapter MA306 * 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 apartment 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 target TV frequency and use the [SAVE function] of the MSA400(300) series to record the current status of the relevant frequency band. 【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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[Application Example] How to Utilize Web Cameras in Hand-in Radio Wave Dark Boxes

[Application Example] By adding an I/F module to the hand-in RF shielded box, it becomes possible to capture images of the DUT using a web camera.

The hand-in RF shielded box allows you to place devices under test (DUT) such as mobile phones, smartphones, smartwatches, tablet devices, wearable devices, and handheld game consoles with wireless communication functions into the RF shielded box. You can view the inside through the shielded window and operate the devices directly with your hands. Here, we will introduce a method for capturing the screen of the DUT. 【Product Introduction】 ■ Hand-in RF Shielded Box (Shield Box) MY3710 ■ IF Module IFM1 *For more details, please refer to the PDF document or feel free to contact us. An I/F module can be added as an option to the hand-in RF shielded box. By using an I/F module with a USB connector (such as IFM1), you can operate a USB-connected webcam installed inside the RF shielded box from a PC outside the box, allowing you to capture the screen of the DUT. 【System Configuration】 ■ Hand-in RF Shielded Box (Shield Box) MY3710 ■ IF Module IFM1 ■ Webcam (commercially available) *For more details, please refer to the PDF document or feel free to contact us.

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Radio wave measurement of drones using a handheld signal analyzer.

[Application Example] Utilizing the analysis capabilities of the MSA500 series signal analyzer to measure the radio waves used for remotely controlling drones.

As drones become smaller, more functional, and less expensive, they are expanding their presence in various fields, and it is expected that the drone market will continue to grow in size in the future. Moreover, since the 2.4GHz band is often used for remote control of drones, there is an increasing need to check for interference and radio wave disruption with other communication devices. Additionally, since drones are often operated outdoors, it is more convenient to be able to easily carry measuring instruments when conducting radio wave measurements. 【Product Introduction】 ■ Signal Analyzer MSA538 ■ Signal Analyzer MSA558 ■ WLAN Band Antenna M404 *For more details, please refer to the PDF document or feel free to contact us.

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Method for expanding the dynamic range of a spectrum analyzer equipped with a tracking generator.

[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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[Application Example] Electric Field Strength Automatic Measurement Solution

[Application Example] Automatically measures and analyzes just by traveling through measurement points.

The expressways are increasingly handling larger volumes and diversity of information each year due to information technology using wireless communication. Not only is there information on toll payment at ETC toll booths, but also the types of VICS, ITS spots, and FF antennas have become diverse, allowing for the handling of a wide variety of information. By using the program measurement mode of the electric field strength measurement system (ME9200), the hassle of switching measurement conditions while driving based on the frequency and modulation method of these various antennas is eliminated. Information about the antenna's position, frequency, and modulation method can be pre-entered into a program file, allowing for automatic measurement and analysis simply by driving through the measurement points. 【Product Introduction】 ■ ETC/ITS Spot Electric Field Strength Measurement System ME9200 *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ ETC/ITS Spot Electric Field Strength Measurement System ME9200 *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 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, it is possible to observe multiple channels 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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[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. A deterioration in 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, simplifying report creation ● Handy type with easy settings for field use (compact, lightweight, battery-operated for 4 hours), no commercial power outlet required 【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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Smartphone/Next-generation STB development electromagnetic shield box

[Application Examples] Development of multimedia broadcasting for mobile devices and next-generation STB terminals.

Using an anechoic chamber, we will develop multimedia broadcasting for mobile devices and next-generation STB terminals. We can provide a simplified testing space for interactive communication tests, etc. 1. Communication quality testing (blocking external noise such as mobile phone base stations and nearby interference) 2. Image condition verification during accumulated broadcasting reception (checking for image dropouts and freezes) 3. Interconnectivity verification tests for tethering functions, etc. (IOT tests, etc.) 【Product Introduction】 ■ Anechoic Chamber Taurus Series MY1510 ■ I/F Module IFM1 ■ Portable Antenna M304 *For more details, please refer to the PDF materials or feel free to contact us. 【System Configuration】 ■ Anechoic Chamber Taurus Series MY1510 *modified ■ I/F Module IFM1 ■ Portable Antenna M304 *For more details, please refer to the PDF materials or feel free to contact us.

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Field measurement and maintenance support for smart network wireless systems.

[Application Example] Smart Network Wireless System (920MHz Band and 2.4GHz Band) is optimal for field measurement, maintenance, and troubleshooting.

