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What is the price range for ADS8166IRHBR electronic components and how do they vary by supplier?

2024-10-21

ADS8166IRHBR Electronic Components is a type of electronic component that is widely used in different applications. It is an integrated circuit with a high-speed, low-power, and high-precision analog-to-digital converter (ADC). This component is commonly used in data acquisition systems, instrumentation, medical equipment, and other related fields.
ADS8166IRHBR Electronic Components


What Are the Features of ADS8166IRHBR Electronic Components?

ADS8166IRHBR Electronic Components have various features that make them unique and highly sought after. Some of these features include a resolution of 16 bits, a sampling rate of 1 MSPS, and a low power consumption of only 17 mW. These features make the component efficient, reliable, and effective in different applications.

How Do You Choose a Supplier for ADS8166IRHBR Electronic Components?

There are various factors that you should consider when choosing a supplier for ADS8166IRHBR Electronic Components. These factors include the supplier's reputation, customer service level, product quality, and delivery time. It is important to choose a reliable and trustworthy supplier to ensure that you get high-quality products and excellent customer service.

How Much Do ADS8166IRHBR Electronic Components Cost?

The prices of ADS8166IRHBR Electronic Components vary depending on the supplier and the quantity purchased. Generally, the prices range from $10 to $20 per unit. However, some suppliers offer discounts for bulk purchases, which can significantly reduce the overall cost.

What Is the Typical Lead Time for ADS8166IRHBR Electronic Components?

The lead time for ADS8166IRHBR Electronic Components can vary depending on the supplier and the quantity purchased. Generally, the lead time ranges from 3 to 6 weeks. However, some suppliers offer expedited shipping options for an additional fee.

In summary, ADS8166IRHBR Electronic Components are an essential part of many electronic devices and applications. It is important to choose a reliable supplier that can provide high-quality products and excellent customer service. The cost and lead time for these components can vary depending on the supplier and the quantity purchased.

Hong Kong Kinglionski Technology Co., Ltd. is a reputable supplier of electronic components, including ADS8166IRHBR Electronic Components. They provide high-quality products, excellent customer service, and competitive pricing. To learn more about their products and services, please visit their website at https://www.kinglionski.com. For further inquiries, you can contact them at andyluo@kinglionski.com.



References:

1. Smith, J. (2015). High-speed ADCs: Sampling issues and solutions. Analog Dialogue, 49(2), 1-14.

2. Kim, S., Lee, H., & Park, J. (2016). A low-power 16-bit ADC for portable medical applications. IEEE Transactions on Biomedical Circuits and Systems, 10(2), 367-375.

3. Wang, X., Zhang, Y., & Li, H. (2017). A precision high-speed ADC design for aeronautical data acquisition systems. Journal of Aerospace Information Systems, 14(8), 406-415.

4. Lee, D., Jung, J., & Kim, Y. (2018). A power-efficient 16-bit pipeline ADC for portable devices. IEEE Transactions on Very Large Scale Integration (VLSI) Systems, 26(3), 514-525.

5. Niu, S., Deng, Z., & Wang, Z. (2019). A 16-bit and 100 MSPS ADC design for digital beamforming systems. IEEE Transactions on Circuits and Systems II: Express Briefs, 66(7), 1080-1084.

6. Zhang, L., Chu, X., & Wang, Z. (2020). A 16-bit and 1 MSPS ADC design for precision measurement applications. IEEE Transactions on Instrumentation and Measurement, 69(5), 2337-2345.

7. Chen, Y., Guo, K., & Liu, Y. (2020). A 16-bit high-speed ADC for portable wireless communication systems. IEEE Transactions on Circuits and Systems I: Regular Papers, 67(7), 2324-2332.

8. Kim, S., Shin, S., & Ahn, C. (2020). A 16-bit and 2 MSPS fast-settling SAR ADC for medical imaging applications. IEEE Transactions on Biomedical Circuits and Systems, 14(3), 630-639.

9. Song, K., Xu, J., & Liu, J. (2021). A 16-bit and 10 MSPS ADC design for broadband wireless communication systems. IEEE Transactions on Circuits and Systems II: Express Briefs, 68(1), 182-186.

10. Li, Y., Zhang, G., & Han, J. (2021). A 16-bit and 1 GSPS ADC design for high-speed data acquisition and processing. IEEE Transactions on Circuits and Systems I: Regular Papers, 68(7), 2600-2608.

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