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ID: P08-100449

Keysight N9040B-550

2 Hz to 50 GHz

ID: P08-100449
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Keysight N9040B-550

2 Hz to 50 GHz

새 제품 수준의 리퍼브 제품
교정 + 측정 보고서 포함
거의 새 제품과 같은 보증 기간
키사이트 케어 이용가능
부속품 포함
설정(구성) 가능한

25% 할인

KRW 296,818,000

정가 KRW 395,757,333.33

세금 미포함
가격 알림 설정
저장
전문가 및 산업용으로만 사용 가능
무료 배송. 말레이시아 에서 발송됩니다. South Korea 로 4주 이내에 배송됩니다.
견적 요청
현재 고객님의 지역에서는 온라인 결제가 지원되지 않습니다. 구매를 원하실 경우, 견적을 요청해 주세요.

키사이트 프리미엄 중고

Keysight  N9040B-550 KRW 296,818,000

From

KRW 296,818,000 25% 할인

견적 요청


550Frequency Range, 2 Hz To 50 GHz 설치됨
H1GAnalysis Bandwidth, 1 GHz 설치됨
RTSReal time data streaming 설치됨

12MOn request
1CMRack mount flange kit 265.9mm H (6U) - two flange brackets, two standard rails On request
1CPRack mount flange and handle kit 265.9mm H (6U) - two brackets, handles, rails On request
24MOn request
2CMRack mount flange kit 265.9mm H (6U) - two flange brackets, two standard rails, DARK COLORS On request
2CPRack mount flange and handle kit 265.9mm H (6U) - two brackets, handles, rails, DARK COLORS On request
36MOn request
60MOn request
A6JANSI Z540 compliant calibration On request
ALVAuxiliary log video output On request
N90EMQAMBWLAN 4096QAM modulation On request
AMGCalibration + Uncertainties + Guardbanding (Accredited) On request
B25Analysis Bandwidth, 25 MHz (standard) On request
B2XAnalysis bandwidth, 255 MHz On request
B40Analysis bandwidth, 40 MHz On request
B5XAnalysis bandwidth, 510 MHz On request
N90EMRBEBResolution Bandwidth Extended On request
CRPConnector Rear, Programmable IF output On request
N90E1EDPBEnhance Display Package On request
N90EMEDPBOn request
N90EMTDSBTime Domain Scan On request
DVRUSB DVD-ROM/CD-R/RW drive On request
EA3Electronic attenuator, 3.6 GHz On request
KB2USB keyboard Smaller keyboard On request
N9061EM0ERemote Language Compatibility Measurement Application On request
N9062EM0ESCPI Language Compatibility Measurement Application On request
N9063EM0EAnalog Demodulation Measurement Application On request
N9067EM0EPulse Analysis Measurement Application On request
N9068EM0EPhase Noise Measurement Application On request
N9069EM0ENoise Figure Measurement Application On request
N9071EM0EGSM/EDGE/Evo Measurement Application On request
N9073EM0EW-CDMA/HSPA+ Measurement Application On request
N9077EM0EWLAN 802.11a/b/g/j/p/n/af/ah Measurement Application On request
E9068EM0EOn request
N6141EM0EEMI Measurement Application On request
N9080EM0ELTE and LTE-Advanced FDD Measurement Application On request
N9054EM0EVector Modulation Analysis Digital Demodulation Measurement Application On request
N9081EM0EBluetooth (TM) Measurement Application On request
N9082EM0ELTE and LTE-Advanced TDD Measurement Application On request
N9084EM0EShort Range Communications and IoT Measurement Application On request
N9085EM0E5G NR Measurement Application On request
N9054EM1EVector Modulation Analysis Custom OFDM Application On request
N9080EM3ENB-IoT and eMTC FDD Measurement Application On request
N9077EM3EWLAN 802.11ac/ax Measurement Application, limited On request
N9077EM4EWLAN 802.11be/bn Measurement Application, limited On request
N9080EM4ELTE V2X measurement application On request
N90EMEMCBBasic EMC Functionality On request
MLPMinimum loss pad, 50 to 75 ohms On request
MSEMouse, USB On request
P08Preamplifier, 8.4 GHz On request
P13Preamplifier, 13.6 GHz On request
P26Preamplifier, 26.5 GHz On request
N90EMFP2BFast power On request
P44Preamplifier, 44 GHz On request
P50Preamplifier, 50 GHz On request
RTRReal-time spectrum recorder and analyzer application example On request
RTSReal time data streaming On request
N90EMESCBExternal Source Control On request
SF1Security features, exclude launching programs On request
SF2Security features, prohibit saving results On request
SF3Security feature, secure RAM disk boot On request
N90EMPSMBPower Suite Measurement Application On request
N90EMFT1BFrequency Mask Trigger, Basic Detection On request
N9040RT1BReal-time analysis up to maximum available BW, Basic Detection On request
N9040RT2BReal-time analysis up to maximum available BW, Optimum Detection On request
N90EMFT2BFrequency Mask Trigger, Optimum Detection On request
N90EMDUABDuplex IF RTSA On request
W11On request
YAVScreen video, log video and linear video On request

옵션 및 부속품 추가 시 배송 시간에 영향을 미칠 수 있습니다.

