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LTC2420CS8 Datasheet(PDF) 25 Page - Linear Technology |
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LTC2420CS8 Datasheet(HTML) 25 Page - Linear Technology |
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25 / 36 page ![]() 25 LTC2420 APPLICATIO S I FOR ATIO node VREF is small (CVREF < 0.01µF), the reference input can tolerate large external resistances without reduction in INL, see Figure 25. If the external capacitance is large (CVREF > 0.01µF), the linearity will be degraded by 0.015ppm/ Ω independent of capacitance at VREF, see Figure 26. In addition to the dynamic reference current, the VREF ESD protection diodes have a temperature dependent leakage current. This leakage current, nominally 1nA ( ±10nAmax), results in a fixed full-scale shift of 10 µV for a 10k source resistance. ANTIALIASING One of the advantages delta-sigma ADCs offer over con- ventional ADCs is on-chip digital filtering. Combined with a large oversampling ratio, the LTC2420 significantly simplifies antialiasing filter requirements. The digital filter provides very high rejection except at integer multiples of the modulator sampling frequency (fS), see Figure 27. The modulator sampling frequency is 256 • FO, where FO is the notch frequency (typically 50Hz or 60Hz). The bandwidth of signals not rejected by the digital filter is narrow ( ≈0.2%)comparedtothebandwidth of the frequencies rejected. RESISTANCE AT VREF (Ω) 0 40 50 60 600 800 2420 F23 30 20 200 400 1000 10 0 –10 CVREF = 22µF CVREF = 10µF CVREF = 1µF CVREF = 0.1µF CVREF = 0.01µF CVREF = 0.001µF VCC = 5V VREF = 5V VIN = 5V TA = 25°C RESISTANCE AT VREF (Ω) 1 300 400 500 1k 10k 2420 F24 200 100 10 100 100k 0 –100 –200 VCC = 5V VREF = 5V VIN = 5V TA = 25°C CVREF = 0.01µF CVREF = 100pF CVREF = 1000pF CVREF = 0pF RESISTANCE AT VREF (Ω) 1 30 40 50 1k 10k 2420 F25 20 10 10 100 100k 0 –10 –20 VCC = 5V VREF = 5V TA = 25°C CVREF = 0.01µF CVREF = 1000pF CVREF = 0pF CVREF = 100pF RESISTANCE AT VREF (Ω) 0 6 8 10 600 800 2420 F26 4 2 –2 –4 –6 –8 –10 200 400 1000 0 CVREF = 22µF CVREF = 10µF CVREF = 1µF CVREF = 0.1µF CVREF = 0.01µF CVREF = 0.001µF VCC = 5V VREF = 5V TA = 25°C Figure 23. Full-Scale Error vs RVREF (Large C) Figure 24. Full-Scale Error vs RVREF (Small C) Figure 25. INL Error vs RVREF (Small C) Figure 26. INL Error vs RVREF (Large C) |
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