| Allicdata Part #: | 296-38855-5-ND |
| Manufacturer Part#: |
ADS131E08IPAG |
| Price: | $ 0.00 |
| Product Category: | Integrated Circuits (ICs) |
| Manufacturer: | Texas Instruments |
| Short Description: | IC AFE 16/24BIT 64KSPS 64TQFP |
| More Detail: | 8 Channel AFE 16, 24 Bit 17.6mW 64-TQFP (10x10) |
| DataSheet: | ADS131E08IPAG Datasheet/PDF |
| Quantity: | 1000 |
| Series: | -- |
| Packaging: | Tube |
| Part Status: | Active |
| Number of Bits: | 16, 24 |
| Number of Channels: | 8 |
| Power (Watts): | 17.6mW |
| Voltage - Supply, Analog: | 2.7 V ~ 5.25 V |
| Voltage - Supply, Digital: | 1.8 V ~ 3.6 V |
| Package / Case: | 64-TQFP |
| Supplier Device Package: | 64-TQFP (10x10) |
| Base Part Number: | ADS131E08 |
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The ADS131E08IPAG Analog Front End is a high-precision ADC (analog-to-digital converter) designed for embedded systems. Built with a 16-bit SAR architecture, the ADS131E08IPAG provides reliable and accurate performance for analog signal processing. The device is ideal for instrumentation, smart energy, and medical applications requiring precision conversion and signal conditioning. The onboard digital signal processing unit (DSPU) offers low-noise amplification, differential amplifier, and gain control, allowing for fast signal acquisition and treatment.
The most prominent application field of the ADS131E08IPAG is in medical systems, where it can provide accurate and precise signals required by medical professionals to maintain the safety and accuracy of medical measurements. The device utilizes a high-resolution SAR design, with a wide range of gain control settings, enabling accurate measurements and adaptation to medical processes that require precise signal conditioning. Additionally, the built-in power rail monitor enables power monitoring to ensure that precise measurements can be taken under any condition. The ADS131E08IPAG\'s wide operating temperature range and high sampling rate make it well-suited for use in medical systems.
The ADS131E08IPAG is also an ideal choice for Smart Grid applications. By utilizing its high-resolution SAR design and its wide range of gain modes, precise signal conditioning can be easily achieved. The 16-bit architecture of the ADS131E08IPAG allows for precise measurement of analog signals, despite high levels of noise. Additionally, its small size and low power requirements make it an excellent choice for embedded systems.
The ADS131E08IPAG also has uses in instrumentation and laboratory applications. Its compact size and high-level accuracy are ideal for applications such as data acquisition, signal analysis, and monitoring. The wide range of gain settings, as well as its ability to measure high-frequency signals accurately, make it well-suited for use in tightly-packed instruments, where accurate and reliable signal analysis is essential. Its high sampling rate also enables accurate measurement of fast-moving signals, such as those encountered in oscilloscopes.
The working principle of the ADS131E08IPAG is based on its 16 bit SAR architecture. The device uses a single-slope architecture, where the analog signal is processed in discrete steps. With each step, the device compares the input signal to a reference voltage, and the output is proportional to the difference between them. The device also features a low-noise amplifier and differential amplifier to enable accurate measurement of small signals, and a range of gain settings to enable adaptation to wide range of input signals.
The ADS131E08IPAG is the ideal choice for applications requiring precision signal conditioning and accurate data acquisition. By utilizing its high-resolution SAR design and wide range of gain settings, precise signal conditioning can be easily achieved. Additionally, its small size and low power requirements make it well-suited for use in embedded systems, making it perfect for medical, instrumentation, and smart grid applications.
The specific data is subject to PDF, and the above content is for reference
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ADS131E08IPAG Datasheet/PDF