033R60J474KE90D – MURATA – MLCC SMD Capacitor – 0.47 µF, 6.3 V, 0201 ( Pack of 5)
- Unit price
- / per
033R60J474KE90D – MURATA – MLCC SMD Capacitor – 0.47 µF, 6.3 V, 0201 ( Pack of 5)
The 033R60J474KE90D by MURATA is a pack of 5 surface-mount MLCC capacitors. With a capacitance of 12 pF and a voltage rating of 50 V, these capacitors are designed to deliver optimal performance in various SMD applications. They come in compact 0201 sizes, making them suitable for space-constrained designs. MURATA is known for its high-quality components, ensuring reliability and long-term functionality. Upgrade your electronic projects with these reliable MLCC capacitors.
Note: Product Images are shown for illustrative purposes only. It may differ from the actual product.
Features:
- Achieves large capacity and small size in a multilayer structure
- Sn plating is applied to the external electrodes, excellent solderability
- High reliability with no polarity
- Excellent pulse response and noise reduction due to the low impedance at high frequency
033R60J474KE90D – MURATA – MLCC SMD Capacitor – 0.47 µF, 6.3 V, 0201 ( Pack of 5)
- Unit price
- / per
Adding product to your cart
You may also like
033R60J474KE90D – MURATA – MLCC SMD Capacitor – 0.47 µF, 6.3 V, 0201 ( Pack of 5)
The 033R60J474KE90D by MURATA is a pack of 5 surface-mount MLCC capacitors. With a capacitance of 12 pF and a voltage rating of 50 V, these capacitors are designed to deliver optimal performance in various SMD applications. They come in compact 0201 sizes, making them suitable for space-constrained designs. MURATA is known for its high-quality components, ensuring reliability and long-term functionality. Upgrade your electronic projects with these reliable MLCC capacitors.
Note: Product Images are shown for illustrative purposes only. It may differ from the actual product.
Features:
- Achieves large capacity and small size in a multilayer structure
- Sn plating is applied to the external electrodes, excellent solderability
- High reliability with no polarity
- Excellent pulse response and noise reduction due to the low impedance at high frequency