page_banner (1)
page_banner (2)
page_banner (3)
page_banner (4)
page_banner (5)
  • RF High Power Broadband pouvwa anplifikatè 90 degre kouple ibrid
  • RF High Power Broadband pouvwa anplifikatè 90 degre kouple ibrid
  • RF High Power Broadband pouvwa anplifikatè 90 degre kouple ibrid
  • RF High Power Broadband pouvwa anplifikatè 90 degre kouple ibrid
  • RF High Power Broadband pouvwa anplifikatè 90 degre kouple ibrid

    Karakteristik:

    • Bande laj
    • Segondè pouvwa
    • Pèt ensèsyon ki ba

    Aplikasyon:

    • Anplifikatè pouvwa
    • Emisyon
    • Tès Laboratwa
    • Telecom

    Yon kouple ibrid 90 degre se yon aparèy mikwo ond ki itilize pou divize yon siyal an de siyal egal epi retade yo pa 90 degre nan faz.Yo gen karakteristik sa yo:

    1. Segondè separasyon: kapab separe siyal orthogonal ak vètikal polarize ak konvèti yo nan de siyal ak yon diferans faz nan 90 degre.
    2. Pèt ensèsyon ki ba: ka segman siyal la pandan y ap minimize enpak la sou siyal la, kidonk kenbe pèt ensèsyon ki ba.
    3. Band: Li ka opere sou yon ranje frekans lajè, fè li apwopriye pou aplikasyon pou divès kalite.
    4. Konsistans: Li ka kenbe konsepsyon komen ak espesifikasyon nan diferan anviwònman, sa ki pèmèt operasyon efikas nan plizyè sistèm.
    5. Konpleksite ki ba: estrikti relativman senp, fasil pou fabrike ak entegre nan sikui gwo echèl.

    Aplikasyon:

    Kouplè ibrid 90 degre yo se yon fòm espesyal kouple bidireksyon ki gen objektif sa yo:
    1. Faz shifter: Yon kouple ibrid 90 degre souvan itilize kòm yon shifter faz, ki ka divize yon siyal opinyon an de chanèl, youn nan ki gen menm faz ak siyal orijinal la ak lòt la se 90 degre diferan (sa vle di orthogonal) soti nan siyal orijinal la, konsa reyalize faz chanjman fonksyon.
    2. Mikwo ond mixer: kouple ibrid 90 degre yo ka itilize tou kòm yon pati nan mixer frekans mikwo ond lan.Nan yon mixer, fonksyon an nan yon kouple ibrid 90 degre se ajoute siyal la RF nan siyal la ki te pwodwi pa osilator lokal la (LO), kidonk jenere siyal konvèsyon monte desann.
    3. Divizeur pouvwa de fason: Depi kouple ibrid 90 degre yo ka divize siyal la opinyon an de fason, li ka itilize kòm yon divize pouvwa de fason asire ke siyal la atribye ba gen diferans faz orthogonal lè yo resevwa pouvwa egal.
    4. Pou tès radyo ak mezi: kouple ibrid 90 degre yo ka itilize pou teste kondisyon k ap travay nan ekipman radyo.Kòm li ka divize siyal la opinyon an de chanèl, youn nan yo ka itilize kòm yon siyal referans pou kalibre ekipman an mezi.

    Qualwavefouni bande laj ak gwo pouvwa 90 degre kouple ibrid nan yon pakèt domèn soti nan 50MHz a 40GHz.

    img_08
    img_08

    Nimewo Pati

    Fich done

    Frekans

    (GHz, min.)

    xiaoyudengyu

    Frekans

    (GHz, Max.)

    dayudengyu

    Pouvwa

    (W)

    dengyu

    Pèt Ensèsyon

    (dB, max.)

    xiaoyudengyu

    An karantèn

    (dB, min.)

    dayudengyu

    Balans anplitid

    (± dB, max.)

    xiaoyudengyu

    Balans Faz

    (± degre, max.)

    xiaoyudengyu

    VSWR

    (Maks.)

    xiaoyudengyu

    Konektè

    Tan plon

    (semèn)