● When installing the concentrator, it is necessary to measure and investigate the radio wave environment at the installation site. A spectrum analyzer is used for measuring electric field strength. It is also useful for measuring the occupied bandwidth and transmission power level of access points on poles. ● When identifying the causes of communication quality deterioration, it is necessary to investigate other radio waves and noise that may cause interference. Intermittently occurring interference waves can be captured more efficiently using a real-time spectrum analyzer. ● Our handheld signal analyzer (real-time spectrum analyzer) MSA500 series is compact, lightweight, and battery-operated, allowing measurements in various fields such as densely built areas and high altitudes. For electric field strength measurements only, the spectrum analyzer MSA400 series is also available. ● Various measurement functions, such as time domain analysis and electric field strength measurement, help in the early resolution of maintenance issues and faults in the field. 【Product Introduction】 ■ Signal Analyzer MSA538 ■ Portable Antenna ■ Log-Periodic Antenna * For more details, please refer to the PDF document or feel free to contact us.

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Measurement of carrier frequency of modulated waves using a spectrum analyzer.

[Application Example] We will introduce a method for calculating the carrier frequency of modulated waves using our spectrum analyzer.

Typically, when measuring frequency, instruments such as frequency counters are used. However, when measuring the carrier frequency of modulated waves (such as QPSK, ASK, etc.), the presence of mixed frequencies near the carrier frequency makes it impossible to accurately measure the carrier frequency with a frequency counter. Particularly in the case of modulated waves used in communication, any deviation in the carrier frequency can lead to communication errors, making the accurate measurement of the carrier frequency a critical issue. By using our spectrum analyzer, it is possible to solve this problem. By directly measuring the spectrum of the modulated wave and performing simple analysis based on the results, it is possible to accurately calculate the carrier frequency. 【Product Introduction】 ■ Spectrum Analyzer MSA458 *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ Spectrum Analyzer MSA458 *For more details, please refer to the PDF document or feel free to contact us.

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Methods to prevent erroneous measurements 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, resulting in harmonic distortion and spurious signals, making accurate measurements impossible. Even signals outside the frequency measurement range can lead to incorrect measurements if they are above an appropriate level. 【Product Introduction】 ■ Spectrum Analyzer / Signal Analyzer *For more details, please refer to the PDF materials 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 materials 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 noise generated internally. The average noise level defines the impact of this noise. This is an important factor when measuring weak signals, as it becomes impossible to measure signals that fall below the average noise level. Therefore, the key point is how effectively to keep this average noise level low. Additionally, if signals cannot be captured even after optimizing the settings of the spectrum analyzer, measurement can be made possible 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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[Application Example] Spectrum Analyzer Customization Case

[Application Example] We would like to introduce a customization example of our handheld spectrum analyzer!

【Product Introduction】 ■Spectrum Analyzer MSA458 ■Signal Analyzer MSA558 *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■Spectrum Analyzer MSA458 ■Signal Analyzer MSA558 *For more details, please refer to the PDF document or feel free to contact us.

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[Application Example] Utilization of PC Logging Software for Spectrum Analyzers

[Application Example] We will introduce how to convert log data recorded by the logging software (MAS510) into a CSV file.

Logging software is a PC application that controls a spectrum analyzer (MSA500 series) via USB communication and allows for long-term recording of spectral data. It is ideal for monitoring abnormal signals, interference, and radio waves over day and night, as well as for long-term unmanned data recording. The log (spectrum) data is recorded in binary format, which can be converted to CSV files for use in Excel and other tools. 【Product Introduction】 ■ Signal Analyzer MSA500 Series *For more details, please refer to the PDF materials or feel free to contact us. 【System Configuration】 ■ Signal Analyzer MSA400 Series ■ Lithium-ion Battery MB400 ■ Wireless LAN Band Antenna M404 ■ Logging Software MAS510 ■ USB Cable MI400 *For more details, please refer to the PDF materials or feel free to contact us.

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Simple display of limit lines on the spare display screen (MSA400 series)

[Application Example] It will be possible to visually determine the standard of spectrum analyzer measurement results immediately after measurement.

Spectrum analyzers were previously used only by specialized technicians with knowledge of high-frequency measurements for laboratory and experimental purposes. However, due to the recent proliferation of information wireless communication devices, as well as the use of wireless communication in consumer electronics, automotive fields, and medical devices, spectrum analyzers have started to be used for service applications as well. Additionally, spectrum analyzers are also used in the production lines of these devices and products. When using spectrum analyzers for service applications or production lines, it is often the case that measurement results are evaluated against predefined setting parameters. In such cases, we will introduce a method that allows anyone to easily measure and visually assess the compliance of the measurement results immediately. 【Product Introduction】 ■ Spectrum Analyzer MSA400 Series *For more details, please refer to the PDF document or feel free to contact us.

