REG NASA-LLIS-0843-2000 Lessons Learned Use of Digital Potentiometers in Electrically Powered Systems.pdf
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1、Best Practices Entry: Best Practice Info:a71 Committee Approval Date: 2000-04-20a71 Center Point of Contact: KSCa71 Submitted by: Wil HarkinsSubject: Use of Digital Potentiometers in Electrically Powered Systems Practice: Enhancement maintainability through the use of digital potentiometers to provi
2、de accurate and reliable remote control of electronic hardware.Programs that Certify Usage: Although these devices are not currently in use at Kennedy Space Center (KSC), they represent emerging new technologies with known implementation in commercial industry that are applicable to aerospace system
3、s.Center to Contact for Information: KSCImplementation Method: This Lesson Learned is based on Maintainability Technique number DFE-4 from NASA Technical Memorandum 4628, Recommended Techniques for Effective Maintainability.Benefit:Digital potentiometers are Dual Inline Package (DIP) devices capable
4、 of supporting variable resistance functions currently accomplished by standard electromechanical potentiometers. However, they can be equipped to handle a wide spectrum of specialty tasks not technically possible with standard devices. For example; remote process control, remote calibration, analog
5、 to digital conversions, digital to analog conversions, variable gain amplification and variable oscillation.Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Implementation Method:Digital potentiometers should be installed in electronic systems as a r
6、eplacement for standard potentiometers. However, designs should be enhanced to utilize the digital potentiometers extended functionality.Digital potentiometers are suitable in both facility power and battery driven applications. These devices should be appropriately selected to match system operatin
7、g parameters and affixed to printed circuit cards as necessary. In contrast to standard potentiometers, digital potentiometers are remotely accessible and can be driven to specific resistance values directly via a 17 bit serial shift register. An application diagram is attached which illustrates a g
8、eneric implementation methodology.refer to D descriptionD The digital potentiometer, although not an infinitely variable device, has either 64 or 256 resistive increments (based on model). In the event that finer control is necessary, digital potentiometers can be cascaded to provide high resolution
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