    QHC9-1.6-30-K25-N pdf 0.0016 0.03 250 0.2 25 ± 0.1 ±3 1.3 N 3 ~ 5
    QHC9-50-250-1-S pdf 0.05 0.25 1 1.6 15 ±0.5 ±6 1.5 SMA 3 ~ 5
    QHC9-80-1000-K2-N pdf 0.08 1 200 0.9 16 ±1.3 ±8 1.35 N 3 ~ 5
    QHC9-100-140-10-S pdf 0.1 0.14 10 0.5 18 ±0.7 ±5 1.3 SMA 3 ~ 5
    QDHC9-100-520-K2 pdf 0.1 0.52 200 0.45 17 ±0.75 ±5 1.3 - 3 ~ 5
    QDHC9-100-520-K8 pdf 0.1 0.52 800 0.42 16 ±0.75 ±5 1.3 - 3 ~ 5
    QHC9-106-176-K2-N pdf 0.106 0.176 200 0.25 20 ±0.45 ±2 1.25 N 3 ~ 5
    QHC9-225-400-50-S pdf 0.225 0.4 50 0.3 20 ±0.5 ±4 1.25 SMA 3 ~ 5
    QHC9-225-400-K2-N pdf 0.225 0.4 200 0.25 20 ±0.6 ±2 1.25 N 3 ~ 5
    QHC9-300-6000-30-S pdf 0.3 6 30 2.2 16 1.1 7 1.5 SMA 3 ~ 5
    QHC9-400-500-10-S pdf 0.4 0.5 10 0.5 20 ±0.5 ±3 1.3 SMA 3 ~ 5
    QHC9-400-650-K8-N pdf 0.4 0.65 800 0.5 16 ±0.6 5 1.35 N 3 ~ 5
    QHC9-500-1000-50-S pdf 0.5 1 50 0.3 22 ±0.5 ±2 1.25 SMA 3 ~ 5
    QHC9-500-3000-10-S pdf 0.5 3 10 1.1 20 ±0.9 ±7 1.3 SMA 3 ~ 5
    QHC9-500-6000-30-S pdf 0.5 6 30 1.4 19 0.5 5 1.4 SMA 3 ~ 5
    QHC9-500-9000-30-S pdf 0.5 9 30 1.8 19 0.7 5 1.4 SMA 3 ~ 5
    QHC9-600-18000-30-S pdf 0.6 18 30 3 16 1 8 1.4 SMA 3 ~ 5
    QSHC9-800-4200-K1 pdf 0.8 4.2 100 0.8 15 ±1 ±8 1.5 SMD 3 ~ 5
    QHC9-1000-3000-K1-S pdf 1 3 100 0.6 18 ± 0.3 ±3 1.35 SMA 3 ~ 5
    QSHC9-1000-3000-K4 pdf 1 3 400 0.2 20 ±1 ±4 1.25 SMD 3 ~ 5
    QHC9-1000-4000-30-S pdf 1 4 30 0.6 20 ±0.6 ±6 1.25 SMA 3 ~ 5
    QHC9-1000-6000-30-S pdf 1 6 30 0.9 18 ±0.4 ±4 1.4 SMA 3 ~ 5
    QHC9-1000-7000-20-S pdf 1 7 20 0.9 18 ±0.4 ±4 1.4 SMA 3 ~ 5
    QHC9-1000-18000-30-S pdf 1 18 30 1.5 16 ±1 ± 9 1.8 SMA 3 ~ 5
    QHC9-1500-2500-30-S pdf 1.5 2.5 30 0.5 20 ±0.6 ±5 1.3 SMA 3 ~ 5
    QHC9-2000-2300-K1-S pdf 2 2.3 100 0.35 20 ±0.2 ±3 1.2 SMA 3 ~ 5
    QHC9-2000-8000-20-S pdf 2 8 20 0.8 18 ±0.8 ±8 1.4 SMA 3 ~ 5
    QHC9-2000-8000-60 pdf 2 8 60 0.8 17 ±1 ±8 1.5 PIN 3 ~ 5
    QHC9-2000-18000-30-S pdf 2 18 30 2.2 18 ±1 ±5 1.45 SMA 3 ~ 5
    QHC9-2000-26500-30-S pdf 2 26.5 30 2 10 ±1 ± 10 1.8 SMA 3 ~ 5
    QHC9-2000-40000-30-K pdf 2 40 30 2.8 10 ±1.5 ±12 2 2.92mm 3 ~ 5
    QHC9-2400-2500-K5-N pdf 2.4 2.5 500 0.6 18 ± 0.3 2.5 1.4 N 3 ~ 5
    QHC9-2500-8000-30-S pdf 2.5 8 30 0.7 15 ±0.6 90°±7° 1.6 SMA 3 ~ 5
    QHC9-2700-3500-K5-N pdf 2.7 3.5 500 0.5 16 ±0.8 8 1.5 N 3 ~ 5
    QHC9-3200-4000-30-S pdf 3.2 4 30 0.5 20 ±0.6 ±2 1.3 SMA 3 ~ 5
    QHC9-4000-18000-K1-S pdf 4 18 100 1.4 15 ±0.9 ±6 1.7 SMA 3 ~ 5
    QHC9-5700-5900-30-S pdf 5.7 5.9 30 0.5 23 ± 0.3 ±3 1.25 SMA 3 ~ 5
    QHC9-6000-18000-30-S pdf 6 18 30 1 16 ±0.7 ±8 1.5 SMA 3 ~ 5
    QHC9-6000-26500-30-S pdf 6 26.5 30 1.8 15 0.7 8 1.6 SMA 3 ~ 5
    QHC9-6000-40000-20-K pdf 6 40 20 2 14 1.2 10 1.8 2.92mm 3 ~ 5
    QHC9-6000-50000-20-2 pdf 6 50 20 2.7 12 1.2 12 1.9 2.4mm 3 ~ 5
    QHC9-18000-40000-30-K pdf 18 40 30 2.2 12 ±0.7 ± 10 1.8 2.92mm 3 ~ 5
    QHC9-18000-50000-20-2 pdf 18 50 20 2.6 13 0.9 12 1.9 2.4mm 3 ~ 5
    QHC9-24000-44000-20-2 pdf 24 44 20 2.3 14 0.7 10 1.8 2.4mm 3 ~ 5
    QHC9-26000-40000-30-K pdf 26 40 30 2.2 12 ±0.7 ± 10 1.8 2.92mm 3 ~ 5

    PWODWI REKÒMANDE