RN731JTTD8981D10

RN731JTTD8981D10
Mfr. #:
RN731JTTD8981D10
メーカー:
KOA Speer Electronics, Inc
説明:
Thin Film Resistors - SMD 8.98kOhm,0603,0.5%,1 0ppm,63mW,50V
ライフサイクル:
メーカー新製品
データシート:
RN731JTTD8981D10 データシート
配達:
DHL FedEx Ups TNT EMS
支払い:
T/T Paypal Visa MoneyGram Western Union
ECAD Model:
製品属性
属性値
Tags
RN731JTTD8981D, RN731JTTD8981, RN731JTTD898, RN731JTTD89, RN731JTTD8, RN731JTT, RN731JT, RN731J, RN731, RN7
Service Guarantees

We guarantee 100% customer satisfaction.

Quality Guarantees

We provide 90-360 days warranty.

If the items you received were not in perfect quality, we would be responsible for your refund or replacement, but the items must be returned in their original condition.
Our experienced sales team and tech support team back our services to satisfy all our customers.

we buy and manage excess electronic components, including excess inventory identified for disposal.
Email us if you have excess stock to sell.

Email: [email protected]

Step1: Vacuum Packaging with PL
Step1:
Vacuum Packaging with PL
Step2: Anti-Static Bag
Step2:
Anti-Static Bag
Step3: Packaging Boxes
Step3:
Packaging Boxes
モデル メーカー 説明 ストック 価格
RN731JTTD8981D100
DISTI # 660-RN731JTD8981D100
KOA Speer Electronics IncThin Film Resistors - SMD 0603 8K98 Ohms 0.5% 10PPM
RoHS: Compliant
0
    画像 モデル 説明
    RN731JTTD1780B05

    Mfr.#: RN731JTTD1780B05

    OMO.#: OMO-RN731JTTD1780B05-1092

    Thin Film Resistors - SMD 178Ohm,0603,0.1%,5pp m,63mW,50V
    RN731JTTD1012B50

    Mfr.#: RN731JTTD1012B50

    OMO.#: OMO-RN731JTTD1012B50-1092

    Thin Film Resistors - SMD 10.1kOhm,0603,0.1%,5 0ppm,63mW,50V
    RN731JTTD1173D25

    Mfr.#: RN731JTTD1173D25

    OMO.#: OMO-RN731JTTD1173D25-1092

    Thin Film Resistors - SMD 117kOhm,0603,0.5%,25 ppm,63mW,50V
    RN731JTTD4172D100

    Mfr.#: RN731JTTD4172D100

    OMO.#: OMO-RN731JTTD4172D100-1092

    Thin Film Resistors - SMD 41.7kOhm,0603,0.5%,1 0ppm,63mW,50V
    RN731JTTD9421D100

    Mfr.#: RN731JTTD9421D100

    OMO.#: OMO-RN731JTTD9421D100-1092

    Thin Film Resistors - SMD 9.42kOhm,0603,0.5%,1 0ppm,63mW,50V
    RN731JTTD34R0C50

    Mfr.#: RN731JTTD34R0C50

    OMO.#: OMO-RN731JTTD34R0C50-1092

    Thin Film Resistors - SMD 34Ohm,0603,0.25%,50p pm,63mW,50V
    RN731JTTD1263C25

    Mfr.#: RN731JTTD1263C25

    OMO.#: OMO-RN731JTTD1263C25-1092

    Thin Film Resistors - SMD 126kOhm,0603,0.25%,2 5ppm,63mW,50V
    RN731JTTD2910D25

    Mfr.#: RN731JTTD2910D25

    OMO.#: OMO-RN731JTTD2910D25-1092

    Thin Film Resistors - SMD 291Ohm,0603,0.5%,25p pm,63mW,50V
    RN731JTTD66R5D100

    Mfr.#: RN731JTTD66R5D100

    OMO.#: OMO-RN731JTTD66R5D100-1092

    Thin Film Resistors - SMD 66.5Ohm,0603,0.5%,10 ppm,63mW,50V
    RN731JTTD1063F100

    Mfr.#: RN731JTTD1063F100

    OMO.#: OMO-RN731JTTD1063F100-1092

    Thin Film Resistors - SMD 106kOhm,0603,1%,10pp m,63mW,50V
    可用性
    ストック:
    Available
    注文中:
    5500
    数量を入力してください:
    RN731JTTD8981D10の現在の価格は参考用です。最高の価格をご希望の場合は、お問い合わせまたは直接メールで営業チーム[email protected]までご連絡ください。
    参考価格(USD)
    単価
    小計金額
    1
    $0.00
    $0.00
    10
    $0.00
    $0.00
    100
    $0.00
    $0.00
    500
    $0.00
    $0.00
    1000
    $0.00
    $0.00
    皮切りに
    最新の製品
    • W29N SLC NAND Flash Memory
      Winbond’s SLC NAND Flash products are direct drop-in replacements to the ONFi SLC NAND products available in the industry from different suppliers and the products are compatible.
    • SZV Series Capacitors
      With 1,000 hour life span at 105°C, Rubycon’s SZV series is designed for applications requiring long-life durability.
    • Portable High Efficiency Solar Charger and LED Lig
      Equipped with two USB ports, one micro-USB port, and four white LED lights, and produces 5.2 V of power at 1.5 A, which is about 8 watts of solar power.
    • TLP577x Optocouplers
      Toshiba’s TLP5771, TLP5772, and TLP5774 optocouplers low threshold input current drive; rail-to-rail output gate driver optocouplers increase overall system efficiency.
    • DIMENSION CP10 Series DIN Rail Power Supplies
      The PULS DIMENSION CP10 series power supplies are characterised by an advanced inrush current limitation and high efficiency values.
    Top