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TSU111H 데이터시트(PDF) 29 Page - STMicroelectronics

부품명 TSU111H
상세설명  High temperature (150 °C) and long mission profile automotive grade, high accuracy (250 μV) 5 V CMOS operational amplifier
PDF  31 Pages
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제조업체  STMICROELECTRONICS [STMicroelectronics]
홈페이지  http://www.st.com
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TSU111H 데이터시트(HTML) 29 Page - STMicroelectronics

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List of figures
Figure 1.
Pin connection (top view) ............................................................. 2
Figure 2.
Supply current vs. supply voltage at low Vicm .............................................. 10
Figure 3.
Supply current vs. supply voltage at high Vicm.............................................. 10
Figure 4.
Supply current vs. supply voltage at mid Vicm .............................................. 10
Figure 5.
Supply current vs. common mode voltage at 1.8 V supply voltage ................................ 10
Figure 6.
Supply current vs. common mode voltage at 3.3 V supply voltage ................................ 11
Figure 7.
Supply current vs. common mode voltage at 5 V supply voltage ................................. 11
Figure 8.
Input offset voltage vs. common mode voltage at 1.8 V supply voltage............................. 11
Figure 9.
Input offset voltage vs. common mode voltage at 3.3 V supply voltage............................. 11
Figure 10.
Input offset voltage vs. common mode voltage at 5 V supply voltage .............................. 11
Figure 11.
Input offset voltage vs. supply voltage at mid Vicm ........................................... 11
Figure 12.
High level output voltage (drop from Vcc+) ................................................ 12
Figure 13.
Low level output voltage ............................................................ 12
Figure 14.
Output characteristics at 1.8 V supply voltage and mid Vicm .................................... 12
Figure 15.
Output characteristics at 3.3 V supply voltage and mid Vicm .................................... 12
Figure 16.
Output characteristics at 5 V supply voltage and mid Vicm ..................................... 12
Figure 17.
Output saturation with a sine wave on the input at F = 1 Hz .................................... 12
Figure 18.
Output saturation with a sine wave on the input at F = 100 Hz .................................. 13
Figure 19.
Output saturation with a sine wave on the input at F = 500 Hz .................................. 13
Figure 20.
Output saturation with a square wave on the input at F = 100 Hz................................. 13
Figure 21.
Phase reversal free ................................................................ 13
Figure 22.
Output swing vs. input signal frequency .................................................. 13
Figure 23.
Triangulation of a sine wave at f = 1 kHz ................................................. 13
Figure 24.
Large signal response at 3.3 V supply voltage at f = 100 Hz .................................... 14
Figure 25.
Small signal response at 3.3 V supply voltage at f = 1 kHz ..................................... 14
Figure 26.
Overshoot vs. capacitive load at 3.3 V supply voltage ........................................ 14
Figure 27.
Recovery time from negative saturation vs. supply voltage ..................................... 14
Figure 28.
Recovery time from positive saturation vs. supply voltage ..................................... 14
Figure 29.
Slew rate vs. supply voltage at mid Vicm.................................................. 14
Figure 30.
Negative overshoot vs. input common-mode voltage at 1.8 V supply voltage ........................ 15
Figure 31.
Positive overshoot vs. input common-mode voltage at 1.8 V supply voltage ......................... 15
Figure 32.
Negative overshoot vs. input common-mode voltage at 3 V supply voltage .......................... 15
Figure 33.
Positive overshoot vs. input common-mode voltage at 3 V supply voltage .......................... 15
Figure 34.
Negative overshoot vs. input common-mode voltage at 5 V supply voltage .......................... 15
Figure 35.
Positive overshoot vs. input common-mode voltage at 5 V supply voltage .......................... 15
Figure 36.
Bode diagram at 1.8 V supply voltage ................................................... 16
Figure 37.
Bode diagram at 3.3 V supply voltage ................................................... 16
Figure 38.
Bode diagram at 5 V supply voltage .................................................... 16
Figure 39.
Crosstalk diagram at 1.8 V supply voltage ................................................ 16
Figure 40.
Crosstalk diagram at 5 V supply voltage.................................................. 16
Figure 41.
PSRR diagram at 1.8 V supply voltage .................................................. 16
Figure 42.
PSRR diagram at 5 V supply voltage .................................................... 17
Figure 43.
Input referred voltage noise density for different power supply voltages at mid Vicm ................... 17
Figure 44.
Noise amplitude on 0.1 to 10 Hz freq. range at 1.8 V supply voltage .............................. 17
Figure 45.
Noise amplitude on 0.1 to 10 Hz freq. range at 3.3 V supply voltage .............................. 17
Figure 46.
Noise amplitude on 0.1 to 10 Hz freq. range at 5 V supply voltage................................ 17
Figure 47.
Input offset voltage distribution at 1.8 V supply voltage ....................................... 17
Figure 48.
Input offset voltage distribution at 3.3 V supply voltage ....................................... 18
Figure 49.
Input offset voltage distribution at 5 V supply voltage ......................................... 18
Figure 50.
Input offset voltage temperature coefficient distribution from - 40 °C to 25 °C at 1.8 V supply voltage ........ 18
Figure 51.
Input offset voltage temperature coefficient distribution from - 40 °C to 25 °C at 5 V supply voltage ......... 18
Figure 52.
Input offset voltage temperature coefficient distribution from 25 °C to 150 °C at 1.8 V supply voltage ........ 18
TSU111H
List of figures
DS14162 - Rev 1
page 29/31



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