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[Application Example] Easy Radio Wave Experiments with a Spectrum Analyzer

[Application Example] A Simple Method for Conducting Radio Wave Experiments

Electromagnetic waves are now everywhere around us, but conducting experiments with them requires expensive and complex experimental equipment. With the handheld spectrum analyzer MSA300 series, along with the optional whip antenna and wireless transmitter, radio wave experiments can be easily conducted. 【Product Introduction】 ■ Spectrum Analyzer MSA338 ■ Whip Antenna M305 *For more details, please refer to the PDF document or feel free to contact us. ■ Features of the MSA300 Series - Compact and lightweight, making it ideal for outdoor observations. - Various settings can be made without complex button operations. - Settings can be saved in the device's memory, allowing experiments to be conducted without needing to set them each time. 【System Configuration】 ■ Spectrum Analyzer MSA338 ■ Ni-MH Battery MB300 ■ Whip Antenna M305 *For more details, please refer to the PDF document or feel free to contact us.

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Switching inverter circuit noise measurement tool

[Application Example] We propose a set of tools for measuring noise in AC/DC and DC/AC conversion circuits.

【Product Introduction】 ■ Signal Analyzer MSA438E ■ Line Impedance Stabilization Network (LISN) MPW201B ■ Loop Antenna MAN120 ■ Preamp / Near Field Probe ■ Magnetic Field Probe MP-10L *For more details, please refer to the PDF document or feel free to contact us.

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Measurement example of ETC/ITS spots using a signal analyzer.

[Application Example] The trigger function and real-time mode measurement reliably capture burst signals from ETC/ITS spots.

The burst signals from ETC/ITS spots that do not occur regularly cannot be measured well with a sweep-type spectrum analyzer due to their very short signal intervals. By measuring with the real-time mode of the signal analyzer MSA500 series, it is possible to measure without missing the signal spectrum. 【Product Introduction】 ■ Signal Analyzer MSA558 *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ Signal Analyzer MSA558 *For more details, please refer to the PDF document or feel free to contact us.

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Examples of using the real-time trigger function of a signal analyzer.

[Application Example] Introducing the use case of the real-time trigger function of the MSA500 series signal analyzer.

The real-time mode of the MSA500 series signal analyzer is equipped with a powerful trigger function. This trigger function allows you to measure the state just before and after a waveform fluctuation. 【Product Introduction】 ■ Signal Analyzer MSA500 Series *For more details, please refer to the PDF document or feel free to contact us. We will explain the pre-trigger function using the example of frequency modulation where the carrier frequency fluctuates. We will show a measurement example where the carrier frequency is set to the center frequency, and a trigger is applied with the trigger slope set to falling edge using channel power trigger. 【System Configuration】 ■ Signal Analyzer MSA500 Series *For more details, please refer to the PDF document or feel free to contact us.

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[Application Example] Usage of Dual Waveform Display in Signal Analyzers

[Application Example] Introducing the usage of dual waveform display of the MSA500 series signal analyzer.

In the real-time mode of the MSA500 series signal analyzer, it is possible to display two waveforms: one on the SUB screen (lower section) and one on the MAIN screen (upper section). In the two-waveform display, (1) set the waveform to be displayed on the SUB screen (lower section) and select "Measurement." → (2) While viewing the waveform on the SUB screen (lower section) of all captured frames, set the analysis frame and type of waveform to be displayed on the MAIN screen (upper section) and select "Analysis." These two steps are performed. 【Product Introduction】 ■ Signal Analyzer 500 Series *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ Signal Analyzer 500 Series *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 ■ Conversion 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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[Application Example] Weather Radar Measurement Using Signal Analyzer

[Application Example] An example of radar wave measurement in 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 width and brief occurrence time. As a tool to address these challenges, our handheld signal analyzer (MSA558) and 5GHz band antenna (M406) can 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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Measurement of conducted noise from LED lighting using a signal analyzer.

[Application Example] Conducted noise emitted by LED lighting can be easily analyzed using a handheld real-time signal analyzer.

【Product Introduction】 ■ Signal Analyzer MSA538 *For more details, please refer to the PDF document or feel free to contact us. ● Connect the AC line of the LED lighting to the LISN and then connect its output to the upconverter. ● The upconverter extends the lower frequency range of the MSA538, allowing measurements from 9kHz. ● The signal analyzer can analyze signals in both the frequency domain and the time domain. 【System Configuration】 ■ Signal Analyzer MSA538 ■ LISN ■ Upconverter *For more details, please refer to the PDF document or feel free to contact us.

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Measurement of BS/CS converter output using a signal analyzer.

[Application Example] This introduces a method for measuring the output of BS/CS converters 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 ■ Bias Tee PD264 ■ DC Power Supply 11/15V ■ Cables *For more details, please refer to the PDF document or feel free to contact us.

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Measurement of 920MHz band wireless module using a signal analyzer.

[Application Example] Measurement of 920MHz band wireless modules can be easily performed using a handy real-time signal analyzer.

【Product Introduction】 ■ Signal Analyzer MSA538 ■ Portable Antenna M401–407 *For more details, please refer to the PDF document or feel free to contact us. 【System Configuration】 ■ Signal Analyzer MSA538 ■ Lithium-ion Battery MB400 ■ Sleeve Antenna M401 *For more details, please refer to the PDF document or feel free to contact us.

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