MIL tantala hibrīda kondensators, CBEN
❖ Raksturlielumi un Pieteikums
•Viss tantala korpuss, hermētisks nosegts, kvadrāts, mazs izmērs, radiālie vadi, Polarizēts
•Šis produkts sastāv no tantala kondensatora un elektroķīmiskā kondensatora
•Stabila elektriskā veiktspēja, augsta uzticamība, gara dzīve, liels enerģijas blīvums uz tilpuma vienību, uzkrāt daudz enerģijas.
• Izmanto kā akumulatoru enerģijas pārveidošanas ķēdē un strāvas impulsa ci「slēgtā, Veiciet enerģijas uzglabāšanu,filtrs, izslēgšanas aizkave ķēdē.
• Standarta: GJB733A-96,QJ/PWV500-2013,QJ/PWV519-2013,QJ/PWV518-2013
Tantalum hybrid capacitor application for defense & aviācija
Tantalum hybrid capacitors have a wide range of applications in the defense and aerospace fields, and the following are some specific application scenarios:
1,high-speed communication equipment: tantalum hybrid capacitors can be used in high-speed communication equipment, such as radar systems,
satellite communication equipment, utt. These devices require fast signal transmission and processing capabilities, and tantalum hybrid capacitors can provide a stable power supply to help achieve high-speed data transmission.
2, military aircraft and missile systems: tantalum hybrid capacitors are widely used in military aircraft and missile systems. These systems require high temperature,
high voltage and high frequency characteristics of capacitors, and tantalum hybrid capacitors can meet these needs, and have a high capacitance density and energy density.
3, rockets and spacecraft: In rockets and spacecraft, tantalum hybrid capacitors are used to store and release energy to supply the work of various systems.
Its high energy density and high temperature stability make it an ideal choice.
4, defense system: tantalum hybrid capacitors play an important role in defense systems, such as radar jamming systems, missile defense systems, utt.
These systems require stable power and energy reserves to cope with complex operational environments and mission requirements.
Jinpei brand tantalum hybrid capacitors are widely used in the field of defense and aerospace because of their high performance,high stability and high energy density (600uF~230000uF/ CBEC CBEL sērija).
❖ Tehnisks Performance
Temperatūras diapazons: -55'C-+125•c C >85″C izmantojiet samazinātu spriegumu) Uzglabāt vides temperatūru: -62'C-+130'C
kapacitāte pielaide: K = ±10%; M=±20 : Q=-10%–+30%
DAĻAS NUMURA PIEMĒRS
Piezīmes
• Tantala kondensatorus nevar izmērīt ar multimetru.(Viegli radīt neatgriezeniskus bojājumus un izraisīt atgrūšanu, mainot polaritāti)
•Kapacitāte, OF mēra frekvenci: 100Hz,Līdzstrāvas nobīdes spriegums U-=2,2% V,Apmaiņas nobīdes spriegums U-= 1,0°-o.sV(efektīvā vērtība), mērīšanas metode ir sērijveida ekvivalenta ķēde
•Izmēriet noplūdes strāvu 「pie 125 ℃,lūdzu, izmantojiet samazinātu spriegumu. DCL lasīt plkst 5 minūtē
• Īpaša izmēra un lielas kapacitātes produkti, lūdzu, vienojieties ar mums
Pieteikums
Capacitors applicationfor radar-transmitted pulse storage
The pulse storage of radar transmission refers to the storage of the pulse signal transmitted by radar for processing and analysis after receiving the echo signal. Pulse storage is often used for specific radar applications, including range measurement, target recognition, and imaging.
The basic principle of pulse storage is to convert the pulse signal emitted by the radar into digital form and store it in memory or other media. When the radar receives the echo signal, the information about the target can be extracted by correlation processing with the stored pulse signal.
The main advantage of pulse storage is that a large number of pulse signals can be stored in a short period of time, and it can be processed and analyzed flexibly. This method can improve the detection performance and target recognition ability of the radar system, but also reduce the complexity and cost of the system.
In modern radar systems, pulse storage is often combined with other techniques, such as pulse compression, frequency Doppler processing, uc, to achieve higher resolution and accuracy. Papildus, with the improvement of computing power, the radar system based on pulse storage can also realize real-time signal processing and image reconstruction, so as to achieve better results in target detection and tracking.
Pulse storage can be achieved by capacitors, and Jinpei hybrid tantalum capacitors can be charged during the off phase of the pulse and then discharged during the on phase to supplement the power provided by the radar system power supply