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DAC82001 Datasheet(PDF) 13 Page - Texas Instruments |
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DAC82001 Datasheet(HTML) 13 Page - Texas Instruments |
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13 / 21 page ![]() 8 Application and Implementation Note Information in the following applications sections is not part of the TI component specification, and TI does not warrant its accuracy or completeness. TI’s customers are responsible for determining suitability of components for their purposes, as well as validating and testing their design implementation to confirm system functionality. 8.1 Application Information Generating accurate, stable, programmable dc voltages is a key requirement in most precision end equipment. The DAC82001 is an excellent choice for such applications. The DAC82001 tiny package, high resolution, fast settling, and simple interface makes this device a great choice for applications such as offset and gain control, arbitrary waveform generation (AWG), closed-loop control, and more. With the aforementioned features, the DAC82001 caters to a wide range of end equipment, such as battery testers, communications equipment, factory automation and control, test and measurement, and more. Many compatible operational amplifiers can be used as output buffers for the DAC82001, allowing for user customization. 8.2 Typical Application 8.2.1 Arbitrary Waveform Generator Arbitrary waveform generation circuits are common in test and measurement equipment. These circuits are used to generate ac waveforms to test devices. The key performance parameters of such circuits are THD, SNR, and the update rate. The following figure shows a basic example of an AWG circuit using the DAC82001. DAC82001 VDD VREF 47 pF 100 nF + – OPA328 VOUT 5 V Figure 8-1. Arbitrary Waveform Generator 8.2.1.1 Design Requirements • DAC output range: 0 V to 2.5 V • THD+N at 1 kHz: > 91 dB • Update rate: 200 kHz 8.2.1.2 Detailed Design Procedure Figure 8-1 shows a simplified circuit diagram of an arbitrary waveform generator. The DAC82001 specifies a THD+N of 91 dB at 1 kHz. The OPA328 provides a great balance between fast settling, bandwidth, and voltage and current noise. The buffer must have a negative voltage supply rail or an output offset to make sure the DAC output is not clipped. Attach two decoupling capacitors as close as possible to the VREF pin. Use 100 nF for the first capacitor to provide very good noise performance for the system. Use 47 pF for the other capacitor to allow for a good dynamic response performance that improves any code-to-code glitch. www.ti.com DAC82001 SBASAK3 – SEPTEMBER 2022 Copyright © 2022 Texas Instruments Incorporated Submit Document Feedback 13 Product Folder Links: DAC82001 |
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