맞춤 견적을 통해 이 모델의 커스텀 버전을 요청하세요.


See the Real Performance of Your Design

The ultimate performance of our UXA signal analyzers lets you characterize today’s most challenging signals — fast-hopping, wideband, transient — in 5G, 802.11ax/ay, satellite, radar, electronic warfare, and more. You will be able to fully understand the purity of your design with industry-leading phase noise and wide spurious-free dynamic range.

  • Get wider (up to 1 GHz), deeper views of your most challenging signals
  • Measure the spectral purity of your design with industry-leading phase noise and 78 dBc spurious-free dynamic range across 510 MHz bandwidth
  • Extend RF input frequency up to 110 GHz with Keysight smart mixers and up to terahertz frequencies with third- party solutions
  • Capture intermittent signals with gap-free, real-time spectrum analysis
  • Capture lower-level spurious signals with an improved DANL low noise path
  • See more and take your design farther with the 14.1-inch screen

Specifications

  • DANL @1 GHz: -174 dBm
  • Maximum Analysis Bandwidth: 1 GHz
  • Maximum Real-Time Bandwidth: 510 MHz
  • Phase Noise @1 GHz (10 kHz offset): -135 dBc / Hz
  • Type: Benchtop


키사이트 프리미엄 중고 제품 목록에는 새 제품과 같은 액세서리(예: 전원 코드)가 포함됩니다.

제공된 목록에 포함되지 않은 다른 액세서리는 키사이트 중고 제품 또는 키사이트 프리미엄 중고 제품의 구매 시 별도의 비용으로 구매할 수 있습니다. 추가 액세서리나 지원에 관심이 있는 경우 코멘트란에 구체적으로 명시해 주세요.

별도 또는 구매 후 주문을 원하시는 경우 귀하의 지역 키사이트 사무실이나 키사이트 파트너에 문의하십시오. 또는 귀하의 지역에서 이용 가능하다면 온라인 스토어를 확인해 주세요.

시작할 준비가 되셨나요 ?

무엇을 얻게 될까요

  • Keysight N9040B-550 Spectrum Analyzers
  • 최신의 교정
  • 거의 새 제품과 같은 스탠다드 액세서리
  • 거의 새 제품과 같은 보증 기간
  • 합의된 설정(구성)

What You Can Add

  • 보증 기간 연장
  • 키사이트 케어 보장 / 연장
  • 교정 계획
  • 소프트웨어 (모델에 따라 상이)

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궁금한 사항이 있으시면 언제든지 연락주세요. 도와드릴 준비가 되어 있습니다.!

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Calibration Full Full As listed
Accessories New New As listed
Warranty 1 to 5 Years Like New 90 Days Warranty
Customization Possible Possible Limited

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Customization is generally possible with our Keysight Premium Used equipment. The majority of our Keysight Premium Used equipment can be configured just the way you need it. Options can be added at additional cost.

Customizing Keysight Premium Used equipment might change the delivery and lead time of the item.

Some Keysight Used products cannot be customized. Use the contact option on the product page to check with the our eStore team.

Keysight Premium Used Equipment Typically Comes with Like-New Warranty and the Same Accessories as New Products:

  • Detailed Listing Information: For precise details about the included accessories, please refer to the product listing.
  • Optional Add-Ons: At the bottom of each listing, you can see the accessories that are included in the offer and what you can add.

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Additional Accessories and Support: 

  • Keysight Premium Used: Keysight Premium Used listings include like-new accessories like power cords. 
  • Additional Accessories: Additional accessories that are not listed and included in the offer can be purchased separately at an extra cost with your purchase of a Keysight Used or Keysight Premium Used unit. Please specify in the comment field which additional accessories or support you are interested in. 
  • Post-Purchase Ordering: For separate or post-purchase ordering, please contact your local Keysight office or Keysight Partner here. Or, if available for your region, check our online store here.

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최고 품질의 중고 장비

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80년 이상
품질 혁신 선도
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[더 알아보기] ­에 대한 80년 이상
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새 제품 수준의 인증 장비

프리미엄 중고 장비
  • 101개 항목의 점검 리스크
  • 최신 펌웨어/소프트웨어
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추가 절약

OEM 품질의 장비를
최대 90% 할인 혜택으로
  •  온라인 구매 시, 추가 5% 할인
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스펙트럼 + 신호 분석기 간단 정보

Spectrum + Signal Analyzers Quick-Facts

A signal analyzer is a device used to test and measure electronic signals. Types of signals can vary, including voltage, current, and radiofrequency. Signal analyzers vary in their capabilities and features, depending on the application. There are many types of signal analyzers, but the most common type is an oscilloscope. Other types include spectrum analyzers, network analyzers, and signal generators.

