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TSX561A Datasheet with Chat AI
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  • # Example questions: ➢ What is the typical input offset voltage (vio) for the tsx56xa at 25°c when operating with a vcc+ of 16v?
    ➢ Compare the typical supply current (icc) per channel at 25°c for vcc+ = 5v and vcc+ = 16v. what is the approximate percentage difference?
    ➢ How does the low-frequency peak-to-peak input noise (∫en) change between the specifications provided for a vcc+ of 5v and a vcc+ of 16v?

  • Part No.TSX561A
    ManufacturerSTMICROELECTRONICS
    Size1Mb
    Pages28 pages
    DescriptionMicropower, wide bandwidth (900 kHz), 16 V CMOS operational amplifiers
    Datasheet Summary with AI

    Important Notes:

    ️· TSX56x vs. TSX56xA: The datasheet doesn't explicitly state *all* differences between these two variants. Generally, the 'A' designation indicates improved performance (e.g., lower offset voltage, better noise), but confirm specifics in the full datasheet.
    ️· "Typ" vs. "Min/Max": "Typ" (typical) values are average and are not guaranteed. "Min" and "Max" values represent the guaranteed limits.

    I. General Parameters (Common to both 5V and 16V unless stated):

    ️· Input Offset Voltage (Vio):
    - TSX56xA (25°C): 600 μV
    - TSX56x (25°C): 1 mV
    - Both ( -40°C to 125°C): 1800 μV
    ️· Input Bias Current (Iib):
    - 25°C: 1 pA
    - -40°C to 125°C: 200 pA
    ️· Input Offset Current (Iio):
    - 25°C: 1 pA
    - -40°C to 125°C: 200 pA

    II. DC Performance (VCC = 5V):

    ️· Common Mode Rejection Ratio (CMR1):
    - 25°C: 76 dB to 95 dB
    - -40°C to 125°C: 72 dB
    ️· Large Signal Voltage Gain (Avd): 85dB
    ️· Supply Current (ICC):
    - 25°C: 250 μA to 360 μA
    - -40°C to 125°C: 400 μA

    III. DC Performance (VCC = 16V):

    ️· Common Mode Rejection Ratio (CMR1):
    - 25°C: 76 dB to 95 dB
    - -40°C to 125°C: 72 dB
    ️· Common Mode Rejection Ratio (CMR2):
    - 25°C: 60 dB to 78 dB
    - -40°C to 125°C: 56 dB
    ️· Supply Voltage Rejection Ratio (SVR):
    - 25°C: 76dB to 90dB
    - -40°C to 125°C: 72dB
    ️· Large Signal Voltage Gain (Avd): 85dB
    ️· Supply Current (ICC):
    - 25°C: 250 μA to 360 μA
    - -40°C to 125°C: 400 μA

    IV. AC Performance (Common to both 5V and 16V):

    ️· Unity Gain Frequency (Fu):
    - 5V: 730 kHz
    - 16V: 850 kHz
    ️· Phase Margin (ɸm): 55°
    ️· Gain Margin (Gm): 9 dB
    ️· Slew Rate (SR):
    - 5V: 1.1 V/μs
    - 16V: 1.1 V/μs
    ️· Low-Frequency Peak-to-Peak Input Noise (∫en):
    - Both: 15 μVpp
    ️· Total Harmonic Distortion + Noise (THD+N):
    - 5V: 0.002%
    - 16V: 0.002%

    V. Output Characteristics (Common to both 5V and 16V):

    ️· Output Voltage Swing (VOH/VOL):
    - RL = 10 kΩ: ~70 mV from either rail.
    - RL = 10 kΩ, -40°C to 125°C: ~100 mV
    ️· Output Source/Sink Current (Iout): Varies significantly with VCC
    - 5V: 40 mA to 92 mA
    - 16V: 30 mA to 90mA

    Key Observations & Differences:

    ️· Higher VCC = Higher Performance: Generally, using a 16V supply results in a higher Unity Gain Frequency and increased output current capability.
    ️· TSX56xA vs. TSX56x: The 'A' version has a lower input offset voltage, suggesting better DC precision.
    ️· Temperature Effects: Performance parameters (CMRR, Input Offset Voltage) degrade at the extreme temperatures (-40°C to +125°C).

