Datasheet TL074 (STMicroelectronics) - 8

HerstellerSTMicroelectronics
BeschreibungLow-noise JFET quad operational amplifier
Seiten / Seite18 / 8 — Electrical characteristics. TL074. Figure 8. Input bias current versus …
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Electrical characteristics. TL074. Figure 8. Input bias current versus free air. Figure 9. Large signal differential voltage

Electrical characteristics TL074 Figure 8 Input bias current versus free air Figure 9 Large signal differential voltage

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Electrical characteristics TL074 Figure 8. Input bias current versus free air Figure 9. Large signal differential voltage temperature amplification versus free air temperature
30 1000 R = 10 kΩ L 400 TPUT 25 U Tamb = +25˚C E 200 O G A 100 K 20 T A ) L V O N (V/mV) ( 40 15 -PE V E L IO T O G 20 IA A -T A T IC V = 15V 10 N 10 CC K A LT E R LIF P V = 10V 4 O PE VO 5 M A 2 R = 2k Ω M L DIFFE U 1 IM 0 2 4 6 8 10 12 14 16 -75 -50 -25 0 X 25 50 75 100 125 A S U P P L Y V O L T A G E ( V ) M TEMPERATURE (˚C)
Figure 10. Large signal differential voltage Figure 11. Total power dissipation versus free amplification and phase shift versus frequency air temperature
250 ) 225 V W C C = 15V 200 (m No signal (V/mV) N 175 No load IO T 150 A IP S 125 IS 100 D R 75 E W 50 O P 25 L TA 0 TO -75 -50 -25 0 25 50 75 100 125 TEMPERATURE (˚C )
Figure 12. Supply current per amplifier versus Figure 13. Common mode rejection ratio versus free air temperature free air temperature
2.0 89 1.8 V C C = 15V N R = 1 0 kΩ L 1.6 IO 88 ) No signal T V = 1 5V A C C C 1.4 No load (m JE T 87 1.2 E ) N R dB 1.0 E ( 86 D RRE IO U 0.8 T C MO Y 0.6 E RA 85 L D P O 0.4 P M U 84 S 0.2 N 0 MMO 83 -75 -50 -25 0 25 50 75 100 125 O -75 -50 -25 0 25 50 75 100 125 C TEMPERATURE (˚C ) T E M P E R A T U R E ( ˚ C ) 8/18 DocID2297 Rev 5 Document Outline 1 Schematic diagram Figure 1. Circuit schematic 2 Absolute maximum ratings and operating conditions Table 1. Absolute maximum ratings Table 2. Operating conditions 3 Electrical characteristics Table 3. VCC = ±15 V, Tamb = +25 °C (unless otherwise specified) Figure 2. Maximum peak-to-peak output voltage versus frequency Figure 3. Maximum peak-to-peak output voltage versus frequency Figure 4. Maximum peak-to-peak output voltage versus frequency Figure 5. Maximum peak-to-peak output voltage versus free air temperature Figure 6. Maximum peak-to-peak output voltage versus load resistance Figure 7. Maximum peak-to-peak output voltage versus supply voltage Figure 8. Input bias current versus free air temperature Figure 9. Large signal differential voltage amplification versus free air temperature Figure 10. Large signal differential voltage amplification and phase shift versus frequency Figure 11. Total power dissipation versus free air temperature Figure 12. Supply current per amplifier versus free air temperature Figure 13. Common mode rejection ratio versus free air temperature Figure 14. Voltage follower large signal pulse response Figure 15. Output voltage versus elapsed time Figure 16. Equivalent input noise voltage versus frequency Figure 17. Total harmonic distortion versus frequency 4 Parameter measurement information Figure 18. Voltage follower Figure 19. Gain-of-10 inverting amplifier 5 Typical applications Figure 20. Audio distribution amplifier Figure 21. Positive feeback bandpass filter Figure 22. Output A Figure 23. Output B 6 Package information 6.1 SO14 package information Figure 24. SO14 package mechanical drawing Table 4. SO14 package mechanical data 7 Ordering information Table 5. Order codes 8 Revision history Table 6. Document revision history