N1913A
RÉSUMÉ TECHNIQUE N1913A :
Le wattmètre RF Agilent N1913A est conçu pour des mesures précises de puissance dans une large gamme de fréquences. Il fonctionne de 9 kHz à 110 GHz avec une dynamique de -70 à +44 dBm, en fonction de la sonde utilisée. Il est équipé d’une connexion USB et LAN pour une intégration facile. Son écran couleur permet une visualisation claire des données.
Le wattmètre RF Agilent N1913A est un appareil de mesure de puissance performant. Voici ses principales caractéristiques :
Type de produit : Wattmètre RF monocanal
Plage de fréquence : 9 kHz à 110 GHz (selon capteur)
Plage dynamique : −70 à +44 dBm (selon capteur)
Vitesse de mesure : 400 lectures/s
Écran : Couleur haute résolution
Connectivité : USB, LAN LXI-C
Compatibilité capteurs : séries N8480, 8480, U2000 et E (hors E9320)
Logiciel : BenchVue BV0007B inclus
Le Keysight / Agilent N1913A est un wattmètre RF monocanal conçu pour la mesure précise de puissance RF et micro-ondes dans les environnements de test, développement et calibration d’équipements électroniques. Compatible avec une large gamme de capteurs de puissance Keysight (séries N8480, 8480, U2000 et E), il permet de réaliser des mesures fiables sur une plage de fréquences allant de 9 kHz à 110 GHz, selon la sonde utilisée.
Doté d’un écran couleur haute résolution et d’une connectivité USB et LAN LXI-C, le N1913A s’intègre facilement dans les bancs de test automatisés RF. Sa large dynamique de mesure de −70 à +44 dBm (selon capteur) permet l’analyse de signaux RF faibles ou puissants. Le wattmètre prend également en charge l’automatisation des mesures via le logiciel BenchVue, facilitant le contrôle de l’instrument et l’enregistrement des résultats.
TYPICAL USE AND SECTOR
Pour KEYSIGHT / AGILENT / HP N1913A
Le wattmètre RF N1913A vous permet de valider vos systèmes et assure une acquisition rapide des données.
This refurbished instrument offers performance comparable to new and helps to reduce acquisition costs.
Applications :
- Electricity & testing
- Continuity measurement
- Isolation tests
- Quality Control & Metrology
Sectors :
- Energy (production & distribution)
- Electronics & instrumentation
Designed for :
- Metrology technician
- Industrial buyer
This reconditioned equipment can be made available quickly with ISO 17025 verification, and combines reliability, economy and durability.
Test benches: how refurbishment guarantees operational continuity in defence
Defence
Industrial maintenance
Metrology & accredited laboratories
How a CNRS laboratory avoided 4 months of downtime and €91,000 in additional costs thanks to a reconditioned test device
Industrial maintenance
Public research (CNRS, academic laboratories)
CSR & circular economy

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practical questions about Electrical Test and Measurement
01
Why can an electrical measurement be accurate... but not usable?Because a correct value isolated from its context has little meaning. The actual load, the temperature, the transient regime or the connection mode all have a major influence on interpretation. In electrical testing, relevance depends as much on the measurement conditions as on the intrinsic accuracy of the instrument.
02
What's the difference between measuring to diagnose and measuring to certify?Diagnosis aims to understand a behaviour or locate a fault, and tolerates a certain methodological flexibility. Certification, on the other hand, requires strict procedures, traceable instruments and documented repeatability. The same device can be used for both purposes, but not without adapting the protocol and the level of requirements.
03
Why is safety class as critical as precision?Because reliable measurement should never be at the expense of operator safety. An unsuitable CAT class can expose you to destructive overvoltages, even with a very accurate instrument. In an industrial or energy environment, electrical robustness often takes precedence over the last digit of resolution.
04
When is a specialised instrument preferable to a universal multimeter?As soon as the measurement becomes critical or repetitive. Micro-ohmmeters, megohmmeters or power analysers offer dedicated methods that are more stable and more reproducible than measurements taken with a general-purpose tool. They reduce interpretation errors and provide greater security for technical decisions.
05
Is reconditioned electrical equipment suitable for demanding environments?Yes, as long as it is requalified and documented. Electrical instruments are based on stable, proven architectures. Serious reconditioning, including functional and metrological verification, can deliver performance levels that are suitable for maintenance, production and R&D, with better control of lead times and costs.
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