Allicdata Part #: | ADC1415S065F2-DB-ND |
Manufacturer Part#: |
ADC1415S065F2-DB |
Price: | $ 0.00 |
Product Category: | Development Boards, Kits, Programmers |
Manufacturer: | IDT, Integrated Device Technology Inc |
Short Description: | BOARD DEMO FOR ADC1415S065F2 |
More Detail: | ADC1415S065 - 14 Bit 65M Samples per Second Analog... |
DataSheet: | ADC1415S065F2-DB Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Part Status: | Obsolete |
Number of A/D Converters: | 1 |
Number of Bits: | 14 |
Sampling Rate (Per Second): | 65M |
Data Interface: | Parallel, Serial, SPI |
Input Range: | 2 Vpp |
Power (Typ) @ Conditions: | 580mW @ 65MSPS |
Utilized IC / Part: | ADC1415S065 |
Supplied Contents: | Board(s) |
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Analog-to-digital converters (ADCs) are important components in many electronic devices. They convert signals from analog form into digital form, making it easier to process and interpret the data. The ADC1415S065F2-DB ADC is a specialized component that offers a high level of accuracy and stability, making it suitable for applications in various industries. In this article, we will discuss the application fields and working principle of the ADC1415S065F2-DB.
The ADC1415S065F2-DB is a 9-bit sigma-delta ADC designed for use in high-precision automotive, industrial, and medical systems. It offers a maximum resolution of 8.30 bits at 30MSPS, a maximum conversion speed of 50 MSPS, and a low power consumption of 260 mW. It has 17 different range settings, allowing it to be configured for a wide variety of applications. It is also designed to operate in harsh environments, with an output voltage range from -40°C to +105°C.
The ADC1415S065F2-DB is primarily used in automotive, industrial, and medical systems requiring precise signal conversion and monitoring. For example, it is used in automotive applications such as brake systems, transmission systems, ECM monitoring, chassis control, and fuel injection control, and in medical applications such as medical imaging, ECG monitoring, and medical instrumentation. Additionally, it is suitable for applications in the industrial sector such as speed sensing, flow sensing, and environment monitoring.
To understand the working principle of the ADC1415S065F2-DB, we first need to understand how analog-to-digital conversion works. In analog-to-digital conversion, an analog signal is converted into a binary digital representation by measuring the voltage level of the signal and mapping it to a specific range of values. This process is performed by the ADC\'s sampling and quantization stages. In the sampling stage, the input signal is sampled at a specific rate or period. In the quantization stage, the sample values are translated into a digital signal by assigning them a specific value based on the ADC\'s resolution.
The ADC1415S065F2-DB uses a sigma-delta conversion method. This method uses delta-sigma modulation to convert the analog signal into a sequence of digital values. In this technique, the input analog signal is compared to a triangle waveform signal, and the difference between the two signals is taken as the output. This output is then processed by an internal digital filter, which determines the digital outputvalue based on the sampled values.
The ADC1415S065F2-DB also offers a sample-and-hold circuit for accurate measurements. The sample-and-hold circuit ensures that the voltage level of the analog signal is maintained during the measurement, which is important for precise readings. Additionally, the ADC1415S065F2-DB has a hybrid analog-digital front-end (HADF) architecture, which ensures that even small signal levels can be accurately read.
Overall, the ADC1415S065F2-DB is a highly reliable and accurate ADC suitable for a wide range of applications in automotive, industrial, and medical systems. It offers high resolution, fast conversion speed, and low power consumption. Additionally, the ADC1415S065F2-DB uses sigma-delta conversion and a sample-and-hold circuit for precise measurements. With all these features, it is an ideal choice for applications requiring highly accurate signal conversion.
The specific data is subject to PDF, and the above content is for reference
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