22 /10 — TA = 25. OP27C. OP27A. AT 10Hz. E G. ISE. AT 1kHz. –10. –20. SET. –30. …
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TA = 25. OP27C. OP27A. AT 10Hz. E G. ISE. AT 1kHz. –10. –20. SET. –30. –40. TRIMMING WITH. –50. 10k. POT DOES. NOT CHANGE. –60. TCVOS. –70. –75. –25. 100. 125. 150. 175
Data Sheet OP27 560TA = 25 q COP27C50404z)30OP27AAT 10Hz)/ H20V( P V(nE G10AOP27AISET0O3LNOEAT 1kHzV–10GOP27AA–20TSETLFOF–30V2O–40TRIMMING WITH–5010k : POT DOESNOT CHANGE–60TCVOS1OP27C 0 –70010203040 1 3 -0 1 7 –75–50–250255075100125150175 -0 1 7 TOTAL SUPPLY VOLTAGE, V+ – V–, (V) 3 1 0 3 0 TEMPERATURE ( q C) 0 0 Figure 10. Voltage Noise Density vs. Supply Voltage Figure 13. Offset Voltage Drift of Five Representative Units vs. Temperature 10.064)2( P V0z)E G/ HA–2AT L(pO–4VISE–6O1.0SETNF6TFENO4RINRE2UGCN A0HI/F CORNER = 140HzC–2–40.1–6 1 4 101001k10k 1 01234567 1 -0 -0 7 7 1 1 FREQUENCY (Hz) 3 3 0 TIME (Months) 0 0 0 Figure 11. Current Noise Density vs. Frequency Figure 14. Long-Term Offset Voltage Drift of Six Representative Units 5.0T)A = 25 q CVS = 15V( P V E G10)4.0A TAL OOP27 C/G(mTTA = +125 q CVENSETRFROP27 F3.0FUOCTY5TPUOP27 A/EA = –55 q CPPLINSUIN2.0E GTNA = +25 q CA H C1.01 2 5 1 515253545 1 012345 -0 -0 7 7 1 1 TOTAL SUPPLY VOLTAGE (V) 3 TIME AFTER POWER ON (Min) 3 0 0 0 0 Figure 12. Supply Current vs. Supply Voltage Figure 15. Warm-Up Offset Voltage Drift Rev. H | Page 9 of 21