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LTC2410IGN 데이터시트(PDF) 24 Page - Linear Technology |
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LTC2410IGN 데이터시트(HTML) 24 Page - Linear Technology |
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24 / 44 page ![]() LTC2410 24 APPLICATIO S I FOR ATIO REF+ and REF– pins and external capacitance CREF con- nected to these pins are shown in Figures 22, 23, 24 and 25. In addition to this gain error, the converter INL perfor- mance is degraded by the reference source impedance. When FO = LOW (internal oscillator and 60Hz notch), every 100 Ω of source resistance driving REF+ or REF– translates into about 1.34ppm additional INL error. When FO = HIGH (internal oscillator and 50Hz notch), every 100 Ωof source resistance driving REF+ or REF– translates into about 1.1ppm additional INL error. When FO is driven by an external oscillator with a frequency fEOSC, every 100Ω of source resistance driving REF+ or REF– translates into about 8.73 • 10–6 • fEOSCppm additional INL error. Figure 26 shows the typical INL error due to the source resistance driving the REF+ or REF– pins when large CREF values are used. The effect of the source resistance on the two reference pins is additive with respect to this INL error. In general, matching of source impedance for the REF+ and REF– pins does not help the gain or the INL error. The user is thus advised to minimize the combined source impedance driving the REF+ and REF– pins rather than to try to match it. Figure 22. +FS Error vs RSOURCE at REF+ or REF– (Small CIN) Figure 23. –FS Error vs RSOURCE at REF+ or REF– (Small CIN) Figure 24. +FS Error vs RSOURCE at REF+ and REF– (Large CREF) Figure 25. –FS Error vs RSOURCE at REF+ and REF– (Large CREF) RSOURCE (Ω) 1.E+00 1.E+01 1.E+02 1.E+03 1.E+04 1.E+05 2410 F22 0 –10 –20 –30 –40 –50 VCC = 5V REF+ = 5V REF – = GND IN+ = 5V IN – = 2.5V FO = GND TA = 25°C CREF = 0.01µF CREF = 0.001µF CREF = 100pF CREF = 0pF RSOURCE (Ω) 1.E+00 1.E+01 1.E+02 1.E+03 1.E+04 1.E+05 2410 F23 50 40 30 20 10 0 VCC = 5V REF+ = 5V REF – = GND IN+ = GND IN – = 2.5V FO = GND TA = 25°C CREF = 0.01µF CREF = 0.001µF CREF = 100pF CREF = 0pF RSOURCE (Ω) 0 100 200 300 400 500 600 700 800 900 1000 2410 F24 0 –90 –180 –270 –360 –450 VCC = 5V REF+ = 5V REF– = GND IN+ = 3.75V IN – = 1.25V FO = GND TA = 25°C CREF = 0.01µF CREF = 0.1µF CREF = 1µF, 10µF RSOURCE (Ω) 0 100 200 300 400 500 600 700 800 900 1000 2410 F25 450 360 270 180 90 0 VCC = 5V REF+ = 5V REF– = GND IN+ = 1.25V IN – = 3.75V FO = GND TA = 25°C CREF = 0.01µF CREF = 0.1µF CREF = 1µF, 10µF |
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