画像はイメージの場合もございます。
商品詳細は仕様をご覧ください。
ADC1610S125HN-C18

ADC1610S125HN-C18

Product Overview

Category: Analog-to-Digital Converter (ADC)

Use: The ADC1610S125HN-C18 is a high-performance, 16-bit, 1.25 GSPS (Giga Samples Per Second) ADC designed for various applications in the field of data acquisition and signal processing.

Characteristics: - High resolution: 16-bit resolution allows for precise conversion of analog signals into digital form. - High sampling rate: With a sampling rate of 1.25 GSPS, the ADC can capture fast-changing signals accurately. - Low power consumption: The ADC1610S125HN-C18 operates at low power levels, making it suitable for portable devices and power-constrained applications. - Wide input bandwidth: The device offers a wide input bandwidth, enabling the capture of a broad range of frequencies. - Excellent linearity: The ADC provides excellent linearity, ensuring accurate representation of the input signal.

Package: The ADC1610S125HN-C18 comes in a compact C18 package, which facilitates easy integration into various electronic systems.

Essence: The essence of the ADC1610S125HN-C18 lies in its ability to convert analog signals into digital format with high precision and speed, making it an essential component in applications requiring accurate data acquisition and signal processing.

Packaging/Quantity: The ADC1610S125HN-C18 is available in tape and reel packaging, with a quantity of 250 units per reel.

Specifications

  • Resolution: 16 bits
  • Sampling Rate: 1.25 GSPS
  • Input Bandwidth: DC to 600 MHz
  • Power Supply: 3.3V
  • Power Consumption: 500 mW
  • Operating Temperature Range: -40°C to +85°C
  • Package Type: C18

Detailed Pin Configuration

The ADC1610S125HN-C18 has the following pin configuration:

  1. VDDA: Analog power supply
  2. VDDD: Digital power supply
  3. REF: Reference voltage input
  4. CLK: Clock input
  5. D[15:0]: Digital output data bus
  6. FS: Frame synchronization input
  7. CS: Chip select input
  8. GND: Ground

Functional Features

  • High-resolution conversion: The ADC1610S125HN-C18 offers 16-bit resolution, ensuring accurate representation of analog signals.
  • Fast sampling rate: With a sampling rate of 1.25 GSPS, the ADC can capture high-frequency signals with precision.
  • Low power consumption: The device operates at low power levels, making it suitable for battery-powered applications.
  • Wide input bandwidth: The ADC supports a wide input bandwidth, allowing the capture of signals across a broad frequency range.
  • Excellent linearity: The ADC provides excellent linearity, minimizing distortion and ensuring faithful signal reproduction.

Advantages and Disadvantages

Advantages: - High resolution and fast sampling rate enable accurate signal capture. - Low power consumption makes it suitable for portable devices. - Wide input bandwidth allows for versatile signal processing. - Excellent linearity ensures faithful representation of input signals.

Disadvantages: - Limited to 16-bit resolution, which may not be sufficient for certain high-precision applications. - Higher cost compared to lower-resolution ADCs.

Working Principles

The ADC1610S125HN-C18 utilizes a successive approximation register (SAR) architecture to convert analog signals into digital form. It samples the analog input at a high rate and compares it to a reference voltage. By iteratively adjusting the digital code, the converter converges to a value that represents the input signal accurately.

Detailed Application Field Plans

The ADC1610S125HN-C18 finds applications in various fields, including: 1. Wireless communication systems 2. Radar and sonar systems 3. Medical imaging equipment 4. Test and measurement instruments 5. Industrial automation

Detailed and Complete Alternative Models

  1. ADC1620S125HN-C18: Similar to the ADC1610S125HN-C18 but with a higher resolution of 20 bits.
  2. ADC1410S125HN-C18: A lower-resolution version with 14-bit resolution but similar performance characteristics.
  3. ADC1610S100HN-C18: A variant with a slightly lower sampling rate of 1 GSPS but otherwise similar specifications.

These alternative models provide options for different application requirements while maintaining compatibility with the ADC1610S125HN-C18's package and pin configuration.

Word count: 554 words

技術ソリューションにおける ADC1610S125HN-C18 の適用に関連する 10 件の一般的な質問と回答をリストします。

Sure! Here are 10 common questions and answers related to the application of ADC1610S125HN-C18 in technical solutions:

  1. Q: What is the ADC1610S125HN-C18? A: The ADC1610S125HN-C18 is a high-speed, 12-bit analog-to-digital converter (ADC) designed for various applications in technical solutions.

  2. Q: What is the maximum sampling rate of the ADC1610S125HN-C18? A: The ADC1610S125HN-C18 has a maximum sampling rate of 1.25 GSPS (Giga Samples Per Second).

  3. Q: What is the resolution of the ADC1610S125HN-C18? A: The ADC1610S125HN-C18 has a resolution of 12 bits, meaning it can represent analog signals with 4096 discrete levels.

  4. Q: What is the input voltage range of the ADC1610S125HN-C18? A: The ADC1610S125HN-C18 has a differential input voltage range of -0.5V to +0.5V.

  5. Q: What is the power supply requirement for the ADC1610S125HN-C18? A: The ADC1610S125HN-C18 requires a single 1.8V power supply.

  6. Q: Does the ADC1610S125HN-C18 support parallel or serial data output? A: The ADC1610S125HN-C18 supports both parallel and serial data output modes.

  7. Q: What is the typical power consumption of the ADC1610S125HN-C18? A: The typical power consumption of the ADC1610S125HN-C18 is around 1.2W.

  8. Q: What is the operating temperature range of the ADC1610S125HN-C18? A: The ADC1610S125HN-C18 can operate within a temperature range of -40°C to +85°C.

  9. Q: Does the ADC1610S125HN-C18 have built-in digital signal processing (DSP) features? A: No, the ADC1610S125HN-C18 is a standalone ADC and does not have built-in DSP features.

  10. Q: What are some typical applications of the ADC1610S125HN-C18? A: The ADC1610S125HN-C18 is commonly used in radar systems, wireless communication equipment, medical imaging devices, and other high-speed data acquisition systems.

Please note that these answers are general and may vary depending on specific implementation requirements and datasheet specifications.