    Important Notes:

    ️· TSX56x vs. TSX56xA: The datasheet doesn't explicitly state *all* differences between these two variants. Generally, the 'A' designation indicates improved performance (e.g., lower offset voltage, better noise), but confirm specifics in the full datasheet.
    ️· "Typ" vs. "Min/Max": "Typ" (typical) values are average and are not guaranteed. "Min" and "Max" values represent the guaranteed limits.

    I. General Parameters (Common to both 5V and 16V unless stated):

    ️· Input Offset Voltage (Vio):
    - TSX56xA (25°C): 600 μV
    - TSX56x (25°C): 1 mV
    - Both ( -40°C to 125°C): 1800 μV
    ️· Input Bias Current (Iib):
    - 25°C: 1 pA
    - -40°C to 125°C: 200 pA
    ️· Input Offset Current (Iio):
    - 25°C: 1 pA
    - -40°C to 125°C: 200 pA

    II. DC Performance (VCC = 5V):

    ️· Common Mode Rejection Ratio (CMR1):
    - 25°C: 76 dB to 95 dB
    - -40°C to 125°C: 72 dB
    ️· Large Signal Voltage Gain (Avd): 85dB
    ️· Supply Current (ICC):
    - 25°C: 250 μA to 360 μA
    - -40°C to 125°C: 400 μA

    III. DC Performance (VCC = 16V):

    ️· Common Mode Rejection Ratio (CMR1):
    - 25°C: 76 dB to 95 dB
    - -40°C to 125°C: 72 dB
    ️· Common Mode Rejection Ratio (CMR2):
    - 25°C: 60 dB to 78 dB
    - -40°C to 125°C: 56 dB
    ️· Supply Voltage Rejection Ratio (SVR):
    - 25°C: 76dB to 90dB
    - -40°C to 125°C: 72dB
    ️· Large Signal Voltage Gain (Avd): 85dB
    ️· Supply Current (ICC):
    - 25°C: 250 μA to 360 μA
    - -40°C to 125°C: 400 μA

    IV. AC Performance (Common to both 5V and 16V):

    ️· Unity Gain Frequency (Fu):
    - 5V: 730 kHz
    - 16V: 850 kHz
    ️· Phase Margin (ɸm): 55°
    ️· Gain Margin (Gm): 9 dB
    ️· Slew Rate (SR):
    - 5V: 1.1 V/μs
    - 16V: 1.1 V/μs
    ️· Low-Frequency Peak-to-Peak Input Noise (∫en):
    - Both: 15 μVpp
    ️· Total Harmonic Distortion + Noise (THD+N):
    - 5V: 0.002%
    - 16V: 0.002%

    V. Output Characteristics (Common to both 5V and 16V):

    ️· Output Voltage Swing (VOH/VOL):
    - RL = 10 kΩ: ~70 mV from either rail.
    - RL = 10 kΩ, -40°C to 125°C: ~100 mV
    ️· Output Source/Sink Current (Iout): Varies significantly with VCC
    - 5V: 40 mA to 92 mA
    - 16V: 30 mA to 90mA

    Key Observations & Differences:

    ️· Higher VCC = Higher Performance: Generally, using a 16V supply results in a higher Unity Gain Frequency and increased output current capability.
    ️· TSX56xA vs. TSX56x: The 'A' version has a lower input offset voltage, suggesting better DC precision.
    ️· Temperature Effects: Performance parameters (CMRR, Input Offset Voltage) degrade at the extreme temperatures (-40°C to +125°C).

    Part No.TSX561A
    ManufacturerSTMICROELECTRONICS
    Size1Mb
    Pages28 pages
    DescriptionMicropower, wide bandwidth (900 kHz), 16 V CMOS operational amplifiers
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