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155R71C473KA01D – MURATA – MLCC SMD Capacitor – 47000 pF, 16 V, 0402 – ( Pack of 20)

ଦ୍ .ାରା My Store
SKU: TES-EV08511
ନିୟମିତ ମୂଲ୍ୟ Rs. 209.00 Rs. 9.00 96 % ବନ୍ଦ |
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155R71C473KA01D – MURATA – MLCC SMD Capacitor – 47000 pF, 16 V, 0402 – ( Pack of 20)

pgrade your electronic projects with this pack of 20 MURATA 155R71C473KA01D capacitors. These MLCC components offer a capacitance of 47000 pF and a voltage rating of 16 V, making them suitable for various applications. With their 0402 size, they are perfect for SMD assembly. Benefit from their high-quality construction and ensure reliable performance in your circuits.

Note: Product Images are shown for illustrative purposes only. It may differ from the actual product.


Features:

  1. Achieves large capacity and small size in a multilayer structure
  2. Sn plating is applied to the external electrodes and excellent solderability
  3. High reliability with no polarity
  4. Excellent pulse response and noise reduction due to the low impedance at high frequency
ବିକ୍ରୟ |

155R71C473KA01D – MURATA – MLCC SMD Capacitor – 47000 pF, 16 V, 0402 – ( Pack of 20)

ଦ୍ .ାରା My Store
SKU: TES-EV08511
ନିୟମିତ ମୂଲ୍ୟ Rs. 209.00 Rs. 9.00 96 % ବନ୍ଦ |
ୟୁନିଟ୍ ମୂଲ୍ୟ
ପ୍ରତି
କ Reviews ଣସି ସମୀକ୍ଷା ନାହିଁ |
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155R71C473KA01D – MURATA – MLCC SMD Capacitor – 47000 pF, 16 V, 0402 – ( Pack of 20)

pgrade your electronic projects with this pack of 20 MURATA 155R71C473KA01D capacitors. These MLCC components offer a capacitance of 47000 pF and a voltage rating of 16 V, making them suitable for various applications. With their 0402 size, they are perfect for SMD assembly. Benefit from their high-quality construction and ensure reliable performance in your circuits.

Note: Product Images are shown for illustrative purposes only. It may differ from the actual product.


Features:

  1. Achieves large capacity and small size in a multilayer structure
  2. Sn plating is applied to the external electrodes and excellent solderability
  3. High reliability with no polarity
  4. Excellent pulse response and noise reduction due to the low impedance at high frequency