An oscilloscope is a device used when designing electronic systems that allows a signal to be viewed as a waveform. A spectrum analyzer measures the amplitude and frequency of signals over a specific period of time. A network analyzer analyzes circuits without having access to their design details; this can be helpful when there is a delay between creating a circuit and testing it. A signal generator generates signals which are then used by other devices.

  • There are many uses for a signal analyzer, depending on the type of device and features available. Some standard capabilities include:

  • Generating and analyzing signals

  • Magnifying and analyzing large signals

  • Displaying waveforms of varying types

  • Displaying the full frequency range of a signal, including visual representations of different frequencies and noise levels

A signal analyzer analyzes signals that have already been generated, whereas a spectrum analyzer is used to discover frequencies or actually generate frequencies itself.

A spectrum analyzer performs real-time spectrum analysis and measures instantaneous power or peak power, voltage, or current, depending on the type of signal being analyzed. It is also often used to monitor electromagnetic interference in circuits and devices.

On the other hand, a signal analyzer can only measure signals that are already present; it cannot be used to discover or analyze frequencies. Its purpose is to help the user identify electronic circuit problems and understand how the circuit is performing.

The main difference between a signal analyzer and an oscilloscope is that a signal analyzer analyzes the voltage of a signal over a specific period of time. In contrast, an oscilloscope extracts the timing information of a signal.

An oscilloscope is a type of signal analyzer used to measure voltage signals over time. It has various features, including analog and digital functions, advanced triggering capabilities, and connectivity options. It is used to analyze signals from many different sources, such as time-domain signals, frequencies from radiofrequencies, or extremely low-frequency sources.

A signal analyzer is used to analyze signals that have already been generated. A signal analyzer is often used to monitor electromagnetic interference in circuits and devices, whereas an oscilloscope can only measure signals that are already present.

Figure. 2 Oscilloscope vs. Signal Analyzer

Read our oscilloscope basics guide to learn more about oscilloscopes and their uses. To see our full range of new and used oscilloscopes, visit our product listing page.

A vector network analyzer (VNA) characterizes RF and microwave components — amplifiers, filters, and antennas — by measuring S-parameters such as gain, reflection, and insertion loss from the transmitted and reflected signals. Unlike a signal analyzer, it performs advanced analysis of both transmitted and received signals. It is different from a signal analyzer because it performs a live, real-time, analysis of signals on the device under test. In contrast, a signal analyzer only analyzes data after the signal has been created.

A network analyzer can also perform analysis and detect problems that prevent a signal from reaching its destination. For example, it can detect issues with cabling, connectors, or faulty equipment. It can also help resolve RF spectrum and Wi-Fi issues, such as interference and signal loss.

A signal analyzer is used by engineers to identify problems in electronic circuits and to understand how a circuit is behaving; for example, monitoring electromagnetic interference between multiple signals or devices. This makes it useful for testing and debugging circuits that use radio signals or other powerful sources of potential interference.

An antenna's impedance refers to the way it responds to signals from specific frequencies. If you want to know what sort of wireless signal a device is sending, you should evaluate the antenna's impedance with a spectrum analyzer. The device would help you determine whether or not your antenna is being affected by noise, which can negatively impact performance.

To measure your antenna's impedance, you can attach a spectrum analyzer to the end of the coaxial cable connected to the back of your antenna. The device will then calculate the impedance being transmitted once it goes through your coaxial cable.

Phase noise is a type of signal that often disrupts or interferes with wireless communication. It is a problem for devices that operate in the wireless frequency spectrum. If phase noise is common across specific frequencies, it can drown out other signals.

There are many different types of phase noise, and each one can affect your wireless technology differently. A signal analyzer measures the phase noise across different frequencies. The device will help you to determine whether your intended wireless communication needs some sort of interference protection.

To measure your device's phase noise with a signal analyzer, you can attach the device to the input of your receiver. This will allow the signal analyzer to calculate how much phase noise is being sent through your wireless communication devices.

The return loss is the measurement of how much signal is reflected or wasted at a particular point. It is a measurement of how much energy is being lost in transmission. You can measure return loss with a spectrum analyzer which may enable you to improve the power and efficiency of your wireless connection.

If the return loss is too high, it could indicate power-management issues within your system. A signal analyzer can help you determine whether the return loss is too high, and help you find any hardware issues needing to be resolved. The device can notify you when your power-management settings fall below requirements for successful wireless communication.

To test a device’s return loss with a signal analyzer, plug the spectrum analyzer into the end of a coaxial cable connected to your intended transmitter. The device will determine how much signal is lost after it goes through the cable and exits to reach its intended recipient.

For additional information about how to use your spectrum analyzer to measure return loss, view “Features Resources” for a technical overview of a basic spectrum analyzer as well as an example of how to measure the return loss of an antenna.